diff --git a/.gitignore b/.gitignore index d2339f0..ba16070 100644 --- a/.gitignore +++ b/.gitignore @@ -2,9 +2,12 @@ .vscode/ .idea/ .trunk/ -tests/ +local_tests/ *.pyc *.db .gitignore .gitattributes -todo.md \ No newline at end of file +dist +MetaXTools.egg-info +.pypirc +README_PyPi.md diff --git a/Docs/ChangeLog.md b/Docs/ChangeLog.md index ca4ca32..99ff243 100644 --- a/Docs/ChangeLog.md +++ b/Docs/ChangeLog.md @@ -1,3 +1,37 @@ +# Version: 1.108.7 +## Date: 2024-07-14 +### Changes: +- Change: Optimized Peptide Annotator, changed them to class method for better performance. + + +# Version: 1.108.6 +## Date: 2024-07-11 +### Changes: +- Change: Optimized file structure and code structure, make easlier to install and run the MetaX by pip or conda. + + +# Version: 1.108.5 +## Date: 2024-07-11 +### Changes: +- Fix: Fixed the Settting window was not able to minimize (Not perfect yet, need to be fixed in the future). + +# Version: 1.108.2 +## Date: 2024-07-08 +### Changes: +- Fix: Fixed the bug of when int number in the meta table, the protential error will raise. + + +# Version: 1.108.1 +## Date: 2024-06-27 +### Changes: +- New: Add Sub Meta option for the basic Heatmap plot. + + +# Version: 1.108.0 +## Date: 2024-06-27 +### Changes: +- New: Enable multiple selection for the in condition group box. + # Version: 1.107.8 ## Date: 2024-06-26 ### Changes: diff --git a/Docs/MetaX_Cookbook.assets/basic_stats_heatmap.png b/Docs/MetaX_Cookbook.assets/basic_stats_heatmap.png index 94221e6..598dd4e 100644 Binary files a/Docs/MetaX_Cookbook.assets/basic_stats_heatmap.png and b/Docs/MetaX_Cookbook.assets/basic_stats_heatmap.png differ diff --git a/Docs/MetaX_Cookbook.assets/basic_stats_heatmap_seeting.png b/Docs/MetaX_Cookbook.assets/basic_stats_heatmap_seeting.png index 35fb879..f56dc4b 100644 Binary files a/Docs/MetaX_Cookbook.assets/basic_stats_heatmap_seeting.png and b/Docs/MetaX_Cookbook.assets/basic_stats_heatmap_seeting.png differ diff --git a/Docs/MetaX_Cookbook.assets/main_window.png b/Docs/MetaX_Cookbook.assets/main_window.png index 61b9893..bf93e2a 100644 Binary files a/Docs/MetaX_Cookbook.assets/main_window.png and b/Docs/MetaX_Cookbook.assets/main_window.png differ diff --git a/Docs/MetaX_Cookbook.assets/settings.png b/Docs/MetaX_Cookbook.assets/settings.png index 55ac934..a602658 100644 Binary files a/Docs/MetaX_Cookbook.assets/settings.png and b/Docs/MetaX_Cookbook.assets/settings.png differ diff --git a/Docs/MetaX_Cookbook.assets/settings_page2.png b/Docs/MetaX_Cookbook.assets/settings_page2.png index e081c18..d885db3 100644 Binary files a/Docs/MetaX_Cookbook.assets/settings_page2.png and b/Docs/MetaX_Cookbook.assets/settings_page2.png differ diff --git a/Docs/MetaX_Cookbook.md b/Docs/MetaX_Cookbook.md index eb1daf7..4be79e3 100644 --- a/Docs/MetaX_Cookbook.md +++ b/Docs/MetaX_Cookbook.md @@ -23,7 +23,7 @@ Visit **Github** to get more information: -# Get Start +# Getting Started - The main window of MetaX @@ -230,19 +230,20 @@ Click **Create Proteins Intensity Table** to sum peptides to proteins if the Pro - **Occam's Razor**, **Anti-Razor** and **Rank:** Methods available for inferring shared peptides. - Razor: 1. Build a minimal set of proteins to cover all peptides. - 2. For each peptide, choose the protein which has most peptides (if multiple proteins have the same number of peptides, share intensity to them). + 2. For each peptide, choose the protein with the most peptides (if multiple proteins have the same number of peptides, share intensity to them). - Anti-Razor: - - All proteins are shared the intensity of each peptide. + - All proteins share the intensity of each peptide. - Rank: 1. Build the rank of proteins. 2. Choose the protein with a higher rank for the shared peptide. - - -- **Methods to Build Protein Rank:** - - unique_counts: Use the counts of proteins inferred by unique peptides. - - all_count: Use the counts of all proteins. - - unique_intensity: Use the intensity of proteins inferred by unique peptides. - - shared_intensity: Use the intensity divided by the number of shared peptides for each protein. + + + - **Methods to Build Protein Rank:** + - unique_counts: Use the counts of proteins inferred by unique peptides. + - all_count: Use the counts of all proteins. + - unique_intensity: Use the intensity of proteins inferred by unique peptides. + - shared_intensity: Use the intensity divided by the number of shared peptides for each protein. + ### Data preprocessing @@ -424,6 +425,8 @@ We can select **meta** **groups** or **samples** (default a - **Rename Samples**: Add group info to each sample name - **Rename Taxa**: Only keep the last taxonomic level to reduce to name - **Plot Mean**: calculate the mean of each group before plotting + + - **Sub Meta:** select a second meta, then combine two meta by mean for Heatmap and 3D bar plot - **For Heatmap** - **Theme**: The theme of the heatmap - **scale**: Scale method of the heatmap diff --git a/Docs/example.ipynb b/Docs/example.ipynb index 1075dbc..093c695 100644 --- a/Docs/example.ipynb +++ b/Docs/example.ipynb @@ -16,21 +16,23 @@ }, { "cell_type": "code", - "execution_count": 3, + "execution_count": 10, "metadata": {}, "outputs": [], "source": [ "import sys\n", "import os\n", + "from pathlib import Path\n", + "\n", "myDir = os.getcwd()\n", "parentDir = os.path.abspath(os.path.join(myDir, os.pardir))\n", "sys.path.append(parentDir)\n", "\n", - "from pathlib import Path\n", "path = Path(parentDir)\n", "a=str(path.parent.absolute())\n", "\n", - "sys.path.append(a)" + "sys.path.append(a)\n", + "\n" ] }, { @@ -42,11 +44,11 @@ }, { "cell_type": "code", - "execution_count": 4, + "execution_count": 11, "metadata": {}, "outputs": [], "source": [ - "from MetaX.utils.TaxaFuncAnalyzer import TaxaFuncAnalyzer" + "from metax.taxafunc_analyzer.analyzer import TaxaFuncAnalyzer" ] }, { @@ -58,15 +60,15 @@ }, { "cell_type": "code", - "execution_count": 5, + "execution_count": 12, "metadata": {}, "outputs": [ { "name": "stdout", "output_type": "stream", "text": [ - "original df shape: (5000, 256)\n", - "after remove all zero row: (4723, 256)\n" + "original df shape: (5000, 249)\n", + "after remove all zero row: (4391, 249)\n" ] } ], @@ -102,7 +104,7 @@ }, { "cell_type": "code", - "execution_count": 6, + "execution_count": 13, "metadata": {}, "outputs": [ { @@ -110,26 +112,26 @@ "output_type": "stream", "text": [ "\n", - "[2024-04-19 22:35:40] Start to detect outlier...\n", + "[2024-07-10 16:33:43] Start to detect outlier...\n", "outlier_method is not set, outlier detection did not perform.\n", "\n", - "[2024-04-19 22:35:40] Start to handle missing value...\n", + "[2024-07-10 16:33:43] Start to handle missing value...\n", "\n", "No missing value, skip outlier handling\n", "Data transformed by [log10]\n", "normalize_method is not set, data normalization did not perform.\n", "batch_meta is not set, Batch effect removal did not perform.\n", "\n", - "[2024-04-19 22:35:40] -----Data preprocessing finished.-----\n", + "[2024-07-10 16:33:44] -----Data preprocessing finished.-----\n", "\n", - "Original data shape: (4723, 256)\n", + "Original data shape: (4391, 249)\n", "Starting to set Function table...\n", - "Function number with prop >= [1.0], peptide_num >= [1]: 613\n", + "Function number with prop >= [1.0], peptide_num >= [1]: 602\n", "Starting to set Taxa table...\n", "Remove the peptides with 's__'in Taxon column...\n", - "Rmoved: [50], Left: [2077]\n", - "Taxa number with 's' level, peptide_num >= [3]: 142\n", - "Taxa-Function number with peptide_num >= [1]: 1240\n", + "Rmoved: [47], Left: [1972]\n", + "Taxa number with 's' level, peptide_num >= [3]: 132\n", + "Taxa-Function number with peptide_num >= [1]: 1173\n", "\n", "\n", "Multi-tables Created!\n", @@ -162,7 +164,7 @@ }, { "cell_type": "code", - "execution_count": 7, + "execution_count": 14, "metadata": {}, "outputs": [ { @@ -300,8 +302,8 @@ "" ], "text/plain": [ - " Sample Individual Sugar_name Sugar_source Sugar_type \\\n", - "0 V1_01 V1 PBS PBS PBS \n", + " Sample Individual Sugar_name Sugar_source Sugar_type \n", + "0 V1_01 V1 PBS PBS PBS \\\n", "1 V1_02 V1 ISO sugar alcohols CHO \n", "2 V1_03 V1 SOR sugar alcohols CHO \n", "3 V1_04 V1 ERY sugar alcohols CHO \n", @@ -329,7 +331,7 @@ "[190 rows x 6 columns]" ] }, - "execution_count": 7, + "execution_count": 14, "metadata": {}, "output_type": "execute_result" } @@ -340,7 +342,7 @@ }, { "cell_type": "code", - "execution_count": 8, + "execution_count": 15, "metadata": {}, "outputs": [ { @@ -348,7 +350,7 @@ "output_type": "stream", "text": [ "group is set to Individual\n", - " {'V4', 'V3', 'V2', 'V5', 'V1'}\n" + " {'V5', 'V2', 'V3', 'V1', 'V4'}\n" ] } ], @@ -365,7 +367,7 @@ }, { "cell_type": "code", - "execution_count": 9, + "execution_count": 16, "metadata": {}, "outputs": [ { @@ -375,6 +377,7 @@ "Set:\n", " original_row_num\n", " original_df\n", + " has_na_in_original_df\n", " preprocessed_df\n", " genome_mode\n", " peptide_col_name\n", @@ -436,7 +439,7 @@ }, { "cell_type": "code", - "execution_count": 10, + "execution_count": 17, "metadata": {}, "outputs": [ { @@ -534,69 +537,69 @@ " \n", " \n", " d__Bacteria|p__Actinobacteriota|c__Actinomycetia|o__Actinomycetales|f__Bifidobacteriaceae|g__Bifidobacterium|s__Bifidobacterium infantis\n", - " 16.183636\n", - " 10.812076\n", - " 11.049976\n", - " 5.644996\n", - " 15.628914\n", - " 5.744100\n", - " 10.723522\n", - " 20.975569\n", - " 15.672211\n", - " 16.126363\n", - " ...\n", - " 6.288318\n", - " 10.884920\n", - " 6.244498\n", - " 6.126786\n", - " 11.486956\n", - " 5.490943\n", - " 5.350009\n", - " 6.099021\n", - " 6.471158\n", - " 5.237164\n", + " 0.000000\n", + " 0.000000\n", + " 0.000000\n", + " 0.000000\n", + " 5.125972\n", + " 0.000000\n", + " 0.000000\n", + " 10.608782\n", + " 0.000000\n", + " 0.000000\n", + " ...\n", + " 0.000000\n", + " 0.000000\n", + " 0.000000\n", + " 0.000000\n", + " 0.000000\n", + " 0.000000\n", + " 0.000000\n", + " 0.000000\n", + " 0.000000\n", + " 0.000000\n", " \n", " \n", " d__Bacteria|p__Actinobacteriota|c__Actinomycetia|o__Actinomycetales|f__Bifidobacteriaceae|g__Bifidobacterium|s__Bifidobacterium pseudocatenulatum\n", - " 12.054001\n", - " 11.335050\n", - " 27.482199\n", - " 16.934216\n", - " 27.781208\n", + " 0.000000\n", + " 0.000000\n", + " 16.696154\n", + " 0.000000\n", + " 11.332634\n", " 6.023990\n", - " 15.843673\n", - " 27.249244\n", - " 16.355069\n", - " 31.296907\n", + " 0.000000\n", + " 4.840363\n", + " 0.000000\n", + " 0.000000\n", " ...\n", " 0.000000\n", - " 17.176741\n", - " 16.933785\n", " 0.000000\n", - " 17.213315\n", - " 17.256169\n", - " 17.314665\n", - " 5.446379\n", - " 17.052523\n", - " 11.862123\n", + " 0.000000\n", + " 0.000000\n", + " 0.000000\n", + " 0.000000\n", + " 0.000000\n", + " 0.000000\n", + " 0.000000\n", + " 0.000000\n", " \n", " \n", " d__Bacteria|p__Actinobacteriota|c__Coriobacteriia|o__Coriobacteriales|f__Coriobacteriaceae|g__Collinsella|s__Collinsella sp002232035\n", - " 5.636565\n", " 0.000000\n", " 0.000000\n", " 0.000000\n", " 0.000000\n", " 0.000000\n", - " 5.969185\n", " 0.000000\n", - " 5.935355\n", + " 0.000000\n", + " 0.000000\n", + " 0.000000\n", " 0.000000\n", " ...\n", " 0.000000\n", " 0.000000\n", " 0.000000\n", - " 6.201118\n", + " 0.000000\n", " 0.000000\n", " 6.432815\n", " 0.000000\n", @@ -605,21 +608,19 @@ " 0.000000\n", " \n", " \n", - " d__Bacteria|p__Actinobacteriota|c__Coriobacteriia|o__Coriobacteriales|f__Coriobacteriaceae|g__Collinsella|s__Collinsella sp900762015\n", - " 10.357103\n", - " 11.427788\n", - " 10.702306\n", - " 11.147653\n", - " 10.530633\n", - " 10.655898\n", - " 11.176484\n", - " 10.427058\n", - " 10.764109\n", - " 10.841331\n", - " ...\n", + " d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__Bacteroidales|f__Bacteroidaceae|g__Bacteroides|s__Bacteroides bouchesdurhonensis\n", + " 5.285019\n", + " 0.000000\n", + " 0.000000\n", + " 0.000000\n", + " 0.000000\n", + " 0.000000\n", + " 6.005431\n", " 0.000000\n", " 0.000000\n", " 0.000000\n", + " ...\n", + " 0.000000\n", " 0.000000\n", " 0.000000\n", " 0.000000\n", @@ -627,6 +628,8 @@ " 0.000000\n", " 0.000000\n", " 0.000000\n", + " 5.238141\n", + " 6.225896\n", " \n", " \n", " ...\n", @@ -653,289 +656,275 @@ " ...\n", " \n", " \n", - " d__Bacteria|p__Proteobacteria|c__Gammaproteobacteria|o__Burkholderiales|f__Burkholderiaceae|g__Sutterella|s__Sutterella wadsworthensis_A\n", - " 5.537005\n", + " d__Bacteria|p__Fusobacteriota|c__Fusobacteriia|o__Fusobacteriales|f__Fusobacteriaceae|g__Fusobacterium_A|s__Fusobacterium_A sp900555485\n", + " 0.000000\n", + " 0.000000\n", + " 0.000000\n", + " 0.000000\n", + " 0.000000\n", + " 0.000000\n", + " 0.000000\n", + " 0.000000\n", " 0.000000\n", - " 5.396517\n", - " 15.952336\n", - " 5.725157\n", - " 10.774005\n", - " 15.389687\n", - " 5.488161\n", - " 16.190256\n", " 0.000000\n", " ...\n", - " 29.003402\n", - " 23.803587\n", - " 29.145012\n", - " 22.523565\n", - " 16.669160\n", - " 29.436753\n", - " 31.206389\n", - " 28.907563\n", - " 29.369341\n", - " 28.803598\n", - " \n", - " \n", - " d__Bacteria|p__Proteobacteria|c__Gammaproteobacteria|o__Enterobacterales|f__Enterobacteriaceae|g__Citrobacter_B|s__Citrobacter_B koseri\n", - " 103.467647\n", - " 124.605493\n", - " 84.590375\n", - " 116.089681\n", - " 101.012386\n", - " 122.732646\n", - " 114.255928\n", - " 106.945089\n", - " 109.529851\n", - " 117.288714\n", - " ...\n", - " 110.789144\n", - " 100.336612\n", - " 99.840889\n", - " 78.066037\n", - " 84.595420\n", - " 67.846670\n", - " 90.925943\n", - " 88.525106\n", - " 85.691870\n", - " 94.710067\n", + " 0.000000\n", + " 0.000000\n", + " 0.000000\n", + " 0.000000\n", + " 0.000000\n", + " 0.000000\n", + " 0.000000\n", + " 0.000000\n", + " 0.000000\n", + " 0.000000\n", " \n", " \n", - " d__Bacteria|p__Proteobacteria|c__Gammaproteobacteria|o__Enterobacterales|f__Enterobacteriaceae|g__Escherichia|s__Escherichia coli_D\n", - " 73.849151\n", - " 77.820968\n", - " 75.834942\n", - " 66.028261\n", - " 71.940824\n", - " 89.955754\n", - " 98.810119\n", - " 74.550495\n", - " 72.800151\n", - " 91.594024\n", + " d__Bacteria|p__Proteobacteria|c__Gammaproteobacteria|o__Burkholderiales|f__Burkholderiaceae|g__Parasutterella|s__Parasutterella sp000980495\n", + " 0.000000\n", + " 5.290300\n", + " 0.000000\n", + " 0.000000\n", + " 0.000000\n", + " 0.000000\n", + " 0.000000\n", + " 0.000000\n", + " 0.000000\n", + " 0.000000\n", " ...\n", - " 41.772390\n", - " 27.360240\n", - " 21.515232\n", - " 21.561663\n", - " 26.724105\n", - " 21.855066\n", - " 27.614946\n", - " 32.540988\n", - " 20.911921\n", - " 22.220936\n", + " 4.848325\n", + " 0.000000\n", + " 0.000000\n", + " 0.000000\n", + " 0.000000\n", + " 0.000000\n", + " 0.000000\n", + " 0.000000\n", + " 5.205421\n", + " 0.000000\n", " \n", " \n", - " d__Bacteria|p__Proteobacteria|c__Gammaproteobacteria|o__Enterobacterales|f__Enterobacteriaceae|g__Escherichia|s__Escherichia fergusonii\n", + " d__Bacteria|p__Proteobacteria|c__Gammaproteobacteria|o__Burkholderiales|f__Burkholderiaceae|g__Sutterella|s__Sutterella wadsworthensis_A\n", + " 0.000000\n", + " 0.000000\n", + " 0.000000\n", + " 5.251998\n", + " 0.000000\n", " 0.000000\n", + " 4.872954\n", + " 5.488161\n", + " 5.384703\n", + " 0.000000\n", + " ...\n", " 0.000000\n", - " 5.826218\n", + " 6.195016\n", + " 6.086147\n", " 0.000000\n", " 0.000000\n", - " 11.203318\n", + " 6.130901\n", + " 25.098825\n", " 0.000000\n", + " 6.147704\n", " 0.000000\n", - " 5.238686\n", - " 5.180837\n", + " \n", + " \n", + " d__Bacteria|p__Proteobacteria|c__Gammaproteobacteria|o__Enterobacterales|f__Enterobacteriaceae|g__Citrobacter_B|s__Citrobacter_B koseri\n", + " 4.968404\n", + " 33.779007\n", + " 27.839331\n", + " 10.531038\n", + " 16.976025\n", + " 55.974725\n", + " 11.404287\n", + " 5.743858\n", + " 5.584324\n", + " 23.215631\n", " ...\n", - " 5.998685\n", + " 28.593935\n", + " 16.983147\n", " 0.000000\n", - " 5.701378\n", + " 5.934886\n", + " 33.542903\n", + " 10.442343\n", " 0.000000\n", - " 5.822993\n", - " 5.576437\n", - " 5.323745\n", - " 5.846526\n", - " 5.427108\n", - " 5.891894\n", + " 15.132084\n", + " 10.252712\n", + " 44.616342\n", " \n", " \n", - " d__Bacteria|p__Verrucomicrobiota|c__Verrucomicrobiae|o__Verrucomicrobiales|f__Akkermansiaceae|g__Akkermansia|s__Akkermansia muciniphila_A\n", - " 11.690506\n", - " 11.467347\n", - " 16.940904\n", - " 11.559102\n", - " 10.999799\n", - " 11.155554\n", - " 17.692019\n", - " 17.135785\n", - " 11.914924\n", - " 11.580592\n", - " ...\n", - " 5.781387\n", - " 5.530837\n", - " 5.356418\n", - " 5.592383\n", - " 10.322414\n", - " 10.629837\n", - " 4.930276\n", - " 0.000000\n", - " 5.854279\n", - " 5.684552\n", + " d__Bacteria|p__Proteobacteria|c__Gammaproteobacteria|o__Enterobacterales|f__Enterobacteriaceae|g__Escherichia|s__Escherichia coli_D\n", + " 24.178993\n", + " 5.991989\n", + " 21.841852\n", + " 0.000000\n", + " 22.210249\n", + " 46.656331\n", + " 10.925238\n", + " 35.691045\n", + " 6.278610\n", + " 16.746947\n", + " ...\n", + " 9.179001\n", + " 0.000000\n", + " 0.000000\n", + " 0.000000\n", + " 4.737026\n", + " 16.062544\n", + " 5.378694\n", + " 0.000000\n", + " 4.819208\n", + " 0.000000\n", " \n", " \n", "\n", - "

142 rows × 190 columns

\n", + "

132 rows × 190 columns

\n", "" ], "text/plain": [ - " V1_01 V1_02 \\\n", - "Taxon \n", - "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.000000 0.000000 \n", - "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 16.183636 10.812076 \n", - "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 12.054001 11.335050 \n", - "d__Bacteria|p__Actinobacteriota|c__Coriobacteri... 5.636565 0.000000 \n", - "d__Bacteria|p__Actinobacteriota|c__Coriobacteri... 10.357103 11.427788 \n", - "... ... ... \n", - "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 5.537005 0.000000 \n", - "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 103.467647 124.605493 \n", - "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 73.849151 77.820968 \n", - "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.000000 0.000000 \n", - "d__Bacteria|p__Verrucomicrobiota|c__Verrucomicr... 11.690506 11.467347 \n", - "\n", - " V1_03 V1_04 \\\n", - "Taxon \n", - "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.000000 0.000000 \n", - "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 11.049976 5.644996 \n", - "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 27.482199 16.934216 \n", - "d__Bacteria|p__Actinobacteriota|c__Coriobacteri... 0.000000 0.000000 \n", - "d__Bacteria|p__Actinobacteriota|c__Coriobacteri... 10.702306 11.147653 \n", - "... ... ... \n", - "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 5.396517 15.952336 \n", - "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 84.590375 116.089681 \n", - "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 75.834942 66.028261 \n", - "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 5.826218 0.000000 \n", - "d__Bacteria|p__Verrucomicrobiota|c__Verrucomicr... 16.940904 11.559102 \n", - "\n", - " V1_05 V1_06 \\\n", - "Taxon \n", - "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.000000 0.000000 \n", - "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 15.628914 5.744100 \n", - "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 27.781208 6.023990 \n", - "d__Bacteria|p__Actinobacteriota|c__Coriobacteri... 0.000000 0.000000 \n", - "d__Bacteria|p__Actinobacteriota|c__Coriobacteri... 10.530633 10.655898 \n", - "... ... ... \n", - "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 5.725157 10.774005 \n", - "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 101.012386 122.732646 \n", - "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 71.940824 89.955754 \n", - "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.000000 11.203318 \n", - "d__Bacteria|p__Verrucomicrobiota|c__Verrucomicr... 10.999799 11.155554 \n", - "\n", - " V1_07 V1_08 \\\n", - "Taxon \n", - "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.000000 0.000000 \n", - "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 10.723522 20.975569 \n", - "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 15.843673 27.249244 \n", - "d__Bacteria|p__Actinobacteriota|c__Coriobacteri... 5.969185 0.000000 \n", - "d__Bacteria|p__Actinobacteriota|c__Coriobacteri... 11.176484 10.427058 \n", - "... ... ... \n", - "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 15.389687 5.488161 \n", - "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 114.255928 106.945089 \n", - "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 98.810119 74.550495 \n", - "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.000000 0.000000 \n", - "d__Bacteria|p__Verrucomicrobiota|c__Verrucomicr... 17.692019 17.135785 \n", - "\n", - " V1_09 V1_10 \\\n", - "Taxon \n", - "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.000000 0.000000 \n", - "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 15.672211 16.126363 \n", - "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 16.355069 31.296907 \n", - "d__Bacteria|p__Actinobacteriota|c__Coriobacteri... 5.935355 0.000000 \n", - "d__Bacteria|p__Actinobacteriota|c__Coriobacteri... 10.764109 10.841331 \n", - "... ... ... \n", - "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 16.190256 0.000000 \n", - "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 109.529851 117.288714 \n", - "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 72.800151 91.594024 \n", - "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 5.238686 5.180837 \n", - "d__Bacteria|p__Verrucomicrobiota|c__Verrucomicr... 11.914924 11.580592 \n", - "\n", - " ... V5_29 \\\n", - "Taxon ... \n", - "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... ... 0.000000 \n", - "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... ... 6.288318 \n", - "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... ... 0.000000 \n", - "d__Bacteria|p__Actinobacteriota|c__Coriobacteri... ... 0.000000 \n", - "d__Bacteria|p__Actinobacteriota|c__Coriobacteri... ... 0.000000 \n", - "... ... ... \n", - "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... ... 29.003402 \n", - "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... ... 110.789144 \n", - "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... ... 41.772390 \n", - "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... ... 5.998685 \n", - "d__Bacteria|p__Verrucomicrobiota|c__Verrucomicr... ... 5.781387 \n", - "\n", - " V5_30 V5_31 \\\n", - "Taxon \n", - "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.000000 0.000000 \n", - "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 10.884920 6.244498 \n", - "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 17.176741 16.933785 \n", - "d__Bacteria|p__Actinobacteriota|c__Coriobacteri... 0.000000 0.000000 \n", - "d__Bacteria|p__Actinobacteriota|c__Coriobacteri... 0.000000 0.000000 \n", - "... ... ... \n", - "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 23.803587 29.145012 \n", - "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 100.336612 99.840889 \n", - "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 27.360240 21.515232 \n", - "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.000000 5.701378 \n", - "d__Bacteria|p__Verrucomicrobiota|c__Verrucomicr... 5.530837 5.356418 \n", - "\n", - " V5_32 V5_33 \\\n", + " V1_01 V1_02 \n", "Taxon \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.000000 0.000000 \\\n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.000000 0.000000 \n", "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.000000 0.000000 \n", - "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 6.126786 11.486956 \n", - "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.000000 17.213315 \n", - "d__Bacteria|p__Actinobacteriota|c__Coriobacteri... 6.201118 0.000000 \n", "d__Bacteria|p__Actinobacteriota|c__Coriobacteri... 0.000000 0.000000 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 5.285019 0.000000 \n", "... ... ... \n", - "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 22.523565 16.669160 \n", - "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 78.066037 84.595420 \n", - "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 21.561663 26.724105 \n", - "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.000000 5.822993 \n", - "d__Bacteria|p__Verrucomicrobiota|c__Verrucomicr... 5.592383 10.322414 \n", + "d__Bacteria|p__Fusobacteriota|c__Fusobacteriia|... 0.000000 0.000000 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.000000 5.290300 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.000000 0.000000 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 4.968404 33.779007 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 24.178993 5.991989 \n", "\n", - " V5_34 V5_35 \\\n", + " V1_03 V1_04 \n", "Taxon \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.000000 0.000000 \\\n", "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.000000 0.000000 \n", - "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 5.490943 5.350009 \n", - "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 17.256169 17.314665 \n", - "d__Bacteria|p__Actinobacteriota|c__Coriobacteri... 6.432815 0.000000 \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 16.696154 0.000000 \n", + "d__Bacteria|p__Actinobacteriota|c__Coriobacteri... 0.000000 0.000000 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 0.000000 0.000000 \n", + "... ... ... \n", + "d__Bacteria|p__Fusobacteriota|c__Fusobacteriia|... 0.000000 0.000000 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.000000 0.000000 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.000000 5.251998 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 27.839331 10.531038 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 21.841852 0.000000 \n", + "\n", + " V1_05 V1_06 \n", + "Taxon \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.000000 0.000000 \\\n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 5.125972 0.000000 \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 11.332634 6.023990 \n", + "d__Bacteria|p__Actinobacteriota|c__Coriobacteri... 0.000000 0.000000 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 0.000000 0.000000 \n", + "... ... ... \n", + "d__Bacteria|p__Fusobacteriota|c__Fusobacteriia|... 0.000000 0.000000 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.000000 0.000000 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.000000 0.000000 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 16.976025 55.974725 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 22.210249 46.656331 \n", + "\n", + " V1_07 V1_08 \n", + "Taxon \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.000000 0.000000 \\\n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.000000 10.608782 \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.000000 4.840363 \n", "d__Bacteria|p__Actinobacteriota|c__Coriobacteri... 0.000000 0.000000 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 6.005431 0.000000 \n", "... ... ... \n", - "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 29.436753 31.206389 \n", - "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 67.846670 90.925943 \n", - "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 21.855066 27.614946 \n", - "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 5.576437 5.323745 \n", - "d__Bacteria|p__Verrucomicrobiota|c__Verrucomicr... 10.629837 4.930276 \n", + "d__Bacteria|p__Fusobacteriota|c__Fusobacteriia|... 0.000000 0.000000 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.000000 0.000000 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 4.872954 5.488161 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 11.404287 5.743858 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 10.925238 35.691045 \n", "\n", - " V5_36 V5_37 \\\n", + " V1_09 V1_10 ... \n", + "Taxon ... \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.000000 0.000000 ... \\\n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.000000 0.000000 ... \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.000000 0.000000 ... \n", + "d__Bacteria|p__Actinobacteriota|c__Coriobacteri... 0.000000 0.000000 ... \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 0.000000 0.000000 ... \n", + "... ... ... ... \n", + "d__Bacteria|p__Fusobacteriota|c__Fusobacteriia|... 0.000000 0.000000 ... \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.000000 0.000000 ... \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 5.384703 0.000000 ... \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 5.584324 23.215631 ... \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 6.278610 16.746947 ... \n", + "\n", + " V5_29 V5_30 \n", "Taxon \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.000000 0.000000 \\\n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.000000 0.000000 \n", "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.000000 0.000000 \n", - "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 6.099021 6.471158 \n", - "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 5.446379 17.052523 \n", "d__Bacteria|p__Actinobacteriota|c__Coriobacteri... 0.000000 0.000000 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 0.000000 0.000000 \n", + "... ... ... \n", + "d__Bacteria|p__Fusobacteriota|c__Fusobacteriia|... 0.000000 0.000000 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 4.848325 0.000000 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.000000 6.195016 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 28.593935 16.983147 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 9.179001 0.000000 \n", + "\n", + " V5_31 V5_32 \n", + "Taxon \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.000000 0.000000 \\\n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.000000 0.000000 \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.000000 0.000000 \n", + "d__Bacteria|p__Actinobacteriota|c__Coriobacteri... 0.000000 0.000000 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 0.000000 0.000000 \n", + "... ... ... \n", + "d__Bacteria|p__Fusobacteriota|c__Fusobacteriia|... 0.000000 0.000000 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.000000 0.000000 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 6.086147 0.000000 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.000000 5.934886 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.000000 0.000000 \n", + "\n", + " V5_33 V5_34 \n", + "Taxon \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.000000 0.000000 \\\n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.000000 0.000000 \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.000000 0.000000 \n", + "d__Bacteria|p__Actinobacteriota|c__Coriobacteri... 0.000000 6.432815 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 0.000000 0.000000 \n", + "... ... ... \n", + "d__Bacteria|p__Fusobacteriota|c__Fusobacteriia|... 0.000000 0.000000 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.000000 0.000000 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.000000 6.130901 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 33.542903 10.442343 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 4.737026 16.062544 \n", + "\n", + " V5_35 V5_36 \n", + "Taxon \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.000000 0.000000 \\\n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.000000 0.000000 \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.000000 0.000000 \n", "d__Bacteria|p__Actinobacteriota|c__Coriobacteri... 0.000000 0.000000 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 0.000000 0.000000 \n", "... ... ... \n", - "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 28.907563 29.369341 \n", - "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 88.525106 85.691870 \n", - "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 32.540988 20.911921 \n", - "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 5.846526 5.427108 \n", - "d__Bacteria|p__Verrucomicrobiota|c__Verrucomicr... 0.000000 5.854279 \n", - "\n", - " V5_38 \n", - "Taxon \n", - "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.000000 \n", - "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 5.237164 \n", - "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 11.862123 \n", - "d__Bacteria|p__Actinobacteriota|c__Coriobacteri... 0.000000 \n", - "d__Bacteria|p__Actinobacteriota|c__Coriobacteri... 0.000000 \n", - "... ... \n", - "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 28.803598 \n", - "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 94.710067 \n", - "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 22.220936 \n", - "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 5.891894 \n", - "d__Bacteria|p__Verrucomicrobiota|c__Verrucomicr... 5.684552 \n", - "\n", - "[142 rows x 190 columns]" + "d__Bacteria|p__Fusobacteriota|c__Fusobacteriia|... 0.000000 0.000000 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.000000 0.000000 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 25.098825 0.000000 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.000000 15.132084 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 5.378694 0.000000 \n", + "\n", + " V5_37 V5_38 \n", + "Taxon \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.000000 0.000000 \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.000000 0.000000 \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.000000 0.000000 \n", + "d__Bacteria|p__Actinobacteriota|c__Coriobacteri... 0.000000 0.000000 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 5.238141 6.225896 \n", + "... ... ... \n", + "d__Bacteria|p__Fusobacteriota|c__Fusobacteriia|... 0.000000 0.000000 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 5.205421 0.000000 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 6.147704 0.000000 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 10.252712 44.616342 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 4.819208 0.000000 \n", + "\n", + "[132 rows x 190 columns]" ] }, - "execution_count": 10, + "execution_count": 17, "metadata": {}, "output_type": "execute_result" } @@ -953,7 +942,7 @@ }, { "cell_type": "code", - "execution_count": 11, + "execution_count": 18, "metadata": {}, "outputs": [ { @@ -987,65 +976,65 @@ " \n", " 0\n", " genome\n", - " 2120\n", - " 44.89\n", - " genome (44.89%)\n", + " 2012\n", + " 45.82\n", + " genome (45.82%)\n", " \n", " \n", " 1\n", " species\n", " 7\n", - " 0.15\n", - " species (0.15%)\n", + " 0.16\n", + " species (0.16%)\n", " \n", " \n", " 2\n", " genus\n", - " 1040\n", - " 22.02\n", - " genus (22.02%)\n", + " 974\n", + " 22.18\n", + " genus (22.18%)\n", " \n", " \n", " 3\n", " family\n", - " 812\n", - " 17.19\n", - " family (17.19%)\n", + " 733\n", + " 16.69\n", + " family (16.69%)\n", " \n", " \n", " 4\n", " order\n", - " 208\n", - " 4.40\n", - " order (4.4%)\n", + " 191\n", + " 4.35\n", + " order (4.35%)\n", " \n", " \n", " 5\n", " class\n", - " 140\n", - " 2.96\n", - " class (2.96%)\n", + " 132\n", + " 3.01\n", + " class (3.01%)\n", " \n", " \n", " 6\n", " phylum\n", - " 58\n", - " 1.23\n", - " phylum (1.23%)\n", + " 52\n", + " 1.18\n", + " phylum (1.18%)\n", " \n", " \n", " 7\n", " domain\n", - " 329\n", - " 6.97\n", - " domain (6.97%)\n", + " 282\n", + " 6.42\n", + " domain (6.42%)\n", " \n", " \n", " 8\n", " life\n", - " 9\n", - " 0.19\n", - " life (0.19%)\n", + " 8\n", + " 0.18\n", + " life (0.18%)\n", " \n", " \n", " 9\n", @@ -1060,19 +1049,19 @@ ], "text/plain": [ " LCA_level count freq label\n", - "0 genome 2120 44.89 genome (44.89%)\n", - "1 species 7 0.15 species (0.15%)\n", - "2 genus 1040 22.02 genus (22.02%)\n", - "3 family 812 17.19 family (17.19%)\n", - "4 order 208 4.40 order (4.4%)\n", - "5 class 140 2.96 class (2.96%)\n", - "6 phylum 58 1.23 phylum (1.23%)\n", - "7 domain 329 6.97 domain (6.97%)\n", - "8 life 9 0.19 life (0.19%)\n", + "0 genome 2012 45.82 genome (45.82%)\n", + "1 species 7 0.16 species (0.16%)\n", + "2 genus 974 22.18 genus (22.18%)\n", + "3 family 733 16.69 family (16.69%)\n", + "4 order 191 4.35 order (4.35%)\n", + "5 class 132 3.01 class (3.01%)\n", + "6 phylum 52 1.18 phylum (1.18%)\n", + "7 domain 282 6.42 domain (6.42%)\n", + "8 life 8 0.18 life (0.18%)\n", "9 notFound 0 0.00 notFound (0.0%)" ] }, - "execution_count": 11, + "execution_count": 18, "metadata": {}, "output_type": "execute_result" } @@ -1083,7 +1072,7 @@ }, { "cell_type": "code", - "execution_count": 12, + "execution_count": 19, "metadata": {}, "outputs": [ { @@ -1120,37 +1109,37 @@ " \n", " 1\n", " phylum\n", - " 14\n", + " 13\n", " \n", " \n", " 2\n", " class\n", - " 17\n", + " 16\n", " \n", " \n", " 3\n", " order\n", - " 35\n", + " 33\n", " \n", " \n", " 4\n", " family\n", - " 58\n", + " 56\n", " \n", " \n", " 5\n", " genus\n", - " 182\n", + " 178\n", " \n", " \n", " 6\n", " species\n", - " 349\n", + " 342\n", " \n", " \n", " 7\n", " genome\n", - " 384\n", + " 376\n", " \n", " \n", "\n", @@ -1159,16 +1148,16 @@ "text/plain": [ " taxa_level count\n", "0 domain 2\n", - "1 phylum 14\n", - "2 class 17\n", - "3 order 35\n", - "4 family 58\n", - "5 genus 182\n", - "6 species 349\n", - "7 genome 384" + "1 phylum 13\n", + "2 class 16\n", + "3 order 33\n", + "4 family 56\n", + "5 genus 178\n", + "6 species 342\n", + "7 genome 376" ] }, - "execution_count": 12, + "execution_count": 19, "metadata": {}, "output_type": "execute_result" } @@ -1179,7 +1168,7 @@ }, { "cell_type": "code", - "execution_count": 13, + "execution_count": 20, "metadata": {}, "outputs": [ { @@ -1235,57 +1224,57 @@ " 3\n", " 0-0.4\n", " 1\n", - " 0.03\n", - " 0-0.4 (0.03%)\n", + " 0.04\n", + " 0-0.4 (0.04%)\n", " \n", " \n", " 4\n", " 0-0.5\n", " 1\n", - " 0.03\n", - " 0-0.5 (0.03%)\n", + " 0.04\n", + " 0-0.5 (0.04%)\n", " \n", " \n", " 5\n", " 0.5-0.6\n", - " 40\n", - " 1.33\n", - " 0.5-0.6 (1.33%)\n", + " 39\n", + " 1.41\n", + " 0.5-0.6 (1.41%)\n", " \n", " \n", " 6\n", " 0.6-0.7\n", " 34\n", - " 1.13\n", - " 0.6-0.7 (1.13%)\n", + " 1.23\n", + " 0.6-0.7 (1.23%)\n", " \n", " \n", " 7\n", " 0.7-0.8\n", " 18\n", - " 0.60\n", - " 0.7-0.8 (0.6%)\n", + " 0.65\n", + " 0.7-0.8 (0.65%)\n", " \n", " \n", " 8\n", " 0.8-0.9\n", - " 27\n", + " 25\n", " 0.90\n", " 0.8-0.9 (0.9%)\n", " \n", " \n", " 9\n", " 0.9-1\n", - " 58\n", - " 1.93\n", - " 0.9-1 (1.93%)\n", + " 40\n", + " 1.45\n", + " 0.9-1 (1.45%)\n", " \n", " \n", " 10\n", " 1\n", - " 2823\n", - " 94.04\n", - " 1 (94.04%)\n", + " 2610\n", + " 94.29\n", + " 1 (94.29%)\n", " \n", " \n", "\n", @@ -1296,17 +1285,17 @@ "0 0-0.1 0 0.00 0-0.1 (0.0%)\n", "1 0-0.2 0 0.00 0-0.2 (0.0%)\n", "2 0-0.3 0 0.00 0-0.3 (0.0%)\n", - "3 0-0.4 1 0.03 0-0.4 (0.03%)\n", - "4 0-0.5 1 0.03 0-0.5 (0.03%)\n", - "5 0.5-0.6 40 1.33 0.5-0.6 (1.33%)\n", - "6 0.6-0.7 34 1.13 0.6-0.7 (1.13%)\n", - "7 0.7-0.8 18 0.60 0.7-0.8 (0.6%)\n", - "8 0.8-0.9 27 0.90 0.8-0.9 (0.9%)\n", - "9 0.9-1 58 1.93 0.9-1 (1.93%)\n", - "10 1 2823 94.04 1 (94.04%)" + "3 0-0.4 1 0.04 0-0.4 (0.04%)\n", + "4 0-0.5 1 0.04 0-0.5 (0.04%)\n", + "5 0.5-0.6 39 1.41 0.5-0.6 (1.41%)\n", + "6 0.6-0.7 34 1.23 0.6-0.7 (1.23%)\n", + "7 0.7-0.8 18 0.65 0.7-0.8 (0.65%)\n", + "8 0.8-0.9 25 0.90 0.8-0.9 (0.9%)\n", + "9 0.9-1 40 1.45 0.9-1 (1.45%)\n", + "10 1 2610 94.29 1 (94.29%)" ] }, - "execution_count": 13, + "execution_count": 20, "metadata": {}, "output_type": "execute_result" } @@ -1324,35 +1313,35 @@ }, { "cell_type": "code", - "execution_count": 14, + "execution_count": 21, "metadata": {}, "outputs": [ { "data": { - "image/png": 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", + "image/png": 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", "text/plain": [ "
" ] }, - "execution_count": 14, + "execution_count": 21, "metadata": {}, "output_type": "execute_result" } ], "source": [ - "from MetaX.utils.TaxaFuncPloter.basic_plot import BasicPlot\n", + "from metax.taxafunc_ploter.basic_plot import BasicPlot\n", "\n", "BasicPlot(sw).plot_taxa_stats_pie(theme='bmh')" ] }, { "cell_type": "code", - "execution_count": 15, + "execution_count": 22, "metadata": {}, "outputs": [ { "data": { - "image/png": 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", + "image/png": 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", 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" ] @@ -1366,7 +1355,7 @@ "= 3)'}, xlabel='Taxa level', ylabel='Number of taxa'>" ] }, - "execution_count": 15, + "execution_count": 22, "metadata": {}, "output_type": "execute_result" } @@ -1377,12 +1366,12 @@ }, { "cell_type": "code", - "execution_count": 16, + "execution_count": 23, "metadata": {}, "outputs": [ { "data": { - "image/png": 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", + "image/png": 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lc6xKpSI7O1v5pZlXgwYNlH+/+eYbIKdPT96aj4ULF+Y77tatWxrBnIeHB5UqVQLQ2c/pzp07ANSvX185f/369bl16xa3b9/W/2aBR48ekZmZCUDDhg0BcHFxoXLlysp1ikNkZCTp6ekArF+/nvXr12vsDw8P1wjmKlasiKenJ5DzPOTel1qt5tNPP9U4Njs7m9u3b2sEZfXq1cPMzAwzMzNsbGx4/Phxgb/uC2NlZaWM4G3QoAE7duxArVYTFRWlEcw1bdpUaerJm+86deoo2729vblw4QLx8fH58pRbjvK+BpGRkSQkJBAfH68cr1KpsLCwoE6dOhw+fFjr6962bVsAjZoFfeR93b29vQGoWrUqLi4uREVFcfv2bY1grlKlSlSuXBnI+YEVHh6uvEc8PT0xNDTk+PHjXLlyhYoVK1KzZk1at25d6PWLo3znVatWLeW1ql+/Pn/++SdRUVGo1WrlvI8ePWLw4MEax0VHRys1O7l0vU5Foe97LzdvycnJjBo1SuMcuQFbzZo1sbCwICwsjOHDh1OhQgWqV6/+j/sS1qpVS+mg7+joyOPHj7V+7kFOH7PcmqV9+/YpzYu5bt26BcD9+/eB/3tdjYyMqFu3rkYwl5sG/q/seXp6YmVlxdOnT7Ve39LSkvbt27Nz505++umnIt1n3vfGs++TvI+rVq2KgYEB0dHRRTp/UeVeM7dW99my90/eTy8rCeZeMi4uLjRu3Jjjx48XWDuXt5YrJSVFZ7rcX1u5gVTeX1+5wVxuTYc+8qZ99dVX831gWFpaajzO7Y/0TxX1i7s0VKlSJV8T8rNNZM8+D7nPo6GhodYpTkxMTDQe5+07k7e/SUkrrKkPNMvEv329cs+l7Tz/tizputaz8pbhZ3+AvPLKK8ydO5eTJ09y9+5dwsPD+fPPPzl79qzWHzeFKYnynfu+hpygPW8fr1y5A31Kk6mpqfJDLy+VSoWdnR3z5s3j2LFj3L59m9u3b3Pt2jWOHz/O0qVLizyaXNv7R9frn3d7btNfXrk/jHNfu4JeQ13BVWGfuR06dODAgQP88ssv+d6DLi4uyv/v3r2rURt39+5djXQuLi4YGBigVqu5ceMGHTp0AHJq8J/tb1uQChUq8Pvvvyu1Znlr53JraFUqFc7Ozho/6G7cuEHVqlWVAWd5+2BC8b+fXmQSzL2EunXrxqlTpzTemLly39i5v6hiYmK4d+9esefhwoULNG3alAsXLijbXF1dNT5EO3bsqHSmzszM5LffflNqe4qiatWqXL9+nYsXL9KpUycApWmiqHO5OTs7Y2RkRGZmJufPn6dGjRo8evSo2J8jV1dXpb9Zo0aN6Ny5M5ATZP/5558aH7ja5NaOZmVl0a9fP2rUqAHkNFWdP39eZ/OPNnkDv2f7f+ny9OlTpUk89zU2MDBQRvAWlO8HDx7w+++/k5ycjLm5OefOnQNymqNtbGyIiYlR0l+4cIE333xT4zVwdXXF1taW8uXLEx8fz9mzZ3n77bdJSUnh999/B/R73XPvu7B7znuus2fPKs2suU08z07jUJCHDx9iYmJCz549Abh27RozZ87kwYMHJCYmatRq5r1+cZXvvK5evcrTp0+xsLDg119/BXK+dFUqFdWqVePy5cuYmpry8ccfK/l6/Pgx4eHhlCtXTq/XCf7veU5PTyc7O1tn8KLvey9vy8DIkSOVYPPp06dcuXKFqlWr8vjxY1JSUvDz8wMgLi6O0aNH8+TJEx48eKD0uSoJtra22NvbExcXx+uvv87AgQOVe75+/bryGVipUiWuXbvGr7/+SqdOncjMzMzXDy9vsHr+/Hl8fHyUvmwFsbS0pEOHDmzfvp3U1FSNfW+88YZSs7d79248PT2VARC7d+8GcqY38fT0xMzMDC8vL86dO8e5c+c4evSoXk34z3r77bc5cOAAAJs3b9YYAJHbny43X2+88Yby3t65cyevvvqqzilj/sn76WUlwdxLyMnJiaZNmyqdrvOqVasWZ8+e5caNG3z++edER0cX22CJvDZu3MjevXuV/hnu7u7KF0/uCM8vv/yS7du3o1KpiI2NJT09nYCAgHy1c4Xx8/NjwYIF3Lp1S+lX8fjxY1QqVYHD87UxMzOjRYsWHDx4kP379/Prr7/y+PFjDAwMirU2wszMDF9fX3bu3Mn333/PoUOHMDU1JTY2ltTUVCZPnlxg37XXX3+dWrVqERYWxowZM3B1dSUzM5PY2FgyMzN1jmbWxtnZGUNDQ7Kyspg7dy729vb07dtXo4/Ms4yNjVmwYAH29vZKs1Djxo0L/fD09fXl/PnzSj9Jc3NzJSjo1q1bvvRnzpzh2rVr/P3332RlZWFhYaGMUuvWrRtr1qzhwoULjB07lpSUFJ4+fYqJiYnOEYt55Q78CA8P59NPP8XOzo6JEyfmS5db233y5Ek2b97MoUOHiI2NJTs7mwoVKig/SPQRFhbG2rVrKV++PNbW1sqPqnLlymFlZaX1mOIs33mlp6czfvx4zMzMlD5GuX2sfHx8OHz4MHFxcXz00Ue4uLjw9OlT4uPjcXd3V6atyFXQ65T7PD958oSPP/4YCwsLrX0U9X3vNWrUiH379hEVFcUnn3xCxYoVSUlJIS4ujvLly/PWW28RGRnJ3LlzKVeuHOXKlVOa5E1MTLTWNBa37t27s3r1ag4ePMjFixextrYmNjaW5ORkhgwZQpUqVejYsSPXrl3jxo0bfPTRR6jV6nytJM7OztSvX5+LFy+yceNGgoODiY2NVX4IFqR9+/YcOHAgX3OsmZkZ/v7+LF++nKioKMaOHYuTkxPR0dFkZGRgaGiIv7+/EnQOHDiQe/fuERUVxerVq/n+++8pX768Rt+7wtSoUQNfX1/27dvH+fPnGT58OLa2tjx8+JDs7GzKlSvH+++/D+R8towcOZKFCxeSkJDA559/jr29PRYWFvma7v/J++llJaNZX1Jdu3bVOjKvZcuWtGrVCktLS2JjY2nfvn2BX9r/VO4UIgYGBnh6emp0Rvf396dnz55UqFCB6Ohonjx5QpUqVejRo8c/agqrXbs2n3zyCa+99hpJSUkkJSVRo0YNPvnkE70ns8yrT58+NG3aFFNTU5KTk+natSvVq1cv8nkK06NHDwYNGkSVKlX4+++/iY+Px8XFhS5duih9rnRRqVRMmDCBTp064eDgQFRUFCkpKdSoUUPpCK8va2tr+vfvT/ny5UlISODWrVuF/vK3tbXF39+fjIwMjIyMaNiwIf379y/0WlWqVGHKlCnUrl2bzMxM/v77b6pWrcqIESO0zu32/vvvY29vT1ZWFhUrVmTcuHFKsN+yZUtGjhxJ1apV+fvvv8nMzMTT05MpU6ZoNB3p0qJFC7y8vDA3N+fevXsFjlgeMmQI3bp1w9HRkUePHmFmZkbTpk2ZMmUKpqamhV4rV9WqValXrx7Z2dncv38fAwMDateuzccff6yzxqq4y3euhg0b0rp1a1JTU7G0tKRr165KAFauXDlmzJjB22+/jampqfIlWr9+fTp27JjvXAW9TvXq1aNFixZYWVkRFRXFrVu3dP6A1Oe9Z2JiwrRp02jVqhXW1tZERkYqr33u1CpOTk54e3tjbGys7H/ttdcYP358kX8s/hPNmzdn9OjRVK9enaSkJKKjoylfvjzt27dXWh+8vLzo27cvNjY2pKSkKM9T7j3m8vf3x8vLCyMjIzIyMvD391dGAz/bnSIvCwsLra9V7rVnzJhBgwYNMDc35+HDh5ibm9OgQQNmzJihEazb2toya9YsunXrRqVKlUhJSeHhw4fY2dnRuHFjxo8fr9d7oE+fPowePZpatWqRnZ1NdHQ0Dg4OtG3bltmzZ2uM+nd3d+eLL76gZcuW2Nvb8/jxY+Lj43F1daV9+/Z88MEHwD97P72sVKGhofp3eBJC/Kc9j6WudC2VJopHcS2PJa/Tv5Oens7Tp0+VaYAyMjKYNm0aEREReHt7M3r0aCDnebazs1N+nN+4cYPp06cD8PHHHxepS4V4eZVKM+vcuXNJSEhApVJhbm5O//79qVq1KrNnzyY2Nlb51dGsWTOlw2VaWhqBgYGEh4ejUqno3bu3MoJKrVazadMmLl26hEqlokOHDvj4+JTGrQkhhBCFSkxMZOzYsbz66qtYW1tz584d4uPjMTY2pkuXLkq6EydOEBwcTNWqVVGr1Vy9ehXIabr8NzWzxS132pxn1atXT+m7KEpOqQRzo0ePVqq6L1y4QGBgoDLPVf/+/fPNWQawf/9+jIyMWLJkCdHR0UyfPh0PDw8sLS05efIkkZGRLF68mOTkZCZPnszrr78uy30IIYQok8zNzfH09OT27duEh4djYWFB/fr16datm8bAlqpVq1K+fHmuX79ORkYGDg4ONGjQAD8/vzK1bGPulCvPku/h56PUm1mPHTtGcHAws2fPZvbs2XTs2FFrMPfJJ58wdOhQZVTL8uXLqVOnDs2bN2fhwoU0a9ZMmYdn69atmJqaal3mRAghhBDiZVJqo1lXrlypLLmRdwTZd999R1BQEK6urvTu3VvpFBkXF6cxN42Dg4MyMeOz89Y4OjrqnExTrVbz+PFjzMzM/nMdJIUQQgjxYsnOziY1NRU7OzudtbGlFswNHz4cyKmZ27p1K5988gnDhw/H3t6e7OxsQkJCWLhwocbEf/oGXwVNqPj48WOlY6kQQgghxItg+fLlyqTTzyr1eeaaNWvGunXrSExM1JgZu23btmzdulWZ+M/e3p6YmBhl0tvY2FhlqSkHBwdiY2OVJtjY2FidN5w7d86FCxdKdB6auXPnMmnSpBI7//P0stzLy3IfIPdSVsm9lD0vy32A3EtZVdL38vTpU7y8vApcueS5B3PJycmkpaVhZ2cH5MxqbWVlhbm5OQkJCco8Y+fOncPGxkaZhNTb25uQkBBlfbawsDAGDRoE5MyXdOjQIRo0aEBycjJnzpzROvkn/F/tnpWVVYnODm1iYvLSzD79stzLy3IfIPdSVsm9lD0vy32A3EtZ9bzupaDWyecezKWkpBAQEEB6ejoGBgZYW1szYcIEMjMzWbhwIRkZGcr28ePHK8d16tSJ1atXM27cOFQqFQMHDlRq1po2bUp4eLiS3tfXV1lKRgghhBDiZfbcgzl7e3tmzZqldd/s2bN1HmdmZqazr5uBgYGyFEhZkTuT98vgZbmXl+U+QO6lrJJ7KXtelvsAuZeyqizcS6lPTfK8JScn4+/vz9WrVzWqRVNTUwtd604IISBn/ciC+q8IIURxSUxMxN3dncDAQCwsLLSmKfUBEGVBamoqb7/9trJIrxBCFMTJyYnTp09LQCeEKBMkmCNnTbzo6GjOnz//0nTIFEKUjMTERBo0aEBGRoYEc0KIMkGCuTysra0lmBNCCCHEC6XsLOwmhBBCCCGKTII5IYQQQogXmARzolCurq4cO3asVPMQFBSEl5cXlSpVIigoSGua5cuXU7t2bVxdXTl16tRzzmGOe/fu4erqqnNt4OKSnJxM/fr1iYiIULaVhfsvC+7fv0/9+vVJSkoq7awIIcRzIcFcCevRoweurq64urpSo0YNOnXqxJEjR0o7W1odO3ZM62TLv/32G2+99VYp5ChHeno6n332GSNHjuTixYt06dIlX5r79++zYMECFixYwG+//YaXl1eJ52vr1q14e3trbKtYsSK//fYbVapUKdFrr1u3jkaNGinXKY37L6sqVapE48aNCQwMLO2sCCHEcyHB3HMwePBgfvvtNw4cOICnpyeDBg3SWnOTnZ1danPdpaen69zn5OSEiYnJc8yNpkePHpGamkrr1q1xdnbG3Nw8X5qIiAiys7Np165dqebX0NAQJycnDA0NS+wa2dnZbNq0iXfffVfZps/9p6WllVieypru3buzZcsW1Gp1aWdFCCFKnARzz4GFhQVOTk68+uqrzJkzBwMDA44fPw7kNGFu3bqVnj174ubmxoEDB8jMzGT27NnUrl0bNzc3evfuTXh4uHK+xYsX07VrV1auXEnt2rXx8PBg7ty5ZGf/3/zP4eHh9OnTBzc3N2rXrs2sWbPIzMxU9nt7e/PVV1/h7++Pm5sb69ato0+fPkqeXF1dlebMZ5tZDx8+TOvWralWrRqNGzfmhx9+UPblNjP+8ssvdOrUierVq9OjRw8iIyMLfI5++OEHGjduTLVq1WjdujWHDx8G4NSpU0qt4Ntvv42rqyv37t3TODYoKEgJbCpVqqTULnp7e7N161aNtHnv5dSpU7i6unL8+HFatGhBzZo1GTRoEH///beSPneZuQYNGvDqq6/SvHlzgoODOXXqFB9//DH3799Xnq9Tp05pbWbVdW/65uFZv/32G7GxsTRq1KjA++/RowczZ87k448/5rXXXmPmzJlATg1shw4dcHNzo0mTJmzYsEHj/KdOnaJ58+a4ubnRv39/vvrqK40ayB49ejB//nyNY559ru/evcuAAQOoUaMGb775JpMnTyYlJUUj/apVqxgyZAjVq1enefPmnDhxQuOcx44dw9fXl1dffZU6deooC1n37ds332oxx48fp0aNGkrTauPGjYmPj+fixYs6n0chhHhZSDD3nBkZGWFsbKwRWC1evJj+/fsTGhqKt7c3X3/9NT/88ANLlixh//79mJmZ8f7775OVlaUc89dff3Hx4kV++OEHFixYwIYNG9i2bRsAWVlZDBo0CBMTE/bt20dAQAA//vgjX3/9tUZevv76a1q0aMHhw4fx9fVl1apVQE6w8Ntvv2ltzrx37x4ffPAB7dq1IyQkhMGDBzN+/HjOnz+vkW7x4sV89tln7N+/n5SUFKZPn67zOTl//jzjx49n0KBBhISE0L59ez744APu3buHl5cXe/bsAWD//v389ttvVKxYUeP4Ll265Mt7USxbtoylS5fyww8/cPXqVZYtW6bsW7RoEVu3bmXGjBkcPnyYzz//HGNjY7y8vJg2bRoVKlRQrqmtabOge9M3D9rOWatWLYyMjAq9/82bN/PKK6/wyy+/MHToUG7evIm/vz/9+/dX7mfJkiXs3r0bgCdPnjB48GAaNWrEgQMHaNOmDV999VWRns/09HTee+89qlWrxs8//8y6deu4fPkyM2bM0Ei3cuVKfHx8CA4Oxtvbm9GjRys1xNevX6d///40adKEAwcOsHnzZmrUqAFAz5492blzp0at2/bt2+nQoQOWlpZAzvvMw8ODCxcuFCnvQgjxIpJ55p6jjIwMvvnmG54+fUrDhg2V7X379sXX11d5vG7dOsaOHUubNm0AWLp0KV5eXoSGhirbsrKyWLRoEeXKleO1117jzz//ZMOGDfTq1Ytjx45x7949du7ciZ2dHbVq1WL8+PEsXLhQY33btm3b0rdvX+Vxbu2fk5OTznvYtGkTHh4efPLJJwBUr16dc+fOERgYSIMGDZR0H374IY0bNwbA39+fKVOm6DznunXr6NChAx988AEAH3/8MUePHmXDhg1MnTqV8uXLAznr+mrLm7m5Oba2toXmXZfJkydTr149APr06cNPP/0EQEpKCqtXr2b58uV07NgRgKpVqyrHWVtbK82q//TeCsuDNpGRkRrXLOj+a9euzahRo5TH48aNo2/fvkot7CuvvMLgwYPZunUr77zzDjt37sTc3JxZs2ZhZGRE9erVOX36NL/++qvO/Dxr9+7d2NjYaATwn3/+OT179mTOnDlKE3THjh2VGsXx48ezZcsWwsPDcXd356uvvqJZs2Z8+umnyjneeOMNANq1a8ekSZM4ceIEzZo1IyUlhZ9++ok1a9Zo5MPZ2Zn79+/rnW8hhHhRSc3cc7By5Upq1KhB9erVWblyJXPnzsXT01PZn/f/T548ISYmhvr16yvb7OzscHNz49atW8q2atWqUa5cOeVxvXr1lP23bt2iWrVq2NnZKfvr169PfHw8jx8/1npdfd26dYs333xTY1v9+vU1moEBatWqpfzf0dGRx48fa9Qs6nPOvPdbktzd3ZX/Ozk5ERsbC8CdO3dIS0tTmjP/CX3vTVcetElNTdW7T+Czr/HVq1fZsGEDNWrUUP4CAgKUUbG3bt3ijTfeUGr9AOrWravXtfJe46+//tK4Rp8+fUhPT+fhw4dKumfvGVDu+9q1azqfdzMzMzp37syPP/4IwM8//4yNjQ1NmjTJly41NbVIeRdCiBeR1Mw9B++99x7+/v5YWlpqrcUp7iWB8vadK4i2gQTFde68wYBKpSrwWH3PWVQGBgYa59Y1uMTY2FjjcW7zXXHkS99z6MqDNnZ2dnrXOD37GiclJeHv70/v3r01tmt7vXRRqVT57itvt4GkpCS8vb3z9asDzZrDvPece019n/uePXvSu3dvkpOT+fHHH+nevTsGBpq/Tf/++2+NHxVCCFGYPn36EBMTg0qlwsrKilmzZuHp6cm4ceM4f/48ZmZmWFtbM3PmzHw/lk+dOkWvXr2YOXMm77//PgDx8fFMmDCBiIgIMjIyqFu3LvPmzftH378FkZq558DW1pZq1arp1QRoY2ODo6OjRsftx48fc+vWLapXr65su337NgkJCcrjS5cu4ebmBuQ0fd6+fVujFu7ixYvY29tr1NY9K/fLVVcNWu65n21yu3jxonLtf0LXOfPe7z9hb29PdHS08vjq1atFOr5atWqYmprqnLPNyMiowOcKSubePDw8uHnz5j8+Njw8nGrVqmn8Va5cGYBXX32VP/74Q+O+Ll++rHEOe3t7YmJilMdxcXEaz7OHhwe3bt2iQoUK+a7zbNCqi7u7e4Fz5dWvXx9XV1c2bNjAiRMn6NGjR740169fx8PDQ6/rCSEEwKpVqzh48CAhISEMHTqU8ePHA9C+fXtCQ0MJCQlh+PDhDBs2TOO4p0+f8sUXX9CyZUuN7cuWLaNKlSocPHiQw4cPExsbq3Ou1H9Dgrky6IMPPmDp0qUcOnSIa9euMXbsWCpVqkSLFi2UNIaGhkyYMIHr16/z008/sW7dOgYOHAhA8+bNqVy5MmPHjuXq1ascPnyYxYsXM3jw4AKvW6lSJQAOHTpEfHy81qks+vfvz19//cXChQu5desW69evZ//+/YWeuyCDBg3i559/Zv369dy6dYuFCxfy559/MmDAgH98TsgZMRkUFMSlS5e4fPlyvhGQhTE3N2fIkCFMmzaNn376iYiICI4ePUpoaCiQ83zFxsZy+fJl4uPjtdb8lcS9NW7cmEePHvHgwYMiHzt8+HAOHjzI/PnzuX79OteuXSMoKEgZ0ern58fTp0+ZNm0aN2/eZPPmzRw9elTjHG+99RY///wzJ06cICwsjAkTJmg0+3br1g1jY2OGDx/OpUuXuH37NsHBwcpoWn2MHDmSY8eOMW/ePG7evMmff/7J+vXrNdK8++67LFiwAE9PT2VwRK4HDx7w8OHDf9VELoT478ntfww53Z5ya/zbtm2rtGDUr1+fyMhIjRaUGTNmMGzYMKWPd15JSUmo1WrS09NJSUnJN4ivOEgwVwYNHz6cd999l7Fjx9KxY0dSUlJYv369xtxlHh4e1KlTh27dujF+/Hj69+9Pz549gZzmxXXr1pGamkqnTp0YM2YMPXr0YMSIEQVet3LlyowcOZJx48bxxhtvsGvXrnxpKlWqxNq1a/nll19o3bo1a9asYdGiRRqDH4qqQYMGLF68mDVr1tC6dWt++eUX1q5dq9QW/VMffvghr7/+Oj179mTUqFF8+OGHRT7HhAkT6NmzJ1OmTKFFixZMnz5dqbV666236NKlC7179+aNN97IN6K3pO7NwcGBli1bsm/fviIfW7t2bb777jvOnDlDhw4d8PPzY9u2bUp+bG1tWbNmDceOHaNt27b88ssvDB8+XOMcffr0oUOHDsqo2K5du+Lg4KDst7Ky4scff8TY2Jg+ffrg4+PDggULijQ4pWbNmmzYsIEjR47g4+ND37598/Uz7N69O5mZmVpr5fbt20fz5s1xdnYuytMjhBCMHj0aLy8vFixYQEBAQL79a9asoVWrVkqgd/jwYRISEjQGMuYaM2YMt2/fpm7dutSpU4fq1avTtm3bYs+zKjQ0tGQ6LJVRycnJ+Pv7c/XqVaytrQFITEzE3d1dY1tZtnjxYo4fP6412BL/DRcuXGDMmDEcPXq0RCcohpyVLpYtW8bZs2dL9DpF9ccff9ClSxcuXryo8WtYrVbTvHlzFi9erDFqvLi8aJ8XQoh/Ztu2bezdu5dNmzYp27Zv305AQAA7d+7EwcGBhIQEunfvzvfff4+DgwNjxoyhTp06Sp+5TZs2cePGDT7//HNSUlIYOHAg7777Lr169dI7H7mfOYGBgVhYWGhNIzVzQryAvLy88Pf31xgd+l+RkZHBvXv3WLRoER07dszXrPHw4UM++OCDEgnkhBD/HT179uTUqVPEx8cDOdMuLVmyRAncIGfkfXR0NJ06dcLb25v9+/ezaNEiFi1aBMD69evx8/PD0NAQKysrfH19S2TtbBnNKsQL6t/2KXxRnT9/np49e+Lu7s7GjRvz7a9YsaLSf1QIIfSVmJhIUlISLi4uQM60R+XKlcPOzo49e/awYMECgoKCNNYwb9iwIb///rvy+NmauSpVqhAaGkq9evXIyMggNDS0RNY6l2DuBTR+/HhlhI0QJe29997jvffeK+1sKBo1aiSTAQshit2TJ08YMmQIqampqFQq7O3t2bhxIyqVig8//BBHR0clSIOcpRS1DXjIa+bMmXz66ae0atUKtVpNgwYNGDRoULHnXYI5IYQQQvwnpKam6pxz1MbGhu+//z7f9sTERK5cuaL1mMTERI3Hs2bN0thuZ2fHN998o5EmPT1dWbpQG2Nj4yLPPyvBnBBCCCFeeqmpqXg1aMjj+LjSzkqB7Mrbc+H8uSIFdBLMCSGEEOKll5GRweP4OBy7forK2LS0s6NVdkYaMbvmkZGRIcFccSmoOvbf+CdVqKLsk/IihBBln8rYFAPjsvmZqnshx4JJMKdDamoqXt7ePC5gwfN/ys7BgQtnz8oX9EskNTWVhg28iYsv/vJiX96Bc+elvAghhNBOgjkdMjIyeBwbi92MRajMim9B3OzUFB5/PkGvKtTw8HDGjBlDfHw8tra2LF26lJo1a2pNGxsby0cffcSdO3cwNTVl3rx5WufZyl1oPXcota5OnbmCg4M5dOiQsmh6SEgIs2bNIisrCw8PDwICArC0tMx3nFqtZtq0aRw+fBiVSoW/v78yXURQUBDTp09Xlg+ztbXlxx9/BHLWAZ0wIef5GTFihLKqxYkTJ9i7d6/G4u0zZsygTp06dO3atcB7eB4yMjKIi49lZJe5mBbjL760jFS+2jOp2MtLWFgYU6dOJSYmBrVazaRJk+jYsaPWtPq+5lOnTuXMmTPK41u3bjF58mQ++OADrecdPHgww4YNw8vLiw0bNrBp0yYMDAxQq9W89957Oo87cuQI8+bNQ61Wk5mZybBhw5RyMnHiRC5cuED58uVZu3YtNjY2ZGdn069fP2bPnk3VqlUBiI6OZtCgQezatUtZokcIIV5U8ilWCJWZOQbFGMwVpQp14sSJ9O3bl169erFv3z7Gjx/P3r17tab94osvePPNN9myZQuXLl1iyJAhnDp1Kt8XlZGREcOHD8fOzo7evXsXmof58+cr63YmJSUxYcIEtm/fTvXq1Zk8eTLLly9n0qRJ+Y7bvn07169f5/jx4zx58oT27dvTpEkTZYH5Jk2aEBgYmO+4L7/8klmzZlG7dm1at25Nz549SUlJYcmSJfnW5hw5ciR+fn506dJFWValtJkam2FqXHzlpSj0LS8pKSl88MEHBAQE0LBhQzIzM0lISNB6zqK85rmjuCAnWHr77bfp3Lmz1vP+9ttvJCQk4OXlBeSs55ob7CcmJtKqVSvefvttPDw8NI7Lzs5m5MiR/PDDD3h4eHDv3j2aN29Ox44duX//PuHh4Rw6dIilS5eyfft23n//fbZs2UKjRo2UQA7AycmJevXqsX379iLNxC6EEGVR2fgGFPnExsZy5coVunfvDkCnTp24d+8e9+7d05p+7969ypdh3bp1cXR05Ny5c/nSmZqa0rRpU43FhHU5e/YsNjY2yrqdhw8fpnbt2kpANmDAAJ1Liu3Zs4d+/fphaGiInZ0dnTt3Zvfu3YVe09jYmJSUFFJTU5UAbcmSJQwePDhfnh0cHKhSpQonTpwo9Lwvu6KUl507d1K/fn2l5tbIyAh7e3ut5y3Ka57Xjz/+SPPmzXWux7p582a6deumPLaxsVH+n5KSQlZWFiqVSuf5nzx5AuQEfnZ2dpiYmGBkZER6ejpqtZrk5GSMjY159OgRu3fvZsiQIfnO0bVrV7Zu3VrovQghRFknwVwZ9eDBA5ydnZWaNZVKhaurK5GRkfnSxsfHo1arNb6QK1WqpDVtUZw6dUqpOQGIjIxUmkYBKleuzMOHD1Gr89c3PnjwQCPts/k5c+YMPj4+vPPOOxoLxo8ZM4YVK1bw3nvvMXXqVK5cucLdu3d1NgF6eXlJMEfRysv169cxNTWlf//++Pj4MHr0aOLitA/VL8prntf3339fYM3v6dOnNcoWwL59+2jZsiXe3t4MGzaMWrVq5TtOpVKxatUqBg8eTMOGDfHz82Pp0qWYmJhQvXp1GjVqRLt27bh79y7du3fn888/Z+rUqVqbUmvXrs2VK1dITk4u8F6EEKKsk2bWMuzZmons7OxiSauvqKgopUZG13UKoiutj48PXbp0wdzcnBs3btCnTx8qVKhA/fr1qVmzJjt27AAgKyuLPn36sHz5cnbt2sX+/fuxsrLi888/p1y5cgA4OjqWuQXgS4u+ZSAzM5MjR46wd+9eXFxcmD9/Pp999lm+iS11nbcw58+f5+nTp7Ru3VpnmqioKBwdHTW2+fr64uvry7179/jggw9o1apVvvKXmZnJl19+yfr162nQoAGXLl3igw8+4ODBg9jZ2TFx4kQmTpwIwIEDB3B1daVSpUqMHTuWp0+f4uvryzvvvAPk1ALb2try6NEjqlWrVqR7FEKIskRq5sqoihUrEhUVRWZmJpDzxfzgwQNcXV05duwYPj4++Pj4sGzZMmU5kby1K5GRkRrrx/0T5ubmpKamKo9dXV01mu3u3buHi4uL1v5qFStW1Eh7//59JT/ly5fH3DynX1mNGjVo1aoV58+fz3eOwMBAfH19sbW1JSAggJUrV/LWW2+xZs0aJU1aWpqM8qTg8vKsSpUq0ahRIypUqIBKpaJbt25cunQJyBnEkFu2wsLCivSa5/ruu+949913MTQ01Jnm2bKVV+XKlalXrx4HDx7Mt+/PP//k0aNHNGjQAMjpUuDs7Mxff/2lkS4xMZFvvvmGCRMmsGbNGt566y1WrlxJQEAAKSkpSjopP0KIl4EEc4XITk1BXYx/2akphV+UnP5gnp6ebN++HYD9+/dTqVIlKleuTLNmzQgJCSEkJISPPvoIyKnVyB2ocOnSJaKjo7WOZi0KDw8Pbt68qTxu2bIlly9fVrZt3LhRqeV4lq+vL5s3byYrK4vHjx+zZ88eunTpAuTUyuSKiYnh5MmTeHp6ahwfERHBsWPH6NevHxkZGWRmZqJSqVCpVCQlJSnpbty4ka+TfGlKy0glLSOlGP+0BzzPKqi8PKtz585cvnxZWW4mNDRUeQ5nzZqllK1atWoV6TWHnAET+/fvL3RQQa1atTTK1o0bN5T/x8XFceLECa2va27Qmnvs7du3uXv3Lq+++qpGujlz5jBmzBjMzc1JTk5Wyk5GRoYyF2BMTAyGhobKotpCCPGikmZWHYyNjbFzcODx5xOK/dx2Dg4YGxsXmm7evHmMHTuWFStWYG1tTUBAgM60kydPZvTo0TRu3BgTExOWL1+u9BNauHAhzs7O9O/fH4B27doRHR1NQkIC9evXp1GjRqxYsSLfOdu0acPSpUvJysrC0NAQKysrFi1axKBBg8jKysLd3V0jTz4+PmzatAkXFxd69OjB5cuXadq0KQDDhw+nRo0aAGzYsIHg4GCMjIzIzs7G39+fJk2aaFx72rRpzJw5E5VKhY2NDX5+frRu3RpLS0tWrlwJ5NQ+nThxgg8//LDQ57KkGRsbY1/ega/25B/l+W/Zl//35WXChAm0bduWtm3b4urqyqhRo+jSpQuGhoZUqFBBY8qXvIrymkPOwBdPT898wdWzOnXqRGhoqPK6r1u3jjNnzmiUiWbNmgE50+MEBwezaNEiHB0dmT9/PkOHDlWaf7/44gsqVKignPv8+fOkpaUpxw8cOJCRI0fy9ddf0717d2WwRWhoKO3bty9yM7IQQpQ1qtDQ0H/fueoFkpycjL+/P1evXsXa2hrIaZJxd3fX2AYyoz/ApEmTaNSokc4pJkpTaGgoO3bs0BqIlgYpL/p7+vQpXbp0Yd++fVhYWJRKHvz8/Fi4cGG+fnmF0fV5IYQo23Lfu07vfl52V4DISCX6hxlaY5TAwECdn5dSM1cAMzOzl+5LtKg+/vhjQkNDSzsbWj158oTJkyeXdjYUUl70Z2VlxfTp04mIiMDd3f25Xz8mJob+/fsXOZATQoiySII5UaDy5csrc5eVNQX13RJlX24zaGlwdHTEz8+v1K4vhBDFSQZACCGEEEK8wCSYE0IIIYR4gUkwJ4QQQgjxApM+cwWQ0YmiKKS8CCGEKA0SzOmQmpqKt7cXsbGPi/3cDg52nD17odAv6PDwcMaMGUN8fDy2trYsXbqUmjVrak0bGxvLRx99xJ07dzA1NWXevHlaJw0OCwtj8uTJxMbGYmxsTP369Zk1axampqZazxscHMyhQ4eUechCQkKYNWsWWVlZeHh4EBAQgKWlpdZj9+/fz5IlS1Cr1WRnZ7Np0yYqV65McnIykydP5vfffyc9PZ0OHTowadIkVCoVly9fZsKECWRkZDBixAh69uwJwIkTJ9i7d6/GfGgzZsygTp06dO3atcDn8XlITU3F28uL2MclUF7s7Dh7ofjKyw8//MDq1auVx1FRUflW1shL39c8Pj6eCRMmEBERQUZGBnXr1mXevHnKah/PGjx4MMOGDcPLy4u1a9eyZcsWDAwMUKlUjBo1SucAlyNHjjBv3jzUajWZmZkMGzZMKSeXL19mypQppKWlkZaWRq9evRgxYgQAS5cuZc+ePVhaWrJq1SplzdkxY8bQt29fZVWJ1NRUunbtyrZt25Q56YQQoiyTYE6HjIwMYmMf8/l0F8zMim9S0dTUbGZMf0hGRkahX84TJ06kb9++9OrVi3379jF+/Hj27t2rNe0XX3zBm2++yZYtW7h06RJDhgzh1KlT+RYYNzU1Zfbs2Xh4eJCVlcXIkSP55ptvGD16tNbzzp8/X1lZIikpiQkTJrB9+3aqV6/O5MmTWb58OZMm5Z8o98qVKyxYsICgoCBcXFxITExU8rJ8+XIADh48SGZmJgMGDGDfvn107tyZL7/8klmzZlG7dm1at25Nz549SUlJYcmSJaxfv17jGiNHjsTPz48uXboUuLzU85CRkUHs48eseKUq5sWYlxS1mg/v3inW8vLuu+/y7rvvKo9bt26tc2RnUV7zZcuWUaVKFdatW0dWVhb9+/cnKCiIgQMH5kv722+/kZCQgJeXFwA1a9Zk165d2NjYEBkZSfv27alfv74ScOXKzs5m5MiR/PDDD3h4eHDv3j2aN29Ox44dsbKy4uOPP1YmSH78+DHNmzenTZs2VKhQgR07dnDkyBF27NjBunXrmDZtGkePHsXCwkIJ5CBnihk/Pz8CAwMZP358gc+5EEKUBdJnrhBmZirMzAyK8U+/wDA2NpYrV64o04J06tSJe/fuaayTmdfevXuVL826devi6OjIuXPn8qV79dVXlWWSDA0NqVu3LhEREVrPefbsWWxsbJQloQ4fPkzt2rWVubkGDBjArl27tB77zTffMHToUGVlAGtra6WG5q+//qJly5aoVCqMjY1p1qyZsgyVsbExKSkppKamKgHakiVLGDx4MLa2thrXcHBwoEqVKpw4cUJrHkqDuYEBFsX4p29gWNTykuu3334jJiaGtm3bat1flNcccoI/tVpNeno6KSkpVKxYUWu6zZs3061bN+Vx06ZNlVowV1dXHB0defDggc7rPHnyBMiZTNPOzg4TExNlX0JCApAzQbixsTHlypXD0NAQtVpNRkaGsj0lJYWAgACtgWnXrl3ZunWrzusLIURZUio1c3PnziUhIQGVSoW5uTn9+/enatWqJCQksGrVKh49eoSxsTGDBg3itddeA3IWxA4MDCQ8PByVSkXv3r2VX9NqtZpNmzZx6dIlVCoVHTp0wMfHpzRurdg8ePAAZ2dnpTZLpVLh6upKZGRkvvU24+PjUavV2NvbK9sqVapEZGRkgddITk5m69atOifePXXqlFJzAhAZGalRU1K5cmUePnyIWq3OVzN2/fp1qlSpQvfu3UlMTKRNmzaMHz9eCSD37t1L+/btSU9P55dffuHp06dATpPXp59+SnJyMlOnTuXKlSvcvXtXZx69vLw4ceJEqc5ZVhYUpbzk9d1339G9e3edy4UV5TUfM2YM/v7+1K1bV2mq1BUknj59mmHDhmndd+zYMRISEnjjjTfy7VOpVKxatYrBgwdjYWFBQkICgYGBSjC3ZMkSBg0axIIFC4iPj2f+/Pk4OTkB4O/vT+fOnXFyciIgIICFCxcybNgwras4ODs7Y2Jiws2bN2ViYSFEmVcqwdzo0aOVPjcXLlwgMDCQOXPmEBQURPXq1Zk4cSK3bt1i2bJlLF26FENDQ/bv34+RkRFLliwhOjqa6dOn4+HhgaWlJSdPniQyMpLFixcr/bFef/11nbUCL4pn14zMzta98lpR0kJOs+CwYcNo3rw57dq105omKioq3xeZvutYZmZm8vvvv7N582YgZ33MTZs2MXDgQEaMGMHcuXPp1KkTtra2SkAGOc1tO3bsACArK4s+ffqwfPlydu3axf79+7GysuLzzz+nXLlyQM7kr2fPntUrTy+7opaBlJQU9u7dy+7du4t0Xl327duHh4cHQUFBpKSkMHDgQIKCgujVq1e+tFFRUTg6OubbHhYWxrhx41i5cqXWvnaZmZl8+eWXrF+/ngYNGnDp0iU++OADDh48iJ2dHatWrWLKlCl06dKFu3fv0qNHD+rWrUv16tUZOHCgUnv9+++/ExUVRYsWLfjss8+IjY3F29ubDz74QLlWbu2gBHNCiLKuVJpZ83aeTk5OVr4szpw5o9Soubm5YWtry7Vr1/Ltc3Jywt3dnQsXLij7WrdujYGBAVZWVnh7e3P69OnneUvFrmLFikRFRZGZmQnkfDE/ePAAV1dXjh07ho+PDz4+Pixbtozy5csDEBcXpxwfGRmJq6ur1nPnBnLOzs7MnDlTZx7Mzc1JTU1VHru6umo02927dw8XFxet/dVcXV3p1KkT5ubmmJub06FDBy5dugTk9EmaMWMGISEh/Pjjj5QrV44aNWrkO0dgYCC+vr7Y2toSEBDAypUr83XUT0tLk5GeFFxedNm3bx/Vq1fXGCQxdepUpWyFhYUV6TVfv349fn5+GBoaYmVlha+vL6dOndJ67WfLFuTU5g4YMIAlS5ZoHbwD8Oeff/Lo0SOlVr5u3bo4Ozvz119/ER8fz88//0yXLl0AeOWVV6hXrx4XL17UOEdmZiazZs1ixowZ7NixA3t7e1avXs3PP//M3bt3lXRpaWk6B28IIURZUmp95lauXMmHH37IDz/8wLBhw0hMTCQ7O1tj9Jijo6MSoMTFxeHg4KDsc3BwUPbFxsZq7Mt73L+VmppNaqq6GP8Kri3Je3+enp5KX7L9+/dTqVIlKleuTLNmzQgJCSEkJISPPvoIAF9fX2WgwqVLl4iOjtb6hZiZmcmIESMoV64cCxYsKLDWxcPDg5s3byqPW7ZsyeXLl5VtGzdu1Dni0M/Pj6NHj6JWq8nKyuL48eNKX73ExERSUlIAiIiI4Ntvv2Xo0KEax0dERHDs2DH69etHRkYGmZmZqFQqVCoVSUlJSrobN24o5y0LUtRqkovxL0Wt1uu6BZUXXYKCgujTp4/GtlmzZillq1atWkV6zatUqaKs45uRkUFoaKjOdVdr1aqlUbZu3LhBv379WLBgQYFN5rlBa+6xt2/f5u7du7z66qvY2tpiZmam/JCLj4/n119/Vbpq5Prmm2/w8/PDyclJ48ekSqUiOTkZyKkVjoiIyHesEEKURaU2mnX48OFATv+YrVu3Mnz48EKbifRt7imseUkfxsbGODjYMWP6w399rmc5ONjp7KOU17x58xg7diwrVqzA2tqagIAAnWknT57M6NGjady4MSYmJixfvlzpP7Vw4UKcnZ3p378/e/bs4aeffqJWrVpKf6YGDRrwxRdf5DtnmzZtWLp0KVlZWUpty6JFixg0aBBZWVm4u7tr5MnHx4dNmzbh4uLCO++8w+XLl2nZsiWGhoZ4e3vz/vvvA3D37l2GDRuGkZERRkZGTJ8+HU9PT41rT5s2jZkzZ6JSqbCxscHPz4/WrVtjaWnJypUrgZzX+cSJE3z44YeFPpclzdjYGAc7Oz68e6fYz+1g9+/LS+4Iz9zX/M6dO/z+++/KDwBdivKaz5w5k08//ZRWrVqhVqtp0KABgwYN0nreTp06ERoaSpMmTYCcGsHExETmzJnDnDlzgJwy3aJFC4KDgwkODmbRokU4Ojoyf/58hg4dqnwefPHFF1SoUAHI+ZE4Y8YMMjMzlWlL6tatq1z3zp07nD59mk2bNgHQrVs3Bg8ezL59+/Dy8qJWrVoAnDt3jnr16snUJEKIF4IqNDT030c+/9LAgQNZsWIFH330EQEBAcoH6NSpU+nTpw8eHh588sknDB06FDc3NyBneos6derQvHlzFi5cSLNmzfD29gZg69atmJqaal0gPjk5GX9/fwYMGKB0mm7YsCH+/v5cvXpVozO0TAILkyZNolGjRnTu3Lm0s5JPaGgoO3bsYMWKFaWdFUDKS1E8ffqULl26sG/fPiwsLEo7O/kMHz6cPn36aK0lTExMxN3dPd/nhRCibMt97zq9+zkGxmXzM1WdkUr0DzMIDAxUZqRIT09n48aNBAYG6vy8fO41c8nJyaSlpWFnZwfA+fPnsbKywsrKioYNGxISEkL37t25desWCQkJSjOHt7c3ISEhuLm5ER0dTVhYmPKrv2HDhhw6dIgGDRqQnJzMmTNnmDhxYoH5mDRpkvJBnJiYqDWNmZnZS/clWlQff/yx0nRW1jx58kTnKNfSIOVFf1ZWVkyfPp2IiAidTbGlJTU1lbfffvs/P0JaCFF6mjZtSseOHYGcGGXjxo0Fpn/uwVzu3E7p6ekYGBhgbW3NhAkTUKlU9OnTh6+//ppx48ZhZGTE8OHDMTQ0BHKaZVavXs24ceNQqVQMHDgQKysrIOemw8PDlQk+fX19C+z4LfRXvnx5rTWcZYGuvlvixVBWgyUzMzP69+9f2tkQQgi9Pfdgzt7enlmzZmndZ2trq3UCT8j5gNW1SoGBgYHSH0sIIYQQ4r9EVoAQQgghhHiBSTAnhBBCCPECK7WpSV4EMjpRFIWUFyGEEKVBgjkdUlNTadiwYbFNPpyXvb09586dky/ol0hqaipeDb14HPe42M9tZ2/HhXMXpLwIIYTQSoI5HTIyMoiLi6NPnz7KfHTFIT09ne+++46MjIxCv5zDw8MZM2YM8fHx2NrasnTpUo2ll/KKjY3lo48+4s6dO5iamjJv3jytK0BEREQwZMgQsrKyUKvVuLm5sWDBAmWt02cFBwdz6NAh5s+fT1JSEv7+/vz+++8AXLlyRWfe4+PjmTBhAhEREWRkZFC3bl3mzZuHubk5ly5dYtq0afz555+0atWKwMBA5bjLly8zYcIEMjIyGDFiBD179gTgxIkT7N27l/nz5ytpZ8yYQZ06dejatWuBz+PzkJGRweO4x1QaUQkD0+LrvaBOU3P/6/vFWl6ys7OZPXs2hw8fxtDQkHLlyrFw4UKqVaum9bwhISHMmjWLrKwsPDw8CAgI0FiSL1dMTAyTJk3izp07pKen069fP/z9/XXmd/DgwQwbNgwvLy/Wrl3Lli1bMDAwQKVSMWrUKK2jlRMSEujRo4fyOCUlhYiICC5fvoydnR1dunRRVhfJysri2rVrhISE4OHhwdKlS9mzZw+WlpasWrWKSpUqATBmzBj69u2rLBGWmppK165d2bZtm0waLIR4IUifuUKYmJgU+5++Jk6cSN++fTlx4gTDhw9Xpl7R5osvvuDNN9/k5MmTLFmyhFGjRinrdObl7OzMzp07CQkJ4dChQ7i4uBS4ssT8+fMZNWoUgDJdzPfff19o3pctW0aVKlU4ePAghw8fJjY2lqCgICBnbd0ZM2Ywffr0fMd9+eWXzJo1i59++omlS5cCOV/YS5Ys4bPPPtNIO3LkSBYvXoxazyWvngcDU4Ni/9OXvuUlODiYs2fPEhwczMGDB2nSpAnz5s3TmjYpKYkJEyawbt06Tp48iZOTE8uXL9eadsaMGbi7u3Pw4EF+/vlngoKClPV4n/Xbb7+RkJCAl5cXADVr1mTXrl0cPHiQDRs2MGXKFO7fv5/vOFtbW2W5sZCQEP73v//RsmVLZd7KPXv2KPvGjRuHu7s7Hh4eJCYmsmPHDg4ePMiAAQNYt24dAEePHsXCwkIJ5CBn5Lyfn5/GjwwhhCjLJJgro2JjY7ly5Yoyx1unTp24d++exqLnee3du5eBAwcCOYuPOzo6KrNH52VqaqosHp6VlUVycrLWRdMBzp49i42NjbK+p6mpKU2bNsXW1lave0hKSkKtVpOenk5KSgoVK1YEctbXrFevntbA1tjYmJSUFFJTU5V8LVmyhMGDB+e7roODA1WqVOHEiRN65edlVtTykpaWRlpaGtnZ2Tx9+lRZDutZhw8fpnbt2lSvXh2AAQMGsGvXLq1p//rrL1q3bg2ApaUlb731lrJW7LM2b95Mt27dlMdNmzZVasFcXV1xdHTkwYMHhd63tvVl8+7r3bs3AIaGhqjVajIyMkhOTlbKWUBAgNbpkLp27crWrVsLvb4QQpQFEsyVUQ8ePMDZ2VlZX1WlUuHq6kpkZGS+tPHx8ajVauzt7ZVtlSpV0poWcpp6fXx8eOONN7hz5w5jx47Vmu7UqVNKzUlRjRkzhtu3b1O3bl3q1KlD9erVlXVBCztuxYoVvPfee0ydOpUrV65w9+5dZSbsZ3l5eUkwR9HKi4+PD40aNaJu3brUq1ePEydO8PHHH2s9b2RkpNIcCVC5cmUePnyotTa0Tp067Ny5E7VaTWxsLEeOHNEZTJ4+fVpn2Tp27BgJCQm88cYbBd7zhQsXePz4MW3atMm3LyoqilOnTinBrYWFBf7+/nTu3Jng4GAGDx7MwoULGTZsmNYluZydnTExMeHmzZsF5kEIIcoCCebKsNyFxHNlZ+teRrcoaU1MTAgJCeHSpUu8+uqryqLjz4qKisLR0bEIOf4/+/btw8PDg99++41ff/2V8PBwpZm1IDVr1mTHjh388ssv+Pj4MHPmTGbOnMmuXbvw9/dn7Nix/P3330p6R0dHoqKi/lEeXzb6loE//viDW7ducfHiRX799VeaNGlS4LJoz55Xl2nTpvH06VPatWvHRx99ROPGjTE2NtaaVlfZCgsLY9y4caxcuVKpQdYlKCiIHj16KAFsXtu2baNNmzaUL19e2TZw4EBCQkLYsmULUVFRREVF0aJFCz777DOGDBnC2rVrNc6hb+2gEEKUNgnmyqiKFSsSFRWl9HvLzs7mwYMHuLq6cuzYMXx8fPDx8WHZsmXKF1bekbeRkZGFLmlmYmJCr169dDaFmZubk5qa+o/yv379evz8/DA0NMTKygpfX19OnTpVpHMEBgbi6+uLra0tAQEBrFy5krfeeos1a9YoadLS0mSUJwWXl2dt27aNRo0aYWtri4GBAe+++67y2kydOlUpW2FhYbi6umrUrt27dw8XFxetTfN2dnYsWbJECZgAatSooTW/2srW9evXGTBgAEuWLNE6eCev5ORk9uzZozSj5pWdnc22bdt0Nr9mZmYya9YsZsyYwY4dO7C3t2f16tX8/PPP3L17V0mXlpZWaEAphBBlgQRzhUhPTy/2P304ODjg6empBFr79++nUqVKVK5cmWbNmimdvD/66CMgZz3aDRs2AHDp0iWio6O1fiFGRkaSnJwMgFqtZu/evdSqVUtrHjw8PP5xM1OVKlUIDQ0FckZ6hoaGFmlB9YiICI4dO0a/fv3IyMggMzMTlUqFSqUiKSlJSXfjxg08PDz+UR5LgjpNXex/+iiovDwrt59h7px4ISEhvPbaawDMmjVLKVu1atWiZcuWXL58WSkHGzdu1Lkmbnx8vHLOP/74gwMHDjBgwACtaWvVqqVRtm7cuEG/fv1YsGCBXmu25pbb3L58eZ0+fZr09HSd5/nmm2/w8/PDycmJ5ORkpeZRpVIp742srCwiIiKU50UIIcoymZpEB2NjY+zt7fnuu++K/dz29vY6m5/ymjdvHmPHjmXFihVYW1sXOOp08uTJjB49msaNG2NiYsLy5cuV5qeFCxfi7OxM//79uXr1KnPnzgVygjlPT09mzpyp9Zxt2rRh6dKlZGVlYWhoCEC7du2Ijo4mISGB+vXr06hRI1asWAHk9MXatGkTLi4uzJw5k08//ZRWrVqhVqtp0KABgwYNAuDOnTt0796d1NRUUlNTqV+/Ph9++KEygANymuxmzpyJSqXCxsYGPz8/WrdujaWlJStXrgRyamBOnDjBhx9+WOhzWdKMjY2xs7fj/tf5R2D+W3b2dv+6vEyYMIG2bdvStm1bBg4cyM2bN2ndujUmJiY4OTlpTPmSl5WVFYsWLWLQoEFkZWXh7u6ucd68r/mlS5eYOnUqRkZGWFlZsWrVKpydnbWet1OnToSGhtKkSRMgp0YwMTGROXPmMGfOHCCnTLdo0YLg4GCCg4NZtGiRcvz333+vs+btu+++o1evXlprD+/cucPp06eVrgXdunVj8ODB7Nu3Dy8vL+WHzblz56hXr55MTSKEeCGoQkNDdXeuegklJyfj7+/P1atXlY7PiYmJuLu7a2wDmdEfYNKkSTRq1IjOnTuXdlbyCQ0NZceOHUowWdqkvOjv6dOndOnShX379mFhYVHa2cln+PDh9OnTR2vtnq7PCyFE2Zb73nV693MMjMvmZ6o6I5XoH2ZojVECAwN1fl5KzVwBzMzMXrov0aL6+OOPlebSsubJkycFdtx/3qS86M/Kyorp06cTERFRpOb35yE1NZW3335br+ZeIYQoCySYEwUqX768Mr1DWaOr75Z4MZTVYMnMzIz+/fuXdjaEEEJvMgBCCCGEEOIFJsGcEEIIIcQLTII5IYQQQogXmPSZK4CMThRFIeVFCCFEaZBgTofU1FTeauhNTFxssZ/b0d6BM+fOFvoFHR4ezpgxY4iPj8fW1palS5dSs2ZNrWljY2P56KOPuHPnDqampsybN6/AWfSzs7Pp1asXf/31F1euXNGZLjg4mEOHDjF//nwiIiIYMmQIWVlZqNVq3NzcWLBgAeXKlct33Nq1a9myZQsGBgaoVCpGjRqlDFgICgpi+vTpypqftra2/PjjjwBcvnyZCRMmkJGRwYgRI+jZsycAJ06cYO/evRrzoc2YMYM6derQtWvXAp/H5yGnvHgRE/e42M/taG/HmXMXiq28qNVqZs+ezZEjR8jMzKRBgwbMnTsXExOTfGmTkpLw9/fn999/ByiwrIBmeYGcCYlnzZpFVlYWHh4eBAQEYGlpme+4+Ph4JkyYQEREBBkZGdStW5d58+Zhbm7Ol19+ye7du5W0ERER9OnTh+nTp7+w5UUIIYqTBHM6ZGRkEBMXy3f9l2FhUnxL+iSnp9Dn24/IyMgo9Mt54sSJ9O3bl169erFv3z7Gjx/P3r17tab94osvePPNN9myZQuXLl1iyJAhnDp1Suu6lZCz3FblypX566+/CszD/PnzlZUlnJ2d2blzp7LE0bRp0wgICGD69On5jqtZsya7du3CxsaGyMhI2rdvT/369ZUArkmTJgQGBuY77ssvv2TWrFnUrl2b1q1b07NnT1JSUliyZAnr16/XSDty5Ej8/Pzo0qWL1glin6ec8vKY3X3LYWmi31qm+khKz+adLY+Ltbx89913hIWF8csvv2BsbMyECRNYu3Ytw4cPz5fWyMiI4cOHY2dnp3XprGflLS9JSUlMmDCB7du3U716dSZPnszy5cuZNGlSvuOWLVtGlSpVWLduHVlZWfTv35+goCAGDhzIqFGjGDVqFJCzIsubb75Jt27dgBe3vAghRHGST7RCWJiYY1mMf/oGhrGxsVy5ckWZFqRTp07cu3dPY53MvPbu3ausoFC3bl0cHR05d+6c1rTh4eHs3r2bkSNHFpiHs2fPYmNjoywJZWpqqgRyWVlZJCcn6/xSbNq0qTJ7vqurq96LlhsbG5OSkkJqaqpy7iVLljB48GBsbW010jo4OChLU5UVliaqYv/TR1HKy19//UXTpk0xMTFBpVLRqlUrnevzmpqa0rRp03zPvTbPlpfDhw9Tu3ZtZcmtAQMGsGvXLp3HJyUloVarSU9PJyUlhYoVK+ZL88svv1ChQgVq164NvPjlRQghioMEc2XUgwcPcHZ2VmrWVCoVrq6uREZG5ksbHx+PWq3G3t5e2VapUiWtadVqNZ988glz5swpdImoU6dO4eXlpbEtPT0dHx8f3njjDe7cucPYsWMLvZdjx46RkJDAG2+8oWw7c+YMPj4+vPPOO+zbt0/ZPmbMGFasWMF7773H1KlTuXLlCnfv3qVjx45az+3l5SVfzhStvNSpU4cDBw7w9OlT0tPT2b17t84fCUXxbHmJjIxUamIBKleuzMOHD1Gr8683O2bMGG7fvk3dunWpU6cO1atXp23btvnSPbuMl5QXIYSQZtYyLXcB8FzZ2bpXXtM37apVq/D29sbT07PQL/CoqKh8C5mbmJgQEhJCeno6U6ZMYdOmTYwYMULnOcLCwhg3bhwrV65UavV8fHzo0qUL5ubm3Lhxgz59+lChQgXq169PzZo12bFjB5BT+9enTx+WL1/Orl272L9/P1ZWVnz++edKPz1HR0fOnj1b4H38V+hbBt59910iIyPp1q0bFhYWNG3alJMnT/7r62srL8/mSZd9+/bh4eFBUFAQKSkpDBw4kKCgIHr16qWkiYyM5Ny5c3z11VfKNikvQgghNXNlVsWKFYmKiiIzMxPI+WJ+8OABrq6uHDt2DB8fH3x8fFi2bBnly5cHIC4uTjk+MjISV1fXfOc9c+YM27Ztw9vbm65du5KQkIC3tzd///13vrTm5uakpqZqzZ+JiQm9evXS2TwHcP36dQYMGMCSJUs0BmOUL19eCexq1KhBq1atOH/+fL7jAwMD8fX1xdbWloCAAFauXMlbb73FmjVrlDRpaWky0pOCy8uzVCoVY8eOJTg4mF27dlG9enVloMTUqVOVshUWFlakPDxbXlxdXTV+MNy7dw8XFxetTfPr16/Hz88PQ0NDrKys8PX15dSpUxpptm3bRtu2bbGzs9N6fSkvQoj/KgnmyigHBwc8PT2VYGn//v1UqlSJypUr06xZM0JCQggJCeGjjz4CwNfXV+l4funSJaKjo7WOZv322285f/48Z8+eZdeuXdja2nL27FmtI1I9PDy4efOm8jgyMpLk5GQgp7l279691KpVS2v+b9y4Qb9+/ViwYEG+ZZuioqKU/8fExHDy5Ek8PT010kRERHDs2DH69etHRkYGmZmZqFQqVCoVSUlJGtfx8PDQ9TT+ZxRUXp6VmppKQkICkNNE/+WXXyqDH2bNmqWULV2vrS7PlpeWLVty+fJlZdvGjRt1LsFWpUoVZQ3gjIwMQkNDNdZszc7OZtu2bToHYUh5EUL8l0kzayGS01NK7Xzz5s1j7NixrFixAmtrawICAnSmnTx5MqNHj6Zx48aYmJiwfPlypf/UwoULcXZ2LvJ6k23atGHp0qVkZWVhaGjI1atXmTt3LpATzHl6ejJz5kwlvY+PD5s2bcLFxYWpU6eSmJjInDlzmDNnjpLHFi1asGHDBoKDgzEyMiI7Oxt/f3+aNGmice1p06Yxc+ZMVCoVNjY2+Pn50bp1aywtLVm5ciWQ8wV/4sQJPvzwwyLdV0lKStfdFF7S5yuovEyYMIG2bdvStm1bEhMT6d69O4aGhmRlZTF48GCt/dNytWvXjujoaBISEqhfvz6NGjVixYoV+dI9W16srKxYtGgRgwYNIisrC3d3d4085S0vM2fO5NNPP6VVq1ao1WoaNGjAoEGDlLQnTpwgOzubpk2bas3ji1pehBCiOKhCQ0OL99unjEtOTsbf35+rV69ibW0NQGJiIu7u7hrbysI8c2XBpEmTaNSoEZ07dy7trOQTGhrKjh07tAYWz1tZmGeuLPgvlBdtnxdCiLIv973r9O7nGBiXzc9TdUYq0T/M0BqjBAYGYmFhofU4qZnTwczMjDPnzv7nZ/T/+OOPleavsubJkydMnjy5tLMB5JaXC1JepLwIIcRzJ8FcAczMzF6YL9GSUr58eWXusrJGV/+r0iLlRcqLEEKUBhkAIYQQQgjxApNgTgghhBDiBSbBnBBCCCHEC0z6zBUgNTX1P9+hXehPyosQQojSIMGcDqmpqTRs0IC4+PhiP7d9+fKcO39evqBfIqmpqXg1aMjj+LjCExeRXXl7Lpw/J+VFCCGEVhLM6ZCRkUFcfDz9334TEyPDYjtvemYW357+lYyMjEK/nMPDwxkzZgzx8fHY2tqydOlSZdmlZ8XGxvLRRx9x584dTE1NmTdvntYVIO7du0fjxo157bXXlG2BgYFUrVpV63mDg4M5dOgQ8+fPJyIigiFDhpCVlYVarcbNzY0FCxZoXT1CrVYzbdo0Dh8+jEqlwt/fn4EDB2qkiYuLo1WrVjRs2JDAwEAALl++zIQJE8jIyGDEiBH07NkTyJk0du/evcyfP185fsaMGdSpU4euXbsW8Cw+HxkZGTyOj8Ox66eojE2L7bzZGWnE7JqnV3mZOnUqwcHB3L9/n0OHDmmsoPCshw8f8sEHH7B3714SExPp0aOHsi8lJYWIiAguX76ssXTWtm3bGDt2LBs2bMDHxyffOQsrH/7+/ly8eJFHjx5x/fp1LC0tgZznbujQoURERFC1alVWrVqFkZERqampvPfee6xbt045x59//sm8efPYtGmTvk+hEEK89KTPXCFMjAwxMTIqxj/9A8OJEyfSt29fTpw4wfDhwxk/frzOtF988QVvvvkmJ0+eZMmSJYwaNUpZp/NZNjY2ypJNISEhOgM5gPnz5zNq1CgAnJ2d2blzJyEhIRw6dAgXFxedq1Js376d69evc/z4cfbt28fKlSs1lnqCnAlmW7VqpbHtyy+/ZNasWfz0008sXboUyAkulixZwmeffaaRduTIkSxevBi1Wq0z/8+bytgUA2OzYvsrSmDYqVMndu7cSaVKlQpNu2zZMgYOHIiBgQG2trYa5eF///sfLVu21AjkHjx4wObNm3nzzTd1nrOw8tGvXz+Cg4PzHXfkyBHKlSvHwYMHsbGxUeapW7p0KQMHDtT4sfD6669jaGiYb91WIYT4L5NgroyKjY3lypUrypxdnTp14t69exoLl+e1d+9epearbt26ODo6cu7cuX+Vh7Nnz2JjY6Os72lqaoq5uTkAWVlZJCcna100HWDPnj3069cPQ0ND7Ozs6Ny5M7t371b279ixA0dHR9566y2N44yNjUlJSSE1NVU595IlSxg8eDC2trYaaR0cHKhSpQonTpz4V/f5snjrrbeoWLFioelSU1PZs2cPvr6+WvcHBQXRp08fjW0TJ05k+vTpmJrqDi4LKx/NmjXDwcEh33G5rznkBO4mJiaEhYURHh5Oly5d8qX38/Nj69athd6nEEL8V0gwV0Y9ePAAZ2dnZX1VlUqFq6srkZGR+dLGx8ejVquxt7dXtlWqVElrWoCnT5/SsWNH2rVrp6ylqc2pU6fw8vLS2Jaeno6Pjw9vvPEGd+7cYezYsTrzn7eGKG9+Hj58yOrVq/PVtAGMGTOGFStW8N577zF16lSuXLnC3bt36dixo9breHl5STBXRJcvX6ZatWpK4JXXhQsXePz4MW3atFG2bdy4kZo1axZYK5dL3/KRV7NmzbCysqJNmzZYW1vTuHFjZsyYwYwZM7Sml9dcCCE0SZ+5MkylUmk8zs7WvYyuvmmdnJy4cOECDg4OPH78mOHDh/PNN98wYsSIfGmjoqKoXr26xjYTExNCQkJIT09nypQpbNq0Seux2vKU6+OPP2by5MlKn6m8atasyY4dO4Cc2p0+ffqwfPlydu3axf79+7GysuLzzz9Xmt4cHR05e/as1usI7aKionB0dNS6LygoiB49eig/IiIiIti6dSu7du3S69xFKR+5DAwMWLhwofI4MDCQ9u3bk5WVxciRI0lPT2fAgAE0adIEyHnNY2JiyMjIwNjYWK98CSHEy0xq5sqoihUrEhUVpfR7y87O5sGDB7i6unLs2DF8fHzw8fFh2bJllC9fHsgZUJArMjISV1fXfOc1NTVVmrrs7Ozo3bu3zmDI3Nyc1NRUrftMTEzo1asX27dv15n/vE3C9+/fV/Lz66+/MmHCBLy9vZk1axahoaG89957+c4RGBiIr68vtra2BAQEsHLlSt566y3WrFmjpElLS5NRnkWk63VNTk5mz5499O7dW9mWO2ChRYsWeHt7K6/dli1bCrxGYeVDl/v373P48GH69+/PggUL6Nu3L0uXLmXq1KlKmrS0NIyNjSWQE0KI/09q5gqRnqm9CbKkz+fg4ICnpyfbt2+nV69e7N+/n0qVKlG5cmUqV65MSEiIRnpfX182bNjA+PHjuXTpEtHR0VpHs8bGxmJra4uxsTFpaWn89NNPeHp6as2Dh4cHJ0+eVB5HRkZiZ2eHhYUFarWavXv3UqtWLa3H+vr6snnzZjp27MiTJ0/Ys2ePEgD8+eefSrqgoCAOHjyojGbNFRERwbFjx9iyZQuJiYlkZmaiUqlQqVQkJSUp6W7cuIGHh0chz+bzk52RRnEOx8jOSCvGs+Xw8PDINxgFUF7PvLWxfn5++Pn5KY979OjB0KFDtY5mLUr50GXatGlMnz4dAwMDUlJSUKlUGBgYkJycrKS5ceNGkc8rhBAvMwnmdDA2Nsa+fHm+Pf1rsZ/bvnx5vWoV5s2bx9ixY1mxYgXW1tY6R44CTJ48mdGjR9O4cWNMTExYvny50lS2cOFCnJ2d6d+/P+fOnWPRokUYGBiQlZVF48aNGT16tNZztmnTRulTZ2hoyNWrV5k7dy6QM/WIp6cnM2fOVNL7+PiwadMmXFxc6NGjB5cvX6Zp06YADB8+nBo1auj7FDFt2jRmzpyJSqXCxsYGPz8/WrdujaWlJStXrgRyaitPnDjBhx9+qPd5S4qxsTF25e2J2TWv2M9tV95er/Ly2WefceDAAWJiYujduzeWlpYawXiuypUrY29vz7Vr1zSmqPn+++/zDXwoTN6yVVj5GDhwIH/88QeQ00+uWrVq/Pjjj8r+nTt34uHhoeRp5MiRfPzxx2RkZDBmzBgl3ZEjR3T2oRRCiP8iVWhoqO6OWC+h5ORk/P39uXr1KtbW1gAkJibi7u6usQ1kRn/ImT6kUaNGdO7cubSzkk9oaCg7duxgxYoVpZ0V4MUqL3v27OHMmTN88cUXxXrekpaenk7Hjh3Ztm2b0r3gedP1eSGEKNty37tO736OgXHZ/A5WZ6QS/cMMrTFKYGAgFhYWWo+TmrkCmJmZvTBBV0n5+OOPlXm/yponT54wefLk0s6G4kUqL126dCE2Nha1Wq1zepmyKCIigkmTJpVaICeEEGXRcw/m0tPT+fLLL4mMjMTExIRy5coxaNAgHB0dmT17NrGxscqUCc2aNaNDhw5ATqfnwMBAwsPDUalU9O7dmwYNGgA5TTqbNm3i0qVLqFQqOnTooLVPjyi68uXLK3PdlTXvvPNOaWfhhTZo0KDSzkKRVa9ePd8IayGE+K8rlZq5Vq1aUadOHVQqFcHBwaxZs4ZJkyYB0L9/f63zWe3fvx8jIyOWLFlCdHQ006dPx8PDQ+kXFBkZyeLFi0lOTmby5Mm8/vrrek2gKoQQQgjxInvu7SsmJibUrVtXmYOsevXqxMTEFHrcmTNnlNo2Jycn3N3duXDhgrKvdevWGBgYYGVlhbe3N6dPny65mxBCCCGEKCNKvc/cgQMHqFevnvL4u+++IygoCFdXV3r37o2TkxOQM4da3qWAHBwclHnVYmNjNfY5Ojpy+/bt53QHQgghhBClp1SDud27d/Pw4UNlWafhw4djb29PdnY2ISEhLFy4UGNmeF0rCjyroJUSiuJFGp0ohBBCiP+mUgvm9u/fz/nz55k0aZKyeHfu2qIqlYq2bduydetWEhMTsba2xt7enpiYGGxsbICc2rg6deoAObV0sbGxuLm5KfvyrlOqzdy5czExMQHQOrluamoqDRt4ExcfWzw3nId9eQfOnT9baEAXHh7OmDFjiI+Px9bWlqVLl1KzZs186U6dOkW/fv149dVXlW179uzRuvYmQEhICLNmzSIrKwsPDw8CAgK0Lq0FOa/TkiVLUKvVZGdns2nTJipXrqw17eDBgxk2bJiynqu+x3p7e2NqaqqUg1GjRuUb3LBt2zbGjh3Lhg0blOb2pUuXsmfPHiwtLVm1apWyFuyYMWPo27evMkAmNTWVrl27sm3bNqX8CCGEEGXV8ePHOXfuHJAzcLQwpRLM/fTTT5w6dYrPPvtMCSKysrJ4+vQptra2AJw7dw4bGxtlnhVvb29CQkJwc3MjOjqasLAwZTRew4YNOXToEA0aNCA5OZkzZ84wceLEAvMwadIkjTlcnpWRkUFcfCwju8zFtBjno0nLSOWrPZPIyMgoNJibOHEiffv2pVevXuzbt4/x48ezd+9erWlr1qzJzz//XOj1k5KSmDBhAtu3b6d69epMnjyZ5cuXKwNQ8rpy5QoLFiwgKCgIFxcXEhMTlYmIn/Xbb7+RkJCgBHJFORZg9erVuLu7a9334MEDNm/erDEwJjExkR07dnDkyBF27NjBunXrmDZtGkePHsXCwkIJ5CBnyhA/Pz8CAwMZP358oc+REEIIUZqaNm2qTI6emJjIxo0bC0z/3IO5uLg4tmzZgpOTE7NnzwZymh0/++wzFi5cSEZGBgYGBlhbW2t88Xbq1InVq1czbtw4VCoVAwcOxMrKCsi56fDwcCW9r6+v1nVJ/wlTYzNMjbXXcJWk2NhYrly5wnfffQfk3P+UKVO4d++ezpoxfRw+fJjatWsr0zsMGDCAfv36aQ3mvvnmG4YOHYqLiwtAgROkbt68mW7duv2jYwszceJEpk+frjHBraGhIWq1moyMDJKTkzE2NiYlJYWAgAC+/fbbfOfo2rUrHTt2lGBOCCHES+e5B3P29vY6F+nODe60MTMz07nslIGBAe+//36x5K+sePDgAc7OzkptlkqlwtXVlcjISK3B3K1bt2jXrh2Ghob07NmTgQMHaj1vZGSk0hwJOUs7PXz4UOvksdevX6dKlSp0796dxMRE2rRpw/jx4zE0NMx33tOnTzNs2LB/dCzkNK1mZ2dTr149Jk2apDSTb9y4kZo1a+abrsbCwgJ/f386d+6Mk5MTAQEBLFy4kGHDhmkNHJ2dnTExMeHmzZsyT5kQQoiXyosz9ft/0LMDPnQN7HjjjTe4cOECBw4cYM2aNWzevJk9e/bofV5dMjMz+f3339m8eTO7d+/m4sWLbNq0SWvaqKgoHB0d/9GxO3bs4ODBg/zyyy/Y2dkp63BGRESwdetWJkyYoPW4gQMHEhISwpYtW4iKiiIqKooWLVrw2WefMWTIENauXauR3tHRkQcPHuh170IIIcSLQoK5MqpixYpERUWRmZkJ5ARyDx480Np8bG1trXTsr1ixIu+8847ScXLq1Kn4+Pjg4+NDWFgYrq6u3Lt3Tzn23r17uLi4aF3SydXVlU6dOmFubo65uTkdOnTg0qVLWvNrbm5OamrqPzo2956MjY0ZPHgwZ8+eBeDixYs8evSIFi1a4O3tza+//sqECRPy1exmZmYya9YsZsyYwY4dO7C3t2f16tX8/PPP3L17V0mXlpamc1CIEEII8aKSYK6McnBwwNPTk+3btwM5I0MrVaqktYn10aNHqNVqAJ4+fcrBgwfx9PQEYNasWYSEhBASEkKtWrVo2bIlly9f5ubNm0BOM6auZbH8/Pw4evQoarWarKwsjh8/joeHh9a0tWrVUs5ZlGOTk5NJSEhQHu/atUvJu5+fH5cuXeLs2bOcPXuWN998k0WLFtG3b1+Nc3zzzTf4+fnh5OREcnKyUvOoUqlITk4GcgbYRERE8Nprr2nNvxBCCPGiKvVJg8u6tIzUwhOV0PnmzZvH2LFjWbFiBdbW1gQEBCj7JkyYQNu2bWnbti0//fQT3377LYaGhmRlZeHr60uvXr20ntPKyopFixYxaNAgsrKycHd31zivj48PmzZtwsXFhXfeeYfLly/TsmVLDA0N8fb21tk3sVOnToSGhtKkSROAAo8NDg4mODiYRYsWERMTg7+/vzJ9SZUqVVi2bJnez9GdO3c4ffq00oTbrVs3Bg8ezL59+/Dy8qJWrVpAzujoevXqydQkQgghXjqq0NDQ4plh9wWRnJyMv78/V69e1ZiaxN3dXWNbWZhn7kXy9OlTunTpwr59+7CwsCjt7OQzfPhw+vTpQ7NmzUo7K+IFp+3zQghR9uW+d53e/RyDYpxyrDipM1KJ/mGG1hglMDBQ5/er1MzpYGZmxrnzZ2UFCD1ZWVkxffp0IiIidM4XV1pSU1N5++23JZATQgjxUpJgrgBmZmYvXdBVkspqsGRmZkb//v1LOxtCCCFEiZABEEIIIYQQLzAJ5oQQQgghXmDSzJqHtjVahRAiL/mcEEKUNRLMkTMgwcnJSWNxdiGE0MXJyQljY+PSzoYQQgD/IphLSkriypUruLi48MorrxRnnp47MzMzTp8+XSIjV4UQL5+XcUS6EOLFpXcwt2jRIjw9PWnfvj2pqalMnjyZpKQk0tLSGDp0KI0bNy7JfJY4GbkqhBBCiBeR3gMgbt68yeuvvw7A2bNnMTU1ZeXKlQwdOrTARd2FEEIIIUTJ0TuYS0tLU2Ye/uOPP2jYsCFGRka89tprREdHl1gGhRBCCCGEbnoHcxUrVuTixYvEx8dz+fJl6tatC0BCQkKZXL5JCCGEEOK/QO9grnfv3vzwww+MHj2aOnXq4ObmBsDFixeV/wshhBBCiOdL7wEQb7zxBt988w3JyclYWVkp21u2bImJiUmJZE4IIYQQQhSsSCtAqFQqHjx4wIkTJ0hNTQXAwsJCmlmFEEIIIUqJ3jVzMTExLF68mOjoaDIyMqhZsyZmZmb8+OOPqNVq3n///ZLMpxBCCCGE0ELvmrmNGzfi5ubG6tWrNZpVGzZsyB9//FEimRNCCCGEEAXTO5i7du0anTt3xshIszLPwcGB+Pj4Ys+YEEIIIYQonN7BnJGRkdJPLq+oqCisra2LNVNCCCGEEEI/egdzDRs2JCgoiOTkZGXb/fv32bJlC2+//XaJZE4IIYQQQhRM7wEQffv2Ze3atYwYMYLMzEwmTZpEWloaDRo0oGfPniWZRyGEEEIIoYPewZyJiQnDhw+nR48eREZGkpqaSpUqVahYsWJJ5k8IIYQQQhRA72Aul6OjI46OjiWRFyGEEEIIUUQFBnOrV6/W+0RDhgz515kRQgghhBBFU2Awl5mZqfH44sWLWFhYULVqVQDu3r1LUlIS9evXL7EMCiGEEEII3QoM5kaMGKH8f8uWLTRp0oQBAwZgYJAzCFatVrNp0yYMDQ1LNpdCCCGEEEIrvacmOXLkCO3bt1cCOQADAwPatm3L0aNHSyRzQgghhBCiYHoHc8bGxoSFheXbHhYWlm9VCCGEEEII8XzoHYW98847bNiwgb/++gs3NzdUKhW3bt3i3LlzvPfeeyWZRyGEEEIIoYPewVy7du2oUqUKBw8e5Pjx42RnZ1OhQgUmTpyIh4dHSeZRCCGEEELoUKT20Vq1alGrVq2SyosQQgghhCiiAoO56OhoHB0dUalUREdHF3giJyenYs2YEEIIIYQoXIHB3Lhx4/jqq6+wtbVl3LhxBZ5o8+bNxZoxIYQQQghRuAKDuaVLl2JjY6P8XwghhBBClC0FBnN512CNjY2lZs2a+SYIzsrK4vr167JeqxBCCCFEKdB7nrk5c+bw9OnTfNuTk5OZM2dOsWZKCCGEEELoR+9gDkClUuXbFhsbi7m5ebFlSAghhBBC6K/QqUnGjBmj/H/KlCkay3mp1WqePHnCW2+9VSKZE0IIIYQQBSs0mOvatSvZ2dmsXbuWDh06aNTCGRoa4uDggLu7e4lmUgghhBBCaFdoMNeiRQsAXFxcqFGjhqzDKoQQQghRhugdmdWqVYuUlBRCQ0OJiooCoGLFijRq1AgLC4sSy6AQQgghhNBN72AuLCyMJUuWYGFhQbVq1QD49ddfCQoKYty4cXov85Wens6XX35JZGQkJiYmlCtXjkGDBuHo6EhCQgKrVq3i0aNHGBsbM2jQIF577TUA0tLSCAwMJDw8HJVKRe/evWnQoAGQ03dv06ZNXLp0CZVKRYcOHfDx8SnqcyGEEEII8cLRO5hbt24dTZo0oV+/fsogiOzsbDZt2sS6detYuHCh3hdt1aoVderUQaVSERwczJo1a5g0aRJBQUFUr16diRMncuvWLZYtW8bSpUsxNDRk//79GBkZsWTJEqKjo5k+fToeHh5YWlpy8uRJIiMjWbx4McnJyUyePJnXX3+dihUrFv0ZEUIIIYR4geg9NUlsbCxt27bVGM2qUqnw8fEhNjZW7wuamJhQt25dZZqT6tWrExMTA8CZM2eUGjU3NzdsbW25du1avn1OTk64u7tz4cIFZV/r1q0xMDDAysoKb29vTp8+rXeehBBCCCFeVHoHc56enoSFheXbHhYWpncTqzYHDhygXr16JCYmkp2drSwfBjkrUMTFxQEQFxeHg4ODss/BwUHZFxsbq7Ev73FCCCGEEC8zvZtZa9asSVBQEGFhYbz66quoVCpu3brF77//jq+vL0eOHFHS5o6ALczu3bt5+PAhn332Genp6fkmJc7OztZ4rG3SYm2ePU6buXPnYmJiouRX3zwLIYQQQpSk48ePc+7cOSBnrEFh9A7mDh06hLm5OTdu3ODGjRvKdnNzcw4dOqSRVp/AaP/+/Zw/f55JkyZhamqKqakpAE+ePFFq52JjY7G3twfA3t6emJgYjX116tQBcmrpYmNjcXNzy3ecLpMmTcLa2lqPOxdCCCGEeH6aNm1Kx44dAUhMTGTjxo0Fptc7mAsICPhXGcvrp59+4tSpU3z22WdYWloq2xs2bEhISAjdu3fn1q1bJCQkKKNZvb29CQkJwc3NjejoaMLCwhg0aJBy3KFDh2jQoAHJycmcOXOGiRMnFlt+hRBCCCHKqiLPAJydnU18fDx2dnYagyH0FRcXx5YtW3BycmL27NkAGBsbM3PmTPr06cPXX3/NuHHjMDIyYvjw4RgaGgLQqVMnVq9ezbhx41CpVAwcOBArKysgJ4INDw9n/PjxAPj6+uLq6lrkvAkhhBBCvGj0DubS09PZsmULR48eJSsri8WLF+Pk5MTWrVuxs7OjQ4cOep3H3t6eLVu2aN1na2vLpEmTtO4zMzNj9OjRWvcZGBjw/vvv63cjQgghhBAvEb2r1r777jvu3LnDZ599hrGxsbLd3d2d48ePl0jmhBBCCCFEwfQO5s6fP8/AgQOpWbOmxqhSV1dXHj16VCKZE0IIIYQQBdM7mEtJScHc3Dzf9qSkJKVfmxBCCCGEeL70DuY8PDw4fPiwxrbMzEx27dqFp6dnsWdMCCGEEEIUTu8BEP369WP+/PmEhYWRkZHB2rVrefDgAUZGRkyZMqUk8yiEEEIIIXTQO5hzcnJi/vz5nD59mnv37pGWlkbDhg1p3LgxZmZmJZlHIYQQQgihQ5HmmTMyMqJp06YllRchhBBCCFFERQrmwsLCCAkJISoqCoAKFSrg4+NDrVq1SiRzQgghhBCiYHoPgDhw4ADz5s3DyMhIWZje2NiY+fPnc+DAgZLMoxBCCCGE0EHvmrk9e/YwYMAAWrVqpbHd3d2dH374gXbt2hV75oQQQgghRMH0rplLT0/X2pzq7u5ORkZGsWZKCCGEEELoR+9grkWLFhw4cAC1Wq1sy87OJjg4mObNm5dI5oQQQgghRMH0bmZNSEjg4sWL/Prrr1StWhWVSsXt27dJTk7mzTffZOXKlUra4cOHl0hmhRBCCCGEJr2DOUNDQxo2bKix7fXXXy/2DAkhhBBCCP3pHcwNHTq0JPMhhBBCCCH+Ab37zAkhhBBCiLJHgjkhhBBCiBeYBHNCCCGEEC+wAoO52NhYsrOzn1dehBBCCCFEERUYzI0ZM4YnT54o/09MTHwumRJCCCGEEPopMJiztLQkNjYWkFo6IYQQQoiyqMCpSd566y1mzpyJnZ0dAFOmTMHAQHv8FxAQUOyZE0IIIYQQBSswmHv//fd5++23efToEYGBgXTo0AFzc/PnlTchhBBCCFGIQicNdnd3x93dndjYWFq1aoWpqenzyJcQQgghhNCD3itAdO/enezsbC5dukRUVBQArq6uvPHGG6hUqhLLoBBCCCGE0E3vYO7hw4csXryYuLg4KlSoAEBUVBSOjo6MGzcOZ2fnEsukEEIIIYTQTu9gbv369bi4uDB9+nQsLS0BePr0Kd988w3r16/n008/LbFMCiGEEEII7fReAeL69ev06tVLCeQArKys6NWrF9evXy+RzAkhhBBCiILpHcyZmZkRFxeXb3tsbCxmZmbFmikhhBBCCKEfvZtZmzZtyurVq+nWrRtubm4A3Lx5k507d9KsWbMSy6AQQgghhNBN72Cud+/eWFpasmPHDhISEgCwtbWlXbt2+Pr6llgGhRBCCCGEbnoHcwYGBrzzzju88847JCcnA2BhYVFiGRNCCCGEEIXTO5jLS4I4IYQQQoiyQe8BEEIIIYQQouyRYE4IIYQQ4gUmwZwQQgghxAtMr2AuMzOTSZMm8eDBg5LOjxBCCCGEKAK9gjkjIyMSExPJzs4u6fwIIYQQQogi0LuZtVOnTuzcuZP09PSSzI8QQgghhCgCvacmOX/+PHfv3mXEiBG4uLhgYmKisX/atGnFnjkhhBBCCFEwvYO5119/nddff70k8yKEEEIIIYpI72Cue/fuJZkPIYQQQgjxDxRpapLU1FROnjzJzp07SUpKAiAyMlJZq1UIIYQQQjxfetfMRUREMG/ePCwsLIiOjqZx48ZYWlpy8uRJ4uPjGTZsWEnmUwghhBBCaKF3MLdp0yZatmzJu+++ywcffKBsr1evHitWrCjSRTdu3Mivv/5KbGws8+bNo3LlygDMnj2b2NhYzM3NAWjWrBkdOnQAIC0tjcDAQMLDw1GpVPTu3ZsGDRoAoFar2bRpE5cuXUKlUtGhQwd8fHyKlCchhBBCiBeR3sFceHg4/v7++baXK1eOJ0+eFOmiDRs2xNfXl5kzZ+bb179/f95888182/fv34+RkRFLliwhOjqa6dOn4+HhodQORkZGsnjxYpKTk5k8eTKvv/46FStWLFK+hBBCCCFeNHr3mbOwsODvv//Ot/3OnTvY2dkV6aK1atXC3t6+SMecOXNGqW1zcnLC3d2dCxcuKPtat26NgYEBVlZWeHt7c/r06SKdXwghhBDiRaR3MNesWTM2bdrE/fv3AUhOTua3335Tml+Ly3fffcfEiRNZvnw50dHRyva4uDgcHByUxw4ODsTFxQEQGxursc/R0VHZJ4QQQgjxMivS1CQqlYpp06aRnp7OlClTMDIywsfHhy5duhRLZoYPH469vT3Z2dmEhISwcOFCFi5cqOxXqVR6nUeWHRNCCCHEf4XewZyBgQE9evTgnXfe4dGjR6SlpVGxYkVlsEJxyG16ValUtG3blq1bt5KYmIi1tTX29vbExMRgY2MD5NTG1alTB8ippYuNjcXNzU3ZV1gz7ty5c5VVLFq0aEGLFi2K7T6EEEIIIf6p48ePc+7cOQC9llHVO5jLlZGRQWZmJoaGhsVaA5aVlcXTp0+xtbUF4Ny5c9jY2GBtbQ2At7c3ISEhuLm5ER0dTVhYGIMGDQJyBlQcOnSIBg0akJyczJkzZ5g4cWKB15s0aZJybiGEEEKIsqJp06Z07NgRgMTERDZu3Fhger2DueTkZDZv3syJEydQq9UAGBoa0rhxY/73v/9hYWGhdybXr1/PxYsXSUhIYO7cuZiZmfHFF1+wcOFCMjIyMDAwwNramvHjxyvHdOrUidWrVzNu3DhUKhUDBw7EyspKuenw8HAlva+vL66urnrnRwghhBDiRaV3MLd69WoePHjAJ598gpubGyqVips3b7Jp0yZWr17NmDFj9L7o+++/z/vvv59v++zZs3UeY2ZmxujRo7XuMzAw0Ho+IYQQQoiXnd6jWS9fvszQoUPx9PTE3NwcMzMzPD098ff35/LlyyWZRyGEEEIIoYPewZyuAQUqlarI88wJIYQQQojiUWAwp1arlb///e9/bNy4kT/++IOkpCSSk5P5448/2LhxI/369Xte+RVCCCGEEHkU2Geuf//++bbNnz8/37bFixezefPm4suVEEIIIYTQS4HB3OTJk59XPoQQQgghxD9QYDBXq1at55UPIYQQQgjxDxRp0uDExERu3rzJkydP8k0YLCsoCCGEEEI8f3oHcydPnmTNmjUYGBhgZWWVb51UCeaEEEIIIZ4/vYO577//nq5du9K5c2cMDPSe0UQIIYQQQpQgvaOy9PR0vL29JZATQgghhChD9I7M2rRpw/Hjx0syL0IIIYQQooj0bmbt3r07CxYs4NNPP6VSpUoYGhpq7B8+fHixZ04IIYQQQhRM75q5zZs3c/XqVezs7DAyMsLAwEDjTwghhBBCPH9618wdPXqUMWPGULdu3RLMjhBCCCGEKAq9q9Ssra1xcHAoybwIIYQQQogi0juY69WrF9u2bSMxMbEk8yOEEEIIIYpA72bWrVu38vTpU0aMGIGNjU2+ARDLly8v9swJIYQQQoiC6R3MvfvuuyWZDyGEEEII8Q/oHcw1a9asJPMhhBBCCCH+Ab2Duejo6AL3Ozk5/evMCCGEEEKIotE7mBs3blyB+zdv3vyvMyOEEEIIIYpG72Bu6dKlGo+zsrK4d+8eu3btonv37sWeMSGEEEIIUTi9gzlHR8d821xcXLCysmLr1q28+eabxZoxIYQQQghRuH+9Dpe1tTUPHjwojrwIIYQQQogi0rtm7s8//9R4nJ2dTUJCAr/88gtubm7FnjEhhBBCCFE4vYO5uXPn5ttmY2ODu7s7ffv2LdZMCSGEEEII/egdzMloVSGEEEKIsudf95kTQgghhBClp9CaudWrV+t1oiFDhvzrzAghhBBCiKIptGYuMzNT519qaiqnT5/m2LFjzyOvQgghhBDiGYXWzI0YMSLfNrVazbFjx9ixYwfW1tZ07dq1JPImhBBCCCEKofcAiFynT59m+/btJCcn07lzZ9q0aYOxsXFJ5E0IIYQQQhRC72Du4sWL/PDDD8THx9OpUyfatWuHmZlZSeZNCCGEEEIUotBg7sqVK2zbto3IyEjat29Pp06dsLCweB55E0IIIYQQhSg0mJs3bx4mJiY0btwYlUrFTz/9pDVdjx49ij1zQgghhBCiYIUGc+7u7gBERUURFRWlNY1KpSreXAkhhBBCCL0UGsxNmTLleeRDCCGEEEL8A7IChBBCCCHEC0yCOSGEEEKIF5gEc0IIIYQQLzAJ5oQQQgghXmASzAkhhBBCvMAkmBNCCCGEeIFJMCeEEEII8QKTYE4IIYQQ4gVW6KTBJWHjxo38+uuvxMbGMm/ePCpXrgxAQkICq1at4tGjRxgbGzNo0CBee+01ANLS0ggMDCQ8PByVSkXv3r1p0KABAGq1mk2bNnHp0iVUKhUdOnTAx8enNG5NCCGEEOK5KpWauYYNGzJt2jQcHBw0tgcFBVG9enWWLFnCkCFD+Oqrr8jKygJg//79GBkZsWTJEiZOnMj69etJSkoC4OTJk0RGRrJ48WJmzpzJvn37ePDgwXO/LyGEEEKI561UgrlatWphb2+fb/uZM2eUGjU3NzdsbW25du1avn1OTk64u7tz4cIFZV/r1q0xMDDAysoKb29vTp8+/ZzuRgghhBCi9JSZPnOJiYlkZ2djY2OjbHN0dCQuLg6AuLg4jZo8BwcHZV9sbKzGvrzHCSGEEEK8zMpMMAegUqk0HmdnZxe4X5dnjxNCCCGEeFmVygAIbaytrQF48uSJUjsXGxurNMfa29sTExOjsa9OnTpATi1dbGwsbm5u+Y7TZe7cuZiYmADQokULWrRoUez3JIQQQghRVMePH+fcuXMApKenF5q+zARzkDMwIiQkhO7du3Pr1i0SEhKU0aze3t6EhITg5uZGdHQ0YWFhDBo0SDnu0KFDNGjQgOTkZM6cOcPEiRMLvNakSZOUAFIIIYQQoqxo2rQpHTt2BHK6oW3cuLHA9KUSzK1fv56LFy+SkJDA3LlzMTMzY8mSJfTp04evv/6acePGYWRkxPDhwzE0NASgU6dOrF69mnHjxqFSqRg4cCBWVlZAzk2Hh4czfvx4AHx9fXF1dS2NWxNCCCGEeK5KJZh7//33ef/99/Ntt7W1ZdKkSVqPMTMzY/To0Vr3GRgYaD2fEEIIIcTLrkwNgBBCCCGEEEUjwZwQQgghxAtMgjkhhBBCiBeYBHNCCCGEEC8wCeaEEEIIIV5gEswJIYQQQrzAJJgTQgghhHiBSTAnhBBCCPECk2BOCCGEEOIFJsGcEEL8v/buPCCqsm38+HeGHVR2JETcSNxDE81MccEt18oyw3rKDEVzt0WzX7aZ9rxa+fQkWOaSe5obpqZphoa5BYr7vqKyKPvADDO/P3hnXlFRMGTOma7PX3LO4cx1eThzrnOfc9+3EEKomBRzQgghhBAqJsWcEEIIIYSKSTEnhBBCCKFiUswJIYQQQqiYFHNCCCGEEComxZwQQgghhIpJMSeEEEIIoWJSzAkhhBBCqJgUc0IIIYQQKibFnBBCCCGEikkxJ4QQQgihYlLMCSGEEEKomBRzQgghhBAqJsWcEEIIIYSKSTEnhBBCCKFiUswJIYQQQqiYFHNCCCGEEComxZwQQgghhIpJMSeEEEIIoWJSzAkhhBBCqJgUc0IIIYQQKibFnBBCCCGEikkxJ4QQQgihYlLMCSGEEEKomBRzQgghhBAqJsWcEEIIIYSKSTEnhBBCCKFiUswJIYQQQqiYFHNCCCGEEComxZwQQgghhIpJMSeEEEIIoWJSzAkhhBBCqJgUc0IIIYQQKibFnBBCCCGEikkxJ4QQQgihYvbWDuB2o0ePxsHBAQcHBwD69OlDmzZtyMzMJCYmhmvXruHg4MDgwYMJCQkBoKCggG+//ZYzZ86g0Wh48cUXCQsLs2YaQgghhBCVQnHFHBQXdDVr1iyxbPny5QQHB/POO+9w+vRpvvrqK7744gvs7OzYsGED9vb2zJw5k+vXrzNlyhQaNWqEm5ublTIQQgghhKgcqnnMunv3brp06QJAvXr1cHd35/jx43es8/Pzo0GDBuzbt89qsQohhBBCVBZFtsx98803GI1GgoODGTBgABqNBpPJRLVq1Szb+Pr6kp6eDkB6ejo+Pj6WdT4+PpZ1QgghhBC2THHF3Pvvv4+Pjw8Gg4Eff/yRmJgYoqOj0Wg0JbYzmUwlfr59/f189tlnODo6AtChQwc6dOjwt+IWQgghhKgI8fHx7NmzB4DCwsL7bq+4Ys7cwmZvb0/37t2ZMGECVatWBSArK8vSOpeWloa3tzcA3t7epKamllj32GOP3fNzJk6caNmvEEIIIYRStGvXjqeffhqA7OxsFixYcM/tFfXOnE6nIzc31/JzQkICtWrVAqBVq1Zs2bIFgNOnT5OZmWnpzdq6dWvLuuvXr3P06FEef/zxSo5eCCGEEKLyKaplLisriy+//BKj0YjJZMLPz4/o6GgABg4cyDfffMO4ceOwt7cnOjoaOzs7AHr27MmcOXMYN24cGo2GV199lSpVqlgzFSGEEEKISqGoYs7Pz4+pU6fedZ27uzsTJ0686zpnZ2dGjRr1MEMTQgghhFAkRT1mFUIIIYQQ5SPFnBBCCCGEikkxJ4QQQgihYlLMCSGEEEKomBRzQgghhBAqJsWcEEIIIYSKSTEnhBBCCKFiUswJIYQQQqiYFHNCCCGEECqmqBkghBBCiXQ6HcOHD+fEiRO4uLjg5+fHtGnTqFmzJklJSUyePJmCggIKCgoYMGAAw4cPt/zu/PnzmTdvHnZ2dmi1WuLi4nB2drZiNkIIWyPFnBBClEFkZCSdOnVCo9Ewb9483n77bZYuXcpbb73FhAkT6Nq1Kzdu3CA8PJyIiAjq16/P5s2bWb16NevXr6datWqkpaXh4OBg7VSEEDZGHrMKIcR9ODs707lzZzQaDQAtWrTgwoULlvWZmZkA5OXl4eDggIeHBwCzZ89m/PjxVKtWDQAfHx/s7OwqN3ghhM2TYk4IIcpp7ty5REREADBz5kz+/e9/ExYWRvv27Zk4cSJ+fn4AnDx5koMHD9K3b1969OjB3LlzrRm2EMJGyWNWIYQoh1mzZnH27FmmT58OQExMDJMnT6ZPnz6cP3+e/v37ExoaSnBwMAaDgfPnz/PTTz+RlZVF//79qV27Np07d7ZyFkIIWyItc0IIUUYxMTFs3LiRRYsW4eLiQkZGBhs3bqRPnz4A1KpVi+bNm7N//34AatSoQd++fbGzs8PT05OOHTuSmJhoxQyEELZIijkhhCiD2NhY1qxZw9KlS3F3dwfA3d0dZ2dnEhISAMjIyODAgQOEhIQA0K9fP3777TeguEfs7t27adSokVXiF0LYLnnMKoQQ93HlyhU++ugjatWqxfPPPw+Ak5MTcXFxzJ49mw8//BCDwYDBYGDYsGGEhoYC8MYbb/DOO+/QoUMHNBoNvXr1okePHlbMRAhhi6SYE0L8Y+l0OvR6/X23q1q1KseOHbtjeXZ2Ns2bN+fHH3+8Y7nZp59+Wuq6+3FwcJAx6YQQ9yXFnBDiH0mn09EqrDXpGWnWDqVU3l4+7Nn7pxR0Qoh7kmJOCPGPpNfrSc9IY0Sfz3ByUF6xVKDX8d91E9Hr9VLMCSHuSYo5IcQ/mpODM04OLtYOQwghHpj0ZhVCiH+Q999/n9atW1OjRo0S7wGaTCZmzJjBU089RadOnejfv3+J35s/fz7h4eF06tSJiIgIdDpdZYcuhCiFtMwJIcQ/SM+ePYmOjuaZZ54psXzu3LkcO3aMbdu24ejoyLVr1yzrZI5ZIZRNijkhhPgHeeKJJ+66fPbs2axcuRJHR0cAqlevXmLd7XPMCiGUQx6zCqEwpT0GM1uxYgU1atRgy5YtlmWfffYZ4eHhRERE0LNnT3bu3FmZIQuVy87OJiMjg02bNtGrVy969erF2rVrLetljlkhlE1a5oRQmNIeg0Hx4LWLFi2iRYsWJZa3bt2aMWPG4OLiwuHDh3n++ec5cOCA1XtBvv/++/zyyy9cunSJX3/9lQYNGgAwduxYDh06hEajwcHBgYkTJ9KuXTsApk2bxpYtW9Bqi+8133zzTfr27Wu1HP4J9Ho9hYWF6HQ64uLiuHz5Mn369CEkJIQGDRrIHLNCKJy0zAmhME888QQBAQF3XffOO+8wZcoUnJycSizv1KkTLi7FPTIbNmxIUVERGRkZDz3W++nZsyerV68mMDCwxPIpU6awdetWtmzZwueff050dDQmkwmA6Ohofv31V7Zs2cIPP/zA22+/zc2bN60Q/T+Hl5cXbm5uPPvss0DxnLItW7YkKSnJ8rMS55gtrRV73LhxtGvXji5duvDss8+SnJxc4veU2JnjQXJZtmwZnTt3JigoiHnz5lkjbKEQUswJoRILFiygfv36d7TK3W758uXUqlWr1IKwMpVWmJrnNgXIyspCo9HcdV1OTg4ajQaj0fhwAxX069eP7du3A3Dz5k0SExMt88gqdY7Z0m4Wunfvzvbt29myZQvR0dEMGzbMsu7Wzhzbtm1j2bJliujM8SC5NG3alJiYGPr161fJ0QqlkcesQqjAhQsXWLJkCWvWrLnndvHx8cycOZOlS5dWTmB/w9SpU4mLiyMzM5Nvv/22REE3d+5c5s+fT0pKCjNmzMDLy8uKkdqWSZMmsXnzZlJTU3nxxRdxc3Nj165dvPvuu4wdO5aFCxcCxY+3mzZtCih3jtnSOnN07drV8u/HH3+cy5cvYzQa0Wq1iu3M8SC5NG7cGMDySoL455JiTggV2L9/P9euXaNDhw4ApKamMmHCBN5++20iIyMBSEhIYNy4ccyfP5/g4GArRls2kyZNYtKkSfz+++988sknrFmzxtKT8vXXX+f111/n8OHDjBo1inbt2klBV0GmTp3K1KlT71ju5eXFggUL7vo7Li4uzJo162GH9lB89913dOrUyVLwmDtzzJgxg8LCQvr378/rr79u5SjL5vZchDCTYk4IFXjmmWdKdIjo378/Q4cOpUuXLgDs3r2bUaNGMW/ePMvdulq0b9+eyZMnc+zYMZo1a1ZiXePGjfH39ychIYGePXtaKULl0+l06PV6a4dxTw4ODpXeIWfVqlWsX7+e1atXW5aptTPH3XIRwkyKOWFzMjMzS4xen5+fz4ULF0hKSuL8+fN88MEH5ObmotFo+OCDD3jqqaesGO2dSnsMdi/jx4+nsLCQsWPHWpbNmjWLhg0bPuxwy81gMHDhwgXq1q0LwF9//UV6ejpBQUFAccvJo48+CsC5c+dITk6mfv36VotX6XQ6Ha3CWpOekWbtUO7J28uHPXv/rLSCbu3atcycOZMVK1aUeJRaWmcOJRdzpeUihJkUc8LmuLu7lxiDLSYmhoSEBDw8PIiIiGDWrFm0bduWU6dO8eKLLxIfH2/pCaoEpT0Gu9XKlStL/Hy/Ys9a7laYbtu2jbFjx5KdnY1Wq8XV1ZXY2Fg8PDyA4vzPnTuHvb099vb2fPLJJ5biTtxJr9eTnpHGiD6f4eRg3aFoSlOg1/HfdRPR6/WVUsytW7eOzz//nOXLl1OjRo0S68ydOZ566ilLZ44RI0Y89Jge1L1yEcJMijlh85YvX84777zDjRs3uHnzJm3btgUgODgYd3d3tm/fztNPP/1QY/inPgYrrTC9dUDa28kQCw/GycEZJwfl3JRUhtJasUeOHImvry+vvfaaZdvly5fj5eWl2M4cD5LLqlWrmDp1KpmZmfzyyy98/fXXLFiwgCZNmlgxE2ENUswJm7Zv3z5u3LhBREQE9vb2+Pr6smHDBnr27MmBAwc4c+YMFy9efKgx6HQ6nmjVmtR0ZT8G8/X2Yfee+z8GU3phao13s0TFKc/f18SJE5k4cWKJZdnZ2XeMK3frOoBPP/30rsvLqjJvfM6fP1/q7zz33HM899xzFRqHUCcp5oRNW758Of3798fevvhP/fvvv2fq1KnMmjWLBg0aEBYW9tDHmNLr9aSmp7H0la9wdVRmy0leYT4DF46+72Ow4vezwkhXwIDEpfH28mLP3r1S0KmQTqejdcuWpN24Ye1Q7snH05M/9+1T/Y0PVM7Nz8CBA0lNTUWj0VClShU+/vhjmjRpQlJSEpMnT6agoICCggIGDBjA8OHDH2ostkqKOWFR2gmXlpbG6NGjOXfuHE5OTkybNo1WrVpZO9z7ysvLY926dWzYsMGyrFGjRixatMjyc3h4eKW9j+Xq6IKbQou5sip+PyuDV9q0wNHeztrh3KHQUMTChAOV9m6WqFh6vZ60Gzf4T63auCh0+I18o5GR58+V6canZauW3EhXdmHq6e3Jvj33L0z/jpiYGMtg4Js2bWL8+PFs3ryZt956iwkTJtC1a1du3LhhmV9aOjyVnxRzwqK0E27q1Km0aNGCxYsXk5iYSFRUFH/88YeltUup1q9fT8OGDUuMuXb9+nX8/PwAWLx4Ma6urorrzaoGjvZ2OCr8+Av1ctFqcVVoMVdWer2eG+k3CBweiNZJmbkYC4xc+ubSQ7/5uX3Gl1vHycvMzASKb74dHBwsHaFE+ci3sbAo7YRbv349u3fvBiA0NBRfX1/27NnDk08+aZU4y2rZsmUMHDiwxLJFixbx008/YTKZePTRR/nuu+9KzDwghBAVSeukVWwxV5lGjRrFH3/8ARTfSAPMnDmTwYMH8/nnn5ORkcH06dMtN9uifKSYq0A6nY7hw4dz4sQJXFxc8PPzY9q0adSsWdPaoZXZ7SdcRkYGRqMRb29vyzaBgYFcvnzZWiGW2d0G1xw3bhzjxo2zQjRCCPHPZZ5BZMWKFXzyySf88MMPxMTEMHnyZPr06cP58+fp378/oaGhqpjBRmmkmKtgkZGRdOrUCY1Gw7x583j77bdVMU+m2e0n3FdffXVHy5XJZKqUWOTlYSGEsC0vvPACEydOJDU1lY0bN/L1118DUKtWLZo3b87+/fulmHsAUsxVIGdn5xKjiLdo0YLvvvvOihE9OPMJZ5aenm5pnbt8+fJDH7xSp9PRqlUr0tPTH+rn/F3e3t7s2bNHCjohhLiL7OxscnNz8ff3B2Djxo14eHjg5eWFs7MzCQkJtGnThoyMDA4cOCC9WR+QFHMP0dy5c4mIiLB2GGVS2gnn6elJr169mD9/PuPHjycxMZHr168/9N6ser2e9PR0Bg4caJl8XWkKCwtZunSp9JwUQohSZGVlERUVhU6nQ6PR4O3tzYIFC7Czs2P27Nl8+OGHGAwGDAYDw4YNIzQ01Nohq5IUcw/JrFmzOHv2LNOnT7d2KGVS2gmn0Wh47733GDVqFG3btsXR0ZFZs2ZVWk9WR0dHxRZzQggh7q1GjRolhoe6Vfv27Wnfvn0lR2SbbKqYu3r1KjExMWRnZ+Pq6srQoUMJDAys9DhiYmLYuHEjy5YtU9Scn/dyrxPO19dXVe/9CSGEqFhKf4f5n/7+sk0Vc3PnzqVjx46Eh4fz559/8u233/Lhhx9WagyxsbGsWbOGkSNHlhjqo7I8jBMuPj6edu3aVdj+rHXSXbx4UVU9i+9l74WDhAU1s3YYFeJC+k2CvD2sHUaFOJNymLqPNLZ2GBXCVnJJysvlMVc3a4dRIfLP5ONSt/IbCIqnJGxJqoIHQPb19mT3Qx78uDQFV07gFGDdgY5tppjLzMzk3LlzvPvuuwC0atWKBQsWkJqaiq+vb6XEcOXKFT766CNq1arFu+++y5dffomTkxNxcXGV8vk6nY7WrVuSlqbcEw7Ax8eTP/+s/JPu0qVLNlPM7bt4yGaKuYsZNlTMXT1iEwUQ2E4uB/PybKeYO2udYq54SsIbrI30wM2xYsblnL0nj+hWrhWyr9xCE30X37Da+8sFKVLMVZiMjAw8PDywsyueYsj83ldaWlqlFXMBAQGW8demTJnClClTKuVzzfR6PWlpN/hgij/OzhU3EG5cXBa9elWrkH3pdCY+nHJVOg0IIYTKuDlqKqyYc9BSYfsSNlTMAWUayd88RlpOTk6J5QUFBRX6eDI3N5eUlJQK25+DgwNOTk733MacU4HOCFTcSVJkMKHTGStkXwW6u///3868Pjc3l8LCwgr5bL1ef9/PLe/+oOy5pOXcIM8xv0I+O79QR2pOxU12n1eoA8qeS46uEEf7ogr57MKiInJ0BRWzL0NxTGU5zuZtsvNuUuCgq5jP1+vIyquYlvFCffmOSUXmYf58a+WSYTCQX0HTeemMJtINhgrZFxTPzQplz8WQbUBbUDG5GAuNGLIqLhdjYflySc01kltYMdeWPD1cz6mY60qevnzXlaK8LIwOFfOdA2A0FGLIy6yQfZn0xXHdmov53/ca41Wzffv2yhkB9iHLzMxk/PjxxMbGYmdnh8lkYsSIEXz44YclWubS09MZNWqUFSMVQgghhCifWbNmlZiN6VY20zLn7u5O7dq12blzJ+Hh4ezZswcfH587HrF6enoya9YsnJ2dZU5OIYQQQiiayWRCp9Ph6elZ6jY20zIHxR0QYmNjycnJwcXFhWHDhlllaBIhhBBCiMpiU8WcEEIIIcQ/TcW8lSmEEEIIIaxCijkhhBAPRMkzApTXvXoKqo0t5SLKRoo5If6XLXwBmkwmm8jDVp08eZLr169bO4wKcfToUbZu3QqA0VgxQ0xYQ3p6Ojqdjvz8ihk2yJp0uuIhYKRz3z+PzfRmVYuioiLLwMZqdOnSJQwGA3Z2dqqfTeHs2bOWL7+GDRuq+gswOTmZoqIiHnvsMUtBp9Z8EhMTyc3NpW3bttYOpUIlJiby3XffER0djY+PD1qtVrXH6eDBg3z55Zc4ODjQpUsX7O3VeSn566+/WLNmDe7u7jRo0ICuXbtiZ2enymNy4MABdu3aRVFREc2bNyc4OJgaNWpYO6xyU8M18vTp07i5ueHv72/tUCykZa4S7N+/n+nTp1uKoKKiihlstbL99ddfxMTEsHLlSlauXMmOHTusHdIDS0pKYs6cOcTHx7N69WoOHjxoWaemli2TyURmZiazZ8/m3//+N/v27bNciNTYWnLo0CEWLVqEh4fHHevUdFxud+XKFRYtWsSIESNo3Lix5TtAjd8FSUlJ/Pjjj7z33ns0bdqUDRs2WDukB3L48GGWL1/OoEGDaNGiBcePH0er1aqykDty5AjLly+na9euNGrUiAMHDrBs2TLOnTtn7dDKRE3XyMTERD744AO+/vprrl69au1wLKSYe8iOHj3K999/z82bN/n4448tf6xqu9AmJyezePFioqKiGDVqFMHBwZw+fdraYT2QxMRElixZwpAhQ4iKisLHxwconm0Cih9RqKVw0Gg0uLu707FjR/r168fcuXNJSEhQ5QXpr7/+Yt68eYwZM4bGjRuTl5dHVlYWmZnFI6ur6bjcLj8/n6CgIBo2bEh6ejrz5s1j9uzZrF69mgsXLlg7vDI7e/Ysq1atYuDAgdSrV486depw8eJFa4f1QJKSkmjTpg2PPvoozZo1IyMjg3nz5qnumEDxd9pTTz1FSEgIXbt2JSgoiJs3b7J+/XrFP9ZX0zWyoKCA+Ph4Ro0aRb169ZgzZ45iCjop5h6y3NxcevXqxWeffYanpycfffQRBoMBrVar6LuPWxmNRq5cuULv3r0JCgrC0dGRZs2acfbsWXJyclR1gTWZTKSmphIZGUm9evXIzMwkOTmZn3/+me+//5558+YB6nnnxGg0YjQauXnzJkFBQfzrX/9i4cKFrFixgh9++MGyXg1Onz5NRkYGgYGB6PV6vv76a2bPns3cuXNZu3YtoJ7jcjt3d3fy8/M5d+4cs2fPpm7dujRu3Bi9Xs/vv/9OYWGhKs4jFxcXoqKiaNSoEQBPPvkkx44dU2UrvYeHB+fPn+eXX35hypQplkeT+fn5/PbbbxQUFKjimAA4OjpSWFhoeW3EZDLRpEkTNBoNN2/etG5w96Gma6STkxODBg0iNDSU1157DV9fX+bMmVOhU3c+KCnmHrKWLVsSHh4OwPDhw/H29ubDDz9Er9djZ2enijtArVZLy5YtefzxxwEwGAw4OTmh1WpxcnJCo9Eo4o+5LDQaDR07dqRZs2YYDAbmz59P586dGT9+PL179+b8+fMcP37c2mGWmVarRavVEhoaSl5eHk888QQdO3YkLi4OjUZjWa8G/fv3p3v37kRHR/P//t//IywsjMGDB/PUU09x4sQJxdwBPwgnJyccHBzYuXMnwcHBRERE0L59exo2bEhGRgaOjo6qKFT9/f0JDAzEZDJRVFSEp6cnvXv35tSpU+j1etXcOAA0atSIGjVqcPnyZerXr8+zzz5LeHg4DRo0ID09HQcHB1UcEyh+53fPnj3Mnz+fWbNmcfbsWQYMGICbmxt//vmntcO7J7VdIz09PXFwcAAgOjoaX19fvv32W3Q6HVu3bmX9+vVWiUsd3/Iq5+rqChTfPQ0bNgwfHx+mT5/O1q1bmT9/PtnZ2VaO8P68vLyoUqUKAPb29jg7O2NnZ4eDgwPx8fEsWbLE8phS6cwva9vb2xMVFUXfvn1xcHCgdu3aeHp64ujoaOUIy0+j0XDp0iWSkpLYvXs33bp1Y8uWLezbt8/aoZXLiy++SPv27WnZsiUdO3bE19eXZs2aqapIuJuqVavSrVs3kpKSOHLkiOXRZGFhIYWFharrSanRaCwvqQcGBnLo0CFSUlJUc+MAULt2bZ577jk6d+6Mh4cHBQXFE5ybj4m5lUsNGjduzNChQwkLCyMsLIwxY8YA4OPjY3mNRMnUdo3UaDSW76To6Ghq1arFuHHjWLduHU2aNLFKTOrsgqRiTk5OjB49mgkTJrBy5UomTZpE1apVrR1WuTk4OODh4cHPP//Mzp07GT58OG5ubtYOq1xMJhMuLi6Wn/fu3UtaWhru7u5WjOrB1K5dm99++409e/bw8ssvExYWptrebAMGDCjRInLw4EHy8vJKHCu1MBqNlgKncePGvP7666xdu5aNGzei0Wg4ceIEI0eOVEVut+Zyq8aNGxMSEsLGjRuJiooClP04/PY87O3tSU5ORqvVYjQaOXz4MMOHD7cUGEp2ay5169YtsW7r1q3s2rWLkSNHWiO0B6aWa6T570Wr1RIcHMwff/zBpEmTrDaFqBRzFchoNGIyme7brTo+Pp7CwkImT56syLlj75eH0WgkPz+f/fv3c+3aNd58800CAgIqOcqyuVcut/b6/O2339iyZQsjRozAy8urssMsk3vl4u3tTa1atejWrRtNmjTBZDLRunVrK0RZNnfLxTxMx60XWvNxGTZsmCqK7LNnz1JYWIijoyN16tQp8YVvMplo0KAB3t7eZGdnk5KSQt++ffHz87N22Hd1r1zMzD936NABPz8/RRZx98sjICCAQYMGcfLkSXQ6HSNHjlTs91lZj8mFCxfYt28f0dHRir2hM7+PaDKZ0Gq16HQ6y2s7Sr9Gmmm1WnJzc9m3bx/vvfeeVWOVuVkryP79+0lISCA3N5fOnTsTEhJiuZu4/WTbu3cv1atXJygoyFrhlqqseej1eubMmUOfPn0UO95cWXNJTU1l27ZtPPnkk6rMxWAwlBjnq7QWFKUoz3HZvHkz4eHhij0ut9q7dy8rVqwgMDAQnU6Hq6urpVXE3ENPicXO3dwvF7WMK/dPPSYFBQUUFRUpqnXx5MmTXLx4ES8vLwICAvDz87PEffToUbZv386rr76Kq6sr+/btw8/PT5HXyLvR6/WW9+isRYq5CnD06FHmzp3Lyy+/TFpaGjt37uSxxx6jVatWJe7wUlNT8fX1tWKk91bWPNLS0vDx8bHcISpRWXPJyMjAy8tL0RcoW/n7Ats6LrfKzc3l888/55VXXqFevXrcvHmTGTNm4OLiwqRJkyzb7d69m6CgIMW2/IDt5FLWPBISEggKClJsCxaU75jUrFlTcbkcOHCAJUuW0LRpUwoLCzl16hTR0dHUrl2bc+fOMXfuXPr06UNYWJi1Q1Ut5d6+q8jFixcJDQ3lscceo3Pnzrz44otcunSJPXv2WDoFnDlzhu3bt5OXl2flaEtX1jx+/fVXdDqdYgs5KHsuW7ZsIT8/X9EFQ3n+vpT+Ir0tHZdbGY1GDAaD5b1RDw8PPv74Y3Q6Hd98841lu7S0NGuFWGa2kktZ80hPT1d861x5jonScrlx4wabNm1i5MiR/Otf/6Jnz54UFhYyffp0zp07h5OTE5GRkYSFhalmKBglkmKuAri4uJQYyyckJIQuXbpw4MABTp48CYCfnx9du3ZVVLP37cqaR7du3XB2drZSlGVTnlyU/vJ5ef6+bCUXNRyXW1WtWpWGDRuybt06cnJyLMtHjhxJbm4uly5dAqBXr16Kbckys5VcbCUPUHcuLi4uaLVay41mQEAAYWFhtGjRgsWLF+Pp6UmDBg0AZXecUTop5ipAixYtOHbsGEuXLrUsCwkJ4cknn2Tnzp0UFRVRpUqVu05RpCS2kgdILkplS7mYmVsTWrdujZ2dHZs2bbJccM2PvfV6vdXiKw9bycVW8gB152IymTAajQQEBLB//35+//13li1bxrVr1+jRowcajUY1Q1opnRRzf5PRaMTNzY1Jkyaxa9culixZYllnb29vGVxX6WwlD5BclMqWcrmVuTXBPC1UVlYWCxYs4MKFCyQkJJCRkUG1atWsHGXZqD0Xc+Gj9jxupeZcNBoNrq6uPPnkk7i6unLkyBEKCgoYPXo0gYGB2NvbSzFXQaQDxN9g7nlnfkn76tWrTJs2jTp16uDk5MSZM2d48803Fd8jx1byAMlFqWwpl7spKirCzs4OnU7HlStX+PPPPzl58iR2dnZERkZSu3Zta4d4V5mZmbi4uJR4/1WNuZw9e5aqVauWGCBXjXnczjxcj1pzuVfP+p07d7J+/XomTZqkimGHlE6KuXI4ePAgx44dw2Aw0KlTJ/z9/S3rzp8/j729PV5eXhw+fJjc3FxCQkJKbKMUtpIHSC6SS+Xat28fx44dY9CgQZZl5gvu4cOH2blzJy+//DKurq7odDq0Wq1iOwrt27ePHTt2MHDgQPz9/S1j4aktl0OHDjF79mx69+5Njx49MBqNaDQa1eUBkJycTGJiIo6OjrRr145HHnlEVcfkXue9ubAzGo3Ex8fz008/MWHCBFUMO6QG6numYSUHDx5k4cKFeHp6otfrmTZtGnv37gXg+PHjxMbGkpOTg4uLi2WuOSVenGwlD5BcJJfKdfDgQdasWUPTpk1LLNdoNJw/f55ly5bRokULSycnZ2dnRV1ob3Xo0CFWrFhB165dCQgIsLSeaDQazp07p5pcDh48yPLly6lXrx5JSUlA8UCuGo2GCxcuqCYPKB6+Y/HixVStWpXr16+TmJgIqOeYlHbem6dFM/+NabVa6tevz8SJE6WQq0Dq6PevAAcPHqRr16506dIFgJo1a7Jp0yby8/M5d+4cffv2JSQkxMpR3p+t5AGSi1LZUi5mR44c4auvvuKDDz4gKCiI7OxsMjMzcXR0pFq1amg0GiIjI2nQoIGlJUXJTp06RZ8+fWjatCnp6ekcOXIEgODgYFxdXXnppZdo2LChonNJTk5m4cKFjBgxgjp16vD++++zdetWIiIiAMjLy2PQoEGEhIQoOg+Amzdv8vPPPxMVFUWdOnXYtGkTGRkZJCcn4+Pjo4pjcrfz3jxtXcuWLQG4fv06VapU4ZFHHrFmqDZJirky0mq1JYZU6NSpEwA//vgjY8eOpW7duoo9yW5lK3mA5KJUtpQLFD9GzcnJwd3dnRs3blC9enW+/PJLnJ2d0el01KtXj379+llaTNSQV0pKCnZ2dhQWFvKf//yHGjVqUFRUxJo1axg3bhwNGzYElJtLYWEhV65cYejQodSpU4eioiJCQ0O5fPmyZRvzcBeg3DzMXFxccHBw4MqVK3h5ebF582Zq1arFzp07OXnyJGPHjlX8MbnbeW8ymVi0aBE1a9bE3t6e9evXM3DgQOsFacPkMWsZPfHEE/z6668kJCRYlnXq1InmzZuTnJxsxcjKx1byAMlFqWwpFyi+eIaGhvLSSy+xbNkyRo4cSZs2bXjrrbfo3bs3Fy5c4Pr169YOs1zCw8O5fPkyixYtokOHDrzxxhsMGTKE0NBQDh06ZO3w7svR0ZFOnTrx6KOPYjQasbOzIywsjF27dlkeT6qF+camadOmbNu2jc8//5z27dszZswYhgwZQpMmTSyPkJXsbud9586dadq0KXv27MHb25sXXnhB0WOtqpm0zJVR3bp1eeWVV4iLiwOgTZs2AFSpUuWO7vBKZit5gOSiVLaUi5mjoyPNmjXDYDCQlZVleZQXGhrKtm3bVDe8gvnR3fHjxy2DzNrb26PVahU7ZpmZufgxzw5ifqk+KCiIrl27cvjwYZo1a2ZZp3QajcZSnIaHh7Ny5UrLdFz29vbY2dkp/pjAvc97g8EAYJmDWVQ8KebK4YknnkCr1TJ//nzOnDmDvb09+/fvZ9SoUdYOrVxsJQ+QXJTKlnIx98JzdHSkZcuWJQqEhIQEUlNTVdGBA/4vl+rVqxMeHk5+fj7Hjh3DwcHBMg7Ym2++ae0w70mj0dwx5IX537Vr12bhwoX06dNHNYWDORcnJyc0Gg116tThzJkzuLm5kZeXx/HjxxkxYoS1wywTWzrv1UaGJnkA586dIzExEb1eT5s2bQgMDLR2SA/EVvIAyUWp1JjLvYZXMDMajezatYu4uDhGjhyp2Lzul0tKSgpXr17ljz/+wNHRkW7duilyrL+yHBOzmJgYnnnmGapXr16JEZbd/XI5deoUO3bsIDU1FYPBwCuvvKLIY3Ivajzv1U6KOSGE+F/m4RW6devGlStX+Ouvv4iMjKRp06Yl5iPOzs7mt99+o0WLFpZHYkpT1lyguDg1Go2WR5dKUp48AEV3rilrLgUFBZhMJoqKinBzc7NixEItlHfmCiGElZR1eAVvb2969uyp6HeyyjNUhKurq2JzKWseVatWxcXFRbGFHJT/mAhRVso8e4UQwgruNrxC27ZtWbRoEdeuXSM9PZ1169ZRUFCg2OLHrCy5rF+/3noBllFZ8zB3rlEyWzkmQnmU/W0khBCVqCzDKwwYMEAVrSa2MlSEreQBtpWLUBYp5oQQ4n/dOrzCrRdcNQ6vYCu52EoeYFu5CGWRd+aEEOIWtjS8gq3kYit5gG3lIpRDerMKIcRd2NLwCraSi63kAbaVi7A+KeaEEEIIIVRM3pkTQgghhFAxKeaEEEIIIVRMijkhhBBCCBWTYk4IIYQQQsWkmBNCCCGEUDEp5oQQQgghVEyKOSGEEEIIFZNiTgjxjxIZGUlycrJVY9ixYwcjR45k0KBB7Nix467brF27lujoaCIjIzly5EglR1gsNTWVyMhIrl69apXPF0KUjQwaLIQos08++YSjR48C4OTkRI0aNXj++edp1qyZlSO7U3JyMp999hmLFy8usfzmzZtUqVIFe3vrzGZoMBgYMmQIL730EmFhYbi5ueHo6Fhim9TUVMaOHcuYMWMIDg6ulHi3b9/OmjVr+OqrryzLjEYjWVlZVKtWDa1W7v2FUCqZm1UIUS7du3end+/e6HQ6NmzYwMyZM5k2bRr+/v4ltjOZTBQVFVmlaDJPWn43Hh4elRfIXdy4cQO9Xk9oaCienp533SY1NRWTycTjjz+ORqOp5Aj/j1artfr/lxDi/qRlTghRZp988gn169fnhRdeAKCoqIg33niDl156iYiICCIjIxkyZAgJCQmcOHGC6OhoWrZsyfLly4mPjyc/P5+QkBBee+01S/G3atUqkpOTefzxx9mwYQMGg4GIiAheeOEFSyFz9epV5s2bx/Hjx3FxcaFdu3YMGDAAOzs7AEaPHk1ERASnT58mKSmJ/v37s2TJkhKxR0VFER4eTmRkJBMnTqRJkyYAJCYmsnTpUq5evYq3tzfPPPMM7dq1A4qLqjFjxjB27FjWrl3L5cuXqVu3LsOGDcPHx6fU/6f4+HhWr15Neno6/v7+DBw4kNDQUI4cOcKnn35aYtsvv/wSX19fy887duxgzpw5JbZZvHgxo0ePpl+/fnTs2NGy/NZczPueOHEiCxYsICMjg8aNGzN06FDc3Nwsx2v16tX8/vvvZGVl4evry8CBA3F2dr4jrvfeew9fX1/GjBnDjBkzLMertNyAMsUghKh40jInhHhgdnZ22NnZUVRUZFm2atUqXn75ZYYMGYKTkxNxcXHEx8cTFRWFj48PK1asYMaMGUyfPt3y6O7ChQtUq1aN9957j8uXLzNnzhz8/f0JDw/HaDQyY8YMqlevzkcffURGRgaxsbG4ubnRt29fy+fGxcUxYMAAXnrpJTQaDT4+PsyaNYv//ve/ALi6ut4Rf2pqKl988QW9evWibdu2JCcnM2fOHPz8/AgJCSmR06BBg3B3dyc2NpZFixYxZsyYu/6fnDhxgjlz5hAZGUmzZs34448/+OKLL/if//kf6tevz5QpU5gyZQofffQR3t7eVKtWrcTvt2nTBmdn5xKxl8eaNWsYNmwYGo2G//znP6xevZpBgwZZ8tixYwevvvoqQUFBpKSkoNFoqF+/PpGRkWzcuJGPP/4YgCpVqnDjxo0y53ZrQXqvGIQQFU9eghBCPBCDwcC6dessrW1mHTt2pHXr1vj5+eHu7s7mzZt59tlnad68OTVr1mTo0KGkpaWRlJRk+R2j0UhUVBSBgYG0bt2abt26sWXLFgAOHTpEamoqw4YNIygoiNDQUJ577jk2btxYIp4WLVrQqVMn/Pz88PX1tbQEeXh44OHhccd7aQC//vorQUFBPP/88wQEBNC1a1datWrFpk2bSmzXt29fGjduTGBgID169LC8N3g3mzdvJiwsjO7duxMQEED//v2pVasWW7Zswd7enqpVqwJQrVo1PDw87ngXzdHR8Y7Yy2PgwIHUq1ePunXr0qFDB44dOwZAYWEhP//8M6+88gphYWFUr16d0NBQHnvsMezt7XFxcbE8VvXw8Ljr4/F75VaWGIQQD4cUc0KIcomLi2Pw4MEMHjyYDRs2MHjwYGrXrm1Zf+u/8/LyyMzMJDg42LKsSpUqPPLII6SkpFiWVa9evcRjuHr16lnWp6Sk4O/vT5UqVSzrH330UbKzs8nJybEsq1WrVrlzSUlJKRGbed+3xgZQs2ZNy7/d3d3JycnBaDT+rX0+LLfG6uHhQVZWFlD8qFqv19OoUaMH3veD/H/dGoMQ4uGQx6xCiHLp2LEjPXr0wNnZ+a6tRk5OTuXe571e8jeZyvZa74N8bln3bX43D/4v1tJ+t6z7LC+NRlNi36V18rg1VqDUovNBPMj/V0XHIIS4k7TMCSHKxc3NDX9//zI9/nN1dcXd3Z1Tp05ZluXk5JCSkkJAQIBl2dWrV8nNzbX8fObMGR555BEAAgICuHr1aolWuJMnT1KtWrUSrXW3MxcU9yokAgICSsRm3vetsZVXafs05/OgqlWrRmZmpuXnixcvluv3/f39cXBwKHXMOjs7u/sWXQ8rNyHE3yPFnBDioerWrRs//fQTiYmJXLp0idjYWHx8fEqMTafVavn222+5dOkSe/fuZfPmzXTp0gWApk2b4uvrS2xsLBcvXiQxMZFVq1bRvXv3e36uubdpYmIi2dnZ6PX6O7bp3LkzFy5cYOXKlaSkpPDLL7+wZ8+e++77fvnu3buXX375hZSUFFauXMn58+ct+TyoBg0asGPHDk6fPs2ZM2dYunRpuX7f0dGRp59+moULF7J3716uX7/OwYMHLe8u+vj4kJmZyZkzZ8jOzr5ry9/Dyk0I8ffIY1YhxEPVq1cvcnNziY2NJT8/n/r16zN+/PgSL/4HBQVRt25dPv74Y4xGIxEREbRv3x4oLvTGjx/PvHnzeP/99y1Dk/Tq1euen+vr60vv3r2JjY0lJyfHMjTJ7duMHTuWpUuXsm7dOnx8fHjjjTeoX7/+A+dbv359oqKiWL16NYsWLeKRRx5h7NixJXp7Poi+ffty7do1pk6diqenJ6+99hqHDx8u1z6ee+45AObPn09ubi5+fn4MHDgQKC4W27Rpw2effUZeXp5laJLKyE0I8ffIOHNCCKsyjzP3wQcfWDsUIYRQJXnMKoQQQgihYlLMCSGEEEKomDxmFUIIIYRQMWmZE0IIIYRQMSnmhBBCCCFUTIo5IYQQQggVk2JOCCGEEELFpJgTQgghhFAxKeaEEEIIIVRMijkhhBBCCBX7/3cPM/uGI6TwAAAAAElFTkSuQmCC", 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" ] @@ -1396,7 +1385,7 @@ "" ] }, - "execution_count": 16, + "execution_count": 23, "metadata": {}, "output_type": "execute_result" } @@ -1407,12 +1396,12 @@ }, { "cell_type": "code", - "execution_count": 17, + "execution_count": 24, "metadata": {}, "outputs": [ { "data": { - "image/png": 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", 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", 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" ] @@ -1423,10 +1412,10 @@ { "data": { "text/plain": [ - "" + "" ] }, - "execution_count": 17, + "execution_count": 24, "metadata": {}, "output_type": "execute_result" } @@ -1440,12 +1429,12 @@ }, { "cell_type": "code", - "execution_count": 19, + "execution_count": 25, "metadata": {}, "outputs": [ { "data": { - "image/png": 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", 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", 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" ] @@ -1459,14 +1448,12 @@ "" ] }, - "execution_count": 19, + "execution_count": 25, "metadata": {}, "output_type": "execute_result" } ], "source": [ - "\n", - " \n", "BasicPlot(sw).plot_box_sns(df=sw.get_df(table_name='taxa_func'), title_name='taxa', show_fliers=False, \n", " width=10, height=8, font_size=10, theme='bmh', rename_sample=False, \n", " plot_samples=False, legend_col_num=1, sub_meta='Sugar_source')" @@ -1474,7 +1461,7 @@ }, { "cell_type": "code", - "execution_count": 21, + "execution_count": 26, "metadata": {}, "outputs": [ { @@ -1483,15 +1470,15 @@ "text": [ "The min number of Functions:\n", "Group SubGroup Number\n", - " V4 BAS 389\n", + " V4 BAS 187\n", "The max number of Functions:\n", "Group SubGroup Number\n", - " V2 CHO 544\n" + " V2 CHO 427\n" ] }, { "data": { - "image/png": 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", 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", 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" ] @@ -1505,7 +1492,7 @@ "" ] }, - "execution_count": 21, + "execution_count": 26, "metadata": {}, "output_type": "execute_result" } @@ -1519,16 +1506,16 @@ }, { "cell_type": "code", - "execution_count": 22, + "execution_count": 27, "metadata": {}, "outputs": [], "source": [ - "from MetaX.utils.TaxaFuncPloter.heatmap_plot import HeatmapPlot" + "from metax.taxafunc_ploter.heatmap_plot import HeatmapPlot" ] }, { "cell_type": "code", - "execution_count": 33, + "execution_count": 28, "metadata": {}, "outputs": [ { @@ -1541,7 +1528,7 @@ }, { "data": { - "image/png": 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", + "image/png": 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iIuIASrBFREREREREHEAJtoiIiIiIiIgDKMEWERERERERcQAl2CIiIiIiIiIOoARbRERERERExAGUYIuIiIiIiIg4QJEm2DNnzqR79+7XbJOSksKIESNo2rQpTZs25aWXXiItLc2uzaZNm2jXrh316tUjPDyczz//vDDDFhEREREREcmhyBLsd955h2nTpl233dChQzl69Kit/f/+9z8mTpxo2//1118zcuRIunXrxpo1a2jZsiWDBg3i8OHDhRm+iIiIiIiIiB2T1Wq13swLnjp1irFjx7Jnzx4CAgIoX748S5YsybXt3r176dq1Kx999BE1a9YE4Msvv6RPnz589tlnVKxYkf/7v/+jdOnSxMfH247r2rUrd9xxB5MmTbopr0lERERERETkpvdg//TTT5QpU4Z169bRoEGDa7bdvXs3/v7+tuQaoFmzZphMJvbs2YPFYuHbb7/l7rvvtjuuefPm7N69u1DiFxEREREREclNiZt9wdDQUEJDQ2+o7alTp6hUqZLdNnd3d3x9fTlx4gR//fUXaWlpBAQE2LWpUKECJ06ccFjMIiIiIiIiItdz0xPsvLh06RLu7u45tnt4eJCRkUF6ejpAjjbZ+68mLCzsmtfdtm1bPqIVERERERGRW9l/OsH29PTEbDbn2J6RkYGXlxceHh4AOdpkZGRQsmTJfF+3v6lavo91drOtR4o6BBEREREREaf0n06wAwIC2Lp1q902s9nM+fPnqVixIr6+vnh5eZGcnGzXJjk5Ocew8Stdr4d6kEu1fMcsIiIiIiIit6YiXQf7epo2bcrJkyf5448/bNsSExMBaNSoESaTiUaNGrFr1y674xITE2ncuHG+r+tqMt2y/0RERERERCR//lM92IZhcO7cOUqVKoWnpycNGjSgUaNGREZGMmHCBNLS0hg/fjwdO3akYsWKAPTu3Zt+/fpRp04dWrVqxQcffMDPP//Mq6++mu84XJVnioiIiIiISB79p3qwT5w4QcuWLfnoo48AMJlMTJ8+ncDAQHr27Mnw4cNp1aoVEyZMsB3TsmVLXnvtNd5//30ef/xxvv76a2bPnm23tFdeFXUvsnqwRUREREREnI/JarVaizqI/5oX3WsUdQhFZrL5t6IOQURERERExCn9p4aI/1eoJ1duRFRUlG2pOBGRwuTp6UlMTExRhyEiIiLXoQQ7F6rBlhuRnp5OfHx8UYchIreAyMjIog5BREREboAS7FyoB1tERERERETySgl2Lv5TM7+JiIiIiIiIU1CCnQv1YIuIiIiIiEheKcHOhWqwRUREREREJK+UYOdCPdgiIiIiIiKSV0qwc6EebBEREREREckrJdi5UA+2iIiIiIiI5JUS7FyoB1tERERERETySgl2LtSDLSIiIiIiInmlBDsX6sEWERERERGRvFKCnQsl2CJSXERFRZGenl7UYUgBJScnExkZWdRhSAF4enoSExNT1GGIiEghU4KdCw0RF5HiIj09nfj4+KIOQ+SWpw9IRERuDUqwc6EebBEREREREckrJdi5UA+2iIiIiIiI5JUS7FyoB1tERERERETySgl2LtSDLSIiIiIiInmlBDsX6sEWERERERGRvFKCnQv1YIuIiIiIiEheuRR1ACIiIiIiIiLFwU3vwbZYLEyfPp2VK1fy119/0bhxY8aPH09QUFCOtgkJCUyfPj3X80RERBATEwNAaGgox44ds9sfHh5OXFxcvmJ0UQ+2iIiIiIiI5NFNT7BnzpzJsmXLiImJoWLFikyZMoW+ffuyYcMG3N3d7do+++yzdO3a1W7bqlWrmD17Nj179gQgNTWV48ePM2fOHOrWrWtr5+npme8YTSrCFhERERERkTy6qQm22WxmwYIFjBw5ktatWwMQHx/PfffdxyeffEL79u3t2nt7e+Pt7W37/s8//2TOnDmMHj2a4OBgAA4dOoTVaqVRo0aULl3aIXG6KMEWERERERGRPLqpCfaBAwe4ePEid999t21b6dKlqVOnDt98802OBPvfYmNjuf322+nSpYtt28GDB/H393dYcg1gclVpuoiIyM0SFRVFenp6UYdRqJKTk4mMjCzqMAqVp6enrXxPRORWdVMT7JMnTwJQqVIlu+0VKlTgxIkT1zx23759bNu2jUWLFuHi8k8CfOjQIby8vBgyZAh79+6lXLlyRERE0KNHD7t2eaEh4iIiIjdPeno68fHxRR2GFFBx/wBBRORG3NQE+9KlSwA5aq09PDy4cOHCNY995513aNCggV3vN8Avv/zC33//Tbt27Rg8eDC7d+8mLi6OCxcuMGzYsFzPFRYWds1rjVaCLSIiIiIiInl0UxPs7InHzGaz3SRkGRkZlCxZ8qrHpaWl8cknnzB+/Pgc+xYuXEhGRgY+Pj4A1K5dm4sXLzJr1iyGDBmSr15sUz57vkVEREREROTWdVMT7Oyh4cnJydx222227cnJybZJy3LzxRdfYLFYePDBB3Psc3Nzw83NzW7bHXfcQVpaGhcuXKBs2bI5jtm2bds14/y0frNr7hcRERERERH5t5vaVRscHIyPjw+JiYm2bX/99Rf79++nSZMmVz1uz5491K1bN8dEZhaLhdDQUGbNmmW3fd++fZQvXz7X5PpGmFxNt+w/ERERERERyZ+b2oPt7u7OM888Q1xcHOXKlaNKlSpMmTKFgIAAHnzwQQzD4Ny5c5QqVcpuCPmBAwe44447cpzPxcWFtm3bMm/ePKpVq0bdunXZuXMn8+bNY+zYsfmOU7OIi4iIiIiISF7d1AQbYOjQoWRlZTFu3DjS09Np2rQp8+fPx93dnaSkJMLCwoiJiSEiIsJ2zJkzZ2jQoEGu5xsxYgSlS5fmjTfe4OTJkwQGBjJ27FiefPLJfMeodbBFREREREQkr/KdYM+YMYOIiIgcS25dj6urKyNHjmTkyJE59gUGBnLw4MEc2z/66KOrnq9EiRIMGDCAAQMG5CmOazG5KMEWERERERGRvMl3gr1o0SJmzJhB8+bNiYiI4KGHHsLDw8ORsRUZFw0RFxERERERkTzKdyb55ZdfEhcXh5ubG6NHj+bee+8lOjqavXv3OjK+IlHUE41pkjMRERERERHnk+8ebHd3d9q1a0e7du1ITk5m3bp1bNq0iZUrV1KtWjUiIiKIiIjAz8/PkfHeFEo0RUREREREJK8cMslZhQoV6NGjB0FBQSxevJhvvvmGqVOn8tZbb/H444/z4osv4uPj44hL3RQaIi4iIiIiIiJ5VeAEe9euXaxdu5bNmzeTlpbG3XffzdSpU2ndujWfffYZkyZN4uTJk8ydO9cR8d4U6sEWERERERGRvMp3gh0fH8/69es5ceIElSpVolevXkRERFC5cmVbm3bt2nHw4EEWL17skGBvFhfNIi4iIiIiIiJ5lO8Ee+HChTzwwAO8/PLL3HPPPZhMuSel9erVY/jw4fm9TJEwaYi4iIiIiIiI5FG+E+xly5ZRq1Yt3N3dc+zLyMjgp59+olGjRjzwwAMFCrAouGiIuMgtISoqivT09KIOo1AlJycTGRlZ1GEUKk9PT2JiYoo6DBEREZH8J9hPPPEEy5cvp379+jn2/fDDD/Tp04fvv/++QMEVFdVgi9wa0tPTiY+PL+owpICK+wcIIiIi4jzylGBPnjyZ8+fPA2C1Wpk5cyZly5bN0e7nn3+mVKlSDgmwKGiIuIiIiIiIiORVnhLsmjVrMnPmTABMJhM//vhjjiHirq6ulCpViqioKMdFeZNpiLiIiIiIiIjkVZ4S7E6dOtGpUycAQkNDmTFjBnfeeWehBFaUTJpFXERERERERPIo3zXYn376qSPj+E9x0RBxERERERERyaM8Jdg9evRg/Pjx1KxZkx49elyzrclkYtGiRQUKrqhokjMRERERERHJqzwl2FarNdevr9dWREREREREpLjLU4K9ZMmSXL8ubjSLuIiIiIiIiORVvmuws128eBFvb28ANm3axKlTp7j//vsJCgoqcHBFxeSiBFtERERERETyJt8J9u+//85zzz1Hu3btGD58OPHx8cyZMweA+Ph4FixYQOPGjR0W6M2kSc5EREREREQkr/KdScbFxeHq6kpYWBiZmZm8//77tGvXjt27d3Pffffx5ptvOjDMm8vk6nLL/hMREREREZH8yXcP9jfffMOrr75KvXr12LlzJ3///TddunTBx8eHrl27MmTIEEfGeVMp0RQREREREZG8yneCnZmZSZkyZQD47LPPKFmypG1IuGEYlChR4PLuIqMabBEREREREcmrfGeStWvXZsuWLSQnJ/PRRx/RsmVLSpQoQWZmJkuXLuWOO+7I9TiLxcK0adO47777aNCgAc8++yx//PHHVa/z4YcfUrt27Rz/rjxm06ZNtGvXjnr16hEeHs7nn3+e35cFgMnV9Zb9JyIiIiIiIvmT727moUOHMnDgQJYuXYq7uzt9+/YFoG3btpw5c4bZs2fnetzMmTNZtmwZMTExVKxYkSlTptC3b182bNiAu7t7jvYHDx6kWbNmTJ061W57uXLlAPj6668ZOXIko0ePpkWLFqxatYpBgwaxZs0aatasma/XpiHiIiIiIiIiklf5TrDvuece1q9fz759+2jQoAFVqlQBoGfPntx9993Url07xzFms5kFCxYwcuRIWrduDVyecfy+++7jk08+oX379jmOOXToEMHBwfj7++cax9y5c3nwwQd55plnAHjxxRfZu3cvixYtYtKkSfl6bS4aIi4iIiIiIiJ5VKBC6apVq1K1alW7bT179rxq+wMHDnDx4kXuvvtu27bSpUtTp04dvvnmm1wT7IMHD9K2bdtcz2exWPj2228ZPXq03fbmzZvzySef5OWl2FEPtoiIiIiIiORVvhNsi8XCqlWr2L59O5cuXcJisdjtN5lMLFq0yG7byZMnAahUqZLd9goVKnDixIkc1zh37hxnzpzhm2++YcmSJZw/f54GDRrwwgsvUL16df766y/S0tIICAi4ofPdKCXYIiIiIiIiklf5TrDj4uJYsGABgYGBBAQEYDKZ7PZbrdYcx1y6dAkgR621h4cHFy5cyNH+0KFDALi6ujJ58mTS0tKYOXMm3bp1Y/369WRlZV31fBkZGVeNPSws7JqvbXGrWtfcLyIiIiIiIvJv+U6w165dS+/evXnxxRdv+BhPT0/gci129tcAGRkZlCxZMkf7u+++m127dtmWAwOYMWMG999/P6tXr6Zz5862813paue7UerBFhERERERkbzKd4J98eJF2rRpk6djsoeGJycnc9ttt9m2JycnExwcnOsxVybXAF5eXgQGBnLq1Cl8fX3x8vIiOTnZrk1ycnKOYeNX2rZt2zXjPBEz6Jr7RURERERERP4t3121jRs35ttvv83TMcHBwfj4+JCYmGjb9tdff7F//36aNGmSo/17771H8+bNSU9Pt21LTU3lyJEj1KpVC5PJRKNGjdi1a5fdcYmJiTRu3DiPr+gfLq4ut+w/ERERERERyZ9892D36dOHkSNHkpWVRYMGDXIdkt20aVO7793d3XnmmWeIi4ujXLlyVKlShSlTphAQEMCDDz6IYRicO3eOUqVK4enpyf3338+bb77JqFGjGDJkCOnp6UydOpVy5crx+OOPA9C7d2/69etHnTp1aNWqFR988AE///wzr776an5fGiYt0yUiIiIiIiJ5lO8Eu3fv3sDlmmjAbpIzq9WKyWTi559/znHc0KFDycrKYty4caSnp9O0aVPmz5+Pu7s7SUlJhIWFERMTQ0REBJUqVWLRokXExcXx1FNPYbVauffee1m8eLGthrtly5a89tprzJw5k/j4eGrVqsXs2bOpWbNmfl+aarBFREREREQkz/KdYC9evDhfx7m6ujJy5EhGjhyZY19gYCAHDx6023bnnXcyf/78a56zY8eOdOzYMV/x5EYJtoiIiIiIiORVvhPsZs2aOTKO/xQNERcREREREZG8yneCDXDu3Dnmz5/PV199xenTp5k3bx5bt24lODiYBx54wFEx3nQurq5FHYKIiIiIiIg4mXwn2EePHuWpp54iIyODxo0bc+DAAQzD4Pfff2fmzJnMnDkzz8t4/VdoiLiIiIiIiIjkVb4T7MmTJ+Pn58eSJUvw8vLirrvuAuCNN94gIyOD2bNnK8EWERERERGRW0a+E+ydO3fy2muvUbp0aQzDsNvXpUsXhg8fXtDYioxqsEVERERERCSvClSD7XqVWmWz2Wy3bJezUQ+2iIiIiIiI5FW+E+wmTZrw9ttvc8899+Dh4QFcXgvbYrHw/vvv06hRI4cFebMpwRYREREREZG8yneCPWLECJ566ikeeughmjdvjslkYv78+Rw+fJg//viD9957z5Fx3lQaIi4iIiIiIiJ5le9M8o477mDVqlU0b96cxMREXF1d+eqrr7jttttYtmwZd955pyPjFBEREREREflPK1ANdvXq1XnjjTdy3Xfy5EkCAgIKcvoiY3LROtgiIiIiIiKSN/nuwb7zzjv54Ycfct23e/duHnnkkXwHVeRcXG/dfyIiIiIiIpIveerBXrBgAWlpaQBYrVZWrlzJ559/nqPd3r17cXd3d0yERUE12CIiIiIiIpJHeUqwzWYz06dPBy7PGL5y5cocbVxcXChVqhQDBgxwTIRFwHSV5cdEREREREREriZPCXb//v3p378/AMHBwaxYsYL69esXSmBFSkOlRUREREREJI/yPcnZgQMHHBnHf4sSbBEREREREcmjAs0i/r///Y/t27dz6dIlLBaL3T6TycRrr71WoOCKitbBFhERERERkbzKd4I9b9484uLi8PDwoFy5cphMJrv9//7eqagHW0RERERERPIo3wn20qVLCQ8P59VXX3XuGcNzowRbRERERERE8ijfCfbZs2fp1KlT8Uuu0RBxERERERERybt8J9h16tThl19+oXnz5o6M579BPdgiIiIiIiKSR/lOsMeMGcPw4cPx8vKiQYMGlCxZMkebypUrFyi4IqMEW0RERERERPIo3wn2U089hcViYcyYMVed0Oznn3/Od2BFyeSqBFtERERERETyJt8J9ssvv5yvmcItFgvTp09n5cqV/PXXXzRu3Jjx48cTFBSUa/tffvmFKVOm8P333+Pi4kLTpk0ZPXq0Xe94aGgox44dszsuPDycuLi4PMcHgGqwRUREREREJI/ynWBHRETk67iZM2eybNkyYmJiqFixIlOmTKFv375s2LAhx4RpKSkp9O7dm6ZNm/Luu++SkZHB5MmT6dOnDx9++CEeHh6kpqZy/Phx5syZQ926dW3Henp65velaYi4iIiIiIiI5FmeEuzg4OAb7rU2mUzs37/fbpvZbGbBggWMHDmS1q1bAxAfH899993HJ598Qvv27e3ab926lUuXLhEbG4uHhwcAU6ZMoXXr1nz77be0aNGCQ4cOYbVaadSoEaVLl87Ly7l67EqwRUREREREJI/ylGAPGjQoX8PCsx04cICLFy9y991327aVLl2aOnXq8M033+RIsFu0aMGMGTNsyfWVLly4AMDBgwfx9/d3WHINaIi4iIiIiIiI5FmeEuwhQ4YU6GInT54EoFKlSnbbK1SowIkTJ3K0DwwMJDAw0G7bnDlz8PDwoGnTpgAcOnQILy8vhgwZwt69eylXrhwRERH06NEDl6skymFhYdeMc/Prz9/waxIRERERERGBAtRg58elS5cActRae3h42Hqkr2Xx4sW89957REVF4efnB1yeBO3vv/+mXbt2DB48mN27dxMXF8eFCxcYNmxY/gLVEHERERERERHJo5uaYGdPPGY2m+0mIcvIyMh1He1sVquVt956i1mzZvHcc8/Rq1cv276FCxeSkZGBj48PALVr1+bixYvMmjWLIUOG5NqLvW3btmvGmfX9lry8LBEREREREZGbm2BnDw1PTk7mtttus21PTk4mODg412MyMzOJiopiw4YNjBo1iv/7v/+z2+/m5oabm5vdtjvuuIO0tDQuXLhA2bJl8xyn1sEWERERERGRvLqps3kFBwfj4+NDYmKibdtff/3F/v37adKkSa7HjBo1io8//pg33ngjR3JtsVgIDQ1l1qxZdtv37dtH+fLl85VcA5eHiN+q/0RERERERCRfbmoPtru7O8888wxxcXGUK1eOKlWqMGXKFAICAnjwwQcxDINz585RqlQpPD09Wb16NR999BGjRo2iWbNmnD592nau7DZt27Zl3rx5VKtWjbp167Jz507mzZvH2LFj8x+oEk0RERERERHJo5uaYAMMHTqUrKwsxo0bR3p6Ok2bNmX+/Pm4u7uTlJREWFgYMTExREREsGHDBgBef/11Xn/9dbvzZLcZMWIEpUuX5o033uDkyZMEBgYyduxYnnzyyXzHaNIyXSIiIiIiIpJHNz3BdnV1ZeTIkYwcOTLHvsDAQA4ePGj7fsGCBdc9X4kSJRgwYAADBgxwXJDqwRYREREREZE8uukJtlMwqQdbRERERERE8kaZpIiIiIiIiIgDqAc7N+rBFhERERERkTxSgp0LqxJsERERERERySMl2LlRgi0iIiIiIiJ5pAQ7NyZTUUcgIiIiIiIiTkYJdm60DraIiIiIiIjkkRLsXKgGW0RERERERPJKCXZulGCLiIiIiIhIHinBzo0SbBEREREREckjJdi5UYItIiIiIiIieaQEOxeqwRYREREREZG8UoKdGyXYIiIiIiIikkdKsHOjdbBFREREREQkj5Rg50Y92CIiIiIiIpJHSrBzoRpsERERERERySsl2LlxUYItIiIiIiIieaMEOzfqwRYREREREZE8UoKdGyXYIiIiIiIikkdKsHOjBFtERERERETySAl2LjTJmYiIiIiIiOTVTc8kLRYL06ZN47777qNBgwY8++yz/PHHH1dtn5KSwogRI2jatClNmzblpZdeIi0tza7Npk2baNeuHfXq1SM8PJzPP/+8YEGaXG7dfyIiIiIiIpIvNz2jmjlzJsuWLeOVV15h+fLlmEwm+vbti9lszrX90KFDOXr0KO+88w7Tpk3jf//7HxMnTrTt//rrrxk5ciTdunVjzZo1tGzZkkGDBnH48OH8B2ky3br/REREREREJF9uaoJtNptZsGABQ4YMoXXr1gQHBxMfH8+pU6f45JNPcrTfu3cvu3btIiYmhrp169KiRQsmTZrE2rVrOXXqFABz587lwQcf5JlnnqFmzZq8+OKL1K1bl0WLFuU/0KLuRVYPtoiIiIiIiNO5qRnVgQMHuHjxInfffbdtW+nSpalTpw7ffPNNjva7d+/G39+fmjVr2rY1a9YMk8nEnj17sFgsfPvtt3bnA2jevDm7d+/Od5xWk8st+09ERERERETy56ZOcnby5EkAKlWqZLe9QoUKnDhxIkf7U6dO5Wjr7u6Or68vJ06c4K+//iItLY2AgIAbOl+2sLCwa8a5ccOGa+4XERERERER+bebmmBfunQJuJwkX8nDw4MLFy7k2v7fbbPbZ2RkkJ6eftXzZWRk5DtOz5Il832s3Dri4+OLOgQpID3D4kHP0fnpGRYPeo4iIjc5wfb09AQu12Jnfw2QkZFByVySWk9Pz1wnP8vIyMDLywsPDw/b+f69P7fzZdu2bVu+4hcRERERERG5mptadJs93Ds5Odlue3Jyco5h3gABAQE52prNZs6fP0/FihXx9fXFy8vrhs8nIiIiIiIiUlhuaoIdHByMj48PiYmJtm1//fUX+/fvp0mTJjnaN23alJMnT9qtk519bKNGjTCZTDRq1Ihdu3bZHZeYmEjjxo0L6VWIiIiIiIiI5HRTh4i7u7vzzDPPEBcXR7ly5ahSpQpTpkwhICCABx98EMMwOHfuHKVKlcLT05MGDRrQqFEjIiMjmTBhAmlpaYwfP56OHTtSsWJFAHr37k2/fv2oU6cOrVq14oMPPuDnn3/m1VdfvZkvTURERERERG5xJqvVar2ZFzQMg6lTp7J69WrS09Np2rQp0dHRBAYGkpSURFhYGDExMURERABw9uxZJk6cyBdffIGHhwcPP/wwUVFRtvprgDVr1jBz5kxOnjxJrVq1GDlyJC1atLiZL0tERERERERucTc9wRYREREREREpjm5qDbaIiIiIiIhIcaUEW0RERERERMQBlGCLiIiIiIiIOIASbBEREREREREHUIItIiIiIiIi4gBKsEVEREREREQcQAm2iIiIiIiIiAMowRYRERERERFxACXYIiIiIiIiIg6gBFtERERERETEAZRgi4iIiIiIiDiAEmwRERERERERB1CCLSIiIiIiIuIASrBFREREREREHEAJtoiIiIiIiIgDKMEWERERERERcQAl2CIiIiIiIiIOoARbRERERERExAGUYIuIiIiIOJmEhATuvPNOQkJCbP8aNGjAgw8+yDvvvFPo109MTKR27doOO9/x48cJCQnh+PHjeT529erVhIaGOiyWa1m3bh3t27e/obazZ8+mT58+hRyR/NeUKOoAREREREQk75o0acKSJUts32dmZrJmzRrGjRtH7dq1adGiRRFGlzeVK1dm7969RR3GdXXo0IEOHTrcUNv+/fsXcjTyX6QEWwpFP1NQUYcgBWTBylt/7y/qMKQADMOg5MkfizoMKSDDMDj1/qKiDkMKwLBYmBqzvajDkAKabjmSr+MSEhJYtWoVly5domrVqgwcOJCwsDDHBvf/ubm50blzZ+Li4ti/fz8tWrTAYrEwb948VqxYQUpKCtWrV2fYsGHcd999AGzevJlp06Zx8uRJKlSoQHh4OAMHDgTgzJkzxMbGsnPnTkwmE6GhoYwaNQofHx/bNd9++22WLl2K1WolPDycYcOG4e7uTkJCArt27bL7ACA0NJTBgwcTERFB9+7dqVKlComJiVitVubMmUOHDh3Ytm0bgYGBfPvtt7z55pv89ttvXLhwgdtvv53o6GgaNmyY62vPysoiLi6ODRs28Ndff9GuXTsmTJhAiRIlrnsPQkND6d69Ox9++CF//PEHderUYdy4cbz55pvs3r2bSpUqERsbS/369Vm9ejXTp0/n008/JTExkaioKDp37sx7771HRkYGzZs3JyYmBh8fH7t7kJqayksvvcRXX31FiRIlCA4OZsyYMdSsWbNQ3gtSdJRgS6FxwVTUIUgBWLAC4OrqWsSRSH4ZhgHoGTo723N0UVWXszIsFgBcTPr/orOyWK3XTYq3bduWY9vXX3/N8uXLWb16Nf7+/ixfvpyxY8fSqlUr3NzcHB5neno6K1eu5OLFi9x7770AzJgxg1WrVjFz5kxq167Nli1bGDhwIEuXLuWOO+5g5MiRzJ07l+bNm7N//36efvppWrZsyV133cXAgQOpVq0amzdvJjMzk6ioKKKjo5k6dartmocOHeKjjz7izJkz9OnTBy8vLwYNGnRD8X711VesXLmSkiVL8tdff9m9jgEDBjB06FCeeuop0tPTGTNmDK+//jrvvfderuc6deoUpUuXZuvWrRw5coROnTpx99138+ijj17zHtSvXx+AlStXsmDBAnx8fHjiiSfo3r078+fPp27duowaNYq4uDgWL16c47rHjh3j1KlTfPLJJ5w6dYqnn36a9957j379+tm1W7BgAampqXz22We4uLgQHR1NXFwcs2bNuqF7Jc5DCfYtLCoqivT0dLtt8fHxRRSNiIiISPHi4eHBhQsXWLFiBffffz+dO3emS5cumBz0YcuePXto0qQJFouFzMxMXF1due+++1i0aBHBwcEAfPDBB/Tr14+6desC0K5dOzZv3syqVasYM2YMnp6erFq1CovFQqNGjdizZw8uLi788MMP/PTTTyxcuBBvb28AXnzxRR5++GFeeuklAEwmE9HR0Xh7e+Pt7U2fPn1YsGDBDSfYrVq1omLFigB2CbabmxvLly8nKCiIjIwMjh07hq+vL/v27bvquXx8fOjbty8mk4latWoRHBzMn3/+ed17kJ1gP/HEEwQEBABQv359UlNTCQkJAaBly5bXTIQHDRqEp6cnQUFBNG/enN9//z1HG09PTw4cOMCaNWu49957ee2113DRB6fFkhLsW1h6enqhJdQWrLYeUHFOFqyYzWb1fjoxwzD0DIsBwzAwZ2WpB9uJGRYLWVYLLlb1YDuz3HqoryckJISEhASWLFnCvHnz8PT0pHv37gwYMMAhyVXjxo1tQ7C/++47hg0bhr+/P40bN7a1OXPmDFWrVrU7LjAwkAMHDuDp6cn777/PzJkzGTFiBKmpqbRt25Zx48aRlJSEYRi0bt3a7lh3d3eOHj0KQOnSpSldurRtX6VKlTh16tQNx1+hQoVct7u6upKYmEjfvn1JS0ujVq1alChRAqv16n9blilTxu6DCzc3N9sIoGvdg2y+vr521y9TpoztexcXl2te29/f3+66ubXt27cv7u7urFq1ikmTJlG1alVGjBjBQw89dNXzinNSgu0EcutpdoTk5GSHnzObhocXDx4lXEAflDgtk8kK1ZtiFHUgUiCGYfDnlqiiDkMKwLBa6dPBcbMti/M4fvw4fn5+zJ8/H7PZzM6dOxk8eDB169alTZs2Dr1Ww4YNmT17Nl26dKFMmTIMGzYMgCpVqtgS4mxHjx6lQoUKpKamkpyczBtvvAHAzz//zPPPP8/s2bN58MEH8fT0JDEx0fZBrdls5ujRowQFBbFnzx5SU1NJS0vDy8vLdt4qVaoAl5PSzMxM2zUtFgvnz5+3i+NqPfnff/89L7/8MsuWLeOuu+4CLg+xzq1n+EZc6x5cLxZHOXjwIKGhofTq1Yu///6b9957j8jISL7++mtKlSpVqNeWm0sJthMorJ7myMhIh5/zSkqynZtqsJ2farCLB9tzVP2u0zL+f2+WnqHzMq7Re3kt+/btIzo62jZk28/PD4CyZcs6MjybO++8k9GjR/Pyyy/TvHlz7r77bjp37szbb79Nw4YNCQ4OZsuWLXz66acsWLCAixcv0rdvX2JiYnj00UepUKECLi4ulC1blvr16xMUFERsbCzDhw/H1dWV2NhYtm3bxtatW4HLv59iY2MZPXo0J06cYP78+fTu3RuAmjVrMm/ePH755ReqV6/OggULSEtLu6HX8ffff+Pi4oKnpydwuXd+8eLFZGVl5eu+XOse3CwrV67kp59+YsaMGZQrVw4fHx+8vLxwd3e/aTHIzaEE+xbm6emZI8lWDbaIiIiIY7Rt25YjR44wYMAAUlJS8PPzY8yYMTRo0KDQrtmtWzc+//xzXnzxRdatW0fv3r2xWCxERkZy+vRpgoKCmDp1Ks2aNQNg2rRpvPnmm0RHR+Pp6Um7du3o1asXJUqUYM6cOUyePJmHHnqIjIwM6tevz8KFC/Hw8AAuD6v29fWldevWeHt707VrV55++mkAHnjgAb766it69eqFxWKhY8eOdkPXr+Xee++lW7duPP3001gsFgIDA+nevTtvvPEGZ86coXz58nm6J9e7BzfD888/z6RJk2jfvj0ZGRnUqFGDmTNn2u6lFB8m67UKCuQ/ITIy0ukS3z6m24o6BCkgC1amnt6j3k8nZhgGVpcSeoZOzjAMvg57WL2fTsywWikTWErP0Mk1X7e1qEMQESegHmwpFBoeXjy4eXoVdQhSAFYXA8/Th4o6DCkgwzBoOeqxog5DCsCwWHAPqFbUYYiIyE2gBFsKjZJs56YabOenGuziQetgO7/sdbBdXfUMnZVhWBx6vs2bNzN69Oir7m/cuDF79uy56v7nnnuO/v37OzQmEXEMJdgC/DNTubMNRRcRERFxNm3btqVt27ZFHYaIFAIl2AI4fqZyrYPt/LQOtvPTOtjFg9bBdn6GxYLZnKUebBGRW4AS7FvYletrO3pNbA0PLx60dITzM/Z8onWwnZxhsXDxtxNFHYYUgGGxULnuzZutWEREio4S7FvYlb3WhbEmtpJs56YabOen2t3iwVa/q+fotP6pwdbvU2eV/ftUROR69H9rAXJfE1tERERERERunHqwBYCYmBiHnk812M5PNdjOzzAMslS76/QMi0U12E7ucg22fp+KiNwKlGBLodDw8OLBY+/Gog5BCsBkWHDvfPVlYMQ5GIZB4MXTRR2GFIBhGLi66P+LIiK3AiXYUmiUZDu3f2qw1WvmrLLXbVWvmXPTeubOT8/Q+d2qNdh//PEHQUFBRR2GFICe4c2nv5zFJioqqqhDEBEREZEbMHr0aOrWrUtISAghISE0bNiQ8PBwNm/e7JDzT548mVmzZjnkXLlp374969aty3VfUlIStWvXJikpqdCun1ehoaGsXr0agO7du5OQkJDn4/Lr+PHjhISEcPz4cQBq165NYmLidY/79zMMCQlh9+7dBYpFrk892GKTvWSXI6gG2/ldrsHWuq3OzDAsZKnu0+lpPXPnZxgGRpZFz1AcLjw8nNjYWAAsFgvr1q3j+eef56OPPipwr2VKSoojQryqjRtVhnajKleuzN69e/N83L+fYX7OIXmnBFsKhYaHFw8l72pe1CFIARiGgVVrmRcLJcr4F3UIUgAmw8DF06eow5AikpCQwKpVq7h06RJVq1Zl4MCBhIWFOfw6Li4udOzYkZiYGPbv309QUBBms5n4+Hh27NjByZMn8fT0pF27dowbNw6TyURaWhpxcXFs2rSJzMxMQkJCmDBhAmvWrGH9+vUA7N+/n3Xr1nHmzBliY2PZuXMnJpOJ0NBQRo0ahY+PD4mJiYwaNYomTZrw2Wef0a9fP/r06cO8efNYsWIFKSkpVK9enWHDhnHfffcBl3t2Bw8eTEREBKmpqbz88sts3boVLy8vunbtavfarnXtrKwsXnnlFT755BOysrKoWbMmI0aMoHHjxrnep0WLFvHuu+9y5swZqlevzsiRI2nRogVWq5UlS5awdOlSzp49yx133MGYMWO46667rnnfR4++PNdJ9gcdcLmHefHixTRvbv93VHp6OtOmTWPjxo2kpaURHBzMyJEjqV+/PgDvvfceCxYs4Pz581SqVIkePXrQuXNnkpKSCAsLY9u2bQQGBtrOt3HjRqKjo/nqq6/w8PAA4OOPP2by5Ml06tQpxzO8Mq5z587x2muv8dlnn+Hi4sI999zDhAkTKFOmTI74V69ezfTp0/n000/zfL9vRUqwpdAoyXZuWgfb+anus3jQc3R+eobOzzCM6ybF27Zty7Ht66+/Zvny5axevRp/f3+WL1/O2LFjadWqFW5ubg6NMSsri61bt2IymWjWrBlwOZn84osvWLRoERUqVGDv3r0888wzPPDAA7Ro0YJJkyZx+PBhVq9ejZ+fH+PHj+f5559n+fLlHD16FLicOFosFgYOHEi1atXYvHkzmZmZREVFER0dzdSpUwE4efIkNWrUIDY2loyMDGbMmMGqVauYOXMmtWvXZsuWLQwcOJClS5faEspskyZN4s8//2TLli24uLgwYsQI277rXXvt2rXs3buXTZs24e3tzbRp05g4cWKuw89Xr17NzJkzmT17Ng0aNOCDDz5gwIAB7Nixg40bN7Jw4UJmzZpFzZo1Wbt2Lb1792bTpk2UL1/eIc9owoQJ7N+/n8WLF1OpUiXef/99evXqxYYNGzAMg5iYGNauXUuNGjX44osvGDRoEK1bt77q+R588EEmTpzItm3baNeuHQBr1qzh8ccfZ9CgQXbP8N+GDRuGt7c3W7Zswc3NjWHDhjFx4kTb87yavNzvW5XGfoqIiIiIFAIPDw8uXLjAihUr2L9/P507d2bnzp0OS643bNhAkyZNaNKkCQ0aNGDYsGE88cQTlC1bFoAnn3ySd955B39/f5KTk0lPT8fb25tTp05hNpvZuHEjw4YNo1KlSri7uxMVFcW4ceNyXOfHH3/kp59+Yvz48fj4+FC2bFlefPFFNm7caDcMuVOnTri5ueHj48MHH3xAv379qFu3LiVKlKBdu3aEhoayatUqu3ObzWY2bdrEkCFD8PPzo2zZsowaNeqGr+3p6UlSUhKrVq3i999/Z9iwYVdN9j788EO6dOlCSEgILi4udO7cmQULFuDp6cnSpUt57rnnCA4Oxs3NjU6dOlGzZk2HJY4ZGRls2LCBESNGEBQUhLu7Oz179qRGjRps2LABV1dXrFYry5YtY8+ePbRo0YLvvvuOChUqXPWc7u7uPProo6xduxaAs2fP8uWXX/L4449fM5Zjx46xa9cuXnzxRcqWLYuPjw+xsbEMGDDguq8jL/f7VqUebLFJTk522LlUg+38tA628zMMQzXYxYBhGFgy9RydmX4Wi4fceqivJyQkhISEBJYsWcK8efPw9PSke/fuDBgwABcHrG3/6KOP2nonrVYre/fu5fnnn8disfDiiy9y6dIlJk2axDfffENAQAB16tTBarVisVi4cOECZrOZypUr285XunRp6tWrl+M6SUlJGIaRozfV3d3d1ksK2CWDZ86coWrVqnbtAwMDOXDggN22lJQUzGYzlSpVsm278rjrXbt9+/ZkZmaycuVKpk6dip+fH/379+epp57K8TpOnz5t93oBGjVqBFxOOidPnkxcXJxtX1ZW1nWHiN+oCxcukJmZaTfEGy7fk6SkJCpXrmx7n/Tv3x/DMIiIiGDkyJHXPG9ERARdunTh7NmzrFu3jkaNGuW47/92+vTlpR+rVKli2+bv74+///XLkfJyv29VSrDFJvuHzRE0PLx4cHfTrwinZjXhohrsYsHVvUxRhyAFYDUMJde3qOPHj+Pn58f8+fMxm83s3LmTwYMHU7duXdq0aePQa5lMJho1asTDDz/MZ599xosvvsi4ceMoU6YMX375JR4eHlgsFpo2bQqAn58f7u7unDhxgho1agCXe0Dnzp3L8OHD7c4dEBCAp6cniYmJtvey2Wzm6NGjBAUFsWfPHlsM2apUqWKXfAMcPXo0R49s2bJl8fDw4OjRo7Y4Tp48ecPX/v3336lbty4dO3YkPT2djz/+mBdffJEmTZpw++23212rUqVKnDhxwm5bfHw8HTp0ICAggKFDh9K+fXvbvj///BNfX99r3ncXFxcyMjJs3587dy7XduXLl7e9zpo1a9pdIzQ0lLNnz2IYBjNmzMBisfDtt98ydOhQqlevfs1h4nfddRe1atVi8+bNbNy4ke7du18zXsD2Ycbx48epVq0aAL/++isbNmxg+PDhuLi4kJmZaWt/5SiFvNzvW5X+epZCoyTbuakG2/mp7rN40HN0fnqGzi+/62Dv27eP6OhoFi1aRHBwMH5+fgC2IdyOdvjwYbZu3co999wDQGpqKhUqVMDFxYXU1FSmT59OamoqmZmZtknREhISqFWrFr6+vrz55pv88ssveHp64u7uztmzZwGoX78+QUFBxMbGMnz4cFxdXYmNjWXbtm1s3bo111g6d+7M22+/TcOGDQkODmbLli18+umnLFiwwK6du7s7HTt25K233qJ27dp4e3szZcoU2/7rXXv79u0sX76c+fPnExgYiK+vLyVKlKBUqVI5YoqIiODVV18lLCyMu+66iw8//JClS5fSs2dPnnzySWbNmkVwcDA1a9bkiy++YODAgbz55pvXrL+vWbMmixcv5tSpU5QpU4YZM2bYfdCQzcXFhSeeeIKpU6dSvXp1Ww32r7/+yhtvvMHx48d59tlnmTNnDi1atKBixYrAjb1XIiIiWLFiBUlJSTz00EN29zb7GV6pYsWK3Hvvvbz++uvExsbi4uLClClT8PHxsb2mzZs3c/fdd3P8+HG7Yf15ud+3KiXYIiIiIiKFoG3bthw5coQBAwaQkpKCn58fY8aMoUGDBg45//r16+3WvS5VqhRt27blhRdeAGDcuHFER0fTrFkzvL29adOmDffddx+HDh0CLs+AHR8fT+fOnUlPT6dZs2a89dZbALRr147IyEjatGnDjh07mDNnDpMnT+ahhx4iIyOD+vXrs3DhQtvs1f/Wu3dvLBYLkZGRnD59mqCgIKZOnWqbgO1KY8eOJSYmhvDwcEqUKEGPHj3Yvn07ACVKlLjmtXv06MGpU6fo2rUrqampVKlShfj4eAICAnJcJzw8nL/++ouRI0dy+vRpatWqxdy5cylXrhy9evXCarUycOBAkpOTqVixItHR0ded3K5Lly7s27ePDh062Oqq/z0MPduoUaNISEigV69enD9/ntq1azN//nyqV68OQHR0NBMmTCA5OZlSpUrRrVs3HnnkEY4dO3bNGMLDw5kyZQoRERGULFnStv3fz/BKcXFxxMbG8sgjj5CVlUVoaChjx44FYPz48cTExNCsWTOqVatGp06dWLp0KUCe7vetymS1WlUo+x8XGRlJfHx8oZ/3oYceYsuWLQ45dx/TbQ45jxQdC1be+mWtelycmGEYZJWrpmfo5NT76fz0DIuH0mVUqiH/TYZh0LJlS9vs6FK01IMtNo6YbMN2Lg0PLxZc/asVdQhSEIaBu2qwiwX3S7nX9IlzMAwDk3dZsGYVdSgiUsz88ssvbNq0iYCAACXX/xFKsMXmzjvvdOj5lGQ7N9VgOz/1mhUPeo7OT8/Q+eW3BvtqNm/ezOjRo6+6v3HjxraJw3Lz3HPP0b9/f4fGJM7pueeeA2DatGlFHIlkU4ItIiIiInITtW3blrZt2xZ1GFIMfPrpp0UdgvyLEuxbTFRUFOnp6YBj173+N62D7fy0Drbz09q7xYNhGPpZdHKGYWDRMxQRuSUowb7FpKen2yY2i4yMLLTraHh48VDy0pmiDkEKwDAMrP41r99Q/vNKZpwv6hCkAAzDwFKqXFGHISIiN4ESbLH1aju6R1tJtnNTDbbzU91n8aDn6Pz0DJ2fo2uwRaT4cty00eK0snu1K1SoUNShiIiIiIiIOC31YEuhUA2281MNtvNTDXbxoBps52cYBpl6hiIitwQl2FIoNDy8eHAJuEMfkzgxq2Hgrj/oiwVTlTpYijoIyTeLYeB97veiDkMKqnxAUUcgIk5ACbYUGiXZzk012M5PdZ/Fg56j89MzdH6qwb7sjz/+ICgoqKjDEPlPUw222Pz8889FHYKIiIiI3IDRo0dTt25dQkJCCAkJoWHDhoSHh7N582Zbm4SEBLp37+6Q602ePJlZs2bZvg8JCWH37t0OOXe2oUOHEhwczP79+x163iutXr2ahx9+mJCQELp06cI333xjt3/u3Lm0atWKhg0b0r17d3777TfbvrS0NKKiomjevDmNGzdm1KhRXLx40bb/7bfftnsmISEhttV7APr06UO9evXs9n/++ec5YnzllVcYPXq03bZrXXv27Nl25wwJCaFOnTp2a63f6LWl4NSDLTYWi+MGIKoG2/mpBtv5GYaBYRh6hk7OMAwsWfpZdGaqoy8e3Io6gFyEh4cTGxsLXP47bt26dTz//PN89NFHDu9pTklJsft+7969Dj3/qVOn+Pzzz4mIiGD+/Pm88cYbDj0/wLZt2xg/fjzTpk2jVatWbNu2jb59+7J69Wpq1KjBhx9+yJIlS5g/fz633XYb8fHxDB06lPXr12MymXj55Zc5ceIEmzdvxjAMhg8fTlxcHOPHjwfgxx9/ZMCAAQwePDjX6//444/Mnz+fZs2a5bo/JSWFV199lfXr1/P444/b7bvWtfv370///v1tbQ8cOECPHj2YOHHiDV9bHEcJthQKDQ8vHtzd3Ys6BCkg/UFfPHj8+s31G8l/lmEYWOs9iAYZ35oSEhJYtWoVly5domrVqgwcOJCwsDCHX8fFxYWOHTsSExPD/v37cyTYVquVuXPnsn79ek6cOIHJZKJVq1a8+uqreHp62npMsxN2gNq1a7N48WJ2797N+vXrAdi/fz/r1q2z7WvevDmHDx/m9ddf5+DBg5w7d47AwEBGjhzJ/ffff8Pxv//++9x999306dOHDh068MILL1CpUqVc27733nssWLCA8+fPU6lSJXr06EHnzp1JSkoiLCyMcePGMXv2bNLT0wkNDWX8+PH4+PiwYcMGHn30UVtcDz30ECtWrOCDDz5g5MiRrFixgm7dunH77bcDMGLECFasWEFiYiINGjRg/fr1LF68GF9fXwBeeOEFevTowahRoyhZsiT79u0jIiIi15iPHj3KhQsXqFOnTq77L168yMMPP0z79u3tep4BLl26dN1rZzObzQwfPpzevXtz991339C1xbGUYEuhUZLt3FSD7fxU91k86Dk6Pz1D52cYxnWT4m3btuXY9vXXX7N8+XJWr16Nv78/y5cvZ+zYsbRq1Qo3N8f2iWdlZbF161ZMJlOuvZSbNm1i8eLFvPvuu1SrVo3Dhw/TrVs31q9fT+fOna957kGDBnH06FHAPgHPNmTIEMLCwpg+fTpWq5W4uDgmTJhwwwm22WxmxYoVTJ48mRo1atC8eXMWL17Miy++mKPt0aNHiYmJYe3atdSoUYMvvviCQYMG0bp1a1ubLVu2sH79egzDYNCgQUycOJEpU6ZgGAZeXl5253NxcbENA//111/p27evbZ+bmxvVqlXjwIED+Pr6kpmZyR133GHbX7NmTdLT0zly5AgVKlTg+PHjrFixgnHjxuHu7s7DDz/MsGHD8PDwYN++fXh7exMZGcm+ffsoX748vXr1olOnTgB4eHiwceNGypcvn2N4+B9//HHNa99555227XPnzsXNzY1+/frZtl3v2uJYSrCvIyoqivT09CKNITk5uUivLyIiIiJ55+HhwYULF1ixYgX3338/nTt3pkuXLphMjumE2LBhA1u3bgUu93JmZWXRp08fypYtm6Ntq1ataNSoEQEBAZw7d46UlBR8fX05depUgeOYM2cOFStWxGq1cuzYMUqXLp2n827atAlfX19atmwJQM+ePYmMjGTQoEH4+PjYtXV1dcVqtbJs2TLatm1LixYt+O6773BxcSEpKQm4/Pd7uXLlgMt13QMGDODVV1+lbdu2REdH07ZtWxo1asSOHTvYuXMnTZs2BS73Il/ZGwzg6elJWloaqampAHYJenbbixcvcvr0aZo0aUJERARvvvkmR48eZfjw4Vy6dInx48djNptp2LAhkZGR3H777SQmJjJkyBC8vb155JFHKFGiBOXLl8/1/lzv2le2W7RoETExMXYf6F3v2uJYSrCvIz093W5ygqIQGRl5U67j7+/vsHOpBtv5qQbb+akGu3hQ/a7z05r0xUNuPdTXExISQkJCAkuWLGHevHl4enrSvXt3BgwYgItLwecafvTRR209ylarlb179/L8889jsVhy9P5arVbi4+PZvn075cqV48477yQzMxOrteB/rx04cICBAwdy+vRpatasSbly5fJ03nfffZejR4/ahjTD5WRxxYoVPPvss3ZtK1eubLuf/fv3xzAMIiIiGDlypK3NlcPjK1WqhNls5vz587Rv355z587x0ksvceHCBVq3bs2jjz7KpUuXgMtJ67871tLT0/H29rYlt5cuXcLb29v2NYCPjw/BwcEsXbrUdlzNmjUZOHAgEyZMYPz48XTs2JGOHTva9rds2ZKOHTuyadOm6ya517t2tk2bNlG6dGlCQ0Ptji/ItSXvlGCLTYUKFRx2Lg0PLx48XAFVDTotEwYu7iWv31D+89w99RydmotBCTLByCzqSKRAyuT5iOPHj+Pn58f8+fMxm83s3LmTwYMHU7duXdq0aePQ6EwmE40aNeLhhx/ms88+y5Fgx8XFcfz4cT799FNbUhYeHm7b7+LiQkZGhu37c+fO3dB1T506xbBhw5g+fbotsdu8eTNbtmy5oeN/+OEH9u/fz4cffkjp0qVt21esWMHixYvp0aMHJUr8k7KcPXsWwzCYMWMGFouFb7/9lqFDh1K9enXbMPFTp05Ro0YNAJKSkihZsiRly5bl9OnT3HfffXYzqz/55JM89NBDANx+++388ssvtqHtmZmZHDlyhDvuuIPq1avj5ubGr7/+SoMGDQA4fPiwbRj5rl272Lt3L88995zt3GazGU9PTwBWrVqVo8fYbDbj4eFx3Xt0vWtn27JlC+Hh4TlGSBTk2pJ3SrCl0CjJdm6qwXZ+qvssHvQcnZ+eofPL7zrY+/btIzo6mkWLFhEcHIyfnx9ArkO4HeHw4cNs3bqVe+65J8e+1NRUPDw8cHV1JSMjg6VLl3Lo0CFbMlmzZk0WL17MqVOnKFOmDDNmzLBL1Nzd3Tl79myO8168eBHDMGxDln/99VdmzJgBXE7irjdh6rvvvkvr1q3t6osBunXrxttvv82mTZvsPgg4fvw4zz77LHPmzKFFixZUrFgRsL+nb7zxBpMnT+bixYtMmzaNxx57DDc3N7755htiYmJYtmwZ5cuX5/333+f333+3zdj9xBNPkJCQQKtWrahevTrx8fGUL1+eJk2a4ObmxiOPPEJcXBxvvfUWcPlDi0cffRRPT09KlixJQkIClStXpn379hw+fJiZM2fSpUsX2/2fOnUqQUFBBAcH8/nnn7Nhwwbmz59/zfsDl3vWr3Vt+GcEQ+/evXMcX5BrS94pwRYRERERKQRt27blyJEjDBgwgJSUFPz8/BgzZoytF7Kg1q9fb7fudalSpWjbti0vvPBCjrbDhw8nKiqKe+65By8vLxo3bsxjjz3GoUOHAOjSpQv79u2jQ4cOuLu707NnTypXrmw7vl27dkRGRtKmTRt27Nhh216jRg1GjRrFyJEjuXTpEgEBATz55JNMmTKFQ4cOcdddd101/nPnzrFp06ZcyzHLly9PaGgoCxcutEuw69WrR3R0NBMmTCA5OZlSpUrRrVs3HnnkEY4dOwbAbbfdZhv6HR4ebhs+3q5dO3777Te6dOlCWloadevWZdGiRbYPPjp16sTff//NoEGDOHfuHPXq1WPOnDm2CenGjx/P5MmTCQ8PJzMzk7CwMF566SVbXFOnTmXGjBlER0dTqlQpnnzySdvyWT179iQtLY3Bgwdz9uxZqlatyuTJk2nSpMk1nvA/rnVtuLzE199//237wOFKBb225I3J6ojCi2IsMjLyP1GD7agYrjxX9tf//q8j9DHd5pDzSNGxYGVq8jfqcXFihmFgdXXXM3RyhmFQ4sBneo5OzDAMLDWa6Bk6OR//ytdvJEUqe5mubdu2ERgYWNThyC1KPdhikz3ExBE0PLx4cCvpc/1G8p9lNQzcL54u6jCkgAzDoITWpHd6Huk5h9aKk1GCLSI3QAn2LczT05PIyEjbMmAxMTEOPb+SbOemGmznp7rP4kHP0fnpGTq//NZgX83mzZtzrHV8pcaNG7Nnz56r7n/uuedsQ4//y3744Qd69ux51f2VK1dm48aNNzEikcKnBPsWlp1Q36xlwERERETkcm1227ZtizqMQle/fn327t17064XGBjIwYMHb9r1RHKjBFsKhdbBdn5aB9v5af3k4sEwDCx6jk5Nz1BE5NahBFsKhYaHFw/XW1pD/vvc3fRr3ulZTbgG1S3qKKQArIaBawm3og5DRERuAv3lJYVGSbZzUw2281PdZ/Gg5+j89Aydn6NrsEWk+HIp6gBEREREREREigP1YEuhUA2281MNtvNTDXbxYBgGhmHoOToxwzAwLFY9QxGRW4AS7GIiKiqK9PT067bLXpKrsGl4ePHgfe5wUYcgBWAYBpZDV1/mRZyEYcHN16+oo5ACsBoWTM07FnUYIiJyEyjBLibS09OJj4+/brubuSSXkmznphps5/dP3aeqgZyZYVgAPUdn9s8z1O9TZ1Wca7CPHDlCtWrVijqMfMvIyCAlJYWAgICiDkUEUA22iIiIiIjTSUhI4M477yQkJCTHv+jo6Bs6x9KlS3nppZcKOdLchYaGsnr16gKfp1u3bnz11VcOiKjgPvvsM8LDw2nYsCGPPPII27dvt9s/d+5cWrVqRcOGDenevTu//fabbV9aWhpRUVE0b96cxo0bM2rUKC5evJjjGmlpaTzyyCMkJCTYtlksFhISEmjdujUhISGEh4fz0Ucf5RrjK6+8wujRo+22/fzzz/To0YPGjRvTvHlzRo4cSUpKCgCzZ8/O8f6qU6eO3Truffr0oV69enZtPv/887zfwGJCPdhSKFSD7fxUg+38DMMg05ylnk8nZxgWrHqOTs0wLFoHWwpFkyZNWLJkSb6PP3funAOjKRrZiWBRO3LkCEOGDGHq1Km0adOGLVu2MHz4cLZs2ULFihX58MMPWbJkCfPnz+e2224jPj6eoUOHsn79ekwmEy+//DInTpxg8+bNGIbB8OHDiYuLY/z48XbXmThxIkeOHLHbtnTpUtasWcOSJUu47bbb2L59OwMHDuSuu+7itttuAy7fp1dffZX169fz+OOP2441m8307duXp556igULFpCWlsbQoUOJjY1l8uTJ9O/fn/79+9vaHzhwgB49ejBx4kTbth9//JH58+fTrFmzQrizzkcJtgD/1HDfyDDzG6Hh4cWDm0+Zog5BCsBqGHg3uKeow5ACMgwD1/S/ijoMKQDDMLC4uxd1GFJEEhISWLVqFZcuXaJq1aoMHDiQsLCwm3btX375BXd3d3bs2IGXlxePPfYYI0aM4MMPP2TOnDkYhkGTJk3YvXs3qampTJ06lW3btmE2m7n77rsZO3Ys5cuXJykpibCwMHr37s0HH3zAo48+yvjx41m5ciXvvPMOJ06coEqVKvTt25cOHToAl3tb4+Li2LRpE5mZmYSEhDBhwgSqVKliF2d6ejrTpk1j48aNpKWlERwczMiRI6lfvz4A7733HgsWLOD8+fNUqlSJHj160LlzZ5599lmOHz/O+PHj+fHHH4mOjuann34iNjaWAwcOULZsWbp160bPnj0xmUwkJCSwd+9eLly4wNGjR5kxYwZNmza1i+Vq18p+/ePGjWP27Nmkp6cTGhrK+PHj8fHx4cMPP6RJkyY88MADALRr147Vq1ezfPlyhg4dyooVK+jWrRu33347ACNGjGDFihUkJibSoEED1q9fz+LFi/H19QXghRdeoEePHowaNYqSJUsCsHr1ao4fP06jRo3sYn766ad54okn8PLywmw2c+7cOUqWLImnpycAFy9e5OGHH6Z9+/Z2Pc8A7u7ubNmyBU9PT1xcXLhw4QKXLl2iXLlyOd5PZrOZ4cOH07t3b+6++24Ajh49yoULF6hTp07e3pzFmBJsAW68hjsvlGQ7N9VgOz+tvVs86Dk6Pz1D52cYxnWT4m3btuXY9vXXX7N8+XJWr16Nv78/y5cvZ+zYsbRq1Qo3N7fCCtfOli1bbL2RX375Jc899xxhYWE8/vjjJCUlsWvXLlsv+JgxY7h48SKrV6/G09OT2NhYBg8ezPvvv28738WLF/nf//5Heno6q1evJjY2lunTp9OsWTN27drF4MGDKVmyJA8++CCTJk3i8OHDrF69Gj8/P8aPH8/zzz/P8uXL7WKcMGEC+/fvZ/HixVSqVIn333+fXr16sWHDBgzDICYmhrVr11KjRg2++OILBg0aROvWrVmwYAGhoaEMHjyYiIgITp06Rc+ePYmMjGTBggX88ccfDBw4EE9PT7p27QrAzp07WbBgAfXr18fDw8MujqNHj171Wlfez/Xr12MYBoMGDWLixIlMmTKFX3/9lTvuuMPufLVq1eLAgQMA/Prrr/Tt29e2z83NjWrVqnHgwAF8fX3JzMy0O75mzZqkp6dz5MgR7rzzTg4fPkxCQgLLli3jhRdesLuOi4sLXl5efPnll/Tt2xer1UpUVBQVKlQAwMPDg40bN1K+fPkcw8MBvLy8AOjatSt79+6lVq1a/N///V+OdnPnzsXNzY1+/frZtu3btw9vb28iIyPZt28f5cuXp1evXnTq1CnH8bcKjTcTERERESkEHh4eXLhwgRUrVrB//346d+7Mzp07HZZc79mzhyZNmuT4t3v3blubatWq0bFjR1xdXWndujX+/v45hhgDnD17ls2bNzN27Fj8/Pzw9vZmzJgx7Nu3j59++snWrmPHjri7u1O6dGk++OADunTpQosWLXB1daVFixZ06dKFZcuWYTab2bhxI8OGDaNSpUq4u7sTFRXFuHHj7K6bkZHBhg0bGDFiBEFBQbi7u9OzZ09q1KjBhg0bcHV1xWq1smzZMvbs2UOLFi347rvvbMnjldatW0fNmjV5+umncXNzsyWKS5cutbWpWrUqLVq0wNvbmxIl7Psab+RaUVFRlCtXDn9/f4YOHcrHH3+M2Wzm4sWLtp7mbJ6enqSlpQFcc39qairwT6IL2NpevHiR9PR0hg8fzrhx46hYsWKO152tWbNm7Nu3j4ULF/Lmm2/a6rBLlChB+fLlr3pctnfeeYddu3Zxxx130Lt3b7vJ/VJTU1m0aBHDhw+3+7DQbDbTsGFDIiMj+eKLLxg9ejSvvvoqmzZtuu71iiv1YEuhUA2281MNtvMzDEN1n8WAYRgYeo5O7fJ8CHqGzi63HurrCQkJISEhgSVLljBv3jw8PT3p3r07AwYMwMWl4P1cjRs3vm4Ntr+/v933bm5uWCyWHO2OHTsGwJNPPmm33dXVlaSkJNvQ5SuTzTNnzlC1alW79oGBgXz66adcuHABs9lM5cqVbftKly5NvXr17NpfuHCBzMxMAgMDc5wnKSmJypUr2+5f//79MQyDiIgIRo4cmaMH+tixY/z00080adLEts1isdj97OWWmGe71rWyBQUF2b6uVKkSZrOZ8+fPU7JkyRxL5qanp+Pt7Q1wzf3ZifWlS5ds7S9dugSAj48Pr7zyCs2bN7/uKAr3/1+K0qJFCx577DHWr19Pu3btrnnMlTw9PfH09GTcuHHcc889HDx40Db0e9OmTZQuXZrQ0FC7Yzp27EjHjh1t37ds2ZKOHTuyadMmHnnkkRu+dnGiBFsKhYaHFw9uXqWLOgQpAKth4HbxDGQWdSRSIIaB9fYW+sjSiVkNw/aHr9xajh8/jp+fH/Pnz8dsNrNz504GDx5M3bp1adOmTVGHZye7Z3TTpk12Sfmvv/5K1apVOX36NAAm0z9/4wUGBvLnn3/anefo0aP4+/vj5+eHu7s7J06coEaNGsDlXvK5c+cyfPhwW/vy5cvj4eHB0aNHqVmzpm37n3/+SWhoKGfPnsUwDGbMmIHFYuHbb79l6NChVK9enaefftru2gEBATRv3pz58+fbtqWkpNjNxn1l/P92rWtlDxM/deqU7fUkJSVRsmRJypYtyx133GHX05997+666y4Abr/9dn755Rfuv/9+ADIzMzly5Ah33HEH1atXx83NjV9//ZUGDRoAcPjwYdsw8nXr1uHm5saaNWuAy7Xt3333nW24emxsLIDd8G+z2Wz7UORakpKS6NGjB8uWLbN9+GA2mwEoU+afuXi2bNlCeHh4jvu3atUqvL297ZJps9mc48OPW4kSbMHT0zPHL0dHUJLt3FSD7fxU91k86Dk6Pz1D55ffdbD37dtHdHQ0ixYtIjg4GD8/PwDKli3ryPDyzcPDg9TUVKxWKxUrVqRNmza8+uqrtom75s2bx5w5c/jkk09yPb5Tp062mvJmzZrxzTffsHz5cqKjo3FxcaFjx44kJCRQq1YtfH19efPNN/nll19sk2/B5frhJ554gqlTp1K9enVbDfavv/7KG2+8wfHjx3n22WeZM2cOLVq0sH0QkH0P3d3d+fvvvwEIDw9n7ty5rFu3jnbt2nHu3DmGDBmCv78/06dPv+79uN61AN544w0mT57MxYsXmTZtGo899hhubm506NCBhQsX8tFHH/HQQw+xZcsWdu3axdixYwF44oknSEhIoFWrVlSvXp34+HjKly9PkyZNcHNz45FHHiEuLo633noLgLi4OB599FE8PT354Ycf7OLs3r07zZo1Y8iQIcDl2eRfeOEFwsLCaNy4MTt27OCjjz5iwYIF133NVapUwdfXl5iYGF555RUyMjKYOHEirVq1sk1GZ7Va2bt3L717985xfPbEeEFBQQQHB/P555+zYcMGuw85bjVKsIWYmBgiIyOJiooiJiamqMMRERERKRbatm3LkSNHGDBgACkpKfj5+TFmzBhbL2VB7d69m5CQkBzbq1atyrp16657/P3338/7779vS8pef/113njjDTp27Ehqaiq333478+bNw9/fn6SkpBzHP/LII6SmpvLKK69w/PhxKlasyKhRo2xDhkePHk18fDydO3cmPT2dZs2a2RLIK40aNYqEhAR69erF+fPnqV27NvPnz6d69eoAREdHM2HCBJKTkylVqhTdunWz9Zh26tSJ+Ph49u3bR1xcHPPmzSMuLo5XXnkFV1dX2rRpY0tyr6devXpXvVb2EPrbbruNRx99lEuXLhEeHm4bPl6zZk1mzJhBXFwcY8eOpUqVKiQkJNheQ6dOnfj7778ZNGgQ586do169esyZM8dWjz9+/HgmT55MeHg4mZmZhIWF3fAa5Q888ADjxo1j3LhxnDlzhmrVqpGQkJBjtvHcmEwmZs6cyauvvkpoaCju7u488MADPP/887Y2KSkp/P3337nWf/fs2ZO0tDQGDx7M2bNnqVq1KpMnT7Ybpn+rMVmtVo06u4bIyEiHz65dGDHcaJxXaxcZGQngsNfax3SbQ84jRceClTd/36weFydmGAYup3/TM3RyhmGQFdRYz9GJGYaBtYSHnqGTK11GS1feyrKX6dq2bVuOenGRK6kHWwqFhocXD67l9UGJUzMMrInryCrqOKRADIsFjxqNgfwNUZWiZ8LA1bioR+j0lGCLyPUpwRagcOqwlWQ7N9VgOz9b3acDZqqVomP8/9l+9bPovFSD7fzyW4N9NZs3b851PeJsjRs3Zs+ePVfd/9xzz9G/f3+HxiQijqEEW4B/6rBFREREpHC1bduWtm3bFnUYkgeBgYEcPHiwqMMQJ6AEWwqF1sF2floH2/kZhoElK0s92E7OsFj0s+jkDMPAsGTpGYqI3AKUYIvNlUsmFJSGhxcPHq6gokHnZcKgRNVaRR2GFJBhWDCV8ivqMKQATIaBe+opcPAwYxER+e9Rgi02jl6iS0m2c1MNtvP7p+5TPdjOzDBUg+3sVIPt/Bxdgy0ixZf+6hIRERERERFxACXYIiIiIiIiIg6gIeJSKDTJmfPTJGfOzzAMLOYsDRF3coZhwaKfRadmGIZ+n4qI3CKUYEuhUP118eD+7caiDkEKwrDgXqFyUUchBeRiGFjd3Ys6DCmgv96bUdQhSAF5j51V1CHcNMnJyfj4+ODl5VXUoYg4HSXYUmiUZDu3fyY5U++ns9LkWMWDJshyfrZnqCXznJZhsRR1CFeVkpJCmzZtqFatGmvXrrXbl5CQwK5du1iyZAnr1q1jzpw5bNx47Q/Pz5w5Q9u2bVm/fj1eXl7Mnj2b3bt3M2/evMJ8GYUqKSmJsLAwtm3bRmBgoEPOWbt2bRYvXkzz5s0LdJ7Vq1czffp0Pv300xz7rrz3N/r8pOgpwb7F/Pzzz0RGRl51f3x8/E2MRkREREQKYuXKlbRq1Yo9e/bwv//9j3vvvTfXdh06dKBDhw7XPV96ejppaWm27/v37++wWCVvrrz3N/r8pOgpwXYCnp6e10yK4fJQnhthsVhuShKtGmznd7kGW/W7zswwLKr7LAYMwyBLz9GpGYaBOStLPdi3qISEBFatWsWlS5eoWrUqAwcOJCwszCHntlgsLFu2jNGjR1OjRg0WLFhw1QT7yp7SrKwsXnnlFT755BOysrKoWbMmI0aMoGHDhjz66KMAPProo7z22mscPnzY1gu+evVqli1bRnBwMBs2bMDLy4tu3boxYMAATCYTZrOZWbNmsW7dOv7++28aNGjAuHHjCAoKAuC9995jwYIFnD9/nkqVKtGjRw86d+6ca7y7d+8mPj6egwcPUrp0aTp06MDAgQNxd3cnISGBX375BXd3d3bs2IGXlxePPfYYI0aMACA1NZWXX36ZrVu34uXlRdeuXe3OfebMGWJjY9m5cycmk4nQ0FBGjRqFj48PiYmJjBo1iiZNmvDZZ5/Rr18/evfuTVxcHGvWrMFkMtGnTx+786WkpDB16lS2b99OZmYmDRs2JCoqimrVqtl6z1955RVmzZrFhQsXqF+/PjExMQQEBNidx2w2M2jQINLS0pgzZw4LFy60u/dX6+mW/xYl2E7gRtanvl4CfrNpeHjxcGb750UdghSAYbEQ+MpcfdTl5KyGQcnUU0UdhhSAYRgE3JN70iPF29dff83y5ctZvXo1/v7+LF++nLFjx9KqVSvc3NwKfP5PP/0UwzAIDQ2lfv36PPDAAxw8eJDatWtf87i1a9eyd+9eNm3ahLe3N9OmTWPixImsW7eODRs2EBYWxoYNGwgMDCQhIcHu2O+//56QkBB27tzJoUOH6NOnD/7+/nTu3Jn4+Hi+/vpr3nnnHSpUqMDcuXN59tln+eijj0hOTiYmJoa1a9dSo0YNvvjiCwYNGkTr1q2pUKGC3TV+++03evfuzQsvvMDChQs5ceIEQ4YMITU1lXHjxgGwZcsWYmNjmTx5Ml9++SXPPfccYWFhNGzYkEmTJvHnn3+yZcsWXFxcbIk3XP5QYuDAgVSrVo3NmzeTmZlJVFQU0dHRTJ06FYCTJ09So0YNYmNjycjIYObMmezYsYNVq1bh5+fHhAkT7OIdOnQoLi4ufPjhh5QqVYq33nqLXr16sWHDBlubHTt2sGbNGsxmM71792bmzJlMmjTJtj89PZ1BgwZhMpmYP38+np6eN/5GkP8UJdi3GH9//5t2LSXZzs1Wg60eF6eVXTOonk/nphps5/fPM9TvU2dlGJbr9jpv27YtxzYPDw8uXLjAihUruP/+++ncuTNdunTBZHLM30jvvvsuTz/9NCVKlCAgIIAHH3yQd95557qdM56eniQlJbFq1SpatWrFsGHDbrizxtfXlxdeeAE3Nzfq1atHly5dWLduHZ06dWLZsmVMmzaNqlWrAjBo0CBWrFjBjh07qFevHlarlWXLltG2bVtatGjBd999h0suf2esX7+e2rVr07NnTwCCgoIYMWIEQ4cOZcyYMQBUq1aNjh07AtC6dWv8/f05cuQIderUYdOmTcyePRs/Pz8ARo0axWOPPQbAjz/+yE8//cTChQvx9vYG4MUXX+Thhx/mpZdessXQqVMn3NzccHNzY+3atfTv39/2usaNG8e6desAOHr0KLt27WLjxo22v7NfeOEF1q9fz2effUaDBg0A6Nu3L6VLlwYgNDSUvXv32q5lNpvp378/KSkprFy5EndNbOnUlGDfYv79CWG2qKgo0tPTVYMtIiIi4iAhISEkJCSwZMkS5s2bh6enJ927d2fAgAG5JpZ5cfjwYXbu3MmPP/7I/PnzgcuJWmZmJpGRkVf9mw+gffv2ZGZmsnLlSqZOnYqfnx/9+/fnqaeeuu51q1SpYtf7XqlSJTZv3sy5c+dIS0tj2LBhdq8tMzOTY8eO0bZtW9t96N+/P4ZhEBERwciRI/Hw8LC7xtmzZ23JbLbAwEDS09M5e/YskLPTyM3NDYvFQkpKCmazmUqVKtn2XXmupKQkDMOgdevWdse7u7tz9OhR2/dX3r/k5GS785UuXZoyZcoAl4eb//sarq6uVKpUiWPHjtkS7PLly9v2lyhRAqv1n/Flp0+fJjg4mMOHD/Pjjz/SqFEjxHkpwRYAhyfXqsF2fhasqhl0coZFNdjFgdZQdn5ak754yK2H+nqOHz+On58f8+fPx2w2s3PnTgYPHkzdunVp06ZNgeJ59913ad26td0wY4DevXvz7rvv8vzzz1/12N9//526devSsWNH0tPT+fjjj3nxxRdp0qQJJUuWvOZ1k5OTsVqttl74pKQkKleuTNmyZfHw8GDBggU0bNjQ1v63336jYsWKnD17FsMwmDFjBhaLhW+//ZahQ4dSvXp1nn76abtrVKlShS1bttht+/PPP3F3d7cltleTHcfRo0epUaMGcHnId7aAgAA8PT1JTEy0/V41m80cPXqUoKAg9uzZA2A3yiAgIMAu+U5LS+Pvv/+2xZod3+233w5c/pk/fvz4DY8czR5O//rrrzN69GjWrFmjJdKcmBLsW8zVJky70UnSbpSGhxcPpcr7FnUIUgCGxYKHyQCLUdShSAGYLAYepiywZBV1KJJPLhYDS+uu128oxc6+ffuIjo5m0aJFBAcH24Ysly1btkDnTU1NZc2aNUyZMiXHRFlPPvkks2bNuubs39u3b2f58uXMnz+fwMBAfH19KVGiBKVKlbIlnampqbkee/r0ad5++22effZZfv75Z1auXMmECRNwcXGhU6dOvPHGG0yZMoUKFSqwdu1axo4dy6pVqzAMg2effZY5c+bQokULKlaseNV70b59e2bNmsWiRYt46qmnOHnyJFOnTiU8PPy6w6fd3d3p2LEjb731FrVr18bb25spU6bY9tevX5+goCBiY2MZPnw4rq6uxMbGsm3bNrZu3ZrrOTt37sy8efNo3rw5gYGBxMbG2ko/KlSoQOvWrXnllVeIi4uz1WAbhsH9999/1ft4JTc3N0wmE8OHD2f79u1MnjyZiRMnXvc4+W9Sgn2LuVpNTmFMkqYk27mpBtv5qQa7eFANtvPTM3R+2c8wr9q2bcuRI0cYMGAAKSkp+Pn5MWbMGNuw4fxavXo1np6eOYY5A3Ts2JGpU6eyatWqqx7fo0cPTp06RdeuXUlNTaVKlSrEx8cTEBCA1WrlwQcfpEuXLowePTrHsf7+/iQlJdGyZUu8vb0ZNmwY7dq1Ay7XMickJNCtWzfOnz9P1apVmTZtGnXq1AEgOjqaCRMmkJycTKlSpejWrRuPPPJIjmsEBgYyb948pk6dSkJCAp6enjz66KMMHz78hu7P2LFjiYmJITw8nBIlStCjRw+2b98OXB6ePWfOHCZPnsxDDz1ERkYG9evXZ+HChTmGqmfr27cvly5d4plnniErK4snn3wSX19f2/7XX3+duLg4Hn/8cdLS0mjYsCGLFi3C19f3hhLsbB4eHsTExPD00087bKZ5uflM1isLACSHyMhIp6hLLmicjq7B7mcKUoLt5LKwMH7iI0qwnZg5K4sKw17TH/VOzmw245F6Us/RiZnNZiwVa+sZOjHDMPD28SnqMIqclooSuT71YAtwY0uB5YVqsJ2farCdn2qwiwfVYDs/wzDI1DMUEbklKMGWQhHkqeUFnJ3FamXyy7nXIolzsGCl37d/FHUYUkCG1Ur95WuxFHUgkm8Ww+CvuKtPOCXOofTL8x12rs2bN+c6/Dpb48aNbZNt5ea55567Zo21iBQdJdhSaFwctMajFA3L/68e0VB/52Wro9fPolMz/v/Pono/nZetBlsjgpxW9pwWjtK2bVvatm3r0HPeDBEREURERBR1GCL/afpNL8DlGuzCmOhMRERERETkVqEebAEKYR1sq9XWAyrOyWK1koVFPdhOzIIVs8WiHmwnZ1itqsF2coZhaE4LEZFbhBLsW1z27OGOXgf7WIbWa3V2FqxE3FawdTqlaBlWK1zKQqtgOzfDar3uuq/y3+dfO6ioQxARkZtACfYtLrvnWutgy7+pftf52Wp39QydmmqwnZ9qsJ2fo2uwRaT40m96AcDT01M12CIiIiIiIgWgHmwBtA625KT6XednWPUMiwPVYDs/wzDIVA22iMgtQQl2MZRdV30jHF17nU3Dw4uHElYT+pzEeZms0KTfQ0UdhhSQYbGoBrsYcCvrV9QhiPzn/fHHHwQFab6C3Bw5coRq1aoVdRhyA5RgF0N5mRG8MIeFK8l2bqrBdn622l31mjm17NpP9WA7L1sNtqt+Fp2VYfz3arATEhKYOXMmnp6etm0mk4mGDRsyYcIEbrvtNodfMzExkR49enDw4EGHn3vy5MmkpKQQGxvr8HMDtG/fnueee44OHTrk2JeUlERYWBjbtm0jMDCwUK6fLTQ0lMGDBxMREUGfPn1o0qQJ/fv3v+YxS5cu5eOPP2bJkiWFGtv13Gi8tzol2AL80+vtyKW6RERERKTwNGnSxC7pSk1NZcyYMTz77LNs3rzZqT6YS0lJKdTzb9y4sVDPnx/z5s27oXbnzp0r5EhuzI3Ge6tTgi1AIayDrRpsp6cabOdnWK1ae7cYMCwW1WA7OcMwyMrMwtXQz+KtKCEhgVWrVnHp0iWqVq3KwIEDCQsLK5Rr+fj48Pjjj7N582b++usvfH19mTt3LuvXr+fEiROYTCZatWrFq6++iqenJ6NHjyYtLY1ffvmFlJQUVqxYwZkzZ3jzzTf57bffuHDhArfffjvR0dE0bNjQdp23336bpUuXYrVaCQ8PZ9iwYbi7u2M2m4mPj2fHjh2cPHkST09P2rVrx7hx4zCZTKSlpREXF8emTZvIzMwkJCSECRMmsGbNGtavXw/A/v37WbduHWfOnCE2NpadO3diMpkIDQ1l1KhR+Pj4kJiYyKhRo2jSpAmfffYZ/fr1o0+fPsybN48VK1aQkpJC9erVGTZsGPfddx9g33OcmprKyy+/zNatW/Hy8qJr16529/Fa187KyuKVV17hk08+ISsri5o1azJixAgaN26c43lYrVbmzJnDu+++S3p6Op07d7aNaAHo3r07zZo1Y8iQIfzyyy9MmDCBQ4cO4ePjQ7NmzXjppZf45JNPmDNnDoZh0KRJE3bv3s3hw4d5/fXXOXjwIOfOnSMwMJCRI0dy//33A9d+z+3evZv4+HgOHjxI6dKl6dChAwMHDsTd3Z2EhAR++eUX3N3d2bFjB15eXjz22GOMGDHihuP18fFx3BvaSSnBvsVlzx7u6FpsDQ8vHu4Z2qaoQ5ACMCwWPErqf3TOzmSx4KYabKdXwq9iUYcgReDrr79m+fLlrF69Gn9/f5YvX87YsWNp1aoVbm5uDr2W1WrlxIkTvP/++9StW5eyZcvy0UcfsXjxYt59912qVavG4cOH6datG+vXr6dz584AfPHFFyxfvpyAgADc3d3p3LkzQ4cO5amnniI9PZ0xY8bw+uuv895779mudejQIT766CPOnDlDnz598PLyYtCgQSxatIgvvviCRYsWUaFCBfbu3cszzzzDAw88QIsWLZg0aRKHDx9m9erV+Pn5MX78eJ5//nmWL1/O0aNHAYiNjcVisTBw4ECqVavG5s2byczMJCoqiujoaKZOnQrAyZMnqVGjBrGxsWRkZDBjxgxWrVrFzJkzqV27Nlu2bGHgwIEsXbqU+vXr292rSZMm8eeff7JlyxZcXFxsCSRw3WuvXbuWvXv3smnTJry9vZk2bRoTJ05k3bp1OZ7JBx98wKJFi5g3bx63334706dP5+TJk7k+v4kTJ9KiRQveffddUlJS6NmzJytXrqR3794kJSWxa9cu22iFIUOGEBYWxvTp07FarcTFxTFhwgTuv//+a77njh49Su/evXnhhRdYuHAhJ06cYMiQIaSmpjJu3DgAtmzZQmxsLJMnT+bLL7/kueeeIywszO4DluvFe6tTgn2Ly549XOtgy7/ZarDV++m0/qnd1TN0ZqrBdn6qwXZ+hmG5bq/ztm3bcmzz8PDgwoULrFixgvvvv5/OnTvTpUsXTA4aHbZnzx6aNGkCXE6wfXx8aNSoERMmTACgVatWNGrUiICAAM6dO0dKSgq+vr6cOnXKdo6GDRtyxx13/P/XabB8+XKCgoLIyMjg2LFj+Pr6sm/fPlt7k8lEdHQ03t7eeHt706dPHxYsWMCgQYN48sknefzxx/Hz8yM5OZn09HS8vb05deoUZrOZjRs3MmvWLCpVqgRcLlH8448/cryuH3/8kZ9++omFCxfi7e0NwIsvvsjDDz/MSy+9ZGvXqVMn3NzccHNz44MPPqBfv37UrVsXgHbt2rF582ZWrVpll2CbzWY2bdrE7Nmz8fO7PPngqFGjeOyxx27o2p6eniQlJbFq1SpatWrFsGHDrvp39Nq1a3nyySdtMQ0bNowVK1bk2tbDw4MvvviCmjVr0qJFC9auXYvLVf4GmzNnDhUrVsRqtXLs2DFKly5te6bXes+tX7+e2rVr07NnTwCCgoIYMWIEQ4cOZcyYMQBUq1aNjh07AtC6dWv8/f05cuRIjgQ7L/HeapRgFxNXrmOdn97o7ONVgy0iIiLiGCEhISQkJLBkyRLmzZuHp6cn3bt3Z8CAAQ5JRho3bnzNia+sVivx8fFs376dcuXKceedd5KZmYnV+k8ZX4UKFWxfu7q6kpiYSN++fUlLS6NWrVqUKFHCrn3p0qUpXbq07ftKlSrZkrtLly4xadIkvvnmGwICAqhTpw5WqxWLxcKFCxcwm81UrlzZ7lz16tXLEXdSUhKGYdC6dWu77e7u7rae7n/HfubMGapWrWrXPjAwkAMHDthtS0lJwWw225J8wO646127ffv2ZGZmsnLlSqZOnYqfnx/9+/fnqaeeyvE6kpOT7a7j6upq9/qv9Oabb5KQkEB8fDzPP/+87YOS22+/PUfbAwcOMHDgQE6fPk3NmjUpV66c7Rld6z139uzZXO9Reno6Z8+eBcDf399uv5ubGxZLzkn+8hLvrUYJdjFx5TrW+emN1jrY8m8WVL/r7AyL5fIztOgZOjPDYsGqGmynZhgGFnOWerCdXG491Ndz/Phx/Pz8mD9/PmazmZ07dzJ48GDq1q1LmzZtHB/kv8TFxXH8+HE+/fRTW21seHi4XZsre9O///57Xn75ZZYtW8Zdd90FwIIFC/j9999tbVJTU0lLS8PLywuAo0ePUqVKFQDGjRtHmTJl+PLLL/Hw8MBisdC0aVMA/Pz8cHd358SJE9SoUQOAs2fPMnfuXIYPH24XU0BAAJ6eniQmJtp+95nNZo4ePUpQUBB79uzJEXuVKlXsku/s2K5MwgHKli2Lh4cHR48etcVx5bDt6137999/p27dunTs2JH09HQ+/vhjXnzxRZo0aZIjuQwICLCLyWq15toRZrFY2L9/P0OGDGHMmDGcOHGCmJgYRo8ezQcffGDX9tSpUwwbNozp06cTGhoKwObNm9myZQtw7fdclSpVbO2y/fnnn7i7u1OmTJkccV1NXuK9FSnBlkJRWn8IOj2L1conb+wo6jCkACxWK3suZBR1GFJAFqxMO98fMK7bVv6bTBi4tO56/YZS7Ozbt4/o6GgWLVpEcHCwbUhy2bJlb8r1U1NT8fDwwNXVlYyMDJYuXcqhQ4dsk2H9299//42Li4tt6a/vvvuOxYsXk5WVZWtjGAaxsbGMHj2aEydOMH/+fFvdbWpqKhUqVMDFxYXU1FSmT59OamoqmZmZuLi40LFjRxISEqhVqxa+vr68+eab/PLLL3h6euLu7m7rRa1fvz5BQUHExsYyfPhwXF1diY2NZdu2bWzdujXX2Dt37szbb79Nw4YNCQ4OZsuWLXz66acsWLDArp27uzsdO3bkrbfeonbt2nh7ezNlyhTb/utde/v27Sxfvpz58+cTGBiIr68vJUqUoFSpUrnGNHHiRB544AHuuusu5s6dy+nTp3O0c3Fx4ZVXXqFZs2aMGjWKcuXK4eHhYXufeHh4kJqaitVq5eLFixiGQcmSJQH49ddfmTFjBnD5g4Brvefat2/PrFmzWLRoEU899RQnT55k6tSphIeH456HuT6uF++tTgm2FBoXzT7t1Cz/f6iRnqPzsj1DzYfg1GzzIeiDS6f1Tw22nqGzunLm57xo27YtR44cYcCAAaSkpODn58eYMWNo0KCBgyPM3fDhw4mKiuKee+7By8uLxo0b89hjj3Ho0KFc2997771069aNp59+GovFQmBgIN27d+eNN97gzJkzAPj6+uLr60vr1q3x9vama9euPP3008DlHuzo6GiaNWuGt7c3bdq04b777rNdb/To0cTHx9O5c2fS09Np1qwZb731FnC5ZjoyMpI2bdqwY8cO5syZw+TJk3nooYfIyMigfv36LFy4EA8Pj1xj7927NxaLhcjISE6fPk1QUBBTp06lWbNmOdqOHTuWmJgYwsPDKVGiBD169GD79u0AlChR4prX7tGjB6dOnaJr166kpqZSpUoV4uPjCQgIyHGdRx99lJSUFCIjI7lw4QIPP/wwtWvXzjX+N998k5dffpmWLVvaev5ffvllAO6//37ef/99GjduzI4dOxg1ahQjR47k0qVLBAQE8OSTTzJlyhQOHTp03ffcvHnzmDp1KgkJCXh6evLoo4/mGEFwI64V763OZL2yqEJycMa65KvFnL3W9bU46rU+X6K6EjMnl2WxULe0h56jE8uyWNhzIUMJtpPLwsK0898pOXNiZrMZF/eSeoZOzDAMvLX8kIjcAPVg30Icvdb1tVisVlvvmTgni9VKlsWiBNuJWaxWsrAowXZyFqxaB9vJGYZBlp6hiMgtQQm2FIo0i5JrZ2fBSvd3BhV1GFIAhmGh+fIt128o/2mG1Yrb15o0xplZDQuuD2htWPnH5s2bGT169FX3N27c2DaRV26ee+45+vfvXxihiUgBKcEuhq5csutK+Vm+qyDUa+bc/qn71Ky3zsow/v/6yRqF4NQMq34WnZ3tZ1E92E4rvzXYV9O2bVvatm3r0HOKyH+DEuxi6GpLbuWWdP+7LtvZ6s1FRERERET+K5Rg3+IKqy5b62A7v8t1n1q31ZkZhgWzxaIebCdnWPWz6OwMw4KhGmwRkVuCEuxbSG5Dxwtr2LiGhxcP3jXvLOoQpAAMw+Czj+cUdRhSQBarlfoLexZ1GFIAJsPAxe3G15gVERHnpQT7FpLb0PHcho07ipJs56a1d51fds2gZoJ3bharfhadndbBdn6OrsEWkeJLCfYt7t+92qrBFhERERERyR8l2Le4q02IVlCqwXZ+WnvX+RmGobXMiwGLVT+Lzs4wDLKseoYiIrcCJdhSKKYf317UIUgBGYaBqVT5og5DCsIw+CM9q6ijkAKyYMXN06uow5ACsLoYuH7+blGHIQUVPqioIxARJ6AEWwqNPql3bqoZdH62GmzNh+DUNB+C8/vn96lmgndW2WuZ32r++OMPgoKCijqMYk33uPjRb3oBLq+HXZgTnomIiIiI44wePZq6desSEhJCSEgIDRs2JDw8nM2bNzvk/JMnT2bWrFkOOVdu2rdvz7p163Ldl5SURO3atUlKSiq06/8X/Pse165dm8TExFzb7t69m5CQEACOHz9OSEgIx48fvylxSt6oB1sAx6+HbRiGZtx0coZhYFHdp1MzDIMsLOrBdnKaD8H5GYaBobXMpRCEh4cTGxsLgMViYd26dTz//PN89NFHBe4VTUlJcUSIV7Vx48ZCPb8zyMs9btKkCXv37gWgcuXKtq/lv0cJthQK1e46P5Nh4OZesqjDkAKwGgYlNFCpWHB31xrKzu7Eti+LOgQpoNIdh+TruISEBFatWsWlS5eoWrUqAwcOJCwszMHRgYuLCx07diQmJob9+/cTFBSE2WwmPj6eHTt2cPLkSTw9PWnXrh3jxo3DZDKRlpZGXFwcmzZtIjMzk5CQECZMmMCaNWtYv349APv372fdunWcOXOG2NhYdu7ciclkIjQ0lFGjRuHj40NiYiKjRo2iSZMmfPbZZ/Tr148+ffowb948VqxYQUpKCtWrV2fYsGHcd999AISGhjJ48GAiIiJITU3l5ZdfZuvWrXh5edG1a1e713ata2dlZfHKK6/wySefkJWVRc2aNRkxYgSNGzfO9T5t3LiR2bNnc/z4cYKCgnj++edp2bIlcLnDKSYmhk2bNlGyZEkef/xx1q1bR0xMDM2bNycpKYnx48ezd+9eKlSoQNeuXYmJieHgwYMA/PTTT8TGxnLgwAHKli1Lt27d6NmzJybT/2PvzsOqKNsHjn/ZD4IKIm5o7kq5YZJLGSqa5E5upL5SuaQgirij5q648ybuirspRGiuaWmalUuapWlqLhRCgQmhCHhgzvn9wY95PaGiAdLg/bmuc10yM2fmnhk5nHue534eM8LCwjh79iwpKSnExsbi6+ub6xoDfPPNN8yZM4fffvuNmjVrMmfOHOrUqcPJkyfx9fXl8uXL3Lx5k7Zt23Lo0CEqV65c4P+XRP5Igv0cCQ4OJiMj46HrEhMTC/x40tqibVKDrX1Sg108SA229qmfp+byu6hVisGYZ1J86NChXMtOnDhBREQE0dHRODs7ExERwaRJk/Dw8MDKyqpAY8zKyuKLL77AzMyMpk2bArBx40aOHTvGxo0bKVeuHGfPnuU///kP7dq1o0WLFsyYMYNr164RHR2Nk5MTU6dOZdSoUURERBAbGwvA3LlzMRgM+Pv7U61aNQ4cOEBmZibBwcFMmTKFxYsXA/DHH39Qo0YN5s6dy/3791m2bBlRUVEsX76cunXrcvDgQfz9/dm6dSsNGzY0iX3GjBn89ttvHDx4EHNzc0aPHq2uy+vYn376KWfPnmX//v3Y2dmxZMkSpk+f/tDu50ePHmXq1KmsWLGCl19+ma+++orhw4cTGRlJ7dq1mTNnDj/99BOffvoppUqVYvr06cTFxQHZv8dDhgyhYcOGfP311yQnJzNs2P8GvktISOCdd94hKCiIdevW8euvv+Lv749Op1MfGBw/fpx169bRsGFDbGxs1C7wOb0QAE6dOkV4eDj29vYMHz6cefPmER4enu//H+LZkaaN50hON/CHvcqVK0dwcHBRhyiEEEIIUWzY2NiQkpJCZGQkFy9epFevXhw/frzAkus9e/bg7u6Ou7s7jRo1IjAwkB49euDo6AhA79692bBhA87OziQmJpKRkYGdnR0JCQno9Xr27t1LYGAgFStWxNramuDgYCZPnpzrOD/99BMXLlxg6tSp2Nvb4+joyPjx49m7d69JN+eePXtiZWWFvb09n3zyCe+//z716tXD0tKSjh074unpSVRUlMm+9Xo9+/fvZ/jw4Tg5OeHo6Mi4ceOe+Ng6nY6bN28SFRXFjRs3CAwMfGRt95YtW+jTpw+vvPIKFhYWtGnTBk9PT7Zv305mZia7du0iKCiIihUrYmdnx5QpU9SHmz/88AMxMTF88MEHlChRAhcXF5Pxi3bt2kXNmjXp168fVlZW1KpVi4EDB7J161Z1mypVqtCiRQvs7OywtHx4O+d7771H2bJl0el0tGvXjt9++y2v/wbiX0ZasIXqUa3b/4TUYGufoihkSd2npkkNdvEgNdjapygK+iyDtGBr3MNaqPPSuHFjwsLC2Lx5M2vXrkWn09G/f3/8/PwwN89/O1fnzp3V1k+j0cjZs2cZNWoUBoOB8ePHk56ezowZM/juu++oUKECL730EkajEYPBQEpKCnq9nkqVKqn7K1WqFA0aNMh1nJs3b6IoCq1atTJZbm1trbZ0A5QrV079959//kmVKlVMtq9cuTKXLl0yWZacnIxer6dixYrqsgffl9exO3XqRGZmJh9//DGLFy/GycmJoUOH0qdPn1znERcXx6lTp9i2bZu6TFEUmjdvzl9//UV6ejouLi7qupyEHrJb6B0dHSlR4n/TJj7YPTsuLo4LFy7g7u6uLjMYDCaf3Q9en0dxcHBQ/21lZSXfpzVIEmwBgE6nK9AnZOZSu6t5RkXBNuFiUYch8kGRGuxiwy7pWlGHIPJBURQsDAZ4Pmd6eq7Fx8fj5OREeHg4er2e48ePExAQQL169WjdunWBHsvMzIyXX36ZN998k6NHjzJ+/HgmT55M6dKl+frrr7GxscFgMPDKK68A4OTkhLW1Nb///js1atQA4Pbt26xZs4aRI0ea7LtChQrodDpOnjypJox6vZ7Y2FiqVq3KmTNn1BhyuLi4mCTfALGxsbmSTEdHR2xsbIiNjVXj+OOPP5742Ddu3KBevXp4e3uTkZHBZ599xvjx43F3d6d27dq5zsPb25v3339fXRYfH49Op8PBwQGdTkd8fLwaR1pamtpCX6lSJZKSkkhPT8fW1lZ974P7btasmUl37uTkZO7du2dyj0TxJwm2ACAkJKTAp+mS1hZtkxps7ZMa7OJBarC1T2qwtU8xGP/R+86fP8+UKVPYuHEjrq6uODk5AaitogXt2rVrfPHFF7z66qsApKamUq5cOczNzUlNTWXp0qWkpqaSmZmpDooWFhZGrVq1cHBw4L///S+//PILOp0Oa2trbt++DUDDhg2pWrUqc+fOZeTIkVhYWDB37lwOHTrEF1988dBYevXqxerVq3Fzc8PV1ZWDBw9y+PBh1q1bZ7KdtbU13t7efPjhh9StWxc7OzsWLFigrs/r2F9++SURERGEh4dTuXJlHBwcsLS0pGTJkrli6t27N7NmzaJ58+Y0bNiQ8+fPM3jwYPz9/fH19aVnz56EhYVRu3ZtSpUqRUhIiPr726hRI2rVqsXcuXOZMGECd+7cYcmSJeq+u3Tpwpo1a9i1axcdO3YkKSmJ4cOH4+zszNKlSx96jR68xqL4kARbqHQ6XVGHIIQQQghRbHh5eRETE4Ofnx/Jyck4OTkxceJEGjVqVCD73717t8m81yVLlsTLy4sxY8YAMHnyZKZMmULTpk2xs7OjdevWvP7661y5cgXInks7NDSUXr16kZGRQdOmTfnwww8B6NixI0FBQbRu3ZojR46watUq5s2bR/v27bl//z4NGzZk/fr12NjYPDS29957D4PBQFBQELdu3aJq1aosXrxYHYDtQZMmTSIkJIQuXbpgaWmJr68vX375JQCWlpaPPbavry8JCQm8/fbbpKam4uLiQmhoKBUqVMh1nDfffJO0tDQmTpxIfHw8Dg4OvPvuu/Tv3x+A0aNHM3PmTDp27IidnR0+Pj6Ym5tjZWWFubk5S5YsYerUqbRo0YIKFSrg6enJzz//DGS32K9du5aFCxcya9YsLCwsaN26NZMmTXrk/fv7NRbFg5nRaPxnj+SeE0FBQQU6P3RRepbncicl5ZkcRxQeRVGwjj8vrWYapigKwxv8R1qwNc6AkSUXtsvvooYpisLV+fOlBVvjGqzbWdQhiEL23XffUbduXUqVKgVk9wBo0qQJBw4coEKFCpw9e5amTZuqn8eHDx9m6tSpHDt2rCjDFv8y0oItCoXuttQLap2iKBiqNUGG1tAuqcEuPqxtpIeRppmZU3vp1ry3E0IUqXXr1qnTc5mZmbFkyRKqV69OtWrVUBSFkSNHMnLkSHx8fEhOTmbdunW0adOmqMMW/zKSYBeRx81JXVgKY67rx5HWFm2TGmztkxrs4kFqsLVPPk+1r6BHcj5w4AATJkx45PomTZqoA4c9zJAhQxg6dGiBxiRg2rRpTJ8+nVatWqEoCk2aNGH16tVA9u/vsmXLmD9/PgsXLsTGxgYvLy/Gjh1bxFGLfxtJsItIzpzUz1Jeg5gFBwcTEhLyjKIRQgghhHg+eXl54eXlVdRhiL8pX748y5cvf+R6d3d3IiMjn2FEQoskwRYqmQdbPEhRFDJl7l1Nk3mwiweZB1v75PNUCCGeH5JgP6ce1kW9ILuQZ50+WGD7EkVDMRiw7la/qMMQ+SQ12MWDDZmgZBZ1GOIfMlMUbG7/UtRhiPwq3ayoIxBCaIAk2M+ph3VRL/B5sM3li72WKQYDIDWDWiY12MWD1GBrn9Rga5/0yhNCPCnJgIRK5sEWQgghhBBCiH9OWrCFqiAHOFMMBrUFVGiTYjBglJpBTZMa7OJBarC1T1EUFLmHmmdV1AEIITRBEuzniE6nU7uBF/aUXVbdCra7uXj2zBUFw45FyGMS7TIYDFKDXUyY/fGr/C5qmEExYPFaD7mHQgjxHJAE+znyYAt1QddbP4w8qdc2tWZQauk1K6cXibRga9v/arDld1GrFEXGtNC6f3MNdnJyMq1bt6ZatWp8+umnJuuio6MJDg7Gzc2NiIiIXO/t2rUrly9f5tChQ1SuXJkff/wRHx8fbG1t1W1eeukltm7davK+X3/9ld69e/PJJ59QuXLlR8aWlJTEzJkz+fbbb4Hs+b0nT55MpUqV8nPKD7VmzRo2b97MnTt3aNCgAdOnT6dGjRoApKWlMXPmTA4fPkxWVhZt27Zl6tSp2NnZAbB//36WL1/OzZs3KV26NN27dycgIADzv30HunLlCr169WL16tU0a5Y96F3jxo1NtjEYDGRkZLBo0SI6d+5MbGwsM2bM4Mcff8TCwoLXX3+dyZMnU6pUKQBOnjzJ4sWLuXbtGiVKlKB9+/aMHj0aW1tbBg0alGs+9LS0NHx8fJgxYwYGg4EmTZpgNBoxM/vf3/pvvvmGEiVKFOwFFk9M/loLIHtU8WeRdAshhBBCiILz8ccf4+Hhwa1bt/jmm29yrS9ZsiQXLlzg+vXrJsvPnz9PXFxcrmWvvPIKZ8+eVV9/T64PHTpEnz59+Ouvv/KMbcaMGZibm/Pll1/y5ZdfYmNjQ3Bw8NOfZB527NjB5s2bCQ8P5+TJk9SrV48RI0ZgNGY/oJw5cya///47Bw4c4ODBg/z+++8sXLgQgEuXLjF27FjGjx/P2bNn2bBhA5GRkezYscPkGOnp6YwePTrXLDwPXquzZ8/i5eVFy5YtefPNNwEYNWoUtWrV4ptvvmH//v3Ex8czd+5cABISEhg6dCg9evTg5MmTREREcPbsWTW2tWvXmux70qRJVKxYkYCAAACuXr1KZmYmp06dMtlOkuuiJS3YAnj4qOL5IfNga5+iKGRmZUkLtoYpBoPUYBcD2TXYWdKCrWGKYpAa7OdYWFgYUVFRpKenU6VKFfz9/Wnbtm2B7NtgMLB9+3YmTJhAjRo1WLduHa+99prJNqVKlaJp06bs3LmTUaNGqcs/+eQTOnXqZNKyff78eerXf/QUnUuXLmX//v0EBQUxefLkPOO7du0atWvXVhNdc3Nzk9bxB2VlZTFr1iw+//xzsrKyqFmzJqNHj6ZJkyZER0ezfft2XF1d2bNnDyVKlKBv3774+flhZmZGZGQkffv2pXbt2gCMHj2ayMhITp48SaNGjdi9ezebNm3CwcEBgDFjxuDr68u4ceNwdXXlxIkT2NvbYzAYSE5OJjMzE0dHR5P4pk+fTrt27bhy5cojzzc6Oppvv/2W3bt3Y2lpqV6DnFbmnJbmnGsQGxuLp6cnvXv3BqBixYp069aNqKioXPu+fv06M2fOJDw8nHLlygHZ96tu3bpYW1vneS/EsyMJtigU8iWieLB2qV7UIYh8UBSpwS4urNr0K+oQRD4YFUX+Lj6nTpw4QUREBNHR0Tg7OxMREcGkSZPw8PDAyir/w6YdPnwYRVHw9PSkYcOGtGvXjsuXL1O3bl2T7bp3787MmTMZOXIk5ubm3L9/n88++4zly5fnSrDLli1L+/btSU1NpWnTpkyYMIEKFSoA0KtXL4YNG5ar5ftR/Pz8mDRpEk2aNAGgatWqbNmy5aHbfvrpp5w9e5b9+/djZ2fHkiVLmD59Ort27QLgxx9/pHHjxhw/fpwrV64waNAgnJ2d6dWrF1evXmXw4MHqvqysrKhWrRqXLl3CwcGBzMxM6tSpo66vWbMmGRkZxMTE8OKLL2Jvb09GRgbu7u5kZmbSoUMHPDw81O137tzJr7/+yuzZs1m+fPlD47979y7z5s1j6tSpJsn58OHDWbRoEZs2bUJRFNzc3BgzZgwA7u7uuLu7q9saDAY+//xz6tWrl2v/06dPx9vb22T78+fPc//+fXr06EFcXJz6UOLll19+9E0RhU4S7OfUgwOeQeEMeiZfJrTtf/O2SoKmVTl1n9KCrW0yD7b2yTzY2qcoSp6tzocOHcq1zMbGhpSUFCIjI2nTpg29evXCx8fHpF42P7Zs2UK/fv2wtLSkQoUKvPHGG2zYsCHXzDCtWrXigw8+4Ntvv6Vly5YcOHCARo0aqS2hOedYrlw5Xn31Vfr06UNmZiYzZ87k/fffZ8eOHVhYWFC+fPmnis9gMODj44Ofnx+KojBp0iRGjhyZq9s5ZH83vXnzJlFRUXh4eBAYGGjyXdXBwYExY8ZgZWVFgwYN8PHxYdeuXfTq1Yt79+7lahnX6XSkpaWRmpoKYNJtOmfbe/fuqcusra35/vvviYuLY/jw4cycOZPp06dz7do1QkND2bZt22N/hzdt2oSLiwsdOnQwWW5mZoafnx/vvfceycnJjBo1iilTprBgwQKT7TIzM/nggw+IjY1Vu4jnOH36ND/++GOu5TqdjoYNGxIYGEjp0qXZunUrAwcOZNeuXVSpUuWRsYrCJd+cn1MhISGEhoaqr3LlyhVKTYwQQgghxPOqcePGhIWFcfbsWfr168drr73G8uXLMRTAVKbXrl3j+PHj6oBbzZo148iRI+zevTtXw4mVlRVdu3ZV64o/+eQTevbsabKNhYUFGzZs4P3336dkyZKUKVOGDz74gMuXL3Pt2rU84+nUqRONGzemcePGdOrUiVu3bjFhwgQGDhxI6dKlKVOmDNOmTeP06dNcvnz5oe//4IMPOHToEN7e3rRp04Zt27ap611cXExa/StWrKiep62tba7a6IyMDOzs7NTEOj09XV2X8297e3t1mbm5OdbW1lSvXh1/f3/27NnD/fv3CQoKYuLEiY8dmM1oNBIVFUX//v1NHp789NNPfPjhhwwZMoQSJUrg4uLCuHHj2L17t5r4Q3ZD17vvvsvPP//Mtm3bcj3IiIiIoEOHDjg7O5ssnzBhAnPmzKF8+fLodDoGDhxIpUqVOHr06CNjFYVPWrCF6u8fTPkhNdjalz1vq9R9apmiSA12cSDzYGtfzt9EuYfa9rAW6rzEx8fj5OREeHg4er2e48ePExAQQL169WjdunW+4tmyZQutWrVixowZJsvfe+89tmzZYlJvDdndxHv37s2lS5e4du0arVu3JiEhQV3/+++/s2HDBkaMGKGOrq3X64HsltK87N271+TnixcvkpmZqe4DUOuSH9Y9/saNG9SrVw9vb28yMjL47LPPGD9+vNolOjEx0WS07Js3b6pJb+3atfnll19o06YNkN0aHBMTQ506dahevTpWVlZcvXqVRo0aAdkPJ3K6ke/fv59NmzaZJPN6vZ7SpUtz/vx5YmJimDRpEpMmTVLXDx06lG7dujFt2jQgu6v27du31YHNHrymiqKYPFCxsrLCzMxM/Tw4d+4c/v7+NG/enJkzZ+Zqic/KyuLQoUMsW7Ys1zULDQ3Fy8uLl156ySR2GxubXNuKZ0cSbAFkf3D+9ttvBbY/+RJRPNi83KqoQxD5oCiK1GAXEzKAjfbJ38Xn0/nz55kyZQobN27E1dUVJycngFwDaD2t1NRUdu7cyYIFC9T66By9e/dmxYoVDB061GR53bp1qVmzJmPHjqVLly65klxHR0f27t2LoiiMHTuWe/fuMX36dFq0aMELL7zw1DHWqlWLKlWqMHv2bObPnw/AnDlzaNiwIdWqVcu1/ZdffklERATh4eFUrlwZBwcHLC0tKVmyJAC3bt1i9erVDBgwgJ9//pmPP/5YTXB79OhBWFgYHh4eVK9endDQUMqWLYu7uztWVlZ06NCBhQsX8uGHHwKwcOFCOnfujE6nw83NjcmTJ7N+/Xp8fX25fv06y5Yto0+fPri7u3Pu3Llc13HlypXqNF0AZ86coV69ermS4yZNmmBra8ucOXMIDg4mNTWVRYsW8cYbb2Bra0tsbCwDBgygf//+BAYGPvQ6Xr58mfv37z+0rvrKlSucPn2a//73v5QuXZrVq1eTmprKG2+88WQ3SRQKSbAFkN1lvKCn6ZIvE9omNYPal3MPpQVb26QGW/vk81T7/mmvPC8vL2JiYvDz8yM5ORknJycmTpyotqT+U9HR0eh0Olq1yv0g3Nvbm8WLFxMVFWXSBRr+N9jZf//731zv0+l0rF27lnnz5tGyZUsAWrdunaue+0lZW1sTHh7OvHnzaNeuHebm5jRv3pxly5blml8awNfXl4SEBN5++21SU1NxcXEhNDRUfYDg7OzMzZs3admyJXZ2dgQGBtKxY0cAevbsyd27dxk2bBhJSUk0aNCAVatWqQ8Rpk6dyrx58+jSpQuZmZm0bduWDz74AMjuar5mzRrmz5/P0qVLKVu2LP369cPX1/eJzzU2Nvah9ellypQhPDychQsX8vrrr2NjY4Onpydjx44FYOPGjdy9e5cNGzawYcMG9X2VKlVSewTExsZSunTph7ZKh4SEMG/ePLp160Z6ejoNGjRg/fr16mjpomiYGXPGzRcPFRQUVKDTVxX2fvMjODj4H3+I/t291FT5IqFxer0emztxch81TK/XM7J6Z0mwNS4LAx/evSi/ixqW08Vf7qF2KYqC3d+SVfHsREdHs3TpUg4fPlzUoQiRJ2nBFqqCSq5BarCLA0VRpO5T4xRFkRrsYkBqsLVParCFEOL5IQm2KBQ/v/1WUYcg8kkxGtlw4HpRhyHywYCRaVPezHtD8a+mGAxYHlhR1GGIfDAzGLDqVrBlWELbDhw4wIQJEx65vkmTJpw5c+aR64cMGZKrxloI8e8gCbYoNBYFNMejKBrK/1ePSOundqm1uw+pdRPaofz/6LNyH7VLvYfSgq1ZBd0rz8vLCy8vrwLdZ3HWvXt3unfvXtRhCPFE5K+1ALLrrwt6kDMhhBBCCCGEeJ5IC7YAsufALshB1xSjUW0BFdqkGI1Sv6txBozos7Kk5VPjFINB7qPGKQYDRqmjF0KI54Ik2M+R4OBgMjIyHrouMTGxQI/V4D3p9qR1isGA5cFVRR2GyKeytasUdQginxSDgVLubYo6DJEPiqKgyFzmQgjxXJAE+znyuFbqwugeLq0t2pZTMygt2NolNdjFg9Tvap/Mg619MjOKEOJJybcuAYBOp5MabCGEEEIIIYTIB2nBFkDBzoEN2S0uOa0uQpsUg0FqsDVOarCLB8VgkHmwNU5RFLmHQgjxnJAEWxQKQ2pqUYcg8slgMGApnVw0z+7tiUUdgsgnRVEwHl5PVlEHIv4xRTFgb2tX1GGI/CrdoqgjEEJogCTYGva4QcsepqAHMsuLtJppm9Rga59agy2tZpr2v/pd+UzVKkWROnqtkxpsUzExMVSrVq2ow/hXURSF+Ph4qlSRwUWfd5Jga9jTTq31YI31o5LzgpyqSwghhBBCFI4JEyawY8cO3n//fUaPHm2y7vbt27Rq1Ypy5cpx+PDhf7R/T09PAgIC6N69O4MGDcLd3Z2hQ4dy+PBhZs+ezaFDhwriNArdypUrOX36NGvXriU6OpqlS5f+42vyOEFBQdSuXZvhw4cXyP6uXr1KQEAACQkJ/Oc//8l1jwvKg9dHFAxJsJ9TBT3v9d9JDbb2SQ229hkwSt1nMaAoCln6LGnB1jBFkTr64sCqqAN4CEdHRz799FOCgoIwf6Dn4M6dO7GxsSmw4zyYfP31118YjcYC23dhGzp06DM5TnJycoHu7/PPP0en03H69OlC/ex4VtfneSIJdj48bRftBz3r7trPmkObbkUdgsgnRVGwJKKowxD5lLllNplFHYTIF8VgoNSgmUUdhsgHM0XB4t6tog5DFJGwsDCioqJIT0+nSpUq+Pv707Zt2wLZ92uvvca3337Lt99+S8uWLdXl0dHRdOrUia+//lpdduHCBebOnculS5dwdHSkb9++vPPOO5iZmWE0Glm1ahVbtmwhIyODXr16mXSL79+/P02bNqVp06ZMnTqVzMxMGjduzGeffYajoyMrVqxg165d3L17l0aNGjF58mSqVq0KQN26denfvz+7d++mcePGtG/fni1btuDg4MC5c+eYOnUqTZs2JSQkhHPnznH79m3Kli2Ln58fPXv2VPcxefJktmzZQmJiInXr1mX69OnUrVs3z3MLCwvj1KlTbN68GYCsrCzmzZvHp59+SokSJXj77bcZOHAgZmZmpKamMnfuXE6dOkViYiIlS5akX79+ahKalJTEnDlzOHr0KObm5rz66qtMmzaN+fPnc/r0ac6ePcuFCxdYuXIlv/32G3PmzOHs2bOUKFGCrl27MmzYMKytrYmOjs51Dbp06aJe77lz57JlyxYURcHd3Z3o6GgMBgPz58/n8uXLJCUlUblyZcaOHUubNm0AHns8gN27d7Nq1Sri4uKoUKECw4cPp2PHjibXJzU1lQ8++IBvv/0WS0tLXF1dmThxIjVr1iyQ/6/PC0mw8yE/rcDPw5RY8qRe23L+sEoLtnbJPNjFg8yDrX0yD7b2KYqSZ1L8sC7TJ06cICIigujoaJydnYmIiGDSpEl4eHhgZZX/NnErKys6d+7Mjh071AT7hx9+wGg04ubmpibYCQkJvPPOOwQFBbFu3Tp+/fVX/P390el0vP3223zyySds3LiRtWvXUrt2bZYuXcoff/yR63jNmjVj+vTpJt2s582bx4kTJ9iwYQPlypVjzZo1DBgwgH379qmt6L/99htHjhwhMzOTL774Qk2IV65cicFgYPjw4Tg4OLB3716sra3ZtGkTM2fOpEOHDtjZZQ8QuHfvXrZs2YJOp2PEiBHMnz+f8PDwPM/t7xISEjA3N+fIkSNcuXKFgQMHUrZsWby9vVm4cCE3b94kKiqKkiVLcvDgQUaMGEGHDh2oWrUqgYGB2NnZcfDgQaysrAgMDGT69OksXryY3377jaZNmzJ8+HDS0tJ499136dSpEx9++CFJSUmMGDECg8GgdvX++zV40IQJE7CzszN5MNCxY0fatm3L0qVLMRqNLFy4kGnTptGmTZs8j3fy5EkmTpzI0qVLef311/n666/x9/enTp06Jsddt24dqamp6gOEKVOmsHDhQlasWPGP/48+j+Rb13MuODiYoKAg9SWEEEIIIQqGjY0NKSkpREZGcvHiRXr16sXx48cLJLnO0aNHD7744gvu3r0LQFRUFD169DDZZteuXdSsWZN+/fphZWVFrVq1GDhwIFu3bgXg008/pXfv3tSrVw9ra2sCAwNxdHTM89hGo5Ht27czatQoqlSpgo2NDcOGDSMzM5MjR46o23Xu3BlbW1tKlSoFZD8Y6NatG9bW1uh0OmbNmsXUqVOxsrIiPj4eOzs7MjIySElJUffRv39/nJ2dKVmyJB06dCAmJuaJzu3vHB0dGTVqFNbW1tSvXx8fHx927doFwPDhw/nvf/+Lvb09f/zxh/qAIDExkbi4OE6dOsX48eNxdHTE3t6euXPn4ufnl+sYR44cQa/XM2rUKGxsbKhYsSKBgYEmMf39GuRl1apVDB8+HKPRSFxcHKVKlSIhIeGJjrdz507at29Pq1atMDc3x8PDg48++ojy5cubHEOn03Hp0iV27txJQkICc+bMkeT6H5AW7OeITqdTk+icLuqFVYutKIqMuKlxiqJIDbbGyTzYxYPMg619Mg928fBPBvVq3LgxYWFhbN68mbVr16LT6ejfvz9+fn4mNdP54erqSo0aNdi/fz9dunTh888/Z9++fRw9elTdJi4ujgsXLuDu7q4uMxgM6v/JxMREKlasqK6zsLCgUqVKeR47KSmJtLQ0AgMDTc4nMzOTuLg49edy5cqZvM/Z2dlk+9jYWObPn6+OTp7TvfzBlt2yZcuq/7a0tFTrwPM6t7+rWLGiybqKFSuq9/b27dvMnj2bixcvUrlyZerXr6/u79at7DIPFxcXk/NwdnbOdYy4uDiSkpJ45ZVX1GVGo5HMzExu37790GuQl0uXLuHv78+tW7eoWbMmZcqUMbkGjzteYmIiL730ksn+GjZsmOsYgwcPxtramqioKGbMmEGVKlUYPXo07du3f+I4hSTYz5WQkBD134XdWq1UcSvU/YvCl12DLYmZ1pXzfqeoQxD5pCgKFnFnizoMkQ+KoqDcuIh2hoUSD1Wl7lO/JT4+HicnJ8LDw9Hr9Rw/fpyAgADq1atH69atCyy0t956ix07dmBtbc0rr7yCk5OTyfoKFSrQrFkzwsPD1WXJycncu3dPXR8bG6uuMxqNTzRekKOjIzY2Nqxbtw43Nzd1+fXr101aR83MTB/WP/hzZmYmQ4YMYdSoUfTt2xczMzN++ukntVU5L3md29/dunULo9GoxhAbG6smzYGBgXh6ehIeHo6lpSXJyclERkYCqA8g4uPj1SnKrl69yp49exg5cmSumF544QU+++wzdVlqaiq3b9+mTJkyD70mj5OQkEBgYCBLly7F09MTgAMHDnDw4MEnOl7FihWJj4832eff7xnA5cuX8fT05N133+Xu3bt89NFHBAUFceLECUqWLPnE8T7v5NuzKDQWFhby0vArhzlm8tLoS34Xi8dL7qP2X/+7h+by0ujrnzp//jyDBg3i0qVLWFtbq4nvk3S/fhpdunThp59+Yu3aterAYH9f/8MPP7Br1y6ysrJITExk6NChzJ07F4BevXoRGRnJ2bNnyczMZMWKFWqL7d/Z2NiQnp5OVlYW5ubm9OzZk0WLFvHHH39gMBjYsWMHnTt35tdff32i2DMzM8nIyECn02FmZkZ8fDwLFixQ1z3JuT/u3P7u1q1brFixAr1ez9mzZ/n444/VWu27d++i0+mwsLAgKSmJWbNmqXGUL1+e1157jfnz53Pnzh1SU1NZsGCB+mDC2tpa7abfpk0b7t27x9q1a9Hr9dy5c4fx48cTFBT0VIl1jnv37qEoCra2tkB2Yr9s2TIA9Hp9nsd76623+Pzzz/n6668xGAwcO3aMsLCwXEnzxx9/zLhx47h9+zb29vbY29tTokQJdaA08WQkwRbA/2qxhRBCCCFEwfDy8mLAgAH4+fnh5uZGYGAgEydOpFGjRgV6HEdHR9q0aUNKSgqvv/56rvUuLi6sXbuWiIgIXn31Vbp160aNGjXUJLRz586MGDGCoKAgmjZtSmxsrDpC99/ltJC/8sorXL58mfHjx9OoUSP69u2Lu7s7GzZsYMmSJbm6JD9KiRIlmDNnDsuWLaNx48b4+vry2muvUbZsWa5cuZLn+/M6t7+rW7cuN2/epFmzZowfP55x48aprcIhISHs27ePl19+me7du1O+fHleeuklNY6FCxdib29Phw4daNu2LWXKlGH69OkAeHt788knn9C3b1/s7e3ZsGEDJ0+exMPDg3bt2mFubv6P65lr1KjBuHHjGDt2LE2aNCEwMJAePXpgZWXFlStX8jxekyZNmDdvHvPmzcPd3Z358+ezePFiateubXKcUaNGUbVqVTp16sTLL79MdHQ0y5cvL9Ap354HZkYtTWRXBIKCgh5Zo/y4dfnZ77PYR84UY4mJiWzdurVA4nnQnQcGpRDapCgKo50aSQ22hhkwsuTnj01a0IT2KIoC95LlPmqYoijor17IV0uoKHqle44q6hCEEBogNdjPqZx67MJqtbY0ZhXKfsWzY2aUGuziwMKxYt4biX83RcGscn0MeW8p/qUMioKdIjPSCyHE80ASbFFopLVF22QebO1T58GW30VNkzmUtU/uofYV9MwoBw4cYMKECY9c36RJE86cOfPI9UOGDGHo0KEFGpMQomBIgi2EEEIIIcQz5OXlhZeXV1GHIYQoBJJgi0Ih82Brn8yDrX0GjDL3bjGgKAoGuY+aJvNgCyHE80MSbKEKDg42mSs7P6z0dwtkP6LomMs82MWCjkyQ2k9NM1cUjDJFiuZZl7Ar6hCEEEI8A5JgP+d0Oh1BQUEkJiZSrly5At23PKnXNqnB1j6pwS4epH5X++Qeap/0yhNCPClJsJ9zhT2auBBCCCGEEEI8LyTBFoVCarC1T2qwtU9qsIsHRVHIkvuoaVKDLYQQzw9JsEWhsLC0KuoQRH6ZmUsNdjFg4VSlqEMQ+aUo2Kb/WdRRiHxQFAXqt/3/og0hhBDFmSTYotDIk3ptkxps7ZMa7OJB6ne1T+6h9kmvvGy//vorVatWLeowhPhXk+YpIYQQQgghNGbChAnUq1ePxo0b07hxY9zc3OjSpQsHDhxQtwkLC6N///4Fcrx58+axYsUK9efGjRtz+vTpAtl3jhEjRuDq6srFixcLdL8POnr0KF26dMHNzY0OHTrw5Zdfmqxfs2YNHh4euLm50b9/f65fv66u+/nnn/H19aVJkyY0a9aMsWPHkpycnOsYaWlpdOjQgbCwMHXZoEGD1HuV86pbty5TpkzJ9f5Zs2YxYcKEXMvT09Px8fEhOjraZHlcXBz+/v64u7vTrFkzxo8fz71790yO3aBBA5Njf/XVV09+0cRTkRZsAWSPJv7bb78V2P6kBlv7pAZb+6QGu3hQFAWj3EdNUxQFRe6hKARdunRh7ty5ABgMBnbt2sWoUaPYt29fgbc0/z2RPHv2bIHuPyEhga+++oru3bsTHh7OokWLCnT/ADExMQwfPpzFixfTunVrDh48yMiRIzl48CDly5dnx44dbN68mfDwcF544QVCQ0MZMWIEu3fvJjMzk8GDB9OnTx/WrVtHWloaI0aMYO7cucybN8/kONOnTycmJsZk2dq1a01+joqKYunSpQQEBKjLkpOTmT17Nrt37+att94y2f6XX35h/PjxXLhwAR8fH3W5Xq9nwIABvPbaaxw7doz09HT8/f1ZtGiRmrz/9NNPhIeH07Rp04K4jCIPkmALIHs08YIcSdzq/p0C25coGjIPdvFgq08p6hBEPimKgpXcR01TFAXFuVpRhyGKSFhYGFFRUaSnp1OlShX8/f1p27ZtgR/H3Nwcb29vQkJCuHjxYq4E22g0smbNGnbv3s3vv/+OmZkZHh4ezJ49G51Op7aY5iTsAHXr1mXTpk2cPn2a3bt3A3Dx4kV27dqlrmvWrBnXrl1j/vz5XL58maSkJCpXrszYsWNp06bNE8e/bds2mjdvzqBBg+jatStjxoyhYsWKD932o48+Yt26dfz1119UrFgRX19fevXqxc2bN2nbti2TJ09m5cqVZGRk4OnpydSpU7G3t2fHjh24u7vTrl07ADp27Eh0dDQRERGMGDGCyMhI+vbtS+3atQEYPXo0kZGRnDx5kubNm3Pw4EF0Oh3m5uakpKSQnp5OmTJlTGKLjo4mPj6el19++ZHnev36dWbOnEl4eLg6Te69e/d488036dSpE15eXibbHz9+nNGjR+Pn55frQceXX36JXq9n0qRJWFhYYGtry5IlS0hLSwMgNjaWlJQUXnrppSe+FyJ/JMEWhUae1Gub1GBrn9RgFw9Sv6t9cg+1T1GUPJPiQ4cO5Vp24sQJIiIiiI6OxtnZmYiICCZNmoSHhwdWVgU7IGxWVhZffPEFZmZmD22p3L9/P5s2bWLLli1Uq1aNa9eu0bdvX3bv3k2vXr0eu+9hw4YRGxsLmCbgOYYPH07btm1ZunQpRqORhQsXMm3atCdOsPV6PZGRkcybN48aNWrQrFkzNm3axPjx43NtGxsbS0hICJ9++ik1atTg2LFjDBs2jFatWqnbHDx4kN27d6MoCsOGDWP69OksWLCAq1evUqdOHZP91apVi0uXLgFw9epVBg8erK6zsrKiWrVqXLp0iebNm1OiRAkA3n77bc6ePUutWrUYOHCguv21a9cICwtj+/btjBkz5pHnO336dLy9vXF3d1eX2djYsHfvXsqWLZure7irqytffvklNjY2rF+/3mTduXPncHV15cMPP2TXrl0AeHl5qQ1n58+fx87OjqCgIM6fP0/ZsmV599136dmz5yPjE/kjzVNCCCGEEEIUAhsbG1JSUoiMjOTixYv06tWL48ePF1hyvWfPHtzd3XF3d6dRo0YEBgbSo0cPHB0dc23r4eFBVFQU1apVIykpieTkZBwcHEhISMh3HKtWrWL48OEYjUbi4uIoVarUU+13//79ODg40LJlSwDeeecdIiMjSU1NzbWthYUFRqOR7du3c+bMGVq0aMEPP/ygtgQDBAcHU6ZMGZydnRkxYgSfffYZer2ee/fuYWtra7I/nU6ntvbmtT7Hhg0bOHXqFHXq1OG9995DURQyMjIYOXIkkydPpnz58o8819OnT/Pjjz+adA0HsLS0pGzZsg99j6OjIzY2Ng9dl5KSwldffYWNjQ0HDhxg8+bNnDx5kvnz5wPZDy/c3NwICgri2LFjTJgwgdmzZ7N///5HxijyR1qwRaGQGmztkxps7ZMa7OJBarC1T+bBLh4e1kKdl8aNGxMWFsbmzZtZu3YtOp2O/v374+fnh7l5/tu5OnfurLYoG41Gzp49y6hRozAYDLlaf41GI6GhoXz55ZeUKVOGF198kczMTIzG/E8gd+nSJfz9/bl16xY1a9akTJkyT7XfLVu2EBsbS/PmzdVlqampREZGMmDAAJNtK1WqpF7PoUOHoigK3bt3Z+zYseo2D3aPr1ixInq9nr/++gtbW1syMjJM9peRkYGdnR1Anutz6HQ6dDodkydP5tVXX+Xy5ct89NFHNGvWLM+eDhEREXTo0AFnZ+cnuDJ5s7a2pmzZsgwbNgyAKlWqMGTIEGbMmMGUKVPw9vbG29tb3b5ly5Z4e3uzf/9+OnToUCAxCFOSYItCYaj4YlGHIPLJIDXYxYKlXemiDkHkk5miQLkayCNL7VIUBWtJrp9L8fHxODk5ER4ejl6v5/jx4wQEBFCvXj1at25doMcyMzPj5Zdf5s033+To0aO5EuyFCxcSHx/P4cOHsbe3B7IHScthbm7O/fv31Z+TkpKe6LgJCQkEBgaydOlSPD09AThw4AAHDx58ovefO3eOixcvsmPHDkqVKqUuj4yMZNOmTfj6+mJp+b+U5fbt2yiKwrJlyzAYDHz//feMGDGC6tWrq93EExISqFGjBgA3b97E1tYWR0dH6tSpw4ULF0yOf/XqVerXrw9A7dq1+eWXX9Su7ZmZmcTExFCnTh1u3ryJr68v27dvV1vL9Xo9AKVLl2bXrl1YWVmxc+dOIHsk8R9++EHtrg7Z3fgPHTrEsmXLnujaPImaNWvy2WefYTAY1Ic2BoNBfcARFRWFnZ2dSTKt1+sf2SIu8k8SbFFo5Em9tkkNtvZJDXbxIPW72if3UPv+aa+88+fPM2XKFDZu3IirqytOTk4AD+3CXRCuXbvGF198wauvvpprXWpqKjY2NlhYWHD//n22bt3KlStX1GSyZs2abNq0iYSEBEqXLs2yZcswM/vfdwBra2tu376da7/37t1DURS1a/XVq1fVBFKv12Ntbf3YmLds2UKrVq1y1Ub37duX1atXs3//fpMHAfHx8QwYMIBVq1bRokULtTv2g9d00aJFzJs3j3v37rFkyRK6deuGlZUVXbt2Zf369ezbt4/27dtz8OBBTp06xaRJkwDo0aMHYWFheHh4UL16dUJDQylbtizu7u5YWlri4OBASEgIs2bN4v79+0yfPh0PDw9cXFw4d+6cSfz9+/enadOmDB8+XF12+fJl7t+//9gB0J5Whw4dWLJkCXPmzGHcuHEkJiaycuVKunXrBmTf98WLF1O1alVcXV356quv2LNnD+Hh4QUWgzAlCbYQQgghhBCFwMvLi5iYGHX0ZycnJyZOnEijRo0KZP+7d+82mfe6ZMmSeHl5PXSArZEjRxIcHMyrr75KiRIlaNKkCd26dePKlSsA+Pj4cP78ebp27Yq1tTXvvPMOlSpVUt/fsWNHgoKCaN26NUeOHFGX16hRg3HjxjF27FjS09OpUKECvXv3ZsGCBVy5ckVtHX6YpKQk9u/fT2hoaK51ZcuWxdPTk/Xr15sk2A0aNGDKlClMmzaNxMRESpYsSd++fenQoQNxcXEAvPDCC3Tu3Jn09HS6dOmidh+vWbMmy5YtY+HChUyaNAkXFxfCwsKoXr06AD179uTu3bsMGzaMpKQkGjRowKpVq9Sa+eXLlzN79mw8PT2xtramXbt2jBo1Ks/7lCM2NpbSpUsXaOtxmTJl2LZtGyEhIXh4eADQtWtXRo8eDWTXs6elpREQEMDt27epUqUK8+bNMxlgTRQsM2NBFF4UY0FBQQ/9pc9rXX72+yz38aDg4GBCQkIKZF93UmRKGa1TFIXRTo2kBVvDDBgJ/e2wtJppnKIoGOyc5D5qmLRgFw+lSkvJzb9dzjRdhw4donLlykUdjnhOSQu2UBVUcg1gpWTkvZH4V5N5sIsHG3MjGLOKOgyRD2ZGBfLoYin+/ayUDFAyizoMkS+SYAsh8iYJtig08qRe26QGW/ukBrt4kNZP7ZN7qH0FPTPKgQMHcs11/KAmTZpw5syZR64fMmQIQ4cOLdCYCsO5c+d45513Hrm+UqVK7N279xlGJEThkwRbCCGEEEKIZ8jLywsvL6+iDqPQNWzYkLNnzz6z41WuXJnLly8/s+MJ8TCSYItCIfNga5/Mg619Mg928aAoCorcR02TucyFEOL5IQl2EdHpdAQFBeVrH4mJiQUUTcEzsy2V90biX81MarCLBauShTMVjHh2jIqClXIPmQhbu8wVBQtLK0DGlRVCiOJOEuwiUhADiuU3QS9s8qRe26QGW/ukBrt4kPpd7ZN7qH3SK08I8aSkeUoIIYQQQgghhCgA0oItCoXUYGuf1GBrn9RgFw+KoqBkGeQ+apiiKCgGo9xDIYR4DkiCLQqFVVZaUYcg8knmwS4eLEs5F3UIIp/MFAVLmctc04yKgqXhflGHIYQQ4hmQBFsUGnlSr21Sg619UoNdPEj9rvbJPdQ+6ZUnhHhS0jwlhBBCCCGEBn3yySe89dZbNG7cmCZNmtC3b1+OHDmirj958iR169alcePGuV47duzItb/o6Gg8PT3Vn2/fvo2/vz/u7u40a9aM2bNnk5X1vx41P/74I7169aJx48Z4enry8ccfPzTO9evX079//4I78b85evQoXbp0wc3NjQ4dOvDll1+arF+zZg0eHh64ubnRv39/rl+//tD9jB07Nlecq1evpl69eibXLjQ0VF0/aNAgGjRoYLL+q6++AsBgMNC4cWPc3NxM1qelZff0jI2NZfDgwTRt2pQWLVowbtw47ty5o+47Li7O5PqPHz+ee/fuPdGxRdGRFmxRKKQGW/ukBlv7pAa7eFAUBUOW3EctUxQFQ6bcQ1Gwdu/ezeLFi1m2bBkNGzYkKyuLffv2ERAQwPr163nllVfUbc+ePfuPjjFy5EjKly/PsWPH+PPPP/Hz82PDhg0MGjSIlJQU3n//fUaMGIGPjw/fffcdw4YNo27dujRs2BCAtLQ0lixZwvr162natGmBnPffxcTEMHz4cBYvXkzr1q05ePAgI0eO5ODBg5QvX54dO3awefNmwsPDeeGFFwgNDWXEiBHs3r0bM7P/fceJiopiz549uLu7m+z/p59+ws/Pj4CAgIce/6effiI8PPyh53f16lUyMzP5/vvvsba2zrV+1KhRuLu7s3z5cu7du0dAQABz585lzpw56PV6BgwYwGuvvcaxY8dIT0/H39+fRYsWMWXKlDyPLYqOJNiiUJiVcCjqEEQ+yTzYxcPD/qAL7bGwLlnUIYh8MCoKFiXkHj6vwsLCiIqKIj09nSpVquDv70/btm3zvd8zZ87g6uqKm5sbkP157+3tTVxcHCkpKfne/6+//sqpU6f46quvsLW1VWNfsGABgwYN4uDBgzg4ONCvXz8AWrRoQZcuXdi6dauaYHfr1o2GDRvSp08frl279tjjffTRR6xbt46//vqLihUr4uvrS69evbh58yZt27Zl8uTJrFy5koyMDDw9PZk6dSr29vbs2LEDd3d32rVrB0DHjh2Jjo4mIiKCESNGEBkZSd++falduzYAo0ePJjIykpMnT9K8eXMgOxFevnw5vXr14saNGyZxnT9/nu7duz805tjYWFJSUnjppZceuv78+fPUrVv3kX+Lr127RpMmTTAajRiNRszMzLC1tQXgyy+/RK/XM2nSJCwsLLC1tWXJkiUmrd+PO7YoOpJgi0IjT+q1TWqwtU9qsIsHqd/VPrmH2qcoSp5J8aFDh3ItO3HiBBEREURHR+Ps7ExERASTJk3Cw8MDKyurfMXk5eXFoEGDGDhwIG3atKFRo0a4uroybNiwfO03xy+//IKDgwPly5dXl9WsWZP4+Hju3LnDL7/8Qp06dUzeU6tWLaKiotSfN2/eTIUKFQgLC3tsgh0bG0tISAiffvopNWrU4NixYwwbNoxWrVqp2xw8eJDdu3ejKArDhg1j+vTpLFiwgKtXrz40jkuXLgHZyfPgwYPVdVZWVlSrVo1Lly7RvHlzMjIyCAoKYurUqZw7d84kwb59+zbx8fFERkYyefJkrK2tefPNNwkMDMTGxobz589jZ2dHUFAQ58+fp2zZsrz77rv07NkTyE6w79+/T48ePYiLi6NmzZqMHj2al19+GYDhw4ezaNEiNm3ahKIouLm5MWbMGADOnTuHq6srH374Ibt27QKy73lQUJC678cdWxQdaZ4SQgghhBCiENjY2JCSkkJkZCQXL16kV69eHD9+PN/JNWS3GH/yySe4uLiwceNGevbsSdOmTZk6dapJnS6Au7u7yWv8+PF57v/evXtqa2qOnJ/T0tIeul6n06ktrAAVKlR4onOxsLDAaDSyfft2zpw5Q4sWLfjhhx8oV66cuk1wcDBlypTB2dmZESNG8Nlnn6HX6/OMI6/1M2bM4LXXXjNJ5nPcunULd3d3unfvzuHDh1mzZg3Hjh1j7ty5AOj1etzc3AgKCuLYsWNMmDCB2bNns3//fvU4DRs2ZPny5Rw5cgRPT08GDhxIbGwsAGZmZvj5+XH69GkOHz4MoHb/TklJ4auvvsLGxoYDBw6wefNmTp48yfz585/o2KLoSAu2KBRSg619UoOtfVKDXTzkfJ7KfdQuuYfFw8NaqPPSuHFjwsLC2Lx5M2vXrkWn09G/f3/8/PwwN89/O5erqyszZswAICkpiW+//ZYFCxaQlpbGggUL1O1Onz791PsuUaIE6enpJstyfrazs8PW1pa7d++arM/IyMDOzu6pj1WpUiX1Gg0dOhRFUejevTtjx45Vt6latar674oVK6LX6/nrr7+wtbUlIyPjkXE8bv2uXbu4dOkS27dvf2hcrq6ubN26Vf25Zs2a+Pv7M23aNKZOnYq3tzfe3t7q+pYtW+Lt7c3+/fvp0KEDEyZMMNnfwIEDiY6O5ujRo7i5ufHhhx/y3XffYWlpSYkSJRg3bhz9+vVj6tSpWFtbU7ZsWbVHQpUqVRgyZAgzZsxgypQpeR5bFB1JsEWhkC8RxYPUYGuf1GAXD/KZqn1yD59P8fHxODk5ER4ejl6v5/jx4wQEBFCvXj1at26dr323bt2awYMHqzXQZcqUoXPnziQnJxMREfFE+9i5cyeJiYm8//77AGRlZaHT6QCoXbs2f/31F3/++Sdly5YFsmuGK1SoQMmSJalTpw7ffPONyf6uXr2q1jo/jdu3b6MoCsuWLcNgMPD9998zYsQIqlevrrYsJyQkUKNGDQBu3ryJra0tjo6O1KlThwsXLuSKo379+up5/PLLL7Rp0waAzMxMYmJiqFOnDmvXruXGjRu8+uqrANy/fx9FUXB3d2fXrl3cvHmTs2fPMmTIEHXfer1evUZRUVHY2dmZJLR6vR4bGxsAQkND8fLyMqmTzln/+++/Zw+AaDCo66ysrDAzM8PCwoKaNWvy2WefYTAY1IcxBoMBo9H4RMcWRUcSbFFo5MuEtkkNtvZJDXbxIPW72if3UPv+aa+88+fPM2XKFDZu3IirqytOTk4AODo65jumrl27smLFCipVqoS7uzu2trZcvXqVqKgo2rdv/0T7SEtLY8uWLXh7e1OiRAkOHDigJqbVqlWjSZMmzJkzhxkzZpCcnMzy5cvVGt833niDBQsWsGHDBvr168eZM2fYvXs3y5cvf+pziY+PZ8CAAaxatYoWLVqodd8PXqdFixYxb9487t27x5IlS+jWrRtWVlZ07dqV9evXs2/fPtq3b8/Bgwc5deoUkyZNAqBHjx6EhYXh4eFB9erVCQ0NpWzZsri7u9OiRQuTOMLCwjh16hSbN28GshP/sLAwKlWqRKdOnbh27RrLly/Hx8cHgNTUVBYvXkzVqlVxdXXlq6++Ys+ePYSHhwNw5coVTp8+zX//+19Kly7N6tWrSU1N5Y033sBgMGBra8ucOXMIDg4mNTWVRYsW8cYbb2Bra0uHDh1YsmQJc+bMYdy4cSQmJrJy5Uq6dev2RMcWRUcSbCGEEEIIIQqBl5cXMTEx+Pn5kZycjJOTExMnTqRRo0b53ndQUBDlypUjLCyMGzduYDQaqVy5Mj179uSdd955on306tWLn3/+ma5du3L//n2aNWtm0i17yZIlzJgxg7Zt22Jubo63tzf+/v5AdvK7bt06Zs+ezZIlSyhTpgyTJ09WR+Z+Gg0aNGDKlClMmzaNxMRESpYsSd++fenQoQNxcXEAvPDCC3Tu3Jn09HS6dOmixlmzZk2WLVvGwoULmTRpEi4uLoSFhVG9enUAevbsyd27dxk2bBhJSUk0aNCAVatWPVEdfIMGDdSp0KZMmULJkiXp3bs3Q4cOBeCdd94hLS2NgIAAbt++TZUqVZg3b5461VdISAjz5s2jW7dupKen06BBA9avX4+DgwMA4eHhLFy4kNdffx0bGxs8PT3V8ypTpgzbtm0jJCQEDw8PIPuhyujRo5/o2KLomBlz+hmIhwoKCjKZTP5J1z0LRX38x7lTANNDiKKlKAqjnRpJC7aGGTCy6PaP0mqmcdL6qX1yD4uHUqVLF3UIz6WcaboOHTpE5cqVizocIfIkLdiiUMiXiOLhvderFXUIIh8Uo5HzXboWdRginxSjkeZ7okHJLOpQxD9kriiMKtci7w3Fv9pq469FHYIQQgMkwRaFRpJsbVNbXMykBVurlP/voCT3UNvU+yifqZolY1poX86YFgXlwIEDuUaYflCTJk04c+bMI9cPGTJE7aYshPh3kQT7OREcHJxrioKH+bd2ORdCCCGEKC68vLzw8vIq6jA0oXLlyly+fLmowxDiiUmC/ZzIyMiQ5FkIIYQQQgghCpEk2KJQKIryj6e0EP8OiqKgNxike7GGKUYjWQaj3EONU4xG9Hq9dBHXMEVRyMIgXcSFEOI5IAm2KBS6m2eLOgSRT4qiEPHNzaIOQ+SDASPD365f1GGIfFIMRizt8z9nrig6ZorC4Pa1ijoMIYQQz4Ak2MXI4+qsExMTn3E0MiCP1smgPNqXMyiPhbncQy1TDDLImdbJoJHap8istkKIJyQJdjHyuDrroKAgIO/BzqROWwghhBBCCCH+GUmwnzPParAzqcHWPqkZ1D4DRvRZBmnB1jjFIDXYWidjWgghxPNDEuznhE6nIygo6Jl1FTfUaPZMjiMKj0FRsMS8qMMQ+VS2RvmiDkHkk2IwYLF/aVGHIfLDYEBnKQ9IhBDieSAJ9nMiJCQE+F9X8WdBWlu0TWqwte9/NdjyoETLFIMBkPuoZeo9lBZszfo31mBPmDCBgwcPsmPHDqpWrWqyrm7dumzatIlmzbIbPD755BO2bNlCTEwM5ubm1K1bl/fff5/WrVs/dN/9+/enadOmDB8+/KHrDQYDy5cv5+OPP+bOnTvUqlWLiRMn0rhxY5PtkpKS8PHxYdasWWosBSktLY2ZM2dy+PBhsrKyaNu2LVOnTsXOzg6AGzduMG3aNM6dO4ednR3/+c9/GDp0qHoOy5YtIyoqijt37lC5cmX8/Pzo2LFjruN8/PHHTJ482WQ+7p9//pmQkBAuXLiApaUlHh4eTJw4EUfH7EEp9+/fz/Lly7l58yalS5eme/fuBAQEYP7/n+UbN25k48aN/PXXX7i4uBAQEPDQudEfduwff/wRHx8fbG1t1WUvvfQSW7duLYCrKvJLEuznTE5L9qNIDbYQQgghhDbcu3ePwMBAIiMjsba2fug2u3fvZvHixSxbtoyGDRuSlZXFvn37CAgIYP369bzyyitPfdzly5ezZ88eNmzYwAsvvEB4eDhDhw7l2LFjahxnzpxhwoQJ/Pbbb/k6x8eZOXMmv//+OwcOHEBRFEaOHMnChQuZOnUqmZmZDB06lDfeeIM1a9Zw9epVhgwZQtWqVenQoQNbt25l586dbN68mRdeeIEvv/wSf39/6tevzwsvvKAe45dffmHOnDkmx9Xr9QwePJg+ffqwbt060tLSGDFiBHPnzmXevHlcunSJsWPHsnLlSlq2bElMTAz/+c9/cHFxoUePHhw9epRVq1axZcsWatSowYEDBxg5ciSff/45lStXfuyxAc6fP88rr7zC5s2bC+3ain9OEuznTE5LdmGTGmztkxps7cuuwc6Slk+NUwwGuY8apxgMUoP9HAsLCyMqKor09HSqVKmCv78/bdu2LZB9e3p6cvnyZebMmcO0adMeus2ZM2dwdXXFzc0NAGtra7y9vYmLiyMlJeWpj6koChs3buS///0v1atXB2DgwIG0aNFC3WbHjh0sWbKEsWPH5tl7MiEhgUmTJnHu3Dl0Oh0NGzZkypQplCtXjgkTJmBubs7Nmzc5d+4cFStWZPTo0bRr14709HR2797Npk2bcHBwAGDMmDH4+voybtw4zp49S2JiIiNGjMDa2pqXXnqJ/v37s3XrVjp06EC/fv3o0aMHJUqUQK/Xk5SUhK2tLTqdTo0tPT2dUaNG4evry8qVK9Xl1tbWHDx4EJ1Oh7m5OSkpKaSnp1OmTBkAXF1dOXHiBPb29hgMBpKTk8nMzFRbt69fv47RaFRfFhYWWFlZYWlpmeexITvBrl9fpuH8t5IEWxQK6R5ePHQsV7KoQxD5oBiNLFr8dVGHIfLJgJEVl/yLOgyRD4qiQPiXyGPn58+JEyeIiIggOjoaZ2dnIiIimDRpEh4eHlhZWeV7/6VLl2bx4sX85z//oVmzZnTo0CHXNl5eXgwaNIiBAwfSpk0bGjVqhKurK8OGDftHx4yJieHOnTvcuXOH7t27ExcXx0svvURwcLDaet2yZUu6dOmCpaVlngn24sWLqVChAitWrOD+/fuMGDGC1atXM3nyZCA7WV+0aBHr1q1jz549jBw5kk8//ZTMzEwyMzOpU6eOuq+aNWuSkZFBTEwMv/zyC9WrVzdp2a9VqxarV68GwNzcnBIlSvD1118zePBgjEYjwcHBlCtXTt1+xowZtG7dmldffTVXkluiRAkA3n77bc6ePUutWrUYOHCgut7e3p6MjAzc3d3JzMykQ4cOeHh4ANCpUyeio6Pp2LEjFhYWmJmZsWDBAipUqPBExz5//jxly5alffv2pKam0rRpUyZMmGDyflF0JMEWhUaSbG2TeVu1L6dmUHohaJtaSy+fqZoln6fapxiNebY6Hzp0KNcyGxsbUlJSiIyMpE2bNvTq1QsfHx/MCvD/gpubG0FBQUyePJl69eqZdG8GaNGiBZ988gkfffQRGzdu5LfffqNEiRJ07dqVcePGqfXKT+qvv/4CYPPmzYSFheHk5MTSpUsZOHAg+/bto2TJkjg7Oz/x/mxsbPjuu+/Yu3cvLVq0YO3atWqdMkDr1q3Vumhvb2+2b9/Ovn371BbznEQXUGuS7927x71790xqlHPWp6WlmSxr2rQp58+f57vvvsPf3x9nZ2c6duzIp59+yrVr15g5cyZnzpx5ZPwbNmzg/v37TJs2jffee4+dO3eqn9fW1tZ8//33xMXFMXz4cGbOnMn06dPJzMzE1dWV2bNn4+rqyu7du5k0aRI1a9akbt26jz22oiiUK1eOV199lT59+pCZmcnMmTN5//332bFjh/yt+BeQ/mYCyJ4f+1kOgCaEEEIIUdw1btyYsLAwzp49S79+/XjttddYvnw5hv8f+K6gDBgwgFdeeYWRI0ei1+tzrXd1dWXGjBl8/vnnHD9+nJkzZ3LkyJFHdit/UKdOnWjcuDGNGzemU6dOaotwQEAALi4u6HQ6Ro0aRWpqKt9///1Txz558mQ6duxIeHg4rVq1onv37pw+fVpdX61aNZPtK1asyK1bt9TEOj09XV2X8297e3tKlChhsi5n/d8fKFhbW2NpaUmLFi3o1q0bu3fv5vr16yxatIhFixaZdNt+GJ1OR+nSpZk8eTJXrlwxGYzM3Nwca2trqlevjr+/P3v27AGya8dr165Nw4YNsba2pkePHri5ubFjx448j21hYcGGDRt4//33KVmyJGXKlOGDDz7g8uXLXLt27bGximdDWrAFUPDzY0sNtvYpikKmwYAiLS6aZTAapY6+GDAg82BrncyDXTw8rIU6L/Hx8Tg5OREeHo5er+f48eMEBARQr169R47g/U+YmZkREhLCW2+9xdy5c03WtW7dmsGDB9OvXz8AypQpQ+fOnUlOTiYiIgLIbmjp06cPDRs2BCAzM1OtRd67d6/J/lJTU7G0tDRJ5B+sJ35aFy9exMfHh+HDh5OUlMSyZcsICAjgxIkTQHaN9oNu3ryJp6cn1atXx8rKiqtXr9KoUSMArl27hpWVFdWqVeP27dvExMSQlZWlJqpXr16ldu3aAOp1mjBhgrpvvV6Pg4MDBw4c4M6dO7z11lvA/3qhuLu7M3XqVBo3boyvry/bt29Xu5TnXI/SpUuzf/9+Nm3axLZt20z2Xbp0aSD7/8Xfa6gtLS2xsrLK89ju7u5s2LCBESNGqA8Lco79YP24KDqSYItCIV8Ei4fKLz55Fy/x76MYjVh+nZ73huJfL+ObA0UdgsgHxWCgWosaRR2GKALnz59nypQpbNy4EVdXV5ycnADUwa4KkqOjI4sWLcLX19dkedeuXVmxYgWVKlXC3d0dW1tbrl69SlRUFO3btwdQf37ppZf4+eefuXz5MoGBgQ89jr29PZ07dyYkJIRatWpRrlw5QkNDKVWqFM2bN3/quFeuXImVlRUhISGUKlUKW1tbk+vz+eef8+2339K0aVN27tzJlStXWLx4Mba2tnTo0IGFCxfy4YcfArBw4UI6d+6MTqejWbNm6jUZOXIkN27cYPPmzWqPTXd3d8aMGUPbtm1p0qQJR44cYd++faxbt46XX34ZPz8/NYaTJ0/i6+urtqwbjUYcHBwICQlh1qxZ3L9/n+nTp+Ph4YGLiwvm5uZMnjyZ9evX4+vry/Xr11m2bBl9+vQBsgen27JlC23atOHFF1/k4MGDnDx5klGjRvHiiy8+9tgZGRns3bsXRVEYO3Ys9+7dY/r06bRo0SJXeYAoGpJgF3PBwcFkZGTkuV1iYmKBH1uSbG2TmkHtkxrs4kHmM9c+mctc+5R/2KXby8uLmJgY/Pz8SE5OxsnJiYkTJ6otrgWtSZMmBAYGsmjRInVZUFAQ5cqVIywsjBs3bmA0GqlcuTI9e/bknXfeAbK7LE+bNo1XXnkFOzs73n//fZNRwf9u5syZhIWF4evrS3JyMvXr1yc8PPwftaDOmDGD6dOn07ZtW/R6PfXr11cTZshOhNesWUNAQADVqlVj9erVVKlSBYCpU6cyb948unTpQmZmJm3btuWDDz4AsluE161bx4wZM3jttdcoUaIE/fv3p3v37gC0a9eOyZMnM3nyZP7880+qVatGWFgYL7/8cp4xm5mZsXz5cmbPno2npyfW1ta0a9eOUaNGAdnd2NesWcP8+fNZunQpZcuWpV+/furDj4CAACwsLBg+fDgpKSlUrVqVZcuW8eKLL+Z5bJ1Ox9q1a5k3bx4tW7YEsnspPKuZgkTezIz/pC/HcyQoKOiRXacft+5Z+HvynJiYmGuC+SeNsaDP5V5qqiTYGqfX6/mxS2dJsDVMbzDw0dexkmBrXBYG5q3oK8mZhumzsrh743e5hxqmGAzUXCBzDj9rOd23/97tXYh/M2nB1rC/P6n6Nw1SJjXY2ic1g9qnSA12sSDzmWufzGUuhBDPD0mwRaGQ1uviwZCip2DHORXPkmI0YimTRRQL9s5lizoEkQ+KwcCNnafz3lD8q9XJe5MnduDAAZPBtf6uSZMmj50aasiQIQwdOrQAIxJCFBRJsAWQXc9R0N3EJcnWNqnB1j6pwS4epAZb+9QabPk81SylgCsqvby88PLyKtB9FkfSNVxokSTYAsjd3VwIIYQQQgghxNORBFsUCqnB1j6pwdY+qcEuHqQGW/sUg0E+T4UQ4jkhCbYoFNI9vHio1qxyUYcg8kExGLG8+GdRhyEKQAkXmUNZyxTFgEuDSkUdhhBCiGdAEmxRaCTJ1ja1BttcWly0SjFIDXZxoNZgW0gLtlYpisyDrXX/dB5sIcTzRz7phRBCCCGEEEKIAiAt2KJQSA229imKgj7LIC3YGqYYpAa7ODBgRK/PkhZsDVMUA/osBQtzaQUVQojiThJsUSike3jxsGLzuaIOQeSDASOhmwYWdRginxSDAV0Zp6IOQ+SDuaJQ+/3BRR2GEJqUmJiIvb09JUqUKOpQxN/ExMRQrVq1og4jl6KOSxJsUWgkyda2nB4I0vqpXTJ/cvGgzqEsn6mapY5pIfdQs/6NvfImTJjA7t27sba2BsBoNFKlShUCAgLUObZXrlzJ6dOnWbt2LQDz5s1j+/btWFtbM2nSJFatWsXevXsfuX94srmo+/fvT9OmTRk+fHhBnJrqzz//xMvLi927d/+jBDs+Pp5OnTqxd+9eKlV6PgYaPHnyJL6+vly+fLlQj7N161Y+++wzNm/eXKjHgaf7v/gs43oUSbAFAMHBwWRkZBAaGlrUoQghhBBCiCfQpUsXNekwGAzs2rWLUaNGsW/fPqpWrcrQoUNNtt+0aROhoaG0b98egK5duz7zmJ9GRkYGaWlp//j9lSpV4uzZswUYkciRlJRU1CE81L8hLkmwixGdTkdQUJDJssTExCd6b0En11KDrX2Kokj9rsbJ/MnFg2IwoNfrpfVTwxRFwSD38LkVFhZGVFQU6enpVKlSBX9/f9q2bVvgxzE3N8fb25uQkBAuXrxI1apVCQsL49SpUyxZsgRPT0+ysrIYM2YMHTt2pGnTpixdupTDhw8DcOjQIRYvXkxcXBzNmjUDwNHRUd3/xx9/zIYNG/j9999xcXFh8ODBJgn6b7/9Rv/+/bl06RI1a9Zk4sSJNGzYEIDvv/+e//73v1y/fp2UlBRq167NlClTcHNzA+Cbb74hNDSUa9eu4ejoyIABA+jTpw+dO3cGoHPnzsyZM4eOHTuyd+9eVq5cSXx8PFWrVmXUqFG0bNkSyG5Jd3Fx4eTJkxiNRlatWkXXrl05dOgQlStXpm7dumzatEk9v+joaPUanDx5kuDgYPr27cv69evJyMigX79+NGrUiPnz55OYmEjLli1ZtGiR2mvgQZ6ennTv3p3du3eTmJjISy+9xPTp06lVqxZZWVnMmjWLzz//nKysLGrWrMno0aNp0qQJAN9++y2LFy8mJiaG8uXLM2TIEPXaPqz19sHzSExMZMqUKZw6dQpHR0c6depkEtfly5dZuHAhP/74IzqdDk9PT0aPHk3JkiUB2L17N6tWrSIuLo4KFSowfPhwOnbsiF6vJzQ0lCNHjvDHH3+g0+no2LEjkydPZufOnaxatQpFUXB3d+f06dOkpqayePFiDh06hF6vp3nz5kyaNImyZcty8+ZN2rZty6xZs1ixYgUpKSk0bNiQkJAQKlSoYHIfcjyqV8TTxuXp6UlAQADdu3cHTFv4c+KaN28eH374IcnJyXTo0IEePXowY8YMYmNjadiwIaGhoZQpU+Zxv34mJMEuRkJCQnIt+3vC/azIl4jiwVImGtC8Oxd/LeoQRD4pBgOVX6hb1GGI/FAMWL3UrKijEEXgxIkTREREEB0djbOzMxEREUyaNAkPDw+srKwK9FhZWVl88cUXmJmZ0bRpU5N1jo6OnD17lrp167JmzRqaNWtGdHS0uv769esEBgaqSeyRI0cYMWKEmuRFR0czd+5cli5dStOmTTl16hQBAQHY2tryxhtvANkJ+qpVq3Bzc2Pt2rUMHjyYzz//HGtra/z8/BgxYgR9+vQhIyODiRMnMn/+fD766CNu3LjB0KFDmTp1Kt7e3ly6dAlfX1+qVq3Knj17aNu2LXv27KFy5cocPXqUqVOnsmLFCl5++WW++uorhg8fTmRkJLVr1wayk9WPP/4YW1tb7ty581TXMC4ujlu3bnHkyBG+/fZb3n//fV577TUiIyO5c+cOPXr0YN++fXh7ez/0/REREaxevZrq1aszZ84chg4dyv79+9m1axdnz55l//792NnZsWTJEqZPn86uXbu4dOkSfn5+LFiwgLZt2/Ljjz/i7++Po6Mjr7/+ep4xBwUF4ejoyFdffcXdu3fx8/NT1yUnJ+Pr60v37t0JCwvj7t27jBkzhnHjxrFixQpOnjzJxIkTWbp0Ka+//jpff/01/v7+1KlThy+//JJjx46xceNGypUrx9mzZ/nPf/5Du3bteOutt7h58yanTp1Su2JPnDiRe/fuER0djU6nY+7cuQQEBLBt2zY1niNHjrBz5070ej3vvfcey5cvZ8aMGU91jzZu3PhUcT2Jo0ePsm/fPmJjY/H29ubixYusWbMGKysr3n77bT766CMCAgKeeH+SYD+ncrqE53jSlu6nIUm2tkkNtvZJDXbx8L8abLmPWqXOgy1/FzVLUZQ8W50PHTqUa5mNjQ0pKSlERkbSpk0bevXqhY+PD2ZmBfO3dc+ePXzxxRcApKenk5WVxaBBg0xanp/Evn37qF+/vppQt2vXjjZt2qjrP/nkE3x8fGjRogUALVq0wMfHh+3bt6sJds+ePXnllVcAGDp0KNu2bePo0aN07NiRiIgIqlatyv3794mLi8PBwYHz588DsHfvXurVq0fPnj0BqF+/Ph999BHlypXL1T18y5Yt9OnTRz1OmzZt8PT0ZPv27XzwwQcAeHh4UL58eYCnTrABhgwZgpWVldoq3qdPH0qXLk3p0qWpXbs2N2/efOR7Bw4cyIsvvghkf9d2d3fn+++/R6fTcfPmTaKiovDw8CAwMFBtBNu+fTtt27ZVu+2//PLL9O7dm61bt+aZYMfFxXH69GkOHDiAvb099vb2BAQEMGzYMCD7/6SVlRVjxozBwsICnU7HBx98QKdOnbh16xY7d+6kffv2tGrVSr12H330EeXLl6d379689dZbODk5kZiYSEZGBnZ2diQkJOSK4/bt2xw4cID9+/fj5JQ9KOfEiRNxd3fnwoULODg4ADB48GBKlSoFZLf4/5Pu+08T15MaMGAAtra21KlTB2dnZ9566y31/5CbmxtxcXFPtT9JsJ9Tf+8SHhQURHBw8ENbwYUQQgghxNNr3LgxYWFhbN68mbVr16LT6ejfvz9+fn6YF8DDz86dO6tdh41GI2fPnmXUqFEYDAbGjx//xPtJSEjINQjYCy+8QHJyMpA92FiVKlVM1leuXNmkS2/lypXVf5uZmVGhQgUSEhKwsLDg5MmTDB48mLS0NGrVqoWlpSVGY/ZD4MTExFzHdnV1BciVYMfFxXHq1CmTVlFFUWjevLn6c7ly5Z74vB8m5+FEzgOxnIQQsrvh58T9MFWrVlX/bWtri4ODA7du3aJz585kZmby8ccfs3jxYpycnBg6dCh9+vQhLi6OEydO4O7ubnJOL7zwQp6x5iSVD16/B993+/ZtKlWqZPJwL+c+xcXFqV3ZH5TTrf+PP/5gxowZfPfdd1SoUIGXXnoJo9GIwZB7usGcBLR3794myy0sLLh586aaYJctW1Zd9+D/gaeRnp7+xHE9qZz4cmJ+mnv+MJJgC9WDLdr5JTXY2ic12NonNdjFQ3YNtsyDrWWKInX0xcHDWqjzEh8fj5OTE+Hh4ej1eo4fP05AQAD16tWjdevWBRqfmZkZL7/8Mm+++SZHjx59qgS7QoUKHDlyxGTZH3/8gY2NDZCdlP32228m62NjY3F2dlZ/frA3pMFgID4+HhcXF3788UdmzpzJ9u3bqV+/PgDr1q3jxo0bAFSsWJGjR4+a7PuTTz7BycmJWrVq5YrT29ub999/X10WHx+PTqczuQ6PYm5uTmZmpvpzzgOEB+Wnd8GDraj37t0jOTmZihUrcuPGDerVq4e3tzcZGRl89tlnjB8/Hnd3dypUqMBbb71l0lU6MTFRTerMzc25f/++uu7BQbwqVKgAZN+LmjVrAtn3LYeLiwvx8fEoiqJ+/uTcR2dnZypWrEh8fLzJOaxbtw43NzeWL19O6dKl+frrr7GxscFgMKg9B/4up7V3//79Jv8nrl69SpUqVbh169Zjr5u5uTl6vd5k2cPuDcDkyZOfOK6cfRfmPX8YSbAFkD1A2t8/OPNDvkQUD1KDrX1/nnl0VzahDYrRSJmqMie9likGA2VKl8p7Q/HvVrXeU7/l/PnzTJkyhY0bN+Lq6qp2n33aLtxP6tq1a3zxxRe8+uqrT/W+rl27snr1aiIjI+nevTsnTpzg888/VwcZ69mzp1o73rRpU7777jsiIiKYMmWKuo+oqCjeeOMNXnzxRVasWIGlpSWtWrXi+++/x9zcXE2Cf/jhBzZt2kRWVhYAnTp1YsWKFezcuZMuXbrw888/M3fuXEJDQ9UEPzU1FchuIZ01axbNmzenYcOGnD9/nsGDB+Pv74+vr2+e51mzZk0OHDhA8+bNiY+PJyoq6qmuU17Wr19PixYtKFeuHCEhIdSoUYPGjRuzYcMGIiIiCA8Pp3Llyjg4OGBpaUnJkiXp2bMn7733Hu3bt+fVV1/lt99+4/3336dNmzYEBwdTs2ZNNm3aREJCAqVLl2bZsmVqQlipUiVatmxJSEgIixYtQq/Xs3TpUjWeVq1aMXfuXBYuXEhgYCB3795l9uzZNG/eHBcXF9566y3ee+89vv76a1599VW++eYbwsLCiIyMJDU1lXLlymFubk5qaipLly4lNTVVTVZtbGxITU3FaDRSvnx5WrduzezZs5k6dSr29vasXbuWVatW8fnnnz/Rffnzzz85ceIEzZo1Y9euXVy7du2h2z5NXGZmZtSsWZNDhw7RrVs37t69y6ZNm/J7m/MkCbYAsgdIK+gB0STJ1japwdY+tQa7gJ/MimdLMUotvdbJXOba90975Xl5eRETE4Ofnx/Jyck4OTkxceJEGjVqVCBx7d69mwMHDqg/lyxZEi8vL8aMGfNU+6lSpQorV65k7ty5zJ49m3r16qm11QAdOnQgNTWVWbNmER8fT/ny5Rk3bpzJYF/t27dn6tSp/Pbbb9SvX5/w8HBKlCjBa6+9Rt++fenXrx8Gg4HKlSvTv39/Fi1axJ9//skLL7zA6tWrWbRoETNnzsTJyYkJEybQsmVLjEYjb7zxBj4+PkyYMIE+ffqQlpbGxIkTiY+Px8HBgXfffZf+/fs/0XlOnTqVkJAQmjZtSrVq1ejZsydbt259qmv1OE2aNGHYsGHEx8fzyiuvsHr1aszNzfH19SUhIYG3336b1NRUXFxcCA0NpUKFClSoUIHFixezePFiAgMDsbW1pXPnzowaNQoAHx8fzp8/T9euXbG2tuadd94x6RK+aNEipk+fTps2bbC3t6d79+78+OOPQPb/h/Xr1zN37ly1zrpt27aMGzdOjXfevHnMmzePuLg4XFxcWLx4MbVr12by5MlMmTKFpk2bYmdnR+vWrXn99de5cuUKkF3/vm3bNpo0acKRI0eYP38+ixYtwtvbm9TUVGrXrs3atWtxdnZ+bN06QIMGDfDz82PChAncu3ePdu3aqXO5/93TxjVmzBimTZvGa6+9Rrly5XjnnXc4c+ZMPu5y3syM/6Tz+3MkKCjokdNXPW7dv8WjYnzY8oKswb6XmipfJDROr9czxqGhJNgaloWBd16vKgm2xukNBl7s8Yok2Bqmz8qiTHMP+buoYYqioHu1R1GHIf7F/j4dlHh+SQu2UBXkAGdSg619UoOtfQaM6A0GSbA1TjFKLb3WZdfRZ2JhIX8XhRCiuJMEWxQKeUpfPPSu65z3RuJfSzEaifhGarC1zoCRsE8+KuowRD4oioJFAc95LLTtwIEDTJgw4ZHrmzRp8thurEOGDGHo0KGFEZoQIp8kwRaFRpJsbcvpgSCtn9qVU7srvRC0Ta2ll89UzVI/T+UealZB98rz8vJ6ZI2p0KYHpywTzzfpbyZUwcHBRR2CEEIIIYQQQmiWtGALlcyDLR6kKIrU72qcYjRKHX0xYMAocyhrnKIoKEaj3EMhhHgOSIItCA4OJiMjg8TExALbp1VWWoHtSxQNc0Xh5K93ijoMkQ8Go1HmMi8mLB0rFnUIIh/MFAXb+B+LOgyRXxWqFXUEQggNkARbkJGRQWhoqMyDLUyo82BLC7ZmGaQGu1iQGmztkxps7ZNeeUKIJyUJdjGn0+kemjg/rLVap9M9i5CEEEIIIYQQoliSBLuYe9Tc1g9LumUebPEgRVHIMhikBVvDDFKDXSxIDbb2KYoi97AYkInWhBBPQhLsPDyqBRge3gosspmVcCjqEEQ+mSkKyVlG+P/uqUJ7DBhp4VCiqMMQ+WQwGrHVpxR1GCIfFEXh/imZwkfrdPXbFHUIQggNkAQ7D49r1S3omuVnrTAGN3uQPKnXNrUGW1o/NSundld6IWhbTi29fKZql1qDbS6DDmqVYjAUdQi5hIWFsXz5cpMSPzMzM9zc3Jg2bRovvPAC0dHRLF269F83R/PKlSs5ffo0a9euzdd++vfvT9OmTRk+fHgBRfZkjh49ysKFC4mNjaVixYqMGzeONm3+9wBmzZo1bN68mTt37tCgQQOmT59OjRo1ALh58yZz587l9OnTGI1GmjRpQnBwMFWqVDE5RlpaGj169KBjx44m5xcdHc3q1atJSEigTp06jBkzhldeeQWAlJQUZs6cybFjx8jMzKRBgwZMmDCBF1980WTf6enpvPvuu/j4+NC9e3d1eVxcHLNnz+bUqVNYWFjQunVrpkyZgp2dHQCDBg3i5MmTWFr+L4X88MMP8fDwKKArWzzIJ/1zLGdws9u3bxMUFKT5BwZCCCGEEM8Td3d3zp49q76++uor7O3tGTBgwL+6VG/o0KH5Tq6LSkxMDMOHDycwMJDTp08zfPhwRo4cSUJCAgA7duxg8+bNhIeHc/LkSerVq8eIESMw/v/D0mHDhlG6dGkOHz7M4cOHcXBwwN/fP9dxpk+fTkxMjMmyQ4cOMXXqVMaPH8/p06cZOHAggwcP5vr16wBMnjyZ1NRUPv/8c06ePEnDhg1z7fuXX36hX79+/PDDDybL9Xo9AwYMoEKFChw7doz9+/fz66+/smjRInWbn376ifDwcJP/c5Jc5yYt2AKDwUBoaGiB7lNqsLVPURSp39U4A0apoy8GDEapwdY6RVHQZ2VJC/ZzKiwsjKioKNLT06lSpQr+/v60bdu2UI5lb2/PW2+9xYEDB7hzJ3uqzaysLBYuXMiePXu4c+cOHTt2ZNq0aVhaWmIwGFi7di2RkZEkJydTvXp1AgMDef311wFISkpizpw5HD16FHNzc1599VWmTZtG6dKl+f777/nvf//L9evXSUlJoXbt2kyZMgU3NzcALly4wNy5c7l06RKOjo707duXd955BzMzM8LCwjh16hSbN28GYPfu3axatYq4uDgqVKjA8OHD6dixIwAff/wxGzZs4Pfff8fFxYXBgwfTtWvXXOeemprK3LlzOXXqFImJiZQsWZJ+/foxdOjQh16rjz76iHXr1vHXX39RsWJFfH196dWrFzdv3qRt27ZMnjyZlStXkpGRgaenJ1OnTsXe3p4dO3bg7u5Ou3btAOjYsSPR0dFEREQwYsQIIiMj6du3L7Vr1wZg9OjRREZGcvLkSV588UXKli1LYGAgJUpkl3D5+vrSrVs3UlJSKF26NJDdSh0fH8/LL79sEvOePXvo3Lmz2lrevn17IiMj+eSTTxg7diyLFy/GYDBgY2NDSkoKd+7cwdHRUX3/8ePHGT16NH5+fiQnJ5vs+8svv0Sv1zNp0iQsLCywtbVlyZIlpKVlT70bGxtLSkoKL730Up7/D593kmCLQiFfBIsHmUNZ+0pYyu+i1hmMRnQpN4s6DJEP5oqCU+vORR2GKAInTpwgIiKC6OhonJ2diYiIYNKkSXh4eGBlVbDDphmNRn7//Xe2bdtGvXr11MQqISGBUqVK8cUXXxATE0PPnj1p3rw5nTt3ZtmyZURFRbF8+XLq1q3LwYMH8ff3Z+vWrTRs2JDAwEDs7Ow4ePAgVlZWBAYGMn36dObMmYOfnx8jRoygT58+ZGRkMHHiRObPn89HH31EQkIC77zzDkFBQaxbt45ff/0Vf39/dDodb7/9tkncJ0+eZOLEiSxdupTXX3+dr7/+Gn9/f+rUqcO5c+eYO3cuS5cupWnTppw6dYqAgABsbW154403TPazcOFCbt68SVRUFCVLluTgwYOMGDGCDh06ULVqVZNtY2NjCQkJ4dNPP6VGjRocO3aMYcOG0apVK3WbgwcPsnv3bhRFYdiwYUyfPp0FCxZw9epV6tSpY7K/WrVqcenSJQCuXr3K4MGD1XVWVlZUq1aNS5cu0bx5c8LDw03ee+DAAVxcXNTk+tq1a4SFhbF9+3bGjBljsq2iKGpinsPc3Fxtwc75PxUaGsqqVauws7Nj1apV6raurq58+eWX2NjYsH79epP9nDt3DldXVz788EN27doFgJeXl9rD9fz589jZ2REUFMT58+cpW7Ys7777Lj179kSYkgRb4OzsXCj7lSRb26QGW/ukBrt4kBps7ZN5sLVPUZQ8W50PHTqUa1lOS2JkZCRt2rShV69e+Pj4YFZAn8tnzpzB3d0dyE6w7e3tefnll5k2bZq6jb29PYMHD8bMzIxatWrh6urKb7/9BsAnn3zC+++/T7169YDs1tgDBw4QFRWFk5MTp06d4rPPPlOT9blz5/LXX39hZWVFREQEVatW5f79+8TFxeHg4MD58+cB2LVrFzVr1qRfv35AdgI6cOBAtmzZkivB3rlzJ+3bt1eTWw8PDz766CPKly/PJ598go+PDy1atACgRYsW+Pj4sH379lwJ9vDhw7GwsMDe3p4//vgDGxsbIHtQ4r8n2BYWFhiNRrZv346XlxctWrTghx9+wNzcnJs3sx9oBgcHU6ZMGQBGjBiBn58fs2fP5t69e9ja2prsT6fTqS29ea1/0LZt21i3bh0rVqwAsss3R44cyeTJkylfvnyu7b28vJgyZQpeXl68/PLLHDlyhOPHj6s12Dn8/PwYNmwYW7duZfDgwezatYsqVaqYtGb/XUpKCl999RX169fnwIEDJCYmMnz4cObPn8+UKVPQ6/W4ubkRFBRE7dq1OXnyJMOHD8fOzo4OHTo8cr/PI0mwBeXKlQOyP0gKcqouIYQQQojnWePGjQkLC2Pz5s2sXbsWnU5H//798fPzw7wASgaaNGmidrN+lNKlS5sk9FZWVupDnz///DPX4FqVK1fm0qVL3Lp1CwAXFxd1nbOzs9owc/LkSQYPHkxaWhq1atXC0tJSrTOOi4vjwoULavIP2SWJD3vIlJiYmKvbccOGDR8b38MGbbt9+zazZ8/m4sWLVK5cmfr166vH/btKlSqp92To0KEoikL37t0ZO3asus2DSXnFihXR6/X89ddf2NrakpGRYbK/jIwMdSCwvNZDdr1zSEgI+/btY9WqVTRv3hyAWbNm0axZs0c+zOnUqRNJSUl88MEHpKSk0KpVKzp37kx6errJdjkD37333nt8/PHHHDp0iHffffeh+8xhbW1N2bJlGTZsGABVqlRhyJAhzJgxgylTpuDt7Y23t7e6fcuWLfH29mb//v2SYP+NJNhC9fcPg/yQGmztkxps7ZMa7OJBarC1T1EUDHIPNe9hLdR5iY+Px8nJifDwcPR6PcePHycgIIB69erRunXrgg/yKbm4uBAbG2uyLDY2lnLlylGxYkUg+xyqVasGZHd/3rNnD23atGHmzJls375dTWTXrVvHjRs3AKhQoQLNmjUz6Q6dnJzMvXv3csVQsWJF4uPjTZatW7cONzc3KleurLa2Pxjfw3pfBgYG4unpSXh4OJaWliQnJxMZGfnQ8759+zaKorBs2TIMBgPff/89I0aMoHr16mpLekJCgsnI37a2tjg6OlKnTh0uXLhgsr+rV6+q16F27dr88ssvap10ZmYmMTExarfypKQk/Pz80Ov1REVFmTxA2LVrF1ZWVuzcuRPIHkn8hx9+ULur37p1i9dff53+/fur7+nduzft27cH4O233+bdd9/lzTffVNfr9Xq1+/nj1KxZk88++wyDwaA+/DEYDOpDk6ioqFyt1Xq9Xu0pIP5HEmxRKORLRPEgNdja18ijat4biX81xWjErO7r/PsmCRJPyqAoWFhYII+dnz/nz59nypQpbNy4EVdXV5ycnAAe21X3WerVqxerV6/Gzc0NV1dXDh48yOHDh1m3bh3ly5fntddeY/78+cydOxdzc3MWLFiAvb09d+/exdzcXG0p/eGHH9i0aRNZWVkAdOnShTVr1rBr1y46duxIUlISw4cPx9nZmaVLl5rE8NZbb/Hee+/x9ddf8+qrr/LNN98QFhZGZGQkPXv2VGvWmzZtynfffUdERARTpkzJdS53795Fp9NhYWFBUlISs2fPBrIT3L+Lj49nwIABrFq1ihYtWqjdsR+8L4sWLWLevHncu3ePJUuW0K1bN6ysrOjatSvr169n3759tG/fnoMHD3Lq1CkmTZoEQI8ePQgLC8PDw4Pq1asTGhpK2bJlcXd3JzMzk0GDBuHo6MiyZctMpliD7DroB/19GrLvvvuOkJAQtm/fTtmyZdm2bRs3btzgrbfeArJb/sPCwmjQoAHOzs6sXLkSvV6Pp6dnnv8XOnTowJIlS5gzZw7jxo0jMTGRlStX0q1bNyB7ELnFixdTtWpVXF1d+eqrr9izZ0+umnIhCbYguxtJUFBQgc+HLUm2tkkNtvbl1GBbSAu2pilSg615UoOtff+0V56XlxcxMTHqqM1OTk5MnDiRRo0aFXCE/8x7772HwWAgKCiIW7duUbVqVRYvXkzTpk2B7IHD5s6dS4cOHcjKysLT05NJkyZhZ2dH37596devHwaDgcqVK9O/f38WLVrEn3/+iYuLC2vXrmXhwoXMmjVLnVM5Jwl9UJMmTZg3bx7z5s0jLi4OFxcXFi9eTO3atalduzapqanMmjWL+Ph4ypcvz7hx40y6KucICQlhzpw5rFu3jtKlS9OxY0deeuklrly5QsuWLU22bdCgAVOmTGHatGnqiON9+/alQ4cOxMXFAfDCCy+o3a+7dOmidh+vWbMmy5YtY+HChUyaNAkXFxfCwsKoXr06AD179uTu3bsMGzaMpKQkGjRowKpVq7CysuLgwYNcuHABGxsbta48x969e6lUqdJj71fHjh25fv06Pj4+pKWlUa9ePTZu3Kg+uBkzZgwWFhb4+PiQmZmJm5sbGzdufKIW7DJlyrBt2zZCQkLUqbe6du3K6NGjAXjnnXdIS0sjICCA27dvU6VKFebNm2dSBiCymRlz2v3FUwsKCirw6a2elZwRAR+MvyDP515qqnyR0Di9Xs8Yh4aSYGtYFgaGdq0rCbbG6Q0G6n+0Uz5TNSyni7/cQ+1SFAU7e/uiDkM8AznTdB06dIjKlSsXdThCg6QF+zml0+ly1bQUJKnB1j6pwdY+A0b0BoMk2BqnSA225uX8TZR7KIQQxZ8k2M+pkJAQtRU7x9/rQPJDvkQUD1KDrX33Yu4UdQginxSjEfvbvxR1GCIfFEXBUOklQDoNimwHDhxgwoQJj1zfpEkTzpw588j1Q4YMYejQoYURmhAinyTBFqqCnqJLkmxtkxps7ZMa7OJBarC1T2qwta+ge+V5eXnh5eVVoPsUBaNy5cpcvny5qMMQGibNU0IIIYQQQgghRAGQFmxRKKQGW/ukBlv7pAa7eJAabO1TFIVMuYdCCPFckARbFAr5ElE8SA229h28dLuoQxD5ZDAaqb99Q1GHIfJBMRiwL1+mqMMQ+VRyxKKiDkEIoQGSYItCI0m2tkkNtvbl1GCbSwu2phlyarDN5YGXVikGAyD3UMty7qEQQuRFEuznXHBwMBkZGerPWp3XWwghhBBCCCGKmiTYz7mMjIxCSaqlBlv7pAZb+wwYyTIYpAVb4wxGI/qsLGn91DDFYJB7KIQQzwlJsEWhsDSTuT61zszMSMdyJYs6DJEPitHIoVtpMvWuxhmASq82LeowRD4oigGLdu8VdRhCCCGeAUmwn2M6nY7ffvut0PYvNdjaps7bKq2fmpUzf7L0QtA2dT5zC2n91CpF+f8abPm7qFnPW6+8xMRE7O3tKVGiRFGHIoTmyF/r51hISAjlypVTfw4ODi7CaIQQQgghxNNKTk6mUaNGdOvWLde6sLAw+vfvD8CuXbvo1KlTnvv7888/8fLyIikpCYCVK1cyaNCggg06H0aMGIGrqysXL14stGNER0fz5ptv0rhxY3x8fPjuu+9M1q9ZswYPDw/c3Nzo378/169fV9elpaURHBxMs2bNaNKkCePGjePevXvq+pMnT+Lj44O7uzseHh7MmjWL9PT0XDFcuXKFRo0acfLkySc+9s2bNwkICKB58+Y0a9YMf39/YmNj1fX79++nS5cuNG7cmNatW7NkyRIMDwzgN2jQIBo0aEDjxo3V11dfffXPL+RzSlqwherBwc7yS2qwtU9RFDINBhRpwdYsg9EodfTFgAEjen2WtGBrmKIYUGQebFFIPv74Yzw8PDhz5gzffPMNr7322kO369q1K127ds1zfxkZGaSlpak/Dx06tMBiza+EhAS++uorunfvTnh4OIsWFfzUaYcOHWLq1KksWbIEDw8PDh06xODBg4mOjqZGjRrs2LGDzZs3Ex4ezgsvvEBoaCgjRoxg9+7dmJmZMXPmTH7//XcOHDiAoiiMHDmShQsXMnXqVBISEhg6dCjBwcH06NGDxMREAgICWLhwIR988IEaQ3p6OqNHj8713TyvYw8bNoz69etz+PBhjEYjs2fPxt/fn927d3Pp0iXGjh3LypUradmyJTExMfznP//BxcWFHj16APDTTz8RHh5O06ZSlpQfkmCLQmFuZVPUIYh8MporfPln7ieqQjsMGGlgb1vUYYh8MhiN8Nct5JGldikGA7bW1kUdhigiYWFhREVFkZ6eTpUqVfD396dt27YFsm+DwcD27duZMGECNWrUYN26dY9MsKOjo1m6dCmHDx8mKyuLWbNm8fnnn5OVlUXNmjUZPXo0bm5udO7cGYDOnTszZ84crl27xqlTp9i8eTPR0dFs374dV1dX9uzZQ4kSJejbty9+fn6YmZmh1+tZsWIFu3bt4u7duzRq1IjJkydTtWpVAD766CPWrVvHX3/9RcWKFfH19aVXr15PfL7btm2jefPmDBo0iK5duzJmzBgqVqz40G0fdaybN2/Stm1bJk+ezMqVK8nIyMDT05OpU6dib2/Pnj176Ny5M23atAGgffv2REZG8sknnzB27FgiIyPp27cvtWvXBmD06NFERkZy8uRJGjVqxO7du9m0aRMODg4AjBkzBl9fX8aNG0dsbCyenp707t0bgIoVK9KtWzeioqJMYp8+fTrt2rXjypUrJssfd+wXX3yRsmXLEhgYqHbt9/X1pVu3bqSkpODq6sqJEyewt7fHYDCQnJxMZmYmjo6OAMTGxpKSksJLL730xPdDPJwk2M85nU5HUFAQkF1vU5DkSb22yTzY2ifzYBcPMg+29qnzYMvfRc1SFCXPpPjQoUO5lp04cYKIiAiio6NxdnYmIiKCSZMm4eHhgZWVVb7jOnz4MIqi4OnpScOGDWnXrh2XL1+mbt26j33fp59+ytmzZ9m/fz92dnYsWbKE6dOns2vXLvbs2UPbtm3Zs2cPlStXJiwszOS9P/74I40bN+b48eNcuXKFQYMG4ezsTK9evQgNDeXEiRNs2LCBcuXKsWbNGgYMGMC+fftITEwkJCSETz/9lBo1anDs2DGGDRtGq1atTEoWH0Wv1xMZGcm8efOoUaMGzZo1Y9OmTYwfPz7XtrGxsY88Vo6DBw+ye/duFEVh2LBhTJ8+nQULFqAoSq7ac3Nzc7Ur9tWrVxk8eLC6zsrKimrVqnHp0iUcHBzIzMykTp066vqaNWuSkZFBTEwM7u7uuLu7q+sMBgOff/459erVU5ft3LmTX3/9ldmzZ7N8+XKTOB537ObNmxMeHm6y/YEDB3BxcaF06dIA2Nvbk5GRgbu7O5mZmXTo0AEPDw8Azp8/j52dHUFBQZw/f56yZcvy7rvv0rNnzzzujPg7+Wv9nAsJCSE0NJTQ0FBu375d1OEIIYQQQhQbNjY2pKSkEBkZycWLF+nVqxfHjx8vkOQaYMuWLfTr1w9LS0sqVKjAG2+8wYYNG/J8n06n4+bNm0RFRXHjxg0CAwPZtWvXEx3TwcGBMWPGYGNjQ4MGDfDx8WHXrl0YjUa2b9/OqFGjqFKlCjY2NgwbNozMzEyOHDmChYWFus2ZM2do0aIFP/zwwxMl15BdP+zg4EDLli0BeOedd4iMjCQ1NTXXtk9yrODgYMqUKYOzszMjRozgs88+Q6/X4+Xlxc6dOzl16hRZWVl88cUXHD9+nPv37wNw7949bG1Ne4fpdDrS0tLUWB5M0HO2fbAOGyAzM5OJEycSGxvLyJEjAbh27RqhoaEsWrTooQ/kHnfsv9u2bRvr1q1j1qxZJsutra35/vvv+eyzz7h69SozZ84Esh9guLm5ERQUxLFjx5gwYQKzZ89m//79ufYtHk9asIXqwUEO8ktqsLVP5sHWPpkHu3iQebC1TzEY0EsNtuY9rIU6L40bNyYsLIzNmzezdu1adDod/fv3x8/PD/N8/k5fu3aN48ePq3WzkJ0kZWZmEhQU9NjEtVOnTmRmZvLxxx+zePFinJycGDp0KH369MnzuC4uLiYPCCpWrMiBAwdISkoiLS2NwMBAk3PLzMwkLi4OLy8v9ToMHToURVHo3r07Y8eOxcYm79LCLVu2EBsbS/PmzdVlqampREZGMmDAAJNtK1Wq9Mhj5cjptp5zDnq9nr/++otOnTqRlJTEBx98QEpKCq1ataJzoSoEUgAAw7tJREFU587qQGS2tra5aqMzMjKws7NTE+v09HTs7OzUf0N263GOxMREgoKCSE1NZdu2bZQvX5779+8TFBTExIkTqVSp0kOvweOOnUOv1xMSEsK+fftYtWqVyfWC7NZ4a2trqlevjr+/Px988AHTp0/H29sbb29vdbuWLVvi7e3N/v376dChw0PjEQ8nCbZQOTs7F9i+5EtE8VCugJ6wi6JhMBr5JS2zqMMQ+WTAyB9HzhV1GCIfFIORuv2kBvt5FB8fj5OTE+Hh4ej1eo4fP05AQAD16tWjdevW+dr3li1baNWqFTNmzDBZ/t5777FlyxZGjRr1yPfeuHGDevXq4e3tTUZGBp999hnjx4/H3d09Vwvp3yUmJmI0GjH7/4e3N2/epFKlSjg6OmJjY8O6detwc3NTt79+/Trly5fn9u3bKIrCsmXLMBgMfP/994wYMYLq1avTr1+/xx7z3LlzXLx4kR07dlCqVCl1eWRkJJs2bcLX1xdLy/+lNY87Vk438YSEBGrUqKGeg62tLY6Ojty6dYvXX39dHX0doHfv3rRv3x6A2rVr88svv6g12pmZmcTExFCnTh2qV6+OlZUVV69epVGjRkD2g5Ccrtw55+Lv70/z5s2ZOXOmer3Pnz9PTEwMkyZNYtKkSeqxhw4dSrdu3Zg2bdpjjw2QlJSEn58fer2eqKgoqlSpou5n//79bNq0iW3btqnL9Hq92n08KioKOzs7k2Rar9c/0cMPYUoehwvVk3bReVIWFhby0vArh7mZmbw0+lLvIWby0vBL/Uw1N5OXRl/yd1H7r3/q/PnzDBo0iEuXLmFtbY2TkxOAOrDUP5WamsrOnTvp3bs3FSpUMHn17t2b7du3P7TbcI4vv/ySgIAAbt68iU6nw8HBAUtLS0qWLKkmVA/reg1w69YtVq9eTWZmJufOnePjjz+mV69emJub07NnTxYtWsQff/yBwWBgx44ddO7cmV9//ZX4+HgGDBjA8ePHMTc3p3z58k98LXIeJtSpU8fkXPv27cuff/6Zqxvzkxxr0aJFpKamkpCQwJIlS+jWrRtWVlZ899139O/fn7i4OO7fv8+GDRu4ceMGb731FgA9evRgy5YtXLp0ifv377No0SLKli2rPpzo0KEDCxcuJCkpiaSkJBYuXEjnzp3R6XTExsYyYMAAevXqxcKFC00eZri7u3Pu3DlOnz6tviB7mrRp06bleezMzEwGDRqEvb0927ZtM0muAdzc3Lhy5Qrr169HURR++eUXli1bpvZaSE1NZebMmVy8eBGDwcCRI0fYs2cPPj4+ed4fYUpasIVKp9MVdQhCCCGEEMWGl5cXMTEx+Pn5kZycjJOTExMnTlRbN/+p6OhodDqdyaBdOby9vVm8eHGukakf5OvrS0JCAm+//Tapqam4uLgQGhpKhQoVMBqNvPHGG/j4+DBhwoRc73V2dubmzZu0bNkSOzs7AgMD6dixIwDjx48nLCyMvn378tdff1GlShWWLFmijkw9ZcoUpk2bRmJiIiVLlqRv3755dj9OSkpi//79hIaG5lpXtmxZPD09Wb9+PV26dFGXN2jQ4JHHiouLA+CFF15Qu3536dJF7T7esWNHrl+/jo+PD2lpadSrV4+NGzeqD0d69uzJ3bt3GTZsGElJSTRo0IBVq1ap3eanTp3KvHnz6NKlC5mZmbRt21adgmvjxo3cvXuXDRs2mNTKV6pUib179z72OuR17IMHD3LhwgVsbGxo0aKFyfv27t1LpUqVWLNmDfPnz2fp0qWULVuWfv364evrC2TXtKelpREQEMDt27epUqUK8+bNMxmUTTwZM6Px/4cnFU8tKCjoob/sAu6kpBR1CCKfFEVhdrmXpX5XwwxGI0mKInX0GmfAiF/PeiYtoUJbFIORWqs+yldLqCh6pf6/K+3z7MGpvrQqZ5quQ4cOUbly5aIORxRD0oItCoV8iSgeWruUynsj8a+lGI10PLS2qMMQ+aQoCr/MmlPUYYh8MDcYGe/UuKjDEPm02vhrUYcghNAASbBFoZEkW9tyRoG3kBZszVJy5k+W30VNU38XpQVbsxTD/89JL71JNMtAwXb4PHDgwEO7X+do0qQJZ86ceeT6IUOGMHTo0AKNqaicO3eOd95555Hrn7T7tBD/FpJgP2eCg4NzDe//IOnyLoQQQghRuLy8vPDy8irqMJ5a9+7d6d69e4Hus2HDhpw9e7ZA9/k4lStX5vLly8/seOL5Iwn2cyYjI+OZJNEyD7b2KYqC3mCQFmwNU4xGmXu3GFAUBX2WQVqwNUwxGMnCIC3YQgjxHJAEWxQK+UJfPHhM6FjUIYh8UAwGDD99g6GoAxH5ohgM1O3VtqjDEPmgKAYsIy4UdRhCCCGeAUmwi6lHdQVPTEx8ZjFIkq1t/6v7NC/iSMQ/pRiyU2u5h9qm3kcLuY9apSjZ91BasLWroGuwhRDFlyTYxdSjuoIHBQU9dPuchFxqsIUQQgghhBDin5EEWwAFX5stNdjal133mSWtnxqmGAxyD4sBxWDAkJmFhSL3UasUg0FqsIUQ4v/Yu/O4qKr3geMfhl0wQUQx13JNTUVRcyPBiszct9LIJU3BfRdcAjdQ3EnREBfQEtcSNyy3rFzKrCgz91RQcUEEFQfuzO8PftxvBC4JOF543q/XvF7O3Dv3PnMP4Dz3nOecIkIS7CLGxsYm117s/B46LsPDCwdb+2KmDkHkgWIwcOvo76YOQ+SRYjCQlphi6jBEHigGIxbIDRIhhCgKJMEuYoKCgnJ9/WFDx/NCkmxtkxps7ZMa7MLhf+0ovZ9aJetga5/UYD+ZlJQU0tPTKVmypKlDUf39999UqlTJ1GGIIkS+dQng4T3bQgghhBDi+RMaGsorr7yCq6ur+mjQoAH9+vXj4sWLJonpzTff5PTp00+074QJE5gwYQKQ+Vm8vb3zPZ5Zs2YRFhaW78cV4lGkB1sAD+/ZflpSg619UoOtfZk12ArmOlmoS8sUgxG9YsDcIL2fWqUYZR1sUTDc3NyIiopSn6empuLv70+/fv2IjY195qMJk5KSnun5Hud5i0cUDZJgiwJxddIAU4cg8kgxGKk4a6WpwxB5oCgKlSuuN3UYIo8UxYBVyVKmDkPkgaIoWGwaa+owhImEhoayceNG7t+/T4UKFfD19aV164JZ297e3p5OnToRGxvLnTt32LdvH2vWrMHBwYHffvuNTz75BC8vL8LCwti6dSspKSnUq1ePSZMmUalSJRYuXMihQ4dYt26desyQkBBOnz7NZ599Rnx8PCEhIRw5cgSdTsdrr73G+PHjKV26NF5eXgAMGDCAoUOHMmDAAH744QfmzZvHhQsXKFOmDAMHDqR9+/aP/AxGo5Hw8HBiYmK4cuUKZmZmuLu7M2PGDGxsbHLs/+OPPxIUFMTFixdxdHSkVatWjB8/nmXLlhETEwPAiRMn2Lp1Kzdu3CA4OJhDhw5hZmaGp6cn48aNw97eniNHjjBu3Djc3Nw4cOAAH3/8Mf369WPx4sVs3ryZlJQUXnnlFSZPnkzNmjVJS0tj0aJFbN++nXv37lGzZk3Gjh1L3bp1AahRowbe3t7ExMTg6urK0qVLH3k9UlNTCQ4O5ujRoyQmJlK8eHF69erFoEGD8uVnQzw7kmCLAiM9n9qmGP6/Bltq6TVLraOX9ZM1LWsNZfld1K6s30XpwdYuA8bHJsV79uzJ8drhw4eJjo5m8+bNODs7Ex0dzcSJE3F3d8fS0jJfYzQajVy5coUvvviC2rVr4+joCMAff/xBcHAwS5cuxWAwMH/+fA4fPsyqVasoXbo04eHh9OvXjx07dtC1a1eWLl3KhQsXqFy5MoqisHXrViZPnkx6ejr9+vWjTp067N69G6PRSGBgIIMGDWL9+vXExsZSo0YNwsPDadKkCSdPnsTHx4eQkBBat27Nr7/+iq+vL46OjrRs2fKhn2Pnzp1ERkayZs0aKleuzNmzZ+nZsycxMTF069Ytx/7jxo1j2LBhdOrUicuXL/P+++/j5ubG4MGDuXTpEgDBwcEYDAZ8fX2pXLkysbGxpKen4+fnx5QpU5g3bx4AV69e5eWXXyY4OJgHDx4QFhbGtm3biIiI4KWXXuLTTz9l4MCB7N27l4CAAE6cOEFkZCRly5bliy++oE+fPmzbto0XX3wRgIsXL7J//37S09Mfez3mzJnD5cuX2bhxI8WLF2f37t0MGzaMNm3aSA25xkiCnUdZ60c/b55mVnA/P798HyouhBBCCFFUWVtbk5yczPr16/Hw8KBbt2706NEDM7P8udly7Ngx3NzcgMwE297engYNGhAQEKDuY2lpSYcOHdDpdBiNRtatW8eiRYuoUKECAIMHD2b9+vXs378fLy8vmjVrxpdffsmIESP47rvvUBQFDw8PfvrpJy5dusSmTZuwt7cHIDAwkMaNG/P7779Tv379bLGtW7eO1q1b89ZbbwHQoEEDunfvztq1ax+ZYLu7u9OgQQNcXFy4desWSUlJODg4cO3atVz3t7a2ZufOnTg4ONCoUSMOHDiALpdOnt9//50//viDlStXYmdnB8D48eN5++23mTx5srpf165dsbS0xNLSki1btjBw4ECqVq0KgI+PD6+//jppaWls27aNxYsXq8lv7969iYmJYdu2bXz88ccAvPvuu9ja2mJra8u8efMeeT2GDh2Kubk59vb2XL16FWtrayDzO70k2NoiCXYe5ff60fnlaSYsy88bBYrBqPaACm1SDEb0er30mmmYoigo+gzpwdY4RTGg16djbi5/U7VKUWQd7MIgtx7qx3F1dSU0NJSoqCiWL1+OjY0N3t7e+Pj45JoE/lcNGzbMVoOdG2dnZ/Vct27d4t69ewwfPjzb+dPT04mPjwegW7duzJ49m+HDh7NlyxY6dOiApaUlN2/exNHRUU2uIXNIuoODA/Hx8TkS7Pj4eA4fPqzeAIDM/5cqVqz4yHiNRiPz589n3759lCxZkldeeYX09HSMxtxncl+9ejWhoaEEBgZy/fp1WrZsSUBAAC4uLtn2u3z5Moqi8Prrr2d73crKSu3pBihdurT67+vXr6u90Vn71q9fn8TERNLT0ylfvny2Y5UvX57Lly/neqzHXY+bN28yY8YMTpw4Qfny5alTpw4ABoPMo6I1kmAXMY/qcc/PtbDL1K+Wb8cSpqEYDFhZWZk6DJFH1g09TB2CyCNFUWSJLo0zUxRZB7uISkhIwMnJiYiICPR6PYcOHWLIkCHUrl2bVq1aPZMY/tlb7ujoiLW1NStWrMiWEJ87d44yZcoA0Lp1awIDA/n222/Zu3cvW7ZsAaBcuXIkJSWRmpqqJtkpKSkkJSXh7Oyc47wuLi506tSJqVOnqq8lJiY+NFHOMmfOHBISEti7d696nnbt2uW674MHDzhz5gwBAQFYWFhw/vx5Jk2axMyZM1m0aFGOeGxsbDhy5IjaeaDX67l06RKVKlXi2LFjOa5X2bJluXLlivo8PT2dkJAQPvroI6ytrbl06RJVqlRRt1+8eBFPT0/1+T+P9bjrMXz4cDw9PYmIiMDCwoKkpCTWr5d5VLRIEuwi5lE97vm9TJfUYGubuvau9GBr1v9qsKUNtUzaUfukBlv7nnYd7Li4OKZMmcLq1aupWbMmTk5OAGp99LOm0+no2rUrc+fOJSQkhNKlS/PVV18xceJENm7cSK1atbC0tKRjx44EBgZSu3ZtNYF89dVXqVq1Kp988ok6BD0gIICKFSvSoEEDILOHNyUlBcgcat23b1/eeustmjVrxsWLF/n444/x8PDAz8/voTGmpqZibW2Nubk5Dx48YO3atZw6dQoPj5w3jM3MzBg1ahQfffQR/fr1w9nZGQsLC/X6WllZcfPmTQDq1q1LpUqVCA4OZsSIEZibmxMcHMyePXv45ptvco2lc+fORERE0KhRIypUqMCyZcv45ptvGDt2LF26dGHevHm89NJLag32mTNnmDt3bq7Hetz1SElJwcbGBnNzc27dusWMGTOAzKReaItkQEKV28yMQgghhBDi6Xh5edGvXz98fHyoX78+w4cPx9/fn3r16pkspvHjx1OvXj169uyJm5sbq1atYtGiRdSqVUvdp1u3bsTHx9O1a1f1NQsLC5YtW0ZGRgZeXl54eHiQnp7OypUrsbDI7LPr0aMHo0ePZv78+dSrV4958+Yxb948GjVqxAcffICnpyejR49+ZHwjRowgLS2NZs2a4enpyS+//EKHDh04depUjn2trKwICwtjz549NGnSBE9PT5ydnRkzZgwA77zzDj///DOtWrVS479x4wZvvfUWLVq04OLFi6xcuVKtd/63/v37065dOz766COaNGnCTz/9RHh4OJaWlowbN44WLVrQp08fmjRpws6dO9XJ0HLzuOsRFBTEjh07aNCgAZ07d6ZMmTLUqlUr188tnm9mxseN0xAPldXj+7zWYOcW18Nez2/Xl00o8HOIgqUYDFj3mCC9ZhqmKAoWty9LG2qcoihgNEg7apiiKAyv2k56sDVuufGiqUMQQmiADBEXBaJYr0mmDkHkkaIo8oW+ENCVfvkpBzaK54VRUbg8uo+pwxB5oBiMUoMthBBFhCTYosBIcqZtUvepfdKGhYPajjLRmWYphszbXNKDrV1PW4P9MLGxsUyY8PDRfg0bNlQn3crNwIEDGTRoUL7GJITIH5JgCyGEEEII8Qx5eXnh5eVl6jCEEAVAEuxCysbGJtdZwfNzKa5HURRF7XUR2pTVhtL7qV3ShoWDoijoMwzSg61hisEo62ALIUQRIQl2IRUUFJTr61lJ98PWw86vCdDkC33hIO2ofdKGhUOF114xdQgiDxSDAYvVv5g6DCGEEM+AJNhF1KPWw84v8sVe26R+V/ukDQuH/9VgyyRZWqUYDIDUYGtZftdgCyEKL/nfWgghhBBCCCGEyAfSgy0KhNRga5/U72qftGHhkFmDnSE92BqmGAxSgy2EEEWEJNiiQFjdvW7qEEQeKYqC2clDpg5D5IGZYsDcXJIyrTNTDLzQJ8DUYYg8UBQFi6EbTB2GEEKIZ0AS7CIma3bxZzGbuPSaadv/6nclQdMqRcms+5Q21Lb/taP8TdWqrL+n0oOtXVKD/WRSUlJIT0+nZMmSpg5FCJORb11FTFBQEPPnz6d06dJA5mziI0eOVB9CCCGEEOL5FxoayiuvvIKrq6v6aNCgAf369ePixYsmienNN9/k9OnTT7TvhAkTmDBhApD5Wby9vQsytHzRtm1btm7d+p/es3//fmrUqMH06dMLKCrxvJEe7CKuoGYTlxps7VMUBYM+Q3o/NUxRDCgyTFzzFMVAhl4vPdgapiiK1GCLAuHm5kZUVJT6PDU1FX9/f/r160dsbOwz/7uRlJT0TM/3rG3fvv0/v2fNmjW8//77bNq0iaFDh1KiRIkCiEw8TyTBFgXCwphu6hBEHpkZFYyvv2fqMEQeGGWCs0LBqCjY3Dhj6jBEHiiKgoUMGiyyQkND2bhxI/fv36dChQr4+vrSunXrAjmXvb09nTp1IjY2ljt37rBv3z7WrFmDg4MDv/32G5988gleXl6EhYWxdetWUlJSqFevHpMmTaJSpUosXLiQQ4cOsW7dOvWYISEhnD59ms8++4z4+HhCQkI4cuQIOp2O1157jfHjx1O6dGm8vLwAGDBgAEOHDmXAgAH88MMPzJs3jwsXLlCmTBkGDhxI+/btH/kZjEYj4eHhxMTEcOXKFczMzHB3d2fGjBnY2Njk2P/evXvMmTOHnTt3kp6ejqurKwEBAZQrV46kpCTmzZvHvn37SE9Pp379+vj5+VG5cmUuX75M69atmTRpEkuXLiUtLQ1PT08++eQT7O3tCQ0N5fjx4yQnJ3Pp0iUWL17M+PHjGTJkCJ07d36i9vj77785fPgw+/fv5+TJk0RHR/Pxxx//hxYVWiQJtigw8sVe22QNZe2TNiwcpB21T2qwtc+A8bFJ8Z49e3K8dvjwYaKjo9m8eTPOzs5ER0czceJE3N3dsbS0zNcYjUYjV65c4YsvvqB27do4OjoC8McffxAcHMzSpUsxGAzMnz+fw4cPs2rVKkqXLk14eDj9+vVjx44ddO3alaVLl3LhwgUqV66Moihs3bqVyZMnk56eTr9+/ahTpw67d+/GaDQSGBjIoEGDWL9+PbGxsdSoUYPw8HCaNGnCyZMn8fHxISQkhNatW/Prr7/i6+uLo6MjLVu2fOjn2LlzJ5GRkaxZs4bKlStz9uxZevbsSUxMDN26dcux/9SpUzl79iybN2/GycmJTz75hFGjRhEdHc2wYcPQ6XRs2bKF4sWLs3DhQvr06cO2bdvU9+/evZuYmBgURWHw4MEEBgYSEhICwKFDh1ixYgV169bF2tr6P7fJmjVreOuttyhVqhTe3t4EBwfTp08frKys/vOxhHbI7dQiKrfJzvz8/EwYkRBCCCFE4WJtbU1ycjLr16/nxIkTdOvWjUOHDuVbcn3s2DHc3NzUx/vvv4+dnR2ffvqpuo+lpSUdOnTAysoKa2tr1q1bx6hRo6hQoQLW1tYMHjyY9PR09u/fT7ly5WjWrBlffvklAN999x2KouDh4cFPP/3EpUuXCAwMpHjx4rzwwgsEBgZy8uRJfv/99xyxrVu3jtatW/PWW29hbm5OgwYN6N69O2vXrn3kZ3J3d2fjxo1UrlyZW7dukZSUhIODA9euXcuxr16vZ/v27QwfPpyyZctiZWWFn58fkyZN4tKlSxw9epTJkyfj7OyMjY0NY8aMISMjgwMHDqjH8PPzo2TJkjg7OzNs2DB27dqFXq8HoEKFCjRt2hQ7OzssLP5bv+S9e/fYsmULvXv3BsDLywudTvdUw8yFtkgPdhEVFBQEkG1is7S0tHw7vtRga5+iKFL3qXGyDnbhoCgKevld1DSpwS4ccuuhfhxXV1dCQ0OJiopi+fLl2NjY4O3tjY+PD7p8WNu+YcOG2Wqwc+Ps7Kye69atW9y7d4/hw4dnO396ejrx8fEAdOvWjdmzZzN8+HC2bNlChw4dsLS05ObNmzg6OmJvb6++z97eHgcHB+Lj46lfv36288bHx3P48GHc3NzU1xRFoWLFio+M12g0Mn/+fPbt20fJkiV55ZVXSE9Px2jMOZN7cnIyer2eF198UX3thRde4NVXX+X48eNAZpKcxdzcnLJlyxIfH0+9evUAqFSpkrq9bNmy6PV6bt++DaBOCvw0vvzyS1JSUrINCb979y4rVqygU6dOT31c8fyTBFsUDMfypo5A5JWiyBCmQkDWpNc+RVEwf8HJ1GGIPDCTGuwiKyEhAScnJyIiItDr9Rw6dIghQ4ZQu3ZtWrVq9UxiMDP7340dR0dHrK2tWbFiRbaE+Ny5c5QpUwaA1q1bExgYyLfffsvevXvZsmULgFrTnJqaqibZKSkpJCUl4ezsnOO8Li4udOrUialTp6qvJSYm5poo/9OcOXNISEhg79696nnatWuX675OTk5YWVlx5coVXn75ZQBu3rypDnsHuHjxItWqVQMy/54mJCRki/fatWvqey9fvoytra06vP6f1+6/+vzzzxk+fHi2eu2kpCS6dOnCd999R4sWLZ762OL5Jgm2KDDS26JtUvepfdKGhYO0o/ZJDbb2Pe062HFxcUyZMoXVq1dTs2ZNnJwyb5ZlJXDPmk6no2vXrsydO5eQkBBKly7NV199xcSJE9m4cSO1atXC0tKSjh07EhgYSO3atalSpQoAr776KlWrVuWTTz4hICAAgICAACpWrEiDBg0AsLKyIiUlBYCuXbvSt29f3nrrLZo1a8bFixf5+OOP8fDweGRZYmpqKtbW1pibm/PgwQPWrl3LqVOn8PDwyPXzdOzYkdDQUKpWrYqDgwMLFizg9OnTlC5dmtdff53p06czZ84ctQY7a8h7amoqAHPnzmXWrFncvXuXRYsWqT32eXHo0CEuXLhAjx491DaHzJsO7u7urFixQhLsQkxupxZxWbXY/67HFkIIIYQQeePl5UW/fv3w8fGhfv36DB8+HH9/f3V4simMHz+eevXq0bNnT9zc3Fi1ahWLFi2iVq1a6j7dunUjPj6erl27qq9ZWFiwbNkyMjIy8PLywsPDg/T0dFauXKnWJ/fo0YPRo0czf/586tWrx7x585g3bx6NGjXigw8+wNPTk9GjRz8yvhEjRpCWlkazZs3w9PTkl19+oUOHDpw6dSrX/SdMmECdOnXo1q0bLVu2JCkpiYULFwIwe/ZsKlSoQKdOnWjWrBl//fUXq1evxsHBQX1/xYoVeffdd2nfvj2urq74+/s/7aVVrV27Fnd392zJdZb33nuP77//npMnT+b5POL5ZGZ83DgN8VBZ9csFsY60KYwcOTLfPkvKTUnWtU5RFIwW1tJrpmGKomB+56q0ocYpigJGg7SjhimKwoiX20gPtsYtN140dQgiH2Ut07Vnzx7Kl5fSRpF/ZIi4KBA662KmDkHkkVFRsDBmgDHD1KGIp2RmVDAv+eLjdxTPNTNFwUKfauowRB4YpQZbCCGKDEmwhcrGxiZfjye9LdomdZ/aJ21YOEg7ap/UYGvf09ZgP0xsbCwTJkx46PaGDRty7Nixh24fOHAggwYNyteYxJPr3Lkz58+ff+j28PDwbLOni6JFhojnQWEbIp6f7qamypdBjdPr9VgYM6QdNUyv12NuaSVtqHF6vR4LvfxN1TK9Xs+och6SYGuYASOfGf82dRhCCA2QHmxRIGQdbO1TFAVDhqy9q2WKoqAYpQ21TlEUDLIOtqbJOthCCFF0SIItCoR8ESwcrNLugpRga5ZOUeR3sRDQKQrmFhaQz0NUxbNjZmaUGmwhhCgiJMEWBUa+2Gub1H1qn7Rh4SDtqH1Sg619+V2DLYQovOR2qhBCCCGEEEIIkQ+kB1sUCKnB1j5FUTInyZJeM83K+j2UNtQ2RVFQDLIOtpZJDbYQQhQdkmCLAhFRvpGpQxB5ZDAa+euu3tRhiDwwYKSMlfyZ1zqD0YiTtKOmGYxGQlP+NHUYQgghngH5H1sUGJ2Z3KnXMsP/r+AnPS7alVUzKL+L2qb+Lko7alZWG8ooBO0qqqPy/v77bypVqvRE+6akpJCenk7JkiULNKYLFy5QuXLlAj2HEHkhNdhFkJ+fHyNHjsz1IYQQQgghtCMpKYl69erRoUOHfD3urFmzCAsLe+L933zzTU6fPg3A1q1badu2rbpt1apVNGrUiEaNGnHy5Mmnjmnv3r189NFHT/3+/HTt2jWGDRtGkyZNaNGiBUFBQTx48EDdfv78eXr37o2rqystWrRg6dKl2d5/4MAB2rVrR/369WnTpg379u3Ltj08PBx3d3fq16+Pt7c3586dU7c9ePCA6dOn07x5cxo2bEjv3r05e/asuj0+Ph5fX1/c3Nxo0qQJ48eP5+7du+r2/v378+qrr+Lq6qo+vv32W3X7559/zptvvomrqyvt2rXLFtuvv/5KzZo1s723V69eeb+ghYj0YBdBaWlpzJ8/v0DPYTAa1Tv2QpsMRqPUDGqcASMZBoP0fGqcwSjtqHUGo1HmtBAFZsOGDbi7u3Ps2DG+//57mjdvni/HTUpKeur927dvT/v27dXnn3/+Ob6+vvTt2zdPMd2+fRvjc/D90mAw4Ovri7OzM7t27cJoNDJy5EgCAgIICgoiPT2dQYMG8eabbxIeHs6ZM2cYOHAglSpVok2bNly4cIGhQ4cyb948WrVqxe7duxkxYgS7d++mTJkybNmyhaioKCIiIqhYsSLz589n2LBhxMTEYGZmRkBAABcuXGDLli04ODgQHBzM8OHD2bZtG3q9nn79+tG8eXMOHjzI/fv38fX1Ze7cuUyZMgWA33//nYiICBo3bpzjs23ZsoXFixcTFhbGq6++yvbt2xk6dCh79uyhTJkyxMXF0ahRI6Kiop71ZdcMSbBFgfjo0/dNHYLII8VgIGHvL6YOQ+SBYjBi9hx8ERF5oxiMLF1/wtRhiDwwYMTKysrUYQgTCQ0NZePGjdy/f58KFSrg6+tL69at8+XYBoOBdevWMWHCBF5++WVWrFiRI8FevXo1a9as4caNG7z00kuMHTuWpk2bYjQaiYqKYu3atdy8eZPq1avj7+9PnTp1WLx4MTExMQCcOHGCrVu38vPPP7NgwQLOnTtHcnIy1apVY8qUKdSvXx8vLy8ABgwYwNChQ3FycuLTTz9l7969NG/enJs3bzJv3jz27dtHZGQkGzdu5PPPPyc+Ph69Xk/jxo0JCgpSh5fnFrNOp+OTTz4hPT0dV1dXdu3aRYkSJVi0aBHbt2/n3r171KxZk7Fjx1K3bl0AatSogbe3NzExMbi6uuboRb527RoTJ07kt99+w8bGhrp16zJlyhRKly7NhAkT0Ol0XL58md9++42yZcsyevRo3njjDc6fP8/vv//Ovn37cHR0BGDUqFH06tULf39/4uLiSExMZNiwYVhZWVGrVi28vb1Zu3Ytbdq0YcuWLbi5ufHGG28A8M4777B582aio6MZNmwY69evp2fPnlSrVg2A0aNHs379eo4cOUK1atX46quv2LFjB6VLlwZgzJgxnD9/HqPRyL59+9Dr9UycOBFzc3NsbW1ZtGgR9+7dA+DSpUskJydTq1atXH+mVqxYwfDhw9Vr+O677/LSSy9hb28PQFxcHHXq1HnaH9kiQRJsUWDMdVKBoGWKwQCAuU56zbRKMfx/3ae0oaZltaOMJtGurPkQpAdbuxRFeWxSvGfPnhyvHT58mOjoaDZv3oyzszPR0dFMnDgRd3d3LC0t8xzX3r17URQFT09P6tatyxtvvMFff/1FjRo1ANi8eTNLlixh6dKl1KtXj02bNuHj48P+/fvZvn07K1euJCwsjCpVqvDVV1/Rt29fdu7cyeDBg7l06RIAwcHBpKWl4ePjw7Bhw3j//fdJS0vD39+f2bNn8/nnnxMbG0uNGjUIDw+nSZMmbN68WY3x+++/x9PTkyFDhtC5c2d+++03pk+fTmRkJHXr1uXq1av07t2byMhIRowY8ciYAwMD1cQdYMKECZw4cYLIyEjKli3LF198QZ8+fdi2bRsvvvgiABcvXmT//v2kp6fnuH7z5s3DxcWFsLAwHjx4wLBhw/jss8+YNGkSkNmbO3fuXFasWMG2bdsYMWIEX331FYb//45ka2urHsvMzIz09HQuXbrE6dOneemll7LdWKtatSqfffYZAGfOnKF69erZYqlatao6fP7MmTMMGDBA3WZpaUnlypU5efIkDx48oHjx4vzyyy8MHjyYW7du0bBhQ/z9/TEzM+O3336jZs2aLFy4kK1btwLg5eWlloLGxcVhZ2fHyJEjiYuLo1SpUvTp04euXbty//59Tp8+jU6no1evXpw5c4aXXnqJMWPGYGdnp76/VKlSvPXWW6SmptK4cWMmTJiAi4vLf/jJLdwkwdY4Pz8/0tLS/tN7EhMTH3qMgh46LoQQQghRVFhbW5OcnMz69evx8PCgW7du9OjRA7N8KvlYs2YNvXr1wsLCAhcXF958801WrVpFUFAQkJkg9ujRA1dXVwC6detGlSpVsLGxYe3atQwcOJCaNWsC0LVrVzZu3MjWrVvp169ftvNYWloSHR1NpUqVePDgAfHx8Tg4OBAXF/efY65evTrbtm2jfPnyJCcnk5iYSMmSJbl27dpjY/6nBw8esG3bNhYvXqxOxNa7d29iYmLYtm0bH3/8MZDZA2tra5stGc5ibW3Njz/+yPbt22natCnLly9H948OolatWvHOO+8A0LFjR9atW8eOHTvw9fWlWrVqBAUFMWnSJDIyMvj000+BzFLMu3fv5jifra2t2ouc23YbG5sn2p6cnExKSgq7d+8mKioKS0tLpk6dyqBBg9iyZQvJycl8++231KlTh9jYWBITExk6dCizZ89mypQp6PV66tevz8iRI6lWrRpHjhxh6NCh2NnZ0aBBA4xGIytWrGDhwoVUqlSJ9evXM2DAAGJiYihbtiylS5emWbNmvP/++6SnpzNt2jQ+/vhjtmzZIjcR/58k2Br3NPXU/57MrCBqshWDQe0BFdqkGAzoMwzS+6lhisGIQZE21DrFIPMhaJ0BqcEuDHLroX4cV1dXQkNDiYqKYvny5djY2ODt7Y2Pj0+2RO5pnD17lkOHDqn1tAB6vZ709HRGjhxJ6dKluX79utqTm6VBgwZA5kRYs2bNYs6cOeq2jIyMXIf/mpubc+TIEQYMGMC9e/eoWrUqFhYWT1UPrdPpiIyMJCYmhmLFilGjRg1SU1PVYz0q5n9KTk4mPT2d8uXLZ3u9fPnyXL58WX2eNYw6N5MmTWLZsmVEREQwYcIEatasyaRJk3BzcwPIMVt52bJluX79Oubm5oSFhTFjxgzeeustnJ2d6du3LwcOHKBEiRIUK1aM+/fvZ3vv/fv31V5gW1vbHB1kaWlpT7TdysoKRVEYP368OqTez8+Ppk2bcv78eaysrChVqhSDBw8GoEKFCgwcOJCpU6cyZcoUOnbsSMeOHdXjtmjRgo4dO7Jz506aNGkCQN++fdXh6R988AFffPEFBw4coFevXqxatSpbXJMnT6Zp06acPXs2R698USUJtigQf0Z9+/idxHNNMRoxphXNZUkKC8Vo5M7fd0wdhsgjxWjEQhb90DypwS6aEhIScHJyIiIiAr1ez6FDhxgyZAi1a9emVatWeTr2mjVreP3115k6dWq21/v27cuaNWsYNWoUZcuW5cqVK9m2z58/n/bt2+Pi4sKwYcOyzfZ98eJFHBwccpzr119/Zdq0aaxbt05NwFesWMH58+f/c9yrVq3i+++/JyYmhlKlSgEwaNAgdfujYv6nUqVKYW1tzaVLl6hSpUq2z+Dp6ak+f9RogRMnTtCjRw+GDh3KrVu3WLx4MUOGDOHw4cMAaq96lsuXL+Pp6YnRaCQ5OZkFCxaoPesHDhzAzs6OSpUqcfXqVS5cuEBGRgYWFpnp1pkzZ9SktXr16vzxxx/Zjn3mzBn12larVo3Tp0/j4eEBQHp6OhcuXKB69eo4OzsDmTdTsmQtI2c0GqlSpQq7du3CYDCoN3EMBoN6A2Pjxo3Y2dnRpk0b9f16vR5ra2tKliyJk5NTtmP/8/hXrlxh1apVDBs2TL0ZkLXvv0cYFGXyP3YRZGNjk21prn8PGc8v5mZm8tDwQ9pR+w9pw8LxyKLDTB4afai/i+bm8tDo42nFxcXRv39/Tp48iZWVFU5OTgDqxFhPKzU1lS+//JLu3bvj4uKS7dG9e3fWrVvHvXv36Ny5M9HR0fz2228YDAY2bdrE2rVrcXR0pHv37oSFhanLOx08eJC2bdvy448/Apk3hVJSUoDMNa51Op2aRP3yyy9ERkZmS8T+uf/jYrewsMDS0pKMjAy++uorDh48qNZIPypma2tr7t+/T0ZGBjqdji5dujBv3jz+/vtv9Ho9q1ev5syZM9luGjzK0qVLmTZtGqmpqbzwwgvY2tpma5uvv/6aH374gYyMDDZu3MipU6d49913MTMzY9y4cXz22WcYDAYuXLjAnDlz8Pb2xsLCgiZNmuDo6MjcuXN58OABJ0+eJCoqiq5duwKZs6wfPXqUHTt2kJGRwY4dOzh69Ki61FqXLl1Ys2aNWnM9d+5cSpUqhZubG1WrVqVRo0ZMmTKFW7ducffuXYKDg6lduzbVqlWjTZs2KIrCzJkz0ev1XL58maVLl6rHTk1NZdq0aZw4cQKDwcD+/fvZtm0bPXr0AOC9995j8eLF/Pnnn2RkZBAZGcm1a9d44403cHR0ZPv27cyfP58HDx5w69YtAgMDadq0KRUrVnyia14USA92EZRVl5Nl5MiRah221GALIYQQQuQPLy8vLly4gI+PD0lJSTg5OeHv70+9evXydNzNmzdjY2PD66+/nmNbx44dmTdvHhs3buTDDz/kzp07jB07luvXr1O1alXCw8MpWbIkffr0wWg04uvrS2JiImXKlGHKlCnqZG7vvPMOI0eOpFWrVuzbt4+ePXvSq1cvDAYD5cuXx9vbm7lz53Ljxg1KlSpFjx49GD16NH369FFronPTr18/Tp06hYeHB9bW1tSqVYuePXuqvcbt2rV7aMyNGjXCycmJRo0asW7dOsaNG0doaCh9+vTh9u3b1KhRg4iICF566aUnuo5Tp04lMDCQ1q1bo9frqVOnDgsXLlS3u7m5ER4ezpAhQ6hcuTKfffYZFSpUAGDBggUEBgayatUq7O3t6dq1K0OGDAHAwsKCFStWMHXqVJo3b06xYsXw9vamc+fOAFSpUoXFixczZ84cJk6cSLly5QgNDVXj7tq1KykpKeokZq+++irLli1TJ8YLCwsjJCSEjh07kpqaSpMmTViyZAkAJUuW5IsvviAoKAh3d3cgM6EfPXo0kFmnfu/ePYYMGcLNmzepUKECs2bNUofFDxkyBHt7e0aMGEFiYiIvv/wy4eHhlClTBoDly5cza9YsWrRoAWTWqf87tyjqzIzPw2JyGpVVy2zKpHTkyJF5Pn9BfI4DrVrm27GEaShGIxn3M7L1oAltUYxGki4kSxtqnGI0Ens9VWqwNcyAkbk3f5UabI17oUQJU4cgnqEJEyYAmbOoC/FfSA+2wMbGhosXL+brMS0t5EuE1umMRqq9W9vUYYg8UAwG9DeTTR2GyCPFYGTPkqOmDkPkkdRgCyFE0SAJ9nPgaZbaypIf9dNBQUE5ZhbPD9Jrpm2KMWsNZZmqQav+t5a5tKGWKYbMyWWkB1u7ZB1s7cua5Cm/xMbGqj2kuWnYsCHHjh176PaBAwdmmxhMCPH8kAT7OZCX2ueCSIyFEEIIIUTB8fLywsvLy9RhiEeQoeHiaUm3hgD+N7O4EEIIIYQQQoinIz3YeVAQtcumkt+z/ylGozrEWGiTYjSiz8iQ4cUaphgM6DMMmOvkd1HLFIORDAwyRFzDDBjR6/UyRFwIIYoASbDzoKBqlwuDqL0XTB2CyCMDRibUr0CGqQMRT00xGKjk7mrqMEQeKQYD3fedM3UYIg8Uo1EmORNCiCJCEmxRYKS3RdvUSXmkB1uzZJKzwkFtR5k4UrPUSSOlB1uz8nuSMyFE4SUJdhHwX2YpN+Wa3kIIIYQQQgihZZJgFwF5maX8aRkwqj2gQpsMSA221mXWYEsbap1iMKA3GKQHW8MUo9RgCyFEUSEJtsY9yezf+bFW9n/laCFfIrTOYDSyIPSwqcMQeWDAyMKUCFOHIfJIpyjU/fOCqcMQeaAYDFKDLYQQRYQk2Br3JLN/m2oiNp30tmia4f9rBqWWXrvUOnrpNdO0rNpPGYmgXWodvfwuatbzWIMdGhrKkiVLsLGxATJjdHBwwMPDg5EjR+Lg4GDaAP/fmTNnGDJkCNeuXeODDz5g9OjRBXo+V1dXwsPDcXNzy5f9hPivJMEuAv7LGtdSgy2EEEIIoQ1ubm5ERUWpz8+ePUtAQAC9e/dmw4YNz8XIia+//hobGxt++umnZ3KT6fjx4/m6nxD/lSTYRUB+r3H9JAxGo9oDKrTJYJS1d7VO1t4tHBRFkVp6jVMMBvldLMJCQ0PZuHEj9+/fp0KFCvj6+tK6desCOVeVKlX49NNPadWqFVu2bKFHjx4YDAaWL1/O+vXrSUpK4qWXXmL48OG0bNkSAE9PT1q0aMGePXtwdnZm8+bN/PnnnwQHB3Py5EkcHR3p2bMnvXv3xszMDL1ez/z589m/fz9Xr17FxsaGd955h0mTJmH2r9GLwcHBrFmzBkVRcHNzY/PmzTg4ODBv3jz27dtHeno69evXx8/Pj8qVK3P58mVat25N37592bRpE++++y4lS5bkzJkz2NjY8PXXX2Nvb4+fnx/nzp1j7dq1ZGRk0KdPH3x9fQGoUaMGkZGRNGnShFu3bjFz5kwOHDiATqejWbNmBAQEUKJEiWz7JSUlMXXqVL799lscHBzo06cPQUFB7N69m/Lly3Px4kVmzpzJ8ePHKVasGO3bt2fw4MFYWVmxefNmNmzYQO3atdm2bRtmZmZ4enoSEBCApaUlRqORqKgo1q5dy82bN6levTr+/v7UqVPnodd/8+bNfP7558THx6PX62ncuDFBQUGULFmS0NBQTp8+jZWVFfv376dYsWJ06NBBHRnw448/EhQUxMWLF3F0dKRVq1aMHz8eCwtJ+54VudKiQAT9tcnUIYg8UhSFM1OnmjoMkQeKwYjdnYumDkPkkaIozAn51tRhiDwwYGThFNP3JIpn7/Dhw0RHR7N582acnZ2Jjo5m4sSJuLu7Y2lpWSDnLFGiBA0aNODw4cP06NGDxYsXs3HjRpYsWUKNGjXYvXs3vr6+rF27lrp16wLw22+/sXPnTgCuX79O7969GTlyJCtWrODvv//G19cXGxsb3nvvPVavXs3BgwdZvXo1pUuX5vjx43zwwQe88cYbNG3aNFssEyZMwM7OjqNHj6o97d7e3uh0OrZs2ULx4sVZuHAhffr0Ydu2ber77t69y/fff09aWhqrV68mNjaWBQsWEBwczNy5cxk9ejS9e/fmwIEDHDhwgMGDB9OhQwfKlSuX7fzDhw/Hzs6O3bt3Y2lpyfDhwwkMDGTevHnZ9hszZgxmZmbs2bMHg8HAmDFj1LKAe/fu0adPH9q2bcvChQu5desWw4YNw2AwqEntzz//jLu7OwcPHuTPP/+kd+/eNGvWjLZt2/L555+zcuVKwsLCqFKlCl999RV9+/Zl586dlCpVKsf1//3335k+fTqRkZHUrVuXq1ev0rt3byIjIxkxYgQAu3fvJjg4mFmzZvHdd98xcOBAWrduTf369Rk3bhzDhg2jU6dOXL58mffffx83Nze8vLzy/LMlnowk2KLAyJ16bftf3af0YGuVYpAa7MIg63dRRpNol8yHoH2Kojy213nPnj05XrO2tiY5OZn169fj4eFBt27d6NGjR46e3vzm4ODArVu3ANi0aRMff/wxtWvXBuCdd94hNjaWjRs3qgm2l5cXL7zwAgDR0dFUqVKFXr16AVC1alU++ugj1qxZw3vvvUf37t3p1KkTTk5OJCYmkpaWhp2dHdeuXXtsXJcuXeLo0aNs374dZ2dnIDO5jYmJ4cCBA9SrVw+Ajh07YmVlpQ5xr1q1Km+//TYAzZs3Jzw8nEGDBmFpaYmnpycACQkJ2RLs+Ph4jh49yq5du3B0dAQye9Rv376dLaZr167x3XffsXPnTrVu3d/fn7Zt2wKwf/9+9Ho9o0aNwszMjLJlyzJ8+HCGDRumJtg2NjYMGjQIMzMz6tatS40aNTh//jwAa9euZeDAgdSsWROArl27snHjRrZu3Uq/fv1yXP/q1auzbds2ypcvT3JyMomJiZQsWTLb9a1cuTIdO3YE4PXXX8fZ2ZkLFy5Qv359rK2t1c/SqFEjtfdePDuSYAvgf2tlSw22EEIIIUT+cHV1JTQ0lKioKJYvX46NjQ3e3t74+PgUaNJz69YtSpYsCcCNGzeoUKFCtu3ly5fn5MmT6vPSpUur/46Pj+ePP/7INvmXwWBQbxDdv3+fqVOn8uOPP+Li4kKtWrUwGo0Y/n8yv0e5ceMGQLZ4zM3NKVu2LPHx8WqC/c94gGwTtmVdtxIlSmR7/u/zX79+HSBb0u3s7Kwm9lmuXLkCZF6TLP+MLz4+nlu3btGoUSP1NaPRSHp6Ojdv3gTAyckp202TrKHhWe+fNWsWc+bMUbdnZGSoQ8T//Xl1Oh2RkZHExMRQrFgxatSoQWpqqnq8rM/xT5aWlurnX716NaGhoQQGBnL9+nVatmxJQEAALi4uiGdDEmwB5P9a2YqiPJczboonl1n3aZAebA1TDFKDXRgoiiLzIWiczIdQOOTWQ/04CQkJODk5ERERgV6v59ChQwwZMoTatWvTqlWr/A8SSEpK4vjx40yePBnITDAvXbqUbZ9Lly5lS+r+mRy6uLjQpEkTIiL+t8xjUlISd+/eBWDSpEmUKFGC7777DmtrawwGQ7bk81Gykt2LFy9SrVo1IPNvXEJCQrak8d89/E/T41+2bFkgsw0qV64MZM5ovm3bNnWoNcCLL74IZCbCL730kvrvLC4uLlSsWJFdu3apr6WmpnLz5k31JsajuLi4MGzYMLVHHDI//z9vGvzz861atYrvv/+emJgYdQj5oEGDnugzP3jwgDNnzhAQEICFhQXnz59n0qRJzJw5k0WLFj3RMUTeSYItCsbVc6aOQOSVYqB651amjkLkgWIwYCWTmmifmRkWyPA+rXseZnMWz15cXBxTpkxh9erV1KxZEycnJwB1yHJ+++uvv5g+fTrVq1enffv2AHTr1o3PPvuM+vXrU7NmTXbv3s3evXtZsWJFrsdo164d4eHhbN26lXfeeYdbt24xdOhQnJ2d+fTTT0lNTaV06dLodDpSU1PV19LT0x8bX+nSpXn99deZPn06c+bMUWuwFUXBw8OD1NTUfLsWZcqUoXnz5syePZvg4GB0Oh0hISHY29vniMnDw4OQkBB1YuDZs2er2z08PJg9ezbLly/nww8/JC0tDT8/P65cucLmzZsfG0f37t0JCwujZs2aVKlShYMHD+Lr68uCBQtyLTtITU3FwsICS0tLMjIy2L59OwcPHlSHyD+KmZkZo0aN4qOPPqJfv344OztjYWFRYD9vInfyzauIyBoC/jCJiYn5fk5zc/lCqGWKkrVuq7SjVsnau4WD1GBrn9Rga9/Tjsrz8vLiwoUL+Pj4kJSUhJOTE/7+/upQ6Lz66aefcHV1BTKHFpcqVYo33ngDX19fdRK1vn37YjAYGDlyJNevX6dSpUrMmzePxo0b53rMcuXKsXz5cubMmcP06dMxNzenVatWTJw4EcjswZ4yZQqNGzfGzs6OVq1a0bJlS06dOvVEMc+ePZs5c+bQqVMn7t27R/369Vm9ejUODg75mmADzJkzh+DgYNq0aUNGRgaenp7q5/inGTNmMGXKFFq1aoWjoyMdO3Zk3759WFpaYm9vz6pVqwgODmb58uUYDAaaNGlCWFjYE8XQp08fjEYjvr6+JCYmUqZMGaZMmfLQmv5+/fpx6tQpPDw8sLa2platWvTs2ZPDhw8/9lxWVlaEhYUxa9Ysli1bhrm5Oe7u7owZM+aJYhX5w8xolLWU8mLkyJF5HlqdH8fI6znyO4b7366TxEzj9PoMjNcvSztqmD49g2KN35Iv9Rqn1+sZXr2rJNgaloGBhSkn5HdRwxRFwe5fPZ+i8Pj+++9p2LAhNjY2QOZIgI4dO/LLL79gbW1t4uiE1kgPtigQimJQe0CFNimKgYyMDMwNkmBrlay9WzhIDbb2SQ22EM+3WbNm4eHhwdChQ0lLSyMsLIxmzZpJci2eiiTYAshcXiA/e7F1BpngTOuMBgNmd1OR2yTaZTAYMJf5ELRPMUgNdiEgNdjin2JjY5kwYcJDtzds2JBjx449dPvAgQOfeOIr8Xhz585l+vTpvPbaa+h0Olq2bJmtDluI/0ISbAGgTuqQn2RosbapNdiydqJm/a8GW9pQy7J+F6UHW7ukBlv78ntlFC8vL7y8vPL1mOLpVatWjdWrV5s6DFFIyLcuIYQQQgghhBAiH0gPtigQUoOtfYpiQJ+RIT3YGpZZg50hPdgapygGqcHWOKnBFkKIokMSbFEgdM26mDoEkUdGRaF4S/kyqGWKosgX+kLATFGwYLKpwxB5lLJwvKlDEHn0QmC4qUMQQmiAJNiiwMgXe23LqjeTdtQuacPCQdbB1j61BltGBGlW1pwWQgjxOPKXXgghhBBCCCGEyAfSgy0KhKIo+T7jpni2stpQej+1S9qwcJB1sLXPgFHmtBBCiCJCEuxCws/Pj7S0tIduT0xMfIbRgM2FI8/0fCL/KYqCoXpLU4ch8sgy7TakmzoKkRc6RZF1sAuBu+eumToEIYQQz4Ak2IVEWloa8+fPf+j2kSNHZnv+sIT8Ucf4r6TXTNukflf7pA0LB6nB1r7/1WBLG2qVYjCaOoRcKYrC2rVr2bp1KxcuXEBRFMqXL0/btm3p168fVlZWJo3vp59+YsCAARw/ftykceRV//79cXNzY9CgQUyYMAGA4ODgXPdt27YtAwcOpH379o89bo0aNYiMjKRJkyb/6X3i+SYJdhH1uIRcCCGEEEI8vxRF4eOPP+bKlSv4+fnh6uqKlZUVf/31F4GBgfz1118m/67n5uam+eQaYPny5U+87/bt25/qHE/7PvH8kQRbFAipwdY+RVFIl3VbNU1RFIzShponNdjal1mDbZAe7CIqNDSUjRs3cv/+fSpUqICvry+tW7fO83E3bdrEr7/+yvbt2ylTpoz6+quvvkpISAhffvmlOg/HjRs3CA4O5tChQ5iZmeHp6cm4ceOwt7fnyJEj+Pn50bNnT1auXElaWhq9evWiXr16zJ49m8TERFq0aMHcuXOxsrLC29ubRo0acejQIf78808qVqzI9OnTWb16Nfv27cPBwYEpU6bQqlUrjhw5wocffshff/0FwIkTJ5g2bRonT56kYsWKvP3222zYsIG9e/cC8MMPPzBv3jwuXLhAmTJlsvXoTpgwgXv37nH69GmSkpJYv349FStWzHZNjh07xsyZMzl79izVqlXjtdde45dffiEqKorNmzfz6aefqucC8Pb2pnHjxgwdOpSMjAwWL17M5s2bSUlJ4ZVXXmHy5MnUrFkz234At27dwsfHh59++oly5coxatQo3N3dAfD09GTIkCF07tyZa9euERQUxG+//cbNmzcpVaoUPj4+dO3aNUd7/vN9P/74I0FBQVy8eBFHR0datWrF+PHjsbCQ1E0LpJVEgdA5lTN1CCKPjIpi8qFlIu8sbYuZOgSRV1KDXSgUL2ln6hCECRw+fJjo6Gg2b96Ms7Mz0dHRTJw4EXd3dywtLfN07B07duDp6Zktuc7y0ksvqeWBBoMBX19fKleuTGxsLOnp6fj5+TFlyhTmzZsHQHx8PNevX2f//v388MMPfPzxxzRv3pz169dz584dunTpwo4dO+jYsSMA0dHRrF69mooVK9KvXz969uzJggULCA4OZt68eUybNo1WrVpliyk1NZX+/fvTo0cPVq9ezfnz5xk0aBBmZpk3nk6ePImPjw8hISG0bt2aX3/9FV9fXxwdHWnZMnNOmIMHDxIdHY2LiwsvvPBCtuPfunWLQYMGMWDAAPr27cvPP/+Mr68vtWrVeqLrGRYWxrZt24iIiOCll17i008/ZeDAgdkS8izfffcdCxYsIDQ0lG3btuHr68uOHTtyJPyTJk3CwcGB7du3Y2VlRWRkJNOmTaNNmzbY2T38b8K4ceMYNmwYnTp14vLly7z//vu4ubnh5eX1RJ9FmJYk2KLASK+Ztkn9rvZJGxYOUoOtfVKDrX2KwfjYXuc9e/bkeM3a2prk5GTWr1+Ph4cH3bp1o0ePHmpSmRdXr16lbt262V7z8vLi5s2bADx48IAVK1ZgbW3NH3/8wcqVK9Wkbvz48bz99ttMnjxZfe/AgQOxtLSkRYsWALz//vuUKFGCEiVKUK1aNS5fvpztPFWrVgUyh4HfuXOHN954AwB3d3dWrlyZI969e/dibm7O0KFD0el01KhRg/79+xMREQHAunXraN26NW+99RYADRo0oHv37qxdu1ZNsOvXr0/16tVzvR779u3D1taWAQMGYGZmRpMmTejSpQt//vnnE13PLVu2MHDgQPVz+fj48Prrr2M05qy/9/DwUOPs2LEj69atY8eOHQwaNCjbftOnT8fOzg5LS0sSEhKws7MjLS2N5OTkRybY1tbW7Ny5EwcHBxo1asSBAwfQySoEmiEJthBCCCGEEAXA1dWV0NBQoqKiWL58OTY2Nnh7e+Pj45PnhMnZ2Zlr17LPTh8bG6v+u0aNGhgMBi5fvoyiKLz++uvZ9rWysuLSpUvqc0dHR+B/N2X/2UOs0+myJZoODg7qv83NzSlRosRD981y9epVXnzxxWyfu0KFCuq/4+PjOXz4MG5ubupriqJk6xUuXbp0juNmuXnzJmXLls128+Kll1564gT7+vXrvPjii+pzKysr6tevn+u+5cuXz/a8bNmyOdoC4NKlS8yePZsLFy5QuXJlKlWqBGSOKniU1atXExoaSmBgINevX6dly5YEBATg4uLyRJ9FmJYk2KJASA229imKQobU72qa1GAXDlKDrX1Sg1045NZD/TgJCQk4OTkRERGBXq/n0KFDDBkyhNq1a+cYQv1fvf322yxYsICbN2/i5OT00P1cXFywsbHhyJEj6v8Her2eS5cuUalSJY4dOwbwn3rVn6YH/sUXXyQhIQGj0ai+PyEhIVucnTp1YurUqepriYmJ2ZL1R523QoUKxMfHYzAY1CT+6tWr6nadToder8/2nqSkJPXfZcuW5cqVK+rz9PR0QkJC6N+/f45z/Xv520uXLlG7du1sr6WnpzNw4EBGjRpFz549MTMz4/fff2fr1q0P/QyQOfLgzJkzBAQEYGFhwfnz55k0aRIzZ85k0aJFj3yveD5Igi0KhLmVralDEHmlKOikBlvzzL7bwPO5uIx4UkaDQWqwC4ESL5Y0dQjCBOLi4pgyZQqrV6+mZs2aaiKc1VucFz169GDfvn307t2b8ePH06RJEywsLIiLiyMsLAwrKytKlChB1apVqVSpEsHBwYwYMQJzc3OCg4PZs2cP33zzTZ7jeFKenp4EBwezdOlSPvroIy5fvqwODwfo2rUrffv25a233qJZs2ZcvHiRjz/+GA8PD/z8/B57/FatWhESEsKiRYvw9fXl9OnTREdHU61aNQCqVKnCjRs3OHz4ME2aNGHr1q2cPXtWfX/nzp2JiIigUaNGVKhQgWXLlvHNN98wduzYHOfas2cPBw4coFmzZmzZsoWzZ8/Srl27bPukp6eTlpaGjY0NZmZmJCQkEBISom57GDMzM0aNGsVHH31Ev379cHZ2xsLCIl9+ZsSzIQm2KDDSa6ZtUr+rff9rQ0nOtEz5/6GE0oOtXf+rwZbfRa1SHjOk92G8vLy4cOECPj4+JCUl4eTkhL+/P/Xq1ctzTBYWFnz22Wds2LCBJUuWMGbMGB48eECZMmVo2bIlO3bsUIdgL1u2jFmzZvHWW2/x4MED6taty8qVK7G2ts5zHE+qWLFiLFmyhKlTp7Js2TIqV65M8+bNOXToEAD16tVj3rx5zJs3j+HDh2Nra8u7777LqFGjnuj4tra2rFixgqlTp9K8eXMqV67Ma6+9ptakv/rqq/j4+DBhwgTu3r3LG2+8kW3SsP79+5ORkcFHH31EcnIyr776KuHh4blORte6dWvCw8MZMWIEVapUISIiIsdkc8WKFWPmzJksXLiQ6dOn4+TkRPfu3Tlz5gynTp3ipZdeyvVzWFlZERYWxqxZs1i2bBnm5ua4u7szZsyYJ7oOwvTMjLkVSYgnNnLkyDyvMfgsjvHv7f9+7ufnl69rYz+4fFISM43T6/UYnSpJO2qYXq/HLHaZJNgap0/PYNz7YZJga1gGBiZPelMSbA1TDAYqTYt4/I7ioZKSkjh37hwNGzZUX4uKimL79u2sW7euQM4ZGhrK0aNHiYqKKpDjC5Eb6cEWAPmaXIPUYBcGUoOtfYqiYMjIwNwgX+q1TDEYpAZb4zJrsDMkwRZFmqIo9O7dm8WLF/P6669z+fJlPv/8c3XpLyEKC0mwiwgbGxt1PUTIOTlDfjM6VSrQ44uCZ1QUrCS51jybFyubOgSRR4oiNdiFQeU+H5s6BPEciY2NZcKECQ/d3rBhQ3XysdwMHDgwx5JQz7tSpUqxYMEC5syZw4gRI3jhhRfo1KkTH330kalDEyJfSYJdRAQFBWV7npVsZw0NL4iEW3o+tU1qsLVParALB0WRGmytU2uw5e+pZuX3qDwvL69s9b9FxRtvvKGul/0sDB069JmdS4gs8q2riMsaGl66dOknmqFRCCGEEEIIIUTupAdbqNLS0vLtWFKDrX1ZbSg9LtqVuQ52hvRga5yiSA221hkwopc5LTQv51zSQgiRkyTYokDYJp40dQgijxRFQSlf19RhiDyyefkVU4cg8khRFKnBLgTMEs7xdAs9iedGLXdTRyCE0ABJsAWQOQnaxYsX8/WYcqde26QGW/ukDQuHrHaUHmzt+l8Nttwo0aqsuRCEEOJx5C+9ADInQStdurSpwxBCCCGEEEIIzZIebFEgpAZb+xRFkZpBjZM2LBwURZEabI3LrMGW+RCEEKIokARbqGxsbPLtWLoHqfl2LGEaRkXBysrK1GGIPLJKvwvppo5C5InUYBcKtmXKmjoEIYQQz4Ak2EL177Wy80p6zbRN6ne1T9qwcJAabO2TdbC173kclRcaGsrRo0eJiorKsa1GjRpERkbSpEkTJkyYQExMjHrT3Gg0UqFCBYYMGZLrWtxdu3blr7/+Yu/evTg7O+d67r///pvu3buzadMmypcvn21bbGwss2fPZs+ePeprrq6u2fYxGAykpaUxd+5cXFxcGDBgQLbt6enppKen8+2331KmTBn19Xv37tGlSxfeeeedAlnj+ubNm0yePJmjR49ibm5O+/btGT9+PBYWmSnTr7/+yvTp0zlz5gyOjo74+PjQrVs3AB48eMDs2bPZtWsX9+7do1q1aowcOZKmTZsCcOPGDZo3b06xYsXU8zk6OrJ3797HnnvKlCnExMRkizUtLY1mzZoREREBZF730NBQLl++jLOzMwMHDqRr165PdO4dO3YwZswYrK2t1e1vvPEGISEh+Xp9iwpJsIUQQgghhCjE2rVrR3BwMJCZ3G7dupVRo0axY8cOKlWqpO7366+/cvXqVdzd3VmzZg0jR47Mcaw9e/YwefJkbt++ne319PR0Vq1axYIFC7IlxQDHjx/P9nzcuHHcvHmTt99+GwsLi2zbU1NT6dGjB23bts1xnMDAQC5cuPA0l+CJjBgxgjJlynDw4EFu3LiBj48Pq1aton///iQnJ/Pxxx8zbNgwevTowY8//sjgwYOpUaMGdevWZf78+fz66698+eWXODk58cUXX+Dr68t3332HnZ0dcXFxlCtXTk1q/8u5p06dytSpU9V9v/vuO0aPHs2ECRMAOHz4MBMmTGDBggW4u7tz5MgRBgwYQPXq1albt+5jzx0XF0eHDh3yvbOtqJIEu4iysbFh5MiRJCYmFsjxpQZb+xRFIV3qdzVNarALB6nB1j5ZB7toCw0NZePGjdy/f58KFSrg6+tL69atTRaPTqejY8eOBAUFceLEiWwJ9po1a3j77bfx8PBg1KhRDBo0CFtbW3X7p59+ys6dOxk5ciSTJk3Kdtx+/fphbW3NgAED2Lp160PPv3nzZn744QdiYmLUnuF/mj59OmXKlMHX1zfH+xISEmjQoMEjP9/p06cJCAjg1KlT2Nvb07hxYyZPnoy9vT3e3t7Url2bo0ePcu7cOV5++WX8/f1xc3Pj77//5ujRo3z77bfY2tqqbRUSEkL//v3ZvXs3Dg4O9OrVC4CmTZvSrl071q5dS926dRk7dix6vR5bW1vu3bvH7du3KV68OJaWmSuox8XFUadOnVxjfty5/+nWrVuMGTOGiRMnUq1aNQBWrVrFhx9+yOuvvw7Aa6+9xqZNm9QJjB917qztbdq0eeR1FU9OEuwiKusOVW53JvODoXrLAjmueHYMioLtH9+YOgyRB4qigOs7svauxhmkBrtQML+bbOoQhAkcPnyY6OhoNm/ejLOzM9HR0UycOBF3d3c18XrWMjIy+OabbzAzM6Nx48bq6zdv3iQ2NpYtW7bw8ssv4+TkxKZNm/jggw/Ufbp168bgwYOJj4/PcdyQkBBcXFzYvHnzQ8+dkpLCrFmz+OSTT3B0dMyx/aeffmLHjh3s3Lkz2+tnz54lNDSUdevWMWbMmEd+vsDAQJo2bcqaNWtISkqid+/ebNiwgb59+wIQHR1NWFgYDRo0ICIiAh8fH3bv3s3p06dxcHDI1mtepUoVEhISuHPnDqdPn6Z69erZzlW1alU2btwIZJaA2NraEh0dzSeffIKFhQVz5sxRh+bHxcWRnJzMu+++y40bN3j11VcZP348VatWfey5X3jhBfX1OXPmUKdOHdq3b6++9ttvv9GkSRM+/vhjfv31V1xcXBg6dKga76PObTAY+OOPP7C1tWX58uUoisLrr7/OmDFjKFGixCOvtcidJNh5lNUTnBcF1YtsanKnXtukflf7pA0LB6nB1j5ZB1v7FMXw2F7nf9YcZ7G2tiY5OZn169fj4eFBt27d6NGjB2Zmz/b3edu2bXzzTeZN8/v375ORkUH//v2zJbnR0dE0btyYKlWqAODt7U1ERAQ9e/ZEp8v82f33kO1/cnFxeWwckZGRlCtX7qG9paGhobz//vuUK1dOfS0tLY0RI0YwadKkR54/i7W1NQcPHqRKlSo0bdqUr776So0foEuXLrz22msADBo0iC+++IJ9+/apCfI/ZT2/d+8ed+/ezbHdxsaGe/fuZXutY8eOdO7cmd27dzNmzBicnZ1p2LAhL7zwAlWrVmXAgAFYWVmxcOFC+vbty44dO3I99j/PnZVgX7p0ia1bt7Jhw4Zs+yYnJxMREUFoaCivvvoqe/fuZeTIkaxZs4Z69eo98twPHjygVq1aeHl5sWjRIpKSkhg/fjxjx47ls88+e+z1FjlJgp1H+VGrUFC9yE/Kz8+PtLQ0AObPn2/SWIQQQgghCgtXV1dCQ0OJiopi+fLl2NjY4O3tjY+PT7ak72lYW1uTkZGR4/Ws1/45YdW7776r1mAbjUaOHz/OqFGjMBgMjB8/noyMDNatW8edO3do0qQJkFmrfefOHb7++utcJ0P7r4xGIxs3bmTYsGG53mC4ePEiR48eZcaMGdlenz59Ok2aNHniYfULFiwgNDSU+fPnM2rUKBo0aEBAQIA6nLpy5crqvmZmZri4uHD9+nVefvll7t+/n+1YWc/t7OywtbUlJSUl2/a0tDTs7OyyvZZ13du2bcuXX37Jzp07adiwIXPnzs22n5+fH5s2beKnn36iWLFijzx3lk2bNuHq6sorr7ySbV8rKyu6dOmiTib31ltv0bRpU2JjY6lXr94jz+3h4cHatWvVbba2towdO5bu3buTmpqKvb39vy+xeAxJsAVpaWn5nlhLDbb2ZdbvpmNuLu2oVYpiQJG6T82TGmztk3WwC4fceqgfJyEhAScnJyIiItDr9Rw6dIghQ4ZQu3ZtWrVqlad4XFxcSEhIyPH633//DUDZsrkvDWdmZkaDBg14++23OXDgAOPHj+frr79Gr9ezffv2bP9nLFy4kJUrV+ZLgh0XF6dObJab2NhYGjRokGNW8q1bt2JpacmXX34JZPbo/vLLL+zevTvHzNoGg4ETJ04wdOhQ/P39uXLlCkFBQUyYMIFNmzYBcO3atWz7JyQkULZsWapVq8bt27e5ceMGpUqVAjKHpru4uFC8eHGqV6/O999/n+18Z86cURP3ESNGUL9+ffr06aNu1+v1ODg4kJqayuLFi/nggw/U3nlFUcjIyMDGxoayZcs+8txZdu/eTb9+/XJcuypVqqDX67O9pigKRqPxsec+efIk27ZtY/To0eqND71ej06nk+Van5Ik2KJA2Fz8ydQhiDxSFAWD27umDkPkhaJgJcl1oSA12Npn6dHL1CEIE4iLi2PKlCmsXr2amjVr4uTkBJBr/fF/5e7uzsyZM5k/fz4DBgzAzs6OS5cuERQURIsWLR45nPrs2bN88803NGvWDMic3Kxdu3bZhmZD5jDxTp068fPPPz92crHHOXbsGLVr184xFPqf293c3HK8/ttvv+WIqXHjxrku06XT6Zg+fTqNGzdm3LhxlCxZEmtr62zXe8OGDXh5eVG9enWWLVuG0WjEw8OD4sWL07BhQ2bOnMnUqVNJSkpiyZIl6lJXb775JiEhIaxatYpevXpx7NgxYmJiWLJkCZA5WuGzzz6jadOmVKlShS1bthAXF8e0adOwt7fnhx9+ID4+nhkzZqDT6Zg1axbly5fHzc0NS0vLR54bICkpibNnz9KoUaMcn/v9999n2rRptGzZktdee42vv/6aI0eOMGrUqMee++bNm6xdu5YSJUrQt29fEhMTCQkJoVOnTpJgPyVJsEWBkV4zbZP6Xe2TNiwcpAZb+2QdbO172lF5Xl5eXLhwAR8fH5KSknBycsLf35969erlOSYHBwciIyOZP38+b7zxBmlpaTg4OPDGG28wYsSIbPvGxMQQGxurPi9evDheXl6MGTOGkydP8tNPP+WYFRygVq1a1KlThxUrVuQ5wb506dIjk/7Lly/j7u6ep3NA5hDxadOm0aJFCwwGA40aNWLatGnq9saNGzN16lTOnDlDrVq1WLFihdpLvGjRIqZOnUrr1q3V2dazZjN3dHRkxYoVzJgxg0WLFlGyZEkmTZqk1nN/+OGHPHjwAB8fH1JSUqhZsyarVq2iYsWKACxZsoSgoCDeeOMN0tPTadKkCeHh4epkd486d9b1gdzr4Lt06YJOpyMoKIjLly9Trlw55s+fT+3atR97bhcXF5YtW8a8efMICwvD2tqatm3bMnbs2Dy3RVFlZjQajaYOoqgbOXJknodoP+0xsuq/83uIuD5uj3yR0Di9Xo+hajNpRw3LWhZI2lDb9Ho9YxzqSoKtYRkYWJhyQn4XNUxRFOykFlXzHtX7LUR+kR5sUSCkBlv7ZB1s7cv6PZQ21DapwdY+WQdbCCGKDkmwRYGwsLV7/E7iuWamKJgbH0DOCUqFRugUBbNiDqYOQ+QDqcHWPlu9rIOtefm4JnBsbCwTJkx46PaGDRty7Nixh24fOHAggwYNyrd4hBD5RxLsIs7GxoaLFy8CmVP258eyY1nkTr22Sf2u9kkbFg5Sg619UoOtffk9Ks/LyytfZuYW/01UVJSpQxBFgNwSL+KCgoIoXbo0gLoWthBCCCGEEEKI/056sEWBkBps7VMUhQypGdQ0RVEwSBtqntRga5/UYAshRNEhCbYoGA4vmjoCkVeKgkVxJ1NHIfLATFGw0klSpnlGM6nBLgQsSjibOgQhhBDPgCTYosDInXptk/pd7ZM2LBykBlv7pAZb+2RUnhDiScktcSGEEEIIIYQQIh9ID7YG+Pn5PXYCssTExGcUzZORGmztUxQFRWoGNU1RFJQMg7ShxkkNtvZJDbYQQhQdkmBrQFpaGvPnz3/kPiNHjnzq49vY2DBy5Mh8TdLNLa3y7VjCRHQKVvdvmDoKkQeKomCZcd/UYYg8UhRFarALAUtbe1OHIIQQ4hmQBFuoa1/nJUnPjdyp1zap39U+acPCQWqwtU9qsLVPRuUJIZ6U3BIXqj///NPUIQghhBBCiCek1+tZtmwZ7dq1o2HDhjRr1gwfHx/++OOPHPtmZGTg7u5Os2bNePDgQa7HO3bsGEOHDqVFixbUq1ePli1bMm7cOC5cuPDIOC5dusSAAQNo3LgxTZs2Zdy4cdy5c0fdvnPnTtq1a4erqyutWrVi0aJFGAyGPH323Ny8eRNfX1/c3Nxo0qQJM2bMICMjQ93+66+/0q1bN1xdXfH09GTDhg3Z3r9lyxbefPNN6tevT+fOnTl+/Hiu55k/fz6enp7ZXjt06BDdunWjQYMGNG/enGnTpmUr8fzkk0+oU6cOrq6u6iM6Olrd3qZNG+rVq5dt+9mzZwG4ceMGNWrUyLbtn+ffsWMHtWrVyrZ97NixT38hRZ5ID7ZQ5ecfOqnB1r7MNkyXHhcNUxQFo9R9ap7UYGuf1GCLgvDgwQO8vb2xsrJi1qxZ1KxZk/v37xMZGckHH3zA6tWrqVu3rrr/7t27KVOmDIqi8NVXX9G9e/dsx9uyZQuBgYEMHjyYiRMnUqZMGa5du8aaNWvo0aMHW7dupUyZMrnGMmrUKNzc3FiyZAl3795lyJAhBAcHM3PmTE6ePMnYsWNZunQpLVq04MKFC3zwwQeUK1eOLl265Os1GTFiBGXKlOHgwYPcuHEDHx8fVq1aRf/+/UlOTubjjz9m2LBh9OjRgx9//JHBgwdTo0YN6taty5EjR5g2bRrh4eHUrVuXtWvX4uPjw759+7C1tVXPcejQISIiIihdurT62q1btxg4cCABAQF07NiRGzdu8NFHH/HZZ58xbNgwAOLi4pg2bRqdOnXKEXdqairnz59nz549lCtXLsf2uLg4ypUrx969e3P93HFxcXTo0EEdlSpMSxJsUTBKuJg6ApFXioLN9VMg90k0S6coWJgpYJBG1DIzg9RgFwZ2SedNHYLIqxINn+ptoaGhbNy4kfv371OhQgV8fX1p3bp1nsOJiori8uXL7N69G3v7zBp/Ozs7fHx8uHPnDqdOncqWYK9Zs4Z33nkHOzs7Vq5cSbdu3TAzy7xxd+fOHQIDAxk3bhw9e/ZU3+Pi4sKYMWOwtrYmKSnpoQn22bNnadiwIUajEaPRiJmZmZqU1qxZk8OHD2Nvb4/BYCApKYn09HQcHR1zPdbp06cJCAjg1KlT2Nvb07hxYyZPnoy9vT3e3t7Url2bo0ePcu7cOV5++WX8/f1xc3Pj77//5ujRo3z77bfY2tqq1zokJIT+/fuze/duHBwc6NWrFwBNmzalXbt2rF27lrp167Jhwwbatm1Lw4aZ7dynTx+io6PZsWOHeiPgxo0bTJo0CW9vb2JjY9WYS5YsyQ8//IC9vT1Go5Hbt2/z4MEDSpYsCWSONDh16hR16tTJ9TP//vvvODg45JpcQ2YC/bD3Zm1v06bNQ7eLZ0sSbFFg5E69tkn9rvZJGxYOUoOtfVKDrX2Kojw2Kd6zZ0+O1w4fPkx0dDSbN2/G2dmZ6OhoJk6ciLu7O5aWlnmKae/evbRq1UpNrv9p/Pjx2Z6fPHmSEydOEBYWhpWVFXPnzmX//v14eHgAsG/fPjIyMujcuXOu5xo6dOgjYxk6dChz584lMjISRVGoX78+Y8aMUbfb29uTlpaGm5sb6enptGnTBnd391yPFRgYSNOmTVmzZg1JSUn07t2bDRs20LdvXwCio6MJCwujQYMGRERE4OPjw+7duzl9+jQODg7ZbgJUqVKFhIQE7ty5w+nTp6levXq2c1WtWpWNGzcCcObMmRw96lWrVuXkyZNA5kjPMWPGMGDAAKysrLIl2FmfEeD111/n2rVruLm5qdfz5MmTZGRksGjRIo4dO0bx4sXp0qUL/fv3R6fTERcXh62tLR988AGnT5+mXLlyDB06VG2fuLg4kpOTeffdd7lx4wavvvoq48ePp2rVqhgMBv744w9sbW1Zvnw5iqLw+uuvM2bMGEqUKPHIdhMFQ26JC1VqaqqpQxBCCCGEKDSsra1JTk5m/fr1nDhxgm7dunHo0KE8J9eQOSzZ2dn5ifaNioqiQ4cOlChRAltbW7p168aKFSvU7deuXcPBwQEbGxv1tU8//RQ3Nzfc3NyoX78+kyZNeujxzczM8PHx4aefflKHMU+ZMiXbPlZWVvz888/s2rWLM2fOMG3atFyPZW1tzcGDB9m1axc6nY6vvvpKTa4BunTpwmuvvYaVlRWDBg3C1taWffv2cffu3WxDuQH1+b1793LdbmNjw7179wAeuz0sLIzixYvz3nvvPfQ6QOZQ/G+//RadTqcOD09JSaFx48Z4e3tz4MABQkJCiIqKUtvAzMyMV199lenTp3Pw4EH69OnD0KFD+eWXXwB44YUXaNiwIZGRkXzzzTdUrlyZvn37kpKSwq1bt6hVqxZeXl7s2LGDdevWceHCBanBNiHpwRaq/Phjn0VqsLVPURSpGdQ4RVEwKNKGWic12NonNdiFQ2491I/j6upKaGgoUVFRLF++HBsbG7y9vfHx8UGny1s/l7Oz80OXWE1OTsbW1hYrKytu377Ntm3b0Ol07Nq1C8ic8Cw1NZXff/+dOnXq4OzszO3bt9Hr9VhZZS61OmTIEIYMGQLAhAkT1MnCXF1d1fM0bNiQESNGsHDhQn788UcsLCwoVqwY48aNo1evXnzyySdqz65Op8PKyoqXXnoJX19fJk+eTGBgYI7YFyxYQGhoKPPnz2fUqFE0aNCAgIAAqlWrBkDlypXVfc3MzHBxceH69eu8/PLL3L+ffWnKrOd2dnbY2tqSkpKSbXtaWhp2dnZAZjL+z0nJsrY7Ojry448/snnzZjZv3vyw5lDZ2NhgY2PD2LFj6datG8nJyTRv3pzmzZur+9StW5fevXuzY8cO+vfvT//+/bMdo3379mzbto3Y2Fjq16/P3Llzs2338/Nj06ZN/PTTT3h4eLB27Vp1m62tLWPHjqV79+6kpqbmOsJBFCxJsIXK2to6345lYcx4/E7iuWZmVLAo8WR3xsXzyUxRoGQFKaPXOFkHu3Awd65o6hCECSQkJODk5ERERAR6vZ5Dhw4xZMgQateuTatWrfJ0bE9PT5YvX55rEjVx4kTu379PREQEGzdupGLFioSHh2fbx9/fn5UrVzJ37lxatWqFTqfjyy+/zDH52b/9e2btr7/+OvOG7j8my7W0tMTMzAxzc3N27txJZGQkX3zxhbpdr9fnOnzZYDBw4sQJhg4dir+/P1euXCEoKIgJEyawadMmILO3/Z/7JyQkULZsWapVq8bt27e5ceMGpUqVAjJrw11cXChevDjVq1fn+++/z3a+M2fOqIl7tWrVOH36dI7t7u7ubN26lVu3bqllAunp6Tx48AA3NzeWLl2KTqfD39+frVu3qjco9Ho9lpaW2Nra8s0333Djxo1svd96vV4dMRAREUGtWrVo2rRptu3W1takpqayePFidWI4+P8brxkZ2NjYcPLkSbZt28bo0aPVmnq9Xq/e0BDPniTYosDInXptk/pd7ZM2LBykBlv7pAZb+552VF5cXBxTpkxh9erV1KxZEycnJ4CHTvD1X/Ts2ZMvv/wSHx8fJk6cSI0aNbh9+zYrVqzg+++/Z9WqVRgMBj7//HM+/PBDXFyyT0D73nvvMXLkSEaPHs2LL77I1KlTCQwMJCUlhY4dO+Lk5MS1a9fYvHkzO3fupHfv3rnG0bBhQ2xtbZk5cyZ+fn6kpqYyd+5c3nzzTWxtbdXh5StXruTDDz/k3LlzLF68mPfffz/HsXQ6HdOnT6dx48aMGzeOkiVLYm1tne16bdiwAS8vL6pXr86yZcswGo14eHhQvHhxGjZsyMyZM5k6dSpJSUksWbKErl27AvDmm28SEhLCqlWr6NWrF8eOHSMmJoYlS5YA0LVrVwYPHkybNm1o2LAha9eu5ebNm7z55pt069Yt25D2zZs38+mnn6rD4e/evUtaWhpz585l9OjRXL9+nVmzZtG1a1esrKwwGo0EBQVRqVIlXnvtNX755RciIyPx8/MD4MqVK2zYsIHw8HDKli3Ll19+yfHjxwkMDMTe3p4ffviB+Ph4ZsyYgU6nY9asWZQvXx43Nzdu3rzJ2rVrKVGiBH379iUxMZGQkBA6deokCbaJSIIthBBCCCFEAfDy8uLChQv4+PiQlJSEk5MT/v7+1KtXL8/Htra2Zu3atSxevJhhw4Zx48YNbGxsqF+/PmvWrKF27drs2bOHxMRE2rdvn+P9np6eODo6snr1avz8/OjYsSNVqlRh1apVrFq1ipSUFDVBXrBggTrh1r+VLFmSiIgI5syZQ8uWLbG2tsbT01OtAS5btizh4eHMnj2bTz/9lFKlStGrVy8+/PDDXI+3YMECpk2bRosWLTAYDDRq1Chbctu4cWOmTp3KmTNnqFWrFitWrKB48eIALFq0iKlTp9K6dWt0Oh0dO3bE19cXyLypsWLFCmbMmMGiRYsoWbIkkyZN4rXXXgMyZxX/5JNPCAgI4Nq1a1StWpXw8HAcHBwe2xZ2dnYsX76cmTNn0rx5c4oXL067du0YPHgwkJnc+/n5qccuVaoUQ4cOpUOHDgCMGzcOnU5Hz549SUlJoWrVqnz22WdUqlQJgCVLlhAUFMQbb7xBeno6TZo0ITw8HEtLS1xcXFi2bBnz5s0jLCwMa2tr2rZtKzXYJmRmNBqNpg6iqBs5ciTz589/6u1Pus/j9OrVK1sNR16k3My9Jkhoh6Io6O7elB4XDVMUBaXEi9KGGqcoCqOd6kkPtoYZMDI//lv5XdQ4+zIyzN/UvL29ady48WNnNRfClKQHW6hKly6db8fSWRfLt2MJ0zAqCtZpN5GFsLXLDAVzS/kzr3lGM6nBLgRslPvy51QIIYoA+eYlCozcqdc2qd/VPmnDwkFqsLVParC1L79XRomNjWXChAkP3d6wYUOOHTv20O0DBw5k0KBB+RqTECJ/SIIthBBCCCHEM+Tl5YWXl5epw9CcqKgoU4cgxGNJgi0KhKyDrX2yDrb2KYpChrSh5sk62Non62ALIUTRIQm2UGWtxZcfLMxk7jytMzMzonOpjrSkdhkVBZuMe6CkmzoUkQc6WQe7ULCS+RCEEKJIkL/2QhUUFJSvx5M79dom9bvaJ21YOEgNtvZJDbb2yag8IcSTklviQgghhBBCCCFEPpAebFEgpAZb+xRFIcMoNYNapigKRqn71DypwdY+qcEWQoiiQxJsUSB0ltamDkHkkVGnyJfBQsC8uJOpQxB5ZCY12IWCzGkhhBBFgyTYosBIcqZtUr+rfdKGhYPUYGuf1GBrn4zKe/5duHCBypUrmzoMIeSWuBBCCCGEEFoTGhrKK6+8gqura47HpUuXTBbXkSNHqFGjBgAJCQm4urqSkJAAQI0aNThy5Ei+n3Pv3r189NFHT/3+rVu30rZt23yMKP8ZjUbCw8Px9PSkQYMG9OnTh1OnTqnbFUVh1qxZNGvWDFdXV3x8fEhMTFS337x5E19fX9zc3GjSpAkzZswgIyND3f7JJ59Qp06dbD9H0dHRADx48IBp06bRvHlzXF1d6d69O4cOHVLfm5KSwqRJk2jatClNmjTBz8+PO3fuqNv/+OMPevXqhZubGy1atGD69Ono9Xp1+/bt22nTpg0NGjTAy8uLL774Ittnb9OmDfXq1csW29mzZ/Pv4uYz6cEWBUJqsLUvqw2lx0W7pA0LB6nB1j6pwRYFxc3NjaioKFOH8VAvvvgix48fL/Dz3L59G6Px6Ysw2rdvT/v27fMxovwXFRXF8uXLCQsLo27dunzxxRd8+OGH7Nixg5IlSxIWFsb333/Ppk2bKF68OJMnT2bSpEl89tlnAIwYMYIyZcpw8OBBbty4gY+PD6tWraJ///4AxMXFMW3aNDp16pTj3PPnz+fXX3/lyy+/xMnJiS+++AJfX1++++477Ozs8PPz49q1a2zevJkXXniBKVOmMHjwYKKiojAYDAwcOJCPP/6YqKgoEhMT6dOnD46OjgwePJhTp04xceJEVq1aRf369fn555/58MMPqVatGm5ubqSmpnL+/Hn27NlDuXLlnuk1f1qSYIsCIV8iCocxDnVNHYLIAwNGPv1+vqnDEHmkKAoVra1MHYbIA4PRiNWh9aYOQ+RV20FP9bbQ0FA2btzI/fv3qVChAr6+vrRu3Tqfg8spq8czJiaGK1euYGZmhru7OzNmzMDGxgaj0UhUVBRr167l5s2bVK9eHX9/f+rUqQPArVu3mDlzJgcOHECn09GsWTMCAgIoUaIEP//8MwsWLODcuXMkJydTrVo1pkyZQv369bPFcPnyZVq3bs2ePXsoX748AN999x0BAQHcunWLJk2aMHnyZJydnQHYuHEjn3/+OfHx8ej1eho3bkxQUBAlS5YEYPXq1axZs4YbN27w0ksvMXbsWHQ6HZ988gnp6em4urqya9cuHB0dCQsLY+vWraSkpFCvXj0mTZpEpUqVgMyedG9vb2JiYnB1deWtt97i008/Ze/evRw5coQPP/yQv/76S/0cEyZMACA4OJjQ0FDOnDmDjY0NX3/9Nfb29vj5+XHu3DnWrl1LRkYGffr0wdfXN9d2edjPw5EjRxg7dixdunTh888/BzIT/7Fjx2JlZcW2bdvw9vamQYMGAHh7e/P555+za9cuevbsyYYNGxgzZgxly5YFYOLEibRo0YJLly5hMBg4evQo3377Lba2tup5Q0JC6N+/P3q9nlOnTqlt/29jx45Fr9dja2vLvXv3uH37NsWLF8fS0pL79++zZ88eIiMj1XP7+fnRvHlzzp49S8mSJbl+/ToGg0G9CaLT6bC1tQUyh/ZnZGSo283MzDA3N8fKKvP/vd9//x0HBwfNJNcgCbYoQJJka5vUfWqf1H0WDurvopn8LmqVwZj1uyiVeVqlKIbHJsV79uzJ8drhw4eJjo5m8+bNODs7Ex0dzcSJE3F3d8fS0rKgwgVg586dREZGsmbNGipXrszZs2fp2bMnMTExdOvWjc8//5yVK1cSFhZGlSpV+Oqrr+jbty87d+6kVKlSDB8+HDs7O3bv3o2lpSXDhw8nMDCQmTNn4uPjw7Bhw3j//fdJS0vD39+f2bNnq4nhoxw4cIDly5dTokQJxo4dy5gxY1i9ejW//fYb06dPJzIykrp163L16lV69+5NZGQkI0aMYPPmzSxZsoSlS5dSr149Nm3ahI+PD/v37ycwMFBNkAFmzZrF4cOHWbVqFaVLlyY8PJx+/fqxY8cOrK0zJ+K9ePEi+/fvJz09nW+++eY/XdvY2FgWLFhAcHAwc+fOZfTo0fTu3ZsDBw5w4MABBg8eTIcOHXIkhY/6eQC4du2a2lt748YNBgwYgJ2dHSNGjEBRFIoVK5bteDqdjnPnzpGSksLVq1epXr26uq1UqVKUKFFCvVHg4OBAmTJl1O1VqlQhISGBO3fuqEnuokWLOHbsGMWLF6dLly70798fnU6Hubk5tra2REdH88knn2BhYcGcOXOwsrLi7t27GI1GNWHOigvg3LlzVKlShT59+jBr1ixmz56Noii0bt2aPn36ANCiRQvq16/P+++/j7m5OYqiMH78eOrWzezkiYuLw9bWlg8++IDTp09Trlw5hg4dioeHx39qs2dJ/tIXUX5+fowcOTLHQwghhBBC5A9ra2uSk5NZv349J06coFu3bhw6dCjfkutjx47h5uaW7bF+feZoCXd3dzZu3EjlypW5desWSUlJODg4cO3aNQDWrl3LwIEDqVmzJpaWlnTt2pUqVaqwdetW4uPjOXr0KOPHj8fR0RF7e3uCg4Px8fHB0tKS6OhoevbsiV6vJz4+PttxH2fYsGGUK1cOe3t7xo0bx+HDh7l27RrVq1dn27Zt1K1bl+TkZBITEylZsqR63C1bttCjRw9cXV3R6XR069aNFStWYGNjk+34RqORdevWMWrUKCpUqIC1tTWDBw8mPT2d/fv3q/u9++672Nra8sILL/zn6161alXefvttzMzMaN68OYqiMGjQICwtLfH09ARQ687/6XE/D2ZmZnzyySfY29tTuXJl+vfvz9atWwHw8vIiKiqKP//8k/T0dL744gvOnz/PgwcPuHv3LkCOBNzGxoa7d+9y9+7dbAkwoD6/d+8eKSkpNG7cGG9vbw4cOEBISAhRUVGsWLEi23s6duxIXFwcs2bNYsyYMRw7dgw7OzuaN2/O/PnzuX79OqmpqcyePRtzc3PS0tIwGAzY2NgwefJkfvnlF7Zt28bZs2dZtGgRAHq9nvLly7Ny5Up+/fVXli1bRmhoKN999516TV599VWmT5/OwYMH6dOnD0OHDuWXX375z+32rEgPdhGVlpbG/PkFN3RUarC1T+o+tS+z7jMdc3P5XdQyRTGQYTBID7aGGYxG9PoM6cHWuNx6qB/H1dWV0NBQtX7WxsYGb29vfHx81F6+vGjYsOFDa7CNRiPz589n3759lCxZkldeeYX09HR1mG58fDyzZs1izpw56nsyMjKoU6cO169fB8jWA+vs7KwO5T5y5AgDBgzg3r17VK1aFQsLiyeugc4aKg6ZNdqQ2XPr6OhIZGQkMTExFCtWjBo1apCamqoe9/r16+r+WbKGS//TrVu3uHfvHsOHD892jdPT04mPj1efly5d+onizY2Dg4P676xzlChRIttzg8GQ432P+nnIOoajo6O6f9myZdWJyvr168f9+/cZPHgwer2eNm3a0KJFC1544QU1Wb5//36286WlpWFnZ4fRaMyxLet5VoLcvHlzdVvdunXp3bs3O3bsUGu0AbX3v23btnz55Zfs3LmThg0bEhISwsyZM+nQoQPFixenb9++7Nu3jxdeeIGvv/6a2NhYdu3aBUC1atUYPHgwM2bMYMSIEYSGhmJlZUWzZs0AaNWqFW3btiU6OpoWLVpkOz9kDpvftm0bsbGxOUoSnheSYIsCIUNSC4diZtKOWmYwGrm6abOpwxB5pBiMJKbn/KImtMOAEas3+5g6DGECCQkJODk5ERERgV6v59ChQwwZMoTatWvTqlWrAj33nDlzSEhIYO/evdjb2wPQrl07dbuLiwvDhg3LNnv2xYsXcXBwUJOvhIQEdemrM2fOsG3bNjw8PJg2bRrr1q1Ta3ZXrFjB+fPnnyiuxMREatasCaDOdl6+fHlWrVrF999/T0xMDKVKlQJg0KD/1b2XLVuWK1euZDvW/Pnzc0xO5ujoiLW1NStWrMiWgJ07dy7bEGmzh9y0zPoOq9fr1TrgpKSkbInvw977OI/6ebC1tSUlJYX79++rCfPly5ez3YTo2rUrw4cPBzJvhnh6etKpUydKlChBmTJlOHPmjDpM/Pr169y+fZvq1atjMBi4ffs2N27cUK/t2bNncXFxoXjx4nzzzTfcuHGD9957T41Vr9erowNGjBhB/fr11WHdWduzbjRcv36dyZMnqzcZzp49S3JyMnXq1CEmJibbjOEAFhYWaq99QkJCthsW/94eERFBrVq1aNq0abZzZyX7zyO5lVoE5DYc/J/T9hcUc3NzeWj4kUVnZiYPjT7U30WdTh4afqi/i5jJQ6MP+X9R+4+nFRcXR//+/Tl58iRWVlY4OTkBZEvWCkpqairW1taYm5vz4MEDVqxYwalTp0hPTwege/fuhIWFqcsdHTx4kLZt2/Ljjz9SpkwZmjdvzuzZs7lz5w6pqamEhIRw6dIlUlJS0Ol0avL1yy+/EBkZmSOJepjQ0FCuXbtGcnIywcHBvPXWW5QsWZLU1FQ1scrIyOCrr77i4MGDarydO3cmOjqa3377DYPBwKZNm1i7dq2aUN+/f5+MjAx0Oh1du3Zl7ty5XL16FYPBwJYtW3j33Xf5+++/HxtfxYoVsbCwYPv27QD88MMPHD58+D9f/9w87ucha6mtBw8ecO7cOSIiIujatSuQuZSVr68vSUlJ3L17l7lz52JlZaUOSe/cuTNhYWFcunSJ1NRUZs6cSePGjalYsSKVK1emYcOGzJw5k9TUVC5dusSSJUvUYxuNRoKCgjh06BBGo5Hjx48TGRlJjx49gMye9/DwcP766y8yMjLYsGEDcXFx6s2NkJAQgoOD0ev1XLt2jcDAQNq2bYuTkxMtWrTg+vXrLF26FEVRuHTpEmFhYerNHk9PT3bs2MHBgwcxGo0cPXqUrVu3qtuvXLlCYGAgly5dIiMjg40bN3L8+PFcZzt/XkgPdhGQ23BwqbcWQgghhChYXl5eXLhwAR8fH5KSknBycsLf35969eoV+LlHjBiBn58fzZo1o1ixYjRs2JAOHTqoayf36dMHo9GIr68viYmJlClThilTpqiTuc2ZM4fg4GDatGmj9pZOnDgROzs7evbsSa9evTAYDJQvXx5vb2/mzp3LjRs3HhtXy5Yt6d69O2lpaXh4eODv7w9kDoE+deoUHh4eWFtbU6tWLXr27Kkmt+3atePOnTuMHTuW69evU7VqVcLDwylZsiSNGjXCycmJRo0asW7dOsaPH09oaCg9e/bk9u3bVKhQgUWLFlGrVq3Hxle6dGn8/f1ZsmQJ06ZN47XXXqNz5845hlg/jUf9PGStD16iRAm1Dd577z11iHTfvn25cuUK77zzDunp6bi5ubFq1Sq1J3fw4MFkZGTQq1cv7t69S5MmTViwYIF67kWLFjF16lRat26NTqejY8eO6kznb775Jn5+fgQEBHDt2jVKlSrF0KFD6dChAwAffvghDx48wMfHh5SUFGrWrMmqVauoWLEiANOnT2fKlCk0a9YMS0tL2rRpw7hx44DMevVly5axYMECli9fTvHixWnfvj2DBw8GoFu3bqSlpTF9+nS1DCAgIECdxGzcuHHodDp69uxJSkoKVatW5bPPPlNnhH8emRnzsmicyBcjR458ZD3047Y/bp/ctj3JMfPiTnJygR1bPBuKouDnVF9qsDXMgJEhgxpjrpM21DLFYGTe0iPyu6hhBozMvflrnnpChem98P/DX4UoCLktDya0SXqwiygbG5tce7HzK+mWLxGFQzFpR00zGI3EH7hg6jBEHilGIxZS0aV5VpbylUsIIYoC+WtfRAUFBRX4OSTJ1jZZe1f71LV3pQ01Tfn/dpQebO2SNem1L79XRomNjWXChAkP3d6wYUOOHTv20O0DBw7MNgGYEOL5IQm2EEIIIYQQz5CXlxdeXl6mDkM8R5o0aSLDwwsJSbBFgZB1sLVPURRZe1fjDEYjeoNBerA1TjEaZU16jctck14vPdhCCFEESIItCoR8iSgc3qnuZOoQRB4oRiM3rt8zdRgijwxSg10o3Fkw3tQhiDx6YVqEqUMQQmiAJNiFxMMmLQOeyZrXuZEkW9uyRiBI76d2qbW70oaaZpAabM1Ta7B1cqNEqxSDwdQhCCE0QhLs58CjkmN4sgT5UZOWPW7Naz8/P9LS0oD8m0VcCCGEEEIIIYoaSbCfA4+b0ftxCXJepaWl5XtiLTXY2qcoitTvapxiNEodfSFgkBpszTNgRJ+RIT3YQghRBEiCXQT9s8caCmYIuQwPLxxcP2hi6hBEHigGA+gzTB2GyCPFYODIrP2mDkPkkUv9V0wdghBCiGdAEuwi6N891gXVQy5JtrapNdjS46JZWTWD0obaltWO0oOtXVKDrX1Sgy2EeFLyl16oNeAFPRRdCCGEEEIIIQoz6cEWj60BfxpSg619iqJIzaDGKQYDirSh5ikGg9Rga5zUYIuCEBoaypIlS7CxsVFfMzMzo379+gQEBFCxYkU2b97Mp59+yt69e00YaU5Lly7lp59+Yvny5Xk6jre3N40bN2bo0KH5FNmz5erqSnh4OG5ubnh6ejJkyBA6d+5M//79cXNzY9CgQQV27p9++okBAwZw/PjxAjtHUSUJdhHw71nKn8WyXTI8vHCwLWbz+J3Ec0sxGLh85JypwxB5pMg62IVCsTYDTB2CKITc3NyIiopSn6empuLv70+/fv2IjY01YWSPVpCJo5Y8LLnN642HJ+Hm5ibJdQGRBLsI+HcP9bMaCi5JtrZJDbb2qTXYMou4pimyDrbmqTXY8v+iZimKQuvWrR+5z549e3J9PTQ0lI0bN3L//n0qVKiAr6/vY4/1tOzt7enUqROxsbHcuXMHgIyMDObMmcO2bdu4c+cO77zzDgEBAVhYWGAwGFi+fDnr168nKSmJl156ieHDh9OyZUsAbt26xcyZMzlw4AA6nY5mzZoREBBAiRIl+Pnnn1mwYAHnzp0jOTmZatWqMWXKFOrXrw/AH3/8QXBwMCdPnsTR0ZGePXvSu3dvzMzMCA0N5ejRo+rNgZiYGJYtW0Z8fDwuLi4MHTqUd955B4ANGzawatUqrly5Qrly5RgwYADt27fP8dlTU1MJDg7m6NGjJCYmUrx4cXr16vXQZL5GjRpMnTqVFStWcPXqVZo2bcqQIUOYPn06f/31Fy+//DLz5s2jUqVK6PV65s+fz/79+7l69So2Nja88847TJo0CTMzM3788UeCgoK4ePEijo6OtGrVivHjx2NhYUFsbCyLFi3i6tWrlC5dmnbt2uHr66vGEBkZSZMm2SeV/WfPvNFoJCoqirVr13Lz5k2qV6+Ov78/derUAcDT05MePXqwc+dO/v77bypVqsSECRN47bXXgIf//B05coQPP/yQv/7665H7if9OvjkXcX5+fmr9tdRgCyGEEELkn8OHDxMdHc2GDRs4cuQI3bp1Y+LEiaSnp+f7uYxGIwkJCXzxxRfUrl0bR0dHAK5du8YLL7zAN998w/r169m2bRu7du0CYPHixaxdu5aFCxdy5MgR+vXrh6+vL7/99hsAw4cPJzU1ld27d7Nnzx7u3LlDYGAgaWlp+Pj44OXlxbfffsuRI0eoWLEis2fPVs/Zu3dv3n77bX744QeWLFnC559/TnR0dI64jxw5gr+/P2PHjuXYsWP4+fkxbtw4zpw5w+bNmwkODmbSpEn8+OOP+Pv7ExgYyNdff53jOHPmzOHy5cts3LiR48ePM2nSJObPn8/ff//90GsWExNDdHQ0X3/9NceOHcPX15cZM2bw/fffY2VlxdKlSwFYvXo1Bw8eZPXq1Rw/fpwlS5awbt06Dh8+DMC4cePw9vbmp59+YuXKlezatYs9e/aQlpbG2LFjmTJlCseOHWPu3LmEh4er1/dJfP7556xcuZKFCxdy6NAhOnfuTN++fblx44a6z6ZNm1i4cCE//PADNWvWJCAgAHjyn79n+XNaFEgPdhFXEGtgg9RgFwZSg619isEga5kXAoqsg615Bozo9Xrpwda4h/VQP4q1tTXJycmsX78eDw8PunXrRo8ePTDLp7/Lx44dw83NDchMsO3t7WnQoIGaYEFmr/aAAQMwMzOjatWq1KxZk4sXLwKZidnHH39M7dq1AXjnnXeIjY1l48aNODk5cfToUXbt2qUm68HBwdy+fRtLS0uio6OpVKkSDx48ID4+HgcHB+Li4gDYunUrVapUoVevXgBUrVqVjz76iDVr1vDee+9l+wxffvklb731Fq+//joA7u7ufP7555QpU4ZNmzbRo0cPmjZtCkDTpk3p0aMH69at480338x2nKFDh2Jubo69vT1Xr17F2toayCyNrFSpUq7X74MPPsDBwQGAatWqUatWLapUqQLAa6+9xrFjxwDo3r07nTp1wsnJicTERNLS0rCzs+PatWtAZjvv3LkTBwcHGjVqpPb4p6WlYWNjw8aNGzEYDDRo0IBjx46h+w/frdauXcvAgQOpWbMmAF27dmXjxo1s3bqVfv36qa9lfcZ27drx5ZdfqnE9yc9fQf+cFjWSYBdB/6zJLqh6bAszY4EcVzw7ZmZGyn6ozUlDRCZFUShVe5+pwxB5pCgG1n6z0NRhiDyysHc0dQjCBFxdXQkNDSUqKorly5djY2ODt7c3Pj4+/ynJepiGDRtmq8HOTYkSJbIlSpaWlmonyI0bN6hQoUK2/cuXL8/Jkye5fv06AOXKlVO3OTs74+zsDGT2PA8YMIB79+5RtWpVLCwsMP5/SUt8fDx//PGHmvwDGAyGXG8yJSYmUqtWrWyv1a1b95Hx5TZp282bN5kxYwYnTpygfPny6hBqwyOWWMtKriGzhKNEiRLqc51Op36e+/fvM3XqVH788UdcXFyoVasWRqNRPfbq1asJDQ0lMDCQ69ev07JlSwICAnBxceGLL75gyZIljB49mtTUVLy8vJg0aVK2cz1KfHw8s2bNYs6cOeprGRkZ6ucDKFWqlPrvf7bDo37+/qmgf06LGkmwi6B/1mQX5LBwuVOvbWoNtrSjZv2vDeU/Ry1TFFkHW+ukBlv7nnZUXkJCAk5OTkRERKDX6zl06BBDhgyhdu3atGrVKn+DfArlypXj0qVL2V67dOkSpUuXpmzZskDmZ6hcuTIAZ86cYdu2bXh4eDBt2jTWrVunJnorVqzg/PnzALi4uNCkSRMiIiLU4yYlJXH37t0cMZQtW5aEhIRsr61YsYL69etTvnx5tbf9n/FlJfn/NHz4cDw9PYmIiMDCwoKkpCTWr1//yM//pD20WQnxd999h7W1NQaDgUaNGgHw4MEDzpw5o9a1nz9/nkmTJjFz5kxmzpxJYmIic+fOBeDPP/9k1KhRLF26lPHjxz/RuV1cXBg2bBht27ZVX7t48WK2mwMP86ifP1tb2yfa73n4OdUa+dZVxP1zDWypwRZCCCGEyD9xcXH079+fkydPYmVlhZOTE4A65NrUunXrxmeffcYff/yBoijs3LmTvXv30qlTJ8qUKUPz5s2ZPXs2d+7cITU1lZCQEC5dukRKSgo6nU5dIuyXX34hMjISvV4PZA5T/uWXX9i6dSsZGRkkJiYyaNAggoODc8TQqVMnvv76a7777jsMBgMHDx4kNDSU4sWL07VrV6Kjozl06BCKoqi1wl26dMlxnJSUFGxsbDA3N+fWrVtMnz4dIF/qiFNTU7G2tkan05Gamsrs2bNJTU0lPT0dMzMzRo0axYoVK8jIyMDZ2RkLCwscHR25e/cuAwYMICYmBqPRSOnSpdHpdP+p/bt3705YWBhnz54F4ODBg7Rt25Yff/zxse990p+/5/3nVGukB7uIK4g1sEFqsAsDRVGkZlDjFEUhXZ8hPdgapyiyDrbWSQ120eXl5cWFCxfw8fEhKSkJJycn/P39qVevnqlDA6Bv374YDAZGjhzJ9evXqVSpEvPmzaNx48ZA5sRhwcHBtGnThoyMDDw9PZk4cSJ2dnb07NmTXr16YTAYKF++PN7e3sydO5cbN25Qrlw5li9fzpw5c5g+fTrm5ua0atWKiRMn5oihYcOGzJo1i1mzZhEfH0+5cuWYN28e1apVo1q1aqSmpjJ9+nQSEhIoU6YM48aNo2PHjjmOExQUxMyZM1mxYgUlSpTgnXfeoVatWpw6dYoWLVrk6TpNmjSJKVOm0LhxY+zs7GjVqhUtW7bk1KlTWFlZERYWxqxZs1i2bBnm5ua4u7szZswYihcvzqJFi1iwYAFTpkxRZx/v06fPE5+7T58+GI1GfH19SUxMpEyZMkyZMuWJZvh+1M/fkSNHnmg/8d+ZGbMG6Yvn1siRIwtkIrKCdHdnuKlDEHmkKAbMW/UydRgiDxRFQb9mhqnDEHmkGAxMHrbB1GGIPDBg5NMEmQ9B62zKVjF1CEIIDZAebFFgpNdM27LqPqXHRbtkLfPCIWs9c+nB1i6pwdY+GZUnhHhSkmALIHM97IJasksIIYQQQvxPbGwsEyZMeOj2hg0bqktE5WbgwIEMGjSoIEITQuSRJNgCyP/1sBXFoPaACm1SFAOK1AxqmqxlXjgoBqnB1jqpwRb/5uXlhZeXl6nDEEIUAEmwi4Cs3ulHye/1sFN//y1fjyeePcVgoGRrb1OHIfLo+MKca4UKbVGMRixk0Q/Ns0lPhbxPZiyEEOI5Jwl2EfAkvdMFsUSX9JppW1bdp/S4aJdag/2E63yK55Py/3ORSg+2dkkNtvZJDbYQ4klJBiSA/62HLYQQQgghhBDi6UgPtgDyfz1sxWBQe0CFNikGg9QMapyiKOgNBunB1jjFaJQabI2TGmwhhCg6JMEWBWLaxB2mDkHkkQEjC0fMNXUYIo/KVC1p6hBEHilGI1UT75k6DJEHBqORu7s3mjoMkUe2NV4zdQhCCA2QBFvDnmTyMsj/CcyelPS2aJvUDGqf1GAXDmoNtrSjZhn+vw1lbhLtklF5hdOFCxeoXLmyqcMQhYwk2Br2pEtr/bu2+lGJuayDLYQQQgjx/AsNDWXJkiXY2NgAmTdVHRwc8PDwYOTIkTg4OJg2wHzi6enJkCFD6Ny5c74e98SJE3Tv3p3ff/89X4/7NBRFYc6cOXz11Vfcv3+f1157jcDAQEqXLg3AzZs3mTx5MkePHsXc3Jz27dszfvx4LCyyp3LHjx/nww8/JC4uTn3NaDSyfPlyvvjiC27fvk3dunXx9/enevXqOWIYPnw4NWrUYOjQoerrt2/fZubMmRw4cACDwUCjRo0ICAhQY9u+fTuffvop165dw9nZmT59+vD+++8D8ODBA2bPns2uXbu4d+8e1apVY+TIkTRt2hSAGzdu0Lx5c4oVK6aez9HRkb17tb0CiiTYRVB+r3mdGwNGtQdUaJPUDGqf1GAXDorRSMb/tXfnYVFW7QPHv4DsIKi44S4p5L6FUuaCFrnmmmXh9tMUcC1RQFHcJU1MVALTXHDDXVTUxNxKxcyUMjU1C8VckWQdeGZ+f/DyvI64FfiOg/fnuua6nGebe+YAzv2cc5+j1UoPthHT6nSyJr14Lpo1a8aqVavU55cuXSIkJIT+/fuzYcMGLCwsDBjdi+3+/fvk5LwYa+dFRETw3XffsWnTJuzt7QkODmbixIlERUUBMHr0aMqXL8/hw4e5ffs2Pj4+LF++nMGDBwN5SfSmTZuYMWMGGo1G79qrVq3iq6++IiIiggYNGrB27Vr69evHrl27KF06r4wsOTmZ4OBgjhw5gqurq975I0aMwMHBgW+++QZTU1MCAwMJDg4mMjKSCxcuMGHCBJYvX06jRo348ccf6devH7Vq1aJZs2aEhYVx+vRptm7dSpkyZVi7di2+vr4cOXIEW1tbEhMTqVSpktEn1A+TBFs8F92qOho6BFFIik4n/zEXA1fP3DJ0CKKQtDodV7NliSBjpkXH+pDdhg5DFNLYT774V+eFh4ezceNGMjMzqVKlCr6+vrRr166Io8vj4uLCwoULadOmDVu2bKFNmza0bduW6OhomjRpAuT1GrZu3Zq4uDiys7MJCQnhwoUL2NnZ4e7uTnBwMHZ2dmRlZbFgwQJ27txJRkYGbm5u+Pv706BBAwDWrFnDsmXLuHfvHhUrVqRfv3707t2bq1ev0q5dO0JDQ/niiy9ISUmhQ4cO9OzZk6lTp5KUlESDBg0ICwujdOnSaLVavvrqK2JiYkhJSaFGjRqMGjWKN998U31fv/zyC9HR0Vy9epX69esTHBysDu3ev38/UVFR/PHHH2RkZFC/fn2mT5+u7o+NjSUyMpJr165RoUIFRowYQf369RkyZAgAjRs3ZtmyZTRq1IhVq1axevVq7ty5Q+3atQkKCqJevXpAXk96y5YtiY+Pp2zZsmzevBnTB26apaWlERwczPfff0+JEiVwc3MjKCgIFxcXwsPD+fXXXzEzM+Pw4cOULl2aoUOH0qdPHwA2bNjA2LFjqVixIgATJkygZcuWJCUlodVqSUhI4NChQ1hbW6s/Q3PmzFET7KCgIC5fvszIkSOZPXu23s/Ejh078Pb2Vtvf29ubNWvWsHv3bvr27cvvv//O+++/z4cffkh6erreuT///DOnT5/m+++/x87ODoBp06Zx61bed4srV66Qm5uLVqtFp9NhYmKCmZmZ+v3R398fjUaDtbU1GRkZ3Lt3D3t7e8zNzQFITExUP9/iRBJs8dxIr5lxy6/7lB5s45Vfgy09n8ZNK+tgG738EV3yu2i8tDrdU5Pi+Pj4AtuOHTvG+vXr2bx5M2XLlmX9+vVMmDCBVq1aqUlGUXNwcKBJkyYcO3aMPn368MYbb7Bt2zY1wdq+fTuNGzematWqfPTRR3h4eBAdHU1KSora8z1w4EBCQkI4e/YsK1eupGLFiqxdu5YBAwawY8cOFEVh1qxZbNu2jZo1a3L48GH8/Pxo3bq1GsfBgwfZtWsXSUlJdOvWjbNnz7JkyRLMzc15//33WbNmDcOHD2fRokVs3LiRxYsX4+rqyt69e/H19WX16tVqMr9v3z6ioqKoXr06M2fOZOjQoezcuZPbt28zatQovvjiCzw9PUlJSVGvOWfOHI4fP05QUBALFy7kzTff5MiRI/j6+rJ161aWLFlCv379OHXqFACrV6/m66+/JiIiAhcXF7Zt28bAgQOJi4vDyckJgDNnzhAXFwegl1wDLFu2jLS0NA4ePIipqSmTJk1i7ty5REREAHk/HwEBAcybN4/jx48zbNgwqlatSr169fjrr7/0hmw7OTnh4ODA+fPnAXB0dKR8+fLqfhcXF5KTk/n7778pWbIko0aNokKFChw/frzAz4OiKHpDsPNjv3z5MgBly5Zl37592Nvbc+LECb3jzpw5wyuvvEJMTAxr164lMzOTN998k/HjxwPQsmVLGjVqxAcffICZmRmKojB+/Hi13czMzLC2tmb9+vVMnjyZEiVKMHfuXDUBT0xMJDU1lc6dO3P79m3q16/P+PHjeeWVV570I/7Ck7FKL4H8Na7zHw9PehYYGKjuE0IIIYQQRcPS0pLU1FRiYmI4e/YsvXv35ujRo88tuc7n6OjIvXv3AOjZsye7d+9Whw5v2bKFnj17qvEdPnyY3bt3Y2pqqiaV2dnZ7Nixg08//ZRq1aphYWFB//79qVmzJjt27MDMzAydTse6des4efIkHh4e/PTTT2pdLsCgQYOwtramdu3alC1blu7du1O+fHlKly5No0aNuHbtGgCbNm3i448/pm7dupQoUYKOHTvi6enJxo0b9a7l6uqKpaUlAQEBXL16lTNnzlC6dGl27tyJp6cnaWlp/PXXX5QqVYobN24AsHXrVt5++21at26NqakprVq1Ys2aNXrJar7Vq1czdOhQ3NzcMDc3p1evXri4uLB9+3b1GC8vL0qWLEnJkiULnG9lZcW5c+fYunUrN27cYObMmWpyDeDq6srAgQMxNzenZcuWeHl5sW3bNrXX+OEk2MrKivT0dNLT07G2ttbbl/88IyNvhYkKFSo89mfBy8uLVatW8euvv5KTk8PatWv5/fffyc7OBsDOzg57e/tHnpuamsr58+e5cuUKW7ZsUd9bfoKt0WioXLkyX3/9NadPnyYyMpLw8HCOHDmid51u3bqRmJhIaGgoY8eO5eTJkwCULFmSpk2bsnLlSvbt20f16tUZOHAg9+/ff+z7MQbSg/0SeHiN64cT6edRk63odGoPqDBOik5qsI2doihSu1sMaGUdbKOnReroi4NH9VA/TePGjQkPD1frYK2srPD29sbHx6dAD2hRunv3rlpf6+npyeTJkzl48CDOzs5cu3YNLy8vAObPn094eDhhYWF88sknNGnShJCQEBwcHMjJyaFy5cp6161cuTJXr17F2dlZfU/Dhg1DURR69OiBv7+/euyDk6yZmZnpJaWmpqbo/vM98fbt21SpUqXA65w7d07veT5ra2scHR25ceMGjRs3ZseOHaxbtw4TExNq165NWlqaOvnXzZs3qVOnjt6183tXH3bt2jVCQ0OZO3euui03N1dvCPODNxAeNmTIECwsLNi4cSNTp06lSpUqfPrpp7z99tsABWYrr1ixIr/++quaLGdmZurtz8rKwtbWFp1OV2Bf/nNbW9vHxpNv0KBBZGZm4ufnh0ajoUOHDrRs2fKRNwkelt/TPGHCBCwtLbGzs2P06NG89957pKenEx4ejoWFBa+//joAbdq0oVOnTqxfv56WLVuq17G0tASgU6dObN26lbi4OJo2bcrnn+svBxsYGMimTZv44YcfaNu27VPje1FJgi2ei4zMXEOHIApJKzXYxcL3KU9fyk+82LToqGFlaegwRCFodTq69n30l3pRvCUnJ1OmTBmWLl2KRqPh6NGjDB8+nLp169KmTZvn8popKSmcOnWK4OBgIC9J6tKlCzt37sTZ2ZkOHTpgY2ODVqvl7NmzjBgxgqCgIK5fv86sWbMICAhgw4YNWFpakpSUhIuLi3rtP//8E09PT+7cuYOiKCxatAitVsuPP/7IyJEjqVGjhjpM3OQZbyhVqlSJpKQkvW1JSUl6yeyDoy/T0tJISUmhUqVKxMXFER0dzdq1a6lWrRqQVyN84cIFIC+JTU5O1rt2fr31wypUqMDIkSPp1KmT3vt98EbBk97T+fPn8fT0ZMCAAdy/f581a9YwZswYjh07BqD2que7evUqFStWxMHBgfLly3Px4kV1mPitW7e4d+8etWvXRqvVcu/ePW7fvq0OVb906RIVKlR4bM/zg27cuEGvXr0YNWoUkHfTwNPTk+7duz/13FdeeQWtVktOTo6aJGv/s2SdTqcjOTm5wGz1JUqUUEdojB49mkaNGjFgwAB1v0ajwdHRkbS0NBYtWsRHH31EpUqVgP90DOTmqjPjGysZIv4SetqQ8aJiamIiDyN+5DMzM5OHkT7U30VM5GHED/mbavwP9e+pqYk8jPTxbyUmJjJ48GDOnTuHhYUFZcqUAfKWInoezp8/z8iRI6lduzZdu3ZVt/fq1YvDhw/zzTffqMtdmZqaMn36dObPn092djalS5fG0tKSUqVKYWpqSs+ePZk3bx5//PEHGo2GFStWcPHiRTp16kRycjKDBg3i6NGjmJqaqkOu/8376t27N1FRUfzyyy8oikJcXBz79+/XSwCXLVvG5cuXyczMZMaMGbz66qvUq1eP+/fvY2pqipWVFTqdjkOHDrF161Z1dvDu3bvzzTffcOTIEbRaLYcPHyY8PBx7e3s1Ycwfjvzee+8RERHBpUuXADh8+DCdOnUqUJf8OBs2bGDcuHHcuXMHOzs77OzssLGxUTsrfvrpJ7Zt24aiKBw8eJD4+Hh1qH6PHj2IiIggKSmJtLQ0Zs6cibu7O1WrVqV69eo0bdqUmTNnkpaWRlJSEosXL6ZXr17PFNfOnTvx9fUlJSWF9PR0Pv/8cywsLPD09Hzqua+//jpVqlQhKCiI9PR07t69S1hYGO3bt8fOzg5PT0927drF4cOH0el0JCQksH37drp06QLkjeBYsmQJ58+fJzc3lw0bNpCYmEjXrl2xs7Pj+++/JzQ0lPv375Oens60adOoXLkyzZo1e6b39qKSHuyX0OOGjAcGBhbYJ4QQQggh/h0vLy+uXLmCj48PKSkplClThqCgIBo2bFgk1//hhx9o3LgxkJcwOzk50b59e3x9ffXqvN3c3KhatSoZGRk0bdpU3T5//nymTZtGy5Yt1TWOp02bBsC4ceMIDw9nwIAB3Lt3D1dXV5YuXUqNGjUAmDRpEiEhIdy8eRN7e3v69u1Lhw4d1NrqZzVw4EC0Wi1jxozh1q1bVKtWjXnz5uHu7q4e0759e4YNG0ZKSgqvvfYaixcvxtTUlO7du3Py5Ek6deqEmZkZNWvWpH///qxevRqNRkPTpk0JDQ0lNDSUa9euUalSJebNm0etWrXUz+LNN9/kiy++YMCAAeh0Onx9fbl58ybly5dn0qRJzzzj+yeffMLUqVPp1KkT2dnZ1KxZk8WLF6uJ/Kuvvkp8fDzTp0/HycmJOXPmqG3n5+dHbm6uOpN38+bNmT9/vnrtBQsWMHXqVNq1a4epqSndunXD19f3mT/f69ev07FjR3JycmjWrBnLly9X43oSc3NzVq1axezZs/Hy8iI7OxtPT08mTJgA5N0cycrKYvr06dy6dQtnZ2dCQkLU4d39+vUjOzsbHx8f7t+/j5ubG8uXL6dq1aoALF68mFmzZtG+fXtycnJo3ry5OhGeMTPR6aRQ9kU3ZsyYR9ZIP277v71+UV0PYG3ZV/Xu2gvjk6vV0u3KD1KDbcQ0Gg1jHRtI7a6Ry0VLNSsL+ZtqxHK1Wnp/1KBQPaHCsBStjjpfbTF0GIUyfPhwGjRowMcff2zoUF464eHhJCQk6K1ZLoov6cEWz4VWp1OXlhHGSSuTnBk9RVFkcqxiQCbIMn5anQ5NrlYSbGEQSUlJnDt3ju+//56QkBBDhyNEsScJtlBrsouyFvvVttWL7FrCMBSZ5KxYKGfkw6xEXnJ2XaMYOgxRCFp05KZkINN/inx79uwhICDgsfubNm2qLmX0KEOHDmXYsGHP9FoLFy4kPj6eoKAgdZIsIcTzIwm2UOuui3odbDPpbTFq+cusSQ+28VKUvKRMej6NW/5oIBmJYLy0/OfvqfwuGq2iXnrUy8tLXSrreQsNDf2fvI54vBEjRhg6BPE/JLOIC5WxT4kvhBBCCCGEEIYkPdhCVZQziCs6XZHf7RX/W4rUYBs9RVGkdrcY0Op0Uktv5LTo0Gi10oMthBAvAUmwjUB+jfTDntf61UWhzvJNhg5BFJKiKFj8ut/QYYhCUBSFTk0qGjoMUUiKTkfMD9cNHYYopPuXUg0dghBCiP8BSbCNwON6lou6ZrqoSc+nccuv35V2NF5qG0qvmVFTpAbb6EkNtvGTUXlCiGclCfZLKjAwkKysrALbi2odbCGEEEIIIYR42UiC/ZLKysp6rsm0oihq75kwToqiSA22kVMUReo+iwFFarCNntRgCyHEy0MSbPFcmCfuMXQIopBMFS0mTTsbOgxRGIrCppPjDB2FKCQtOga+Wd3QYYhCUHQ6zpx+cedNEeJZ/fHHH1SrVs3QYQjxQpMEuxh63PDvB/0vJkiTnk/jpihaQNrRmKnrYEvPp1GT+l3jp9bRSxsaLe0LWoOt0Wj4+uuv2bFjB8nJyVhaWtKwYUOGDx9O3bp1AQgICABg9uzZhXqt0NBQUlJSHnud7du3ExkZyc6dOx+5/8E4vvzyS3744Qe++uqrQsX0b+3bt4/o6Gh+/fVXcnNzqVq1Kt26deOjjz56Lt977ty5Q3BwMAkJCZiZmdG1a1fGjx9PiRJ5qdjp06eZPn06Fy9epFSpUvj4+NC7d28AsrOz+eyzz9i9ezcZGRnUqlWLMWPG4OHhAeT9Xz937ly2bdtGZmYmLVq0YMqUKZQrVw6Ac+fOERoayi+//IK5uTlvvPEGAQEBlC5dWi/Gmzdv0q1bN8aOHUuPHj0A6NSpE8nJyXrHZWRk8MknnzB06FB1m6IojBo1CldXV701v3ft2sXYsWOxtLRUt7Vv3545c+YU1Uf7QpIEuxh6luHfD0+Qlp+USw22EEIIIcSLLzs7G29vbywsLAgNDcXNzY3MzExWrlzJRx99xIoVK2jQoEGRvV5KSsoT93ft2pWuXbs+07WGDRtWFCH9KwsXLiQ6OpqAgADCw8OxsbHh5MmTTJ06lUOHDhEVFVXkSfbo0aMpX748hw8f5vbt2/j4+LB8+XIGDx5MamoqH3/8MSNHjqRPnz6cOHECPz8/XF1dadCgAWFhYZw+fZqtW7dSpkwZ1q5di6+vL0eOHMHW1paIiAi+++47Nm3ahL29PcHBwUycOJGoqCiysrIYPHgw7733HpGRkaSnpzN+/HiCgoL48ssv1fi0Wi1jx44t0MYP3yyZP38+Bw4c4KOPPlK3JScnExwczJEjR3B1ddU7PjExkXfffbdIlwI2BpJgC6Doa7IVRav2gArjpChatFKDbdQURZHa3WJA6neNn6LTyZr0L7Hw8HA2btxIZmYmVapUwdfXl3bt2hX6uqtWreLq1avs3bsXOzs7AGxtbfHx8eHvv//mwoULj0ywN2zYwPLly7l+/TqVKlViyJAhamJ84sQJZs2axZ9//kmpUqVo06YN48ePJzIyktjYWADOnj3L9u3bcXV1xdvbm9jYWBo3bszbb7/NwoUL2b8/b4nP+Ph45s2bx7Vr12jevDkApUqVUj+ThIQEVq1axebNm/XOA/D29sbd3Z0RI0YQEBCAjY0N165dIyEhAScnJ6ZOncq+ffvYvn07FhYWjB49Wu3xfZKLFy+ycOFCoqKiaNWqlbrd3d2d5cuX884777Bu3To+/PDDAuf+9ttvhISEcOHCBezs7HB3dyc4OBg7Ozu8vb2pW7cuCQkJXL58mZo1axIUFESzZs34448/SEhI4NChQ1hbW6s/A3PmzGHw4MHs3bsXR0dH9TU9PDzo0qULq1evpkGDBvj7+6PRaLC2tiYjI4N79+5hb2+Pubm52p5jx46lYsW8ZTknTJhAy5YtSUpKIicnBzc3N/z8/DAzM8PCwoI+ffowbpx++diiRYuoUKGCeo1HOXbsGCtWrGDLli3Y2toC8Pvvv/P+++/z4Ycfkp6eXuCcxMREOnTo8NR2KW4kwRbPhUXlWoYOQRSSoihoLSwMHYYopBKYGjoEUQTWf3fV0CGIQtCio66dFS/mIGPxPB07doz169ezefNmypYty/r165kwYQKtWrVSE6R/a//+/bRp00ZNrh80fvz4R56zefNmZs+ezcKFC3F3dychIYHhw4djbW3NW2+9xbhx4xg5ciTdu3fn6tWrfPDBBzRr1gw/Pz+SkpIA/aHmf/75JwcOHCAnJ4d9+/ap2y9fvsyoUaOYOXMmHTt25MCBA4wcOfKZe7gftmnTJpYuXUpERAT+/v783//9H4GBgRw9epQ1a9YwdepU3n33XSye8r1l9+7dODk56SXX+ZycnPD09GTPnj2PTLCnTJmCh4cH0dHRpKSk0L9/fzZs2MDAgQMBWL9+PRERETRp0oSlS5fi4+PD3r17+e2333B0dKR8+fLqtVxcXEhOTubvv//mt99+o3bt2nqv9corr7Bx40Ygr1TP2tqa9evXM3nyZEqUKMHcuXOxsLDg/v37/PXXX3rnOzk54eDgwPnz52nfvn2BYfh79uxRywcg72d0586dbNq0iS5dujzyc1MUhcmTJ+Pj40P16tXV7WXLlmXfvn3Y29tz4sQJvXO0Wi2//PIL1tbWfPXVVyiKQuvWrRk7diwODg6PfJ3iQhLsl5SVlZXeMPHnUZMtPZ/GTdbBNn5Sg1085NdgSzsaL7UNpQfbaGl1uqf2OsfHxxfYZmlpSWpqKjExMbRt25bevXvTp08fTIrgZ+Hu3bu89tpr/+icTZs20adPH7V+18PDgz59+rBu3TreeustLC0tiYuLw9HRkddee42DBw9iavr4G7WdO3fG2toaa2trve27du2iXr16akLdvn172rZt+w/f4X+1aNGCZs2aqf8+ePAg3t7eALRt25YZM2Zw+/ZtnJ2dn3idmzdvPrGXtkKFCpw+ffqR+ywtLTl8+DAuLi54eHiwbds2vc+mZ8+etGjRAsgbAr927Vq+/fZbNUF+UP7zjIwM0tPTC+y3srIiIyNDb1u3bt3o0aMHe/fuZezYsZQtW5ZKlSoBYGNjU+D8h3uUdTod8+fP59tvvyU6OhrIqw0PCgpiwYIFaq/0o8TGxpKRkUG/fv30tj/q5k6+u3fvUqdOHby8vFiwYAEpKSmMHz8ef39/oqKiHntecSBdGy+pWbNmERYWpj7yJ0IQQgghhBBFo3HjxoSHh3Pq1Ck+/PBD3njjDRYvXoxWW/gyurJlyz62gyQ1NRWNRlNg++3bt6lSpYretsqVK3Pt2jUAVqxYQbly5ZgyZQrNmzfH19eXv/7667ExPO77440bNwoku1WrVn3i+3kSR0dH9d9mZmaULFlSfZ5/s+JZPtNy5coVmLTrQTdv3sTJyemR++bPn0/Dhg0JCwvDw8MDb29vfvvtN3X/gz27JiYmVKhQgVu3bmFjY0NmZqbetfKf29raYm1tXWBy4qysrAIJr6WlJebm5nTq1AkPDw/i4uLUxPzh6z98flpaGiNHjiQ2Npbo6GhcXV3R6XSMGzcOb29v6tWr99jPBCAmJoY+ffpgZWX1xOMe5OTkxOrVq+nVqxfW1tY4Ozvj7+/PoUOHSEtLe+brGCPpwRbPhayDbfwURSFHarCNmtRgFw9adGjRSTsaMS1Sg10cPKqH+mmSk5MpU6YMS5cuRaPRcPToUXWG7zZt2hQqHk9PT7766ivS0tIK9CROmDCBzMxMli5dqre9cuXK/Pnnn3rbkpKSKFu2LNnZ2Vy8eJGQkBBKlCjB77//zsSJE5k5cyYLFix4ZAyP64mvUKECBw4c0Nv2119/6c0mnc/U1LTAzYCHJ9sqih5/gHfeeUet9/b09ATyhkxXrFiRypUrs3//fvz8/Aqcp9VqOXv2LCNGjCAoKIjr168za9YsAgIC2LRpE5B3U+HB45OTk6lYsSK1atXi3r173L59W03eL126RIUKFbC3t6d27dp89913eq938eJFatXKK7ccPXo0jRo1YsCAAep+jUaDo6MjDg4OlC9fnosXL6rDxG/dusW9e/fU53/++SdDhgzB2dmZjRs3qrOHX79+nYSEBE6fPs2iRYuAvER8ypQp7Nmzh8jISCDvpsyPP/5IaGjoP/qsz507x44dO/j000/V9tNoNJiamj51KL+xkwRbAP8dMl5UE51pnesUyXWE4WgVBQtJro2ejYm0obHT6nTkGjoIUWhXs6QVX0aJiYlMmjSJFStW4ObmRpkyZYD/TvZVGH379mXr1q34+PgwYcIEXF1duXfvHsuWLeO7775j+fLlBc7p1auXWgPu7u7OiRMnWL9+PZMmTcLExIRPPvmE//u//2PQoEGULVuWEiVKqLFaWFhw586dZ4qta9euREVFERMTQ48ePTh27BjffPMNnTt3LnCsi4sLt2/f5tixYzRv3pzt27dz6dKlQn02j/PKK68wcuRIAgMDGT9+PG+99RZ3795l4sSJWFtbU7t2bT744IMC55mamjJ9+nTc3d0ZN24cpUuXxtLSUq8dN2zYgJeXF7Vr1yYyMhKdTkfbtm2xt7enadOmzJw5k6lTp5KSksLixYvp1asXAG+99RZz5sxh+fLlfPjhh5w8eZLY2FgWL14M5I2CiIqKwsPDAxcXF7Zs2UJiYiLTpk0DoEePHkRERFC/fn1KlSrFzJkzcXd3p2rVqqSmptK/f39atGjBjBkz9Ia0Ozs7k5iYqPc+PT09GT58uLpMF8CPP/5IuXLlCox8eBpHR0dWr16Ng4MDAwcO5ObNm8yZM4fu3btLgi1eDs9j+nzp+TRuUoNt/NQabOk1M2r56+9KD7bxkhps4/dv18H28vLiypUr+Pj4kJKSQpkyZQgKCqJhw4aFjsnS0pLVq1ezaNEiRo4cye3bt7GysqJRo0ZER0frTWSVr0OHDqSlpTF9+nSSk5MpX74848aNo1u3bgBEREQQGhpKZGQkZmZmtGrVirFjxwLQsWNHxowZQ5s2bQr0Tj+sSpUqfPnll8yePZsZM2ZQt25d3nrrrUceW79+fXx8fAgICCA9PZ327dvj5eVVqM/mSXx9fXF1dWXFihXMmjULRVGoUqUKDRs25MCBA0RFReHn51eg13z+/PlMmzaNli1botVqee2119QkF/JmIp86dSoXL16kTp06LFu2DHt7ewAWLFjA1KlTadeuHaampnTr1g1fX18g72bLsmXLmDFjBgsWLKB06dJMnDhRrefu168f2dnZ+Pj4cP/+fdzc3Fi+fLk65N7Pz4/c3Fx1Ju/mzZszf/58IG9Su+TkZOLi4ti9e7fe+zl16tQzfV5JSUl6E7Q9qwoVKhAZGcm8efOIiIjA0tKSTp064e/v/4+vZWxMdLp/+RdDGNzjepyLsif630pPS5PEzMhp/jM8XNrReGk0GoJKNZQv9UYuV6slF0mwjVkuWmxNTeV30YhpdTq+UK4YOgzxnN24cYPvv/+e7t27/6PzHlxWTAjpwRbPhdRgG7/8NpQE23gpikKuToupTr7UGzMtOnKlBtuoSQ22EMahfPny/zi5FuJhkmAbsYeX2sr3PJbc+qckKSselI1zkNskxkvRatFiQuHnqhWGpAUGvlnd0GGIQlB0OlqEFvz/Wry89uzZQ0BAwGP3N23alJMnTz52/9ChQxk2bNjzCM1onTlzhv79+z92v7OzMzt37vwfRiReVpJgG7HH1U0/Kuk2BEmyjZtag/2E9S/Fi035z5Il0vNp3PLrd82k99NoKf+pxpP/F41XUY/K8/Lyeq51xi+jBg0aPHNdcVFbtWqVQV5XvJgkwX7JBQYG6q29Z+jabSGEEEIIIYQwVpJgv+SysrKeS1ItNdjGT1EUNLm50oNtxBStVtbBLga06NBotdKDbcQUnQ6NJgczM/l/UQghijtJsMVzIcPgige7DycaOgRRCIqiUGLYWkOHIYrA9qPXDB2CKAStTkfz1FvIsi1CCFH8SYL9EnpwWPjznBBNkmzjJutgGz91HWzpwTZqsoay8dOqNdgyIshYKYpMFymEeDbyl/4llD8sPCwsjHLlyqnbAwMDDRiVEEIIIYQQQhg36cEWqgcnOyssqcE2frIOtvFTFEVqsIsBWUPZ+Gl1OjSaXOnBFkKIl4Ak2C+5B9fSLsrh4pKUFQ8ljm00dAiiEEwULSVkoFKxUMHKwtAhiELQ6nRob16XNemF0fvjjz+oVq2aocMQ4oUmCfZL7sG1tIt6/WxJso3bf2uwJUEzVvk1g9KDbdykBtv4qTXYsiqD0VK0L97tkYCAAGJjY7GwyLsBp9PpqFKlCsOHD1fX2A4PDychIaFI1mkODQ0lJSWF2bNnA9C4cWOWLFlCs2bNCn3tfCNHjmTv3r1s3ryZOnXqFNl1H7R582aioqK4ceMGtWvXZuzYsbz22mvq/iVLlrBq1Sr+/vtv6tevz5QpU6hZsyYAGRkZTJs2jf3795Obm0u7du2YPHkytra2AERFRfHFF1+obQLQr1+/At+xL1y4QO/evYmKiqJ58+ZA3kjSmTNnEh8fj0ajoU6dOgQGBuLm5gbA1atXmT17Nj/88AM6nY6mTZsSGBhIlSpV9K6dkZFBz5496dixIyNGjFC3Dx48mOPHj1OixH/Tvy+++IJWrVoVxccqHiAJdjH0YK/0ozyup9rKyup5hSSEEEIIIYpYly5d1IRXq9Wyfft2PvnkE3bt2lXkPc0pKSl6z0+dOlWk179x4waHDh2iR48eLF26lM8//7xIrw8QHx/P5MmTWbBgAa1atSI+Pp4hQ4awefNmatasyZYtW1i1ahVLly6latWqhIWFMXLkSGJjYzExMWHatGlcv36dPXv2oCgKo0ePZu7cuUyePBmAn3/+GR8fH4YPH/7YGDIzM/n0008LlGaGh4dz5coVdu7ciY2NDZ9//jnDhw9n3759APj5+VGvXj3279+PTqdjxowZ+Pr6Ehsbq3edKVOmcOXKlQKv+/PPP7N06VLc3d0L+SmKp5EEuxh6sFf6UR6XfD/tvH9CarCNn6IoaKVm0KgpiqyDXRxIDbbx0+p0aHJzpQf7JRUeHs7GjRvJzMykSpUq+Pr60q5duyJ/HVNTU7p168asWbM4e/ZsgQRbp9OxZMkSYmNjuX79OiYmJrRq1YoZM2ZgZWVFQEAAgJqwA7i6urJy5Up++OEHNZE7e/Ys27dvV/c1b96cS5cu8dlnn3H+/Hnu3r1L5cqV8ff3p23bts8c/9q1a2nRogWDBw+ma9eujB07looVKz7y2DVr1rBs2TLu3btHxYoV6devH7179+bq1au0a9eOiRMn8uWXX5KVlYWnpyeTJ0/Gzs6OHTt20LlzZzWut99+m5iYGDZt2oS/vz8xMTH07duXWrVqAfDpp58SExPD8ePHadiwIbGxsaxcuRJHR0cAxo4dS79+/Rg3bhzW1tYkJibSo0ePJ77PKVOm0L59ey5cuKC3/dKlS+h0OnT/GfFiamqKtbU1AKmpqTg5OTFq1ChsbGyAvJ7xd999l9TUVBwcHIC83vnk5GSaNGmid+2kpCRSU1Of26gAoU8SbPFcWP/1s6FDEIWkKApK2w8NHYYoBJ2iUIKZhg5DFIFW9co9/SDxwlJ0Okr3GmboMIQBHDt2jPXr17N582bKli3L+vXrmTBhAq1atcLc3LxIXys3N5d9+/ZhYmLyyF7KuLg4Vq5cSXR0NNWrV+fSpUv07duX2NhYevfu/cRr+/n5kZSUBOgn4PlGjBhBu3btWLhwITqdjrlz5xISEvLMCbZGoyEmJobQ0FBq1qxJ8+bNWblyJePHjy9wbFJSErNmzWLbtm3UrFmTw4cP4+fnR+vWrdVj9u7dS2xsLIqi4Ofnx5QpU5gzZw6KoqgJaj5TU1MuX74MwMWLFxkyZIi6z9zcnOrVq3Pu3DkcHR3Jycmhdu3a6n4XFxeysrK4cuUK5cqVIzk5mZiYGCZOnIiFhQXvvPMOo0aNwtLSEoCtW7fyxx9/MGPGDBYvXqwXx6BBgxgxYgQtWrTAzMyMUqVKsXLlSgAcHBxYunSp3vF79uyhUqVKanJ96dIlwsPDWbduHWPHjtU7NjExEVtbW8aMGUNiYiJOTk4MGDCAXr16PVP7iH9GEmzx3EgNtnGTdbCNn6yDXTzk12CbSQ+20VLUdbDl76mxUhTlqb3O8fHxBbZZWlqSmppKTEwMbdu2pXfv3vTp0weTIvp93rFjhzqEODMzk9zcXAYPHkypUqUKHNuqVSuaNGlChQoVuHv3LikpKTg6OnLjxo1CxxEZGUn58uXR6XRcu3aNkiVL/qPrxsXF4ejoSMuWLQHo378/Y8aMwc/PDzs7O71jzczM0Ol0rFu3Di8vLzw8PPjpp58wNTXl6tWrQN7Ss6VLlwby6rp9fHyYMWMGXl5eTJo0CS8vL5o0acKBAwc4evSoWoOdnp6u9hrns7KyIiMjg7S0NAC9BD3/2PT0dG7dukWzZs3o0aMH8+fPJykpidGjR5OZmcnkyZO5dOkSYWFhrF279pF/CxRFwcvLCz8/P2xtbfnss8/w9fVl+/btaoKeb+3atSxbtoyIiAggr3579OjRTJw4kfLlyxe4tkajoVGjRowZM4ZatWpx/PhxRowYga2tLR06dHjGVhLPShLsl1hgYGCB+o+wsDADRSOEEEIIUbw0btyY8PBwVq1axVdffYWVlRXe3t74+PhgWgQlA507d1Z7lHU6HadOneKTTz5Bq9UW6P3V6XSEhYXx7bffUrp0aV599VVycnLUIcmFce7cOXx9fbl16xYuLi6ULl36H103OjqapKQkWrRooW5LS0sjJiaGQYMG6R3r7Oysfp7Dhg1DURR69OiBv7+/esyDw+MrVqyIRqPh3r17dOrUibt37xIcHExqaiqtW7emc+fOZGZmAnkJ88PfjbOysrC1tVUT68zMTHVSs/zz7OzscHNzY/Xq1ep5Li4u+Pr6EhISQkBAAGPGjCEoKAhnZ+cC7z8nJ4dRo0YRFRWlJsjBwcG89tprfPfdd3h6egJ5ifKsWbPYtWsXkZGR6uc1ffp0mjdv/tibQN26daNbt27q85YtW9KtWzfi4uIkwX4OJMF+iWVlZT23hFpqsI2foihoNBrpcTFisg528aBFh0arlR5sI6bodPL3tBh4VA/10yQnJ1OmTBmWLl2KRqPh6NGjDB8+nLp169KmTZsijc/ExIQmTZrwzjvvcPDgwQIJ9ty5c0lOTmb//v1qr3CXLl3U/aampmRnZ6vP7969+0yve+PGDUaNGsXChQvVRHDPnj3s3bv3mc4/c+YMZ8+eZcuWLZQsWVLdHhMTw8qVK+nXr5/ezNd37txBURQWLVqEVqvlxx9/ZOTIkdSoUUMdJn7jxg115u+rV69ibW1NqVKluHXrFm+++Sbe3t7q9d577z3efvttAGrVqsVvv/2mDm3PycnhypUr1K5dmxo1amBubs7Fixdp2LAhkDcsO38YeUJCAqdOnWLo0KHqtTUaDVZWViQmJnLlyhUmTJjAhAkT1P3Dhg3j3XffZcyYMaSmpqLRaNR9ZmZmmJiYqKUEd+/excfHB41Gw8aNG/VmD9++fTvm5uZs3boVyJtJ/KefflKHym/cuLFAb7VGoynQMy6KhiTYL6H8WcaLct3rh+luJz+3a4v/DZ2ixezMYUOHIQpDK+tgFxcWMjmW0TMrW93QIQgDSExMZNKkSaxYsQI3NzfKlCkD8Mgh3EXh0qVL7Nu3j9dff73AvrS0NCwtLTEzMyM7O5vVq1dz4cIFNZl0cXFh5cqV3LhxAwcHBxYtWqQ3lN3CwoI7d+4UuG56ejqKoqjDpS9evMiiRYuAvCTuwSWrHiU6OprWrVvr1TYD9O3bl6ioKOLi4vRuBCQnJzNo0CAiIyPx8PBQe3wf/Ew///xzQkNDSU9PZ8GCBbz77ruYm5tz4sQJZs2axbp163BycmLt2rX8/vvvdO/eHYCePXsSHh5Oq1atqFGjBmFhYTg5OdGsWTPMzc3p0KEDc+fO5YsvvgDyblp07twZKysrrK2tCQ8Px9nZmU6dOnHp0iUWL15Mnz59aNasGWfOnNF7f66urnz55ZfqMl1NmzZl7ty5REREYGdnx/z58ylVqhRNmzYlJydHHfq/aNGiAiv/PHxtb29v3N3d1WW60tLSmDdvHtWqVcPNzY1Dhw6xY8eOAnXdomhIgv0Syp8tvKjXvX6YzD5t3PLXUJZZb41X/rqt0oNt3KQG2/hJDbbx+7ej8ry8vLhy5Qo+Pj6kpKRQpkwZgoKC1B7QwoqNjWXPnj3qc3t7e7y8vApMcgUwevRoAgMDef3117GxsaFp06a8++676mzWffr0ITExka5du2JhYUH//v31hjN37NiRMWPG0KZNGw4cOKBur1mzJuPGjcPf35/MzEwqVKjAe++9x5w5c7hw4QL16tV7bPx3794lLi7ukSMqnZyc8PT05Ouvv9ZLsOvXr8+kSZMICQnh5s2b2Nvb07dvXzp06MC1a9cAqFq1qjr0u0uXLurw8Y4dO3L58mX69OlDRkYGdevWZcWKFeqNj169enH//n38/Py4e/cu9evXJzIyUu1Fnjx5MqGhoXTp0oWcnBzatWtHcHCwGte8efNYtGgRkyZNwt7envfee49hw55tgsMFCxbw2Wef0bVrV3Jzc2nYsCFLly7FxsaGvXv38ssvv2BpaYmHh4feeTt37nzksPMH9e/fn4yMDIYPH86dO3eoUqUKoaGhRbqGufgvE11RFF4Io/Q8a7AzD62TBNvIaTS5aJMvSoJtxDS5uYzv97Uk2EYuFy0fNHGWBNuIabRa3jgULwm2EVMUBduHJtsSL578Zbri4+OpXLmyocMRLynpwX6JFeW614+S3wMqjFt+L6gwXvk9oMK4KXI/3OjJ3CRCCFH8SYItngvrVu8bOgQhBBDlHWLoEIQQQjxkz549BAQEPHZ/06ZNOXny5GP3Dx069JmHHhvSmTNn6N+//2P3Ozs7s3Pnzv9hREI8fzJEXAghhBBCCCGEKAJSXCmEEEIIIYQQQhQBSbCFEEIIIYQQQogiIAm2EEIIIYQQQghRBCTBFkIIIYQQQgghioAk2EIIIYQQQgghRBGQBFsIIYQQQgghhCgCkmALIYQQQgghhBBFQBJsIYQQQgghhBCiCEiCLYQQQgghhBBCFAFJsIUQQgghhBBCiCIgCbYQQgghhBBCCFEEJMEWQgghhBBCCCGKgCTYQgghhBBCCCFEEZAEW4h/IC0tjYMHD3Ls2DEURTF0OOIfyMrK4ty5c2RnZxfYd/LkSQNEJAojLS2Nffv28cMPP5Cbm2vocIR46f3444+GDkEIIV4IJjqdTmfoIIR4UbVr1474+HgALl26xMCBA0lPTyc3N5cqVaqwZMkSKlasaOAoxdOcO3eOwYMHc/v2bWxsbAgJCaFr167q/iZNmsiXwxfc1atXCQwMpEyZMowaNQpvb28yMjLQarXUqFGDJUuW4OTkZOgwhXhpubu7k5CQYOgwhBDC4CTBFuIJGjduzKlTpwAYOnQo1apVIzAwkNzcXKZNm8adO3dYtGiRgaMUTzNw4EAaN27MoEGD2L17NzNmzGDWrFm88847gH47ixfT8OHDsbGxIT09nZ9//pl33nmH8ePHk5uby9SpU8nKymLu3LmGDlM8wcKFC596zPDhw/8HkYjC8PT0xMTEpMD25ORknJ2dAdQb00II8TIqYegAhHiRPfgl4syZM4SFhWFiYoK5uTnjx4+ndevWBoxOPKuzZ8+yZMkSSpQoQa9evShVqhT+/v5Ur14dNze3R35ZFC+WhIQEDh8+zN9//02rVq0YM2YMpqamWFhYEBgYiJeXl6FDFE9x7tw54uPjady4MWZmZgX2y++hcejSpQtLly6lf//+vPLKKwDodDqmTZsmN0iEEAJJsIV4Zk5OTmg0GmxsbIC8LxQlSsivkDEwNzcnIyODkiVLAnlD/wcPHsyIESPYtGkTMpDHOJiYmFC2bFk6deqEqel/pxDRaDRotVoDRiaexYIFCxgyZAiNGzeWRMyIjRkzhhYtWhAcHEz16tXp3bs3ALNnz6Z79+4Gjk4IIQxPJjkT4gkyMjJo3749o0ePxsbGhiVLlgB5Q+EmTpyIu7u7gSMUz6Jly5aMGzeOc+fOqdt8fX1xcXFhwIABkpwZgSZNmjBr1iwURWHu3LlYWFgAkJiYyKhRo/D09DRwhOJpTE1NmTZtGtHR0aSlpRk6HFEIHh4erFu3jl27djFq1Cju379v6JCEEOKFIQm2EE/w3XffMXHiRFxcXHBwcODGjRsArFq1iitXrhAYGGjgCMWz8Pf3x8zMrEC9/Pz58ylXrhwajcZAkYlnNWnSJE6fPl1g9n5/f38cHBwICAgwUGTiWeXk5ODs7My6detkOLgRy8nJAfJGdS1btozatWvTvXt3mc1fCCH+QyY5E+IJWrZsyfvvv8/777+vN0Nxeno6tra2BoxM/BNvvPEGH3zwQYF2zHf27Fnq1KljgMjEs3pcG2ZnZ2NpaWnAyMSzym/DDz74gDJlyhg6HPEvPep38cSJE8TGxjJ16lQDRyeEEIYnCbYQTxATE8O6dev47bff6NixI/369aNu3bqGDkv8Qw+2Y4cOHejfv7+0o5GRNjR+0obFg7SjEEI8mSTYQjyDn376iXXr1hEXF0edOnXo168fb7/99iNnwhUvLmlH4ydtaPykDYsHaUchhHg0SbCF+AdSU1PZuHEjMTExZGdn07dvXz7++GNDhyX+IWlH4ydtaPykDYsHaUchhNAnCbYQ/8K9e/eYPXs227Zt49dffzV0OOJfknY0ftKGxk/asHiQdhRCiDwyi7gQ/8Dx48f59NNPad26NTdv3mThwoWGDkn8C9KOxk/a0PhJGxYP0o5CCKGvhKEDEOJFd+fOHTZv3szGjRu5desWXbt2ZfPmzbi4uBg6NPEPSDsaP2lD4ydtWDxIOwohxONJgi3EE4wYMYJvv/0WZ2dn+vbtS69evbCzszN0WOIfknY0ftKGxk/asHiQdhRCiCeTBFuIJ8jIyGDhwoW0bt0aExMTQ4cj/iVpR+MnbWj8pA2LB2lHIYR4MpnkTAghhBBCCCGEKAIyyZkQQgghhBBCCFEEJMEWQgghhBBCCCGKgCTYQgghhBBCCCFEEZAEWwghhBBCCCGEKAKSYAshhBBCCCGEEEVAEmwhhBBCCCGEEKIISIIthBBCCCGEEEIUAUmwhRBCCCGEEEKIIvD/bHf8qKfibrIAAAAASUVORK5CYII=", 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" ] @@ -1552,10 +1539,10 @@ { "data": { "text/plain": [ - "" + "" ] }, - "execution_count": 33, + "execution_count": 28, "metadata": {}, "output_type": "execute_result" } @@ -1578,17 +1565,6359 @@ "cell_type": "markdown", "metadata": {}, "source": [ - "T-test, ANOVA, and other statistical tests" + "change meta sa \"Sugar_type\"" ] }, { "cell_type": "code", - "execution_count": null, + "execution_count": 31, + "metadata": {}, + "outputs": [ + { + "name": "stdout", + "output_type": "stream", + "text": [ + "group is set to Sugar_type\n", + " {'NAS', 'BAS', 'PBS', 'CHO'}\n" + ] + } + ], + "source": [ + "sw.set_group('Sugar_type')" + ] + }, + { + "cell_type": "markdown", "metadata": {}, - "outputs": [], "source": [ - "#TODO: add more examples" + "### T-test, ANOVA, and other statistical tests" ] + }, + { + "cell_type": "markdown", + "metadata": {}, + "source": [ + "Run T-test to compare the \"PBS\" and \"NAS\" groups, and only select samples in 'V1' and 'V2' of Individulal.\n", + "\n", + "`condtions`(Optional): The conditions to filter the samples. Default is None." + ] + }, + { + "cell_type": "code", + "execution_count": 32, + "metadata": {}, + "outputs": [ + { + "name": "stdout", + "output_type": "stream", + "text": [ + "t-test for taxa-func in ['PBS', 'NAS']\n" + ] + }, + { + "name": "stderr", + "output_type": "stream", + "text": [ + "100%|██████████| 1173/1173 [00:03<00:00, 329.37it/s]\n" + ] + }, + { + "data": { + "text/html": [ + "
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TaxonKEGG_ko
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.....................................................................
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d__Bacteria|p__Verrucomicrobiota|c__Verrucomicrobiae|o__Verrucomicrobiales|f__Akkermansiaceae|g__Akkermansia|s__Akkermansia muciniphila_Ako:K00134NaNNaN0.00.00.00.00.0000000.00.00.0...0.00.00.00.00.0000000.00.0000000.00.00.0
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"... ... ... \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... ko:K03286 0.0 0.000000 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... ko:K02358 0.0 0.000000 \n", + "d__Bacteria|p__Spirochaetota|c__Spirochaetia|o_... ko:K00656 0.0 0.000000 \n", + "d__Bacteria|p__Verrucomicrobiota|c__Verrucomicr... ko:K02886 0.0 0.000000 \n", + "d__Bacteria|p__Verrucomicrobiota|c__Verrucomicr... ko:K00134 0.0 0.000000 \n", + "\n", + " V2_27 V2_30 \n", + "Taxon KEGG_ko \n", + "d__Archaea|p__Methanobacteriota|c__Methanobacte... ko:K13942 0.0 0.000000 \\\n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... ko:K00615 0.0 0.000000 \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... ko:K01621 0.0 5.990444 \n", + " ko:K02879 0.0 0.000000 \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... ko:K00656 0.0 0.000000 \n", + "... ... ... \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... ko:K03286 0.0 0.000000 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... ko:K02358 0.0 0.000000 \n", + "d__Bacteria|p__Spirochaetota|c__Spirochaetia|o_... ko:K00656 0.0 0.000000 \n", + "d__Bacteria|p__Verrucomicrobiota|c__Verrucomicr... ko:K02886 0.0 0.000000 \n", + "d__Bacteria|p__Verrucomicrobiota|c__Verrucomicr... ko:K00134 0.0 0.000000 \n", + "\n", + " V2_34 V2_35 \n", + "Taxon KEGG_ko \n", + "d__Archaea|p__Methanobacteriota|c__Methanobacte... ko:K13942 0.0 0.0 \\\n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... ko:K00615 0.0 0.0 \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... ko:K01621 0.0 0.0 \n", + " ko:K02879 0.0 0.0 \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... ko:K00656 0.0 0.0 \n", + "... ... ... \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... ko:K03286 0.0 0.0 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... ko:K02358 0.0 0.0 \n", + "d__Bacteria|p__Spirochaetota|c__Spirochaetia|o_... ko:K00656 0.0 0.0 \n", + "d__Bacteria|p__Verrucomicrobiota|c__Verrucomicr... ko:K02886 0.0 0.0 \n", + "d__Bacteria|p__Verrucomicrobiota|c__Verrucomicr... ko:K00134 0.0 0.0 \n", + "\n", + " V2_36 \n", + "Taxon KEGG_ko \n", + "d__Archaea|p__Methanobacteriota|c__Methanobacte... ko:K13942 0.0 \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... ko:K00615 0.0 \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... ko:K01621 0.0 \n", + " ko:K02879 0.0 \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... ko:K00656 0.0 \n", + "... ... \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... ko:K03286 0.0 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... ko:K02358 0.0 \n", + "d__Bacteria|p__Spirochaetota|c__Spirochaetia|o_... ko:K00656 0.0 \n", + "d__Bacteria|p__Verrucomicrobiota|c__Verrucomicr... ko:K02886 0.0 \n", + "d__Bacteria|p__Verrucomicrobiota|c__Verrucomicr... ko:K00134 0.0 \n", + "\n", + "[1173 rows x 42 columns]" + ] + }, + "execution_count": 32, + "metadata": {}, + "output_type": "execute_result" + } + ], + "source": [ + "#TODO: add more examples\n", + "df_t_test = sw.CrossTest.get_stats_ttest(group_list = ['PBS', 'NAS'],\n", + " df_type = 'taxa-func', \n", + " condition = ['Individual', ['V1', 'V2']])\n", + "df_t_test" + ] + }, + { + "cell_type": "markdown", + "metadata": {}, + "source": [ + "Same as ANOVA, but the group is more than two." + ] + }, + { + "cell_type": "code", + "execution_count": 34, + "metadata": {}, + "outputs": [ + { + "name": "stdout", + "output_type": "stream", + "text": [ + "--ANOVA test for Taxon in ['PBS', 'NAS', 'CHO'] with condition: None--\n" + ] + }, + { + "name": "stderr", + "output_type": "stream", + "text": [ + "100%|██████████| 132/132 [00:00<00:00, 317.94it/s]\n" + ] + }, + { + "data": { + "text/html": [ + "
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P-valuef-statisticV1_01V1_26V1_37V2_01V2_26V2_37V3_01V3_26...V5_11V5_13V5_16V5_22V5_24V5_29V5_31V5_32V5_33V5_38
Taxon
d__Bacteria|p__Actinobacteriota|c__Actinomycetia|o__Actinomycetales|f__Bifidobacteriaceae|g__Bifidobacterium|s__Bifidobacterium breve9.900382e-010.0100120.0000000.0000000.0000000.0000005.9883150.0000000.0000000.000000...0.000000.0000000.0000000.0000000.0000000.0000000.0000000.0000000.0000000.000000
d__Bacteria|p__Actinobacteriota|c__Actinomycetia|o__Actinomycetales|f__Bifidobacteriaceae|g__Bifidobacterium|s__Bifidobacterium infantis1.438214e-024.3481170.0000000.0000000.0000000.0000000.0000000.0000000.0000000.000000...0.000006.1005985.2982590.0000000.0000000.0000000.0000000.0000000.0000000.000000
d__Bacteria|p__Actinobacteriota|c__Actinomycetia|o__Actinomycetales|f__Bifidobacteriaceae|g__Bifidobacterium|s__Bifidobacterium pseudocatenulatum4.131231e-1024.5640160.0000006.0963220.0000000.0000000.0000006.45896012.2047275.865064...0.000000.0000000.0000005.7593515.3072730.0000000.0000000.0000000.0000000.000000
d__Bacteria|p__Actinobacteriota|c__Coriobacteriia|o__Coriobacteriales|f__Coriobacteriaceae|g__Collinsella|s__Collinsella sp0022320359.094473e-010.0949710.0000000.0000000.0000000.0000000.0000000.0000000.0000000.000000...0.000000.0000000.0000000.0000006.4687890.0000000.0000000.0000000.0000000.000000
d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__Bacteroidales|f__Bacteroidaceae|g__Bacteroides|s__Bacteroides bouchesdurhonensis1.388464e-0717.3323785.2850195.4231625.3591885.68438112.1943530.0000005.4894525.264407...0.000000.0000000.0000000.0000000.0000000.0000000.0000000.0000000.0000006.225896
..................................................................
d__Bacteria|p__Fusobacteriota|c__Fusobacteriia|o__Fusobacteriales|f__Fusobacteriaceae|g__Fusobacterium_A|s__Fusobacterium_A sp9005554857.793646e-010.2496380.0000000.0000000.0000000.0000000.0000000.0000000.0000000.000000...0.000000.0000000.0000000.0000000.0000000.0000000.0000000.0000000.0000000.000000
d__Bacteria|p__Proteobacteria|c__Gammaproteobacteria|o__Burkholderiales|f__Burkholderiaceae|g__Parasutterella|s__Parasutterella sp0009804953.408515e-011.0830720.0000000.0000000.0000005.7705555.8460735.9461366.1100186.001110...0.000000.0000000.0000000.0000000.0000004.8483250.0000000.0000000.0000000.000000
d__Bacteria|p__Proteobacteria|c__Gammaproteobacteria|o__Burkholderiales|f__Burkholderiaceae|g__Sutterella|s__Sutterella wadsworthensis_A5.101041e-010.6757820.0000000.0000000.0000000.0000000.0000000.0000000.0000000.000000...0.0000012.41442612.34200911.92837712.2432500.0000006.0861470.0000000.0000000.000000
d__Bacteria|p__Proteobacteria|c__Gammaproteobacteria|o__Enterobacterales|f__Enterobacteriaceae|g__Citrobacter_B|s__Citrobacter_B koseri7.819354e-034.9905864.96840420.84982510.86018678.14139483.85729671.36550716.38102316.969780...5.325380.0000000.00000051.09382440.33131328.5939350.0000005.93488633.54290344.616342
d__Bacteria|p__Proteobacteria|c__Gammaproteobacteria|o__Enterobacterales|f__Enterobacteriaceae|g__Escherichia|s__Escherichia coli_D7.435547e-010.29682424.17899323.60067917.04070110.7105835.42599410.88187511.63032111.364727...0.000000.0000000.0000000.00000010.1249469.1790010.0000000.0000004.7370260.000000
\n", + "

132 rows × 177 columns

\n", + "
" + ], + "text/plain": [ + " P-value f-statistic \n", + "Taxon \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 9.900382e-01 0.010012 \\\n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 1.438214e-02 4.348117 \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 4.131231e-10 24.564016 \n", + "d__Bacteria|p__Actinobacteriota|c__Coriobacteri... 9.094473e-01 0.094971 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 1.388464e-07 17.332378 \n", + "... ... ... \n", + "d__Bacteria|p__Fusobacteriota|c__Fusobacteriia|... 7.793646e-01 0.249638 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 3.408515e-01 1.083072 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 5.101041e-01 0.675782 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 7.819354e-03 4.990586 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 7.435547e-01 0.296824 \n", + "\n", + " V1_01 V1_26 \n", + "Taxon \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.000000 0.000000 \\\n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.000000 0.000000 \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.000000 6.096322 \n", + "d__Bacteria|p__Actinobacteriota|c__Coriobacteri... 0.000000 0.000000 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 5.285019 5.423162 \n", + "... ... ... \n", + "d__Bacteria|p__Fusobacteriota|c__Fusobacteriia|... 0.000000 0.000000 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.000000 0.000000 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.000000 0.000000 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 4.968404 20.849825 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 24.178993 23.600679 \n", + "\n", + " V1_37 V2_01 \n", + "Taxon \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.000000 0.000000 \\\n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.000000 0.000000 \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.000000 0.000000 \n", + "d__Bacteria|p__Actinobacteriota|c__Coriobacteri... 0.000000 0.000000 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 5.359188 5.684381 \n", + "... ... ... \n", + "d__Bacteria|p__Fusobacteriota|c__Fusobacteriia|... 0.000000 0.000000 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.000000 5.770555 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.000000 0.000000 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 10.860186 78.141394 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 17.040701 10.710583 \n", + "\n", + " V2_26 V2_37 \n", + "Taxon \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 5.988315 0.000000 \\\n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.000000 0.000000 \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.000000 6.458960 \n", + "d__Bacteria|p__Actinobacteriota|c__Coriobacteri... 0.000000 0.000000 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 12.194353 0.000000 \n", + "... ... ... \n", + "d__Bacteria|p__Fusobacteriota|c__Fusobacteriia|... 0.000000 0.000000 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 5.846073 5.946136 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.000000 0.000000 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 83.857296 71.365507 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 5.425994 10.881875 \n", + "\n", + " V3_01 V3_26 ... \n", + "Taxon ... \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.000000 0.000000 ... \\\n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.000000 0.000000 ... \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 12.204727 5.865064 ... \n", + "d__Bacteria|p__Actinobacteriota|c__Coriobacteri... 0.000000 0.000000 ... \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 5.489452 5.264407 ... \n", + "... ... ... ... \n", + "d__Bacteria|p__Fusobacteriota|c__Fusobacteriia|... 0.000000 0.000000 ... \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 6.110018 6.001110 ... \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.000000 0.000000 ... \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 16.381023 16.969780 ... \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 11.630321 11.364727 ... \n", + "\n", + " V5_11 V5_13 \n", + "Taxon \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.00000 0.000000 \\\n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.00000 6.100598 \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.00000 0.000000 \n", + "d__Bacteria|p__Actinobacteriota|c__Coriobacteri... 0.00000 0.000000 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 0.00000 0.000000 \n", + "... ... ... \n", + "d__Bacteria|p__Fusobacteriota|c__Fusobacteriia|... 0.00000 0.000000 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.00000 0.000000 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.00000 12.414426 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 5.32538 0.000000 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.00000 0.000000 \n", + "\n", + " V5_16 V5_22 \n", + "Taxon \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.000000 0.000000 \\\n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 5.298259 0.000000 \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.000000 5.759351 \n", + "d__Bacteria|p__Actinobacteriota|c__Coriobacteri... 0.000000 0.000000 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 0.000000 0.000000 \n", + "... ... ... \n", + "d__Bacteria|p__Fusobacteriota|c__Fusobacteriia|... 0.000000 0.000000 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.000000 0.000000 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 12.342009 11.928377 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.000000 51.093824 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.000000 0.000000 \n", + "\n", + " V5_24 V5_29 \n", + "Taxon \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.000000 0.000000 \\\n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.000000 0.000000 \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 5.307273 0.000000 \n", + "d__Bacteria|p__Actinobacteriota|c__Coriobacteri... 6.468789 0.000000 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 0.000000 0.000000 \n", + "... ... ... \n", + "d__Bacteria|p__Fusobacteriota|c__Fusobacteriia|... 0.000000 0.000000 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.000000 4.848325 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 12.243250 0.000000 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 40.331313 28.593935 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 10.124946 9.179001 \n", + "\n", + " V5_31 V5_32 \n", + "Taxon \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.000000 0.000000 \\\n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.000000 0.000000 \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.000000 0.000000 \n", + "d__Bacteria|p__Actinobacteriota|c__Coriobacteri... 0.000000 0.000000 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 0.000000 0.000000 \n", + "... ... ... \n", + "d__Bacteria|p__Fusobacteriota|c__Fusobacteriia|... 0.000000 0.000000 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.000000 0.000000 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 6.086147 0.000000 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.000000 5.934886 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.000000 0.000000 \n", + "\n", + " V5_33 V5_38 \n", + "Taxon \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.000000 0.000000 \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.000000 0.000000 \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.000000 0.000000 \n", + "d__Bacteria|p__Actinobacteriota|c__Coriobacteri... 0.000000 0.000000 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 0.000000 6.225896 \n", + "... ... ... \n", + "d__Bacteria|p__Fusobacteriota|c__Fusobacteriia|... 0.000000 0.000000 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.000000 0.000000 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.000000 0.000000 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 33.542903 44.616342 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 4.737026 0.000000 \n", + "\n", + "[132 rows x 177 columns]" + ] + }, + "execution_count": 34, + "metadata": {}, + "output_type": "execute_result" + } + ], + "source": [ + "df_anova_test = sw.CrossTest.get_stats_anova(group_list = ['PBS', 'NAS', 'CHO'],\n", + " df_type = 'taxa', \n", + " condition = None)\n", + "df_anova_test" + ] + }, + { + "cell_type": "markdown", + "metadata": {}, + "source": [ + "Tukey's HSD test can be used to find the specific difference between groups after ANOVA.\n", + "- Set `taxon_name` only: calculate all the functions in the taxa.\n", + "- Set `func_name` only: calculate all the taxa in the function.\n", + "- Set `taxon_name` and `func_name`: calculate all peptides in the taxa and function.\n", + "- `sum_all`: \n", + " - True: sum all items in the taxa, function or taxa-function frist, then run Tukey's HSD test.\n", + " - False: run Tukey's HSD test directly for all items in the taxa, function or taxa-function." + ] + }, + { + "cell_type": "code", + "execution_count": 39, + "metadata": {}, + "outputs": [ + { + "name": "stdout", + "output_type": "stream", + "text": [ + " group1 group2 meandiff p-adj lower upper reject significant \n", + "0 BAS CHO 0.7029 0.1717 -0.1835 1.5892 False No \\\n", + "1 BAS NAS 0.0000 1.0000 -0.8776 0.8776 False No \n", + "2 BAS PBS 0.0000 1.0000 -1.1443 1.1443 False No \n", + "3 CHO NAS -0.7029 0.0018 -1.1993 -0.2064 True Yes \n", + "4 CHO PBS -0.7029 0.1717 -1.5892 0.1835 False No \n", + "5 NAS PBS 0.0000 1.0000 -0.8776 0.8776 False No \n", + "\n", + " Function \n", + "0 ko:K00033 \n", + "1 ko:K00033 \n", + "2 ko:K00033 \n", + "3 ko:K00033 \n", + "4 ko:K00033 \n", + "5 ko:K00033 \n", + " group1 group2 meandiff p-adj lower upper reject significant \n", + "0 BAS CHO 0.7029 0.1717 -0.1835 1.5892 False No \\\n", + "1 BAS NAS 0.0000 1.0000 -0.8776 0.8776 False No \n", + "2 BAS PBS 0.0000 1.0000 -1.1443 1.1443 False No \n", + "3 CHO NAS -0.7029 0.0018 -1.1993 -0.2064 True Yes \n", + "4 CHO PBS -0.7029 0.1717 -1.5892 0.1835 False No \n", + "5 NAS PBS 0.0000 1.0000 -0.8776 0.8776 False No \n", + "0 BAS CHO 2.6751 0.0024 0.7419 4.6082 True Yes \n", + "1 BAS NAS 1.7714 0.0807 -0.1426 3.6855 False No \n", + "2 BAS PBS 5.3092 0.0000 2.8136 7.8049 True Yes \n", + "3 CHO NAS -0.9036 0.1374 -1.9864 0.1791 False No \n", + "4 CHO PBS 2.6342 0.0029 0.7010 4.5673 True Yes \n", + "5 NAS PBS 3.5378 0.0000 1.6237 5.4519 True Yes \n", + "\n", + " Function \n", + "0 ko:K00033 \n", + "1 ko:K00033 \n", + "2 ko:K00033 \n", + "3 ko:K00033 \n", + "4 ko:K00033 \n", + "5 ko:K00033 \n", + "0 ko:K00134 \n", + "1 ko:K00134 \n", + "2 ko:K00134 \n", + "3 ko:K00134 \n", + "4 ko:K00134 \n", + "5 ko:K00134 \n", + " group1 group2 meandiff p-adj lower upper reject significant \n", + "0 BAS CHO 0.7029 0.1717 -0.1835 1.5892 False No \\\n", + "1 BAS NAS 0.0000 1.0000 -0.8776 0.8776 False No \n", + "2 BAS PBS 0.0000 1.0000 -1.1443 1.1443 False No \n", + "3 CHO NAS -0.7029 0.0018 -1.1993 -0.2064 True Yes \n", + "4 CHO PBS -0.7029 0.1717 -1.5892 0.1835 False No \n", + "5 NAS PBS 0.0000 1.0000 -0.8776 0.8776 False No \n", + "0 BAS CHO 2.6751 0.0024 0.7419 4.6082 True Yes \n", + "1 BAS NAS 1.7714 0.0807 -0.1426 3.6855 False No \n", + "2 BAS PBS 5.3092 0.0000 2.8136 7.8049 True Yes \n", + "3 CHO NAS -0.9036 0.1374 -1.9864 0.1791 False No \n", + "4 CHO PBS 2.6342 0.0029 0.7010 4.5673 True Yes \n", + "5 NAS PBS 3.5378 0.0000 1.6237 5.4519 True Yes \n", + "0 BAS CHO 0.0000 1.0000 -0.3333 0.3333 False No \n", + "1 BAS NAS 0.0734 0.9391 -0.2566 0.4034 False No \n", + "2 BAS PBS 0.0000 1.0000 -0.4303 0.4303 False No \n", + "3 CHO NAS 0.0734 0.7387 -0.1133 0.2600 False No \n", + "4 CHO PBS 0.0000 1.0000 -0.3333 0.3333 False No \n", + "5 NAS PBS -0.0734 0.9391 -0.4034 0.2566 False No \n", + "\n", + " Function \n", + "0 ko:K00033 \n", + "1 ko:K00033 \n", + "2 ko:K00033 \n", + "3 ko:K00033 \n", + "4 ko:K00033 \n", + "5 ko:K00033 \n", + "0 ko:K00134 \n", + "1 ko:K00134 \n", + "2 ko:K00134 \n", + "3 ko:K00134 \n", + "4 ko:K00134 \n", + "5 ko:K00134 \n", + "0 ko:K00163 \n", + "1 ko:K00163 \n", + "2 ko:K00163 \n", + "3 ko:K00163 \n", + "4 ko:K00163 \n", + "5 ko:K00163 \n", + " group1 group2 meandiff p-adj lower upper reject significant \n", + "0 BAS CHO 0.7029 0.1717 -0.1835 1.5892 False No \\\n", + "1 BAS NAS 0.0000 1.0000 -0.8776 0.8776 False No \n", + "2 BAS PBS 0.0000 1.0000 -1.1443 1.1443 False No \n", + "3 CHO NAS -0.7029 0.0018 -1.1993 -0.2064 True Yes \n", + "4 CHO PBS -0.7029 0.1717 -1.5892 0.1835 False No \n", + "5 NAS PBS 0.0000 1.0000 -0.8776 0.8776 False No \n", + "0 BAS CHO 2.6751 0.0024 0.7419 4.6082 True Yes \n", + "1 BAS NAS 1.7714 0.0807 -0.1426 3.6855 False No \n", + "2 BAS PBS 5.3092 0.0000 2.8136 7.8049 True Yes \n", + "3 CHO NAS -0.9036 0.1374 -1.9864 0.1791 False No \n", + "4 CHO PBS 2.6342 0.0029 0.7010 4.5673 True Yes \n", + "5 NAS PBS 3.5378 0.0000 1.6237 5.4519 True Yes \n", + "0 BAS CHO 0.0000 1.0000 -0.3333 0.3333 False No \n", + "1 BAS NAS 0.0734 0.9391 -0.2566 0.4034 False No \n", + "2 BAS PBS 0.0000 1.0000 -0.4303 0.4303 False No \n", + "3 CHO NAS 0.0734 0.7387 -0.1133 0.2600 False No \n", + "4 CHO PBS 0.0000 1.0000 -0.3333 0.3333 False No \n", + "5 NAS PBS -0.0734 0.9391 -0.4034 0.2566 False No \n", + "0 BAS CHO 0.0000 1.0000 -0.4874 0.4874 False No \n", + "1 BAS NAS 0.1874 0.7458 -0.2952 0.6700 False No \n", + "2 BAS PBS 0.0000 1.0000 -0.6293 0.6293 False No \n", + "3 CHO NAS 0.1874 0.2865 -0.0856 0.4604 False No \n", + "4 CHO PBS 0.0000 1.0000 -0.4874 0.4874 False No \n", + "5 NAS PBS -0.1874 0.7458 -0.6700 0.2952 False No \n", + "\n", + " Function \n", + "0 ko:K00033 \n", + "1 ko:K00033 \n", + "2 ko:K00033 \n", + "3 ko:K00033 \n", + "4 ko:K00033 \n", + "5 ko:K00033 \n", + "0 ko:K00134 \n", + "1 ko:K00134 \n", + "2 ko:K00134 \n", + "3 ko:K00134 \n", + "4 ko:K00134 \n", + "5 ko:K00134 \n", + "0 ko:K00163 \n", + "1 ko:K00163 \n", + "2 ko:K00163 \n", + "3 ko:K00163 \n", + "4 ko:K00163 \n", + "5 ko:K00163 \n", + "0 ko:K00297,ko:K10901 \n", + "1 ko:K00297,ko:K10901 \n", + "2 ko:K00297,ko:K10901 \n", + "3 ko:K00297,ko:K10901 \n", + "4 ko:K00297,ko:K10901 \n", + "5 ko:K00297,ko:K10901 \n", + " group1 group2 meandiff p-adj lower upper reject significant \n", + "0 BAS CHO 0.7029 0.1717 -0.1835 1.5892 False No \\\n", + "1 BAS NAS 0.0000 1.0000 -0.8776 0.8776 False No \n", + "2 BAS PBS 0.0000 1.0000 -1.1443 1.1443 False No \n", + "3 CHO NAS -0.7029 0.0018 -1.1993 -0.2064 True Yes \n", + "4 CHO PBS -0.7029 0.1717 -1.5892 0.1835 False No \n", + "5 NAS PBS 0.0000 1.0000 -0.8776 0.8776 False No \n", + "0 BAS CHO 2.6751 0.0024 0.7419 4.6082 True Yes \n", + "1 BAS NAS 1.7714 0.0807 -0.1426 3.6855 False No \n", + "2 BAS PBS 5.3092 0.0000 2.8136 7.8049 True Yes \n", + "3 CHO NAS -0.9036 0.1374 -1.9864 0.1791 False No \n", + "4 CHO PBS 2.6342 0.0029 0.7010 4.5673 True Yes \n", + "5 NAS PBS 3.5378 0.0000 1.6237 5.4519 True Yes \n", + "0 BAS CHO 0.0000 1.0000 -0.3333 0.3333 False No \n", + "1 BAS NAS 0.0734 0.9391 -0.2566 0.4034 False No \n", + "2 BAS PBS 0.0000 1.0000 -0.4303 0.4303 False No \n", + "3 CHO NAS 0.0734 0.7387 -0.1133 0.2600 False No \n", + "4 CHO PBS 0.0000 1.0000 -0.3333 0.3333 False No \n", + "5 NAS PBS -0.0734 0.9391 -0.4034 0.2566 False No \n", + "0 BAS CHO 0.0000 1.0000 -0.4874 0.4874 False No \n", + "1 BAS NAS 0.1874 0.7458 -0.2952 0.6700 False No \n", + "2 BAS PBS 0.0000 1.0000 -0.6293 0.6293 False No \n", + "3 CHO NAS 0.1874 0.2865 -0.0856 0.4604 False No \n", + "4 CHO PBS 0.0000 1.0000 -0.4874 0.4874 False No \n", + "5 NAS PBS -0.1874 0.7458 -0.6700 0.2952 False No \n", + "0 BAS CHO 0.3103 0.5562 -0.3027 0.9233 False No \n", + "1 BAS NAS 0.0000 1.0000 -0.6069 0.6069 False No \n", + "2 BAS PBS 0.0000 1.0000 -0.7913 0.7913 False No \n", + "3 CHO NAS -0.3103 0.0921 -0.6536 0.0330 False No \n", + "4 CHO PBS -0.3103 0.5562 -0.9233 0.3027 False No \n", + "5 NAS PBS 0.0000 1.0000 -0.6069 0.6069 False No \n", + "\n", + " Function \n", + "0 ko:K00033 \n", + "1 ko:K00033 \n", + "2 ko:K00033 \n", + "3 ko:K00033 \n", + "4 ko:K00033 \n", + "5 ko:K00033 \n", + "0 ko:K00134 \n", + "1 ko:K00134 \n", + "2 ko:K00134 \n", + "3 ko:K00134 \n", + "4 ko:K00134 \n", + "5 ko:K00134 \n", + "0 ko:K00163 \n", + "1 ko:K00163 \n", + "2 ko:K00163 \n", + "3 ko:K00163 \n", + "4 ko:K00163 \n", + "5 ko:K00163 \n", + "0 ko:K00297,ko:K10901 \n", + "1 ko:K00297,ko:K10901 \n", + "2 ko:K00297,ko:K10901 \n", + "3 ko:K00297,ko:K10901 \n", + "4 ko:K00297,ko:K10901 \n", + "5 ko:K00297,ko:K10901 \n", + "0 ko:K00549 \n", + "1 ko:K00549 \n", + "2 ko:K00549 \n", + "3 ko:K00549 \n", + "4 ko:K00549 \n", + "5 ko:K00549 \n", + " group1 group2 meandiff p-adj lower upper reject significant \n", + "0 BAS CHO 0.7029 0.1717 -0.1835 1.5892 False No \\\n", + "1 BAS NAS 0.0000 1.0000 -0.8776 0.8776 False No \n", + "2 BAS PBS 0.0000 1.0000 -1.1443 1.1443 False No \n", + "3 CHO NAS -0.7029 0.0018 -1.1993 -0.2064 True Yes \n", + "4 CHO PBS -0.7029 0.1717 -1.5892 0.1835 False No \n", + "5 NAS PBS 0.0000 1.0000 -0.8776 0.8776 False No \n", + "0 BAS CHO 2.6751 0.0024 0.7419 4.6082 True Yes \n", + "1 BAS NAS 1.7714 0.0807 -0.1426 3.6855 False No \n", + "2 BAS PBS 5.3092 0.0000 2.8136 7.8049 True Yes \n", + "3 CHO NAS -0.9036 0.1374 -1.9864 0.1791 False No \n", + "4 CHO PBS 2.6342 0.0029 0.7010 4.5673 True Yes \n", + "5 NAS PBS 3.5378 0.0000 1.6237 5.4519 True Yes \n", + "0 BAS CHO 0.0000 1.0000 -0.3333 0.3333 False No \n", + "1 BAS NAS 0.0734 0.9391 -0.2566 0.4034 False No \n", + "2 BAS PBS 0.0000 1.0000 -0.4303 0.4303 False No \n", + "3 CHO NAS 0.0734 0.7387 -0.1133 0.2600 False No \n", + "4 CHO PBS 0.0000 1.0000 -0.3333 0.3333 False No \n", + "5 NAS PBS -0.0734 0.9391 -0.4034 0.2566 False No \n", + "0 BAS CHO 0.0000 1.0000 -0.4874 0.4874 False No \n", + "1 BAS NAS 0.1874 0.7458 -0.2952 0.6700 False No \n", + "2 BAS PBS 0.0000 1.0000 -0.6293 0.6293 False No \n", + "3 CHO NAS 0.1874 0.2865 -0.0856 0.4604 False No \n", + "4 CHO PBS 0.0000 1.0000 -0.4874 0.4874 False No \n", + "5 NAS PBS -0.1874 0.7458 -0.6700 0.2952 False No \n", + "0 BAS CHO 0.3103 0.5562 -0.3027 0.9233 False No \n", + "1 BAS NAS 0.0000 1.0000 -0.6069 0.6069 False No \n", + "2 BAS PBS 0.0000 1.0000 -0.7913 0.7913 False No \n", + "3 CHO NAS -0.3103 0.0921 -0.6536 0.0330 False No \n", + "4 CHO PBS -0.3103 0.5562 -0.9233 0.3027 False No \n", + "5 NAS PBS 0.0000 1.0000 -0.6069 0.6069 False No \n", + "0 BAS CHO 0.0000 1.0000 -0.6460 0.6460 False No \n", + "1 BAS NAS 0.2895 0.6444 -0.3501 0.9291 False No \n", + "2 BAS PBS 0.0000 1.0000 -0.8340 0.8340 False No \n", + "3 CHO NAS 0.2895 0.1654 -0.0723 0.6513 False No \n", + "4 CHO PBS 0.0000 1.0000 -0.6460 0.6460 False No \n", + "5 NAS PBS -0.2895 0.6444 -0.9291 0.3501 False No \n", + "\n", + " Function \n", + "0 ko:K00033 \n", + "1 ko:K00033 \n", + "2 ko:K00033 \n", + "3 ko:K00033 \n", + "4 ko:K00033 \n", + "5 ko:K00033 \n", + "0 ko:K00134 \n", + "1 ko:K00134 \n", + "2 ko:K00134 \n", + "3 ko:K00134 \n", + "4 ko:K00134 \n", + "5 ko:K00134 \n", + "0 ko:K00163 \n", + "1 ko:K00163 \n", + "2 ko:K00163 \n", + "3 ko:K00163 \n", + "4 ko:K00163 \n", + "5 ko:K00163 \n", + "0 ko:K00297,ko:K10901 \n", + "1 ko:K00297,ko:K10901 \n", + "2 ko:K00297,ko:K10901 \n", + "3 ko:K00297,ko:K10901 \n", + "4 ko:K00297,ko:K10901 \n", + "5 ko:K00297,ko:K10901 \n", + "0 ko:K00549 \n", + "1 ko:K00549 \n", + "2 ko:K00549 \n", + "3 ko:K00549 \n", + "4 ko:K00549 \n", + "5 ko:K00549 \n", + "0 ko:K00615 \n", + "1 ko:K00615 \n", + "2 ko:K00615 \n", + "3 ko:K00615 \n", + "4 ko:K00615 \n", + "5 ko:K00615 \n", + " group1 group2 meandiff p-adj lower upper reject significant \n", + "0 BAS CHO 0.7029 0.1717 -0.1835 1.5892 False No \\\n", + "1 BAS NAS 0.0000 1.0000 -0.8776 0.8776 False No \n", + "2 BAS PBS 0.0000 1.0000 -1.1443 1.1443 False No \n", + "3 CHO NAS -0.7029 0.0018 -1.1993 -0.2064 True Yes \n", + "4 CHO PBS -0.7029 0.1717 -1.5892 0.1835 False No \n", + "5 NAS PBS 0.0000 1.0000 -0.8776 0.8776 False No \n", + "0 BAS CHO 2.6751 0.0024 0.7419 4.6082 True Yes \n", + "1 BAS NAS 1.7714 0.0807 -0.1426 3.6855 False No \n", + "2 BAS PBS 5.3092 0.0000 2.8136 7.8049 True Yes \n", + "3 CHO NAS -0.9036 0.1374 -1.9864 0.1791 False No \n", + "4 CHO PBS 2.6342 0.0029 0.7010 4.5673 True Yes \n", + "5 NAS PBS 3.5378 0.0000 1.6237 5.4519 True Yes \n", + "0 BAS CHO 0.0000 1.0000 -0.3333 0.3333 False No \n", + "1 BAS NAS 0.0734 0.9391 -0.2566 0.4034 False No \n", + "2 BAS PBS 0.0000 1.0000 -0.4303 0.4303 False No \n", + "3 CHO NAS 0.0734 0.7387 -0.1133 0.2600 False No \n", + "4 CHO PBS 0.0000 1.0000 -0.3333 0.3333 False No \n", + "5 NAS PBS -0.0734 0.9391 -0.4034 0.2566 False No \n", + "0 BAS CHO 0.0000 1.0000 -0.4874 0.4874 False No \n", + "1 BAS NAS 0.1874 0.7458 -0.2952 0.6700 False No \n", + "2 BAS PBS 0.0000 1.0000 -0.6293 0.6293 False No \n", + "3 CHO NAS 0.1874 0.2865 -0.0856 0.4604 False No \n", + "4 CHO PBS 0.0000 1.0000 -0.4874 0.4874 False No \n", + "5 NAS PBS -0.1874 0.7458 -0.6700 0.2952 False No \n", + "0 BAS CHO 0.3103 0.5562 -0.3027 0.9233 False No \n", + "1 BAS NAS 0.0000 1.0000 -0.6069 0.6069 False No \n", + "2 BAS PBS 0.0000 1.0000 -0.7913 0.7913 False No \n", + "3 CHO NAS -0.3103 0.0921 -0.6536 0.0330 False No \n", + "4 CHO PBS -0.3103 0.5562 -0.9233 0.3027 False No \n", + "5 NAS PBS 0.0000 1.0000 -0.6069 0.6069 False No \n", + "0 BAS CHO 0.0000 1.0000 -0.6460 0.6460 False No \n", + "1 BAS NAS 0.2895 0.6444 -0.3501 0.9291 False No \n", + "2 BAS PBS 0.0000 1.0000 -0.8340 0.8340 False No \n", + "3 CHO NAS 0.2895 0.1654 -0.0723 0.6513 False No \n", + "4 CHO PBS 0.0000 1.0000 -0.6460 0.6460 False No \n", + "5 NAS PBS -0.2895 0.6444 -0.9291 0.3501 False No \n", + "0 BAS CHO 0.1488 0.9916 -1.1862 1.4839 False No \n", + "1 BAS NAS 1.2670 0.0656 -0.0549 2.5889 False No \n", + "2 BAS PBS 0.9035 0.5267 -0.8201 2.6270 False No \n", + "3 CHO NAS 1.1181 0.0008 0.3704 1.8659 True Yes \n", + "4 CHO PBS 0.7546 0.4605 -0.5804 2.0897 False No \n", + "5 NAS PBS -0.3635 0.8919 -1.6854 0.9584 False No \n", + "\n", + " Function \n", + "0 ko:K00033 \n", + "1 ko:K00033 \n", + "2 ko:K00033 \n", + "3 ko:K00033 \n", + "4 ko:K00033 \n", + "5 ko:K00033 \n", + "0 ko:K00134 \n", + "1 ko:K00134 \n", + "2 ko:K00134 \n", + "3 ko:K00134 \n", + "4 ko:K00134 \n", + "5 ko:K00134 \n", + "0 ko:K00163 \n", + "1 ko:K00163 \n", + "2 ko:K00163 \n", + "3 ko:K00163 \n", + "4 ko:K00163 \n", + "5 ko:K00163 \n", + "0 ko:K00297,ko:K10901 \n", + "1 ko:K00297,ko:K10901 \n", + "2 ko:K00297,ko:K10901 \n", + "3 ko:K00297,ko:K10901 \n", + "4 ko:K00297,ko:K10901 \n", + "5 ko:K00297,ko:K10901 \n", + "0 ko:K00549 \n", + "1 ko:K00549 \n", + "2 ko:K00549 \n", + "3 ko:K00549 \n", + "4 ko:K00549 \n", + "5 ko:K00549 \n", + "0 ko:K00615 \n", + "1 ko:K00615 \n", + "2 ko:K00615 \n", + "3 ko:K00615 \n", + "4 ko:K00615 \n", + "5 ko:K00615 \n", + "0 ko:K00656 \n", + "1 ko:K00656 \n", + "2 ko:K00656 \n", + "3 ko:K00656 \n", + "4 ko:K00656 \n", + "5 ko:K00656 \n", + " group1 group2 meandiff p-adj lower upper reject significant \n", + "0 BAS CHO 0.7029 0.1717 -0.1835 1.5892 False No \\\n", + "1 BAS NAS 0.0000 1.0000 -0.8776 0.8776 False No \n", + "2 BAS PBS 0.0000 1.0000 -1.1443 1.1443 False No \n", + "3 CHO NAS -0.7029 0.0018 -1.1993 -0.2064 True Yes \n", + "4 CHO PBS -0.7029 0.1717 -1.5892 0.1835 False No \n", + "5 NAS PBS 0.0000 1.0000 -0.8776 0.8776 False No \n", + "0 BAS CHO 2.6751 0.0024 0.7419 4.6082 True Yes \n", + "1 BAS NAS 1.7714 0.0807 -0.1426 3.6855 False No \n", + "2 BAS PBS 5.3092 0.0000 2.8136 7.8049 True Yes \n", + "3 CHO NAS -0.9036 0.1374 -1.9864 0.1791 False No \n", + "4 CHO PBS 2.6342 0.0029 0.7010 4.5673 True Yes \n", + "5 NAS PBS 3.5378 0.0000 1.6237 5.4519 True Yes \n", + "0 BAS CHO 0.0000 1.0000 -0.3333 0.3333 False No \n", + "1 BAS NAS 0.0734 0.9391 -0.2566 0.4034 False No \n", + "2 BAS PBS 0.0000 1.0000 -0.4303 0.4303 False No \n", + "3 CHO NAS 0.0734 0.7387 -0.1133 0.2600 False No \n", + "4 CHO PBS 0.0000 1.0000 -0.3333 0.3333 False No \n", + "5 NAS PBS -0.0734 0.9391 -0.4034 0.2566 False No \n", + "0 BAS CHO 0.0000 1.0000 -0.4874 0.4874 False No \n", + "1 BAS NAS 0.1874 0.7458 -0.2952 0.6700 False No \n", + "2 BAS PBS 0.0000 1.0000 -0.6293 0.6293 False No \n", + "3 CHO NAS 0.1874 0.2865 -0.0856 0.4604 False No \n", + "4 CHO PBS 0.0000 1.0000 -0.4874 0.4874 False No \n", + "5 NAS PBS -0.1874 0.7458 -0.6700 0.2952 False No \n", + "0 BAS CHO 0.3103 0.5562 -0.3027 0.9233 False No \n", + "1 BAS NAS 0.0000 1.0000 -0.6069 0.6069 False No \n", + "2 BAS PBS 0.0000 1.0000 -0.7913 0.7913 False No \n", + "3 CHO NAS -0.3103 0.0921 -0.6536 0.0330 False No \n", + "4 CHO PBS -0.3103 0.5562 -0.9233 0.3027 False No \n", + "5 NAS PBS 0.0000 1.0000 -0.6069 0.6069 False No \n", + "0 BAS CHO 0.0000 1.0000 -0.6460 0.6460 False No \n", + "1 BAS NAS 0.2895 0.6444 -0.3501 0.9291 False No \n", + "2 BAS PBS 0.0000 1.0000 -0.8340 0.8340 False No \n", + "3 CHO NAS 0.2895 0.1654 -0.0723 0.6513 False No \n", + "4 CHO PBS 0.0000 1.0000 -0.6460 0.6460 False No \n", + "5 NAS PBS -0.2895 0.6444 -0.9291 0.3501 False No \n", + "0 BAS CHO 0.1488 0.9916 -1.1862 1.4839 False No \n", + "1 BAS NAS 1.2670 0.0656 -0.0549 2.5889 False No \n", + "2 BAS PBS 0.9035 0.5267 -0.8201 2.6270 False No \n", + "3 CHO NAS 1.1181 0.0008 0.3704 1.8659 True Yes \n", + "4 CHO PBS 0.7546 0.4605 -0.5804 2.0897 False No \n", + "5 NAS PBS -0.3635 0.8919 -1.6854 0.9584 False No \n", + "0 BAS CHO 0.1593 0.7934 -0.2887 0.6072 False No \n", + "1 BAS NAS 0.0000 1.0000 -0.4436 0.4436 False No \n", + "2 BAS PBS 0.0000 1.0000 -0.5783 0.5783 False No \n", + "3 CHO NAS -0.1593 0.3559 -0.4102 0.0917 False No \n", + "4 CHO PBS -0.1593 0.7934 -0.6072 0.2887 False No \n", + "5 NAS PBS 0.0000 1.0000 -0.4436 0.4436 False No \n", + "\n", + " Function \n", + "0 ko:K00033 \n", + "1 ko:K00033 \n", + "2 ko:K00033 \n", + "3 ko:K00033 \n", + "4 ko:K00033 \n", + "5 ko:K00033 \n", + "0 ko:K00134 \n", + "1 ko:K00134 \n", + "2 ko:K00134 \n", + "3 ko:K00134 \n", + "4 ko:K00134 \n", + "5 ko:K00134 \n", + "0 ko:K00163 \n", + "1 ko:K00163 \n", + "2 ko:K00163 \n", + "3 ko:K00163 \n", + "4 ko:K00163 \n", + "5 ko:K00163 \n", + "0 ko:K00297,ko:K10901 \n", + "1 ko:K00297,ko:K10901 \n", + "2 ko:K00297,ko:K10901 \n", + "3 ko:K00297,ko:K10901 \n", + "4 ko:K00297,ko:K10901 \n", + "5 ko:K00297,ko:K10901 \n", + "0 ko:K00549 \n", + "1 ko:K00549 \n", + "2 ko:K00549 \n", + "3 ko:K00549 \n", + "4 ko:K00549 \n", + "5 ko:K00549 \n", + "0 ko:K00615 \n", + "1 ko:K00615 \n", + "2 ko:K00615 \n", + "3 ko:K00615 \n", + "4 ko:K00615 \n", + "5 ko:K00615 \n", + "0 ko:K00656 \n", + "1 ko:K00656 \n", + "2 ko:K00656 \n", + "3 ko:K00656 \n", + "4 ko:K00656 \n", + "5 ko:K00656 \n", + "0 ko:K00758 \n", + "1 ko:K00758 \n", + "2 ko:K00758 \n", + "3 ko:K00758 \n", + "4 ko:K00758 \n", + "5 ko:K00758 \n", + " group1 group2 meandiff p-adj lower upper reject significant \n", + "0 BAS CHO 0.7029 0.1717 -0.1835 1.5892 False No \\\n", + "1 BAS NAS 0.0000 1.0000 -0.8776 0.8776 False No \n", + "2 BAS PBS 0.0000 1.0000 -1.1443 1.1443 False No \n", + "3 CHO NAS -0.7029 0.0018 -1.1993 -0.2064 True Yes \n", + "4 CHO PBS -0.7029 0.1717 -1.5892 0.1835 False No \n", + "5 NAS PBS 0.0000 1.0000 -0.8776 0.8776 False No \n", + "0 BAS CHO 2.6751 0.0024 0.7419 4.6082 True Yes \n", + "1 BAS NAS 1.7714 0.0807 -0.1426 3.6855 False No \n", + "2 BAS PBS 5.3092 0.0000 2.8136 7.8049 True Yes \n", + "3 CHO NAS -0.9036 0.1374 -1.9864 0.1791 False No \n", + "4 CHO PBS 2.6342 0.0029 0.7010 4.5673 True Yes \n", + "5 NAS PBS 3.5378 0.0000 1.6237 5.4519 True Yes \n", + "0 BAS CHO 0.0000 1.0000 -0.3333 0.3333 False No \n", + "1 BAS NAS 0.0734 0.9391 -0.2566 0.4034 False No \n", + "2 BAS PBS 0.0000 1.0000 -0.4303 0.4303 False No \n", + "3 CHO NAS 0.0734 0.7387 -0.1133 0.2600 False No \n", + "4 CHO PBS 0.0000 1.0000 -0.3333 0.3333 False No \n", + "5 NAS PBS -0.0734 0.9391 -0.4034 0.2566 False No \n", + "0 BAS CHO 0.0000 1.0000 -0.4874 0.4874 False No \n", + "1 BAS NAS 0.1874 0.7458 -0.2952 0.6700 False No \n", + "2 BAS PBS 0.0000 1.0000 -0.6293 0.6293 False No \n", + "3 CHO NAS 0.1874 0.2865 -0.0856 0.4604 False No \n", + "4 CHO PBS 0.0000 1.0000 -0.4874 0.4874 False No \n", + "5 NAS PBS -0.1874 0.7458 -0.6700 0.2952 False No \n", + "0 BAS CHO 0.3103 0.5562 -0.3027 0.9233 False No \n", + "1 BAS NAS 0.0000 1.0000 -0.6069 0.6069 False No \n", + "2 BAS PBS 0.0000 1.0000 -0.7913 0.7913 False No \n", + "3 CHO NAS -0.3103 0.0921 -0.6536 0.0330 False No \n", + "4 CHO PBS -0.3103 0.5562 -0.9233 0.3027 False No \n", + "5 NAS PBS 0.0000 1.0000 -0.6069 0.6069 False No \n", + "0 BAS CHO 0.0000 1.0000 -0.6460 0.6460 False No \n", + "1 BAS NAS 0.2895 0.6444 -0.3501 0.9291 False No \n", + "2 BAS PBS 0.0000 1.0000 -0.8340 0.8340 False No \n", + "3 CHO NAS 0.2895 0.1654 -0.0723 0.6513 False No \n", + "4 CHO PBS 0.0000 1.0000 -0.6460 0.6460 False No \n", + "5 NAS PBS -0.2895 0.6444 -0.9291 0.3501 False No \n", + "0 BAS CHO 0.1488 0.9916 -1.1862 1.4839 False No \n", + "1 BAS NAS 1.2670 0.0656 -0.0549 2.5889 False No \n", + "2 BAS PBS 0.9035 0.5267 -0.8201 2.6270 False No \n", + "3 CHO NAS 1.1181 0.0008 0.3704 1.8659 True Yes \n", + "4 CHO PBS 0.7546 0.4605 -0.5804 2.0897 False No \n", + "5 NAS PBS -0.3635 0.8919 -1.6854 0.9584 False No \n", + "0 BAS CHO 0.1593 0.7934 -0.2887 0.6072 False No \n", + "1 BAS NAS 0.0000 1.0000 -0.4436 0.4436 False No \n", + "2 BAS PBS 0.0000 1.0000 -0.5783 0.5783 False No \n", + "3 CHO NAS -0.1593 0.3559 -0.4102 0.0917 False No \n", + "4 CHO PBS -0.1593 0.7934 -0.6072 0.2887 False No \n", + "5 NAS PBS 0.0000 1.0000 -0.4436 0.4436 False No \n", + "0 BAS CHO 0.0000 1.0000 -0.5670 0.5670 False No \n", + "1 BAS NAS 0.2539 0.6450 -0.3075 0.8154 False No \n", + "2 BAS PBS 0.0000 1.0000 -0.7320 0.7320 False No \n", + "3 CHO NAS 0.2539 0.1660 -0.0637 0.5715 False No \n", + "4 CHO PBS 0.0000 1.0000 -0.5670 0.5670 False No \n", + "5 NAS PBS -0.2539 0.6450 -0.8154 0.3075 False No \n", + "\n", + " Function \n", + "0 ko:K00033 \n", + "1 ko:K00033 \n", + "2 ko:K00033 \n", + "3 ko:K00033 \n", + "4 ko:K00033 \n", + "5 ko:K00033 \n", + "0 ko:K00134 \n", + "1 ko:K00134 \n", + "2 ko:K00134 \n", + "3 ko:K00134 \n", + "4 ko:K00134 \n", + "5 ko:K00134 \n", + "0 ko:K00163 \n", + "1 ko:K00163 \n", + "2 ko:K00163 \n", + "3 ko:K00163 \n", + "4 ko:K00163 \n", + "5 ko:K00163 \n", + "0 ko:K00297,ko:K10901 \n", + "1 ko:K00297,ko:K10901 \n", + "2 ko:K00297,ko:K10901 \n", + "3 ko:K00297,ko:K10901 \n", + "4 ko:K00297,ko:K10901 \n", + "5 ko:K00297,ko:K10901 \n", + "0 ko:K00549 \n", + "1 ko:K00549 \n", + "2 ko:K00549 \n", + "3 ko:K00549 \n", + "4 ko:K00549 \n", + "5 ko:K00549 \n", + "0 ko:K00615 \n", + "1 ko:K00615 \n", + "2 ko:K00615 \n", + "3 ko:K00615 \n", + "4 ko:K00615 \n", + "5 ko:K00615 \n", + "0 ko:K00656 \n", + "1 ko:K00656 \n", + "2 ko:K00656 \n", + "3 ko:K00656 \n", + "4 ko:K00656 \n", + "5 ko:K00656 \n", + "0 ko:K00758 \n", + "1 ko:K00758 \n", + "2 ko:K00758 \n", + "3 ko:K00758 \n", + "4 ko:K00758 \n", + "5 ko:K00758 \n", + "0 ko:K00927 \n", + "1 ko:K00927 \n", + "2 ko:K00927 \n", + "3 ko:K00927 \n", + "4 ko:K00927 \n", + "5 ko:K00927 \n", + " group1 group2 meandiff p-adj lower upper reject significant \n", + "0 BAS CHO 0.7029 0.1717 -0.1835 1.5892 False No \\\n", + "1 BAS NAS 0.0000 1.0000 -0.8776 0.8776 False No \n", + "2 BAS PBS 0.0000 1.0000 -1.1443 1.1443 False No \n", + "3 CHO NAS -0.7029 0.0018 -1.1993 -0.2064 True Yes \n", + "4 CHO PBS -0.7029 0.1717 -1.5892 0.1835 False No \n", + "5 NAS PBS 0.0000 1.0000 -0.8776 0.8776 False No \n", + "0 BAS CHO 2.6751 0.0024 0.7419 4.6082 True Yes \n", + "1 BAS NAS 1.7714 0.0807 -0.1426 3.6855 False No \n", + "2 BAS PBS 5.3092 0.0000 2.8136 7.8049 True Yes \n", + "3 CHO NAS -0.9036 0.1374 -1.9864 0.1791 False No \n", + "4 CHO PBS 2.6342 0.0029 0.7010 4.5673 True Yes \n", + "5 NAS PBS 3.5378 0.0000 1.6237 5.4519 True Yes \n", + "0 BAS CHO 0.0000 1.0000 -0.3333 0.3333 False No \n", + "1 BAS NAS 0.0734 0.9391 -0.2566 0.4034 False No \n", + "2 BAS PBS 0.0000 1.0000 -0.4303 0.4303 False No \n", + "3 CHO NAS 0.0734 0.7387 -0.1133 0.2600 False No \n", + "4 CHO PBS 0.0000 1.0000 -0.3333 0.3333 False No \n", + "5 NAS PBS -0.0734 0.9391 -0.4034 0.2566 False No \n", + "0 BAS CHO 0.0000 1.0000 -0.4874 0.4874 False No \n", + "1 BAS NAS 0.1874 0.7458 -0.2952 0.6700 False No \n", + "2 BAS PBS 0.0000 1.0000 -0.6293 0.6293 False No \n", + "3 CHO NAS 0.1874 0.2865 -0.0856 0.4604 False No \n", + "4 CHO PBS 0.0000 1.0000 -0.4874 0.4874 False No \n", + "5 NAS PBS -0.1874 0.7458 -0.6700 0.2952 False No \n", + "0 BAS CHO 0.3103 0.5562 -0.3027 0.9233 False No \n", + "1 BAS NAS 0.0000 1.0000 -0.6069 0.6069 False No \n", + "2 BAS PBS 0.0000 1.0000 -0.7913 0.7913 False No \n", + "3 CHO NAS -0.3103 0.0921 -0.6536 0.0330 False No \n", + "4 CHO PBS -0.3103 0.5562 -0.9233 0.3027 False No \n", + "5 NAS PBS 0.0000 1.0000 -0.6069 0.6069 False No \n", + "0 BAS CHO 0.0000 1.0000 -0.6460 0.6460 False No \n", + "1 BAS NAS 0.2895 0.6444 -0.3501 0.9291 False No \n", + "2 BAS PBS 0.0000 1.0000 -0.8340 0.8340 False No \n", + "3 CHO NAS 0.2895 0.1654 -0.0723 0.6513 False No \n", + "4 CHO PBS 0.0000 1.0000 -0.6460 0.6460 False No \n", + "5 NAS PBS -0.2895 0.6444 -0.9291 0.3501 False No \n", + "0 BAS CHO 0.1488 0.9916 -1.1862 1.4839 False No \n", + "1 BAS NAS 1.2670 0.0656 -0.0549 2.5889 False No \n", + "2 BAS PBS 0.9035 0.5267 -0.8201 2.6270 False No \n", + "3 CHO NAS 1.1181 0.0008 0.3704 1.8659 True Yes \n", + "4 CHO PBS 0.7546 0.4605 -0.5804 2.0897 False No \n", + "5 NAS PBS -0.3635 0.8919 -1.6854 0.9584 False No \n", + "0 BAS CHO 0.1593 0.7934 -0.2887 0.6072 False No \n", + "1 BAS NAS 0.0000 1.0000 -0.4436 0.4436 False No \n", + "2 BAS PBS 0.0000 1.0000 -0.5783 0.5783 False No \n", + "3 CHO NAS -0.1593 0.3559 -0.4102 0.0917 False No \n", + "4 CHO PBS -0.1593 0.7934 -0.6072 0.2887 False No \n", + "5 NAS PBS 0.0000 1.0000 -0.4436 0.4436 False No \n", + "0 BAS CHO 0.0000 1.0000 -0.5670 0.5670 False No \n", + "1 BAS NAS 0.2539 0.6450 -0.3075 0.8154 False No \n", + "2 BAS PBS 0.0000 1.0000 -0.7320 0.7320 False No \n", + "3 CHO NAS 0.2539 0.1660 -0.0637 0.5715 False No \n", + "4 CHO PBS 0.0000 1.0000 -0.5670 0.5670 False No \n", + "5 NAS PBS -0.2539 0.6450 -0.8154 0.3075 False No \n", + "0 BAS CHO 0.0000 1.0000 -0.4177 0.4177 False No \n", + "1 BAS NAS 0.1306 0.8457 -0.2830 0.5442 False No \n", + "2 BAS PBS 0.0000 1.0000 -0.5393 0.5393 False No \n", + "3 CHO NAS 0.1306 0.4718 -0.1034 0.3646 False No \n", + "4 CHO PBS 0.0000 1.0000 -0.4177 0.4177 False No \n", + "5 NAS PBS -0.1306 0.8457 -0.5442 0.2830 False No \n", + "\n", + " Function \n", + "0 ko:K00033 \n", + "1 ko:K00033 \n", + "2 ko:K00033 \n", + "3 ko:K00033 \n", + "4 ko:K00033 \n", + "5 ko:K00033 \n", + "0 ko:K00134 \n", + "1 ko:K00134 \n", + "2 ko:K00134 \n", + "3 ko:K00134 \n", + "4 ko:K00134 \n", + "5 ko:K00134 \n", + "0 ko:K00163 \n", + "1 ko:K00163 \n", + "2 ko:K00163 \n", + "3 ko:K00163 \n", + "4 ko:K00163 \n", + "5 ko:K00163 \n", + "0 ko:K00297,ko:K10901 \n", + "1 ko:K00297,ko:K10901 \n", + "2 ko:K00297,ko:K10901 \n", + "3 ko:K00297,ko:K10901 \n", + "4 ko:K00297,ko:K10901 \n", + "5 ko:K00297,ko:K10901 \n", + "0 ko:K00549 \n", + "1 ko:K00549 \n", + "2 ko:K00549 \n", + "3 ko:K00549 \n", + "4 ko:K00549 \n", + "5 ko:K00549 \n", + "0 ko:K00615 \n", + "1 ko:K00615 \n", + "2 ko:K00615 \n", + "3 ko:K00615 \n", + "4 ko:K00615 \n", + "5 ko:K00615 \n", + "0 ko:K00656 \n", + "1 ko:K00656 \n", + "2 ko:K00656 \n", + "3 ko:K00656 \n", + "4 ko:K00656 \n", + "5 ko:K00656 \n", + "0 ko:K00758 \n", + "1 ko:K00758 \n", + "2 ko:K00758 \n", + "3 ko:K00758 \n", + "4 ko:K00758 \n", + "5 ko:K00758 \n", + "0 ko:K00927 \n", + "1 ko:K00927 \n", + "2 ko:K00927 \n", + "3 ko:K00927 \n", + "4 ko:K00927 \n", + "5 ko:K00927 \n", + "0 ko:K01126 \n", + "1 ko:K01126 \n", + "2 ko:K01126 \n", + "3 ko:K01126 \n", + "4 ko:K01126 \n", + "5 ko:K01126 \n", + " group1 group2 meandiff p-adj lower upper reject significant \n", + "0 BAS CHO 0.7029 0.1717 -0.1835 1.5892 False No \\\n", + "1 BAS NAS 0.0000 1.0000 -0.8776 0.8776 False No \n", + "2 BAS PBS 0.0000 1.0000 -1.1443 1.1443 False No \n", + "3 CHO NAS -0.7029 0.0018 -1.1993 -0.2064 True Yes \n", + "4 CHO PBS -0.7029 0.1717 -1.5892 0.1835 False No \n", + ".. ... ... ... ... ... ... ... ... \n", + "1 BAS NAS 0.0000 1.0000 -0.3486 0.3486 False No \n", + "2 BAS PBS 0.0000 1.0000 -0.4545 0.4545 False No \n", + "3 CHO NAS -0.0879 0.6556 -0.2851 0.1093 False No \n", + "4 CHO PBS -0.0879 0.9164 -0.4399 0.2642 False No \n", + "5 NAS PBS 0.0000 1.0000 -0.3486 0.3486 False No \n", + "\n", + " Function \n", + "0 ko:K00033 \n", + "1 ko:K00033 \n", + "2 ko:K00033 \n", + "3 ko:K00033 \n", + "4 ko:K00033 \n", + ".. ... \n", + "1 ko:K01682 \n", + "2 ko:K01682 \n", + "3 ko:K01682 \n", + "4 ko:K01682 \n", + "5 ko:K01682 \n", + "\n", + "[66 rows x 9 columns]\n", + " group1 group2 meandiff p-adj lower upper reject significant \n", + "0 BAS CHO 0.7029 0.1717 -0.1835 1.5892 False No \\\n", + "1 BAS NAS 0.0000 1.0000 -0.8776 0.8776 False No \n", + "2 BAS PBS 0.0000 1.0000 -1.1443 1.1443 False No \n", + "3 CHO NAS -0.7029 0.0018 -1.1993 -0.2064 True Yes \n", + "4 CHO PBS -0.7029 0.1717 -1.5892 0.1835 False No \n", + ".. ... ... ... ... ... ... ... ... \n", + "1 BAS NAS 0.2609 0.9112 -0.7609 1.2827 False No \n", + "2 BAS PBS 0.0000 1.0000 -1.3322 1.3322 False No \n", + "3 CHO NAS -0.4553 0.1765 -1.0333 0.1227 False No \n", + "4 CHO PBS -0.7162 0.2770 -1.7481 0.3158 False No \n", + "5 NAS PBS -0.2609 0.9112 -1.2827 0.7609 False No \n", + "\n", + " Function \n", + "0 ko:K00033 \n", + "1 ko:K00033 \n", + "2 ko:K00033 \n", + "3 ko:K00033 \n", + "4 ko:K00033 \n", + ".. ... \n", + "1 ko:K01689 \n", + "2 ko:K01689 \n", + "3 ko:K01689 \n", + "4 ko:K01689 \n", + "5 ko:K01689 \n", + "\n", + "[72 rows x 9 columns]\n", + " group1 group2 meandiff p-adj lower upper reject significant \n", + "0 BAS CHO 0.7029 0.1717 -0.1835 1.5892 False No \\\n", + "1 BAS NAS 0.0000 1.0000 -0.8776 0.8776 False No \n", + "2 BAS PBS 0.0000 1.0000 -1.1443 1.1443 False No \n", + "3 CHO NAS -0.7029 0.0018 -1.1993 -0.2064 True Yes \n", + "4 CHO PBS -0.7029 0.1717 -1.5892 0.1835 False No \n", + ".. ... ... ... ... ... ... ... ... \n", + "1 BAS NAS 0.1321 0.8453 -0.2859 0.5502 False No \n", + "2 BAS PBS 0.0000 1.0000 -0.5451 0.5451 False No \n", + "3 CHO NAS 0.1321 0.4710 -0.1044 0.3686 False No \n", + "4 CHO PBS 0.0000 1.0000 -0.4222 0.4222 False No \n", + "5 NAS PBS -0.1321 0.8453 -0.5502 0.2859 False No \n", + "\n", + " Function \n", + "0 ko:K00033 \n", + "1 ko:K00033 \n", + "2 ko:K00033 \n", + "3 ko:K00033 \n", + "4 ko:K00033 \n", + ".. ... \n", + "1 ko:K02519 \n", + "2 ko:K02519 \n", + "3 ko:K02519 \n", + "4 ko:K02519 \n", + "5 ko:K02519 \n", + "\n", + "[78 rows x 9 columns]\n", + " group1 group2 meandiff p-adj lower upper reject significant \n", + "0 BAS CHO 0.7029 0.1717 -0.1835 1.5892 False No \\\n", + "1 BAS NAS 0.0000 1.0000 -0.8776 0.8776 False No \n", + "2 BAS PBS 0.0000 1.0000 -1.1443 1.1443 False No \n", + "3 CHO NAS -0.7029 0.0018 -1.1993 -0.2064 True Yes \n", + "4 CHO PBS -0.7029 0.1717 -1.5892 0.1835 False No \n", + ".. ... ... ... ... ... ... ... ... \n", + "1 BAS NAS 0.0636 0.9391 -0.2225 0.3496 False No \n", + "2 BAS PBS 0.0000 1.0000 -0.3730 0.3730 False No \n", + "3 CHO NAS 0.0636 0.7387 -0.0982 0.2254 False No \n", + "4 CHO PBS 0.0000 1.0000 -0.2889 0.2889 False No \n", + "5 NAS PBS -0.0636 0.9391 -0.3496 0.2225 False No \n", + "\n", + " Function \n", + "0 ko:K00033 \n", + "1 ko:K00033 \n", + "2 ko:K00033 \n", + "3 ko:K00033 \n", + "4 ko:K00033 \n", + ".. ... \n", + "1 ko:K02863 \n", + "2 ko:K02863 \n", + "3 ko:K02863 \n", + "4 ko:K02863 \n", + "5 ko:K02863 \n", + "\n", + "[84 rows x 9 columns]\n", + " group1 group2 meandiff p-adj lower upper reject significant \n", + "0 BAS CHO 0.7029 0.1717 -0.1835 1.5892 False No \\\n", + "1 BAS NAS 0.0000 1.0000 -0.8776 0.8776 False No \n", + "2 BAS PBS 0.0000 1.0000 -1.1443 1.1443 False No \n", + "3 CHO NAS -0.7029 0.0018 -1.1993 -0.2064 True Yes \n", + "4 CHO PBS -0.7029 0.1717 -1.5892 0.1835 False No \n", + ".. ... ... ... ... ... ... ... ... \n", + "1 BAS NAS 0.3128 0.7655 -0.5213 1.1468 False No \n", + "2 BAS PBS 2.5398 0.0000 1.4523 3.6272 True Yes \n", + "3 CHO NAS 0.3128 0.3170 -0.1590 0.7846 False No \n", + "4 CHO PBS 2.5398 0.0000 1.6974 3.3821 True Yes \n", + "5 NAS PBS 2.2270 0.0000 1.3929 3.0610 True Yes \n", + "\n", + " Function \n", + "0 ko:K00033 \n", + "1 ko:K00033 \n", + "2 ko:K00033 \n", + "3 ko:K00033 \n", + "4 ko:K00033 \n", + ".. ... \n", + "1 ko:K02926 \n", + "2 ko:K02926 \n", + "3 ko:K02926 \n", + "4 ko:K02926 \n", + "5 ko:K02926 \n", + "\n", + "[90 rows x 9 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group1group2meandiffp-adjlowerupperrejectsignificantFunction
0BASCHO0.70290.1717-0.18351.5892FalseNoko:K00033
1BASNAS0.00001.0000-0.87760.8776FalseNoko:K00033
2BASPBS0.00001.0000-1.14431.1443FalseNoko:K00033
3CHONAS-0.70290.0018-1.1993-0.2064TrueYesko:K00033
4CHOPBS-0.70290.1717-1.58920.1835FalseNoko:K00033
..............................
1BASNAS0.00001.0000-0.86010.8601FalseNoko:K12147
2BASPBS0.00001.0000-1.12141.1214FalseNoko:K12147
3CHONAS-0.68850.0018-1.1750-0.2020TrueYesko:K12147
4CHOPBS-0.68850.1720-1.55710.1801FalseNoko:K12147
5NASPBS0.00001.0000-0.86010.8601FalseNoko:K12147
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126 rows × 9 columns

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" + ], + "text/plain": [ + " group1 group2 meandiff p-adj lower upper reject significant \n", + "0 BAS CHO 0.7029 0.1717 -0.1835 1.5892 False No \\\n", + "1 BAS NAS 0.0000 1.0000 -0.8776 0.8776 False No \n", + "2 BAS PBS 0.0000 1.0000 -1.1443 1.1443 False No \n", + "3 CHO NAS -0.7029 0.0018 -1.1993 -0.2064 True Yes \n", + "4 CHO PBS -0.7029 0.1717 -1.5892 0.1835 False No \n", + ".. ... ... ... ... ... ... ... ... \n", + "1 BAS NAS 0.0000 1.0000 -0.8601 0.8601 False No \n", + "2 BAS PBS 0.0000 1.0000 -1.1214 1.1214 False No \n", + "3 CHO NAS -0.6885 0.0018 -1.1750 -0.2020 True Yes \n", + "4 CHO PBS -0.6885 0.1720 -1.5571 0.1801 False No \n", + "5 NAS PBS 0.0000 1.0000 -0.8601 0.8601 False No \n", + "\n", + " Function \n", + "0 ko:K00033 \n", + "1 ko:K00033 \n", + "2 ko:K00033 \n", + "3 ko:K00033 \n", + "4 ko:K00033 \n", + ".. ... \n", + "1 ko:K12147 \n", + "2 ko:K12147 \n", + "3 ko:K12147 \n", + "4 ko:K12147 \n", + "5 ko:K12147 \n", + "\n", + "[126 rows x 9 columns]" + ] + }, + "execution_count": 39, + "metadata": {}, + "output_type": "execute_result" + } + ], + "source": [ + "df_tukey = sw.CrossTest.get_stats_tukey_test(taxon_name='d__Bacteria|p__Proteobacteria|c__Gammaproteobacteria|o__Enterobacterales|f__Enterobacteriaceae|g__Escherichia|s__Escherichia coli_D', \n", + " func_name=None, \n", + " sum_all=False, \n", + " condition=['V1', 'V2'])\n", + "df_tukey" + ] + }, + { + "cell_type": "markdown", + "metadata": {}, + "source": [ + "PyDeseq2 is used to analyze the differential expression of taxa and functions." + ] + }, + { + "cell_type": "code", + "execution_count": 35, + "metadata": {}, + "outputs": [ + { + "name": "stdout", + "output_type": "stream", + "text": [ + "\n", + "--Running Deseq2 [PBS] vs [NAS] with condition: [['Individual', ['V1', 'V2']]]--\n", + "group1 [PBS]:\n", + "['V1_01', 'V1_26', 'V1_37', 'V2_01', 'V2_26', 'V2_37']\n", + "\n", + "group2 [NAS]:\n", + "['V1_07', 'V1_08', 'V1_09', 'V1_10', 'V1_12', 'V1_14', 'V1_15', 'V1_17', 'V1_19', 'V1_20', 'V1_21', 'V1_25', 'V1_27', 'V1_30', 'V1_34', 'V1_35', 'V1_36', 'V2_07', 'V2_08', 'V2_09', 'V2_10', 'V2_12', 'V2_14', 'V2_15', 'V2_17', 'V2_19', 'V2_20', 'V2_21', 'V2_25', 'V2_27', 'V2_30', 'V2_34', 'V2_35', 'V2_36']\n", + "\n", + "The max value is [30.578213874665728], not larger than int32, no need to divide\n" + ] + }, + { + "name": "stderr", + "output_type": "stream", + "text": [ + "Fitting size factors...\n", + "... done in 0.00 seconds.\n", + "\n", + "Fitting dispersions...\n", + "... done in 0.29 seconds.\n", + "\n", + "Fitting dispersion trend curve...\n", + "... done in 0.02 seconds.\n", + "\n", + "Fitting MAP dispersions...\n", + "... done in 0.22 seconds.\n", + "\n", + "Fitting LFCs...\n", + "... done in 0.17 seconds.\n", + "\n", + "Replacing 2 outlier genes.\n", + "\n", + "Running Wald tests...\n" + ] + }, + { + "name": "stdout", + "output_type": "stream", + "text": [ + "Log2 fold change & Wald test p-value: Sugar-type PBS vs NAS\n", + " baseMean log2FoldChange \n", + "Taxa-Func \n", + "d__Archaea|p__Methanobacteriota|c__Methanobacte... 0.120989 -0.449848 \\\n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.000000 NaN \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.796159 0.149505 \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.000000 NaN \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.000000 NaN \n", + "... ... ... \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.000000 NaN \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.000000 NaN \n", + "d__Bacteria|p__Spirochaetota|c__Spirochaetia|o_... 0.000000 NaN \n", + "d__Bacteria|p__Verrucomicrobiota|c__Verrucomicr... 0.134817 -0.534711 \n", + "d__Bacteria|p__Verrucomicrobiota|c__Verrucomicr... 0.000000 NaN \n", + "\n", + " lfcSE stat \n", + "Taxa-Func \n", + "d__Archaea|p__Methanobacteriota|c__Methanobacte... 4.296912 -0.104691 \\\n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... NaN NaN \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 3.245059 0.046072 \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... NaN NaN \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... NaN NaN \n", + "... ... ... \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... NaN NaN \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... NaN NaN \n", + "d__Bacteria|p__Spirochaetota|c__Spirochaetia|o_... NaN NaN \n", + "d__Bacteria|p__Verrucomicrobiota|c__Verrucomicr... 4.295261 -0.124489 \n", + "d__Bacteria|p__Verrucomicrobiota|c__Verrucomicr... NaN NaN \n", + "\n", + " pvalue padj \n", + "Taxa-Func \n", + "d__Archaea|p__Methanobacteriota|c__Methanobacte... 0.916621 0.949468 \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... NaN NaN \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.963253 0.975409 \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... NaN NaN \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... NaN NaN \n", + "... ... ... \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... NaN NaN \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... NaN NaN \n", + "d__Bacteria|p__Spirochaetota|c__Spirochaetia|o_... NaN NaN \n", + "d__Bacteria|p__Verrucomicrobiota|c__Verrucomicr... 0.900928 0.949468 \n", + "d__Bacteria|p__Verrucomicrobiota|c__Verrucomicr... NaN NaN \n", + "\n", + "[1173 rows x 6 columns]\n", + "res_group order: Sugar-type_PBS_vs_NAS\n", + "res_group_2: NAS\n", + "input_group_2: NAS\n", + "Reverse log2FoldChange values to match the group order [NAS / PBS]\n" + ] + }, + { + "name": "stderr", + "output_type": "stream", + "text": [ + "... done in 0.26 seconds.\n", + "\n" + ] + }, + { + "data": { + "text/html": [ + "
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baseMeanlog2FoldChangelfcSEstatpvaluepadjV1_01V1_26V1_37V2_01...V2_17V2_19V2_20V2_21V2_25V2_27V2_30V2_34V2_35V2_36
Taxa-Func
d__Archaea|p__Methanobacteriota|c__Methanobacteria|o__Methanobacteriales|f__Methanobacteriaceae|g__Methanobrevibacter_A|s__Methanobrevibacter_A smithii <ko:K13942>0.1209890.4498484.296912-0.1046910.9166210.9494680.00.00.00.0...0.00.00.00.00.0000000.00.0000000.00.00.0
d__Bacteria|p__Actinobacteriota|c__Actinomycetia|o__Actinomycetales|f__Bifidobacteriaceae|g__Bifidobacterium|s__Bifidobacterium adolescentis <ko:K00615>0.000000NaNNaNNaNNaNNaN0.00.00.00.0...0.00.00.00.00.0000000.00.0000000.00.00.0
d__Bacteria|p__Actinobacteriota|c__Actinomycetia|o__Actinomycetales|f__Bifidobacteriaceae|g__Bifidobacterium|s__Bifidobacterium breve <ko:K01621>0.796159-0.1495053.2450590.0460720.9632530.9754090.00.00.00.0...0.00.00.00.05.9800810.05.9904440.00.00.0
d__Bacteria|p__Actinobacteriota|c__Actinomycetia|o__Actinomycetales|f__Bifidobacteriaceae|g__Bifidobacterium|s__Bifidobacterium breve <ko:K02879>0.000000NaNNaNNaNNaNNaN0.00.00.00.0...0.00.00.00.00.0000000.00.0000000.00.00.0
d__Bacteria|p__Actinobacteriota|c__Actinomycetia|o__Actinomycetales|f__Bifidobacteriaceae|g__Bifidobacterium|s__Bifidobacterium infantis <ko:K00656>0.000000NaNNaNNaNNaNNaN0.00.00.00.0...0.00.00.00.00.0000000.00.0000000.00.00.0
..................................................................
d__Bacteria|p__Proteobacteria|c__Gammaproteobacteria|o__Enterobacterales|f__Enterobacteriaceae|g__Klebsiella_A|s__Klebsiella_A grimontii <ko:K03286>0.000000NaNNaNNaNNaNNaN0.00.00.00.0...0.00.00.00.00.0000000.00.0000000.00.00.0
d__Bacteria|p__Proteobacteria|c__Gammaproteobacteria|o__Pseudomonadales|f__Pseudomonadaceae|g__Pseudomonas_E|s__Pseudomonas_E massiliensis <ko:K02358>0.000000NaNNaNNaNNaNNaN0.00.00.00.0...0.00.00.00.00.0000000.00.0000000.00.00.0
d__Bacteria|p__Spirochaetota|c__Spirochaetia|o__Treponematales|f__Treponemataceae|g__Treponema_D|s__Treponema_D sp900541995 <ko:K00656>0.000000NaNNaNNaNNaNNaN0.00.00.00.0...0.00.00.00.00.0000000.00.0000000.00.00.0
d__Bacteria|p__Verrucomicrobiota|c__Verrucomicrobiae|o__Opitutales|f__CAG-312|g__CAG-312|s__CAG-312 sp002405555 <ko:K02886>0.1348170.5347114.295261-0.1244890.9009280.9494680.00.00.00.0...0.00.00.00.00.0000000.00.0000000.00.00.0
d__Bacteria|p__Verrucomicrobiota|c__Verrucomicrobiae|o__Verrucomicrobiales|f__Akkermansiaceae|g__Akkermansia|s__Akkermansia muciniphila_A <ko:K00134>0.000000NaNNaNNaNNaNNaN0.00.00.00.0...0.00.00.00.00.0000000.00.0000000.00.00.0
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1173 rows × 46 columns

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" + ], + "text/plain": [ + " baseMean log2FoldChange \n", + "Taxa-Func \n", + "d__Archaea|p__Methanobacteriota|c__Methanobacte... 0.120989 0.449848 \\\n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.000000 NaN \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.796159 -0.149505 \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.000000 NaN \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.000000 NaN \n", + "... ... ... \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.000000 NaN \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.000000 NaN \n", + "d__Bacteria|p__Spirochaetota|c__Spirochaetia|o_... 0.000000 NaN \n", + "d__Bacteria|p__Verrucomicrobiota|c__Verrucomicr... 0.134817 0.534711 \n", + "d__Bacteria|p__Verrucomicrobiota|c__Verrucomicr... 0.000000 NaN \n", + "\n", + " lfcSE stat \n", + "Taxa-Func \n", + "d__Archaea|p__Methanobacteriota|c__Methanobacte... 4.296912 -0.104691 \\\n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... NaN NaN \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 3.245059 0.046072 \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... NaN NaN \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... NaN NaN \n", + "... ... ... \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... NaN NaN \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... NaN NaN \n", + "d__Bacteria|p__Spirochaetota|c__Spirochaetia|o_... NaN NaN \n", + "d__Bacteria|p__Verrucomicrobiota|c__Verrucomicr... 4.295261 -0.124489 \n", + "d__Bacteria|p__Verrucomicrobiota|c__Verrucomicr... NaN NaN \n", + "\n", + " pvalue padj V1_01 \n", + "Taxa-Func \n", + "d__Archaea|p__Methanobacteriota|c__Methanobacte... 0.916621 0.949468 0.0 \\\n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... NaN NaN 0.0 \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.963253 0.975409 0.0 \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... NaN NaN 0.0 \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... NaN NaN 0.0 \n", + "... ... ... ... \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... NaN NaN 0.0 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... NaN NaN 0.0 \n", + "d__Bacteria|p__Spirochaetota|c__Spirochaetia|o_... NaN NaN 0.0 \n", + "d__Bacteria|p__Verrucomicrobiota|c__Verrucomicr... 0.900928 0.949468 0.0 \n", + "d__Bacteria|p__Verrucomicrobiota|c__Verrucomicr... NaN NaN 0.0 \n", + "\n", + " V1_26 V1_37 V2_01 ... \n", + "Taxa-Func ... \n", + "d__Archaea|p__Methanobacteriota|c__Methanobacte... 0.0 0.0 0.0 ... \\\n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.0 0.0 0.0 ... \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.0 0.0 0.0 ... \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.0 0.0 0.0 ... \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.0 0.0 0.0 ... \n", + "... ... ... ... ... \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.0 0.0 0.0 ... \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.0 0.0 0.0 ... \n", + "d__Bacteria|p__Spirochaetota|c__Spirochaetia|o_... 0.0 0.0 0.0 ... \n", + "d__Bacteria|p__Verrucomicrobiota|c__Verrucomicr... 0.0 0.0 0.0 ... \n", + "d__Bacteria|p__Verrucomicrobiota|c__Verrucomicr... 0.0 0.0 0.0 ... \n", + "\n", + " V2_17 V2_19 V2_20 \n", + "Taxa-Func \n", + "d__Archaea|p__Methanobacteriota|c__Methanobacte... 0.0 0.0 0.0 \\\n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.0 0.0 0.0 \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.0 0.0 0.0 \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.0 0.0 0.0 \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.0 0.0 0.0 \n", + "... ... ... ... \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.0 0.0 0.0 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.0 0.0 0.0 \n", + "d__Bacteria|p__Spirochaetota|c__Spirochaetia|o_... 0.0 0.0 0.0 \n", + "d__Bacteria|p__Verrucomicrobiota|c__Verrucomicr... 0.0 0.0 0.0 \n", + "d__Bacteria|p__Verrucomicrobiota|c__Verrucomicr... 0.0 0.0 0.0 \n", + "\n", + " V2_21 V2_25 V2_27 \n", + "Taxa-Func \n", + "d__Archaea|p__Methanobacteriota|c__Methanobacte... 0.0 0.000000 0.0 \\\n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.0 0.000000 0.0 \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.0 5.980081 0.0 \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.0 0.000000 0.0 \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.0 0.000000 0.0 \n", + "... ... ... ... \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.0 0.000000 0.0 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.0 0.000000 0.0 \n", + "d__Bacteria|p__Spirochaetota|c__Spirochaetia|o_... 0.0 0.000000 0.0 \n", + "d__Bacteria|p__Verrucomicrobiota|c__Verrucomicr... 0.0 0.000000 0.0 \n", + "d__Bacteria|p__Verrucomicrobiota|c__Verrucomicr... 0.0 0.000000 0.0 \n", + "\n", + " V2_30 V2_34 V2_35 \n", + "Taxa-Func \n", + "d__Archaea|p__Methanobacteriota|c__Methanobacte... 0.000000 0.0 0.0 \\\n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.000000 0.0 0.0 \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 5.990444 0.0 0.0 \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.000000 0.0 0.0 \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.000000 0.0 0.0 \n", + "... ... ... ... \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.000000 0.0 0.0 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.000000 0.0 0.0 \n", + "d__Bacteria|p__Spirochaetota|c__Spirochaetia|o_... 0.000000 0.0 0.0 \n", + "d__Bacteria|p__Verrucomicrobiota|c__Verrucomicr... 0.000000 0.0 0.0 \n", + "d__Bacteria|p__Verrucomicrobiota|c__Verrucomicr... 0.000000 0.0 0.0 \n", + "\n", + " V2_36 \n", + "Taxa-Func \n", + "d__Archaea|p__Methanobacteriota|c__Methanobacte... 0.0 \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.0 \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.0 \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.0 \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.0 \n", + "... ... \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.0 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.0 \n", + "d__Bacteria|p__Spirochaetota|c__Spirochaetia|o_... 0.0 \n", + "d__Bacteria|p__Verrucomicrobiota|c__Verrucomicr... 0.0 \n", + "d__Bacteria|p__Verrucomicrobiota|c__Verrucomicr... 0.0 \n", + "\n", + "[1173 rows x 46 columns]" + ] + }, + "execution_count": 35, + "metadata": {}, + "output_type": "execute_result" + } + ], + "source": [ + "df_deseq2 = sw.CrossTest.get_stats_deseq2(df = sw.get_df(table_name='taxa_func'),\n", + " group1 = 'PBS', group2 = 'NAS', condition = ['Individual', ['V1', 'V2']])\n", + "df_deseq2" + ] + }, + { + "cell_type": "markdown", + "metadata": {}, + "source": [ + "### Functioncal Redundancy Analysis\n", + "Find taxa not significant but related function significant or vice versa." + ] + }, + { + "cell_type": "code", + "execution_count": 43, + "metadata": {}, + "outputs": [ + { + "name": "stdout", + "output_type": "stream", + "text": [ + "No test result given, calculating the test result first\n", + "--Calculating t-test for ['PBS', 'NAS'] with condition: ['Individual', ['V1']]--\n", + "t-test for Taxon in ['PBS', 'NAS'] with condition: ['Individual', ['V1']]\n" + ] + }, + { + "name": "stderr", + "output_type": "stream", + "text": [ + "100%|██████████| 132/132 [00:00<00:00, 254.74it/s]\n" + ] + }, + { + "name": "stdout", + "output_type": "stream", + "text": [ + "t-test for KEGG_ko in ['PBS', 'NAS'] with condition: ['Individual', ['V1']]\n" + ] + }, + { + "name": "stderr", + "output_type": "stream", + "text": [ + "100%|██████████| 602/602 [00:01<00:00, 367.96it/s]\n" + ] + }, + { + "name": "stdout", + "output_type": "stream", + "text": [ + "t-test for taxa-func in ['PBS', 'NAS']\n" + ] + }, + { + "name": "stderr", + "output_type": "stream", + "text": [ + "100%|██████████| 1173/1173 [00:03<00:00, 389.46it/s]" + ] + }, + { + "name": "stdout", + "output_type": "stream", + "text": [ + "Under P-value = 0.05: \n", + " Significant Taxa: [57], Not Significant Taxa: [75]\n", + "Under P-value = 0.05: \n", + " Significant Function: [329], Not Significant Function: [273]\n", + "Taxa not significant but related function significant with P-value <= 0.05: [18]\n", + "Function not significant but related taxa significant with P-value <= 0.05: [21]\n", + "Returning a tuple of two dataframesthe:\n", + " 1. the taxa not significant but related function significant\n", + " 2. the function not significant but related taxa significant\n", + "The taxa not significant but related function significant\n" + ] + }, + { + "name": "stderr", + "output_type": "stream", + "text": [ + "\n" + ] + }, + { + "data": { + "text/html": [ + "
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P-valuet-statisticV1_01V1_26V1_37V1_07V1_08V1_09V1_10V1_12...V1_17V1_19V1_20V1_21V1_25V1_27V1_30V1_34V1_35V1_36
TaxonKEGG_ko
d__Bacteria|p__Actinobacteriota|c__Actinomycetia|o__Actinomycetales|f__Bifidobacteriaceae|g__Bifidobacterium|s__Bifidobacterium pseudocatenulatumko:K04072,ko:K155151.273367e-022.7658630.0000006.0963220.0000000.0000000.0000000.0000000.0000000.000000...0.0000000.0000000.0000000.0000000.0000000.0000000.0000000.0000000.0000000.000000
d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__Bacteroidales|f__Bacteroidaceae|g__Bacteroides|s__Bacteroides thetaiotaomicronko:K024371.273367e-022.7658636.0725860.0000000.0000000.0000000.0000000.0000000.0000000.000000...0.0000000.0000000.0000000.0000000.0000000.0000000.0000000.0000000.0000000.000000
d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__Bacteroidales|f__Bacteroidaceae|g__Phocaeicola|s__Phocaeicola massiliensisko:K018353.174183e-32217.1778296.1340286.2577205.9877520.0000000.0000000.0000000.0000000.000000...0.0000000.0000000.0000000.0000000.0000000.0000000.0000000.0000000.0000000.000000
d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__Bacteroidales|f__Bacteroidaceae|g__Phocaeicola|s__Phocaeicola sartoriiko:K01802,ko:K037704.254712e-033.2698946.2336890.0000006.2985770.0000000.0000000.0000000.0000000.000000...0.0000000.0000000.0000000.0000000.0000000.0000000.0000000.0000000.0000006.203460
d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__Bacteroidales|f__Rikenellaceae|g__Alistipes|s__Alistipes onderdonkiiko:K000533.555286e-35316.8021895.5270265.6597315.6855240.0000000.0000000.0000000.0000000.000000...0.0000000.0000000.0000000.0000000.0000000.0000000.0000000.0000000.0000000.000000
ko:K018896.417112e-066.2774365.5343525.3005195.5303970.0000000.0000000.0000000.0000000.000000...0.0000000.0000000.0000000.0000000.0000000.0000005.6927520.0000000.0000000.000000
d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__Bacteroidales|f__Tannerellaceae|g__Parabacteroides|s__Parabacteroides distasonisko:K018477.602655e-033.0049785.0841360.0000004.9729060.0000000.0000000.0000000.0000000.000000...0.0000000.0000000.0000000.0000000.0000000.0000005.6057800.0000000.0000000.000000
d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Lachnospirales|f__Lachnospiraceae|g__Bariatricus|s__Bariatricus comesko:K001348.120040e-032.97468211.3737445.56601211.6376855.8970380.0000000.00000012.7931560.000000...5.9441396.3216055.6395270.0000000.0000000.0000000.0000005.7532100.0000000.000000
ko:K215761.273367e-022.7658630.0000005.0981310.0000000.0000000.0000000.0000000.0000000.000000...0.0000000.0000000.0000000.0000000.0000000.0000000.0000000.0000000.0000000.000000
d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Lachnospirales|f__Lachnospiraceae|g__CAG-81|s__CAG-81 sp900066055ko:K019995.172708e-033.1811195.5477145.1659950.0000000.0000005.5138580.0000000.0000000.000000...0.0000000.0000000.0000000.0000000.0000000.0000000.0000000.0000000.0000000.000000
d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Lachnospirales|f__Lachnospiraceae|g__Roseburia|s__Roseburia sp900552665ko:K010064.347029e-022.1719045.7638265.7136035.6310025.6109490.0000005.8276550.0000000.000000...0.0000005.9020250.0000005.7796510.0000000.0000000.0000005.9731890.0000005.649336
d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Oscillospirales|f__Oscillospiraceae|g__Flavonifractor|s__Flavonifractor plautiiko:K020351.651891e-022.6433625.4384815.7508655.4368750.0000000.0000005.2794320.0000000.000000...0.0000000.0000000.0000000.0000000.0000005.4831990.0000005.2843520.0000000.000000
ko:K180121.039865e-022.8602996.10993612.5765715.8820476.0327145.9014665.9262115.8482595.691347...5.7671675.7021365.6675065.9549876.2973975.9595065.8905385.7393755.9960676.056650
d__Bacteria|p__Proteobacteria|c__Gammaproteobacteria|o__Enterobacterales|f__Enterobacteriaceae|g__Citrobacter_B|s__Citrobacter_B koseriko:K001111.273367e-022.7658630.0000005.1952550.0000000.0000000.0000000.0000000.0000000.000000...0.0000000.0000000.0000000.0000000.0000000.0000000.0000000.0000000.0000000.000000
ko:K018721.273367e-022.7658634.9684040.0000000.0000000.0000000.0000000.0000000.0000000.000000...0.0000000.0000000.0000000.0000000.0000000.0000000.0000000.0000000.0000000.000000
d__Bacteria|p__Proteobacteria|c__Gammaproteobacteria|o__Enterobacterales|f__Enterobacteriaceae|g__Escherichia|s__Escherichia coli_Dko:K001343.789293e-022.2407416.0830996.0062735.8881710.0000006.0004570.0000000.0000000.000000...5.7330350.0000000.0000006.0433300.0000000.0000000.0000005.9850345.9618710.000000
ko:K006561.833153e-022.5939366.7851286.7672080.0000000.0000000.0000000.0000000.0000000.000000...0.0000000.0000000.0000000.0000000.0000000.0000000.0000005.4941420.0000006.804117
ko:K029262.525507e-044.5419225.5760995.5231185.5840985.3503840.0000000.0000000.0000000.000000...5.6761330.0000000.0000000.0000000.0000000.0000000.0000000.0000000.0000000.000000
\n", + "

18 rows × 22 columns

\n", + "
" + ], + "text/plain": [ + " P-value \n", + "Taxon KEGG_ko \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... ko:K04072,ko:K15515 1.273367e-02 \\\n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K02437 1.273367e-02 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K01835 3.174183e-32 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K01802,ko:K03770 4.254712e-03 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K00053 3.555286e-35 \n", + " ko:K01889 6.417112e-06 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K01847 7.602655e-03 \n", + "d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... ko:K00134 8.120040e-03 \n", + " ko:K21576 1.273367e-02 \n", + "d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... ko:K01999 5.172708e-03 \n", + "d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... ko:K01006 4.347029e-02 \n", + "d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... ko:K02035 1.651891e-02 \n", + " ko:K18012 1.039865e-02 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... ko:K00111 1.273367e-02 \n", + " ko:K01872 1.273367e-02 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... ko:K00134 3.789293e-02 \n", + " ko:K00656 1.833153e-02 \n", + " ko:K02926 2.525507e-04 \n", + "\n", + " t-statistic \n", + "Taxon KEGG_ko \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... ko:K04072,ko:K15515 2.765863 \\\n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K02437 2.765863 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K01835 217.177829 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K01802,ko:K03770 3.269894 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K00053 316.802189 \n", + " ko:K01889 6.277436 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K01847 3.004978 \n", + "d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... ko:K00134 2.974682 \n", + " ko:K21576 2.765863 \n", + "d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... ko:K01999 3.181119 \n", + "d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... ko:K01006 2.171904 \n", + "d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... ko:K02035 2.643362 \n", + " ko:K18012 2.860299 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... ko:K00111 2.765863 \n", + " ko:K01872 2.765863 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... ko:K00134 2.240741 \n", + " ko:K00656 2.593936 \n", + " ko:K02926 4.541922 \n", + "\n", + " V1_01 \n", + "Taxon KEGG_ko \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... ko:K04072,ko:K15515 0.000000 \\\n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K02437 6.072586 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K01835 6.134028 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K01802,ko:K03770 6.233689 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K00053 5.527026 \n", + " ko:K01889 5.534352 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K01847 5.084136 \n", + "d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... ko:K00134 11.373744 \n", + " ko:K21576 0.000000 \n", + "d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... ko:K01999 5.547714 \n", + "d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... ko:K01006 5.763826 \n", + "d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... ko:K02035 5.438481 \n", + " ko:K18012 6.109936 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... ko:K00111 0.000000 \n", + " ko:K01872 4.968404 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... ko:K00134 6.083099 \n", + " ko:K00656 6.785128 \n", + " ko:K02926 5.576099 \n", + "\n", + " V1_26 \n", + "Taxon KEGG_ko \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... ko:K04072,ko:K15515 6.096322 \\\n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K02437 0.000000 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K01835 6.257720 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K01802,ko:K03770 0.000000 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K00053 5.659731 \n", + " ko:K01889 5.300519 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K01847 0.000000 \n", + "d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... ko:K00134 5.566012 \n", + " ko:K21576 5.098131 \n", + "d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... ko:K01999 5.165995 \n", + "d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... ko:K01006 5.713603 \n", + "d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... ko:K02035 5.750865 \n", + " ko:K18012 12.576571 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... ko:K00111 5.195255 \n", + " ko:K01872 0.000000 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... ko:K00134 6.006273 \n", + " ko:K00656 6.767208 \n", + " ko:K02926 5.523118 \n", + "\n", + " V1_37 \n", + "Taxon KEGG_ko \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... ko:K04072,ko:K15515 0.000000 \\\n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K02437 0.000000 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K01835 5.987752 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K01802,ko:K03770 6.298577 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K00053 5.685524 \n", + " ko:K01889 5.530397 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K01847 4.972906 \n", + "d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... ko:K00134 11.637685 \n", + " ko:K21576 0.000000 \n", + "d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... ko:K01999 0.000000 \n", + "d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... ko:K01006 5.631002 \n", + "d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... ko:K02035 5.436875 \n", + " ko:K18012 5.882047 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... ko:K00111 0.000000 \n", + " ko:K01872 0.000000 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... ko:K00134 5.888171 \n", + " ko:K00656 0.000000 \n", + " ko:K02926 5.584098 \n", + "\n", + " V1_07 \n", + "Taxon KEGG_ko \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... ko:K04072,ko:K15515 0.000000 \\\n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K02437 0.000000 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K01835 0.000000 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K01802,ko:K03770 0.000000 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K00053 0.000000 \n", + " ko:K01889 0.000000 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K01847 0.000000 \n", + "d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... ko:K00134 5.897038 \n", + " ko:K21576 0.000000 \n", + "d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... ko:K01999 0.000000 \n", + "d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... ko:K01006 5.610949 \n", + "d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... ko:K02035 0.000000 \n", + " ko:K18012 6.032714 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... ko:K00111 0.000000 \n", + " ko:K01872 0.000000 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... ko:K00134 0.000000 \n", + " ko:K00656 0.000000 \n", + " ko:K02926 5.350384 \n", + "\n", + " V1_08 \n", + "Taxon KEGG_ko \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... ko:K04072,ko:K15515 0.000000 \\\n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K02437 0.000000 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K01835 0.000000 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K01802,ko:K03770 0.000000 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K00053 0.000000 \n", + " ko:K01889 0.000000 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K01847 0.000000 \n", + "d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... ko:K00134 0.000000 \n", + " ko:K21576 0.000000 \n", + "d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... ko:K01999 5.513858 \n", + "d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... ko:K01006 0.000000 \n", + "d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... ko:K02035 0.000000 \n", + " ko:K18012 5.901466 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... ko:K00111 0.000000 \n", + " ko:K01872 0.000000 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... ko:K00134 6.000457 \n", + " ko:K00656 0.000000 \n", + " ko:K02926 0.000000 \n", + "\n", + " V1_09 \n", + "Taxon KEGG_ko \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... ko:K04072,ko:K15515 0.000000 \\\n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K02437 0.000000 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K01835 0.000000 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K01802,ko:K03770 0.000000 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K00053 0.000000 \n", + " ko:K01889 0.000000 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K01847 0.000000 \n", + "d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... ko:K00134 0.000000 \n", + " ko:K21576 0.000000 \n", + "d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... ko:K01999 0.000000 \n", + "d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... ko:K01006 5.827655 \n", + "d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... ko:K02035 5.279432 \n", + " ko:K18012 5.926211 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... ko:K00111 0.000000 \n", + " ko:K01872 0.000000 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... ko:K00134 0.000000 \n", + " ko:K00656 0.000000 \n", + " ko:K02926 0.000000 \n", + "\n", + " V1_10 \n", + "Taxon KEGG_ko \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... ko:K04072,ko:K15515 0.000000 \\\n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K02437 0.000000 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K01835 0.000000 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K01802,ko:K03770 0.000000 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K00053 0.000000 \n", + " ko:K01889 0.000000 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K01847 0.000000 \n", + "d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... ko:K00134 12.793156 \n", + " ko:K21576 0.000000 \n", + "d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... ko:K01999 0.000000 \n", + "d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... ko:K01006 0.000000 \n", + "d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... ko:K02035 0.000000 \n", + " ko:K18012 5.848259 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... ko:K00111 0.000000 \n", + " ko:K01872 0.000000 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... ko:K00134 0.000000 \n", + " ko:K00656 0.000000 \n", + " ko:K02926 0.000000 \n", + "\n", + " V1_12 \n", + "Taxon KEGG_ko \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... ko:K04072,ko:K15515 0.000000 \\\n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K02437 0.000000 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K01835 0.000000 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K01802,ko:K03770 0.000000 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K00053 0.000000 \n", + " ko:K01889 0.000000 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K01847 0.000000 \n", + "d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... ko:K00134 0.000000 \n", + " ko:K21576 0.000000 \n", + "d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... ko:K01999 0.000000 \n", + "d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... ko:K01006 0.000000 \n", + "d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... ko:K02035 0.000000 \n", + " ko:K18012 5.691347 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... ko:K00111 0.000000 \n", + " ko:K01872 0.000000 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... ko:K00134 0.000000 \n", + " ko:K00656 0.000000 \n", + " ko:K02926 0.000000 \n", + "\n", + " ... \n", + "Taxon KEGG_ko ... \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... ko:K04072,ko:K15515 ... \\\n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K02437 ... \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K01835 ... \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K01802,ko:K03770 ... \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K00053 ... \n", + " ko:K01889 ... \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K01847 ... \n", + "d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... ko:K00134 ... \n", + " ko:K21576 ... \n", + "d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... ko:K01999 ... \n", + "d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... ko:K01006 ... \n", + "d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... ko:K02035 ... \n", + " ko:K18012 ... \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... ko:K00111 ... \n", + " ko:K01872 ... \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... ko:K00134 ... \n", + " ko:K00656 ... \n", + " ko:K02926 ... \n", + "\n", + " V1_17 \n", + "Taxon KEGG_ko \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... ko:K04072,ko:K15515 0.000000 \\\n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K02437 0.000000 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K01835 0.000000 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K01802,ko:K03770 0.000000 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K00053 0.000000 \n", + " ko:K01889 0.000000 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K01847 0.000000 \n", + "d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... ko:K00134 5.944139 \n", + " ko:K21576 0.000000 \n", + "d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... ko:K01999 0.000000 \n", + "d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... ko:K01006 0.000000 \n", + "d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... ko:K02035 0.000000 \n", + " ko:K18012 5.767167 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... ko:K00111 0.000000 \n", + " ko:K01872 0.000000 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... ko:K00134 5.733035 \n", + " ko:K00656 0.000000 \n", + " ko:K02926 5.676133 \n", + "\n", + " V1_19 \n", + "Taxon KEGG_ko \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... ko:K04072,ko:K15515 0.000000 \\\n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K02437 0.000000 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K01835 0.000000 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K01802,ko:K03770 0.000000 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K00053 0.000000 \n", + " ko:K01889 0.000000 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K01847 0.000000 \n", + "d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... ko:K00134 6.321605 \n", + " ko:K21576 0.000000 \n", + "d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... ko:K01999 0.000000 \n", + "d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... ko:K01006 5.902025 \n", + "d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... ko:K02035 0.000000 \n", + " ko:K18012 5.702136 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... ko:K00111 0.000000 \n", + " ko:K01872 0.000000 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... ko:K00134 0.000000 \n", + " ko:K00656 0.000000 \n", + " ko:K02926 0.000000 \n", + "\n", + " V1_20 \n", + "Taxon KEGG_ko \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... ko:K04072,ko:K15515 0.000000 \\\n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K02437 0.000000 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K01835 0.000000 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K01802,ko:K03770 0.000000 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K00053 0.000000 \n", + " ko:K01889 0.000000 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K01847 0.000000 \n", + "d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... ko:K00134 5.639527 \n", + " ko:K21576 0.000000 \n", + "d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... ko:K01999 0.000000 \n", + "d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... ko:K01006 0.000000 \n", + "d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... ko:K02035 0.000000 \n", + " ko:K18012 5.667506 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... ko:K00111 0.000000 \n", + " ko:K01872 0.000000 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... ko:K00134 0.000000 \n", + " ko:K00656 0.000000 \n", + " ko:K02926 0.000000 \n", + "\n", + " V1_21 \n", + "Taxon KEGG_ko \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... ko:K04072,ko:K15515 0.000000 \\\n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K02437 0.000000 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K01835 0.000000 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K01802,ko:K03770 0.000000 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K00053 0.000000 \n", + " ko:K01889 0.000000 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K01847 0.000000 \n", + "d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... ko:K00134 0.000000 \n", + " ko:K21576 0.000000 \n", + "d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... ko:K01999 0.000000 \n", + "d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... ko:K01006 5.779651 \n", + "d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... ko:K02035 0.000000 \n", + " ko:K18012 5.954987 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... ko:K00111 0.000000 \n", + " ko:K01872 0.000000 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... ko:K00134 6.043330 \n", + " ko:K00656 0.000000 \n", + " ko:K02926 0.000000 \n", + "\n", + " V1_25 \n", + "Taxon KEGG_ko \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... ko:K04072,ko:K15515 0.000000 \\\n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K02437 0.000000 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K01835 0.000000 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K01802,ko:K03770 0.000000 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K00053 0.000000 \n", + " ko:K01889 0.000000 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K01847 0.000000 \n", + "d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... ko:K00134 0.000000 \n", + " ko:K21576 0.000000 \n", + "d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... ko:K01999 0.000000 \n", + "d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... ko:K01006 0.000000 \n", + "d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... ko:K02035 0.000000 \n", + " ko:K18012 6.297397 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... ko:K00111 0.000000 \n", + " ko:K01872 0.000000 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... ko:K00134 0.000000 \n", + " ko:K00656 0.000000 \n", + " ko:K02926 0.000000 \n", + "\n", + " V1_27 \n", + "Taxon KEGG_ko \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... ko:K04072,ko:K15515 0.000000 \\\n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K02437 0.000000 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K01835 0.000000 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K01802,ko:K03770 0.000000 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K00053 0.000000 \n", + " ko:K01889 0.000000 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K01847 0.000000 \n", + "d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... ko:K00134 0.000000 \n", + " ko:K21576 0.000000 \n", + "d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... ko:K01999 0.000000 \n", + "d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... ko:K01006 0.000000 \n", + "d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... ko:K02035 5.483199 \n", + " ko:K18012 5.959506 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... ko:K00111 0.000000 \n", + " ko:K01872 0.000000 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... ko:K00134 0.000000 \n", + " ko:K00656 0.000000 \n", + " ko:K02926 0.000000 \n", + "\n", + " V1_30 \n", + "Taxon KEGG_ko \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... ko:K04072,ko:K15515 0.000000 \\\n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K02437 0.000000 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K01835 0.000000 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K01802,ko:K03770 0.000000 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K00053 0.000000 \n", + " ko:K01889 5.692752 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ko:K01847 5.605780 \n", + "d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... ko:K00134 0.000000 \n", + " ko:K21576 0.000000 \n", + "d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... ko:K01999 0.000000 \n", + "d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... ko:K01006 0.000000 \n", + "d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... ko:K02035 0.000000 \n", + " ko:K18012 5.890538 \n", + 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P-valuet-statisticV1_01V1_26V1_37V1_07V1_08V1_09V1_10V1_12...V1_17V1_19V1_20V1_21V1_25V1_27V1_30V1_34V1_35V1_36
KEGG_koTaxon
ko:K00111d__Bacteria|p__Proteobacteria|c__Gammaproteobacteria|o__Enterobacterales|f__Enterobacteriaceae|g__Citrobacter_B|s__Citrobacter_B koseri1.273367e-022.7658630.0000005.1952550.0000000.0000000.00.0000000.0000000.000000...0.00.0000000.0000000.00.0000000.0000000.00000.0000000.0000000.000000
ko:K00179d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Lachnospirales|f__Lachnospiraceae|g__Enterocloster|s__Enterocloster aldenensis2.748872e-022.3989025.5745260.0000005.3952880.0000000.00.0000000.0000000.000000...0.00.0000000.0000000.00.0000005.3798060.00000.0000000.0000005.522290
ko:K00248d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Oscillospirales|f__Ruminococcaceae|g__Faecalibacterium|s__Faecalibacterium prausnitzii_E1.273367e-022.7658630.0000005.8022060.0000000.0000000.00.0000000.0000000.000000...0.00.0000000.0000000.00.0000000.0000000.00000.0000000.0000000.000000
ko:K00656d__Bacteria|p__Proteobacteria|c__Gammaproteobacteria|o__Enterobacterales|f__Enterobacteriaceae|g__Escherichia|s__Escherichia coli_D1.833153e-022.5939366.7851286.7672080.0000000.0000000.00.0000000.0000000.000000...0.00.0000000.0000000.00.0000000.0000000.00005.4941420.0000006.804117
ko:K01710d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__Bacteroidales|f__Bacteroidaceae|g__Phocaeicola|s__Phocaeicola sp9005440751.273367e-022.7658630.0000000.0000006.0109230.0000000.00.0000000.0000000.000000...0.00.0000000.0000000.00.0000000.0000000.00000.0000000.0000000.000000
ko:K01870d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Lachnospirales|f__Lachnospiraceae|g__Roseburia|s__Roseburia hominis2.561767e-022.4331755.5514265.5703630.0000000.0000000.05.4922590.0000000.000000...0.00.0000000.0000000.00.0000000.0000000.00000.0000000.0000000.000000
ko:K01952d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Oscillospirales|f__Ruminococcaceae|g__Faecalibacterium|s__Faecalibacterium prausnitzii2.017561e-022.5481995.6601895.4313145.4083595.5078400.00.0000000.0000005.303531...0.05.6052990.0000000.00.0000000.0000000.00000.0000000.0000005.585638
ko:K02035d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Lachnospirales|f__Lachnospiraceae|g__Roseburia|s__Roseburia hominis1.273367e-022.7658635.2129780.0000000.0000000.0000000.00.0000000.0000000.000000...0.00.0000000.0000000.00.0000000.0000000.00000.0000000.0000000.000000
d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Oscillospirales|f__Oscillospiraceae|g__Flavonifractor|s__Flavonifractor plautii1.651891e-022.6433625.4384815.7508655.4368750.0000000.05.2794320.0000000.000000...0.00.0000000.0000000.00.0000005.4831990.00005.2843520.0000000.000000
ko:K02355d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Lachnospirales|f__Lachnospiraceae|g__Enterocloster|s__Enterocloster citroniae7.427231e-033.0157065.8761985.5893815.5865725.3502670.05.5372110.0000000.000000...0.00.0000000.0000000.00.0000000.0000000.00000.0000005.8043020.000000
d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Oscillospirales|f__Oscillospiraceae|g__CAG-83|s__CAG-83 sp0004355552.727573e-39536.3259635.7761245.7136915.8159120.0000000.00.0000000.0000000.000000...0.00.0000000.0000000.00.0000000.0000000.00000.0000000.0000000.000000
ko:K02863d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Lachnospirales|f__Lachnospiraceae|g__Blautia_A|s__Blautia_A sp9005482451.273367e-022.7658636.0035730.0000000.0000000.0000000.00.0000000.0000000.000000...0.00.0000000.0000000.00.0000000.0000000.00000.0000000.0000000.000000
ko:K02967d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Lachnospirales|f__Lachnospiraceae|g__Enterocloster|s__Enterocloster aldenensis4.414843e-022.1640945.7148615.5570675.1268490.0000000.05.4986445.6226940.000000...0.00.0000005.5411000.00.0000000.0000005.39390.0000000.0000005.678673
ko:K02994d__Bacteria|p__Firmicutes|c__Bacilli|o__RF39|f__UBA660|g__HGM10873|s__HGM10873 sp9007536451.273367e-022.7658635.4626870.0000000.0000000.0000000.00.0000000.0000000.000000...0.00.0000000.0000000.00.0000000.0000000.00000.0000000.0000000.000000
ko:K03043d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Lachnospirales|f__Lachnospiraceae|g__UBA4285|s__UBA4285 sp9005424651.273367e-022.7658630.0000000.0000005.1259720.0000000.00.0000000.0000000.000000...0.00.0000000.0000000.00.0000000.0000000.00000.0000000.0000000.000000
ko:K03737d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Oscillospirales|f__Ruminococcaceae|g__Faecalibacterium|s__Faecalibacterium prausnitzii_I1.273367e-022.7658634.8397420.0000000.0000000.0000000.00.0000000.0000000.000000...0.00.0000000.0000000.00.0000000.0000000.00000.0000000.0000000.000000
ko:K04072,ko:K15515d__Bacteria|p__Actinobacteriota|c__Actinomycetia|o__Actinomycetales|f__Bifidobacteriaceae|g__Bifidobacterium|s__Bifidobacterium pseudocatenulatum1.273367e-022.7658630.0000006.0963220.0000000.0000000.00.0000000.0000000.000000...0.00.0000000.0000000.00.0000000.0000000.00000.0000000.0000000.000000
ko:K04079d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__Bacteroidales|f__Bacteroidaceae|g__Phocaeicola|s__Phocaeicola dorei4.892731e-033.2064396.1930760.0000006.1577590.0000000.06.2912760.0000000.000000...0.00.0000000.0000000.00.0000000.0000000.00000.0000000.0000000.000000
ko:K10117d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Oscillospirales|f__Ruminococcaceae|g__Faecalibacterium|s__Faecalibacterium prausnitzii1.273367e-022.7658630.0000006.2085140.0000000.0000000.00.0000000.0000000.000000...0.00.0000000.0000000.00.0000000.0000000.00000.0000000.0000000.000000
ko:K14949d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__Bacteroidales|f__Rikenellaceae|g__Alistipes|s__Alistipes sp9005415852.442230e-033.5206305.8057015.7893975.7574145.8329080.00.0000000.0000000.000000...0.00.0000005.9123540.05.7232130.0000000.00000.0000000.0000000.000000
ko:K21577d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Lachnospirales|f__Lachnospiraceae|g__Extibacter|s__Extibacter sp0011853451.273367e-022.7658635.0983390.0000000.0000000.0000000.00.0000000.0000000.000000...0.00.0000000.0000000.00.0000000.0000000.00000.0000000.0000000.000000
\n", + "

21 rows × 22 columns

\n", + "
" + ], + "text/plain": [ + " P-value \n", + "KEGG_ko Taxon \n", + "ko:K00111 d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 1.273367e-02 \\\n", + "ko:K00179 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 2.748872e-02 \n", + "ko:K00248 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 1.273367e-02 \n", + "ko:K00656 d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 1.833153e-02 \n", + "ko:K01710 d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 1.273367e-02 \n", + "ko:K01870 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 2.561767e-02 \n", + "ko:K01952 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 2.017561e-02 \n", + "ko:K02035 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 1.273367e-02 \n", + " d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 1.651891e-02 \n", + "ko:K02355 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 7.427231e-03 \n", + " d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 2.727573e-39 \n", + "ko:K02863 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 1.273367e-02 \n", + "ko:K02967 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 4.414843e-02 \n", + "ko:K02994 d__Bacteria|p__Firmicutes|c__Bacilli|o__RF39|f_... 1.273367e-02 \n", + "ko:K03043 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 1.273367e-02 \n", + "ko:K03737 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 1.273367e-02 \n", + "ko:K04072,ko:K15515 d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 1.273367e-02 \n", + "ko:K04079 d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 4.892731e-03 \n", + "ko:K10117 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 1.273367e-02 \n", + "ko:K14949 d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 2.442230e-03 \n", + "ko:K21577 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 1.273367e-02 \n", + "\n", + " t-statistic \n", + "KEGG_ko Taxon \n", + "ko:K00111 d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 2.765863 \\\n", + "ko:K00179 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 2.398902 \n", + "ko:K00248 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 2.765863 \n", + "ko:K00656 d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 2.593936 \n", + "ko:K01710 d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 2.765863 \n", + "ko:K01870 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 2.433175 \n", + "ko:K01952 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 2.548199 \n", + "ko:K02035 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 2.765863 \n", + " d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 2.643362 \n", + "ko:K02355 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 3.015706 \n", + " d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 536.325963 \n", + "ko:K02863 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 2.765863 \n", + "ko:K02967 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 2.164094 \n", + "ko:K02994 d__Bacteria|p__Firmicutes|c__Bacilli|o__RF39|f_... 2.765863 \n", + "ko:K03043 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 2.765863 \n", + "ko:K03737 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 2.765863 \n", + "ko:K04072,ko:K15515 d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 2.765863 \n", + "ko:K04079 d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 3.206439 \n", + "ko:K10117 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 2.765863 \n", + "ko:K14949 d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 3.520630 \n", + "ko:K21577 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 2.765863 \n", + "\n", + " V1_01 \n", + "KEGG_ko Taxon \n", + "ko:K00111 d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.000000 \\\n", + "ko:K00179 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 5.574526 \n", + "ko:K00248 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.000000 \n", + "ko:K00656 d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 6.785128 \n", + "ko:K01710 d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 0.000000 \n", + "ko:K01870 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 5.551426 \n", + "ko:K01952 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 5.660189 \n", + "ko:K02035 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 5.212978 \n", + " d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 5.438481 \n", + "ko:K02355 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 5.876198 \n", + " d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 5.776124 \n", + "ko:K02863 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 6.003573 \n", + "ko:K02967 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 5.714861 \n", + "ko:K02994 d__Bacteria|p__Firmicutes|c__Bacilli|o__RF39|f_... 5.462687 \n", + "ko:K03043 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + "ko:K03737 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 4.839742 \n", + "ko:K04072,ko:K15515 d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.000000 \n", + "ko:K04079 d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 6.193076 \n", + "ko:K10117 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.000000 \n", + "ko:K14949 d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 5.805701 \n", + "ko:K21577 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 5.098339 \n", + "\n", + " V1_26 \n", + "KEGG_ko Taxon \n", + "ko:K00111 d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 5.195255 \\\n", + "ko:K00179 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + "ko:K00248 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 5.802206 \n", + "ko:K00656 d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 6.767208 \n", + "ko:K01710 d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 0.000000 \n", + "ko:K01870 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 5.570363 \n", + "ko:K01952 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 5.431314 \n", + "ko:K02035 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + " d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 5.750865 \n", + "ko:K02355 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 5.589381 \n", + " d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 5.713691 \n", + "ko:K02863 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + "ko:K02967 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 5.557067 \n", + "ko:K02994 d__Bacteria|p__Firmicutes|c__Bacilli|o__RF39|f_... 0.000000 \n", + "ko:K03043 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + "ko:K03737 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.000000 \n", + "ko:K04072,ko:K15515 d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 6.096322 \n", + "ko:K04079 d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 0.000000 \n", + "ko:K10117 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 6.208514 \n", + "ko:K14949 d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 5.789397 \n", + "ko:K21577 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + "\n", + " V1_37 \n", + "KEGG_ko Taxon \n", + "ko:K00111 d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.000000 \\\n", + "ko:K00179 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 5.395288 \n", + "ko:K00248 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.000000 \n", + "ko:K00656 d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.000000 \n", + "ko:K01710 d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 6.010923 \n", + "ko:K01870 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + "ko:K01952 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 5.408359 \n", + "ko:K02035 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + " d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 5.436875 \n", + "ko:K02355 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 5.586572 \n", + " d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 5.815912 \n", + "ko:K02863 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + "ko:K02967 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 5.126849 \n", + "ko:K02994 d__Bacteria|p__Firmicutes|c__Bacilli|o__RF39|f_... 0.000000 \n", + "ko:K03043 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 5.125972 \n", + "ko:K03737 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.000000 \n", + "ko:K04072,ko:K15515 d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.000000 \n", + "ko:K04079 d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 6.157759 \n", + "ko:K10117 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.000000 \n", + "ko:K14949 d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 5.757414 \n", + "ko:K21577 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + "\n", + " V1_07 \n", + "KEGG_ko Taxon \n", + "ko:K00111 d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.000000 \\\n", + "ko:K00179 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + "ko:K00248 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.000000 \n", + "ko:K00656 d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.000000 \n", + "ko:K01710 d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 0.000000 \n", + "ko:K01870 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + "ko:K01952 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 5.507840 \n", + "ko:K02035 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + " d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.000000 \n", + "ko:K02355 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 5.350267 \n", + " d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.000000 \n", + "ko:K02863 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + "ko:K02967 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + "ko:K02994 d__Bacteria|p__Firmicutes|c__Bacilli|o__RF39|f_... 0.000000 \n", + "ko:K03043 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + "ko:K03737 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.000000 \n", + "ko:K04072,ko:K15515 d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.000000 \n", + "ko:K04079 d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 0.000000 \n", + "ko:K10117 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.000000 \n", + "ko:K14949 d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 5.832908 \n", + "ko:K21577 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + "\n", + " V1_08 \n", + "KEGG_ko Taxon \n", + "ko:K00111 d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.0 \\\n", + "ko:K00179 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.0 \n", + "ko:K00248 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.0 \n", + "ko:K00656 d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.0 \n", + "ko:K01710 d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 0.0 \n", + "ko:K01870 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.0 \n", + "ko:K01952 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.0 \n", + "ko:K02035 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.0 \n", + " d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.0 \n", + "ko:K02355 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.0 \n", + " d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.0 \n", + "ko:K02863 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.0 \n", + "ko:K02967 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.0 \n", + "ko:K02994 d__Bacteria|p__Firmicutes|c__Bacilli|o__RF39|f_... 0.0 \n", + "ko:K03043 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.0 \n", + "ko:K03737 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.0 \n", + "ko:K04072,ko:K15515 d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.0 \n", + "ko:K04079 d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 0.0 \n", + "ko:K10117 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.0 \n", + "ko:K14949 d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 0.0 \n", + "ko:K21577 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.0 \n", + "\n", + " V1_09 \n", + "KEGG_ko Taxon \n", + "ko:K00111 d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.000000 \\\n", + "ko:K00179 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + "ko:K00248 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.000000 \n", + "ko:K00656 d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.000000 \n", + "ko:K01710 d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 0.000000 \n", + "ko:K01870 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 5.492259 \n", + "ko:K01952 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.000000 \n", + "ko:K02035 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + " d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 5.279432 \n", + "ko:K02355 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 5.537211 \n", + " d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.000000 \n", + "ko:K02863 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + "ko:K02967 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 5.498644 \n", + "ko:K02994 d__Bacteria|p__Firmicutes|c__Bacilli|o__RF39|f_... 0.000000 \n", + "ko:K03043 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + "ko:K03737 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.000000 \n", + "ko:K04072,ko:K15515 d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.000000 \n", + "ko:K04079 d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 6.291276 \n", + "ko:K10117 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.000000 \n", + "ko:K14949 d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 0.000000 \n", + "ko:K21577 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + "\n", + " V1_10 \n", + "KEGG_ko Taxon \n", + "ko:K00111 d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.000000 \\\n", + "ko:K00179 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + "ko:K00248 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.000000 \n", + "ko:K00656 d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.000000 \n", + "ko:K01710 d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 0.000000 \n", + "ko:K01870 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + "ko:K01952 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.000000 \n", + "ko:K02035 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + " d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.000000 \n", + "ko:K02355 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + " d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.000000 \n", + "ko:K02863 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + "ko:K02967 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 5.622694 \n", + "ko:K02994 d__Bacteria|p__Firmicutes|c__Bacilli|o__RF39|f_... 0.000000 \n", + "ko:K03043 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + "ko:K03737 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.000000 \n", + "ko:K04072,ko:K15515 d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.000000 \n", + "ko:K04079 d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 0.000000 \n", + "ko:K10117 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.000000 \n", + "ko:K14949 d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 0.000000 \n", + "ko:K21577 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + "\n", + " V1_12 \n", + "KEGG_ko Taxon \n", + "ko:K00111 d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.000000 \\\n", + "ko:K00179 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + "ko:K00248 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.000000 \n", + "ko:K00656 d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.000000 \n", + "ko:K01710 d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 0.000000 \n", + "ko:K01870 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + "ko:K01952 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 5.303531 \n", + "ko:K02035 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + " d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.000000 \n", + "ko:K02355 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + " d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.000000 \n", + "ko:K02863 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + "ko:K02967 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + "ko:K02994 d__Bacteria|p__Firmicutes|c__Bacilli|o__RF39|f_... 0.000000 \n", + "ko:K03043 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + "ko:K03737 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.000000 \n", + "ko:K04072,ko:K15515 d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.000000 \n", + "ko:K04079 d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 0.000000 \n", + "ko:K10117 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.000000 \n", + "ko:K14949 d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 0.000000 \n", + "ko:K21577 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + "\n", + " ... \n", + "KEGG_ko Taxon ... \n", + "ko:K00111 d__Bacteria|p__Proteobacteria|c__Gammaproteobac... ... \\\n", + "ko:K00179 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... ... \n", + "ko:K00248 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... ... \n", + "ko:K00656 d__Bacteria|p__Proteobacteria|c__Gammaproteobac... ... \n", + "ko:K01710 d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ... \n", + "ko:K01870 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... ... \n", + "ko:K01952 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... ... \n", + "ko:K02035 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... ... \n", + " d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... ... \n", + "ko:K02355 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... ... \n", + " d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... ... \n", + "ko:K02863 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... ... \n", + "ko:K02967 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... ... \n", + "ko:K02994 d__Bacteria|p__Firmicutes|c__Bacilli|o__RF39|f_... ... \n", + "ko:K03043 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... ... \n", + "ko:K03737 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... ... \n", + "ko:K04072,ko:K15515 d__Bacteria|p__Actinobacteriota|c__Actinomyceti... ... \n", + "ko:K04079 d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ... \n", + "ko:K10117 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... ... \n", + "ko:K14949 d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... ... \n", + "ko:K21577 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... ... \n", + "\n", + " V1_17 \n", + "KEGG_ko Taxon \n", + "ko:K00111 d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.0 \\\n", + "ko:K00179 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.0 \n", + "ko:K00248 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.0 \n", + "ko:K00656 d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.0 \n", + "ko:K01710 d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 0.0 \n", + "ko:K01870 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.0 \n", + "ko:K01952 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.0 \n", + "ko:K02035 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.0 \n", + " d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.0 \n", + "ko:K02355 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.0 \n", + " d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.0 \n", + "ko:K02863 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.0 \n", + "ko:K02967 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.0 \n", + "ko:K02994 d__Bacteria|p__Firmicutes|c__Bacilli|o__RF39|f_... 0.0 \n", + "ko:K03043 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.0 \n", + "ko:K03737 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.0 \n", + "ko:K04072,ko:K15515 d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.0 \n", + "ko:K04079 d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 0.0 \n", + "ko:K10117 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.0 \n", + "ko:K14949 d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 0.0 \n", + "ko:K21577 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.0 \n", + "\n", + " V1_19 \n", + "KEGG_ko Taxon \n", + "ko:K00111 d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.000000 \\\n", + "ko:K00179 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + "ko:K00248 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.000000 \n", + "ko:K00656 d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.000000 \n", + "ko:K01710 d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 0.000000 \n", + "ko:K01870 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + "ko:K01952 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 5.605299 \n", + "ko:K02035 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + " d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.000000 \n", + "ko:K02355 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + " d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.000000 \n", + "ko:K02863 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + "ko:K02967 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + "ko:K02994 d__Bacteria|p__Firmicutes|c__Bacilli|o__RF39|f_... 0.000000 \n", + "ko:K03043 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + "ko:K03737 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.000000 \n", + "ko:K04072,ko:K15515 d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.000000 \n", + "ko:K04079 d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 0.000000 \n", + "ko:K10117 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.000000 \n", + "ko:K14949 d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 0.000000 \n", + "ko:K21577 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + "\n", + " V1_20 \n", + "KEGG_ko Taxon \n", + "ko:K00111 d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.000000 \\\n", + "ko:K00179 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + "ko:K00248 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.000000 \n", + "ko:K00656 d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.000000 \n", + "ko:K01710 d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 0.000000 \n", + "ko:K01870 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + "ko:K01952 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.000000 \n", + "ko:K02035 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + " d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.000000 \n", + "ko:K02355 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + " d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.000000 \n", + "ko:K02863 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + "ko:K02967 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 5.541100 \n", + "ko:K02994 d__Bacteria|p__Firmicutes|c__Bacilli|o__RF39|f_... 0.000000 \n", + "ko:K03043 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + "ko:K03737 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.000000 \n", + "ko:K04072,ko:K15515 d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.000000 \n", + "ko:K04079 d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 0.000000 \n", + "ko:K10117 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.000000 \n", + "ko:K14949 d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 5.912354 \n", + "ko:K21577 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + "\n", + " V1_21 \n", + "KEGG_ko Taxon \n", + "ko:K00111 d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.0 \\\n", + "ko:K00179 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.0 \n", + "ko:K00248 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.0 \n", + "ko:K00656 d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.0 \n", + "ko:K01710 d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 0.0 \n", + "ko:K01870 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.0 \n", + "ko:K01952 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.0 \n", + "ko:K02035 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.0 \n", + " d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.0 \n", + "ko:K02355 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.0 \n", + " d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.0 \n", + "ko:K02863 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.0 \n", + "ko:K02967 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.0 \n", + "ko:K02994 d__Bacteria|p__Firmicutes|c__Bacilli|o__RF39|f_... 0.0 \n", + "ko:K03043 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.0 \n", + "ko:K03737 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.0 \n", + "ko:K04072,ko:K15515 d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.0 \n", + "ko:K04079 d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 0.0 \n", + "ko:K10117 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.0 \n", + "ko:K14949 d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 0.0 \n", + "ko:K21577 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.0 \n", + "\n", + " V1_25 \n", + "KEGG_ko Taxon \n", + "ko:K00111 d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.000000 \\\n", + "ko:K00179 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + "ko:K00248 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.000000 \n", + "ko:K00656 d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.000000 \n", + "ko:K01710 d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 0.000000 \n", + "ko:K01870 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + "ko:K01952 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.000000 \n", + "ko:K02035 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + " d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.000000 \n", + "ko:K02355 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + " d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.000000 \n", + "ko:K02863 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + "ko:K02967 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + "ko:K02994 d__Bacteria|p__Firmicutes|c__Bacilli|o__RF39|f_... 0.000000 \n", + "ko:K03043 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + "ko:K03737 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.000000 \n", + "ko:K04072,ko:K15515 d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.000000 \n", + "ko:K04079 d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 0.000000 \n", + "ko:K10117 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.000000 \n", + "ko:K14949 d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 5.723213 \n", + "ko:K21577 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + "\n", + " V1_27 \n", + "KEGG_ko Taxon \n", + "ko:K00111 d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.000000 \\\n", + "ko:K00179 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 5.379806 \n", + "ko:K00248 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.000000 \n", + "ko:K00656 d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.000000 \n", + "ko:K01710 d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 0.000000 \n", + "ko:K01870 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + "ko:K01952 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.000000 \n", + "ko:K02035 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + " d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 5.483199 \n", + "ko:K02355 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + " d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.000000 \n", + "ko:K02863 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + "ko:K02967 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + "ko:K02994 d__Bacteria|p__Firmicutes|c__Bacilli|o__RF39|f_... 0.000000 \n", + "ko:K03043 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + "ko:K03737 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.000000 \n", + "ko:K04072,ko:K15515 d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.000000 \n", + "ko:K04079 d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 0.000000 \n", + "ko:K10117 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.000000 \n", + "ko:K14949 d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 0.000000 \n", + "ko:K21577 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + "\n", + " V1_30 \n", + "KEGG_ko Taxon \n", + "ko:K00111 d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.0000 \\\n", + "ko:K00179 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.0000 \n", + "ko:K00248 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.0000 \n", + "ko:K00656 d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.0000 \n", + "ko:K01710 d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 0.0000 \n", + "ko:K01870 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.0000 \n", + "ko:K01952 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.0000 \n", + "ko:K02035 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.0000 \n", + " d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.0000 \n", + "ko:K02355 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.0000 \n", + " d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.0000 \n", + "ko:K02863 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.0000 \n", + "ko:K02967 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 5.3939 \n", + "ko:K02994 d__Bacteria|p__Firmicutes|c__Bacilli|o__RF39|f_... 0.0000 \n", + "ko:K03043 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.0000 \n", + "ko:K03737 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.0000 \n", + "ko:K04072,ko:K15515 d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.0000 \n", + "ko:K04079 d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 0.0000 \n", + "ko:K10117 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.0000 \n", + "ko:K14949 d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 0.0000 \n", + "ko:K21577 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.0000 \n", + "\n", + " V1_34 \n", + "KEGG_ko Taxon \n", + "ko:K00111 d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.000000 \\\n", + "ko:K00179 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + "ko:K00248 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.000000 \n", + "ko:K00656 d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 5.494142 \n", + "ko:K01710 d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 0.000000 \n", + "ko:K01870 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + "ko:K01952 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.000000 \n", + "ko:K02035 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + " d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 5.284352 \n", + "ko:K02355 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + " d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.000000 \n", + "ko:K02863 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + "ko:K02967 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + "ko:K02994 d__Bacteria|p__Firmicutes|c__Bacilli|o__RF39|f_... 0.000000 \n", + "ko:K03043 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + "ko:K03737 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.000000 \n", + "ko:K04072,ko:K15515 d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.000000 \n", + "ko:K04079 d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 0.000000 \n", + "ko:K10117 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.000000 \n", + "ko:K14949 d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 0.000000 \n", + "ko:K21577 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + "\n", + " V1_35 \n", + "KEGG_ko Taxon \n", + "ko:K00111 d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.000000 \\\n", + "ko:K00179 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + "ko:K00248 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.000000 \n", + "ko:K00656 d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.000000 \n", + "ko:K01710 d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 0.000000 \n", + "ko:K01870 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + "ko:K01952 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.000000 \n", + "ko:K02035 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + " d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.000000 \n", + "ko:K02355 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 5.804302 \n", + " d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.000000 \n", + "ko:K02863 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + "ko:K02967 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + "ko:K02994 d__Bacteria|p__Firmicutes|c__Bacilli|o__RF39|f_... 0.000000 \n", + "ko:K03043 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + "ko:K03737 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.000000 \n", + "ko:K04072,ko:K15515 d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.000000 \n", + "ko:K04079 d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 0.000000 \n", + "ko:K10117 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.000000 \n", + "ko:K14949 d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 0.000000 \n", + "ko:K21577 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + "\n", + " V1_36 \n", + "KEGG_ko Taxon \n", + "ko:K00111 d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.000000 \n", + "ko:K00179 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 5.522290 \n", + "ko:K00248 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.000000 \n", + "ko:K00656 d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 6.804117 \n", + "ko:K01710 d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 0.000000 \n", + "ko:K01870 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + "ko:K01952 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 5.585638 \n", + "ko:K02035 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + " d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.000000 \n", + "ko:K02355 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + " d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.000000 \n", + "ko:K02863 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + "ko:K02967 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 5.678673 \n", + "ko:K02994 d__Bacteria|p__Firmicutes|c__Bacilli|o__RF39|f_... 0.000000 \n", + "ko:K03043 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + "ko:K03737 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.000000 \n", + "ko:K04072,ko:K15515 d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.000000 \n", + "ko:K04079 d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 0.000000 \n", + "ko:K10117 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Os... 0.000000 \n", + "ko:K14949 d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 0.000000 \n", + "ko:K21577 d__Bacteria|p__Firmicutes_A|c__Clostridia|o__La... 0.000000 \n", + "\n", + "[21 rows x 22 columns]" + ] + }, + "metadata": {}, + "output_type": "display_data" + } + ], + "source": [ + "taxa_func_sig = sw.CrossTest.get_stats_diff_taxa_but_func(\n", + " group_list=[\"PBS\", \"NAS\"],\n", + " p_value=0.05,\n", + " condition=[\"Individual\", [\"V1\"]]\n", + ")\n", + "print(\"The taxa not significant but related function significant\")\n", + "df1 = taxa_func_sig[0]\n", + "display(df1)\n", + "print(\"The taxa significant but related function not significant\")\n", + "df2 = taxa_func_sig[1]\n", + "display(df2)" + ] + }, + { + "cell_type": "markdown", + "metadata": {}, + "source": [ + "### Comapre multiple groups to Control Group" + ] + }, + { + "cell_type": "code", + "execution_count": 44, + "metadata": {}, + "outputs": [ + { + "name": "stdout", + "output_type": "stream", + "text": [ + "Dunnett's test for taxa-func in ['CHO', 'NAS'] with condition: ['Individual', ['V1', 'V2']]\n", + "control group: PBS\n", + "primary index: Taxon\n", + "secondary index: KEGG_ko\n" + ] + }, + { + "name": "stderr", + "output_type": "stream", + "text": [ + "100%|██████████| 1173/1173 [00:13<00:00, 85.95it/s]\n" + ] + }, + { + "data": { + "text/html": [ + "
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CHONAS
pvaluestatisticpvaluestatistic
TaxonKEGG_ko
d__Archaea|p__Methanobacteriota|c__Methanobacteria|o__Methanobacteriales|f__Methanobacteriaceae|g__Methanobrevibacter_A|s__Methanobrevibacter_A smithiiko:K139421.0000000.0000000.7334180.551856
d__Bacteria|p__Actinobacteriota|c__Actinomycetia|o__Actinomycetales|f__Bifidobacteriaceae|g__Bifidobacterium|s__Bifidobacterium adolescentisko:K006151.000000NaN1.000000NaN
d__Bacteria|p__Actinobacteriota|c__Actinomycetia|o__Actinomycetales|f__Bifidobacteriaceae|g__Bifidobacterium|s__Bifidobacterium breveko:K016210.806127-0.4504170.978816-0.135500
ko:K028790.6835070.6205301.0000000.000000
d__Bacteria|p__Actinobacteriota|c__Actinomycetia|o__Actinomycetales|f__Bifidobacteriaceae|g__Bifidobacterium|s__Bifidobacterium infantisko:K006560.6834880.6205301.0000000.000000
\n", + "
" + ], + "text/plain": [ + " CHO \n", + " pvalue \n", + "Taxon KEGG_ko \n", + "d__Archaea|p__Methanobacteriota|c__Methanobacte... ko:K13942 1.000000 \\\n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... ko:K00615 1.000000 \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... ko:K01621 0.806127 \n", + " ko:K02879 0.683507 \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... ko:K00656 0.683488 \n", + "\n", + " \n", + " statistic \n", + "Taxon KEGG_ko \n", + "d__Archaea|p__Methanobacteriota|c__Methanobacte... ko:K13942 0.000000 \\\n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... ko:K00615 NaN \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... ko:K01621 -0.450417 \n", + " ko:K02879 0.620530 \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... ko:K00656 0.620530 \n", + "\n", + " NAS \n", + " pvalue \n", + "Taxon KEGG_ko \n", + "d__Archaea|p__Methanobacteriota|c__Methanobacte... ko:K13942 0.733418 \\\n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... ko:K00615 1.000000 \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... ko:K01621 0.978816 \n", + " ko:K02879 1.000000 \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... ko:K00656 1.000000 \n", + "\n", + " \n", + " statistic \n", + "Taxon KEGG_ko \n", + "d__Archaea|p__Methanobacteriota|c__Methanobacte... ko:K13942 0.551856 \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... ko:K00615 NaN \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... ko:K01621 -0.135500 \n", + " ko:K02879 0.000000 \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... ko:K00656 0.000000 " + ] + }, + "execution_count": 44, + "metadata": {}, + "output_type": "execute_result" + } + ], + "source": [ + "# Dunntest\n", + "df_dunnett = sw.CrossTest.get_stats_dunnett_test(\n", + " control_group=\"PBS\", # set the control group\n", + " group_list=[\"NAS\", \"CHO\"], # set the test group, at least two groups\n", + " df_type=\"taxa-func\",\n", + " condition=[\"Individual\", [\"V1\", \"V2\"]],\n", + ")\n", + "df_dunnett.head()\n" + ] + }, + { + "cell_type": "code", + "execution_count": 47, + "metadata": {}, + "outputs": [ + { + "name": "stdout", + "output_type": "stream", + "text": [ + "\n", + "-------------Start to compare [PBS] and [NAS]----------------\n", + "\n", + "\n", + "--Running Deseq2 [PBS] vs [NAS] with condition: [['Individual', ['V1', 'V2']]]--\n", + "group1 [PBS]:\n", + "['V1_01', 'V1_26', 'V1_37', 'V2_01', 'V2_26', 'V2_37']\n", + "\n", + "group2 [NAS]:\n", + "['V1_07', 'V1_08', 'V1_09', 'V1_10', 'V1_12', 'V1_14', 'V1_15', 'V1_17', 'V1_19', 'V1_20', 'V1_21', 'V1_25', 'V1_27', 'V1_30', 'V1_34', 'V1_35', 'V1_36', 'V2_07', 'V2_08', 'V2_09', 'V2_10', 'V2_12', 'V2_14', 'V2_15', 'V2_17', 'V2_19', 'V2_20', 'V2_21', 'V2_25', 'V2_27', 'V2_30', 'V2_34', 'V2_35', 'V2_36']\n", + "\n", + "The max value is [176.89062622369502], not larger than int32, no need to divide\n" + ] + }, + { + "name": "stderr", + "output_type": "stream", + "text": [ + "Fitting dispersions...\n", + "... done in 0.01 seconds.\n", + "\n", + "Fitting MAP dispersions...\n", + "... done in 0.01 seconds.\n", + "\n", + "Fitting LFCs...\n", + "... done in 0.01 seconds.\n", + "\n" + ] + }, + { + "name": "stdout", + "output_type": "stream", + "text": [ + "Log2 fold change & Wald test p-value: Sugar-type PBS vs NAS\n", + " baseMean log2FoldChange \n", + "Taxon \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.771977 -0.477499 \\\n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 1.292352 -3.648623 \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.983491 0.606517 \n", + "d__Bacteria|p__Actinobacteriota|c__Coriobacteri... 0.535629 -2.306556 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 1.365652 1.794164 \n", + "... ... ... \n", + "d__Bacteria|p__Fusobacteriota|c__Fusobacteriia|... 0.281938 -1.462418 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 1.812603 0.021786 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.985583 -3.259181 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 43.214355 -0.511863 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 12.271468 -0.440968 \n", + "\n", + " lfcSE stat \n", + "Taxon \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 2.918570 -0.163607 \\\n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 3.364680 -1.084390 \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 2.615725 0.231873 \n", + "d__Bacteria|p__Actinobacteriota|c__Coriobacteri... 4.281428 -0.538735 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 1.956116 0.917207 \n", + "... ... ... \n", + "d__Bacteria|p__Fusobacteriota|c__Fusobacteriia|... 4.291143 -0.340799 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 1.704335 0.012782 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 2.631292 -1.238624 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.692228 -0.739443 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.568846 -0.775198 \n", + "\n", + " pvalue padj \n", + "Taxon \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.870040 0.977674 \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.278192 0.968992 \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.816636 0.968992 \n", + "d__Bacteria|p__Actinobacteriota|c__Coriobacteri... 0.590070 0.968992 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 0.359034 0.968992 \n", + "... ... ... \n", + "d__Bacteria|p__Fusobacteriota|c__Fusobacteriia|... 0.733255 0.968992 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.989801 0.989801 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.215485 0.968992 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.459638 0.968992 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.438223 0.968992 \n", + "\n", + "[132 rows x 6 columns]\n", + "res_group order: Sugar-type_PBS_vs_NAS\n", + "res_group_2: NAS\n", + "input_group_2: NAS\n", + "Reverse log2FoldChange values to match the group order [NAS / PBS]\n", + "\n", + "------------- Done for [PBS] and [NAS]----------------\n", + "\n", + "\n", + "-------------Start to compare [PBS] and [CHO]----------------\n", + "\n", + "\n", + "--Running Deseq2 [PBS] vs [CHO] with condition: [['Individual', ['V1', 'V2']]]--\n", + "group1 [PBS]:\n", + "['V1_01', 'V1_26', 'V1_37', 'V2_01', 'V2_26', 'V2_37']\n", + "\n", + "group2 [CHO]:\n", + "['V1_02', 'V1_03', 'V1_04', 'V1_05', 'V1_06', 'V1_11', 'V1_13', 'V1_16', 'V1_22', 'V1_24', 'V1_29', 'V1_31', 'V1_32', 'V1_33', 'V1_38', 'V2_02', 'V2_03', 'V2_04', 'V2_05', 'V2_06', 'V2_11', 'V2_13', 'V2_16', 'V2_22', 'V2_24', 'V2_29', 'V2_31', 'V2_32', 'V2_33', 'V2_38']\n", + "\n", + "The max value is [322.50639856552414], not larger than int32, no need to divide\n", + "Log2 fold change & Wald test p-value: Sugar-type PBS vs CHO\n", + " baseMean log2FoldChange \n", + "Taxon \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.758785 0.161174 \\\n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 2.915159 -4.312093 \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 11.314505 -2.676850 \n", + "d__Bacteria|p__Actinobacteriota|c__Coriobacteri... 0.162847 -0.678586 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 1.234133 3.549934 \n", + "... ... ... \n", + "d__Bacteria|p__Fusobacteriota|c__Fusobacteriia|... 0.186192 -0.678586 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 2.847144 -0.084412 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.649075 -2.156762 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 78.056558 -0.860544 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 15.321940 -0.209845 \n", + "\n", + " lfcSE stat \n", + "Taxon \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 3.532727 0.045623 \\\n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 2.321713 -1.857290 \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.923952 -2.897173 \n", + "d__Bacteria|p__Actinobacteriota|c__Coriobacteri... 4.140640 -0.163884 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 2.168188 1.637281 \n", + "... ... ... \n", + "d__Bacteria|p__Fusobacteriota|c__Fusobacteriia|... 4.140640 -0.163884 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 1.382288 -0.061067 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 3.751722 -0.574873 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.723122 -1.190039 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.651451 -0.322119 \n", + "\n", + " pvalue padj \n", + "Taxon \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.963611 0.989596 \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.063270 0.407300 \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.003765 0.096959 \n", + "d__Bacteria|p__Actinobacteriota|c__Coriobacteri... 0.869822 0.973239 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 0.101572 0.550625 \n", + "... ... ... \n", + "d__Bacteria|p__Fusobacteriota|c__Fusobacteriia|... 0.869822 0.973239 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.951306 0.989596 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.565377 0.973239 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.234031 0.800194 \n", + "d__Bacteria|p__Proteobacteria|c__Gammaproteobac... 0.747362 0.973239 \n", + "\n", + "[132 rows x 6 columns]\n", + "res_group order: Sugar-type_PBS_vs_CHO\n", + "res_group_2: CHO\n", + "input_group_2: CHO\n", + "Reverse log2FoldChange values to match the group order [CHO / PBS]\n", + "\n", + "------------- Done for [PBS] and [CHO]----------------\n", + "\n", + "Concatenating results...\n", + "Done for all comparisons\n" + ] + }, + { + "name": "stderr", + "output_type": "stream", + "text": [ + "Fitting dispersions...\n", + "... done in 0.00 seconds.\n", + "\n", + "Fitting MAP dispersions...\n", + "... done in 0.00 seconds.\n", + "\n", + "Fitting LFCs...\n", + "... done in 0.00 seconds.\n", + "\n" + ] + }, + { + "data": { + "text/html": [ + "
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NASCHO
baseMeanlog2FoldChangelfcSEstatpvaluepadjbaseMeanlog2FoldChangelfcSEstatpvaluepadj
Taxon
d__Bacteria|p__Actinobacteriota|c__Actinomycetia|o__Actinomycetales|f__Bifidobacteriaceae|g__Bifidobacterium|s__Bifidobacterium breve0.7719770.4774992.918570-0.1636070.8700400.9776740.758785-0.1611743.5327270.0456230.9636110.989596
d__Bacteria|p__Actinobacteriota|c__Actinomycetia|o__Actinomycetales|f__Bifidobacteriaceae|g__Bifidobacterium|s__Bifidobacterium infantis1.2923523.6486233.364680-1.0843900.2781920.9689922.9151594.3120932.321713-1.8572900.0632700.407300
d__Bacteria|p__Actinobacteriota|c__Actinomycetia|o__Actinomycetales|f__Bifidobacteriaceae|g__Bifidobacterium|s__Bifidobacterium pseudocatenulatum0.983491-0.6065172.6157250.2318730.8166360.96899211.3145052.6768500.923952-2.8971730.0037650.096959
d__Bacteria|p__Actinobacteriota|c__Coriobacteriia|o__Coriobacteriales|f__Coriobacteriaceae|g__Collinsella|s__Collinsella sp0022320350.5356292.3065564.281428-0.5387350.5900700.9689920.1628470.6785864.140640-0.1638840.8698220.973239
d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__Bacteroidales|f__Bacteroidaceae|g__Bacteroides|s__Bacteroides bouchesdurhonensis1.365652-1.7941641.9561160.9172070.3590340.9689921.234133-3.5499342.1681881.6372810.1015720.550625
\n", + "
" + ], + "text/plain": [ + " NAS \n", + " baseMean log2FoldChange \n", + "Taxon \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.771977 0.477499 \\\n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 1.292352 3.648623 \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.983491 -0.606517 \n", + "d__Bacteria|p__Actinobacteriota|c__Coriobacteri... 0.535629 2.306556 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 1.365652 -1.794164 \n", + "\n", + " \n", + " lfcSE stat \n", + "Taxon \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 2.918570 -0.163607 \\\n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 3.364680 -1.084390 \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 2.615725 0.231873 \n", + "d__Bacteria|p__Actinobacteriota|c__Coriobacteri... 4.281428 -0.538735 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 1.956116 0.917207 \n", + "\n", + " \n", + " pvalue padj \n", + "Taxon \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.870040 0.977674 \\\n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.278192 0.968992 \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.816636 0.968992 \n", + "d__Bacteria|p__Actinobacteriota|c__Coriobacteri... 0.590070 0.968992 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 0.359034 0.968992 \n", + "\n", + " CHO \n", + " baseMean log2FoldChange \n", + "Taxon \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.758785 -0.161174 \\\n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 2.915159 4.312093 \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 11.314505 2.676850 \n", + "d__Bacteria|p__Actinobacteriota|c__Coriobacteri... 0.162847 0.678586 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 1.234133 -3.549934 \n", + "\n", + " \n", + " lfcSE stat \n", + "Taxon \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 3.532727 0.045623 \\\n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 2.321713 -1.857290 \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.923952 -2.897173 \n", + "d__Bacteria|p__Actinobacteriota|c__Coriobacteri... 4.140640 -0.163884 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 2.168188 1.637281 \n", + "\n", + " \n", + " pvalue padj \n", + "Taxon \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.963611 0.989596 \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.063270 0.407300 \n", + "d__Bacteria|p__Actinobacteriota|c__Actinomyceti... 0.003765 0.096959 \n", + "d__Bacteria|p__Actinobacteriota|c__Coriobacteri... 0.869822 0.973239 \n", + "d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__B... 0.101572 0.550625 " + ] + }, + "execution_count": 47, + "metadata": {}, + "output_type": "execute_result" + } + ], + "source": [ + "# Deseq2\n", + "df_deseq2_against_control = sw.CrossTest.get_stats_deseq2_against_control(\n", + " df=sw.get_df(table_name='taxa'),\n", + " control_group=\"PBS\",\n", + " group_list=[\"NAS\", \"CHO\"],\n", + " concat_sample_to_result = False,\n", + " condition=[\"Individual\", [\"V1\", \"V2\"]],\n", + ")\n", + "\n", + "\n", + "df_deseq2_against_control.head()" + ] + }, + { + "cell_type": "markdown", + "metadata": {}, + "source": [ + "### All the results can be plot easily by `taxafunc_ploter`" + ] + }, + { + "cell_type": "code", + "execution_count": 49, + "metadata": {}, + "outputs": [], + "source": [ + "from metax.taxafunc_ploter.heatmap_plot import HeatmapPlot\n", + "from metax.taxafunc_ploter.volcano_plot_js import VolcanoPlot\n", + "from metax.taxafunc_ploter.tukey_plot import TukeyPlot\n", + "from metax.taxafunc_ploter.sankey_plot import SankeyPlot\n" + ] + }, + { + "cell_type": "code", + "execution_count": 62, + "metadata": {}, + "outputs": [ + { + "name": "stdout", + "output_type": "stream", + "text": [ + "\n", + "RESULT:\n", + "Number of significant rows: 94\n", + "Top [100] significant: Taxa (50), Functions (72)\n" + ] + }, + { + "data": { + "image/png": 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" + ], + "text/plain": [ + " V1_01 V5_02\n", + "KEGG_ko \n", + "ko:K00033 0.000000 0.0\n", + "ko:K00134 6.083099 0.0\n", + "ko:K00163 0.000000 0.0\n", + "ko:K00297,ko:K10901 0.000000 0.0\n", + "ko:K00549 0.000000 0.0" + ] + }, + "execution_count": 79, + "metadata": {}, + "output_type": "execute_result" + } + ], + "source": [ + "# input: a taxon with its function, a function with its taxon,\n", + "# and the peptides in the function or taxon\n", + "# output: a matrix of the intensity of the taxon or function or peptide in each sample\n", + "df_func_in_taxon = sw.GetMatrix.get_intensity_matrix(\n", + " func_name=None,\n", + " taxon_name=\"d__Bacteria|p__Proteobacteria|c__Gammaproteobacteria|o__Enterobacterales|f__Enterobacteriaceae|g__Escherichia|s__Escherichia coli_D\",\n", + " sample_list =[\"V1_01\", \"V5_02\"],\n", + ")\n", + "df_func_in_taxon.head()\n" + ] + }, + { + "cell_type": "code", + "execution_count": 80, + "metadata": {}, + "outputs": [ + { + "name": "stdout", + "output_type": "stream", + "text": [ + "group_list not provided, using all groups in meta_df.\n" + ] + }, + { + "data": { + "text/html": [ + "
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Taxon
d__Bacteria|p__Bacteroidota|c__Bacteroidia|o__Bacteroidales|f__Bacteroidaceae|g__Prevotella|s__Prevotella stercorea0.00.00.00.00.00.00.00.00.00.0...0.00.00.00.00.00.00.00.00.00.0
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d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Lachnospirales|f__Anaerotignaceae|g__UMGS1670|s__UMGS1670 sp9005485950.00.00.00.00.00.00.00.00.00.0...0.00.00.00.00.00.00.00.00.00.0
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5 rows × 76 columns

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V1_01V1_02
Sequence
AASNE(Cation_Ca[II])SFGYNEDEIVSSDIVGMK0.000000.00000
AASNE(Cation_Fe[II])SFGYNEDEIVSSDIVGMK0.000000.00000
AASNESFGYN(Deamidated)EDEIVSSDIVGMK0.000000.00000
AASNESFGYNE(Cation_Na)DEIVSSDIVGMK0.000000.00000
AASNESFGYNED(Cation_Ca[II])EIVSSDIVGMK5.398155.46177
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" + ], + "text/plain": [ + " V1_01 V1_02\n", + "Sequence \n", + "AASNE(Cation_Ca[II])SFGYNEDEIVSSDIVGMK 0.00000 0.00000\n", + "AASNE(Cation_Fe[II])SFGYNEDEIVSSDIVGMK 0.00000 0.00000\n", + "AASNESFGYN(Deamidated)EDEIVSSDIVGMK 0.00000 0.00000\n", + "AASNESFGYNE(Cation_Na)DEIVSSDIVGMK 0.00000 0.00000\n", + "AASNESFGYNED(Cation_Ca[II])EIVSSDIVGMK 5.39815 5.46177" + ] + }, + "execution_count": 81, + "metadata": {}, + "output_type": "execute_result" + } + ], + "source": [ + "# output: a matrix of the intensity of the taxon or function or peptide in each sample\n", + "df_peptides_in_taxa_func = sw.GetMatrix.get_intensity_matrix(\n", + " func_name=\"ko:K00134\",\n", + " taxon_name=\"d__Bacteria|p__Firmicutes_A|c__Clostridia|o__Lachnospirales|f__Lachnospiraceae|g__Blautia_A|s__Blautia_A caecimuris\",\n", + " sample_list =[\"V1_01\", \"V1_02\"],\n", + ")\n", + "df_peptides_in_taxa_func.head()\n" + ] + }, + { + "cell_type": "code", + "execution_count": 84, + "metadata": {}, + "outputs": [ + { + "data": { + "text/html": [ + "
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V1_01V1_02V1_03V1_04V1_05V1_06V1_07V1_08V1_09V1_10...V5_29V5_30V5_31V5_32V5_33V5_34V5_35V5_36V5_37V5_38
Sequence
AASNE(Cation_Fe[II])SFGYNEDEIVSSDIVGMK0000000000...157802800103867800000797216
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1 rows × 190 columns

\n", + "
" + ], + "text/plain": [ + " V1_01 V1_02 V1_03 V1_04 V1_05 \n", + "Sequence \n", + "AASNE(Cation_Fe[II])SFGYNEDEIVSSDIVGMK 0 0 0 0 0 \\\n", + "\n", + " V1_06 V1_07 V1_08 V1_09 V1_10 \n", + "Sequence \n", + "AASNE(Cation_Fe[II])SFGYNEDEIVSSDIVGMK 0 0 0 0 0 \\\n", + "\n", + " ... V5_29 V5_30 V5_31 V5_32 \n", + "Sequence ... \n", + "AASNE(Cation_Fe[II])SFGYNEDEIVSSDIVGMK ... 1578028 0 0 1038678 \\\n", + "\n", + " V5_33 V5_34 V5_35 V5_36 V5_37 \n", + "Sequence \n", + "AASNE(Cation_Fe[II])SFGYNEDEIVSSDIVGMK 0 0 0 0 0 \\\n", + "\n", + " V5_38 \n", + "Sequence \n", + "AASNE(Cation_Fe[II])SFGYNEDEIVSSDIVGMK 797216 \n", + "\n", + "[1 rows x 190 columns]" + ] + }, + "execution_count": 84, + "metadata": {}, + "output_type": "execute_result" + } + ], + "source": [ + "# get the intensity matrix of a peptide\n", + "\n", + "sw.GetMatrix.get_intensity_matrix(\n", + " peptide_seq = 'AASNE(Cation_Fe[II])SFGYNEDEIVSSDIVGMK',\n", + ")" + ] + }, + { + "cell_type": "code", + "execution_count": null, + "metadata": {}, + "outputs": [], + "source": [] } ], "metadata": { diff --git a/MANIFEST.in b/MANIFEST.in new file mode 100644 index 0000000..453c64e --- /dev/null +++ b/MANIFEST.in @@ -0,0 +1,4 @@ +include README.md +include LICENSE +recursive-include metax/data/example_data * +recursive-include metax/gui/metax_gui/resources * \ No newline at end of file diff --git a/README.md b/README.md index ea3c64e..9293b28 100644 --- a/README.md +++ b/README.md @@ -5,17 +5,17 @@ MetaX also features statistical modules and plotting tools for analyzing peptides, taxa, functions, proteins, and taxon-function contributions across groups. -![abstract](./Docs/MetaX_Cookbook.assets/abstract.png) +![abstract](https://github.com/byemaxx/MetaX/raw/main/Docs/MetaX_Cookbook.assets/abstract.png) ## Taxa-Functions Linkage Linking Taxa and Functions in different levels of the hierarchy, and different functional categories. e.g., **Species-KO**, **Genus-CAZy**, **Phylum-EC**, etc. -- ![OTF](./Docs/MetaX_Cookbook.assets/tf_link_net.png) +- ![OTF](https://github.com/byemaxx/MetaX/raw/main/Docs/MetaX_Cookbook.assets/tf_link_net.png) e.g. The **KEGG Pathways** linked to ***Roseburia hominis*** -- ![tf_link_net_2](./Docs/MetaX_Cookbook.assets/tf_link_net_2.png) +- ![tf_link_net_2](https://github.com/byemaxx/MetaX/raw/main/Docs/MetaX_Cookbook.assets/tf_link_net_2.png) @@ -42,7 +42,7 @@ Clone the repository to your local machine and install the required dependencies - Refer to the MetaX Cookbook for detailed instructions on how to use MetaX wtih the graphical user interface.
- `Command-line version`: - - Read the example documentation in the [Notebook](./Docs/example.ipynb) for detailed instructions and examples. + - Read the example documentation in the [Notebook](https://github.com/byemaxx/MetaX/blob/main/Docs/example.ipynb) for detailed instructions and examples. ## Citing MetaX diff --git a/metax/__init__.py b/metax/__init__.py new file mode 100644 index 0000000..804ac8c --- /dev/null +++ b/metax/__init__.py @@ -0,0 +1 @@ +from .utils.version import __version__ as __version__ diff --git a/data/enzyme.dat b/metax/data/enzyme.dat similarity index 100% rename from data/enzyme.dat rename to metax/data/enzyme.dat diff --git a/data/example_data/Example_Meta.tsv b/metax/data/example_data/Example_Meta.tsv similarity index 100% rename from data/example_data/Example_Meta.tsv rename to metax/data/example_data/Example_Meta.tsv diff --git a/data/example_data/Example_OTF.tsv b/metax/data/example_data/Example_OTF.tsv similarity index 100% rename from data/example_data/Example_OTF.tsv rename to metax/data/example_data/Example_OTF.tsv diff --git a/data/example_data/Example_Taxa.tsv b/metax/data/example_data/Example_Taxa.tsv similarity index 100% rename from data/example_data/Example_Taxa.tsv rename to metax/data/example_data/Example_Taxa.tsv diff --git a/data/example_data/Example_annotation.tsv b/metax/data/example_data/Example_annotation.tsv similarity index 100% rename from data/example_data/Example_annotation.tsv rename to metax/data/example_data/Example_annotation.tsv diff --git a/data/example_data/Example_final_peptide.tsv b/metax/data/example_data/Example_final_peptide.tsv similarity index 100% rename from data/example_data/Example_final_peptide.tsv rename to metax/data/example_data/Example_final_peptide.tsv diff --git a/metax/data/ko.tsv b/metax/data/ko.tsv new file mode 100644 index 0000000..7b6b234 --- /dev/null +++ b/metax/data/ko.tsv @@ -0,0 +1,27070 @@ +K00001 E1.1.1.1, adh; alcohol dehydrogenase [EC:1.1.1.1] +K00002 AKR1A1, adh; alcohol dehydrogenase (NADP+) [EC:1.1.1.2] +K00003 hom; homoserine dehydrogenase [EC:1.1.1.3] +K00004 BDH, butB; (R,R)-butanediol dehydrogenase / meso-butanediol dehydrogenase / diacetyl reductase [EC:1.1.1.4 1.1.1.- 1.1.1.303] +K00005 gldA; glycerol dehydrogenase [EC:1.1.1.6] +K00006 GPD1; glycerol-3-phosphate dehydrogenase (NAD+) [EC:1.1.1.8] +K00007 dalD; D-arabinitol 4-dehydrogenase [EC:1.1.1.11] +K00008 SORD, gutB; L-iditol 2-dehydrogenase [EC:1.1.1.14] +K00009 mtlD; mannitol-1-phosphate 5-dehydrogenase [EC:1.1.1.17] +K00010 iolG; myo-inositol 2-dehydrogenase / D-chiro-inositol 1-dehydrogenase [EC:1.1.1.18 1.1.1.369] +K00011 AKR1B; aldehyde reductase [EC:1.1.1.21] +K00012 UGDH, ugd; UDPglucose 6-dehydrogenase [EC:1.1.1.22] +K00013 hisD; histidinol dehydrogenase [EC:1.1.1.23] +K00014 aroE; shikimate dehydrogenase [EC:1.1.1.25] +K00015 gyaR, GOR1; glyoxylate reductase [EC:1.1.1.26] +K00016 LDH, ldh; L-lactate dehydrogenase [EC:1.1.1.27] +K00018 hprA; glycerate dehydrogenase [EC:1.1.1.29] +K00019 BDH1, bdhA; 3-hydroxybutyrate dehydrogenase [EC:1.1.1.30] +K00020 HIBADH, mmsB; 3-hydroxyisobutyrate dehydrogenase [EC:1.1.1.31] +K00021 HMGCR; hydroxymethylglutaryl-CoA reductase (NADPH) [EC:1.1.1.34] +K00022 HADH; 3-hydroxyacyl-CoA dehydrogenase [EC:1.1.1.35] +K00023 phbB; acetoacetyl-CoA reductase [EC:1.1.1.36] +K00024 mdh; malate dehydrogenase [EC:1.1.1.37] +K00025 MDH1; malate dehydrogenase [EC:1.1.1.37] +K00026 MDH2; malate dehydrogenase [EC:1.1.1.37] +K00027 ME2, sfcA, maeA; malate dehydrogenase (oxaloacetate-decarboxylating) [EC:1.1.1.38] +K00028 E1.1.1.39; malate dehydrogenase (decarboxylating) [EC:1.1.1.39] +K00029 maeB; malate dehydrogenase (oxaloacetate-decarboxylating)(NADP+) [EC:1.1.1.40] +K00030 IDH3; isocitrate dehydrogenase (NAD+) [EC:1.1.1.41] +K00031 IDH1, IDH2, icd; isocitrate dehydrogenase [EC:1.1.1.42] +K00032 E1.1.1.43; phosphogluconate 2-dehydrogenase [EC:1.1.1.43] +K00033 PGD, gnd, gntZ; 6-phosphogluconate dehydrogenase [EC:1.1.1.44 1.1.1.343] +K00034 gdh; glucose 1-dehydrogenase [EC:1.1.1.47] +K00035 gal; D-galactose 1-dehydrogenase [EC:1.1.1.48] +K00036 G6PD, zwf; glucose-6-phosphate 1-dehydrogenase [EC:1.1.1.49 1.1.1.363] +K00037 AKR1C4; 3alpha-hydroxysteroid 3-dehydrogenase / chlordecone reductase [EC:1.1.1.50 1.1.1.357 1.1.1.225] +K00038 fabG3; 3alpha(or 20beta)-hydroxysteroid dehydrogenase [EC:1.1.1.53] +K00039 rbtD; ribitol 2-dehydrogenase [EC:1.1.1.56] +K00040 uxuB; fructuronate reductase [EC:1.1.1.57] +K00041 uxaB; tagaturonate reductase [EC:1.1.1.58] +K00042 garR, glxR; 2-hydroxy-3-oxopropionate reductase [EC:1.1.1.60] +K00043 gbd; 4-hydroxybutyrate dehydrogenase [EC:1.1.1.61] +K00044 HSD17B1; 17beta-estradiol 17-dehydrogenase [EC:1.1.1.62] +K00045 E1.1.1.67, mtlK; mannitol 2-dehydrogenase [EC:1.1.1.67] +K00046 idnO; gluconate 5-dehydrogenase [EC:1.1.1.69] +K00048 fucO; lactaldehyde reductase [EC:1.1.1.77] +K00049 GRHPR; glyoxylate/hydroxypyruvate reductase [EC:1.1.1.79 1.1.1.81] +K00051 E1.1.1.82; malate dehydrogenase (NADP+) [EC:1.1.1.82] +K00052 leuB, IMDH; 3-isopropylmalate dehydrogenase [EC:1.1.1.85] +K00053 ilvC; ketol-acid reductoisomerase [EC:1.1.1.86] +K00054 mvaA; hydroxymethylglutaryl-CoA reductase [EC:1.1.1.88] +K00055 E1.1.1.90; aryl-alcohol dehydrogenase [EC:1.1.1.90] +K00057 gpsA; glycerol-3-phosphate dehydrogenase (NAD(P)+) [EC:1.1.1.94] +K00058 serA, PHGDH; D-3-phosphoglycerate dehydrogenase / 2-oxoglutarate reductase [EC:1.1.1.95 1.1.1.399] +K00059 fabG, OAR1; 3-oxoacyl-[acyl-carrier protein] reductase [EC:1.1.1.100] +K00060 tdh; threonine 3-dehydrogenase [EC:1.1.1.103] +K00061 RDH5; 11-cis-retinol dehydrogenase [EC:1.1.1.315] +K00062 ARA2; D-arabinose 1-dehydrogenase [EC:1.1.1.116] +K00063 ARA1; D-arabinose 1-dehydrogenase [EC:1.1.1.117] +K00064 E1.1.1.122; D-threo-aldose 1-dehydrogenase [EC:1.1.1.122] +K00065 kduD; 2-dehydro-3-deoxy-D-gluconate 5-dehydrogenase [EC:1.1.1.127] +K00066 algD; GDP-mannose 6-dehydrogenase [EC:1.1.1.132] +K00067 rfbD, rmlD; dTDP-4-dehydrorhamnose reductase [EC:1.1.1.133] +K00068 srlD; sorbitol-6-phosphate 2-dehydrogenase [EC:1.1.1.140] +K00069 HPGD; 15-hydroxyprostaglandin dehydrogenase (NAD) [EC:1.1.1.141] +K00070 HSD3B; 3beta-hydroxy-Delta5-steroid dehydrogenase / steroid Delta-isomerase [EC:1.1.1.145 5.3.3.1] +K00071 HSD11B2; corticosteroid 11-beta-dehydrogenase isozyme 2 [EC:1.1.1.-] +K00072 SPR; sepiapterin reductase [EC:1.1.1.153] +K00073 allD; ureidoglycolate dehydrogenase (NAD+) [EC:1.1.1.350] +K00074 paaH, hbd, fadB, mmgB; 3-hydroxybutyryl-CoA dehydrogenase [EC:1.1.1.157] +K00075 murB; UDP-N-acetylmuramate dehydrogenase [EC:1.3.1.98] +K00076 hdhA; 7-alpha-hydroxysteroid dehydrogenase [EC:1.1.1.159] +K00077 panE, apbA; 2-dehydropantoate 2-reductase [EC:1.1.1.169] +K00078 DHDH; dihydrodiol dehydrogenase / D-xylose 1-dehydrogenase (NADP) [EC:1.3.1.20 1.1.1.179] +K00079 CBR1; carbonyl reductase 1 [EC:1.1.1.184 1.1.1.189 1.1.1.197] +K00081 CBR2; carbonyl reductase 2 [EC:1.1.1.184] +K00082 ribD2; 5-amino-6-(5-phosphoribosylamino)uracil reductase [EC:1.1.1.193] +K00083 CAD; cinnamyl-alcohol dehydrogenase [EC:1.1.1.195] +K00084 CBR3; carbonyl reductase 3 [EC:1.1.1.184] +K00085 E1.1.1.200; aldose-6-phosphate reductase (NADPH2) [EC:1.1.1.200] +K00086 dhaT; 1,3-propanediol dehydrogenase [EC:1.1.1.202] +K00087 ygeS, xdhA; xanthine dehydrogenase molybdenum-binding subunit [EC:1.17.1.4] +K00088 IMPDH, guaB; IMP dehydrogenase [EC:1.1.1.205] +K00089 AKR1C2; 3alpha-hydroxysteroid 3-dehydrogenase [EC:1.1.1.213 1.1.1.357] +K00090 ghrB; glyoxylate/hydroxypyruvate/2-ketogluconate reductase [EC:1.1.1.79 1.1.1.81 1.1.1.215] +K00091 E1.1.1.219; dihydroflavonol-4-reductase [EC:1.1.1.219] +K00093 mdh; methanol dehydrogenase [EC:1.1.1.244] +K00094 E1.1.1.251, gatD; galactitol-1-phosphate 5-dehydrogenase [EC:1.1.1.251] +K00095 MTD; mannitol dehydrogenase [EC:1.1.1.255] +K00096 araM, egsA; glycerol-1-phosphate dehydrogenase [NAD(P)+] [EC:1.1.1.261] +K00097 pdxA; 4-hydroxythreonine-4-phosphate dehydrogenase [EC:1.1.1.262] +K00098 idnD; L-idonate 5-dehydrogenase [EC:1.1.1.264] +K00099 dxr; 1-deoxy-D-xylulose-5-phosphate reductoisomerase [EC:1.1.1.267] +K00100 bdhAB; butanol dehydrogenase [EC:1.1.1.-] +K00101 lldD; L-lactate dehydrogenase (cytochrome) [EC:1.1.2.3] +K00102 LDHD, dld; D-lactate dehydrogenase (cytochrome) [EC:1.1.2.4] +K00103 GULO; L-gulonolactone oxidase [EC:1.1.3.8] +K00104 glcD; glycolate dehydrogenase FAD-linked subunit [EC:1.1.99.14] +K00105 E1.1.3.21; alpha-glycerophosphate oxidase [EC:1.1.3.21] +K00106 XDH; xanthine dehydrogenase/oxidase [EC:1.17.1.4 1.17.3.2] +K00107 ALO; D-arabinono-1,4-lactone oxidase [EC:1.1.3.37] +K00108 betA, CHDH; choline dehydrogenase [EC:1.1.99.1] +K00109 L2HGDH; 2-hydroxyglutarate dehydrogenase [EC:1.1.99.2] +K00111 glpA, glpD; glycerol-3-phosphate dehydrogenase [EC:1.1.5.3] +K00112 glpB; glycerol-3-phosphate dehydrogenase subunit B [EC:1.1.5.3] +K00113 glpC; glycerol-3-phosphate dehydrogenase subunit C +K00114 exaA; alcohol dehydrogenase (cytochrome c) [EC:1.1.2.8] +K00115 GLD; glucose 1-dehydrogenase (FAD, quinone) [EC:1.1.5.9] +K00116 mqo; malate dehydrogenase (quinone) [EC:1.1.5.4] +K00117 gcd; quinoprotein glucose dehydrogenase [EC:1.1.5.2] +K00118 gfo; glucose-fructose oxidoreductase [EC:1.1.99.28] +K00119 E1.1.99.36; alcohol dehydrogenase (nicotinoprotein) [EC:1.1.99.36] +K00120 fgd2; F420-dependent hydroxymycolic acid dehydrogenase [EC:1.1.98.-] +K00121 frmA, ADH5, adhC; S-(hydroxymethyl)glutathione dehydrogenase / alcohol dehydrogenase [EC:1.1.1.284 1.1.1.1] +K00122 FDH; formate dehydrogenase [EC:1.17.1.9] +K00123 fdoG, fdhF, fdwA; formate dehydrogenase major subunit [EC:1.17.1.9] +K00124 fdoH, fdsB; formate dehydrogenase iron-sulfur subunit +K00125 fdhB; formate dehydrogenase (coenzyme F420) beta subunit [EC:1.17.98.3 1.8.98.6] +K00126 fdsD; formate dehydrogenase subunit delta [EC:1.17.1.9] +K00127 fdoI, fdsG; formate dehydrogenase subunit gamma +K00128 ALDH; aldehyde dehydrogenase (NAD+) [EC:1.2.1.3] +K00129 ALDH3; aldehyde dehydrogenase (NAD(P)+) [EC:1.2.1.5] +K00130 betB, gbsA; betaine-aldehyde dehydrogenase [EC:1.2.1.8] +K00131 gapN; glyceraldehyde-3-phosphate dehydrogenase (NADP+) [EC:1.2.1.9] +K00132 E1.2.1.10; acetaldehyde dehydrogenase (acetylating) [EC:1.2.1.10] +K00133 asd; aspartate-semialdehyde dehydrogenase [EC:1.2.1.11] +K00134 GAPDH, gapA; glyceraldehyde 3-phosphate dehydrogenase (phosphorylating) [EC:1.2.1.12] +K00135 gabD; succinate-semialdehyde dehydrogenase / glutarate-semialdehyde dehydrogenase [EC:1.2.1.16 1.2.1.79 1.2.1.20] +K00137 prr; aminobutyraldehyde dehydrogenase [EC:1.2.1.19] +K00138 aldB; aldehyde dehydrogenase [EC:1.2.1.-] +K00139 ALDH5A1; succinate-semialdehyde dehydrogenase [EC:1.2.1.24] +K00140 mmsA, iolA, ALDH6A1; malonate-semialdehyde dehydrogenase (acetylating) / methylmalonate-semialdehyde dehydrogenase [EC:1.2.1.18 1.2.1.27] +K00141 xylC; benzaldehyde dehydrogenase (NAD) [EC:1.2.1.28] +K00142 AASDH; acyl-CoA synthetase [EC:6.2.1.-] +K00143 LYS2; L-2-aminoadipate reductase [EC:1.2.1.95] +K00145 argC; N-acetyl-gamma-glutamyl-phosphate reductase [EC:1.2.1.38] +K00146 feaB, tynC; phenylacetaldehyde dehydrogenase [EC:1.2.1.39] +K00147 proA; glutamate-5-semialdehyde dehydrogenase [EC:1.2.1.41] +K00148 fdhA; glutathione-independent formaldehyde dehydrogenase [EC:1.2.1.46] +K00149 ALDH9A1; aldehyde dehydrogenase family 9 member A1 [EC:1.2.1.47 1.2.1.3] +K00150 gap2, gapB; glyceraldehyde-3-phosphate dehydrogenase (NAD(P)+) (phosphorylating) [EC:1.2.1.59] +K00151 hpaE, hpcC; 5-carboxymethyl-2-hydroxymuconic-semialdehyde dehydrogenase [EC:1.2.1.60] +K00152 nahF; salicylaldehyde dehydrogenase [EC:1.2.1.65] +K00153 E1.1.1.306; S-(hydroxymethyl)mycothiol dehydrogenase [EC:1.1.1.306] +K00154 E1.2.1.68; coniferyl-aldehyde dehydrogenase [EC:1.2.1.68] +K00155 LNAA, LNBA; L-tyrosine reductase [EC:1.2.1.101] +K00156 poxB; pyruvate dehydrogenase (quinone) [EC:1.2.5.1] +K00157 AOX; aldehyde oxidase [EC:1.2.3.1] +K00158 spxB, poxL; pyruvate oxidase [EC:1.2.3.3] +K00161 PDHA, pdhA; pyruvate dehydrogenase E1 component subunit alpha [EC:1.2.4.1] +K00162 PDHB, pdhB; pyruvate dehydrogenase E1 component subunit beta [EC:1.2.4.1] +K00163 aceE; pyruvate dehydrogenase E1 component [EC:1.2.4.1] +K00164 OGDH, sucA; 2-oxoglutarate dehydrogenase E1 component [EC:1.2.4.2] +K00166 BCKDHA, bkdA1; 2-oxoisovalerate dehydrogenase E1 component subunit alpha [EC:1.2.4.4] +K00167 BCKDHB, bkdA2; 2-oxoisovalerate dehydrogenase E1 component subunit beta [EC:1.2.4.4] +K00169 porA; pyruvate ferredoxin oxidoreductase alpha subunit [EC:1.2.7.1] +K00170 porB; pyruvate ferredoxin oxidoreductase beta subunit [EC:1.2.7.1] +K00171 porD; pyruvate ferredoxin oxidoreductase delta subunit [EC:1.2.7.1] +K00172 porC, porG; pyruvate ferredoxin oxidoreductase gamma subunit [EC:1.2.7.1] +K00174 korA, oorA, oforA; 2-oxoglutarate/2-oxoacid ferredoxin oxidoreductase subunit alpha [EC:1.2.7.3 1.2.7.11] +K00175 korB, oorB, oforB; 2-oxoglutarate/2-oxoacid ferredoxin oxidoreductase subunit beta [EC:1.2.7.3 1.2.7.11] +K00176 korD, oorD; 2-oxoglutarate ferredoxin oxidoreductase subunit delta [EC:1.2.7.3] +K00177 korC, oorC; 2-oxoglutarate ferredoxin oxidoreductase subunit gamma [EC:1.2.7.3] +K00179 iorA; indolepyruvate ferredoxin oxidoreductase, alpha subunit [EC:1.2.7.8] +K00180 iorB; indolepyruvate ferredoxin oxidoreductase, beta subunit [EC:1.2.7.8] +K00181 PORCN; O-palmitoleoyl transferase [EC:2.3.1.250] +K00182 WNT2; wingless-type MMTV integration site family, member 2 +K00184 dmsB; dimethyl sulfoxide reductase iron-sulfur subunit +K00185 dmsC; dimethyl sulfoxide reductase membrane subunit +K00186 vorA; 2-oxoisovalerate ferredoxin oxidoreductase alpha subunit [EC:1.2.7.7] +K00187 vorB; 2-oxoisovalerate ferredoxin oxidoreductase beta subunit [EC:1.2.7.7] +K00188 vorD; 2-oxoisovalerate ferredoxin oxidoreductase delta subunit [EC:1.2.7.7] +K00189 vorG, porG; 2-oxoisovalerate/pyruvate ferredoxin oxidoreductase gamma subunit [EC:1.2.7.7 1.2.7.1] +K00192 cdhA; anaerobic carbon-monoxide dehydrogenase, CODH/ACS complex subunit alpha [EC:1.2.7.4] +K00193 cdhC; acetyl-CoA decarbonylase/synthase, CODH/ACS complex subunit beta [EC:2.3.1.169] +K00194 cdhD, acsD; acetyl-CoA decarbonylase/synthase, CODH/ACS complex subunit delta [EC:2.1.1.245] +K00195 cdhB; anaerobic carbon-monoxide dehydrogenase, CODH/ACS complex subunit epsilon +K00196 cooF; anaerobic carbon-monoxide dehydrogenase iron sulfur subunit +K00197 cdhE, acsC; acetyl-CoA decarbonylase/synthase, CODH/ACS complex subunit gamma [EC:2.1.1.245] +K00198 cooS, acsA; anaerobic carbon-monoxide dehydrogenase catalytic subunit [EC:1.2.7.4] +K00200 fwdA, fmdA; formylmethanofuran dehydrogenase subunit A [EC:1.2.7.12] +K00201 fwdB, fmdB; formylmethanofuran dehydrogenase subunit B [EC:1.2.7.12] +K00202 fwdC, fmdC; formylmethanofuran dehydrogenase subunit C [EC:1.2.7.12] +K00203 fwdD, fmdD; formylmethanofuran dehydrogenase subunit D [EC:1.2.7.12] +K00204 fwdH; 4Fe-4S ferredoxin +K00205 fwdF, fmdF; 4Fe-4S ferredoxin +K00206 phnY; phosphonoacetaldehyde dehydrogenase [EC:1.2.1.-] +K00207 DPYD; dihydropyrimidine dehydrogenase (NADP+) [EC:1.3.1.2] +K00208 fabI; enoyl-[acyl-carrier protein] reductase I [EC:1.3.1.9 1.3.1.10] +K00209 fabV, ter; enoyl-[acyl-carrier protein] reductase / trans-2-enoyl-CoA reductase (NAD+) [EC:1.3.1.9 1.3.1.44] +K00211 TYR1; prephenate dehydrogenase (NADP+) [EC:1.3.1.13] +K00212 AKR1C1; 20alpha/3alpha-hydroxysteroid dehydrogenase / dihydrodiol dehydrogenase [EC:1.1.1.149 1.1.1.357 1.3.1.20] +K00213 DHCR7; 7-dehydrocholesterol reductase [EC:1.3.1.21] +K00214 BLVRA, bvdR; biliverdin reductase [EC:1.3.1.24] +K00215 dapB; 4-hydroxy-tetrahydrodipicolinate reductase [EC:1.17.1.8] +K00216 entA; 2,3-dihydro-2,3-dihydroxybenzoate dehydrogenase [EC:1.3.1.28] +K00217 E1.3.1.32; maleylacetate reductase [EC:1.3.1.32] +K00218 por; protochlorophyllide reductase [EC:1.3.1.33] +K00219 fadH; 2,4-dienoyl-CoA reductase (NADPH2) [EC:1.3.1.34] +K00220 tyrC; cyclohexadieny/prephenate dehydrogenase [EC:1.3.1.43 1.3.1.12] +K00221 E4.99.1.2; alkylmercury lyase [EC:4.99.1.2] +K00222 TM7SF2, ERG24; Delta14-sterol reductase [EC:1.3.1.70] +K00223 ERG4; Delta24(24(1))-sterol reductase [EC:1.3.1.71] +K00224 CEQORH; chloroplastic oxoene reductase [EC:1.3.1.-] +K00225 GLDH; L-galactono-1,4-lactone dehydrogenase [EC:1.3.2.3] +K00226 pyrD; dihydroorotate dehydrogenase (fumarate) [EC:1.3.98.1] +K00227 SC5DL, ERG3; Delta7-sterol 5-desaturase [EC:1.14.19.20] +K00228 CPOX, hemF; coproporphyrinogen III oxidase [EC:1.3.3.3] +K00230 hemG; menaquinone-dependent protoporphyrinogen oxidase [EC:1.3.5.3] +K00231 PPOX, hemY; protoporphyrinogen/coproporphyrinogen III oxidase [EC:1.3.3.4 1.3.3.15] +K00232 E1.3.3.6, ACOX1, ACOX3; acyl-CoA oxidase [EC:1.3.3.6] +K00233 frdA, fdrA; succinate dehydrogenase flavoprotein subunit [EC:1.3.5.1 7.1.1.12] +K00234 SDHA, SDH1; succinate dehydrogenase (ubiquinone) flavoprotein subunit [EC:1.3.5.1] +K00235 SDHB, SDH2; succinate dehydrogenase (ubiquinone) iron-sulfur subunit [EC:1.3.5.1] +K00236 SDHC, SDH3; succinate dehydrogenase (ubiquinone) cytochrome b560 subunit +K00237 SDHD, SDH4; succinate dehydrogenase (ubiquinone) membrane anchor subunit +K00239 sdhA, frdA; succinate dehydrogenase flavoprotein subunit [EC:1.3.5.1] +K00240 sdhB, frdB; succinate dehydrogenase iron-sulfur subunit [EC:1.3.5.1] +K00241 sdhC, frdC; succinate dehydrogenase cytochrome b subunit +K00242 sdhD, frdD; succinate dehydrogenase membrane anchor subunit +K00243 K00243; uncharacterized protein +K00244 frdA; succinate dehydrogenase flavoprotein subunit [EC:1.3.5.1] +K00245 frdB; succinate dehydrogenase iron-sulfur subunit [EC:1.3.5.1] +K00246 frdC; succinate dehydrogenase subunit C +K00247 frdD; succinate dehydrogenase subunit D +K00248 ACADS, bcd; butyryl-CoA dehydrogenase [EC:1.3.8.1] +K00249 ACADM, acd; acyl-CoA dehydrogenase [EC:1.3.8.7] +K00251 AKR1D1; 3-oxo-5-beta-steroid 4-dehydrogenase [EC:1.3.1.3] +K00252 GCDH, gcdH; glutaryl-CoA dehydrogenase [EC:1.3.8.6] +K00253 IVD, ivd; isovaleryl-CoA dehydrogenase [EC:1.3.8.4] +K00254 DHODH, pyrD; dihydroorotate dehydrogenase [EC:1.3.5.2] +K00255 ACADL; long-chain-acyl-CoA dehydrogenase [EC:1.3.8.8] +K00257 mbtN, fadE14; acyl-ACP dehydrogenase [EC:1.3.99.-] +K00258 SWNR; swainsonine biosynthesis oxidoreductase SwnR [EC:1.3.1.-] +K00259 ald; alanine dehydrogenase [EC:1.4.1.1] +K00260 gudB, rocG; glutamate dehydrogenase [EC:1.4.1.2] +K00261 GLUD1_2, gdhA; glutamate dehydrogenase (NAD(P)+) [EC:1.4.1.3] +K00262 E1.4.1.4, gdhA; glutamate dehydrogenase (NADP+) [EC:1.4.1.4] +K00263 E1.4.1.9; leucine dehydrogenase [EC:1.4.1.9] +K00264 GLT1; glutamate synthase (NADH) [EC:1.4.1.14] +K00265 gltB; glutamate synthase (NADPH) large chain [EC:1.4.1.13] +K00266 gltD; glutamate synthase (NADPH) small chain [EC:1.4.1.13] +K00270 pdh; phenylalanine dehydrogenase [EC:1.4.1.20] +K00271 vdh; valine dehydrogenase (NAD+) [EC:1.4.1.23] +K00272 DDO; D-aspartate oxidase [EC:1.4.3.1] +K00273 DAO, aao; D-amino-acid oxidase [EC:1.4.3.3] +K00274 MAO, aofH; monoamine oxidase [EC:1.4.3.4] +K00275 pdxH, PNPO; pyridoxamine 5'-phosphate oxidase [EC:1.4.3.5] +K00276 AOC3, AOC2, tynA; primary-amine oxidase [EC:1.4.3.21] +K00277 LOX; protein-lysine 6-oxidase [EC:1.4.3.13] +K00278 nadB; L-aspartate oxidase [EC:1.4.3.16] +K00279 CKX; cytokinin dehydrogenase [EC:1.5.99.12] +K00280 LOXL2_3_4; lysyl oxidase-like protein 2/3/4 [EC:1.4.3.-] +K00281 GLDC, gcvP; glycine cleavage system P protein (glycine dehydrogenase) [EC:1.4.4.2] +K00282 gcvPA; glycine cleavage system P protein (glycine dehydrogenase) subunit 1 [EC:1.4.4.2] +K00283 gcvPB; glycine cleavage system P protein (glycine dehydrogenase) subunit 2 [EC:1.4.4.2] +K00284 GLU, gltS; glutamate synthase (ferredoxin) [EC:1.4.7.1] +K00285 dadA; D-amino-acid dehydrogenase [EC:1.4.5.1] +K00286 proC; pyrroline-5-carboxylate reductase [EC:1.5.1.2] +K00287 DHFR, folA; dihydrofolate reductase [EC:1.5.1.3] +K00288 MTHFD; methylenetetrahydrofolate dehydrogenase (NADP+) / methenyltetrahydrofolate cyclohydrolase / formyltetrahydrofolate synthetase [EC:1.5.1.5 3.5.4.9 6.3.4.3] +K00289 ALDH1L; formyltetrahydrofolate dehydrogenase [EC:1.5.1.6] +K00290 LYS1; saccharopine dehydrogenase (NAD+, L-lysine forming) [EC:1.5.1.7] +K00293 LYS9; saccharopine dehydrogenase (NADP+, L-glutamate forming) [EC:1.5.1.10] +K00294 E1.2.1.88; 1-pyrroline-5-carboxylate dehydrogenase [EC:1.2.1.88] +K00295 MTD1; methylenetetrahydrofolate dehydrogenase (NAD+) [EC:1.5.1.15] +K00296 nos; D-nopaline dehydrogenase [EC:1.5.1.19] +K00297 metF, MTHFR; methylenetetrahydrofolate reductase (NADH) [EC:1.5.1.54] +K00298 ceo; N5-(carboxyethyl)ornithine synthase [EC:1.5.1.24] +K00299 ssuE, msuE; FMN reductase [EC:1.5.1.38] +K00300 mtdA; methylenetetrahydrofolate/methylenetetrahydromethanopterin dehydrogenase (NADP+) [EC:1.5.1.5 1.5.1.-] +K00301 E1.5.3.1; sarcosine oxidase [EC:1.5.3.1] +K00302 soxA; sarcosine oxidase, subunit alpha [EC:1.5.3.24 1.5.3.1] +K00303 soxB; sarcosine oxidase, subunit beta [EC:1.5.3.24 1.5.3.1] +K00304 soxD; sarcosine oxidase, subunit delta [EC:1.5.3.24 1.5.3.1] +K00305 soxG; sarcosine oxidase, subunit gamma [EC:1.5.3.24 1.5.3.1] +K00306 PIPOX; sarcosine oxidase / L-pipecolate oxidase [EC:1.5.3.1 1.5.3.7] +K00307 BBE1; reticuline oxidase [EC:1.21.3.3] +K00308 PAOX; N1-acetylpolyamine oxidase [EC:1.5.3.13] +K00309 dmg; dimethylglycine oxidase [EC:1.5.3.10] +K00310 SE; pyrimidodiazepine synthase [EC:1.5.4.1] +K00311 ETFDH; electron-transferring-flavoprotein dehydrogenase [EC:1.5.5.1] +K00312 WNT3; wingless-type MMTV integration site family, member 3 +K00313 fixC; electron transfer flavoprotein-quinone oxidoreductase [EC:1.5.5.-] +K00314 SARDH; sarcosine dehydrogenase [EC:1.5.8.3] +K00315 DMGDH; dimethylglycine dehydrogenase [EC:1.5.8.4] +K00316 spdH; spermidine dehydrogenase [EC:1.5.99.6] +K00317 dmd-tmd; dimethylamine/trimethylamine dehydrogenase [EC:1.5.8.1 1.5.8.2] +K00318 PRODH, fadM, putB; proline dehydrogenase [EC:1.5.5.2] +K00319 mtd; methylenetetrahydromethanopterin dehydrogenase [EC:1.5.98.1] +K00320 mer; 5,10-methylenetetrahydromethanopterin reductase [EC:1.5.98.2] +K00322 sthA, udhA; NAD(P) transhydrogenase [EC:1.6.1.1] +K00323 NNT; proton-translocating NAD(P)+ transhydrogenase [EC:7.1.1.1] +K00324 pntA; proton-translocating NAD(P)+ transhydrogenase subunit alpha [EC:7.1.1.1] +K00325 pntB; proton-translocating NAD(P)+ transhydrogenase subunit beta [EC:7.1.1.1] +K00326 CYB5R; cytochrome-b5 reductase [EC:1.6.2.2] +K00327 POR; NADPH-ferrihemoprotein reductase [EC:1.6.2.4] +K00330 nuoA; NADH-quinone oxidoreductase subunit A [EC:7.1.1.2] +K00331 nuoB; NADH-quinone oxidoreductase subunit B [EC:7.1.1.2] +K00332 nuoC; NADH-quinone oxidoreductase subunit C [EC:7.1.1.2] +K00333 nuoD; NADH-quinone oxidoreductase subunit D [EC:7.1.1.2] +K00334 nuoE; NADH-quinone oxidoreductase subunit E [EC:7.1.1.2] +K00335 nuoF; NADH-quinone oxidoreductase subunit F [EC:7.1.1.2] +K00336 nuoG; NADH-quinone oxidoreductase subunit G [EC:7.1.1.2] +K00337 nuoH; NADH-quinone oxidoreductase subunit H [EC:7.1.1.2] +K00338 nuoI; NADH-quinone oxidoreductase subunit I [EC:7.1.1.2] +K00339 nuoJ; NADH-quinone oxidoreductase subunit J [EC:7.1.1.2] +K00340 nuoK; NADH-quinone oxidoreductase subunit K [EC:7.1.1.2] +K00341 nuoL; NADH-quinone oxidoreductase subunit L [EC:7.1.1.2] +K00342 nuoM; NADH-quinone oxidoreductase subunit M [EC:7.1.1.2] +K00343 nuoN; NADH-quinone oxidoreductase subunit N [EC:7.1.1.2] +K00344 qor, CRYZ; NADPH:quinone reductase [EC:1.6.5.5] +K00345 ndhS; NAD(P)H-quinone oxidoreductase subunit S, chloroplastic [EC:7.1.1.-] +K00346 nqrA; Na+-transporting NADH:ubiquinone oxidoreductase subunit A [EC:7.2.1.1] +K00347 nqrB; Na+-transporting NADH:ubiquinone oxidoreductase subunit B [EC:7.2.1.1] +K00348 nqrC; Na+-transporting NADH:ubiquinone oxidoreductase subunit C [EC:7.2.1.1] +K00349 nqrD; Na+-transporting NADH:ubiquinone oxidoreductase subunit D [EC:7.2.1.1] +K00350 nqrE; Na+-transporting NADH:ubiquinone oxidoreductase subunit E [EC:7.2.1.1] +K00351 nqrF; Na+-transporting NADH:ubiquinone oxidoreductase subunit F [EC:7.2.1.1] +K00354 E1.6.99.1; NADPH2 dehydrogenase [EC:1.6.99.1] +K00355 NQO1; NAD(P)H dehydrogenase (quinone) [EC:1.6.5.2] +K00357 QDPR; dihydropteridine reductase [EC:1.5.1.34] +K00359 qorA; NADPH:quinone reductase [EC:1.6.5.5] +K00360 nasB; assimilatory nitrate reductase electron transfer subunit [EC:1.7.99.-] +K00361 nasB; nitrite reductase [NAD(P)H] [EC:1.7.1.4] +K00362 nirB; nitrite reductase (NADH) large subunit [EC:1.7.1.15] +K00363 nirD; nitrite reductase (NADH) small subunit [EC:1.7.1.15] +K00364 guaC, GMPR; GMP reductase [EC:1.7.1.7] +K00365 uaZ; urate oxidase [EC:1.7.3.3] +K00366 nirA; ferredoxin-nitrite reductase [EC:1.7.7.1] +K00367 narB; ferredoxin-nitrate reductase [EC:1.7.7.2] +K00368 nirK; nitrite reductase (NO-forming) [EC:1.7.2.1] +K00370 narG, narZ, nxrA; nitrate reductase / nitrite oxidoreductase, alpha subunit [EC:1.7.5.1 1.7.99.-] +K00371 narH, narY, nxrB; nitrate reductase / nitrite oxidoreductase, beta subunit [EC:1.7.5.1 1.7.99.-] +K00372 nasC, nasA; assimilatory nitrate reductase catalytic subunit [EC:1.7.99.-] +K00373 narJ, narW; nitrate reductase molybdenum cofactor assembly chaperone NarJ/NarW +K00374 narI, narV; nitrate reductase gamma subunit [EC:1.7.5.1 1.7.99.-] +K00375 K00375; GntR family transcriptional regulator / MocR family aminotransferase +K00376 nosZ; nitrous-oxide reductase [EC:1.7.2.4] +K00378 hox; hydroxylamine oxidase [EC:1.7.2.9] +K00380 cysJ; sulfite reductase (NADPH) flavoprotein alpha-component [EC:1.8.1.2] +K00381 cysI; sulfite reductase (NADPH) hemoprotein beta-component [EC:1.8.1.2] +K00382 DLD, lpd, pdhD; dihydrolipoyl dehydrogenase [EC:1.8.1.4] +K00383 GSR, gor; glutathione reductase (NADPH) [EC:1.8.1.7] +K00384 trxB, TRR; thioredoxin reductase (NADPH) [EC:1.8.1.9] +K00385 asrC; anaerobic sulfite reductase subunit C +K00386 sorB; sulfite dehydrogenase (cytochrome) subunit B [EC:1.8.2.1] +K00387 SUOX; sulfite oxidase [EC:1.8.3.1] +K00389 yidH; inner membrane protein YidH +K00390 cysH; phosphoadenosine phosphosulfate reductase [EC:1.8.4.8 1.8.4.10] +K00392 sir; sulfite reductase (ferredoxin) [EC:1.8.7.1] +K00394 aprA; adenylylsulfate reductase, subunit A [EC:1.8.99.2] +K00395 aprB; adenylylsulfate reductase, subunit B [EC:1.8.99.2] +K00399 mcrA; methyl-coenzyme M reductase alpha subunit [EC:2.8.4.1] +K00400 K00400; methyl coenzyme M reductase system, component A2 +K00401 mcrB; methyl-coenzyme M reductase beta subunit [EC:2.8.4.1] +K00402 mcrG; methyl-coenzyme M reductase gamma subunit [EC:2.8.4.1] +K00404 ccoN; cytochrome c oxidase cbb3-type subunit I [EC:7.1.1.9] +K00405 ccoO; cytochrome c oxidase cbb3-type subunit II +K00406 ccoP; cytochrome c oxidase cbb3-type subunit III +K00407 ccoQ; cytochrome c oxidase cbb3-type subunit IV +K00408 WNT4; wingless-type MMTV integration site family, member 4 +K00410 fbcH; ubiquinol-cytochrome c reductase cytochrome b/c1 subunit +K00411 UQCRFS1, RIP1, petA; ubiquinol-cytochrome c reductase iron-sulfur subunit [EC:7.1.1.8] +K00412 CYTB, petB; ubiquinol-cytochrome c reductase cytochrome b subunit +K00413 CYC1, CYT1, petC; ubiquinol-cytochrome c reductase cytochrome c1 subunit +K00414 QCR1, UQCRC1; ubiquinol-cytochrome c reductase core subunit 1 +K00415 QCR2, UQCRC2; ubiquinol-cytochrome c reductase core subunit 2 +K00416 QCR6, UQCRH; ubiquinol-cytochrome c reductase subunit 6 +K00417 QCR7, UQCRB; ubiquinol-cytochrome c reductase subunit 7 +K00418 QCR8, UQCRQ; ubiquinol-cytochrome c reductase subunit 8 +K00419 QCR9, UCRC; ubiquinol-cytochrome c reductase subunit 9 +K00420 QCR10, UQCR; ubiquinol-cytochrome c reductase subunit 10 +K00421 lccA; laccase [EC:1.10.3.2] +K00422 E1.10.3.1; polyphenol oxidase [EC:1.10.3.1] +K00423 E1.10.3.3; L-ascorbate oxidase [EC:1.10.3.3] +K00424 cydX; cytochrome bd-I ubiquinol oxidase subunit X [EC:7.1.1.7] +K00425 cydA; cytochrome bd ubiquinol oxidase subunit I [EC:7.1.1.7] +K00426 cydB; cytochrome bd ubiquinol oxidase subunit II [EC:7.1.1.7] +K00427 lldP, lctP; L-lactate permease +K00428 E1.11.1.5; cytochrome c peroxidase [EC:1.11.1.5] +K00430 E1.11.1.7; peroxidase [EC:1.11.1.7] +K00431 TPO; thyroid peroxidase [EC:1.11.1.8] +K00432 gpx, btuE, bsaA; glutathione peroxidase [EC:1.11.1.9] +K00433 cpo; non-heme chloroperoxidase [EC:1.11.1.10] +K00434 E1.11.1.11; L-ascorbate peroxidase [EC:1.11.1.11] +K00435 hemQ; hydrogen peroxide-dependent heme synthase [EC:1.3.98.5] +K00436 hoxH; NAD-reducing hydrogenase large subunit [EC:1.12.1.2] +K00437 hydB; [NiFe] hydrogenase large subunit [EC:1.12.2.1] +K00440 frhA; coenzyme F420 hydrogenase subunit alpha [EC:1.12.98.1] +K00441 frhB; coenzyme F420 hydrogenase subunit beta [EC:1.12.98.1] +K00442 frhD; coenzyme F420 hydrogenase subunit delta +K00443 frhG; coenzyme F420 hydrogenase subunit gamma [EC:1.12.98.1] +K00444 WNT5; wingless-type MMTV integration site family, member 5 +K00445 WNT6; wingless-type MMTV integration site family, member 6 +K00446 dmpB, xylE; catechol 2,3-dioxygenase [EC:1.13.11.2] +K00448 pcaG; protocatechuate 3,4-dioxygenase, alpha subunit [EC:1.13.11.3] +K00449 pcaH; protocatechuate 3,4-dioxygenase, beta subunit [EC:1.13.11.3] +K00450 E1.13.11.4; gentisate 1,2-dioxygenase [EC:1.13.11.4] +K00451 HGD, hmgA; homogentisate 1,2-dioxygenase [EC:1.13.11.5] +K00452 HAAO; 3-hydroxyanthranilate 3,4-dioxygenase [EC:1.13.11.6] +K00453 TDO2, kynA; tryptophan 2,3-dioxygenase [EC:1.13.11.11] +K00454 LOX2S; lipoxygenase [EC:1.13.11.12] +K00455 hpaD, hpcB; 3,4-dihydroxyphenylacetate 2,3-dioxygenase [EC:1.13.11.15] +K00456 CDO1; cysteine dioxygenase [EC:1.13.11.20] +K00457 HPD, hppD; 4-hydroxyphenylpyruvate dioxygenase [EC:1.13.11.27] +K00458 ALOX12; arachidonate 12-lipoxygenase [EC:1.13.11.31] +K00459 ncd2, npd; nitronate monooxygenase [EC:1.13.12.16] +K00460 ALOX15; arachidonate 15-lipoxygenase [EC:1.13.11.33] +K00461 ALOX5; arachidonate 5-lipoxygenase [EC:1.13.11.34] +K00462 bphC; biphenyl-2,3-diol 1,2-dioxygenase [EC:1.13.11.39] +K00463 IDO, INDO; indoleamine 2,3-dioxygenase [EC:1.13.11.52] +K00464 diox1; all-trans-8'-apo-beta-carotenal 15,15'-oxygenase [EC:1.13.11.75] +K00465 CCD1; carotenoid 9,10(9',10')-cleavage dioxygenase 1 [EC:1.13.11.-] +K00466 iaaM; tryptophan 2-monooxygenase [EC:1.13.12.3] +K00467 E1.13.12.4; lactate 2-monooxygenase [EC:1.13.12.4] +K00468 davB; lysine 2-monooxygenase [EC:1.13.12.2] +K00469 MIOX; inositol oxygenase [EC:1.13.99.1] +K00471 BBOX1; gamma-butyrobetaine dioxygenase [EC:1.14.11.1] +K00472 P4HA; prolyl 4-hydroxylase [EC:1.14.11.2] +K00473 PLOD1; procollagen-lysine,2-oxoglutarate 5-dioxygenase 1 [EC:1.14.11.4] +K00474 TMLHE; trimethyllysine dioxygenase [EC:1.14.11.8] +K00475 F3H; naringenin 3-dioxygenase [EC:1.14.11.9] +K00476 ASPH; aspartate beta-hydroxylase [EC:1.14.11.16] +K00477 PHYH; phytanoyl-CoA hydroxylase [EC:1.14.11.18] +K00478 HR; [histone H3]-dimethyl-L-lysine9 demethylase [EC:1.14.11.65] +K00479 gbcA, bmoA; glycine betaine monooxygenase A [EC:1.14.13.251] +K00480 E1.14.13.1; salicylate hydroxylase [EC:1.14.13.1] +K00481 pobA; p-hydroxybenzoate 3-monooxygenase [EC:1.14.13.2] +K00483 hpaB; 4-hydroxyphenylacetate 3-monooxygenase [EC:1.14.14.9] +K00484 hpaC; flavin reductase (NADH) [EC:1.5.1.36] +K00485 FMO; dimethylaniline monooxygenase (N-oxide forming) / hypotaurine monooxygenase [EC:1.14.13.8 1.8.1.-] +K00486 KMO; kynurenine 3-monooxygenase [EC:1.14.13.9] +K00487 CYP73A; trans-cinnamate 4-monooxygenase [EC:1.14.14.91] +K00488 CYP27A1; cholestanetriol 26-monooxygenase [EC:1.14.15.15] +K00489 CYP7A1; cholesterol 7alpha-monooxygenase [EC:1.14.14.23] +K00490 CYP4F; cytochrome P450 family 4 subfamily F [EC:1.14.14.1] +K00491 nos; nitric-oxide synthase, bacterial [EC:1.14.14.47] +K00492 tmuM; 1,3,7-trimethyluric acid 5-monooxygenase [EC:1.14.13.212] +K00493 XANG; xanthocillin biosynthesis cytochrome P450 monooxygenase [EC:1.14.-.-] +K00494 luxA; alkanal monooxygenase alpha chain [EC:1.14.14.3] +K00495 CYP71AN24; phenylacetaldehyde oxime monooxygenase [EC:1.14.14.44] +K00496 alkB1_2, alkM; alkane 1-monooxygenase [EC:1.14.15.3] +K00497 CYP11B1; steroid 11beta-monooxygenase [EC:1.14.15.4] +K00498 CYP11A; cholesterol monooxygenase (side-chain-cleaving) [EC:1.14.15.6] +K00499 CMO; choline monooxygenase [EC:1.14.15.7] +K00500 phhA, PAH; phenylalanine-4-hydroxylase [EC:1.14.16.1] +K00501 TH; tyrosine 3-monooxygenase [EC:1.14.16.2] +K00502 TPH1_2; tryptophan 5-monooxygenase [EC:1.14.16.4] +K00503 DBH; dopamine beta-monooxygenase [EC:1.14.17.1] +K00504 PHM; peptidylglycine monooxygenase [EC:1.14.17.3] +K00505 TYR; tyrosinase [EC:1.14.18.1] +K00506 TYRP1; tyrosinase-related protein 1 [EC:1.14.18.-] +K00507 SCD, desC; stearoyl-CoA desaturase (Delta-9 desaturase) [EC:1.14.19.1] +K00508 E1.14.19.3; linoleoyl-CoA desaturase [EC:1.14.19.3] +K00509 PTGS1, COX1; prostaglandin-endoperoxide synthase 1 [EC:1.14.99.1] +K00510 HMOX1; heme oxygenase 1 [EC:1.14.14.18] +K00511 SQLE, ERG1; squalene monooxygenase [EC:1.14.14.17] +K00512 CYP17A; steroid 17alpha-monooxygenase / 17alpha-hydroxyprogesterone deacetylase [EC:1.14.14.19 1.14.14.32] +K00513 CYP21A; steroid 21-monooxygenase [EC:1.14.14.16] +K00514 ZDS, crtQ; zeta-carotene desaturase [EC:1.3.5.6] +K00515 BCMO1, BCDO1; beta-carotene 15,15'-dioxygenase [EC:1.13.11.63] +K00516 E1.14.99.55; lytic starch monooxygenase [EC:1.14.99.55] +K00517 CYP81F; indol-3-yl-methylglucosinolate hydroxylase [EC:1.14.-.-] +K00518 sodN; nickel superoxide dismutase [EC:1.15.1.1] +K00520 merA; mercuric reductase [EC:1.16.1.1] +K00521 E1.16.1.7; ferric-chelate reductase [EC:1.16.1.7] +K00522 FTH1; ferritin heavy chain [EC:1.16.3.1] +K00523 ascD, ddhD, rfbI; CDP-4-dehydro-6-deoxyglucose reductase, E3 [EC:1.17.1.1] +K00524 nrdJ; ribonucleotide reductase, class II [EC:1.17.4.2] +K00525 E1.17.4.1A, nrdA, nrdE; ribonucleoside-diphosphate reductase alpha chain [EC:1.17.4.1] +K00526 E1.17.4.1B, nrdB, nrdF; ribonucleoside-diphosphate reductase beta chain [EC:1.17.4.1] +K00527 rtpR; ribonucleoside-triphosphate reductase (thioredoxin) [EC:1.17.4.2] +K00528 fpr; ferredoxin/flavodoxin---NADP+ reductase [EC:1.18.1.2 1.19.1.1] +K00529 hcaD; 3-phenylpropionate/trans-cinnamate dioxygenase ferredoxin reductase component [EC:1.18.1.3] +K00530 nroR; rubredoxin---NAD(P)+ reductase [EC:1.18.1.4] +K00531 anfG; nitrogenase delta subunit [EC:1.18.6.1] +K00532 E1.12.7.2; ferredoxin hydrogenase [EC:1.12.7.2] +K00533 E1.12.7.2L; ferredoxin hydrogenase large subunit [EC:1.12.7.2] +K00534 E1.12.7.2S; ferredoxin hydrogenase small subunit [EC:1.12.7.2] +K00537 arsC; arsenate reductase (glutaredoxin) [EC:1.20.4.1] +K00540 fqr; F420H(2)-dependent quinone reductase [EC:1.1.98.-] +K00541 NNMT; nicotinamide N-methyltransferase [EC:2.1.1.1] +K00542 GAMT; guanidinoacetate N-methyltransferase [EC:2.1.1.2] +K00543 ASMT; acetylserotonin O-methyltransferase [EC:2.1.1.4] +K00544 BHMT; betaine-homocysteine S-methyltransferase [EC:2.1.1.5] +K00545 COMT; catechol O-methyltransferase [EC:2.1.1.6] +K00546 HNMT; histamine N-methyltransferase [EC:2.1.1.8] +K00547 mmuM, BHMT2; homocysteine S-methyltransferase [EC:2.1.1.10] +K00548 metH, MTR; 5-methyltetrahydrofolate--homocysteine methyltransferase [EC:2.1.1.13] +K00549 metE; 5-methyltetrahydropteroyltriglutamate--homocysteine methyltransferase [EC:2.1.1.14] +K00550 PLMT; phosphatidyl-N-methylethanolamine N-methyltransferase [EC:2.1.1.71] +K00551 PEMT; phosphatidylethanolamine/phosphatidyl-N-methylethanolamine N-methyltransferase [EC:2.1.1.17 2.1.1.71] +K00552 GNMT; glycine N-methyltransferase [EC:2.1.1.20] +K00553 PNMT; phenylethanolamine N-methyltransferase [EC:2.1.1.28] +K00554 trmD; tRNA (guanine37-N1)-methyltransferase [EC:2.1.1.228] +K00555 TRMT1, trm1; tRNA (guanine26-N2/guanine27-N2)-dimethyltransferase [EC:2.1.1.215 2.1.1.216] +K00556 trmH; tRNA (guanosine-2'-O-)-methyltransferase [EC:2.1.1.34] +K00557 trmA; tRNA (uracil-5-)-methyltransferase [EC:2.1.1.35] +K00558 DNMT1, dcm; DNA (cytosine-5)-methyltransferase 1 [EC:2.1.1.37] +K00559 SMT1, ERG6; sterol 24-C-methyltransferase [EC:2.1.1.41] +K00560 thyA, TYMS; thymidylate synthase [EC:2.1.1.45] +K00561 ermC, ermA; 23S rRNA (adenine-N6)-dimethyltransferase [EC:2.1.1.184] +K00562 INMT, TEMT; methyltransferase [EC:2.1.1.49 2.1.1.96] +K00563 rlmA1; 23S rRNA (guanine745-N1)-methyltransferase [EC:2.1.1.187] +K00564 rsmC; 16S rRNA (guanine1207-N2)-methyltransferase [EC:2.1.1.172] +K00565 RNMT; mRNA (guanine-N7-)-methyltransferase [EC:2.1.1.56] +K00566 mnmA, trmU; tRNA-uridine 2-sulfurtransferase [EC:2.8.1.13] +K00567 ogt, MGMT; methylated-DNA-[protein]-cysteine S-methyltransferase [EC:2.1.1.63] +K00568 ubiG; 2-polyprenyl-6-hydroxyphenyl methylase / 3-demethylubiquinone-9 3-methyltransferase [EC:2.1.1.222 2.1.1.64] +K00569 TPMT, tpmT; thiopurine S-methyltransferase [EC:2.1.1.67] +K00570 pmtA; phosphatidylethanolamine/phosphatidyl-N-methylethanolamine N-methyltransferase [EC:2.1.1.17 2.1.1.71] +K00571 E2.1.1.72; site-specific DNA-methyltransferase (adenine-specific) [EC:2.1.1.72] +K00572 WNT7; wingless-type MMTV integration site family, member 7 +K00573 E2.1.1.77, pcm; protein-L-isoaspartate(D-aspartate) O-methyltransferase [EC:2.1.1.77] +K00574 cfa; cyclopropane-fatty-acyl-phospholipid synthase [EC:2.1.1.79] +K00575 cheR; chemotaxis protein methyltransferase CheR [EC:2.1.1.80] +K00577 mtrA; tetrahydromethanopterin S-methyltransferase subunit A [EC:7.2.1.4] +K00578 mtrB; tetrahydromethanopterin S-methyltransferase subunit B [EC:7.2.1.4] +K00579 mtrC; tetrahydromethanopterin S-methyltransferase subunit C [EC:7.2.1.4] +K00580 mtrD; tetrahydromethanopterin S-methyltransferase subunit D [EC:7.2.1.4] +K00581 mtrE; tetrahydromethanopterin S-methyltransferase subunit E [EC:7.2.1.4] +K00582 mtrF; tetrahydromethanopterin S-methyltransferase subunit F [EC:7.2.1.4] +K00583 mtrG; tetrahydromethanopterin S-methyltransferase subunit G [EC:7.2.1.4] +K00584 mtrH; tetrahydromethanopterin S-methyltransferase subunit H [EC:7.2.1.4] +K00586 DPH5; diphthine methyl ester synthase [EC:2.1.1.314] +K00587 ICMT, STE14; protein-S-isoprenylcysteine O-methyltransferase [EC:2.1.1.100] +K00588 E2.1.1.104; caffeoyl-CoA O-methyltransferase [EC:2.1.1.104] +K00589 MET1; uroporphyrin-III C-methyltransferase [EC:2.1.1.107] +K00590 E2.1.1.113; site-specific DNA-methyltransferase (cytosine-N4-specific) [EC:2.1.1.113] +K00591 COQ3; polyprenyldihydroxybenzoate methyltransferase / 3-demethylubiquinol 3-O-methyltransferase [EC:2.1.1.114 2.1.1.64] +K00592 RBCMT; [ribulose-bisphosphate carboxylase]/[fructose-bisphosphate aldolase]-lysine N-methyltransferase [EC:2.1.1.127 2.1.1.259] +K00594 xyoA, aldO; alditol oxidase [EC:1.1.3.41] +K00595 cobL-cbiET; precorrin-6B C5,15-methyltransferase / cobalt-precorrin-6B C5,C15-methyltransferase [EC:2.1.1.132 2.1.1.289 2.1.1.196] +K00596 E4.1.1.64; 2,2-dialkylglycine decarboxylase (pyruvate) [EC:4.1.1.64] +K00597 MTRR; methionine synthase reductase [EC:1.16.1.8] +K00598 tam; trans-aconitate 2-methyltransferase [EC:2.1.1.144] +K00599 METTL6; tRNA N(3)-methylcytidine methyltransferase METTL6 [EC:2.1.1.-] +K00600 glyA, SHMT; glycine hydroxymethyltransferase [EC:2.1.2.1] +K00601 E2.1.2.2; phosphoribosylglycinamide formyltransferase [EC:2.1.2.2] +K00602 purH; phosphoribosylaminoimidazolecarboxamide formyltransferase / IMP cyclohydrolase [EC:2.1.2.3 3.5.4.10] +K00603 fctD; glutamate formiminotransferase / 5-formyltetrahydrofolate cyclo-ligase [EC:2.1.2.5 6.3.3.2] +K00604 MTFMT, fmt; methionyl-tRNA formyltransferase [EC:2.1.2.9] +K00605 gcvT, AMT; glycine cleavage system T protein (aminomethyltransferase) [EC:2.1.2.10] +K00606 panB; 3-methyl-2-oxobutanoate hydroxymethyltransferase [EC:2.1.2.11] +K00607 wbkC; GDP-perosamine N-formyltransferase [EC:2.1.2.14] +K00608 pyrBI; aspartate carbamoyltransferase [EC:2.1.3.2] +K00609 pyrB, PYR2; aspartate carbamoyltransferase catalytic subunit [EC:2.1.3.2] +K00610 pyrI; aspartate carbamoyltransferase regulatory subunit +K00611 OTC, argF, argI; ornithine carbamoyltransferase [EC:2.1.3.3] +K00612 nodU; carbamoyltransferase [EC:2.1.3.-] +K00613 GATM; glycine amidinotransferase [EC:2.1.4.1] +K00614 CSKMT, METTL12; citrate synthase lysine N-methyltransferase [EC:2.1.1.-] +K00615 E2.2.1.1, tktA, tktB; transketolase [EC:2.2.1.1] +K00616 TALDO1, talB, talA; transaldolase [EC:2.2.1.2] +K00617 sftT; 6-deoxy-6-sulfo-D-fructose transaldolase [EC:2.2.1.14] +K00618 ARG2; amino-acid N-acetyltransferase [EC:2.3.1.1] +K00619 argA; amino-acid N-acetyltransferase [EC:2.3.1.1] +K00620 argJ; glutamate N-acetyltransferase / amino-acid N-acetyltransferase [EC:2.3.1.35 2.3.1.1] +K00621 GNPNAT1, GNA1; glucosamine-phosphate N-acetyltransferase [EC:2.3.1.4] +K00622 nat; arylamine N-acetyltransferase [EC:2.3.1.5] +K00623 CHAT; choline O-acetyltransferase [EC:2.3.1.6] +K00624 E2.3.1.7; carnitine O-acetyltransferase [EC:2.3.1.7] +K00625 pta; phosphate acetyltransferase [EC:2.3.1.8] +K00626 ACAT, atoB; acetyl-CoA C-acetyltransferase [EC:2.3.1.9] +K00627 DLAT, aceF, pdhC; pyruvate dehydrogenase E2 component (dihydrolipoyllysine-residue acetyltransferase) [EC:2.3.1.12] +K00628 GLYAT; glycine N-acyltransferase / glycine N-benzoyltransferase [EC:2.3.1.13 2.3.1.71] +K00629 GPAT1_2; glycerol-3-phosphate O-acyltransferase 1/2 [EC:2.3.1.15] +K00630 ATS1; glycerol-3-phosphate O-acyltransferase [EC:2.3.1.15] +K00631 plsB; glycerol-3-phosphate O-acyltransferase [EC:2.3.1.15] +K00632 fadA, fadI; acetyl-CoA acyltransferase [EC:2.3.1.16] +K00633 lacA; galactoside O-acetyltransferase [EC:2.3.1.18] +K00634 ptb; phosphate butyryltransferase [EC:2.3.1.19] +K00635 tgs, wax-dgat; diacylglycerol O-acyltransferase / wax synthase [EC:2.3.1.20 2.3.1.75] +K00637 SOAT; sterol O-acyltransferase [EC:2.3.1.26] +K00638 catB; chloramphenicol O-acetyltransferase type B [EC:2.3.1.28] +K00639 kbl, GCAT; glycine C-acetyltransferase [EC:2.3.1.29] +K00640 cysE; serine O-acetyltransferase [EC:2.3.1.30] +K00641 metX; homoserine O-acetyltransferase/O-succinyltransferase [EC:2.3.1.31 2.3.1.46] +K00643 E2.3.1.37, ALAS; 5-aminolevulinate synthase [EC:2.3.1.37] +K00645 fabD, MCAT, MCT1; [acyl-carrier-protein] S-malonyltransferase [EC:2.3.1.39] +K00646 pksF, curC, aprD, corD; malonyl-[acp] decarboxylase [EC:4.1.1.124] +K00647 fabB; 3-oxoacyl-[acyl-carrier-protein] synthase I [EC:2.3.1.41] +K00648 fabH; 3-oxoacyl-[acyl-carrier-protein] synthase III [EC:2.3.1.180] +K00649 GNPAT; glyceronephosphate O-acyltransferase [EC:2.3.1.42] +K00650 LCAT; lecithin-cholesterol acyltransferase [EC:2.3.1.43] +K00651 metA; homoserine O-succinyltransferase/O-acetyltransferase [EC:2.3.1.46 2.3.1.31] +K00652 bioF; 8-amino-7-oxononanoate synthase [EC:2.3.1.47] +K00653 CDY; chromodomain protein Y [EC:2.3.1.48] +K00654 SPT; serine palmitoyltransferase [EC:2.3.1.50] +K00655 plsC; 1-acyl-sn-glycerol-3-phosphate acyltransferase [EC:2.3.1.51] +K00656 E2.3.1.54, pflD; formate C-acetyltransferase [EC:2.3.1.54] +K00657 speG, SAT; diamine N-acetyltransferase [EC:2.3.1.57] +K00658 DLST, sucB; 2-oxoglutarate dehydrogenase E2 component (dihydrolipoamide succinyltransferase) [EC:2.3.1.61] +K00659 BAAT; bile acid-CoA:amino acid N-acyltransferase [EC:2.3.1.65 3.1.2.2] +K00660 CHS; chalcone synthase [EC:2.3.1.74] +K00661 maa; maltose O-acetyltransferase [EC:2.3.1.79] +K00662 aacC; aminoglycoside 3-N-acetyltransferase [EC:2.3.1.81] +K00663 aacA; aminoglycoside 6'-N-acetyltransferase [EC:2.3.1.82] +K00664 ATF; alcohol O-acetyltransferase [EC:2.3.1.84] +K00665 FASN; fatty acid synthase, animal type [EC:2.3.1.85] +K00666 K00666; fatty-acyl-CoA synthase [EC:6.2.1.-] +K00667 FAS2; fatty acid synthase subunit alpha, fungi type [EC:2.3.1.86] +K00668 FAS1; fatty acid synthase subunit beta, fungi type [EC:2.3.1.86] +K00669 AANAT; arylalkylamine N-acetyltransferase [EC:2.3.1.87] +K00670 NAA30, MAK3; N-alpha-acetyltransferase 30 [EC:2.3.1.256] +K00671 NMT; glycylpeptide N-tetradecanoyltransferase [EC:2.3.1.97] +K00672 ftr; formylmethanofuran--tetrahydromethanopterin N-formyltransferase [EC:2.3.1.101] +K00673 astA; arginine N-succinyltransferase [EC:2.3.1.109] +K00674 dapD; 2,3,4,5-tetrahydropyridine-2,6-dicarboxylate N-succinyltransferase [EC:2.3.1.117] +K00675 nhoA; N-hydroxyarylamine O-acetyltransferase [EC:2.3.1.118] +K00677 lpxA; UDP-N-acetylglucosamine acyltransferase [EC:2.3.1.129] +K00678 LRAT; phosphatidylcholine-retinol O-acyltransferase [EC:2.3.1.135] +K00679 E2.3.1.158; phospholipid:diacylglycerol acyltransferase [EC:2.3.1.158] +K00680 ytmI; uncharacterized N-acetyltransferase [EC:2.3.1.-] +K00681 ggt; gamma-glutamyltranspeptidase / glutathione hydrolase [EC:2.3.2.2 3.4.19.13] +K00682 GGCT; gamma-glutamylcyclotransferase [EC:4.3.2.9] +K00683 QPCT; glutaminyl-peptide cyclotransferase [EC:2.3.2.5] +K00684 aat; leucyl/phenylalanyl-tRNA---protein transferase [EC:2.3.2.6] +K00685 ATE1; arginyl-tRNA---protein transferase [EC:2.3.2.8] +K00686 tgl; protein-glutamine gamma-glutamyltransferase [EC:2.3.2.13] +K00687 pbp2B, penA; penicillin-binding protein 2B +K00688 PYG, glgP; glycogen phosphorylase [EC:2.4.1.1] +K00689 E2.4.1.5; dextransucrase [EC:2.4.1.5] +K00690 E2.4.1.7; sucrose phosphorylase [EC:2.4.1.7] +K00691 mapA; maltose phosphorylase [EC:2.4.1.8] +K00692 sacB; levansucrase [EC:2.4.1.10] +K00693 GYS; glycogen synthase [EC:2.4.1.11] +K00694 bcsA; cellulose synthase (UDP-forming) [EC:2.4.1.12] +K00695 SUS; sucrose synthase [EC:2.4.1.13] +K00696 E2.4.1.14; sucrose-phosphate synthase [EC:2.4.1.14] +K00697 otsA; trehalose 6-phosphate synthase [EC:2.4.1.15 2.4.1.347] +K00698 CHS1; chitin synthase [EC:2.4.1.16] +K00699 UGT; glucuronosyltransferase [EC:2.4.1.17] +K00700 GBE1, glgB; 1,4-alpha-glucan branching enzyme [EC:2.4.1.18] +K00701 cgt; cyclomaltodextrin glucanotransferase [EC:2.4.1.19] +K00702 E2.4.1.20; cellobiose phosphorylase [EC:2.4.1.20] +K00703 glgA; starch synthase [EC:2.4.1.21] +K00704 LALBA; alpha-lactalbumin [EC:2.4.1.22] +K00705 malQ; 4-alpha-glucanotransferase [EC:2.4.1.25] +K00706 E2.4.1.34; 1,3-beta-glucan synthase [EC:2.4.1.34] +K00709 ABO; histo-blood group ABO system transferase [EC:2.4.1.40 2.4.1.37] +K00710 GALNT; polypeptide N-acetylgalactosaminyltransferase [EC:2.4.1.41] +K00712 tagE; poly(glycerol-phosphate) alpha-glucosyltransferase [EC:2.4.1.52] +K00713 waaD; UDP-glucose:(glucosyl)LPS alpha-1,2-glucosyltransferase [EC:2.4.1.-] +K00714 WNT8; wingless-type MMTV integration site family, member 8 +K00715 B3GALT4; ganglioside galactosyltransferase [EC:2.4.1.62] +K00716 FUT3; galactoside 3(4)-fucosyltransferase 3 [EC:2.4.1.65] +K00717 FUT8; glycoprotein 6-alpha-L-fucosyltransferase [EC:2.4.1.68] +K00718 FUT1_2; galactoside 2-L-fucosyltransferase 1/2 [EC:2.4.1.69] +K00719 B3GALNT1, B3GALT3; galactosylgalactosylglucosylceramide beta-D-acetylgalactosaminyltransferase [EC:2.4.1.79] +K00720 UGCG; ceramide glucosyltransferase [EC:2.4.1.80] +K00721 DPM1; dolichol-phosphate mannosyltransferase [EC:2.4.1.83] +K00722 GBGT1; globoside alpha-N-acetylgalactosaminyltransferase [EC:2.4.1.88] +K00725 B4GALNT1, GALGT; (N-Acetylneuraminyl)-galactosylglucosylceramide N-acetylgalactosaminyltransferase [EC:2.4.1.92] +K00726 MGAT1; alpha-1,3-mannosyl-glycoprotein beta-1,2-N-acetylglucosaminyltransferase [EC:2.4.1.101] +K00727 GCNT1; beta-1,3-galactosyl-O-glycosyl-glycoprotein beta-1,6-N-acetylglucosaminyltransferase [EC:2.4.1.102] +K00728 POMT, pmt; dolichyl-phosphate-mannose-protein mannosyltransferase [EC:2.4.1.109] +K00729 ALG5; dolichyl-phosphate beta-glucosyltransferase [EC:2.4.1.117] +K00730 OST4; dolichyl-diphosphooligosaccharide---protein glycosyltransferase subunit 4 +K00731 C1GALT1; glycoprotein-N-acetylgalactosamine 3-beta-galactosyltransferase [EC:2.4.1.122] +K00733 B4GALT7; xylosylprotein 4-beta-galactosyltransferase [EC:2.4.1.133] +K00734 B3GALT6; galactosylxylosylprotein 3-beta-galactosyltransferase [EC:2.4.1.134] +K00735 B3GAT1; galactosylgalactosylxylosylprotein 3-beta-glucuronosyltransferase 1 [EC:2.4.1.135] +K00736 MGAT2; alpha-1,6-mannosyl-glycoprotein beta-1,2-N-acetylglucosaminyltransferase [EC:2.4.1.143] +K00737 MGAT3; beta-1,4-mannosyl-glycoprotein beta-1,4-N-acetylglucosaminyltransferase [EC:2.4.1.144] +K00738 MGAT4A_B; alpha-1,3-mannosylglycoprotein beta-1,4-N-acetylglucosaminyltransferase A/B [EC:2.4.1.145] +K00739 B3GNT6; acetylgalactosaminyl-O-glycosyl-glycoprotein beta-1,3-N-acetylglucosaminyltransferase [EC:2.4.1.147] +K00741 B3GNT2; N-acetyllactosaminide beta-1,3-N-acetylglucosaminyltransferase [EC:2.4.1.149] +K00742 GCNT2; N-acetyllactosaminide beta-1,6-N-acetylglucosaminyltransferase [EC:2.4.1.150] +K00743 GGTA1; N-acetyllactosaminide 3-alpha-galactosyltransferase [EC:2.4.1.87] +K00744 MGAT5; alpha-1,3(6)-mannosylglycoprotein beta-1,6-N-acetyl-glucosaminyltransferase [EC:2.4.1.155] +K00746 CSGALNACT1_2; chondroitin sulfate N-acetylgalactosaminyltransferase 1/2 [EC:2.4.1.174 2.4.1.175] +K00747 CHPF; chondroitin polymerizing factor [EC:2.4.1.175 2.4.1.226] +K00748 lpxB; lipid-A-disaccharide synthase [EC:2.4.1.182] +K00749 E2.4.1.183; alpha-1,3-glucan synthase [EC:2.4.1.183] +K00750 GYG1, GYG2; glycogenin [EC:2.4.1.186] +K00752 hasA; hyaluronan synthase [EC:2.4.1.212] +K00753 E2.4.1.214; glycoprotein 3-alpha-L-fucosyltransferase [EC:2.4.1.214] +K00754 bshA; L-malate glycosyltransferase [EC:2.4.1.-] +K00756 pdp; pyrimidine-nucleoside phosphorylase [EC:2.4.2.2] +K00757 udp, UPP; uridine phosphorylase [EC:2.4.2.3] +K00758 deoA, TYMP; thymidine phosphorylase [EC:2.4.2.4] +K00759 APRT, apt; adenine phosphoribosyltransferase [EC:2.4.2.7] +K00760 hprT, hpt, HPRT1; hypoxanthine phosphoribosyltransferase [EC:2.4.2.8] +K00761 upp, UPRT; uracil phosphoribosyltransferase [EC:2.4.2.9] +K00762 pyrE; orotate phosphoribosyltransferase [EC:2.4.2.10] +K00763 pncB, NAPRT1; nicotinate phosphoribosyltransferase [EC:6.3.4.21] +K00764 purF, PPAT; amidophosphoribosyltransferase [EC:2.4.2.14] +K00765 hisG; ATP phosphoribosyltransferase [EC:2.4.2.17] +K00766 trpD; anthranilate phosphoribosyltransferase [EC:2.4.2.18] +K00767 nadC, QPRT; nicotinate-nucleotide pyrophosphorylase (carboxylating) [EC:2.4.2.19] +K00768 E2.4.2.21, cobU, cobT; nicotinate-nucleotide--dimethylbenzimidazole phosphoribosyltransferase [EC:2.4.2.21] +K00769 gpt; xanthine phosphoribosyltransferase [EC:2.4.2.22] +K00770 E2.4.2.24; 1,4-beta-D-xylan synthase [EC:2.4.2.24] +K00771 XYLT; protein xylosyltransferase [EC:2.4.2.26] +K00772 mtaP, MTAP; 5'-methylthioadenosine phosphorylase [EC:2.4.2.28] +K00773 tgt; queuine tRNA-ribosyltransferase [EC:2.4.2.29] +K00774 PARP16; poly [ADP-ribose] polymerase 16 [EC:2.4.2.30] +K00775 ART3; ADP-ribosyltransferase 3 [EC:2.4.2.31] +K00776 tox; NAD-diphthamide ADP-ribosyltransferase [EC:2.4.2.36] +K00777 QTRT1; queuine tRNA-ribosyltransferase catalytic subunit [EC:2.4.2.64] +K00778 ST6GAL1; beta-galactoside alpha-2,6-sialyltransferase (sialyltransferase 1) [EC:2.4.3.1] +K00779 ST6GAL2; beta-galactoside alpha-2,6-sialyltransferase (sialyltransferase 2) [EC:2.4.3.1] +K00780 ST3GAL1; beta-galactoside alpha-2,3-sialyltransferase (sialyltransferase 4A) [EC:2.4.3.2 2.4.3.4] +K00781 ST3GAL3; N-acetyllactosaminide alpha-2,3-sialyltransferase (sialyltransferase 6) [EC:2.4.3.6] +K00782 lldG; L-lactate dehydrogenase complex protein LldG +K00783 rlmH; 23S rRNA (pseudouridine1915-N3)-methyltransferase [EC:2.1.1.177] +K00784 rnz; ribonuclease Z [EC:3.1.26.11] +K00785 lst; N-acetyllactosaminide alpha-2,3-sialyltransferase [EC:2.4.3.6] +K00786 GALT29A; beta-1,6-galactosyltransferase [EC:2.4.1.-] +K00787 FDPS; farnesyl diphosphate synthase [EC:2.5.1.1 2.5.1.10] +K00788 thiE; thiamine-phosphate pyrophosphorylase [EC:2.5.1.3] +K00789 metK, MAT; S-adenosylmethionine synthetase [EC:2.5.1.6] +K00790 murA; UDP-N-acetylglucosamine 1-carboxyvinyltransferase [EC:2.5.1.7] +K00791 miaA, TRIT1; tRNA dimethylallyltransferase [EC:2.5.1.75] +K00793 ribE, RIB5; riboflavin synthase [EC:2.5.1.9] +K00794 ribH, RIB4; 6,7-dimethyl-8-ribityllumazine synthase [EC:2.5.1.78] +K00795 ispA; farnesyl diphosphate synthase [EC:2.5.1.1 2.5.1.10] +K00796 folP; dihydropteroate synthase [EC:2.5.1.15] +K00797 speE, SRM, SPE3; spermidine synthase [EC:2.5.1.16] +K00798 MMAB, pduO; cob(I)alamin adenosyltransferase [EC:2.5.1.17] +K00799 GST, gst; glutathione S-transferase [EC:2.5.1.18] +K00800 aroA; 3-phosphoshikimate 1-carboxyvinyltransferase [EC:2.5.1.19] +K00801 FDFT1; farnesyl-diphosphate farnesyltransferase [EC:2.5.1.21] +K00802 SMS; spermine synthase [EC:2.5.1.22] +K00803 AGPS, agpS; alkyldihydroxyacetonephosphate synthase [EC:2.5.1.26] +K00804 GGPS1; geranylgeranyl diphosphate synthase, type III [EC:2.5.1.1 2.5.1.10 2.5.1.29] +K00805 hepS; heptaprenyl diphosphate synthase component 1 [EC:2.5.1.30] +K00806 uppS; undecaprenyl diphosphate synthase [EC:2.5.1.31] +K00807 LTC4S; leukotriene-C4 synthase [EC:4.4.1.20] +K00808 hss; homospermidine synthase [EC:2.5.1.44] +K00809 DHPS, dys; deoxyhypusine synthase [EC:2.5.1.46] +K00810 UBIAD1; menadiol prenyltransferase [EC:2.5.1.-] +K00811 ASP5; aspartate aminotransferase, chloroplastic [EC:2.6.1.1] +K00812 aspB; aspartate aminotransferase [EC:2.6.1.1] +K00813 aspC; aspartate aminotransferase [EC:2.6.1.1] +K00814 GPT, ALT; alanine transaminase [EC:2.6.1.2] +K00815 TAT; tyrosine aminotransferase [EC:2.6.1.5] +K00816 CCBL; kynurenine---oxoglutarate transaminase / cysteine-S-conjugate beta-lyase / glutamine---phenylpyruvate transaminase [EC:2.6.1.7 4.4.1.13 2.6.1.64] +K00817 hisC; histidinol-phosphate aminotransferase [EC:2.6.1.9] +K00818 E2.6.1.11, argD; acetylornithine aminotransferase [EC:2.6.1.11] +K00819 rocD, OAT; ornithine--oxo-acid transaminase [EC:2.6.1.13] +K00820 glmS, GFPT; glutamine---fructose-6-phosphate transaminase (isomerizing) [EC:2.6.1.16] +K00821 argD; acetylornithine/N-succinyldiaminopimelate aminotransferase [EC:2.6.1.11 2.6.1.17] +K00822 E2.6.1.18; beta-alanine--pyruvate transaminase [EC:2.6.1.18] +K00823 puuE; 4-aminobutyrate aminotransferase [EC:2.6.1.19] +K00824 dat; D-alanine transaminase [EC:2.6.1.21] +K00825 AADAT, KAT2; kynurenine/2-aminoadipate aminotransferase [EC:2.6.1.7 2.6.1.39] +K00826 E2.6.1.42, ilvE; branched-chain amino acid aminotransferase [EC:2.6.1.42] +K00827 AGXT2; alanine-glyoxylate transaminase / (R)-3-amino-2-methylpropionate-pyruvate transaminase [EC:2.6.1.44 2.6.1.40] +K00830 AGXT; alanine-glyoxylate transaminase / serine-glyoxylate transaminase / serine-pyruvate transaminase [EC:2.6.1.44 2.6.1.45 2.6.1.51] +K00831 serC, PSAT1; phosphoserine aminotransferase [EC:2.6.1.52] +K00832 tyrB; aromatic-amino-acid transaminase [EC:2.6.1.57] +K00833 bioA; adenosylmethionine---8-amino-7-oxononanoate aminotransferase [EC:2.6.1.62] +K00835 avtA; valine--pyruvate aminotransferase [EC:2.6.1.66] +K00836 ectB, dat; diaminobutyrate-2-oxoglutarate transaminase [EC:2.6.1.76] +K00837 ISS1, VAS1; aromatic aminotransferase [EC:2.6.1.-] +K00838 ARO8; aromatic amino acid aminotransferase I / 2-aminoadipate transaminase [EC:2.6.1.57 2.6.1.39 2.6.1.27 2.6.1.5] +K00839 pucG; (S)-ureidoglycine---glyoxylate transaminase [EC:2.6.1.112] +K00840 astC; succinylornithine aminotransferase [EC:2.6.1.81] +K00841 patA; aminotransferase [EC:2.6.1.-] +K00843 SWNA; swainsonine biosynthesis aminotransferase SwnA [EC:2.6.1.-] +K00844 HK; hexokinase [EC:2.7.1.1] +K00845 glk; glucokinase [EC:2.7.1.2] +K00846 KHK; ketohexokinase [EC:2.7.1.3] +K00847 E2.7.1.4, scrK; fructokinase [EC:2.7.1.4] +K00848 rhaB; rhamnulokinase [EC:2.7.1.5] +K00849 galK; galactokinase [EC:2.7.1.6] +K00850 pfkA, PFK; 6-phosphofructokinase 1 [EC:2.7.1.11] +K00851 idnK, gntK; gluconokinase [EC:2.7.1.12] +K00852 rbsK, RBKS; ribokinase [EC:2.7.1.15] +K00853 araB; L-ribulokinase [EC:2.7.1.16] +K00854 xylB, XYLB; xylulokinase [EC:2.7.1.17] +K00855 PRK, prkB; phosphoribulokinase [EC:2.7.1.19] +K00856 ADK, adoK; adenosine kinase [EC:2.7.1.20] +K00857 tdk, TK; thymidine kinase [EC:2.7.1.21] +K00858 ppnK, NADK; NAD+ kinase [EC:2.7.1.23] +K00859 coaE; dephospho-CoA kinase [EC:2.7.1.24] +K00860 cysC; adenylylsulfate kinase [EC:2.7.1.25] +K00861 RFK, FMN1; riboflavin kinase [EC:2.7.1.26] +K00862 eryA; erythritol kinase (D-erythritol 1-phosphate-forming) [EC:2.7.1.215] +K00863 DAK, TKFC; triose/dihydroxyacetone kinase / FAD-AMP lyase (cyclizing) [EC:2.7.1.28 2.7.1.29 4.6.1.15] +K00864 glpK, GK; glycerol kinase [EC:2.7.1.30] +K00865 glxK, garK; glycerate 2-kinase [EC:2.7.1.165] +K00866 CKI1; choline kinase [EC:2.7.1.32] +K00867 coaA; type I pantothenate kinase [EC:2.7.1.33] +K00868 pdxK, pdxY; pyridoxine kinase [EC:2.7.1.35] +K00869 MVK, mvaK1; mevalonate kinase [EC:2.7.1.36] +K00871 PHKG; phosphorylase kinase gamma subunit [EC:2.7.11.19] +K00872 thrB; homoserine kinase [EC:2.7.1.39] +K00873 PK, pyk; pyruvate kinase [EC:2.7.1.40] +K00874 kdgK; 2-dehydro-3-deoxygluconokinase [EC:2.7.1.45] +K00875 rbtK, FGGY; D-ribulokinase [EC:2.7.1.47] +K00876 udk, UCK; uridine kinase [EC:2.7.1.48] +K00877 THI20; hydroxymethylpyrimidine/phosphomethylpyrimidine kinase / thiaminase [EC:2.7.1.49 2.7.4.7 3.5.99.2] +K00878 thiM; hydroxyethylthiazole kinase [EC:2.7.1.50] +K00879 fucK; L-fuculokinase [EC:2.7.1.51] +K00880 lyxK; L-xylulokinase [EC:2.7.1.53] +K00881 alsK; allose kinase [EC:2.7.1.55] +K00882 fruK; 1-phosphofructokinase [EC:2.7.1.56] +K00883 dgoK; 2-dehydro-3-deoxygalactonokinase [EC:2.7.1.58] +K00884 NAGK, nagK; N-acetylglucosamine kinase [EC:2.7.1.59] +K00885 nanK; N-acylmannosamine kinase [EC:2.7.1.60] +K00886 ppgK; polyphosphate glucokinase [EC:2.7.1.63] +K00887 dgkA; undecaprenol kinase [EC:2.7.1.66] +K00888 PI4KA; phosphatidylinositol 4-kinase A [EC:2.7.1.67] +K00889 PIP5K; 1-phosphatidylinositol-4-phosphate 5-kinase [EC:2.7.1.68] +K00891 aroK, aroL; shikimate kinase [EC:2.7.1.71] +K00892 gsk; inosine kinase [EC:2.7.1.73] +K00893 DCK; deoxycitidine/deoxyadenosine/deoxyguanosine kinase [EC:2.7.1.74 2.7.1.76 2.7.1.113] +K00894 ETNK, EKI; ethanolamine kinase [EC:2.7.1.82] +K00895 pfp, PFP; diphosphate-dependent phosphofructokinase [EC:2.7.1.90] +K00897 aphA; kanamycin kinase [EC:2.7.1.95] +K00898 PDK2_3_4; pyruvate dehydrogenase kinase 2/3/4 [EC:2.7.11.2] +K00899 mtnK; 5-methylthioribose kinase [EC:2.7.1.100] +K00900 E2.7.1.105, PFK; 6-phosphofructo-2-kinase [EC:2.7.1.105] +K00901 dgkA, DGK; diacylglycerol kinase (ATP) [EC:2.7.1.107] +K00902 DOLK; dolichol kinase [EC:2.7.1.108] +K00903 epsB, capB; protein-tyrosine kinase [EC:2.7.10.3] +K00904 DGUOK; deoxyguanosine kinase [EC:2.7.1.113] +K00905 BCKDK; [3-methyl-2-oxobutanoate dehydrogenase (acetyl-transferring)] kinase [EC:2.7.11.4] +K00906 aceK; isocitrate dehydrogenase kinase/phosphatase [EC:2.7.11.5 3.1.3.-] +K00907 MYLK; myosin-light-chain kinase [EC:2.7.11.18] +K00908 CAMKK1; calcium/calmodulin-dependent protein kinase kinase 1 [EC:2.7.11.17] +K00909 GRK1_7; rhodopsin kinase [EC:2.7.11.14] +K00910 ADRBK, GRK; beta-adrenergic-receptor kinase [EC:2.7.11.15] +K00911 ITPK; 1D-myo-inositol-triphosphate 3-kinase [EC:2.7.1.127] +K00912 lpxK; tetraacyldisaccharide 4'-kinase [EC:2.7.1.130] +K00913 ITPK1; inositol-1,3,4-trisphosphate 5/6-kinase / inositol-tetrakisphosphate 1-kinase [EC:2.7.1.159 2.7.1.134] +K00914 PIK3C3, VPS34; phosphatidylinositol 3-kinase [EC:2.7.1.137] +K00915 IPMK, IPK2; inositol-polyphosphate multikinase [EC:2.7.1.140 2.7.1.151] +K00916 CTK1; CTD kinase subunit alpha [EC:2.7.11.22 2.7.11.23] +K00917 lacC; tagatose 6-phosphate kinase [EC:2.7.1.144] +K00918 pfkC; ADP-dependent phosphofructokinase/glucokinase [EC:2.7.1.146 2.7.1.147] +K00919 ispE; 4-diphosphocytidyl-2-C-methyl-D-erythritol kinase [EC:2.7.1.148] +K00920 PIP4K2; 1-phosphatidylinositol-5-phosphate 4-kinase [EC:2.7.1.149] +K00921 PIKFYVE, FAB1; 1-phosphatidylinositol-3-phosphate 5-kinase [EC:2.7.1.150] +K00922 PIK3CA_B_D; phosphatidylinositol-4,5-bisphosphate 3-kinase catalytic subunit alpha/beta/delta [EC:2.7.1.153] +K00923 PIK3C2; phosphatidylinositol-4-phosphate 3-kinase [EC:2.7.1.154] +K00924 TMK; receptor protein kinase TMK [EC:2.7.11.1] +K00925 ackA; acetate kinase [EC:2.7.2.1] +K00926 arcC; carbamate kinase [EC:2.7.2.2] +K00927 PGK, pgk; phosphoglycerate kinase [EC:2.7.2.3] +K00928 lysC; aspartate kinase [EC:2.7.2.4] +K00929 buk; butyrate kinase [EC:2.7.2.7] +K00930 argB; acetylglutamate kinase [EC:2.7.2.8] +K00931 proB; glutamate 5-kinase [EC:2.7.2.11] +K00932 tdcD; propionate kinase [EC:2.7.2.15] +K00933 E2.7.3.2; creatine kinase [EC:2.7.3.2] +K00934 E2.7.3.3; arginine kinase [EC:2.7.3.3] +K00936 pdtaS; two-component system, sensor histidine kinase PdtaS [EC:2.7.13.3] +K00937 ppk1; polyphosphate kinase [EC:2.7.4.1] +K00938 E2.7.4.2, mvaK2; phosphomevalonate kinase [EC:2.7.4.2] +K00939 adk, AK; adenylate kinase [EC:2.7.4.3] +K00940 ndk, NME; nucleoside-diphosphate kinase [EC:2.7.4.6] +K00941 thiD; hydroxymethylpyrimidine/phosphomethylpyrimidine kinase [EC:2.7.1.49 2.7.4.7] +K00942 gmk, GUK1; guanylate kinase [EC:2.7.4.8] +K00943 tmk, DTYMK; dTMP kinase [EC:2.7.4.9] +K00944 AK3; nucleoside-triphosphate--adenylate kinase [EC:2.7.4.10] +K00945 cmk; CMP/dCMP kinase [EC:2.7.4.25] +K00946 thiL; thiamine-monophosphate kinase [EC:2.7.4.16] +K00947 mosAB; molybdenum storage protein +K00948 PRPS, prsA; ribose-phosphate pyrophosphokinase [EC:2.7.6.1] +K00949 thiN, TPK1, THI80; thiamine pyrophosphokinase [EC:2.7.6.2] +K00950 folK; 2-amino-4-hydroxy-6-hydroxymethyldihydropteridine diphosphokinase [EC:2.7.6.3] +K00951 relA; GTP pyrophosphokinase [EC:2.7.6.5] +K00952 nadM; nicotinamide-nucleotide adenylyltransferase [EC:2.7.7.1] +K00953 FLAD1; FAD synthetase [EC:2.7.7.2] +K00954 E2.7.7.3A, coaD, kdtB; pantetheine-phosphate adenylyltransferase [EC:2.7.7.3] +K00955 cysNC; bifunctional enzyme CysN/CysC [EC:2.7.7.4 2.7.1.25] +K00956 cysN; sulfate adenylyltransferase subunit 1 [EC:2.7.7.4] +K00957 cysD; sulfate adenylyltransferase subunit 2 [EC:2.7.7.4] +K00958 sat, met3; sulfate adenylyltransferase [EC:2.7.7.4] +K00960 rpo13; DNA-directed RNA polymerase subunit 13 [EC:2.7.7.6] +K00962 pnp, PNPT1; polyribonucleotide nucleotidyltransferase [EC:2.7.7.8] +K00963 UGP2, galU, galF; UTP--glucose-1-phosphate uridylyltransferase [EC:2.7.7.9] +K00965 galT, GALT; UDPglucose--hexose-1-phosphate uridylyltransferase [EC:2.7.7.12] +K00966 GMPP; mannose-1-phosphate guanylyltransferase [EC:2.7.7.13] +K00967 PCYT2; ethanolamine-phosphate cytidylyltransferase [EC:2.7.7.14] +K00968 PCYT1; choline-phosphate cytidylyltransferase [EC:2.7.7.15] +K00969 nadD; nicotinate-nucleotide adenylyltransferase [EC:2.7.7.18] +K00970 pcnB; poly(A) polymerase [EC:2.7.7.19] +K00971 manC, cpsB; mannose-1-phosphate guanylyltransferase [EC:2.7.7.13] +K00972 UAP1; UDP-N-acetylglucosamine/UDP-N-acetylgalactosamine diphosphorylase [EC:2.7.7.23 2.7.7.83] +K00973 rfbA, rmlA, rffH; glucose-1-phosphate thymidylyltransferase [EC:2.7.7.24] +K00974 cca; tRNA nucleotidyltransferase (CCA-adding enzyme) [EC:2.7.7.72 3.1.3.- 3.1.4.-] +K00975 glgC; glucose-1-phosphate adenylyltransferase [EC:2.7.7.27] +K00976 FPGT; fucose-1-phosphate guanylyltransferase [EC:2.7.7.30] +K00977 DNTT; DNA nucleotidylexotransferase [EC:2.7.7.31] +K00978 rfbF; glucose-1-phosphate cytidylyltransferase [EC:2.7.7.33] +K00979 kdsB; 3-deoxy-manno-octulosonate cytidylyltransferase (CMP-KDO synthetase) [EC:2.7.7.38] +K00980 tagD; glycerol-3-phosphate cytidylyltransferase [EC:2.7.7.39] +K00981 E2.7.7.41, CDS1, CDS2, cdsA; phosphatidate cytidylyltransferase [EC:2.7.7.41] +K00982 glnE; [glutamine synthetase] adenylyltransferase / [glutamine synthetase]-adenylyl-L-tyrosine phosphorylase [EC:2.7.7.42 2.7.7.89] +K00983 neuA, nnaC; N-acylneuraminate cytidylyltransferase [EC:2.7.7.43] +K00984 aadA; streptomycin 3"-adenylyltransferase [EC:2.7.7.47] +K00985 3D; Enterovirus RNA-directed RNA polymerase [EC:2.7.7.48] +K00986 ltrA; RNA-directed DNA polymerase [EC:2.7.7.49] +K00987 CEG1; mRNA guanylyltransferase [EC:2.7.7.50] +K00988 APA1_2; sulfate adenylyltransferase (ADP) / ATP adenylyltransferase [EC:2.7.7.5 2.7.7.53] +K00989 rph; ribonuclease PH [EC:2.7.7.56] +K00990 glnD; [protein-PII] uridylyltransferase [EC:2.7.7.59] +K00991 ispD; 2-C-methyl-D-erythritol 4-phosphate cytidylyltransferase [EC:2.7.7.60] +K00992 murU; N-acetyl-alpha-D-muramate 1-phosphate uridylyltransferase [EC:2.7.7.99] +K00993 EPT1; ethanolaminephosphotransferase [EC:2.7.8.1] +K00994 CHPT1, CPT1; diacylglycerol cholinephosphotransferase [EC:2.7.8.2] +K00995 PGS1, pgsA; CDP-diacylglycerol---glycerol-3-phosphate 3-phosphatidyltransferase [EC:2.7.8.5] +K00996 rfbP; undecaprenyl-phosphate galactose phosphotransferase [EC:2.7.8.6] +K00997 acpS; holo-[acyl-carrier protein] synthase [EC:2.7.8.7] +K00998 pssA; CDP-diacylglycerol---serine O-phosphatidyltransferase [EC:2.7.8.8] +K00999 CDIPT; CDP-diacylglycerol--inositol 3-phosphatidyltransferase [EC:2.7.8.11] +K01000 mraY; phospho-N-acetylmuramoyl-pentapeptide-transferase [EC:2.7.8.13] +K01001 ALG7; UDP-N-acetylglucosamine--dolichyl-phosphate N-acetylglucosaminephosphotransferase [EC:2.7.8.15] +K01002 mdoB; phosphoglycerol transferase [EC:2.7.8.20] +K01003 bcpA; oxaloacetate decarboxylase [EC:4.1.1.112] +K01004 pcs; phosphatidylcholine synthase [EC:2.7.8.24] +K01005 tagT_U_V; polyisoprenyl-teichoic acid--peptidoglycan teichoic acid transferase [EC:2.7.8.-] +K01006 ppdK; pyruvate, orthophosphate dikinase [EC:2.7.9.1] +K01007 pps, ppsA; pyruvate, water dikinase [EC:2.7.9.2] +K01008 selD, SEPHS; selenide, water dikinase [EC:2.7.9.3] +K01009 E2.7.7.103; L-glutamine-phosphate cytidylyltransferase [EC:2.7.7.103] +K01011 TST, MPST, sseA; thiosulfate/3-mercaptopyruvate sulfurtransferase [EC:2.8.1.1 2.8.1.2] +K01012 bioB; biotin synthase [EC:2.8.1.6] +K01013 TSTD1; thiosulfate:glutathione sulfurtransferase [EC:2.8.1.-] +K01014 SULT1A; aryl sulfotransferase [EC:2.8.2.1] +K01015 SULT2B; alcohol sulfotransferase [EC:2.8.2.2] +K01016 SULT1E1, STE; estrone sulfotransferase [EC:2.8.2.4] +K01017 CHST11; chondroitin 4-sulfotransferase 11 [EC:2.8.2.5] +K01019 GAL3ST1; galactosylceramide sulfotransferase [EC:2.8.2.11] +K01020 CHST3; chondroitin 6-sulfotransferase 3 [EC:2.8.2.17] +K01021 TPST; protein-tyrosine sulfotransferase [EC:2.8.2.20] +K01022 CHST1; keratan sulfate 6-sulfotransferase 1 [EC:2.8.2.21] +K01023 assT; arylsulfate sulfotransferase [EC:2.8.2.22] +K01024 HS3ST1; [heparan sulfate]-glucosamine 3-sulfotransferase 1 [EC:2.8.2.23] +K01025 SULT1; sulfotransferase [EC:2.8.2.-] +K01026 pct; propionate CoA-transferase [EC:2.8.3.1] +K01027 OXCT; 3-oxoacid CoA-transferase [EC:2.8.3.5] +K01028 scoA; 3-oxoacid CoA-transferase subunit A [EC:2.8.3.5] +K01029 scoB; 3-oxoacid CoA-transferase subunit B [EC:2.8.3.5] +K01031 pcaI; 3-oxoadipate CoA-transferase, alpha subunit [EC:2.8.3.6] +K01032 pcaJ; 3-oxoadipate CoA-transferase, beta subunit [EC:2.8.3.6] +K01034 atoD; acetate CoA/acetoacetate CoA-transferase alpha subunit [EC:2.8.3.8 2.8.3.9] +K01035 atoA; acetate CoA/acetoacetate CoA-transferase beta subunit [EC:2.8.3.8 2.8.3.9] +K01039 gctA; glutaconate CoA-transferase, subunit A [EC:2.8.3.12] +K01040 gctB; glutaconate CoA-transferase, subunit B [EC:2.8.3.12] +K01041 gcdG, caiB; glutaryl-CoA transferase [EC:2.8.3.-] +K01042 selA; L-seryl-tRNA(Ser) seleniumtransferase [EC:2.9.1.1] +K01043 SWNK; reducing polyketide synthase SwnK [EC:2.3.1.-] +K01044 CES1; carboxylesterase 1 [EC:3.1.1.1] +K01045 PON; arylesterase / paraoxonase [EC:3.1.1.2 3.1.8.1] +K01046 lip, TGL2; triacylglycerol lipase [EC:3.1.1.3] +K01047 PLA2G, SPLA2; secretory phospholipase A2 [EC:3.1.1.4] +K01048 pldB; lysophospholipase [EC:3.1.1.5] +K01049 ACHE; acetylcholinesterase [EC:3.1.1.7] +K01050 BCHE; cholinesterase [EC:3.1.1.8] +K01051 E3.1.1.11; pectinesterase [EC:3.1.1.11] +K01052 LIPA; lysosomal acid lipase/cholesteryl ester hydrolase [EC:3.1.1.13] +K01053 gnl, RGN; gluconolactonase [EC:3.1.1.17] +K01054 MGLL; acylglycerol lipase [EC:3.1.1.23] +K01055 pcaD; 3-oxoadipate enol-lactonase [EC:3.1.1.24] +K01056 PTH1, PTRH1, pth, spoVC; peptidyl-tRNA hydrolase, PTH1 family [EC:3.1.1.29] +K01057 PGLS, pgl, devB; 6-phosphogluconolactonase [EC:3.1.1.31] +K01058 pldA; phospholipase A1/A2 [EC:3.1.1.32 3.1.1.4] +K01059 LPL; lipoprotein lipase [EC:3.1.1.34] +K01060 cah; cephalosporin-C deacetylase [EC:3.1.1.41] +K01061 E3.1.1.45; carboxymethylenebutenolidase [EC:3.1.1.45] +K01062 PLA2G7, PAFAH; platelet-activating factor acetylhydrolase [EC:3.1.1.47] +K01063 JHE; juvenile-hormone esterase [EC:3.1.1.59] +K01064 WNT9; wingless-type MMTV integration site family, member 9 +K01065 AOAH; acyloxyacyl hydrolase [EC:3.1.1.77] +K01066 aes; acetyl esterase [EC:3.1.1.-] +K01067 E3.1.2.1, ACH1; acetyl-CoA hydrolase [EC:3.1.2.1] +K01068 ACOT1_2_4; acyl-coenzyme A thioesterase 1/2/4 [EC:3.1.2.2] +K01069 gloB, gloC, HAGH; hydroxyacylglutathione hydrolase [EC:3.1.2.6] +K01070 frmB, ESD, fghA; S-formylglutathione hydrolase [EC:3.1.2.12] +K01071 MCH; medium-chain acyl-[acyl-carrier-protein] hydrolase [EC:3.1.2.21] +K01073 E3.1.2.20; acyl-CoA hydrolase [EC:3.1.2.20] +K01074 PPT; palmitoyl-protein thioesterase [EC:3.1.2.22] +K01075 E3.1.2.23; 4-hydroxybenzoyl-CoA thioesterase [EC:3.1.2.23] +K01076 ABHD17; abhydrolase domain-containing protein 17 [EC:3.1.2.22] +K01077 E3.1.3.1, phoA, phoB; alkaline phosphatase [EC:3.1.3.1] +K01078 PHO; acid phosphatase [EC:3.1.3.2] +K01079 serB, PSPH; phosphoserine phosphatase [EC:3.1.3.3] +K01080 PLPP1_2_3; phosphatidate phosphatase [EC:3.1.3.4] +K01081 E3.1.3.5; 5'-nucleotidase [EC:3.1.3.5] +K01082 cysQ, MET22, BPNT1; 3'(2'), 5'-bisphosphate nucleotidase [EC:3.1.3.7] +K01083 E3.1.3.8; 3-phytase [EC:3.1.3.8] +K01084 G6PC; glucose-6-phosphatase [EC:3.1.3.9] +K01085 agp; glucose-1-phosphatase [EC:3.1.3.10] +K01086 fbp-SEBP; fructose-1,6-bisphosphatase I / sedoheptulose-1,7-bisphosphatase [EC:3.1.3.11 3.1.3.37] +K01087 otsB; trehalose 6-phosphate phosphatase [EC:3.1.3.12] +K01089 hisB; imidazoleglycerol-phosphate dehydratase / histidinol-phosphatase [EC:4.2.1.19 3.1.3.15] +K01090 E3.1.3.16; protein phosphatase [EC:3.1.3.16] +K01091 gph; phosphoglycolate phosphatase [EC:3.1.3.18] +K01092 E3.1.3.25, IMPA, suhB; myo-inositol-1(or 4)-monophosphatase [EC:3.1.3.25] +K01093 appA; 4-phytase / acid phosphatase [EC:3.1.3.26 3.1.3.2] +K01094 GEP4; phosphatidylglycerophosphatase GEP4 [EC:3.1.3.27] +K01095 pgpA; phosphatidylglycerophosphatase A [EC:3.1.3.27] +K01096 pgpB; phosphatidylglycerophosphatase B [EC:3.1.3.27 3.6.1.75 3.1.3.4 3.6.1.27] +K01097 NANP; N-acylneuraminate-9-phosphatase [EC:3.1.3.29] +K01098 CET1; polynucleotide 5'-triphosphatase [EC:3.6.1.74] +K01099 INPP5B_F; inositol polyphosphate 5-phosphatase INPP5B/F [EC:3.1.3.36] +K01100 E3.1.3.37; sedoheptulose-bisphosphatase [EC:3.1.3.37] +K01101 E3.1.3.41; 4-nitrophenyl phosphatase [EC:3.1.3.41] +K01102 PDP; pyruvate dehydrogenase phosphatase [EC:3.1.3.43] +K01103 PFKFB3; 6-phosphofructo-2-kinase / fructose-2,6-biphosphatase 3 [EC:2.7.1.105 3.1.3.46] +K01104 E3.1.3.48; protein-tyrosine phosphatase [EC:3.1.3.48] +K01106 INPP5A; inositol polyphosphate 5-phosphatase INPP5A [EC:3.1.3.56] +K01107 INPP1; inositol polyphosphate 1-phosphatase [EC:3.1.3.57] +K01108 MTM1; myotubularin [EC:3.1.3.64 3.1.3.95] +K01109 INPP4; inositol polyphosphate-4-phosphatase [EC:3.1.3.66] +K01110 PTEN; phosphatidylinositol-3,4,5-trisphosphate 3-phosphatase and dual-specificity protein phosphatase PTEN [EC:3.1.3.16 3.1.3.48 3.1.3.67] +K01111 E3.1.3.68; 2-deoxyglucose-6-phosphatase [EC:3.1.3.68] +K01112 PHPT1; phosphohistidine phosphatase [EC:3.9.1.3] +K01113 phoD; alkaline phosphatase D [EC:3.1.3.1] +K01114 plc; phospholipase C [EC:3.1.4.3] +K01115 PLD1_2; phospholipase D1/2 [EC:3.1.4.4] +K01116 PLCG1; phosphatidylinositol phospholipase C, gamma-1 [EC:3.1.4.11] +K01117 sph; sphingomyelin phosphodiesterase [EC:3.1.4.12] +K01118 acpD, azoR; FMN-dependent NADH-azoreductase [EC:1.7.1.17] +K01119 cpdB; 2',3'-cyclic-nucleotide 2'-phosphodiesterase / 3'-nucleotidase [EC:3.1.4.16 3.1.3.6] +K01120 cpdP; 3',5'-cyclic-nucleotide phosphodiesterase [EC:3.1.4.17] +K01121 CNP; 2',3'-cyclic-nucleotide 3'-phosphodiesterase [EC:3.1.4.37] +K01122 ENPP2; ectonucleotide pyrophosphatase/phosphodiesterase family member 2 [EC:3.1.4.39] +K01123 SMaseD; sphingomyelin phosphodiesterase D [EC:3.1.4.41] +K01124 GDPD2; glycerophosphoinositol inositolphosphodiesterase [EC:3.1.4.43] +K01125 NAGPA; N-acetylglucosamine-1-phosphodiester alpha-N-acetylglucosaminidase [EC:3.1.4.45] +K01126 E3.1.4.46, glpQ, ugpQ; glycerophosphoryl diester phosphodiesterase [EC:3.1.4.46] +K01127 GPLD1; glycosylphosphatidylinositol phospholipase D [EC:3.1.4.50] +K01128 SMPDL3; sphingomyelin phosphodiesterase acid-like 3 [EC:3.1.4.-] +K01129 dgt; dGTPase [EC:3.1.5.1] +K01130 atsA, aslA; arylsulfatase [EC:3.1.6.1] +K01131 STS; steryl-sulfatase [EC:3.1.6.2] +K01132 GALNS; N-acetylgalactosamine-6-sulfatase [EC:3.1.6.4] +K01133 betC; choline-sulfatase [EC:3.1.6.6] +K01134 ARSA; arylsulfatase A [EC:3.1.6.8] +K01135 ARSB; arylsulfatase B [EC:3.1.6.12] +K01136 IDS; iduronate 2-sulfatase [EC:3.1.6.13] +K01137 GNS; N-acetylglucosamine-6-sulfatase [EC:3.1.6.14] +K01138 K01138; uncharacterized sulfatase [EC:3.1.6.-] +K01139 spoT; GTP diphosphokinase / guanosine-3',5'-bis(diphosphate) 3'-diphosphatase [EC:2.7.6.5 3.1.7.2] +K01141 sbcB, exoI; exodeoxyribonuclease I [EC:3.1.11.1] +K01142 E3.1.11.2, xthA; exodeoxyribonuclease III [EC:3.1.11.2] +K01143 exo; Enterobacteriaceae phage exonuclease [EC:3.1.11.3] +K01146 xni; protein Xni +K01147 rnb; exoribonuclease II [EC:3.1.13.1] +K01148 PARN, PNLDC1; poly(A)-specific ribonuclease [EC:3.1.13.4] +K01149 TRIR; telomerase RNA component interacting RNase [EC:3.1.13.-] +K01150 endA; deoxyribonuclease I [EC:3.1.21.1] +K01151 nfo; deoxyribonuclease IV [EC:3.1.21.2] +K01152 isftu1; isftu1 transposase +K01153 hsdR; type I restriction enzyme, R subunit [EC:3.1.21.3] +K01154 hsdS; type I restriction enzyme, S subunit [EC:3.1.21.3] +K01155 E3.1.21.4; type II restriction enzyme [EC:3.1.21.4] +K01156 res; type III restriction enzyme [EC:3.1.21.5] +K01157 rpnA; recombination-promoting nuclease RpnA [EC:3.1.21.-] +K01158 DNASE2; deoxyribonuclease II [EC:3.1.22.1] +K01159 ruvC; crossover junction endodeoxyribonuclease RuvC [EC:3.1.21.10] +K01160 rusA; crossover junction endodeoxyribonuclease RusA [EC:3.1.21.10] +K01161 E3.1.25.1; deoxyribonuclease (pyrimidine dimer) [EC:3.1.25.1] +K01163 K01163; uncharacterized protein +K01164 POP1; ribonuclease P/MRP protein subunit POP1 [EC:3.1.26.5] +K01165 RNASEL; ribonuclease L +K01166 RNASET2; ribonuclease T2 [EC:4.6.1.19] +K01167 rnaSA; ribonuclease T1 [EC:4.6.1.24] +K01168 RNASE1_2; pancreatic ribonuclease [EC:4.6.1.18] +K01169 rna; ribonuclease I (enterobacter ribonuclease) [EC:4.6.1.21] +K01170 endA; tRNA-intron endonuclease, archaea type [EC:4.6.1.16] +K01171 sar; rRNA endonuclease [EC:4.6.1.23] +K01172 RNASE6_7_8; ribonuclease 6/7/8 [EC:3.1.27.-] +K01173 ENDOG; endonuclease G, mitochondrial +K01174 nuc; micrococcal nuclease [EC:3.1.31.1] +K01175 ybfF; esterase [EC:3.1.-.-] +K01176 AMY, amyA, malS; alpha-amylase [EC:3.2.1.1] +K01177 E3.2.1.2; beta-amylase [EC:3.2.1.2] +K01178 SGA1; glucoamylase [EC:3.2.1.3] +K01179 E3.2.1.4; endoglucanase [EC:3.2.1.4] +K01180 E3.2.1.6; endo-1,3(4)-beta-glucanase [EC:3.2.1.6] +K01181 E3.2.1.8, xynA; endo-1,4-beta-xylanase [EC:3.2.1.8] +K01182 IMA, malL; oligo-1,6-glucosidase [EC:3.2.1.10] +K01183 E3.2.1.14; chitinase [EC:3.2.1.14] +K01184 E3.2.1.15; polygalacturonase [EC:3.2.1.15] +K01185 E3.2.1.17; lysozyme [EC:3.2.1.17] +K01186 NEU1; sialidase-1 [EC:3.2.1.18] +K01187 malZ; alpha-glucosidase [EC:3.2.1.20] +K01188 E3.2.1.21; beta-glucosidase [EC:3.2.1.21] +K01189 GLA; alpha-galactosidase [EC:3.2.1.22] +K01190 lacZ; beta-galactosidase [EC:3.2.1.23] +K01191 MAN2C1; alpha-mannosidase [EC:3.2.1.24] +K01192 E3.2.1.25, MANBA, manB; beta-mannosidase [EC:3.2.1.25] +K01193 INV, sacA; beta-fructofuranosidase [EC:3.2.1.26] +K01194 TREH, treA, treF; alpha,alpha-trehalase [EC:3.2.1.28] +K01195 uidA, GUSB; beta-glucuronidase [EC:3.2.1.31] +K01196 AGL; glycogen debranching enzyme [EC:2.4.1.25 3.2.1.33] +K01197 hya; hyaluronoglucosaminidase [EC:3.2.1.35] +K01198 xynB; xylan 1,4-beta-xylosidase [EC:3.2.1.37] +K01199 EGLC; glucan endo-1,3-beta-D-glucosidase [EC:3.2.1.39] +K01200 pulA; pullulanase [EC:3.2.1.41] +K01201 GBA, srfJ; glucosylceramidase [EC:3.2.1.45] +K01202 GALC; galactosylceramidase [EC:3.2.1.46] +K01203 SI; sucrase-isomaltase [EC:3.2.1.48 3.2.1.10] +K01204 NAGA; alpha-N-acetylgalactosaminidase [EC:3.2.1.49] +K01205 NAGLU; alpha-N-acetylglucosaminidase [EC:3.2.1.50] +K01206 FUCA; alpha-L-fucosidase [EC:3.2.1.51] +K01207 nagZ; beta-N-acetylhexosaminidase [EC:3.2.1.52] +K01208 cd, ma, nplT; cyclomaltodextrinase / maltogenic alpha-amylase / neopullulanase [EC:3.2.1.54 3.2.1.133 3.2.1.135] +K01209 abfA; alpha-L-arabinofuranosidase [EC:3.2.1.55] +K01210 E3.2.1.58; glucan 1,3-beta-glucosidase [EC:3.2.1.58] +K01212 sacC, levB; levanase [EC:3.2.1.65] +K01213 E3.2.1.67; galacturan 1,4-alpha-galacturonidase [EC:3.2.1.67] +K01214 ISA, treX; isoamylase [EC:3.2.1.68] +K01215 dexB; glucan 1,6-alpha-glucosidase [EC:3.2.1.70] +K01216 bglS; licheninase [EC:3.2.1.73] +K01217 IDUA; L-iduronidase [EC:3.2.1.76] +K01218 gmuG; mannan endo-1,4-beta-mannosidase [EC:3.2.1.78] +K01219 E3.2.1.81; beta-agarase [EC:3.2.1.81] +K01220 E3.2.1.85, lacG; 6-phospho-beta-galactosidase [EC:3.2.1.85] +K01222 E3.2.1.86A, celF; 6-phospho-beta-glucosidase [EC:3.2.1.86] +K01223 E3.2.1.86B, bglA; 6-phospho-beta-glucosidase [EC:3.2.1.86] +K01224 E3.2.1.89; arabinogalactan endo-1,4-beta-galactosidase [EC:3.2.1.89] +K01225 CBH1; cellulose 1,4-beta-cellobiosidase [EC:3.2.1.91] +K01226 treC; trehalose-6-phosphate hydrolase [EC:3.2.1.93] +K01227 ENGASE; mannosyl-glycoprotein endo-beta-N-acetylglucosaminidase [EC:3.2.1.96] +K01228 MOGS; mannosyl-oligosaccharide glucosidase [EC:3.2.1.106] +K01229 LCT; lactase-phlorizin hydrolase [EC:3.2.1.108 3.2.1.62] +K01230 MAN1A_C, MNS1_2; mannosyl-oligosaccharide alpha-1,2-mannosidase [EC:3.2.1.113] +K01231 MAN2; alpha-mannosidase II [EC:3.2.1.114] +K01232 glvA; maltose-6'-phosphate glucosidase [EC:3.2.1.122] +K01233 csn; chitosanase [EC:3.2.1.132] +K01235 aguA; alpha-glucuronidase [EC:3.2.1.139] +K01236 treZ, glgZ; maltooligosyltrehalose trehalohydrolase [EC:3.2.1.141] +K01237 E3.2.1.147; myrosinase [EC:3.2.1.147] +K01238 SUN; SUN family beta-glucosidase [EC:3.2.1.-] +K01239 E3.2.2.1; purine nucleosidase [EC:3.2.2.1] +K01240 URH1; uridine nucleosidase [EC:3.2.2.3] +K01241 amn; AMP nucleosidase [EC:3.2.2.4] +K01242 CD38; ADP-ribosyl cyclase 1 [EC:3.2.2.6 2.4.99.20] +K01243 mtnN, mtn, pfs; adenosylhomocysteine nucleosidase [EC:3.2.2.9] +K01244 MTN; 5'-methylthioadenosine nucleosidase [EC:3.2.2.16] +K01245 ADPRH; ADP-ribosylarginine hydrolase [EC:3.2.2.19] +K01246 tag; DNA-3-methyladenine glycosylase I [EC:3.2.2.20] +K01247 alkA; DNA-3-methyladenine glycosylase II [EC:3.2.2.21] +K01250 rihA; pyrimidine-specific ribonucleoside hydrolase [EC:3.2.2.-] +K01251 AHCY, ahcY; adenosylhomocysteinase [EC:3.13.2.1] +K01252 entB, dhbB, vibB, mxcF; bifunctional isochorismate lyase / aryl carrier protein [EC:3.3.2.1 6.3.2.14] +K01253 EPHX1; microsomal epoxide hydrolase [EC:3.3.2.9] +K01254 LTA4H; leukotriene-A4 hydrolase [EC:3.3.2.6] +K01255 CARP, pepA; leucyl aminopeptidase [EC:3.4.11.1] +K01256 pepN; aminopeptidase N [EC:3.4.11.2] +K01257 LNPEP; cystinyl aminopeptidase [EC:3.4.11.3] +K01258 pepT; tripeptide aminopeptidase [EC:3.4.11.4] +K01259 pip; proline iminopeptidase [EC:3.4.11.5] +K01260 RNPEP; aminopeptidase B [EC:3.4.11.6] +K01261 pepA; glutamyl aminopeptidase [EC:3.4.11.7] +K01262 pepP; Xaa-Pro aminopeptidase [EC:3.4.11.9] +K01264 APE3; aminopeptidase Y [EC:3.4.11.15] +K01265 map; methionyl aminopeptidase [EC:3.4.11.18] +K01266 dmpA, dap; D-aminopeptidase [EC:3.4.11.19] +K01267 DNPEP; aspartyl aminopeptidase [EC:3.4.11.21] +K01268 LAP4; aminopeptidase I [EC:3.4.11.22] +K01269 yhfE; aminopeptidase [EC:3.4.11.-] +K01270 pepD; dipeptidase D [EC:3.4.13.-] +K01271 pepQ; Xaa-Pro dipeptidase [EC:3.4.13.9] +K01273 DPEP; membrane dipeptidase [EC:3.4.13.19] +K01274 pepV; beta-Ala-Xaa dipeptidase [EC:3.4.13.-] +K01275 CTSC; cathepsin C [EC:3.4.14.1] +K01276 DPP7; dipeptidyl-peptidase II [EC:3.4.14.2] +K01277 DPP3; dipeptidyl-peptidase III [EC:3.4.14.4] +K01278 DPP4, CD26; dipeptidyl-peptidase 4 [EC:3.4.14.5] +K01279 TPP1, CLN2; tripeptidyl-peptidase I [EC:3.4.14.9] +K01280 TPP2; tripeptidyl-peptidase II [EC:3.4.14.10] +K01281 pepX; X-Pro dipeptidyl-peptidase [EC:3.4.14.11] +K01282 DAP2; dipeptidyl aminopeptidase B [EC:3.4.14.-] +K01283 ACE, CD143; peptidyl-dipeptidase A [EC:3.4.15.1] +K01284 dcp; peptidyl-dipeptidase Dcp [EC:3.4.15.5] +K01285 PRCP; lysosomal Pro-X carboxypeptidase [EC:3.4.16.2] +K01286 E3.4.16.4; D-alanyl-D-alanine carboxypeptidase [EC:3.4.16.4] +K01288 KEX1; carboxypeptidase D [EC:3.4.16.6] +K01290 CPAN; carboxypeptidase A, invertebrate [EC:3.4.17.-] +K01291 CPB1; carboxypeptidase B [EC:3.4.17.2] +K01292 CPN1; carboxypeptidase N catalytic subunit [EC:3.4.17.3] +K01293 E3.4.17.4; Gly-Xaa carboxypeptidase [EC:3.4.17.4] +K01294 CPE; carboxypeptidase E [EC:3.4.17.10] +K01295 cpg; glutamate carboxypeptidase [EC:3.4.17.11] +K01296 CPM; carboxypeptidase M [EC:3.4.17.12] +K01297 ldcA; muramoyltetrapeptide carboxypeptidase [EC:3.4.17.13] +K01298 CPA2; carboxypeptidase A2 [EC:3.4.17.15] +K01299 E3.4.17.19; carboxypeptidase Taq [EC:3.4.17.19] +K01300 CPB2; carboxypeptidase B2 [EC:3.4.17.20] +K01301 NAALAD; N-acetylated-alpha-linked acidic dipeptidase [EC:3.4.17.21] +K01302 CPQ; carboxypeptidase Q [EC:3.4.17.-] +K01303 APEH; acylaminoacyl-peptidase [EC:3.4.19.1] +K01304 pcp; pyroglutamyl-peptidase [EC:3.4.19.3] +K01305 iadA; beta-aspartyl-dipeptidase (metallo-type) [EC:3.4.19.-] +K01306 TRHDE; pyroglutamyl-peptidase II [EC:3.4.19.6] +K01307 GGH; gamma-glutamyl hydrolase [EC:3.4.19.9] +K01308 yqgT; g-D-glutamyl-meso-diaminopimelate peptidase [EC:3.4.19.11] +K01309 MINDY1_2; ubiquitin carboxyl-terminal hydrolase MINDY-1/2 [EC:3.4.19.12] +K01310 CTRB; chymotrypsin [EC:3.4.21.1] +K01311 CTRC; chymotrypsin C [EC:3.4.21.2] +K01312 PRSS1_2_3; trypsin [EC:3.4.21.4] +K01313 F2; coagulation factor II (thrombin) [EC:3.4.21.5] +K01314 F10; coagulation factor X [EC:3.4.21.6] +K01315 PLG; plasminogen [EC:3.4.21.7] +K01316 TMPRSS15, PRSS7; enterokinase [EC:3.4.21.9] +K01317 ACR; acrosin [EC:3.4.21.10] +K01318 sspA; glutamyl endopeptidase [EC:3.4.21.19] +K01319 CTSG; cathepsin G [EC:3.4.21.20] +K01320 F7; coagulation factor VII [EC:3.4.21.21] +K01321 F9; coagulation factor IX (Christmas factor) [EC:3.4.21.22] +K01322 PREP; prolyl oligopeptidase [EC:3.4.21.26] +K01323 F11; coagulation factor XI [EC:3.4.21.27] +K01324 KLKB1; plasma kallikrein [EC:3.4.21.34] +K01325 KLK1_2; tissue kallikrein [EC:3.4.21.35] +K01326 CELA1; pancreatic elastase I [EC:3.4.21.36] +K01327 ELANE; leukocyte elastase [EC:3.4.21.37] +K01328 F12; coagulation factor XII (Hageman factor) [EC:3.4.21.38] +K01329 CMA1; chymase [EC:3.4.21.39] +K01330 C1R; complement component 1, r subcomponent [EC:3.4.21.41] +K01331 C1S; complement component 1, s subcomponent [EC:3.4.21.42] +K01332 C2; complement component 2 [EC:3.4.21.43] +K01333 CFI; complement factor I [EC:3.4.21.45] +K01334 CFD; complement factor D [EC:3.4.21.46] +K01335 CFB; complement factor B [EC:3.4.21.47] +K01336 PRB1; cerevisin [EC:3.4.21.48 3.4.21.-] +K01337 E3.4.21.50; lysyl endopeptidase [EC:3.4.21.50] +K01338 lon; ATP-dependent Lon protease [EC:3.4.21.53] +K01339 KLK16; g-renin [EC:3.4.21.54] +K01340 E3.4.21.59; tryptase [EC:3.4.21.59] +K01341 KEX2; kexin [EC:3.4.21.61] +K01342 aprE; subtilisin [EC:3.4.21.62] +K01343 PLAT; tissue plasminogen activator [EC:3.4.21.68] +K01344 PROC; protein C (activated) [EC:3.4.21.69] +K01345 CELA3; pancreatic endopeptidase E [EC:3.4.21.70] +K01346 CELA2; pancreatic elastase II [EC:3.4.21.71] +K01347 iga; IgA-specific serine endopeptidase [EC:3.4.21.72] +K01348 PLAU; urokinase plasminogen activator [EC:3.4.21.73] +K01349 FURIN, PCSK3; furin [EC:3.4.21.75] +K01350 PRTN3; myeloblastin [EC:3.4.21.76] +K01351 KLK3, PSA; semenogelase [EC:3.4.21.77] +K01352 GZMA; granzyme A [EC:3.4.21.78] +K01353 GZMB; granzyme B [EC:3.4.21.79] +K01354 ptrB; oligopeptidase B [EC:3.4.21.83] +K01355 ompT; omptin [EC:3.4.23.49] +K01356 lexA; repressor LexA [EC:3.4.21.88] +K01357 WNT10; wingless-type MMTV integration site family, member 10 +K01358 clpP, CLPP; ATP-dependent Clp protease, protease subunit [EC:3.4.21.92] +K01359 PCSK1; proprotein convertase subtilisin/kexin type 1 [EC:3.4.21.93] +K01360 PCSK2; proprotein convertase subtilisin/kexin type 2 [EC:3.4.21.94] +K01361 E3.4.21.96; lactocepin [EC:3.4.21.96] +K01362 OVCH; ovochymase [EC:3.4.21.-] +K01363 CTSB; cathepsin B [EC:3.4.22.1] +K01364 speB; streptopain [EC:3.4.22.10] +K01365 CTSL; cathepsin L [EC:3.4.22.15] +K01366 CTSH; cathepsin H [EC:3.4.22.16] +K01367 CAPN1; calpain-1 [EC:3.4.22.52] +K01368 CTSS; cathepsin S [EC:3.4.22.27] +K01369 LGMN; legumain [EC:3.4.22.34] +K01370 CASP1; caspase 1 [EC:3.4.22.36] +K01371 CTSK; cathepsin K [EC:3.4.22.38] +K01372 BLMH, pepC; bleomycin hydrolase [EC:3.4.22.40] +K01373 CTSF; cathepsin F [EC:3.4.22.41] +K01374 CTSO; cathepsin O [EC:3.4.22.42] +K01375 CTSL2, CTSV; cathepsin V [EC:3.4.22.43] +K01376 UFSP2; Ufm1-specific protease 2 [EC:3.4.22.-] +K01377 PGC; gastricsin [EC:3.4.23.3] +K01378 CYM; chymosin [EC:3.4.23.4] +K01379 CTSD; cathepsin D [EC:3.4.23.5] +K01380 REN; renin [EC:3.4.23.15] +K01381 PEP4; saccharopepsin [EC:3.4.23.25] +K01382 CTSE; cathepsin E [EC:3.4.23.34] +K01383 BAR1; barrierpepsin [EC:3.4.23.35] +K01384 WNT11; wingless-type MMTV integration site family, member 11 +K01385 E3.4.23.42; thermopsin [EC:3.4.23.42] +K01386 E3.4.23.23; mucorpepsin [EC:3.4.23.23] +K01387 colA; microbial collagenase [EC:3.4.24.3] +K01388 MMP1; matrix metalloproteinase-1 (interstitial collagenase) [EC:3.4.24.7] +K01389 MME, CD10; neprilysin [EC:3.4.24.11] +K01390 iga; IgA-specific metalloendopeptidase [EC:3.4.24.13] +K01392 THOP1; thimet oligopeptidase [EC:3.4.24.15] +K01393 NLN; neurolysin [EC:3.4.24.16] +K01394 MMP3; matrix metalloproteinase-3 (stromelysin 1, progelatinase) [EC:3.4.24.17] +K01395 MEP1A; meprin A [EC:3.4.24.18] +K01396 MMP10; matrix metalloproteinase-10 (stromelysin 2) [EC:3.4.24.22] +K01397 MMP7; matrix metalloproteinase-7 (matrilysin, uterine) [EC:3.4.24.23] +K01398 MMP2; matrix metalloproteinase-2 (gelatinase A) [EC:3.4.24.24] +K01399 lasB; pseudolysin [EC:3.4.24.26] +K01400 nprE; bacillolysin [EC:3.4.24.28] +K01401 aur; aureolysin [EC:3.4.24.29] +K01402 MMP8; matrix metalloproteinase-8 (neutrophil collagenase) [EC:3.4.24.34] +K01403 MMP9; matrix metalloproteinase-9 (gelatinase B) [EC:3.4.24.35] +K01404 GP63; leishmanolysin [EC:3.4.24.36] +K01405 PRD1; saccharolysin [EC:3.4.24.37] +K01406 prtC; serralysin [EC:3.4.24.40] +K01407 ptrA; protease III [EC:3.4.24.55] +K01408 IDE, ide; insulysin [EC:3.4.24.56] +K01409 OSGEP, KAE1, QRI7; N6-L-threonylcarbamoyladenine synthase [EC:2.3.1.234] +K01410 MIPEP; mitochondrial intermediate peptidase [EC:3.4.24.59] +K01411 NRD1; nardilysin [EC:3.4.24.61] +K01412 PMPCA, MAS2; mitochondrial-processing peptidase subunit alpha [EC:3.4.24.64] +K01413 MMP12; matrix metalloproteinase-12 (macrophage elastase) [EC:3.4.24.65] +K01414 prlC; oligopeptidase A [EC:3.4.24.70] +K01415 ECE; endothelin-converting enzyme [EC:3.4.24.71] +K01416 snpA; snapalysin [EC:3.4.24.77] +K01417 MEP; extracellular elastinolytic metalloproteinase [EC:3.4.24.-] +K01419 hslV, clpQ; ATP-dependent HslUV protease, peptidase subunit HslV [EC:3.4.25.2] +K01420 fnr; CRP/FNR family transcriptional regulator, anaerobic regulatory protein +K01421 yhgE; putative membrane protein +K01422 AXL1; protease AXL1 [EC:3.4.24.-] +K01423 bepA; beta-barrel assembly-enhancing protease [EC:3.4.-.-] +K01424 E3.5.1.1, ansA, ansB; L-asparaginase [EC:3.5.1.1] +K01425 glsA, GLS; glutaminase [EC:3.5.1.2] +K01426 E3.5.1.4, amiE; amidase [EC:3.5.1.4] +K01427 URE; urease [EC:3.5.1.5] +K01428 ureC; urease subunit alpha [EC:3.5.1.5] +K01429 ureB; urease subunit beta [EC:3.5.1.5] +K01430 ureA; urease subunit gamma [EC:3.5.1.5] +K01431 UPB1, pydC; beta-ureidopropionase [EC:3.5.1.6] +K01432 AFMID; arylformamidase [EC:3.5.1.9] +K01433 purU; formyltetrahydrofolate deformylase [EC:3.5.1.10] +K01434 pac; penicillin G amidase [EC:3.5.1.11] +K01435 BTD; biotinidase [EC:3.5.1.12] +K01436 yhaA; amidohydrolase [EC:3.5.1.-] +K01437 ASPA, aspA; aspartoacylase [EC:3.5.1.15] +K01438 argE; acetylornithine deacetylase [EC:3.5.1.16] +K01439 dapE; succinyl-diaminopimelate desuccinylase [EC:3.5.1.18] +K01440 PNC1; nicotinamidase [EC:3.5.1.19] +K01441 ACER1_2, ASAH3; alkaline ceramidase [EC:3.5.1.23] +K01442 cbh; choloylglycine hydrolase [EC:3.5.1.24] +K01443 nagA, AMDHD2; N-acetylglucosamine-6-phosphate deacetylase [EC:3.5.1.25] +K01444 AGA, aspG; N4-(beta-N-acetylglucosaminyl)-L-asparaginase [EC:3.5.1.26] +K01446 PGRP; peptidoglycan recognition protein +K01447 xlyAB; N-acetylmuramoyl-L-alanine amidase [EC:3.5.1.28] +K01448 amiABC; N-acetylmuramoyl-L-alanine amidase [EC:3.5.1.28] +K01449 cwlJ; cell wall hydrolase +K01451 hipO; hippurate hydrolase [EC:3.5.1.32] +K01452 E3.5.1.41; chitin deacetylase [EC:3.5.1.41] +K01453 nylB; 6-aminohexanoate-oligomer exohydrolase [EC:3.5.1.46] +K01455 E3.5.1.49; formamidase [EC:3.5.1.49] +K01456 E3.5.1.52, NGLY1, PNG1; peptide-N4-(N-acetyl-beta-glucosaminyl)asparagine amidase [EC:3.5.1.52] +K01457 atzF; allophanate hydrolase [EC:3.5.1.54] +K01458 hutG; N-formylglutamate deformylase [EC:3.5.1.68] +K01459 E3.5.1.77; N-carbamoyl-D-amino-acid hydrolase [EC:3.5.1.77] +K01460 gsp; glutathionylspermidine amidase/synthetase [EC:3.5.1.78 6.3.1.8] +K01461 E3.5.1.82; N-acyl-D-glutamate deacylase [EC:3.5.1.82] +K01462 PDF, def; peptide deformylase [EC:3.5.1.88] +K01463 bshB1; N-acetylglucosamine malate deacetylase 1 [EC:3.5.1.-] +K01464 DPYS, dht, hydA; dihydropyrimidinase [EC:3.5.2.2] +K01465 URA4, pyrC; dihydroorotase [EC:3.5.2.3] +K01466 allB; allantoinase [EC:3.5.2.5] +K01467 ampC; beta-lactamase class C [EC:3.5.2.6] +K01468 hutI, AMDHD1; imidazolonepropionase [EC:3.5.2.7] +K01469 OPLAH, OXP1, oplAH; 5-oxoprolinase (ATP-hydrolysing) [EC:3.5.2.9] +K01470 E3.5.2.10; creatinine amidohydrolase [EC:3.5.2.10] +K01471 nylA; 6-aminohexanoate-cyclic-dimer hydrolase [EC:3.5.2.12] +K01473 hyuA; N-methylhydantoinase A [EC:3.5.2.14] +K01474 hyuB; N-methylhydantoinase B [EC:3.5.2.14] +K01475 E3.5.2.20; isatin hydrolase [EC:3.5.2.20] +K01476 rocF, arg; arginase [EC:3.5.3.1] +K01477 alc, ALLC; allantoicase [EC:3.5.3.4] +K01478 arcA; arginine deiminase [EC:3.5.3.6] +K01479 hutG; formiminoglutamase [EC:3.5.3.8] +K01480 speB; agmatinase [EC:3.5.3.11] +K01481 E3.5.3.15; protein-arginine deiminase [EC:3.5.3.15] +K01482 DDAH, ddaH; dimethylargininase [EC:3.5.3.18] +K01483 allA; ureidoglycolate lyase [EC:4.3.2.3] +K01484 astB; succinylarginine dihydrolase [EC:3.5.3.23] +K01485 codA; cytosine/creatinine deaminase [EC:3.5.4.1 3.5.4.21] +K01486 ade; adenine deaminase [EC:3.5.4.2] +K01487 guaD, GDA; guanine deaminase [EC:3.5.4.3] +K01488 add, ADA; adenosine deaminase [EC:3.5.4.4] +K01489 cdd, CDA; cytidine deaminase [EC:3.5.4.5] +K01490 AMPD; AMP deaminase [EC:3.5.4.6] +K01491 folD; methylenetetrahydrofolate dehydrogenase (NADP+) / methenyltetrahydrofolate cyclohydrolase [EC:1.5.1.5 3.5.4.9] +K01492 purNH; phosphoribosylglycinamide/phosphoribosylaminoimidazolecarboxamide formyltransferase [EC:2.1.2.2 2.1.2.3] +K01493 comEB; dCMP deaminase [EC:3.5.4.12] +K01494 dcd; dCTP deaminase [EC:3.5.4.13] +K01495 GCH1, folE; GTP cyclohydrolase IA [EC:3.5.4.16] +K01496 hisI; phosphoribosyl-AMP cyclohydrolase [EC:3.5.4.19] +K01497 ribA, RIB1; GTP cyclohydrolase II [EC:3.5.4.25] +K01498 ribD1; diaminohydroxyphosphoribosylaminopyrimidine deaminase [EC:3.5.4.26] +K01499 mch; methenyltetrahydromethanopterin cyclohydrolase [EC:3.5.4.27] +K01500 fchA; methenyltetrahydrofolate cyclohydrolase [EC:3.5.4.9] +K01501 E3.5.5.1; nitrilase [EC:3.5.5.1] +K01502 E3.5.5.7; aliphatic nitrilase [EC:3.5.5.7] +K01505 E3.5.99.7; 1-aminocyclopropane-1-carboxylate deaminase [EC:3.5.99.7] +K01506 davA; 5-aminopentanamidase [EC:3.5.1.30] +K01507 ppa; inorganic pyrophosphatase [EC:3.6.1.1] +K01509 ENTPD2; adenosinetriphosphatase [EC:3.6.1.-] +K01510 ENTPD1_3_8, CD39; apyrase [EC:3.6.1.5] +K01511 ENTPD5_6; ectonucleoside triphosphate diphosphohydrolase 5/6 [EC:3.6.1.6] +K01512 acyP; acylphosphatase [EC:3.6.1.7] +K01513 ENPP1_3, CD203; ectonucleotide pyrophosphatase/phosphodiesterase family member 1/3 [EC:3.1.4.1 3.6.1.9] +K01514 PRUNE, PPX1; exopolyphosphatase [EC:3.6.1.11] +K01515 nudF; ADP-ribose diphosphatase [EC:3.6.1.13 3.6.1.-] +K01516 2C; Enterovirus protein 2C [EC:3.6.1.15] +K01517 ADPRM; manganese-dependent ADP-ribose/CDP-alcohol diphosphatase [EC:3.6.1.13 3.6.1.16 3.6.1.53] +K01518 NUDT2; bis(5'-nucleosidyl)-tetraphosphatase [EC:3.6.1.17] +K01519 rdgB, ITPA; XTP/dITP diphosphohydrolase [EC:3.6.1.66] +K01520 dut, DUT; dUTP diphosphatase [EC:3.6.1.23] +K01521 cdh; CDP-diacylglycerol pyrophosphatase [EC:3.6.1.26] +K01522 FHIT; bis(5'-adenosyl)-triphosphatase [EC:3.6.1.29] +K01523 hisE; phosphoribosyl-ATP pyrophosphohydrolase [EC:3.6.1.31] +K01524 ppx-gppA; exopolyphosphatase / guanosine-5'-triphosphate,3'-diphosphate pyrophosphatase [EC:3.6.1.11 3.6.1.40] +K01525 apaH; bis(5'-nucleosyl)-tetraphosphatase (symmetrical) [EC:3.6.1.41] +K01526 E3.6.1.42; guanosine-diphosphatase [EC:3.6.1.42] +K01527 EGD1, BTF3; nascent polypeptide-associated complex subunit beta +K01528 DNM1_3; dynamin 1/3 [EC:3.6.5.5] +K01529 yjjX; inosine/xanthosine triphosphatase [EC:3.6.1.73] +K01530 E7.6.2.1; phospholipid-translocating ATPase [EC:7.6.2.1] +K01531 mgtA, mgtB; P-type Mg2+ transporter [EC:7.2.2.14] +K01532 PCA1, CAD2; Cd2+-exporting ATPase [EC:7.2.2.21] +K01533 copB; P-type Cu2+ transporter [EC:7.2.2.9] +K01534 zntA; Zn2+/Cd2+-exporting ATPase [EC:7.2.2.12 7.2.2.21] +K01535 PMA1, PMA2; H+-transporting ATPase [EC:7.1.2.1] +K01536 ENA; P-type Na+/K+ transporter [EC:7.2.2.3 7.2.2.-] +K01537 ATP2C; P-type Ca2+ transporter type 2C [EC:7.2.2.10] +K01538 FXYD2, ATP1G1; sodium/potassium-transporting ATPase subunit gamma (FXYD domain-containing ion transport regulator 2) +K01539 ATP1A; sodium/potassium-transporting ATPase subunit alpha [EC:7.2.2.13] +K01540 ATP1B, CD298; sodium/potassium-transporting ATPase subunit beta +K01542 ATP4A; H+/K+-exchanging ATPase subunit alpha [EC:7.2.2.19] +K01543 ATP4B; H+/K+-exchanging ATPase subunit beta [EC:7.2.2.19] +K01544 ATP12A; non-gastric H+/K+-exchanging ATPase [EC:7.2.2.19] +K01545 kdpF; potassium-transporting ATPase KdpF subunit +K01546 kdpA; potassium-transporting ATPase potassium-binding subunit +K01547 kdpB; potassium-transporting ATPase ATP-binding subunit [EC:7.2.2.6] +K01548 kdpC; potassium-transporting ATPase KdpC subunit +K01549 TIM11, ATP21; F-type H+-transporting ATP synthase subunit e +K01551 arsA, ASNA1, GET3; arsenite/tail-anchored protein-transporting ATPase [EC:7.3.2.7 7.3.-.-] +K01552 ecfA; energy-coupling factor transport system ATP-binding protein [EC:7.-.-.-] +K01554 K01554; 8-oxo-dGDP phosphatase [EC:3.6.1.58] +K01555 FAH, fahA; fumarylacetoacetase [EC:3.7.1.2] +K01556 KYNU, kynU; kynureninase [EC:3.7.1.3] +K01557 FAHD1; acylpyruvate hydrolase [EC:3.7.1.5] +K01558 WNT16; wingless-type MMTV integration site family, member 16 +K01559 oiaT; 3-oxoisoapionate-4-phosphate transcarboxylase/hydrolase [EC:3.7.1.28] +K01560 E3.8.1.2; 2-haloacid dehalogenase [EC:3.8.1.2] +K01561 dehH; haloacetate dehalogenase [EC:3.8.1.3] +K01562 DIO1; type I thyroxine 5'-deiodinase [EC:1.21.99.4] +K01563 dhaA; haloalkane dehalogenase [EC:3.8.1.5] +K01565 SGSH; N-sulfoglucosamine sulfohydrolase [EC:3.10.1.1] +K01566 E3.13.1.9; S-inosyl-L-homocysteine hydrolase [EC:3.13.1.9] +K01567 pdaA; peptidoglycan-N-acetylmuramic acid deacetylase [EC:3.5.1.-] +K01568 PDC, pdc; pyruvate decarboxylase [EC:4.1.1.1] +K01569 oxdD; oxalate decarboxylase [EC:4.1.1.2] +K01571 oadA; oxaloacetate decarboxylase (Na+ extruding) subunit alpha [EC:7.2.4.2] +K01573 oadG; oxaloacetate decarboxylase (Na+ extruding) subunit gamma +K01574 adc; acetoacetate decarboxylase [EC:4.1.1.4] +K01575 alsD, budA, aldC; acetolactate decarboxylase [EC:4.1.1.5] +K01576 mdlC; benzoylformate decarboxylase [EC:4.1.1.7] +K01577 oxc; oxalyl-CoA decarboxylase [EC:4.1.1.8] +K01578 MLYCD; malonyl-CoA decarboxylase [EC:4.1.1.9] +K01579 panD; aspartate 1-decarboxylase [EC:4.1.1.11] +K01580 E4.1.1.15, gadB, gadA, GAD; glutamate decarboxylase [EC:4.1.1.15] +K01581 E4.1.1.17, ODC1, speC, speF; ornithine decarboxylase [EC:4.1.1.17] +K01582 E4.1.1.18, ldcC, cadA; lysine decarboxylase [EC:4.1.1.18] +K01583 E4.1.1.19; arginine decarboxylase [EC:4.1.1.19] +K01584 adiA; arginine decarboxylase [EC:4.1.1.19] +K01585 speA; arginine decarboxylase [EC:4.1.1.19] +K01586 lysA; diaminopimelate decarboxylase [EC:4.1.1.20] +K01587 PAICS; phosphoribosylaminoimidazole carboxylase / phosphoribosylaminoimidazole-succinocarboxamide synthase [EC:4.1.1.21 6.3.2.6] +K01588 purE; 5-(carboxyamino)imidazole ribonucleotide mutase [EC:5.4.99.18] +K01589 purK; 5-(carboxyamino)imidazole ribonucleotide synthase [EC:6.3.4.18] +K01590 hdc, HDC; histidine decarboxylase [EC:4.1.1.22] +K01591 pyrF; orotidine-5'-phosphate decarboxylase [EC:4.1.1.23] +K01592 TYDC; tyrosine decarboxylase [EC:4.1.1.25] +K01593 DDC, TDC; aromatic-L-amino-acid/L-tryptophan decarboxylase [EC:4.1.1.28 4.1.1.105] +K01595 ppc; phosphoenolpyruvate carboxylase [EC:4.1.1.31] +K01596 E4.1.1.32, pckA, PCK; phosphoenolpyruvate carboxykinase (GTP) [EC:4.1.1.32] +K01597 MVD, mvaD; diphosphomevalonate decarboxylase [EC:4.1.1.33] +K01598 PPCDC, coaC; phosphopantothenoylcysteine decarboxylase [EC:4.1.1.36] +K01599 hemE, UROD; uroporphyrinogen decarboxylase [EC:4.1.1.37] +K01601 rbcL, cbbL; ribulose-bisphosphate carboxylase large chain [EC:4.1.1.39] +K01602 rbcS, cbbS; ribulose-bisphosphate carboxylase small chain [EC:4.1.1.39] +K01604 mmdA; methylmalonyl-CoA decarboxylase subunit alpha [EC:7.2.4.3] +K01607 pcaC; 4-carboxymuconolactone decarboxylase [EC:4.1.1.44] +K01608 gcl; tartronate-semialdehyde synthase [EC:4.1.1.47] +K01609 trpC; indole-3-glycerol phosphate synthase [EC:4.1.1.48] +K01610 pckA; phosphoenolpyruvate carboxykinase (ATP) [EC:4.1.1.49] +K01611 speD, AMD1; S-adenosylmethionine decarboxylase [EC:4.1.1.50] +K01612 bsdC; vanillate/4-hydroxybenzoate decarboxylase subunit C [EC:4.1.1.- 4.1.1.61] +K01613 psd, PISD; phosphatidylserine decarboxylase [EC:4.1.1.65] +K01615 gcdA; glutaconyl-CoA decarboxylase subunit alpha [EC:7.2.4.5] +K01616 kgd; multifunctional 2-oxoglutarate metabolism enzyme [EC:2.2.1.5 4.1.1.71 1.2.4.2 2.3.1.61] +K01617 dmpH, xylI, nahK; 2-oxo-3-hexenedioate decarboxylase [EC:4.1.1.77] +K01618 E4.1.1.107; 3,4-dihydroxyphenylacetaldehyde synthase [EC:4.1.1.107] +K01619 deoC, DERA; deoxyribose-phosphate aldolase [EC:4.1.2.4] +K01620 ltaE; threonine aldolase [EC:4.1.2.48] +K01621 xfp, xpk; xylulose-5-phosphate/fructose-6-phosphate phosphoketolase [EC:4.1.2.9 4.1.2.22] +K01622 K01622; fructose 1,6-bisphosphate aldolase/phosphatase [EC:4.1.2.13 3.1.3.11] +K01623 ALDO; fructose-bisphosphate aldolase, class I [EC:4.1.2.13] +K01624 FBA, fbaA; fructose-bisphosphate aldolase, class II [EC:4.1.2.13] +K01625 eda; 2-dehydro-3-deoxyphosphogluconate aldolase / (4S)-4-hydroxy-2-oxoglutarate aldolase [EC:4.1.2.14 4.1.3.42] +K01626 E2.5.1.54, aroF, aroG, aroH; 3-deoxy-7-phosphoheptulonate synthase [EC:2.5.1.54] +K01627 kdsA; 2-dehydro-3-deoxyphosphooctonate aldolase (KDO 8-P synthase) [EC:2.5.1.55] +K01628 fucA; L-fuculose-phosphate aldolase [EC:4.1.2.17] +K01629 rhaD; rhamnulose-1-phosphate aldolase [EC:4.1.2.19] +K01630 garL; 2-dehydro-3-deoxyglucarate aldolase [EC:4.1.2.20] +K01631 dgoA; 2-dehydro-3-deoxyphosphogalactonate aldolase [EC:4.1.2.21] +K01633 folB; 7,8-dihydroneopterin aldolase/epimerase/oxygenase [EC:4.1.2.25 5.1.99.8 1.13.11.81] +K01634 SGPL1, DPL1; sphinganine-1-phosphate aldolase [EC:4.1.2.27] +K01635 lacD; tagatose 1,6-diphosphate aldolase [EC:4.1.2.40] +K01636 K01636; ribulose 1-phosphate aldolase [EC:4.1.2.-] +K01637 E4.1.3.1, aceA; isocitrate lyase [EC:4.1.3.1] +K01638 aceB, glcB; malate synthase [EC:2.3.3.9] +K01639 E4.1.3.3, nanA, NPL; N-acetylneuraminate lyase [EC:4.1.3.3] +K01640 HMGCL, hmgL; hydroxymethylglutaryl-CoA lyase [EC:4.1.3.4] +K01641 HMGCS; hydroxymethylglutaryl-CoA synthase [EC:2.3.3.10] +K01643 citF; citrate lyase subunit alpha / citrate CoA-transferase [EC:2.8.3.10] +K01644 citE; citrate lyase subunit beta / citryl-CoA lyase [EC:4.1.3.34] +K01645 CER1; cerberus 1 +K01646 citD; citrate lyase subunit gamma (acyl carrier protein) +K01647 CS, gltA; citrate synthase [EC:2.3.3.1] +K01648 ACLY; ATP citrate (pro-S)-lyase [EC:2.3.3.8] +K01649 leuA, IMS; 2-isopropylmalate synthase [EC:2.3.3.13] +K01652 E2.2.1.6L, ilvB, ilvG, ilvI; acetolactate synthase I/II/III large subunit [EC:2.2.1.6] +K01653 E2.2.1.6S, ilvH, ilvN; acetolactate synthase I/III small subunit [EC:2.2.1.6] +K01654 neuB, nnaB; N-acetylneuraminate synthase [EC:2.5.1.56] +K01655 LYS21, LYS20; homocitrate synthase [EC:2.3.3.14] +K01656 TRP3; anthranilate synthase / indole-3-glycerol phosphate synthase [EC:4.1.3.27 4.1.1.48] +K01657 trpE; anthranilate synthase component I [EC:4.1.3.27] +K01658 trpG; anthranilate synthase component II [EC:4.1.3.27] +K01659 prpC; 2-methylcitrate synthase [EC:2.3.3.5] +K01661 menB; naphthoate synthase [EC:4.1.3.36] +K01662 dxs; 1-deoxy-D-xylulose-5-phosphate synthase [EC:2.2.1.7] +K01663 HIS7; imidazole glycerol-phosphate synthase [EC:4.3.2.10] +K01664 pabA; para-aminobenzoate synthetase component II [EC:2.6.1.85] +K01665 pabB; para-aminobenzoate synthetase component I [EC:2.6.1.85] +K01666 mhpE; 4-hydroxy 2-oxovalerate aldolase [EC:4.1.3.39] +K01667 tnaA; tryptophanase [EC:4.1.99.1] +K01668 E4.1.99.2; tyrosine phenol-lyase [EC:4.1.99.2] +K01669 phr, PHR1; deoxyribodipyrimidine photo-lyase [EC:4.1.99.3] +K01670 nmsA; naphthyl-2-methylsuccinate synthase alpha subunit [EC:4.1.99.-] +K01671 yihT; sulfofructosephosphate aldolase [EC:4.1.2.57] +K01672 CA; carbonic anhydrase [EC:4.2.1.1] +K01673 cynT, can; carbonic anhydrase [EC:4.2.1.1] +K01674 cah; carbonic anhydrase [EC:4.2.1.1] +K01675 fumD; fumarate hydratase D [EC:4.2.1.2] +K01676 E4.2.1.2A, fumA, fumB; fumarate hydratase, class I [EC:4.2.1.2] +K01677 E4.2.1.2AA, fumA; fumarate hydratase subunit alpha [EC:4.2.1.2] +K01678 E4.2.1.2AB, fumB; fumarate hydratase subunit beta [EC:4.2.1.2] +K01679 E4.2.1.2B, fumC, FH; fumarate hydratase, class II [EC:4.2.1.2] +K01681 ACO, acnA; aconitate hydratase [EC:4.2.1.3] +K01682 acnB; aconitate hydratase 2 / 2-methylisocitrate dehydratase [EC:4.2.1.3 4.2.1.99] +K01683 araD; D-arabinonate dehydratase [EC:4.2.1.5] +K01684 dgoD; galactonate dehydratase [EC:4.2.1.6] +K01685 uxaA; altronate hydrolase [EC:4.2.1.7] +K01686 uxuA; mannonate dehydratase [EC:4.2.1.8] +K01687 ilvD; dihydroxy-acid dehydratase [EC:4.2.1.9] +K01689 ENO1_2_3, eno; enolase 1/2/3 [EC:4.2.1.11] +K01690 edd; phosphogluconate dehydratase [EC:4.2.1.12] +K01691 WIF1; WNT inhibitory factor 1 +K01692 paaF, echA; enoyl-CoA hydratase [EC:4.2.1.17] +K01693 hisB; imidazoleglycerol-phosphate dehydratase [EC:4.2.1.19] +K01694 TRP; tryptophan synthase [EC:4.2.1.20] +K01695 trpA; tryptophan synthase alpha chain [EC:4.2.1.20] +K01696 trpB; tryptophan synthase beta chain [EC:4.2.1.20] +K01697 CBS; cystathionine beta-synthase [EC:4.2.1.22] +K01698 hemB, ALAD; porphobilinogen synthase [EC:4.2.1.24] +K01699 pduC; propanediol dehydratase large subunit [EC:4.2.1.28] +K01702 LEU1; 3-isopropylmalate dehydratase [EC:4.2.1.33] +K01703 leuC, IPMI-L; 3-isopropylmalate/(R)-2-methylmalate dehydratase large subunit [EC:4.2.1.33 4.2.1.35] +K01704 leuD, IPMI-S; 3-isopropylmalate/(R)-2-methylmalate dehydratase small subunit [EC:4.2.1.33 4.2.1.35] +K01705 LYS4; homoaconitate hydratase [EC:4.2.1.36] +K01706 gudD; glucarate dehydratase [EC:4.2.1.40] +K01707 kdgD; 5-dehydro-4-deoxyglucarate dehydratase [EC:4.2.1.41] +K01708 garD; galactarate dehydratase [EC:4.2.1.42] +K01709 rfbG; CDP-glucose 4,6-dehydratase [EC:4.2.1.45] +K01710 rfbB, rmlB, rffG; dTDP-glucose 4,6-dehydratase [EC:4.2.1.46] +K01711 gmd, GMDS; GDPmannose 4,6-dehydratase [EC:4.2.1.47] +K01712 hutU, UROC1; urocanate hydratase [EC:4.2.1.49] +K01713 pheC; cyclohexadienyl dehydratase [EC:4.2.1.51 4.2.1.91] +K01714 dapA; 4-hydroxy-tetrahydrodipicolinate synthase [EC:4.3.3.7] +K01715 crt; enoyl-CoA hydratase [EC:4.2.1.17] +K01716 fabA; 3-hydroxyacyl-[acyl-carrier protein] dehydratase / trans-2-decenoyl-[acyl-carrier protein] isomerase [EC:4.2.1.59 5.3.3.14] +K01719 hemD, UROS; uroporphyrinogen-III synthase [EC:4.2.1.75] +K01720 prpD; 2-methylcitrate dehydratase [EC:4.2.1.79] +K01721 nthA; nitrile hydratase subunit alpha [EC:4.2.1.84] +K01723 AOS, CYP74A; hydroperoxide dehydratase [EC:4.2.1.92] +K01724 PCBD, phhB; 4a-hydroxytetrahydrobiopterin dehydratase [EC:4.2.1.96] +K01725 cynS; cyanate lyase [EC:4.2.1.104] +K01726 GAMMACA; gamma-carbonic anhydrase [EC:4.2.1.-] +K01727 hysA, hylA, hylB; hyaluronate lyase [EC:4.2.2.1] +K01728 pel; pectate lyase [EC:4.2.2.2] +K01729 algL; poly(beta-D-mannuronate) lyase [EC:4.2.2.3] +K01730 ogl; oligogalacturonide lyase [EC:4.2.2.6] +K01731 pelW; pectate disaccharide-lyase [EC:4.2.2.9] +K01732 E4.2.2.10; pectin lyase [EC:4.2.2.10] +K01733 thrC; threonine synthase [EC:4.2.3.1] +K01734 mgsA; methylglyoxal synthase [EC:4.2.3.3] +K01735 aroB; 3-dehydroquinate synthase [EC:4.2.3.4] +K01736 aroC; chorismate synthase [EC:4.2.3.5] +K01737 queD, ptpS, PTS; 6-pyruvoyltetrahydropterin/6-carboxytetrahydropterin synthase [EC:4.2.3.12 4.1.2.50] +K01738 cysK; cysteine synthase [EC:2.5.1.47] +K01739 metB; cystathionine gamma-synthase [EC:2.5.1.48] +K01740 metY; O-acetylhomoserine (thiol)-lyase [EC:2.5.1.49] +K01741 E4.2.99.18; DNA-(apurinic or apyrimidinic site) lyase [EC:4.2.99.18] +K01742 THS; thebaine synthase [EC:4.2.99.24] +K01743 E4.2.1.1; carbonic anhydrase [EC:4.2.1.1] +K01744 aspA; aspartate ammonia-lyase [EC:4.3.1.1] +K01745 hutH, HAL; histidine ammonia-lyase [EC:4.3.1.3] +K01746 E4.3.1.4; formiminotetrahydrofolate cyclodeaminase [EC:4.3.1.4] +K01749 hemC, HMBS; hydroxymethylbilane synthase [EC:2.5.1.61] +K01750 E4.3.1.12, ocd; ornithine cyclodeaminase [EC:4.3.1.12] +K01751 E4.3.1.15; diaminopropionate ammonia-lyase [EC:4.3.1.15] +K01752 E4.3.1.17, sdaA, sdaB, tdcG; L-serine dehydratase [EC:4.3.1.17] +K01753 dsdA; D-serine dehydratase [EC:4.3.1.18] +K01754 E4.3.1.19, ilvA, tdcB; threonine dehydratase [EC:4.3.1.19] +K01755 argH, ASL; argininosuccinate lyase [EC:4.3.2.1] +K01756 purB, ADSL; adenylosuccinate lyase [EC:4.3.2.2] +K01757 STR1; strictosidine synthase [EC:3.5.99.13] +K01758 CTH; cystathionine gamma-lyase [EC:4.4.1.1] +K01759 GLO1, gloA; lactoylglutathione lyase [EC:4.4.1.5] +K01760 metC; cysteine-S-conjugate beta-lyase [EC:4.4.1.13] +K01761 E4.4.1.11; methionine-gamma-lyase [EC:4.4.1.11] +K01762 ACS; 1-aminocyclopropane-1-carboxylate synthase [EC:4.4.1.14] +K01763 SCLY; selenocysteine lyase [EC:4.4.1.16] +K01764 HCCS; cytochrome c heme-lyase [EC:4.4.1.17] +K01765 ITPK4; inositol-1,3,4-trisphosphate 5/6-kinase [EC:2.7.1.159] +K01766 csdA; cysteine sulfinate desulfinase [EC:4.4.1.-] +K01767 cupin; S-methyl-1-thioxylulose 5-phosphate methylthiotransferase [EC:2.8.4.6] +K01768 E4.6.1.1; adenylate cyclase [EC:4.6.1.1] +K01769 E4.6.1.2; guanylate cyclase, other [EC:4.6.1.2] +K01770 ispF; 2-C-methyl-D-erythritol 2,4-cyclodiphosphate synthase [EC:4.6.1.12] +K01771 plc; 1-phosphatidylinositol phosphodiesterase [EC:4.6.1.13] +K01772 hemH, FECH; protoporphyrin/coproporphyrin ferrochelatase [EC:4.98.1.1 4.99.1.9] +K01773 CYP71B40_41; aldoxime dehydratase [EC:4.99.1.-] +K01774 fumE; fumarate hydratase E [EC:4.2.1.2] +K01775 alr; alanine racemase [EC:5.1.1.1] +K01776 murI; glutamate racemase [EC:5.1.1.3] +K01777 prdF; proline racemase [EC:5.1.1.4] +K01778 dapF; diaminopimelate epimerase [EC:5.1.1.7] +K01779 racD; aspartate racemase [EC:5.1.1.13] +K01780 cntK; histidine racemase [EC:5.1.1.24] +K01781 mdlA; mandelate racemase [EC:5.1.2.2] +K01782 fadJ; 3-hydroxyacyl-CoA dehydrogenase / enoyl-CoA hydratase / 3-hydroxybutyryl-CoA epimerase [EC:1.1.1.35 4.2.1.17 5.1.2.3] +K01783 rpe, RPE; ribulose-phosphate 3-epimerase [EC:5.1.3.1] +K01784 galE, GALE; UDP-glucose 4-epimerase [EC:5.1.3.2] +K01785 galM, GALM; aldose 1-epimerase [EC:5.1.3.3] +K01787 RENBP; N-acylglucosamine 2-epimerase [EC:5.1.3.8] +K01788 nanE; N-acylglucosamine-6-phosphate 2-epimerase [EC:5.1.3.9] +K01790 rfbC, rmlC; dTDP-4-dehydrorhamnose 3,5-epimerase [EC:5.1.3.13] +K01791 wecB; UDP-N-acetylglucosamine 2-epimerase (non-hydrolysing) [EC:5.1.3.14] +K01792 E5.1.3.15; glucose-6-phosphate 1-epimerase [EC:5.1.3.15] +K01793 GLCE; heparosan-N-sulfate-glucuronate 5-epimerase [EC:5.1.3.17] +K01794 DSE; chondroitin-glucuronate 5-epimerase [EC:5.1.3.19] +K01795 algG; mannuronan 5-epimerase [EC:5.1.3.37] +K01796 E5.1.99.4, AMACR, mcr; alpha-methylacyl-CoA racemase [EC:5.1.99.4] +K01798 alr-murF; Alr-MurF fusion protein [EC:5.1.1.1 6.3.2.10] +K01799 nicE, maiA; maleate isomerase [EC:5.2.1.1] +K01800 maiA, GSTZ1; maleylacetoacetate isomerase [EC:5.2.1.2] +K01801 nagL; maleylpyruvate isomerase [EC:5.2.1.4] +K01802 E5.2.1.8; peptidylprolyl isomerase [EC:5.2.1.8] +K01803 TPI, tpiA; triosephosphate isomerase (TIM) [EC:5.3.1.1] +K01804 araA; L-arabinose isomerase [EC:5.3.1.4] +K01805 xylA; xylose isomerase [EC:5.3.1.5] +K01807 rpiA; ribose 5-phosphate isomerase A [EC:5.3.1.6] +K01808 rpiB; ribose 5-phosphate isomerase B [EC:5.3.1.6] +K01809 manA, MPI; mannose-6-phosphate isomerase [EC:5.3.1.8] +K01810 GPI, pgi; glucose-6-phosphate isomerase [EC:5.3.1.9] +K01811 xylS, yicI; alpha-D-xyloside xylohydrolase [EC:3.2.1.177] +K01812 uxaC; glucuronate isomerase [EC:5.3.1.12] +K01813 rhaA; L-rhamnose isomerase [EC:5.3.1.14] +K01814 hisA; phosphoribosylformimino-5-aminoimidazole carboxamide ribotide isomerase [EC:5.3.1.16] +K01815 kduI; 4-deoxy-L-threo-5-hexosulose-uronate ketol-isomerase [EC:5.3.1.17] +K01816 hyi, gip; hydroxypyruvate isomerase [EC:5.3.1.22] +K01817 trpF; phosphoribosylanthranilate isomerase [EC:5.3.1.24] +K01818 fucI; L-fucose/D-arabinose isomerase [EC:5.3.1.25 5.3.1.3] +K01819 E5.3.1.26, lacA, lacB; galactose-6-phosphate isomerase [EC:5.3.1.26] +K01820 rhaA; L-rhamnose isomerase / sugar isomerase [EC:5.3.1.14 5.3.1.-] +K01821 praC, xylH; 4-oxalocrotonate tautomerase [EC:5.3.2.6] +K01822 E5.3.3.1; steroid Delta-isomerase [EC:5.3.3.1] +K01823 idi, IDI; isopentenyl-diphosphate Delta-isomerase [EC:5.3.3.2] +K01824 EBP; cholestenol Delta-isomerase [EC:5.3.3.5] +K01825 fadB; 3-hydroxyacyl-CoA dehydrogenase / enoyl-CoA hydratase / 3-hydroxybutyryl-CoA epimerase / enoyl-CoA isomerase [EC:1.1.1.35 4.2.1.17 5.1.2.3 5.3.3.8] +K01826 hpaF, hpcD; 5-carboxymethyl-2-hydroxymuconate isomerase [EC:5.3.3.10] +K01827 DCT; dopachrome tautomerase [EC:5.3.3.12] +K01828 NISO; neopinone isomerase [EC:5.3.3.24] +K01829 dsbH; disulfide reductase [EC:1.8.-.-] +K01830 PTGDS; prostaglandin-H2 D-isomerase [EC:5.3.99.2] +K01831 PTGIS, CYP8A; prostacyclin synthase [EC:5.3.99.4] +K01832 TBXAS1, CYP5A; thromboxane-A synthase [EC:5.3.99.5] +K01833 TRYS; trypanothione synthetase/amidase [EC:6.3.1.9 3.5.1.-] +K01834 PGAM, gpmA; 2,3-bisphosphoglycerate-dependent phosphoglycerate mutase [EC:5.4.2.11] +K01835 pgm; phosphoglucomutase [EC:5.4.2.2] +K01836 PGM3; phosphoacetylglucosamine mutase [EC:5.4.2.3] +K01837 BPGM; bisphosphoglycerate/phosphoglycerate mutase [EC:5.4.2.4 5.4.2.11] +K01838 pgmB; beta-phosphoglucomutase [EC:5.4.2.6] +K01839 deoB; phosphopentomutase [EC:5.4.2.7] +K01840 manB; phosphomannomutase [EC:5.4.2.8] +K01841 pepM; phosphoenolpyruvate phosphomutase [EC:5.4.2.9] +K01843 kamA; lysine 2,3-aminomutase [EC:5.4.3.2] +K01844 kamD; beta-lysine 5,6-aminomutase alpha subunit [EC:5.4.3.3] +K01845 hemL; glutamate-1-semialdehyde 2,1-aminomutase [EC:5.4.3.8] +K01846 glmS, mutS, mamA; methylaspartate mutase sigma subunit [EC:5.4.99.1] +K01847 MUT; methylmalonyl-CoA mutase [EC:5.4.99.2] +K01848 E5.4.99.2A, mcmA1; methylmalonyl-CoA mutase, N-terminal domain [EC:5.4.99.2] +K01849 E5.4.99.2B, mcmA2; methylmalonyl-CoA mutase, C-terminal domain [EC:5.4.99.2] +K01850 E5.4.99.5; chorismate mutase [EC:5.4.99.5] +K01851 pchA; salicylate biosynthesis isochorismate synthase [EC:5.4.4.2] +K01852 LSS, ERG7; lanosterol synthase [EC:5.4.99.7] +K01853 CAS1; cycloartenol synthase [EC:5.4.99.8] +K01854 glf; UDP-galactopyranose mutase [EC:5.4.99.9] +K01855 PUS3, DEG1; tRNA pseudouridine38/39 synthase [EC:5.4.99.45] +K01856 catB; muconate cycloisomerase [EC:5.5.1.1] +K01857 pcaB; 3-carboxy-cis,cis-muconate cycloisomerase [EC:5.5.1.2] +K01858 INO1, ISYNA1; myo-inositol-1-phosphate synthase [EC:5.5.1.4] +K01859 E5.5.1.6; chalcone isomerase [EC:5.5.1.6] +K01860 E5.5.1.7; chloromuconate cycloisomerase [EC:5.5.1.7] +K01861 NEPS3; (+)-cis,cis-nepetalactol synthase [EC:5.5.1.35] +K01865 hab; (hydroxyamino)benzene mutase [EC:5.4.4.1] +K01866 YARS, tyrS; tyrosyl-tRNA synthetase [EC:6.1.1.1] +K01867 WARS, trpS; tryptophanyl-tRNA synthetase [EC:6.1.1.2] +K01868 TARS, thrS; threonyl-tRNA synthetase [EC:6.1.1.3] +K01869 LARS, leuS; leucyl-tRNA synthetase [EC:6.1.1.4] +K01870 IARS, ileS; isoleucyl-tRNA synthetase [EC:6.1.1.5] +K01872 AARS, alaS; alanyl-tRNA synthetase [EC:6.1.1.7] +K01873 VARS, valS; valyl-tRNA synthetase [EC:6.1.1.9] +K01874 MARS, metG; methionyl-tRNA synthetase [EC:6.1.1.10] +K01875 SARS, serS; seryl-tRNA synthetase [EC:6.1.1.11] +K01876 DARS2, aspS; aspartyl-tRNA synthetase [EC:6.1.1.12] +K01878 glyQ; glycyl-tRNA synthetase alpha chain [EC:6.1.1.14] +K01879 glyS; glycyl-tRNA synthetase beta chain [EC:6.1.1.14] +K01880 GARS, glyS1; glycyl-tRNA synthetase [EC:6.1.1.14] +K01881 PARS, proS; prolyl-tRNA synthetase [EC:6.1.1.15] +K01883 CARS, cysS; cysteinyl-tRNA synthetase [EC:6.1.1.16] +K01884 cysS1; cysteinyl-tRNA synthetase, unknown class [EC:6.1.1.16] +K01885 EARS, gltX; glutamyl-tRNA synthetase [EC:6.1.1.17] +K01886 QARS, glnS; glutaminyl-tRNA synthetase [EC:6.1.1.18] +K01887 RARS, argS; arginyl-tRNA synthetase [EC:6.1.1.19] +K01889 FARSA, pheS; phenylalanyl-tRNA synthetase alpha chain [EC:6.1.1.20] +K01890 FARSB, pheT; phenylalanyl-tRNA synthetase beta chain [EC:6.1.1.20] +K01892 HARS, hisS; histidyl-tRNA synthetase [EC:6.1.1.21] +K01893 NARS, asnS; asparaginyl-tRNA synthetase [EC:6.1.1.22] +K01894 gluQ; glutamyl-Q tRNA(Asp) synthetase [EC:6.1.1.-] +K01895 ACSS1_2, acs; acetyl-CoA synthetase [EC:6.2.1.1] +K01896 ACSM; medium-chain acyl-CoA synthetase [EC:6.2.1.2] +K01897 ACSL, fadD; long-chain acyl-CoA synthetase [EC:6.2.1.3] +K01899 LSC1; succinyl-CoA synthetase alpha subunit [EC:6.2.1.4 6.2.1.5] +K01900 LSC2; succinyl-CoA synthetase beta subunit [EC:6.2.1.4 6.2.1.5] +K01902 sucD; succinyl-CoA synthetase alpha subunit [EC:6.2.1.5] +K01903 sucC; succinyl-CoA synthetase beta subunit [EC:6.2.1.5] +K01904 4CL; 4-coumarate--CoA ligase [EC:6.2.1.12] +K01905 acdA; acetate---CoA ligase (ADP-forming) subunit alpha [EC:6.2.1.13] +K01906 bioW; 6-carboxyhexanoate--CoA ligase [EC:6.2.1.14] +K01907 AACS, acsA; acetoacetyl-CoA synthetase [EC:6.2.1.16] +K01908 ACSS3, prpE; propionyl-CoA synthetase [EC:6.2.1.17] +K01909 mbtM; long-chain-fatty-acid--[acyl-carrier-protein] ligase [EC:6.2.1.20] +K01910 citC; [citrate (pro-3S)-lyase] ligase [EC:6.2.1.22] +K01911 menE; o-succinylbenzoate---CoA ligase [EC:6.2.1.26] +K01912 paaK; phenylacetate-CoA ligase [EC:6.2.1.30] +K01913 AAE7, ACN1; acetate/butyrate---CoA ligase [EC:6.2.1.1 6.2.1.2] +K01914 asnA; aspartate--ammonia ligase [EC:6.3.1.1] +K01915 glnA, GLUL; glutamine synthetase [EC:6.3.1.2] +K01916 nadE; NAD+ synthase [EC:6.3.1.5] +K01917 E6.3.1.8; glutathionylspermidine synthase [EC:6.3.1.8] +K01918 panC; pantoate--beta-alanine ligase [EC:6.3.2.1] +K01919 gshA; glutamate--cysteine ligase [EC:6.3.2.2] +K01920 gshB; glutathione synthase [EC:6.3.2.3] +K01921 ddl; D-alanine-D-alanine ligase [EC:6.3.2.4] +K01922 PPCS, COAB; phosphopantothenate---cysteine ligase (ATP) [EC:6.3.2.51] +K01923 purC; phosphoribosylaminoimidazole-succinocarboxamide synthase [EC:6.3.2.6] +K01924 murC; UDP-N-acetylmuramate--alanine ligase [EC:6.3.2.8] +K01925 murD; UDP-N-acetylmuramoylalanine--D-glutamate ligase [EC:6.3.2.9] +K01926 rex; redox-sensing transcriptional repressor +K01928 murE; UDP-N-acetylmuramoyl-L-alanyl-D-glutamate--2,6-diaminopimelate ligase [EC:6.3.2.13] +K01929 murF; UDP-N-acetylmuramoyl-tripeptide--D-alanyl-D-alanine ligase [EC:6.3.2.10] +K01930 FPGS; folylpolyglutamate synthase [EC:6.3.2.17] +K01931 NEUR; protein neuralized [EC:2.3.2.27] +K01932 capB, pgsB; gamma-polyglutamate synthase [EC:6.3.2.-] +K01933 purM; phosphoribosylformylglycinamidine cyclo-ligase [EC:6.3.3.1] +K01934 MTHFS; 5-formyltetrahydrofolate cyclo-ligase [EC:6.3.3.2] +K01935 bioD; dethiobiotin synthetase [EC:6.3.3.3] +K01937 pyrG, CTPS; CTP synthase [EC:6.3.4.2] +K01938 fhs; formate--tetrahydrofolate ligase [EC:6.3.4.3] +K01939 purA, ADSS; adenylosuccinate synthase [EC:6.3.4.4] +K01940 argG, ASS1; argininosuccinate synthase [EC:6.3.4.5] +K01941 uca; urea carboxylase [EC:6.3.4.6] +K01942 HLCS; biotin---protein ligase [EC:6.3.4.9 6.3.4.10 6.3.4.11 6.3.4.15] +K01945 purD; phosphoribosylamine---glycine ligase [EC:6.3.4.13] +K01946 ACACB; acetyl-CoA carboxylase / biotin carboxylase 2 [EC:6.4.1.2 6.3.4.14 2.1.3.15] +K01947 birA-coaX; biotin---[acetyl-CoA-carboxylase] ligase / type III pantothenate kinase [EC:6.3.4.15 2.7.1.33] +K01948 CPS1; carbamoyl-phosphate synthase (ammonia) [EC:6.3.4.16] +K01949 gmaS; glutamate---methylamine ligase [EC:6.3.4.12] +K01950 E6.3.5.1, NADSYN1, QNS1, nadE; NAD+ synthase (glutamine-hydrolysing) [EC:6.3.5.1] +K01951 guaA, GMPS; GMP synthase (glutamine-hydrolysing) [EC:6.3.5.2] +K01952 PFAS, purL; phosphoribosylformylglycinamidine synthase [EC:6.3.5.3] +K01953 asnB, ASNS; asparagine synthase (glutamine-hydrolysing) [EC:6.3.5.4] +K01954 K01954; carbamoyl-phosphate synthase [EC:6.3.5.5] +K01955 carB, CPA2; carbamoyl-phosphate synthase large subunit [EC:6.3.5.5] +K01956 carA, CPA1; carbamoyl-phosphate synthase small subunit [EC:6.3.5.5] +K01957 ddaH; N-3-fumaroyl-(S)-2,3-diaminopropanoate amidotransferase [EC:6.3.5.-] +K01958 PC, pyc; pyruvate carboxylase [EC:6.4.1.1] +K01959 pycA; pyruvate carboxylase subunit A [EC:6.4.1.1] +K01960 pycB; pyruvate carboxylase subunit B [EC:6.4.1.1] +K01961 accC; acetyl-CoA carboxylase, biotin carboxylase subunit [EC:6.4.1.2 6.3.4.14] +K01962 accA; acetyl-CoA carboxylase carboxyl transferase subunit alpha [EC:6.4.1.2 2.1.3.15] +K01963 accD; acetyl-CoA carboxylase carboxyl transferase subunit beta [EC:6.4.1.2 2.1.3.15] +K01964 K01964; acetyl-CoA/propionyl-CoA carboxylase [EC:6.4.1.2 6.4.1.3] +K01965 PCCA, pccA; propionyl-CoA carboxylase alpha subunit [EC:6.4.1.3] +K01966 PCCB, pccB; propionyl-CoA carboxylase beta subunit [EC:6.4.1.3 2.1.3.15] +K01968 MCCC1, accA1; 3-methylcrotonyl-CoA carboxylase alpha subunit [EC:6.4.1.4] +K01969 MCCC2, accD1; 3-methylcrotonyl-CoA carboxylase beta subunit [EC:6.4.1.4] +K01970 accD2; acyl-CoA carboxylase subunit beta [EC:6.4.1.-] +K01971 ligD; bifunctional non-homologous end joining protein LigD [EC:6.5.1.1] +K01972 E6.5.1.2, ligA, ligB; DNA ligase (NAD+) [EC:6.5.1.2] +K01973 REL1_2; RNA-editing ligase [EC:6.5.1.3] +K01974 RTCA, rtcA; RNA 3'-terminal phosphate cyclase (ATP) [EC:6.5.1.4] +K01975 thpR; RNA 2',3'-cyclic 3'-phosphodiesterase [EC:3.1.4.58] +K01977 16SrRNA, rrs; 16S ribosomal RNA +K01978 rnpB; M1 RNA +K01979 SSUrRNA; small subunit 18S ribosomal RNA +K01980 23SrRNA, rrl; 23S ribosomal RNA +K01981 LSU5S; large subunit 5S ribosomal RNA +K01982 LSUrRNA; large subunit 28S/25S ribosomal RNA +K01983 ffs; SRP RNA +K01984 rrn4.5; chloroplast 4.5S ribosomal RNA +K01985 5SrRNA, rrf; 5S ribosomal RNA +K01986 LSU5.8S; large subunit 5.8S ribosomal RNA +K01988 A4GALT; lactosylceramide 4-alpha-galactosyltransferase [EC:2.4.1.228] +K01989 K01989; putative tryptophan/tyrosine transport system substrate-binding protein +K01990 ABC-2.A; ABC-2 type transport system ATP-binding protein +K01991 wza, gfcE; polysaccharide biosynthesis/export protein +K01992 ABC-2.P; ABC-2 type transport system permease protein +K01993 ABC-2.TX; HlyD family secretion protein +K01994 gerE; LuxR family transcriptional regulator, transcriptional regulator of spore coat protein +K01995 livG; branched-chain amino acid transport system ATP-binding protein +K01996 livF; branched-chain amino acid transport system ATP-binding protein +K01997 livH; branched-chain amino acid transport system permease protein +K01998 livM; branched-chain amino acid transport system permease protein +K01999 livK; branched-chain amino acid transport system substrate-binding protein +K02000 proV; glycine betaine/proline transport system ATP-binding protein [EC:7.6.2.9] +K02001 proW; glycine betaine/proline transport system permease protein +K02002 proX; glycine betaine/proline transport system substrate-binding protein +K02003 ABC.CD.A; putative ABC transport system ATP-binding protein +K02004 ABC.CD.P; putative ABC transport system permease protein +K02005 ABC.CD.TX; HlyD family secretion protein +K02006 cbiO; cobalt/nickel transport system ATP-binding protein +K02007 cbiM; cobalt/nickel transport system permease protein +K02008 cbiQ; cobalt/nickel transport system permease protein +K02009 cbiN; cobalt/nickel transport protein +K02010 afuC, fbpC; iron(III) transport system ATP-binding protein [EC:7.2.2.7] +K02011 afuB, fbpB; iron(III) transport system permease protein +K02012 afuA, fbpA; iron(III) transport system substrate-binding protein +K02013 ABC.FEV.A; iron complex transport system ATP-binding protein [EC:7.2.2.-] +K02014 TC.FEV.OM; iron complex outermembrane recepter protein +K02015 ABC.FEV.P; iron complex transport system permease protein +K02016 ABC.FEV.S; iron complex transport system substrate-binding protein +K02017 modC; molybdate transport system ATP-binding protein [EC:7.3.2.5] +K02018 modB; molybdate transport system permease protein +K02019 modE; molybdate transport system regulatory protein +K02020 modA; molybdate transport system substrate-binding protein +K02021 ABC.MR; putative ABC transport system ATP-binding protein +K02022 ABC.MR.TX; HlyD family secretion protein +K02024 lamB; maltoporin +K02025 ABC.MS.P; multiple sugar transport system permease protein +K02026 ABC.MS.P1; multiple sugar transport system permease protein +K02027 ABC.MS.S; multiple sugar transport system substrate-binding protein +K02028 ABC.PA.A; polar amino acid transport system ATP-binding protein [EC:7.4.2.1] +K02029 ABC.PA.P; polar amino acid transport system permease protein +K02030 ABC.PA.S; polar amino acid transport system substrate-binding protein +K02031 ddpD; peptide/nickel transport system ATP-binding protein +K02032 ddpF; peptide/nickel transport system ATP-binding protein +K02033 ABC.PE.P; peptide/nickel transport system permease protein +K02034 ABC.PE.P1; peptide/nickel transport system permease protein +K02035 ABC.PE.S; peptide/nickel transport system substrate-binding protein +K02036 pstB; phosphate transport system ATP-binding protein [EC:7.3.2.1] +K02037 pstC; phosphate transport system permease protein +K02038 pstA; phosphate transport system permease protein +K02039 phoU; phosphate transport system protein +K02040 pstS; phosphate transport system substrate-binding protein +K02041 phnC; phosphonate transport system ATP-binding protein [EC:7.3.2.2] +K02042 phnE; phosphonate transport system permease protein +K02043 phnF; GntR family transcriptional regulator, phosphonate transport system regulatory protein +K02044 phnD; phosphonate transport system substrate-binding protein +K02045 cysA; sulfate/thiosulfate transport system ATP-binding protein [EC:7.3.2.3] +K02046 cysU; sulfate/thiosulfate transport system permease protein +K02047 cysW; sulfate/thiosulfate transport system permease protein +K02048 cysP; sulfate/thiosulfate transport system substrate-binding protein +K02049 ABC.SN.A; NitT/TauT family transport system ATP-binding protein +K02050 ABC.SN.P; NitT/TauT family transport system permease protein +K02051 ABC.SN.S; NitT/TauT family transport system substrate-binding protein +K02052 ABC.SP.A; putative spermidine/putrescine transport system ATP-binding protein +K02053 ABC.SP.P; putative spermidine/putrescine transport system permease protein +K02054 ABC.SP.P1; putative spermidine/putrescine transport system permease protein +K02055 ABC.SP.S; putative spermidine/putrescine transport system substrate-binding protein +K02056 ABC.SS.A; simple sugar transport system ATP-binding protein [EC:7.5.2.-] +K02057 ABC.SS.P; simple sugar transport system permease protein +K02058 ABC.SS.S; simple sugar transport system substrate-binding protein +K02062 thiQ; thiamine transport system ATP-binding protein [EC:7.6.2.15] +K02063 thiP; thiamine transport system permease protein +K02064 thiB, tbpA; thiamine transport system substrate-binding protein +K02065 mlaF, linL, mkl; phospholipid/cholesterol/gamma-HCH transport system ATP-binding protein +K02066 mlaE, linK; phospholipid/cholesterol/gamma-HCH transport system permease protein +K02067 mlaD, linM; phospholipid/cholesterol/gamma-HCH transport system substrate-binding protein +K02068 STAR1, fetA; UDP-glucose/iron transport system ATP-binding protein +K02069 STAR2, fetB; UDP-glucose/iron transport system permease protein +K02071 metN; D-methionine transport system ATP-binding protein +K02072 metI; D-methionine transport system permease protein +K02073 metQ; D-methionine transport system substrate-binding protein +K02074 ABC.ZM.A; zinc/manganese transport system ATP-binding protein +K02075 ABC.ZM.P; zinc/manganese transport system permease protein +K02076 zurR, zur; Fur family transcriptional regulator, zinc uptake regulator +K02077 ABC.ZM.S; zinc/manganese transport system substrate-binding protein +K02078 acpP, acpM; acyl carrier protein +K02079 agaA; N-acetylgalactosamine-6-phosphate deacetylase [EC:3.5.1.25] +K02080 agaI; putative deaminase/isomerase [EC:3.5.99.-] +K02081 agaR; DeoR family transcriptional regulator, aga operon transcriptional repressor +K02082 agaS; D-galactosamine 6-phosphate deaminase/isomerase [EC:3.5.99.-] +K02083 allC; allantoate deiminase [EC:3.5.3.9] +K02084 APAF1; apoptotic protease-activating factor +K02085 APC; adenomatosis polyposis coli protein +K02086 dnaD; DNA replication protein +K02087 CDK1, CDC2; cyclin-dependent kinase 1 [EC:2.7.11.22 2.7.11.23] +K02088 CDK3; cyclin-dependent kinase 3 [EC:2.7.11.22] +K02089 CDK4; cyclin-dependent kinase 4 [EC:2.7.11.22] +K02090 CDK5; cyclin-dependent kinase 5 [EC:2.7.11.22] +K02091 CDK6; cyclin-dependent kinase 6 [EC:2.7.11.22] +K02092 apcA; allophycocyanin alpha subunit +K02093 apcB; allophycocyanin beta subunit +K02094 apcC; phycobilisome core linker protein +K02095 apcD; allophycocyanin-B +K02096 apcE; phycobilisome core-membrane linker protein +K02097 apcF; phycobilisome core component +K02098 SPIR; spire +K02099 araC; AraC family transcriptional regulator, arabinose operon regulatory protein +K02100 araE; MFS transporter, SP family, arabinose:H+ symporter +K02101 araL; sugar-phosphatase [EC:3.1.3.23] +K02103 araR; GntR family transcriptional regulator, arabinose operon transcriptional repressor +K02104 AOS; protein giant-lens (argos) +K02105 CTNNB1; catenin beta 1 +K02106 atoE; short-chain fatty acids transporter +K02107 ATPVG, ahaH, atpH; V/A-type H+/Na+-transporting ATPase subunit G/H +K02108 ATPF0A, atpB; F-type H+-transporting ATPase subunit a +K02109 ATPF0B, atpF; F-type H+-transporting ATPase subunit b +K02110 ATPF0C, atpE; F-type H+-transporting ATPase subunit c +K02111 ATPF1A, atpA; F-type H+/Na+-transporting ATPase subunit alpha [EC:7.1.2.2 7.2.2.1] +K02112 ATPF1B, atpD; F-type H+/Na+-transporting ATPase subunit beta [EC:7.1.2.2 7.2.2.1] +K02113 ATPF1D, atpH; F-type H+-transporting ATPase subunit delta +K02114 ATPF1E, atpC; F-type H+-transporting ATPase subunit epsilon +K02115 ATPF1G, atpG; F-type H+-transporting ATPase subunit gamma +K02116 atpI; ATP synthase protein I +K02117 ATPVA, ntpA, atpA; V/A-type H+/Na+-transporting ATPase subunit A [EC:7.1.2.2 7.2.2.1] +K02118 ATPVB, ntpB, atpB; V/A-type H+/Na+-transporting ATPase subunit B +K02119 ATPVC, ntpC, atpC; V/A-type H+/Na+-transporting ATPase subunit C +K02120 ATPVD, ntpD, atpD; V/A-type H+/Na+-transporting ATPase subunit D +K02121 ATPVE, ntpE, atpE; V/A-type H+/Na+-transporting ATPase subunit E +K02122 ATPVF, ntpF, atpF; V/A-type H+/Na+-transporting ATPase subunit F +K02123 ATPVI, ntpI, atpI; V/A-type H+/Na+-transporting ATPase subunit I +K02124 ATPVK, ntpK, atpK; V/A-type H+/Na+-transporting ATPase subunit K +K02125 ATPeF08, MTATP8, ATP8; F-type H+-transporting ATPase subunit 8 +K02126 ATPeF0A, MTATP6, ATP6; F-type H+-transporting ATPase subunit a +K02127 ATPeF0B, ATP5F1, ATP4; F-type H+-transporting ATPase subunit b +K02128 ATPeF0C, ATP5G, ATP9; F-type H+-transporting ATPase subunit c +K02129 ATPeF0E, ATP5I; F-type H+-transporting ATPase subunit e +K02130 ATPeF0F, ATP5J2; F-type H+-transporting ATPase subunit f +K02131 ATPeF0F6, ATP5J; F-type H+-transporting ATPase subunit 6 +K02132 ATPeF1A, ATP5A1, ATP1; F-type H+-transporting ATPase subunit alpha +K02133 ATPeF1B, ATP5B, ATP2; F-type H+-transporting ATPase subunit beta [EC:7.1.2.2] +K02134 ATPeF1D, ATP5D, ATP16; F-type H+-transporting ATPase subunit delta +K02135 ATPeF1E, ATP5E, ATP15; F-type H+-transporting ATPase subunit epsilon +K02136 ATPeF1G, ATP5C1, ATP3; F-type H+-transporting ATPase subunit gamma +K02137 ATPeF0O, ATP5O, ATP5; F-type H+-transporting ATPase subunit O +K02138 ATPeF0D, ATP5H, ATP7; F-type H+-transporting ATPase subunit d +K02139 ATPeFF, ATP17; F-type H+-transporting ATPase subunit f +K02140 ATPeFG, ATP5L, ATP20; F-type H+-transporting ATPase subunit g +K02141 ATPeFH, ATP14; F-type H+-transporting ATPase subunit h +K02142 ATPeFJ, ATP18; F-type H+-transporting ATPase subunit j +K02143 ATPeFK, ATP19; F-type H+-transporting ATPase subunit k +K02144 ATPeV1H; V-type H+-transporting ATPase subunit H +K02145 ATPeV1A, ATP6A; V-type H+-transporting ATPase subunit A [EC:7.1.2.2] +K02146 ATPeV0D, ATP6D; V-type H+-transporting ATPase subunit d +K02147 ATPeV1B, ATP6B; V-type H+-transporting ATPase subunit B +K02148 ATPeV1C, ATP6C; V-type H+-transporting ATPase subunit C +K02149 ATPeV1D, ATP6M; V-type H+-transporting ATPase subunit D +K02150 ATPeV1E, ATP6E; V-type H+-transporting ATPase subunit E +K02151 ATPeV1F, ATP6S14; V-type H+-transporting ATPase subunit F +K02152 ATPeV1G, ATP6G; V-type H+-transporting ATPase subunit G +K02153 ATPeV0E, ATP6H; V-type H+-transporting ATPase subunit e +K02154 ATPeV0A, ATP6N; V-type H+-transporting ATPase subunit a +K02155 ATPeV0C, ATP6L; V-type H+-transporting ATPase 16kDa proteolipid subunit +K02156 AUB, PIWI; aubergine +K02157 AXIN1; axin 1 +K02158 BAD; Bcl-2-antagonist of cell death +K02159 BAX; apoptosis regulator BAX +K02160 accB, bccP; acetyl-CoA carboxylase biotin carboxyl carrier protein +K02161 BCL2; apoptosis regulator Bcl-2 +K02162 BCL2A1; hematopoietic Bcl-2-related protein A1 +K02163 BCLW; apoptosis regulator BCL-W +K02164 norE; nitric oxide reductase NorE protein +K02165 DKK1_2_4; dickkopf 1/2/4 +K02166 SFRP1; secreted frizzled-related protein 1 +K02167 betI; TetR/AcrR family transcriptional regulator, transcriptional repressor of bet genes +K02168 betT, betS; choline/glycine/proline betaine transport protein +K02169 bioC; malonyl-CoA O-methyltransferase [EC:2.1.1.197] +K02170 bioH; pimeloyl-[acyl-carrier protein] methyl ester esterase [EC:3.1.1.85] +K02171 blaI; BlaI family transcriptional regulator, penicillinase repressor +K02172 blaR1; bla regulator protein blaR1 +K02173 yggC; putative kinase +K02174 BR-C; broad-complex core protein +K02175 BRN; beta-1,3-galactosyltransferase / beta-1,3-N-acetylglucosaminyltransferase [EC:2.4.1.62 2.4.1.-] +K02176 SFRP2; secreted frizzled-related protein 2 +K02177 BRU; bruno +K02178 BUB1; checkpoint serine/threonine-protein kinase [EC:2.7.11.1] +K02179 BUB2; cell cycle arrest protein BUB2 +K02180 BUB3; cell cycle arrest protein BUB3 +K02181 BFA1; cell cycle arrest protein BFA1 +K02182 caiC; carnitine-CoA ligase [EC:6.2.1.48] +K02183 CALM; calmodulin +K02184 FMN2; formin 2 +K02185 SFRP4; secreted frizzled-related protein 4 +K02186 CASP2; caspase 2 [EC:3.4.22.55] +K02187 CASP3; caspase 3 [EC:3.4.22.56] +K02188 cbiD; cobalt-precorrin-5B (C1)-methyltransferase [EC:2.1.1.195] +K02189 cbiG; cobalt-precorrin 5A hydrolase [EC:3.7.1.12] +K02190 cbiK; sirohydrochlorin cobaltochelatase [EC:4.99.1.3] +K02191 cbiT; cobalt-precorrin-6B (C15)-methyltransferase [EC:2.1.1.196] +K02192 bfd; bacterioferritin-associated ferredoxin +K02193 ccmA; heme exporter protein A [EC:7.6.2.5] +K02194 ccmB; heme exporter protein B +K02195 ccmC; heme exporter protein C +K02196 ccmD; heme exporter protein D +K02197 ccmE; cytochrome c-type biogenesis protein CcmE +K02198 ccmF; cytochrome c-type biogenesis protein CcmF +K02199 ccmG, dsbE; cytochrome c biogenesis protein CcmG, thiol:disulfide interchange protein DsbE +K02200 ccmH; cytochrome c-type biogenesis protein CcmH +K02201 E2.7.7.3B; pantetheine-phosphate adenylyltransferase [EC:2.7.7.3] +K02202 CDK7; cyclin-dependent kinase 7 [EC:2.7.11.22 2.7.11.23] +K02203 thrH; phosphoserine / homoserine phosphotransferase [EC:3.1.3.3 2.7.1.39] +K02204 thrB2; homoserine kinase type II [EC:2.7.1.39] +K02205 rocE, rocC; arginine/ornithine permease +K02206 CDK2; cyclin-dependent kinase 2 [EC:2.7.11.22] +K02207 UBE2R, UBC3, CDC34; ubiquitin-conjugating enzyme E2 R [EC:2.3.2.23] +K02208 CDK8_11; cyclin-dependent kinase 8/11 [EC:2.7.11.22 2.7.11.23] +K02209 MCM5, CDC46; DNA replication licensing factor MCM5 [EC:5.6.2.3] +K02210 MCM7, CDC47; DNA replication licensing factor MCM7 [EC:5.6.2.3] +K02211 CDK9; cyclin-dependent kinase 9 [EC:2.7.11.22 2.7.11.23] +K02212 MCM4, CDC54; DNA replication licensing factor MCM4 [EC:5.6.2.3] +K02213 CDC6; cell division control protein 6 +K02214 CDC7; cell division control protein 7 [EC:2.7.11.1] +K02215 CF2; chorion factor 2 +K02216 CHEK1; serine/threonine-protein kinase CHEK1 [EC:2.7.11.1] +K02217 ftnA, ftn; ferritin [EC:1.16.3.2] +K02218 CSNK1, CKI; casein kinase 1 [EC:2.7.11.1] +K02219 CKS1; cyclin-dependent kinase regulatory subunit CKS1 +K02220 CLB1; G2/mitotic-specific cyclin 1 +K02221 yggT; YggT family protein +K02222 SFRP5; secreted frizzled-related protein 5 +K02223 CLOCK, KAT13D; circadian locomoter output cycles kaput protein [EC:2.3.1.48] +K02224 cobB-cbiA; cobyrinic acid a,c-diamide synthase [EC:6.3.5.9 6.3.5.11] +K02225 cobC1, cobC; cobalamin biosynthesis protein CobC +K02226 cobC, phpB; alpha-ribazole phosphatase [EC:3.1.3.73] +K02227 cbiB, cobD; adenosylcobinamide-phosphate synthase [EC:6.3.1.10] +K02228 cobF; precorrin-6A synthase [EC:2.1.1.152] +K02229 cobG; precorrin-3B synthase [EC:1.14.13.83] +K02230 cobN; cobaltochelatase CobN [EC:6.6.1.2] +K02231 cobP, cobU; adenosylcobinamide kinase / adenosylcobinamide-phosphate guanylyltransferase [EC:2.7.1.156 2.7.7.62] +K02232 cobQ, cbiP; adenosylcobyric acid synthase [EC:6.3.5.10] +K02233 E2.7.8.26, cobS, cobV; adenosylcobinamide-GDP ribazoletransferase [EC:2.7.8.26] +K02234 cobW; cobalamin biosynthesis protein CobW +K02235 FZD2; frizzled 2 +K02236 comC; leader peptidase (prepilin peptidase) / N-methyltransferase [EC:3.4.23.43 2.1.1.-] +K02237 comEA; competence protein ComEA +K02238 comEC; competence protein ComEC +K02239 comER; competence protein ComER +K02240 comFA; competence protein ComFA +K02241 comFB; competence protein ComFB +K02242 comFC; competence protein ComFC +K02243 comGA; competence protein ComGA +K02244 comGB; competence protein ComGB +K02245 comGC; competence protein ComGC +K02246 comGD; competence protein ComGD +K02247 comGE; competence protein ComGE +K02248 comGF; competence protein ComGF +K02249 comGG; competence protein ComGG +K02250 comK; competence protein ComK +K02251 comQ; competence protein ComQ +K02252 comS; competence protein ComS +K02253 comX; competence protein ComX +K02254 comZ; competence protein ComZ +K02255 ftnB; ferritin-like protein 2 +K02256 COX1; cytochrome c oxidase subunit 1 [EC:7.1.1.9] +K02257 COX10, ctaB, cyoE; heme o synthase [EC:2.5.1.141] +K02258 COX11, ctaG; cytochrome c oxidase assembly protein subunit 11 +K02259 COX15, ctaA; heme a synthase [EC:1.17.99.9] +K02260 COX17; cytochrome c oxidase assembly protein subunit 17 +K02261 COX2; cytochrome c oxidase subunit 2 +K02262 COX3; cytochrome c oxidase subunit 3 +K02263 COX4; cytochrome c oxidase subunit 4 +K02264 COX5A; cytochrome c oxidase subunit 5a +K02265 COX5B; cytochrome c oxidase subunit 5b +K02266 COX6A; cytochrome c oxidase subunit 6a +K02267 COX6B; cytochrome c oxidase subunit 6b +K02268 COX6C; cytochrome c oxidase subunit 6c +K02269 COX7; cytochrome c oxidase subunit 7 +K02270 COX7A; cytochrome c oxidase subunit 7a +K02271 COX7B; cytochrome c oxidase subunit 7b +K02272 COX7C; cytochrome c oxidase subunit 7c +K02273 COX8; cytochrome c oxidase subunit 8 +K02274 coxA, ctaD; cytochrome c oxidase subunit I [EC:7.1.1.9] +K02275 coxB, ctaC; cytochrome c oxidase subunit II [EC:7.1.1.9] +K02276 coxC, ctaE; cytochrome c oxidase subunit III [EC:7.1.1.9] +K02277 coxD, ctaF; cytochrome c oxidase subunit IV [EC:7.1.1.9] +K02278 cpaA, tadV; prepilin peptidase CpaA [EC:3.4.23.43] +K02279 cpaB, rcpC; pilus assembly protein CpaB +K02280 cpaC, rcpA; pilus assembly protein CpaC +K02281 cpaD; pilus assembly protein CpaD +K02282 cpaE, tadZ; pilus assembly protein CpaE +K02283 cpaF, tadA; pilus assembly protein CpaF [EC:7.4.2.8] +K02284 cpcA; phycocyanin alpha chain +K02285 cpcB; phycocyanin beta chain +K02286 cpcC; phycocyanin-associated rod linker protein +K02287 cpcD; phycocyanin-associated, rod +K02288 cpcE; phycocyanobilin lyase subunit alpha [EC:4.4.1.32] +K02289 cpcF; phycocyanobilin lyase subunit beta [EC:4.4.1.32] +K02290 cpcG; phycobilisome rod-core linker protein +K02291 crtB; 15-cis-phytoene synthase [EC:2.5.1.32] +K02292 crtO; beta-carotene ketolase (CrtO type) +K02293 PDS, crtP; 15-cis-phytoene desaturase [EC:1.3.5.5] +K02294 crtR; beta-carotene hydroxylase [EC:1.14.13.-] +K02295 CRY; cryptochrome +K02296 ARNTL, BMAL1, CYC; aryl hydrocarbon receptor nuclear translocator-like protein 1 +K02297 cyoA; cytochrome o ubiquinol oxidase subunit II [EC:7.1.1.3] +K02298 cyoB; cytochrome o ubiquinol oxidase subunit I [EC:7.1.1.3] +K02299 cyoC; cytochrome o ubiquinol oxidase subunit III +K02300 cyoD; cytochrome o ubiquinol oxidase subunit IV +K02302 cysG; uroporphyrin-III C-methyltransferase / precorrin-2 dehydrogenase / sirohydrochlorin ferrochelatase [EC:2.1.1.107 1.3.1.76 4.99.1.4] +K02303 cobA; uroporphyrin-III C-methyltransferase [EC:2.1.1.107] +K02304 MET8; precorrin-2 dehydrogenase / sirohydrochlorin ferrochelatase [EC:1.3.1.76 4.99.1.4] +K02305 norC; nitric oxide reductase subunit C +K02306 DALLY; dally +K02307 DAM1; DASH complex subunit DAM1 +K02308 DAXX; death-associated protein 6 +K02309 DBF4; regulatory subunit for Cdc7p protein kinase +K02310 DFFA, DFF45; DNA fragmentation factor, 45 kD, alpha subunit +K02311 DFFB, DFF40; DNA fragmentation factor, 40 kD, beta subunit [EC:3.-.-.-] +K02313 dnaA; chromosomal replication initiator protein +K02314 dnaB; replicative DNA helicase [EC:5.6.2.3] +K02315 dnaC; DNA replication protein DnaC +K02316 dnaG; DNA primase [EC:2.7.7.101] +K02317 dnaT; DNA replication protein DnaT +K02318 COASY; phosphopantetheine adenylyltransferase / dephospho-CoA kinase [EC:2.7.7.3 2.7.1.24] +K02319 pol; DNA polymerase, archaea type [EC:2.7.7.7] +K02320 POLA1; DNA polymerase alpha subunit A [EC:2.7.7.7] +K02321 POLA2; DNA polymerase alpha subunit B +K02322 polC; DNA polymerase II large subunit [EC:2.7.7.7] +K02323 polB; DNA polymerase II small subunit [EC:2.7.7.7] +K02324 POLE; DNA polymerase epsilon subunit 1 [EC:2.7.7.7] +K02325 POLE2; DNA polymerase epsilon subunit 2 [EC:2.7.7.7] +K02326 POLE3; DNA polymerase epsilon subunit 3 [EC:2.7.7.7] +K02327 POLD1; DNA polymerase delta subunit 1 [EC:2.7.7.7] +K02328 POLD2; DNA polymerase delta subunit 2 +K02329 FZD3; frizzled 3 +K02330 POLB; DNA polymerase beta [EC:2.7.7.7 4.2.99.-] +K02331 POL5, MYBBP1A; DNA polymerase phi [EC:2.7.7.7] +K02332 POLG; DNA polymerase gamma 1 [EC:2.7.7.7] +K02333 POLG2; DNA polymerase gamma 2 +K02334 dpo; DNA polymerase bacteriophage-type [EC:2.7.7.7] +K02335 polA; DNA polymerase I [EC:2.7.7.7] +K02336 polB; DNA polymerase II [EC:2.7.7.7] +K02337 dnaE; DNA polymerase III subunit alpha [EC:2.7.7.7] +K02338 dnaN; DNA polymerase III subunit beta [EC:2.7.7.7] +K02339 holC; DNA polymerase III subunit chi [EC:2.7.7.7] +K02340 holA; DNA polymerase III subunit delta [EC:2.7.7.7] +K02341 holB; DNA polymerase III subunit delta' [EC:2.7.7.7] +K02342 dnaQ; DNA polymerase III subunit epsilon [EC:2.7.7.7] +K02343 dnaX; DNA polymerase III subunit gamma/tau [EC:2.7.7.7] +K02344 holD; DNA polymerase III subunit psi [EC:2.7.7.7] +K02345 holE; DNA polymerase III subunit theta [EC:2.7.7.7] +K02346 dinB; DNA polymerase IV [EC:2.7.7.7] +K02347 polX, dpx; DNA polymerase (family X) +K02348 elaA; ElaA protein +K02349 POLQ; DNA polymerase theta [EC:2.7.7.7] +K02350 REV3L, POLZ; DNA polymerase zeta [EC:2.7.7.7] +K02351 K02351; putative membrane protein +K02352 drp35; lactonase [EC:3.1.1.-] +K02353 DVL; segment polarity protein dishevelled +K02354 FZD4, fz4, CD344; frizzled 4 +K02355 fusA, GFM, EFG; elongation factor G +K02356 efp; elongation factor P +K02357 tsf, TSFM; elongation factor Ts +K02358 tuf, TUFM; elongation factor Tu +K02359 EGH; beta-1,4-mannosyltransferase [EC:2.4.1.-] +K02360 ENC; a component of the cytoplasm (encore) +K02361 entC; isochorismate synthase [EC:5.4.4.2] +K02362 entD, pptT; enterobactin synthetase component D / holo-[acyl-carrier protein] synthase [EC:6.3.2.14 2.7.8.7] +K02363 entE, dhbE, vibE, mxcE; 2,3-dihydroxybenzoate---[aryl-carrier protein] ligase [EC:6.3.2.14 6.2.1.71] +K02364 entF; L-serine---[L-seryl-carrier protein] ligase [EC:6.3.2.14 6.2.1.72] +K02365 ESP1; separase [EC:3.4.22.49] +K02366 EXT1; glucuronyl/N-acetylglucosaminyl transferase EXT1 [EC:2.4.1.224 2.4.1.225] +K02367 EXT2; glucuronyl/N-acetylglucosaminyl transferase EXT2 [EC:2.4.1.224 2.4.1.225] +K02368 EXTL1; alpha-1,4-N-acetylglucosaminyltransferase EXTL1 [EC:2.4.1.224] +K02369 EXTL2; alpha-1,4-N-acetylglucosaminyltransferase EXTL2 [EC:2.4.1.223] +K02370 EXTL3; alpha-1,4-N-acetylglucosaminyltransferase EXTL3 [EC:2.4.1.223 2.4.1.224] +K02371 fabK; enoyl-[acyl-carrier protein] reductase II [EC:1.3.1.9] +K02372 fabZ; 3-hydroxyacyl-[acyl-carrier-protein] dehydratase [EC:4.2.1.59] +K02373 FADD; FAS-associated death domain protein +K02374 PTPN13, FAP-1; tyrosine-protein phosphatase non-receptor type 13 +K02375 FZD5_8, fz2; frizzled 5/8 +K02376 FZD6; frizzled 6 +K02377 TSTA3, fcl; GDP-L-fucose synthase [EC:1.1.1.271] +K02379 fdhD; FdhD protein +K02380 fdhE; FdhE protein +K02381 fdrA; FdrA protein +K02382 flbA; flagellar protein FlbA +K02383 flbB; flagellar protein FlbB +K02384 flbC; flagellar protein FlbC +K02385 flbD; flagellar protein FlbD +K02386 flgA; flagellar basal body P-ring formation protein FlgA +K02387 flgB; flagellar basal-body rod protein FlgB +K02388 flgC; flagellar basal-body rod protein FlgC +K02389 flgD; flagellar basal-body rod modification protein FlgD +K02390 flgE; flagellar hook protein FlgE +K02391 flgF; flagellar basal-body rod protein FlgF +K02392 flgG; flagellar basal-body rod protein FlgG +K02393 flgH; flagellar L-ring protein FlgH +K02394 flgI; flagellar P-ring protein FlgI +K02395 flgJ; peptidoglycan hydrolase FlgJ +K02396 flgK; flagellar hook-associated protein 1 +K02397 flgL; flagellar hook-associated protein 3 FlgL +K02398 flgM; negative regulator of flagellin synthesis FlgM +K02399 flgN; flagellar biosynthesis protein FlgN +K02400 flhA; flagellar biosynthesis protein FlhA +K02401 flhB; flagellar biosynthesis protein FlhB +K02402 flhC; flagellar transcriptional activator FlhC +K02403 flhD; flagellar transcriptional activator FlhD +K02404 flhF; flagellar biosynthesis protein FlhF +K02405 fliA, whiG; RNA polymerase sigma factor FliA +K02406 fliC, hag; flagellin +K02407 fliD; flagellar hook-associated protein 2 +K02408 fliE; flagellar hook-basal body complex protein FliE +K02409 fliF; flagellar M-ring protein FliF +K02410 fliG; flagellar motor switch protein FliG +K02411 fliH; flagellar assembly protein FliH +K02412 fliI; flagellum-specific ATP synthase [EC:7.4.2.8] +K02413 fliJ; flagellar protein FliJ +K02414 fliK; flagellar hook-length control protein FliK +K02415 fliL; flagellar protein FliL +K02416 fliM; flagellar motor switch protein FliM +K02417 fliN; flagellar motor switch protein FliN +K02418 fliO, fliZ; flagellar protein FliO/FliZ +K02419 fliP; flagellar biosynthesis protein FliP +K02420 fliQ; flagellar biosynthesis protein FliQ +K02421 fliR; flagellar biosynthesis protein FliR +K02422 fliS; flagellar secretion chaperone FliS +K02423 fliT; flagellar protein FliT +K02424 tcyA, tcyJ, fliY; L-cystine transport system substrate-binding protein +K02425 fliZ; regulator of sigma S factor FliZ +K02426 sufE; cysteine desulfuration protein SufE +K02427 rlmE, rrmJ, ftsJ; 23S rRNA (uridine2552-2'-O)-methyltransferase [EC:2.1.1.166] +K02429 fucP; MFS transporter, FHS family, L-fucose permease +K02430 fucR; DeoR family transcriptional regulator, L-fucose operon activator +K02431 fucU, FUOM; L-fucose mutarotase [EC:5.1.3.29] +K02432 FZD1_7, fz; frizzled 1/7 +K02433 gatA, QRSL1; aspartyl-tRNA(Asn)/glutamyl-tRNA(Gln) amidotransferase subunit A [EC:6.3.5.6 6.3.5.7] +K02434 gatB, PET112; aspartyl-tRNA(Asn)/glutamyl-tRNA(Gln) amidotransferase subunit B [EC:6.3.5.6 6.3.5.7] +K02435 gatC, GATC; aspartyl-tRNA(Asn)/glutamyl-tRNA(Gln) amidotransferase subunit C [EC:6.3.5.6 6.3.5.7] +K02436 gatR; DeoR family transcriptional regulator, galactitol utilization operon repressor +K02437 gcvH, GCSH; glycine cleavage system H protein +K02438 glgX; glycogen debranching enzyme [EC:3.2.1.196] +K02439 glpE; thiosulfate sulfurtransferase [EC:2.8.1.1] +K02440 glpF; glycerol uptake facilitator +K02441 glpG; rhomboid protease GlpG [EC:3.4.21.105] +K02442 glpM; membrane protein GlpM +K02443 glpP; glycerol uptake operon antiterminator +K02444 glpR; DeoR family transcriptional regulator, glycerol-3-phosphate regulon repressor +K02445 glpT; MFS transporter, OPA family, glycerol-3-phosphate transporter +K02446 glpX; fructose-1,6-bisphosphatase II [EC:3.1.3.11] +K02447 GRK; protein gruken +K02448 norD; nitric oxide reductase NorD protein +K02449 CDK10; cyclin-dependent kinase 10 [EC:2.7.11.22] +K02450 gspA; general secretion pathway protein A +K02451 gspB; general secretion pathway protein B +K02452 gspC; general secretion pathway protein C +K02453 gspD; general secretion pathway protein D +K02454 gspE; general secretion pathway protein E [EC:7.4.2.8] +K02455 gspF; general secretion pathway protein F +K02456 gspG; general secretion pathway protein G +K02457 gspH; general secretion pathway protein H +K02458 gspI; general secretion pathway protein I +K02459 gspJ; general secretion pathway protein J +K02460 gspK; general secretion pathway protein K +K02461 gspL; general secretion pathway protein L +K02462 gspM; general secretion pathway protein M +K02463 gspN; general secretion pathway protein N +K02464 gspO; general secretion pathway protein O [EC:3.4.23.43 2.1.1.-] +K02465 gspS; general secretion pathway protein S +K02466 gutM; glucitol operon activator protein +K02467 gutQ; arabinose 5-phosphate isomerase [EC:5.3.1.13] +K02468 srlR, gutR; DeoR family transcriptional regulator, glucitol operon repressor +K02469 gyrA; DNA gyrase subunit A [EC:5.6.2.2] +K02470 gyrB; DNA gyrase subunit B [EC:5.6.2.2] +K02471 bacA, bclA; vitamin B12/bleomycin/antimicrobial peptide transport system ATP-binding/permease protein +K02472 wecC; UDP-N-acetyl-D-mannosaminuronic acid dehydrogenase [EC:1.1.1.336] +K02473 wbpP; UDP-N-acetylglucosamine/UDP-N-acetylgalactosamine 4-epimerase [EC:5.1.3.7 5.1.3.-] +K02474 wbpO; UDP-N-acetyl-D-glucosamine/UDP-N-acetyl-D-galactosamine dehydrogenase [EC:1.1.1.136 1.1.1.-] +K02475 K02475; two-component system, CitB family, response regulator +K02476 K02476; two-component system, CitB family, sensor kinase [EC:2.7.13.3] +K02477 K02477; two-component system, LytTR family, response regulator +K02478 K02478; two-component system, LytTR family, sensor kinase [EC:2.7.13.3] +K02479 K02479; two-component system, NarL family, response regulator +K02480 K02480; two-component system, NarL family, sensor kinase [EC:2.7.13.3] +K02481 flgR; two-component system, NtrC family, response regulator +K02482 flgS; two-component system, NtrC family, sensor kinase [EC:2.7.13.3] +K02483 K02483; two-component system, OmpR family, response regulator +K02484 K02484; two-component system, OmpR family, sensor kinase [EC:2.7.13.3] +K02485 rssB, hnr; two-component system, response regulator +K02486 K02486; two-component system, sensor kinase [EC:2.7.13.3] +K02488 pleD; two-component system, cell cycle response regulator [EC:2.7.7.65] +K02489 hk1; two-component system, glycerol uptake and utilization sensor kinase [EC:2.7.13.3] +K02490 spo0F; two-component system, response regulator, stage 0 sporulation protein F +K02491 kinA; two-component system, sporulation sensor kinase A [EC:2.7.13.3] +K02492 hemA; glutamyl-tRNA reductase [EC:1.2.1.70] +K02493 hemK, prmC, HEMK; release factor glutamine methyltransferase [EC:2.1.1.297] +K02494 lolB; outer membrane lipoprotein LolB +K02495 hemN, hemZ; oxygen-independent coproporphyrinogen III oxidase [EC:1.3.98.3] +K02496 hemX; uroporphyrin-III C-methyltransferase [EC:2.1.1.107] +K02497 hemX; HemX protein +K02498 hemY; HemY protein +K02499 yabN; tetrapyrrole methylase family protein / MazG family protein +K02500 hisF; imidazole glycerol-phosphate synthase subunit HisF [EC:4.3.2.10] +K02501 hisH; imidazole glycerol-phosphate synthase subunit HisH [EC:4.3.2.10] +K02502 hisZ; ATP phosphoribosyltransferase regulatory subunit +K02503 HINT1_2, hinT, hit; histidine triad (HIT) family protein [EC:3.9.1.-] +K02504 hofB; protein transport protein HofB +K02505 hofC; protein transport protein HofC +K02506 hofD, hopD; leader peptidase HopD [EC:3.4.23.43] +K02507 hofQ; protein transport protein HofQ +K02508 hpaA; AraC family transcriptional regulator, 4-hydroxyphenylacetate 3-monooxygenase operon regulatory protein +K02509 hpaH; 2-oxo-hept-3-ene-1,7-dioate hydratase [EC:4.2.1.-] +K02510 hpaI, hpcH; 4-hydroxy-2-oxoheptanedioate aldolase [EC:4.1.2.52] +K02511 hpaX; MFS transporter, ACS family, 4-hydroxyphenylacetate permease +K02512 HRK; activator of apoptosis harakiri +K02513 HS2ST1; heparan sulfate 2-O-sulfotransferase HS2ST1 [EC:2.8.2.-] +K02514 HS6ST1; heparan sulfate 6-O-sulfotransferase HS6ST1 [EC:2.8.2.-] +K02515 HSL1; serine/threonine-protein kinase HSL1, negative regulator of Swe1 kinase [EC:2.7.11.-] +K02516 PRMT5, HSL7; type II protein arginine methyltransferase [EC:2.1.1.320] +K02517 lpxL, htrB; Kdo2-lipid IVA lauroyltransferase/acyltransferase [EC:2.3.1.241 2.3.1.-] +K02518 infA; translation initiation factor IF-1 +K02519 infB, MTIF2; translation initiation factor IF-2 +K02520 infC, MTIF3; translation initiation factor IF-3 +K02521 ilvY; LysR family transcriptional regulator, positive regulator for ilvC +K02523 ispB; octaprenyl-diphosphate synthase [EC:2.5.1.90] +K02524 K10; DNA binding protein (fs(1)K10, female sterile(1)K10) +K02525 kdgR; LacI family transcriptional regulator, kdg operon repressor +K02526 kdgT; 2-keto-3-deoxygluconate permease +K02527 kdtA, waaA; 3-deoxy-D-manno-octulosonic-acid transferase [EC:2.4.99.12 2.4.99.13 2.4.99.14 2.4.99.15] +K02528 ksgA; 16S rRNA (adenine1518-N6/adenine1519-N6)-dimethyltransferase [EC:2.1.1.182] +K02529 galR; LacI family transcriptional regulator, galactose operon repressor +K02530 lacR; DeoR family transcriptional regulator, lactose phosphotransferase system repressor +K02531 lacT; transcriptional antiterminator +K02532 lacY; MFS transporter, OHS family, lactose permease +K02533 lasT; tRNA/rRNA methyltransferase [EC:2.1.1.-] +K02535 lpxC; UDP-3-O-[3-hydroxymyristoyl] N-acetylglucosamine deacetylase [EC:3.5.1.108] +K02536 lpxD; UDP-3-O-[3-hydroxymyristoyl] glucosamine N-acyltransferase [EC:2.3.1.191] +K02537 MAD2; mitotic spindle assembly checkpoint protein MAD2 +K02538 manR; mannose operon transcriptional activator +K02539 MCL1; myeloid leukemia cell differntiation protein MCL-1 +K02540 MCM2; DNA replication licensing factor MCM2 [EC:5.6.2.3] +K02541 MCM3; DNA replication licensing factor MCM3 [EC:5.6.2.3] +K02542 MCM6; DNA replication licensing factor MCM6 [EC:5.6.2.3] +K02543 MEC1; cell cycle checkpoint protein MEC1 +K02544 MEC3; G2-specific checkpoint protein +K02545 mecA; penicillin-binding protein 2 prime [EC:3.4.16.4] +K02546 mecI; BlaI family transcriptional regulator, methicillin resistance regulatory protein +K02547 mecR1; methicillin resistance protein +K02548 menA; 1,4-dihydroxy-2-naphthoate polyprenyltransferase [EC:2.5.1.74] +K02549 menC; o-succinylbenzoate synthase [EC:4.2.1.113] +K02550 glcA; glycolate permease +K02551 menD; 2-succinyl-5-enolpyruvyl-6-hydroxy-3-cyclohexene-1-carboxylate synthase [EC:2.2.1.9] +K02552 menF; menaquinone-specific isochorismate synthase [EC:5.4.4.2] +K02553 rraA, menG; regulator of ribonuclease activity A +K02554 mhpD; 2-keto-4-pentenoate hydratase [EC:4.2.1.80] +K02555 MIH1; M-phase inducer tyrosine phosphatase [EC:3.1.3.48] +K02556 motA; chemotaxis protein MotA +K02557 motB; chemotaxis protein MotB +K02558 mpl; UDP-N-acetylmuramate: L-alanyl-gamma-D-glutamyl-meso-diaminopimelate ligase [EC:6.3.2.45] +K02560 lpxM, msbB; lauroyl-Kdo2-lipid IVA myristoyltransferase [EC:2.3.1.243] +K02561 BOK; Bcl-2-related ovarian killer protein +K02562 mtlR; mannitol operon repressor +K02563 murG; UDP-N-acetylglucosamine--N-acetylmuramyl-(pentapeptide) pyrophosphoryl-undecaprenol N-acetylglucosamine transferase [EC:2.4.1.227] +K02564 nagB, GNPDA; glucosamine-6-phosphate deaminase [EC:3.5.99.6] +K02565 nagC; N-acetylglucosamine repressor +K02566 nagD; 5'-nucleotidase [EC:3.1.3.5] +K02567 napA; nitrate reductase (cytochrome) [EC:1.9.6.1] +K02568 napB; nitrate reductase (cytochrome), electron transfer subunit +K02569 napC; cytochrome c-type protein NapC +K02570 napD; periplasmic nitrate reductase NapD +K02571 napE; periplasmic nitrate reductase NapE +K02572 napF; ferredoxin-type protein NapF +K02573 napG; ferredoxin-type protein NapG +K02574 napH; ferredoxin-type protein NapH +K02575 NRT2, narK, nrtP, nasA; MFS transporter, NNP family, nitrate/nitrite transporter +K02576 NDST1; heparan sulfate N-deacetylase/N-sulfotransferase NDST1 [EC:3.5.1.- 2.8.2.8] +K02577 NDST2; heparan sulfate N-deacetylase/N-sulfotransferase NDST2 [EC:3.5.1.- 2.8.2.8] +K02578 NDST3; heparan sulfate N-deacetylase/N-sulfotransferase NDST3 [EC:3.5.1.- 2.8.2.8] +K02579 NDST4; heparan sulfate N-deacetylase/N-sulfotransferase NDST4 [EC:3.5.1.- 2.8.2.8] +K02580 NFKB1; nuclear factor NF-kappa-B p105 subunit +K02581 NFKBIB; NF-kappa-B inhibitor beta +K02582 NGFB; nerve growth factor, beta +K02583 NGFR, TNFRSF16, CD271; tumor necrosis factor receptor superfamily member 16 +K02584 nifA; Nif-specific regulatory protein +K02585 nifB; nitrogen fixation protein NifB +K02586 nifD; nitrogenase molybdenum-iron protein alpha chain [EC:1.18.6.1] +K02587 nifE; nitrogenase molybdenum-cofactor synthesis protein NifE +K02588 nifH; nitrogenase iron protein NifH +K02589 nifHD1, nifI1; nitrogen regulatory protein PII 1 +K02590 nifHD2, nifI2; nitrogen regulatory protein PII 2 +K02591 nifK; nitrogenase molybdenum-iron protein beta chain [EC:1.18.6.1] +K02592 nifN; nitrogenase molybdenum-iron protein NifN +K02593 nifT; nitrogen fixation protein NifT +K02594 nifV; homocitrate synthase NifV [EC:2.3.3.14] +K02595 nifW; nitrogenase-stabilizing/protective protein +K02596 nifX; nitrogen fixation protein NifX +K02597 nifZ; nitrogen fixation protein NifZ +K02598 nirC; nitrite transporter +K02599 NOTCH1; Notch 1 +K02600 nusA; transcription termination/antitermination protein NusA +K02601 nusG; transcription termination/antitermination protein NusG +K02602 CPEB, ORB; cytoplasmic polyadenylation element-binding protein +K02603 ORC1; origin recognition complex subunit 1 +K02604 ORC2; origin recognition complex subunit 2 +K02605 ORC3; origin recognition complex subunit 3 +K02606 ORC4; origin recognition complex subunit 4 +K02607 ORC5; origin recognition complex subunit 5 +K02608 ORC6; origin recognition complex subunit 6 +K02609 paaA; ring-1,2-phenylacetyl-CoA epoxidase subunit PaaA [EC:1.14.13.149] +K02610 paaB; ring-1,2-phenylacetyl-CoA epoxidase subunit PaaB +K02611 paaC; ring-1,2-phenylacetyl-CoA epoxidase subunit PaaC [EC:1.14.13.149] +K02612 paaD; ring-1,2-phenylacetyl-CoA epoxidase subunit PaaD +K02613 paaE; ring-1,2-phenylacetyl-CoA epoxidase subunit PaaE +K02614 paaI; acyl-CoA thioesterase [EC:3.1.2.-] +K02615 paaJ; 3-oxo-5,6-didehydrosuberyl-CoA/3-oxoadipyl-CoA thiolase [EC:2.3.1.223 2.3.1.174] +K02616 paaX; phenylacetic acid degradation operon negative regulatory protein +K02617 paaY; phenylacetic acid degradation protein +K02618 paaZ; oxepin-CoA hydrolase / 3-oxo-5,6-dehydrosuberyl-CoA semialdehyde dehydrogenase [EC:3.3.2.12 1.2.1.91] +K02619 pabC; 4-amino-4-deoxychorismate lyase [EC:4.1.3.38] +K02620 TCF7, TCF-1; transcription factor 7 +K02621 parC; topoisomerase IV subunit A [EC:5.6.2.2] +K02622 parE; topoisomerase IV subunit B [EC:5.6.2.2] +K02623 pcaQ; LysR family transcriptional regulator, pca operon transcriptional activator +K02624 pcaR; IclR family transcriptional regulator, pca regulon regulatory protein +K02625 pcaT; MFS transporter, MHS family, dicarboxylic acid transporter PcaT +K02626 pdaD; arginine decarboxylase [EC:4.1.1.19] +K02627 PDS1; cell cycle regulator +K02628 pecA; phycoerythrocyanin alpha chain +K02629 pecB; phycoerythrocyanin beta chain +K02630 pecC; phycoerythrocyanin-associated rod linker protein +K02631 pecE; phycoerythrocyanin alpha-cysteine-84 phycoviolobilin lyase/isomerase subunit PecE [EC:4.4.1.31] +K02632 pecF; phycoerythrocyanin alpha-cysteine-84 phycoviolobilin lyase/isomerase subunit PecF [EC:4.4.1.31] +K02633 PER2; period circadian protein 2 +K02634 petA; apocytochrome f +K02635 petB; cytochrome b6 +K02636 petC; cytochrome b6-f complex iron-sulfur subunit [EC:7.1.1.6] +K02637 petD; cytochrome b6-f complex subunit 4 +K02638 petE; plastocyanin +K02639 petF; ferredoxin +K02640 petG; cytochrome b6-f complex subunit 5 +K02641 petH; ferredoxin--NADP+ reductase [EC:1.18.1.2] +K02642 petL; cytochrome b6-f complex subunit 6 +K02643 petM; cytochrome b6-f complex subunit 7 +K02646 PHO2; regulatory protein PHO2 +K02647 cdaR; carbohydrate diacid regulator +K02649 PIK3R1_2_3; phosphoinositide-3-kinase regulatory subunit alpha/beta/delta +K02650 pilA; type IV pilus assembly protein PilA +K02651 flp, pilA; pilus assembly protein Flp/PilA +K02652 pilB; type IV pilus assembly protein PilB +K02653 pilC; type IV pilus assembly protein PilC +K02654 pilD, pppA; leader peptidase (prepilin peptidase) / N-methyltransferase [EC:3.4.23.43 2.1.1.-] +K02655 pilE; type IV pilus assembly protein PilE +K02656 pilF; type IV pilus assembly protein PilF +K02657 pilG; twitching motility two-component system response regulator PilG +K02658 pilH; twitching motility two-component system response regulator PilH +K02659 pilI; twitching motility protein PilI +K02660 pilJ; twitching motility protein PilJ +K02661 pilK; type IV pilus assembly protein PilK +K02662 pilM; type IV pilus assembly protein PilM +K02663 pilN; type IV pilus assembly protein PilN +K02664 pilO; type IV pilus assembly protein PilO +K02665 pilP; type IV pilus assembly protein PilP +K02666 pilQ; type IV pilus assembly protein PilQ +K02667 pilR, pehR; two-component system, NtrC family, response regulator PilR +K02668 pilS, pehS; two-component system, NtrC family, sensor histidine kinase PilS [EC:2.7.13.3] +K02669 pilT; twitching motility protein PilT +K02670 pilU; twitching motility protein PilU +K02671 pilV; type IV pilus assembly protein PilV +K02672 pilW; type IV pilus assembly protein PilW +K02673 pilX; type IV pilus assembly protein PilX +K02674 pilY1; type IV pilus assembly protein PilY1 +K02675 pilY2; type IV pilus assembly protein PilY2 +K02676 pilZ; type IV pilus assembly protein PilZ +K02677 PRKCA; classical protein kinase C alpha type [EC:2.7.11.13] +K02678 ETS1, pnt; C-ets-1 +K02679 ppdA; prepilin peptidase dependent protein A +K02680 ppdB; prepilin peptidase dependent protein B +K02681 ppdC; prepilin peptidase dependent protein C +K02682 ppdD; prepilin peptidase dependent protein D +K02683 priS, pri1, priA; DNA primase small subunit [EC:2.7.7.102] +K02684 PRI1; DNA primase small subunit [EC:2.7.7.102] +K02685 PRI2; DNA primase large subunit +K02686 priB; primosomal replication protein N +K02687 prmA; ribosomal protein L11 methyltransferase [EC:2.1.1.-] +K02688 prpR; transcriptional regulator, propionate catabolism operon regulatory protein +K02689 psaA; photosystem I P700 chlorophyll a apoprotein A1 [EC:1.97.1.12] +K02690 psaB; photosystem I P700 chlorophyll a apoprotein A2 [EC:1.97.1.12] +K02691 psaC; photosystem I iron-sulfur center [EC:1.97.1.12] +K02692 psaD; photosystem I subunit II +K02693 psaE; photosystem I subunit IV +K02694 psaF; photosystem I subunit III +K02695 psaH; photosystem I subunit VI +K02696 psaI; photosystem I subunit VIII +K02697 psaJ; photosystem I subunit IX +K02698 psaK; photosystem I subunit X +K02699 psaL; photosystem I subunit XI +K02700 psaM; photosystem I subunit XII +K02701 psaN; photosystem I subunit PsaN +K02702 psaX; photosystem I 4.8kDa protein +K02703 psbA; photosystem II P680 reaction center D1 protein [EC:1.10.3.9] +K02704 psbB; photosystem II CP47 chlorophyll apoprotein +K02705 psbC; photosystem II CP43 chlorophyll apoprotein +K02706 psbD; photosystem II P680 reaction center D2 protein [EC:1.10.3.9] +K02707 psbE; photosystem II cytochrome b559 subunit alpha +K02708 psbF; photosystem II cytochrome b559 subunit beta +K02709 psbH; photosystem II PsbH protein +K02710 psbI; photosystem II PsbI protein +K02711 psbJ; photosystem II PsbJ protein +K02712 psbK; photosystem II PsbK protein +K02713 psbL; photosystem II PsbL protein +K02714 psbM; photosystem II PsbM protein +K02715 psbN; PsbN protein +K02716 psbO; photosystem II oxygen-evolving enhancer protein 1 +K02717 psbP; photosystem II oxygen-evolving enhancer protein 2 +K02718 psbT; photosystem II PsbT protein +K02719 psbU; photosystem II PsbU protein +K02720 psbV; photosystem II cytochrome c550 +K02721 psbW; photosystem II PsbW protein +K02722 psbX; photosystem II PsbX protein +K02723 psbY; photosystem II PsbY protein +K02724 psbZ; photosystem II PsbZ protein +K02725 PSMA1; 20S proteasome subunit alpha 6 [EC:3.4.25.1] +K02726 PSMA2; 20S proteasome subunit alpha 2 [EC:3.4.25.1] +K02727 PSMA3; 20S proteasome subunit alpha 7 [EC:3.4.25.1] +K02728 PSMA4; 20S proteasome subunit alpha 3 [EC:3.4.25.1] +K02729 PSMA5; 20S proteasome subunit alpha 5 [EC:3.4.25.1] +K02730 PSMA6; 20S proteasome subunit alpha 1 [EC:3.4.25.1] +K02731 PSMA7; 20S proteasome subunit alpha 4 [EC:3.4.25.1] +K02732 PSMB1; 20S proteasome subunit beta 6 [EC:3.4.25.1] +K02733 PSMB10, MECL1; 20S proteasome subunit beta 10 [EC:3.4.25.1] +K02734 PSMB2; 20S proteasome subunit beta 4 [EC:3.4.25.1] +K02735 PSMB3; 20S proteasome subunit beta 3 [EC:3.4.25.1] +K02736 PSMB4; 20S proteasome subunit beta 7 [EC:3.4.25.1] +K02737 PSMB5; 20S proteasome subunit beta 5 [EC:3.4.25.1] +K02738 PSMB6; 20S proteasome subunit beta 1 [EC:3.4.25.1] +K02739 PSMB7; 20S proteasome subunit beta 2 [EC:3.4.25.1] +K02740 PSMB8, LMP7; 20S proteasome subunit beta 8 [EC:3.4.25.1] +K02741 PSMB9, LMP2; 20S proteasome subunit beta 9 [EC:3.4.25.1] +K02742 sprT; SprT protein +K02744 agaF; N-acetylgalactosamine PTS system EIIA component [EC:2.7.1.-] +K02745 agaV; N-acetylgalactosamine PTS system EIIB component [EC:2.7.1.-] +K02746 agaW; N-acetylgalactosamine PTS system EIIC component +K02747 agaE; N-acetylgalactosamine PTS system EIID component +K02750 glvC, malP, aglA; alpha-glucoside PTS system EIICB component [EC:2.7.1.208 2.7.1.-] +K02753 ascF; beta-glucoside (arbutin/salicin/cellobiose) PTS system EIICB component [EC:2.7.1.-] +K02755 bglFa; beta-glucoside PTS system EIIA component [EC:2.7.1.-] +K02757 bglF, bglP; beta-glucoside PTS system EIICBA component [EC:2.7.1.-] +K02759 celC, chbA; cellobiose PTS system EIIA component [EC:2.7.1.196 2.7.1.205] +K02760 celA, chbB; cellobiose PTS system EIIB component [EC:2.7.1.196 2.7.1.205] +K02761 celB, chbC; cellobiose PTS system EIIC component +K02765 gamP; D-glucosamine PTS system EIICBA component [EC:2.7.1.-] +K02768 fruB; fructose PTS system EIIA component [EC:2.7.1.202] +K02769 fruAb; fructose PTS system EIIB component [EC:2.7.1.202] +K02770 fruA; fructose PTS system EIIBC or EIIC component [EC:2.7.1.202] +K02771 levG; fructose PTS system EIID component +K02773 gatA, sgcA; galactitol PTS system EIIA component [EC:2.7.1.200] +K02774 gatB, sgcB; galactitol PTS system EIIB component [EC:2.7.1.200] +K02775 gatC, sgcC; galactitol PTS system EIIC component +K02777 crr; sugar PTS system EIIA component [EC:2.7.1.-] +K02778 ptsGb; glucose PTS system EIIB component [EC:2.7.1.199] +K02779 ptsG; glucose PTS system EIICB or EIICBA component [EC:2.7.1.199] +K02781 srlB; glucitol/sorbitol PTS system EIIA component [EC:2.7.1.198] +K02782 srlE; glucitol/sorbitol PTS system EIIB component [EC:2.7.1.198] +K02783 srlA; glucitol/sorbitol PTS system EIIC component +K02784 ptsH; phosphocarrier protein HPr +K02786 lacF; lactose PTS system EIIA component [EC:2.7.1.207] +K02788 lacE; lactose PTS system EIICB component [EC:2.7.1.207] +K02791 malX; maltose/glucose PTS system EIICB component [EC:2.7.1.199 2.7.1.208] +K02793 manXa; mannose PTS system EIIA component [EC:2.7.1.191] +K02794 manX; mannose PTS system EIIAB component [EC:2.7.1.191] +K02795 manY; mannose PTS system EIIC component +K02796 manZ; mannose PTS system EIID component +K02798 cmtB; mannitol PTS system EIIA component [EC:2.7.1.197] +K02800 mtlA, cmtA; mannitol PTS system EIICBA or EIICB component [EC:2.7.1.197] +K02803 nagEb; N-acetylglucosamine PTS system EIIB component [EC:2.7.1.193] +K02804 nagE; N-acetylglucosamine PTS system EIICBA or EIICB component [EC:2.7.1.193] +K02805 wecE, rffA; dTDP-4-amino-4,6-dideoxygalactose transaminase [EC:2.6.1.59] +K02806 ptsN; nitrogen PTS system EIIA component [EC:2.7.1.-] +K02810 scrA, sacP, sacX, ptsS; sucrose PTS system EIIBCA or EIIBC component [EC:2.7.1.211] +K02812 sorF, sorA; sorbose PTS system EIIA component [EC:2.7.1.206] +K02813 sorB; sorbose PTS system EIIB component [EC:2.7.1.206] +K02814 sorA, sorC; sorbose PTS system EIIC component +K02815 sorM, sorD; sorbose PTS system EIID component +K02819 treB, treP; trehalose PTS system EIIBC or EIIBCA component [EC:2.7.1.201] +K02821 ulaC, sgaA; ascorbate PTS system EIIA or EIIAB component [EC:2.7.1.194] +K02822 ulaB, sgaB; ascorbate PTS system EIIB component [EC:2.7.1.194] +K02823 pyrDII; dihydroorotate dehydrogenase electron transfer subunit +K02824 uraA, pyrP; uracil permease +K02825 pyrR; pyrimidine operon attenuation protein / uracil phosphoribosyltransferase [EC:2.4.2.9] +K02826 qoxA; cytochrome aa3-600 menaquinol oxidase subunit II [EC:7.1.1.5] +K02827 qoxB; cytochrome aa3-600 menaquinol oxidase subunit I [EC:7.1.1.5] +K02828 qoxC; cytochrome aa3-600 menaquinol oxidase subunit III [EC:7.1.1.5] +K02829 qoxD; cytochrome aa3-600 menaquinol oxidase subunit IV [EC:7.1.1.5] +K02830 HRAD1, RAD17; cell cycle checkpoint protein [EC:3.1.11.2] +K02831 RAD53; ser/thr/tyr protein kinase RAD53 [EC:2.7.11.-] +K02832 RAIDD; CASP2 and RIPK1 domain containing adaptor with death domain +K02833 HRAS; GTPase HRas +K02834 rbfA; ribosome-binding factor A +K02835 prfA, MTRF1, MRF1; peptide chain release factor 1 +K02836 prfB; peptide chain release factor 2 +K02837 prfC; peptide chain release factor 3 +K02838 frr, MRRF, RRF; ribosome recycling factor +K02839 prfH; peptide chain release factor +K02840 waaB, rfaB; UDP-D-galactose:(glucosyl)LPS alpha-1,6-D-galactosyltransferase [EC:2.4.1.-] +K02841 waaC, rfaC; lipopolysaccharide heptosyltransferase I [EC:2.4.99.23] +K02842 FZD9_10, CD349_50; frizzled 9/10 +K02843 waaF, rfaF; lipopolysaccharide heptosyltransferase II [EC:2.4.99.24] +K02844 waaG, rfaG; UDP-glucose:(heptosyl)LPS alpha-1,3-glucosyltransferase [EC:2.4.1.-] +K02846 solA; N-methyl-L-tryptophan oxidase [EC:1.5.3.-] +K02847 waaL, rfaL; O-antigen ligase [EC:2.4.99.26] +K02848 waaP, rfaP; lipopolysaccharide core heptose(I) kinase [EC:2.7.1.235] +K02849 waaQ, rfaQ; lipopolysaccharide heptosyltransferase III [EC:2.4.99.25] +K02850 waaY, rfaY; heptose II phosphotransferase [EC:2.7.1.-] +K02851 wecA, tagO, rfe; UDP-GlcNAc:undecaprenyl-phosphate/decaprenyl-phosphate GlcNAc-1-phosphate transferase [EC:2.7.8.33 2.7.8.35] +K02852 wecG, rffM; UDP-N-acetyl-D-mannosaminouronate:lipid I N-acetyl-D-mannosaminouronosyltransferase [EC:2.4.1.180] +K02853 wzyE, rffT; enterobacterial common antigen polymerase [EC:2.4.99.27] +K02854 rhaR; AraC family transcriptional regulator, L-rhamnose operon transcriptional activator RhaR +K02855 rhaS; AraC family transcriptional regulator, L-rhamnose operon regulatory protein RhaS +K02856 rhaT; L-rhamnose-H+ transport protein +K02857 RHBDL1_2_3; rhomboid-related protein 1/2/3 [EC:3.4.21.105] +K02858 ribB, RIB3; 3,4-dihydroxy 2-butanone 4-phosphate synthase [EC:4.1.99.12] +K02859 ribT; riboflavin biosynthesis RibT protein +K02860 rimM; 16S rRNA processing protein RimM +K02861 RIPK1, RIP1; receptor-interacting serine/threonine-protein kinase 1 [EC:2.7.11.1] +K02862 ctaG; putative membrane protein +K02863 RP-L1, MRPL1, rplA; large subunit ribosomal protein L1 +K02864 RP-L10, MRPL10, rplJ; large subunit ribosomal protein L10 +K02865 RP-L10Ae, RPL10A; large subunit ribosomal protein L10Ae +K02866 RP-L10e, RPL10; large subunit ribosomal protein L10e +K02867 RP-L11, MRPL11, rplK; large subunit ribosomal protein L11 +K02868 RP-L11e, RPL11; large subunit ribosomal protein L11e +K02869 RP-L12, rpl12; large subunit ribosomal protein L12 +K02870 RP-L12e, RPL12; large subunit ribosomal protein L12e +K02871 RP-L13, MRPL13, rplM; large subunit ribosomal protein L13 +K02872 RP-L13Ae, RPL13A; large subunit ribosomal protein L13Ae +K02873 RP-L13e, RPL13; large subunit ribosomal protein L13e +K02874 RP-L14, MRPL14, rplN; large subunit ribosomal protein L14 +K02875 RP-L14e, RPL14; large subunit ribosomal protein L14e +K02876 RP-L15, MRPL15, rplO; large subunit ribosomal protein L15 +K02877 RP-L15e, RPL15; large subunit ribosomal protein L15e +K02878 RP-L16, MRPL16, rplP; large subunit ribosomal protein L16 +K02879 RP-L17, MRPL17, rplQ; large subunit ribosomal protein L17 +K02880 RP-L17e, RPL17; large subunit ribosomal protein L17e +K02881 RP-L18, MRPL18, rplR; large subunit ribosomal protein L18 +K02882 RP-L18Ae, RPL18A; large subunit ribosomal protein L18Ae +K02883 RP-L18e, RPL18; large subunit ribosomal protein L18e +K02884 RP-L19, MRPL19, rplS; large subunit ribosomal protein L19 +K02885 RP-L19e, RPL19; large subunit ribosomal protein L19e +K02886 RP-L2, MRPL2, RML2, rplB; large subunit ribosomal protein L2 +K02887 RP-L20, MRPL20, rplT; large subunit ribosomal protein L20 +K02888 RP-L21, MRPL21, rplU; large subunit ribosomal protein L21 +K02889 RP-L21e, RPL21; large subunit ribosomal protein L21e +K02890 RP-L22, MRPL22, rplV; large subunit ribosomal protein L22 +K02891 RP-L22e, RPL22; large subunit ribosomal protein L22e +K02892 RP-L23, MRPL23, rplW; large subunit ribosomal protein L23 +K02893 RP-L23Ae, RPL23A; large subunit ribosomal protein L23Ae +K02894 RP-L23e, RPL23; large subunit ribosomal protein L23e +K02895 RP-L24, MRPL24, rplX; large subunit ribosomal protein L24 +K02896 RP-L24e, RPL24; large subunit ribosomal protein L24e +K02897 RP-L25, rplY; large subunit ribosomal protein L25 +K02898 RP-L26e, RPL26; large subunit ribosomal protein L26e +K02899 RP-L27, MRPL27, rpmA; large subunit ribosomal protein L27 +K02900 RP-L27Ae, RPL27A; large subunit ribosomal protein L27Ae +K02901 RP-L27e, RPL27; large subunit ribosomal protein L27e +K02902 RP-L28, MRPL28, rpmB; large subunit ribosomal protein L28 +K02903 RP-L28e, RPL28; large subunit ribosomal protein L28e +K02904 RP-L29, rpmC; large subunit ribosomal protein L29 +K02905 RP-L29e, RPL29; large subunit ribosomal protein L29e +K02906 RP-L3, MRPL3, rplC; large subunit ribosomal protein L3 +K02907 RP-L30, MRPL30, rpmD; large subunit ribosomal protein L30 +K02908 RP-L30e, RPL30; large subunit ribosomal protein L30e +K02909 RP-L31, rpmE; large subunit ribosomal protein L31 +K02910 RP-L31e, RPL31; large subunit ribosomal protein L31e +K02911 RP-L32, MRPL32, rpmF; large subunit ribosomal protein L32 +K02912 RP-L32e, RPL32; large subunit ribosomal protein L32e +K02913 RP-L33, MRPL33, rpmG; large subunit ribosomal protein L33 +K02914 RP-L34, MRPL34, rpmH; large subunit ribosomal protein L34 +K02915 RP-L34e, RPL34; large subunit ribosomal protein L34e +K02916 RP-L35, MRPL35, rpmI; large subunit ribosomal protein L35 +K02917 RP-L35Ae, RPL35A; large subunit ribosomal protein L35Ae +K02918 RP-L35e, RPL35; large subunit ribosomal protein L35e +K02919 RP-L36, MRPL36, rpmJ; large subunit ribosomal protein L36 +K02920 RP-L36e, RPL36; large subunit ribosomal protein L36e +K02921 RP-L37Ae, RPL37A; large subunit ribosomal protein L37Ae +K02922 RP-L37e, RPL37; large subunit ribosomal protein L37e +K02923 RP-L38e, RPL38; large subunit ribosomal protein L38e +K02924 RP-L39e, RPL39; large subunit ribosomal protein L39e +K02925 RP-L3e, RPL3; large subunit ribosomal protein L3e +K02926 RP-L4, MRPL4, rplD; large subunit ribosomal protein L4 +K02927 RP-L40e, RPL40, UBA52; ubiquitin-large subunit ribosomal protein L40e +K02928 RP-L41e, RPL41; large subunit ribosomal protein L41e +K02929 RP-L44e, RPL44; large subunit ribosomal protein L44e +K02930 RP-L4e, RPL4; large subunit ribosomal protein L4e +K02931 RP-L5, MRPL5, rplE; large subunit ribosomal protein L5 +K02932 RP-L5e, RPL5; large subunit ribosomal protein L5e +K02933 RP-L6, MRPL6, rplF; large subunit ribosomal protein L6 +K02934 RP-L6e, RPL6; large subunit ribosomal protein L6e +K02935 RP-L7, MRPL12, rplL; large subunit ribosomal protein L7/L12 +K02936 RP-L7Ae, RPL7A; large subunit ribosomal protein L7Ae +K02937 RP-L7e, RPL7; large subunit ribosomal protein L7e +K02938 RP-L8e, RPL8; large subunit ribosomal protein L8e +K02939 RP-L9, MRPL9, rplI; large subunit ribosomal protein L9 +K02940 RP-L9e, RPL9; large subunit ribosomal protein L9e +K02941 RP-LP0, RPLP0; large subunit ribosomal protein LP0 +K02942 RP-LP1, RPLP1; large subunit ribosomal protein LP1 +K02943 RP-LP2, RPLP2; large subunit ribosomal protein LP2 +K02944 RP-LX, rplX; large subunit ribosomal protein LX +K02945 RP-S1, rpsA; small subunit ribosomal protein S1 +K02946 RP-S10, MRPS10, rpsJ; small subunit ribosomal protein S10 +K02947 RP-S10e, RPS10; small subunit ribosomal protein S10e +K02948 RP-S11, MRPS11, rpsK; small subunit ribosomal protein S11 +K02949 RP-S11e, RPS11; small subunit ribosomal protein S11e +K02950 RP-S12, MRPS12, rpsL; small subunit ribosomal protein S12 +K02951 RP-S12e, RPS12; small subunit ribosomal protein S12e +K02952 RP-S13, rpsM; small subunit ribosomal protein S13 +K02953 RP-S13e, RPS13; small subunit ribosomal protein S13e +K02954 RP-S14, MRPS14, rpsN; small subunit ribosomal protein S14 +K02955 RP-S14e, RPS14; small subunit ribosomal protein S14e +K02956 RP-S15, MRPS15, rpsO; small subunit ribosomal protein S15 +K02957 RP-S15Ae, RPS15A; small subunit ribosomal protein S15Ae +K02958 RP-S15e, RPS15; small subunit ribosomal protein S15e +K02959 RP-S16, MRPS16, rpsP; small subunit ribosomal protein S16 +K02960 RP-S16e, RPS16; small subunit ribosomal protein S16e +K02961 RP-S17, MRPS17, rpsQ; small subunit ribosomal protein S17 +K02962 RP-S17e, RPS17; small subunit ribosomal protein S17e +K02963 RP-S18, MRPS18, rpsR; small subunit ribosomal protein S18 +K02964 RP-S18e, RPS18; small subunit ribosomal protein S18e +K02965 RP-S19, RSM19, rpsS; small subunit ribosomal protein S19 +K02966 RP-S19e, RPS19; small subunit ribosomal protein S19e +K02967 RP-S2, MRPS2, rpsB; small subunit ribosomal protein S2 +K02968 RP-S20, rpsT; small subunit ribosomal protein S20 +K02969 RP-S20e, RPS20; small subunit ribosomal protein S20e +K02970 RP-S21, MRPS21, rpsU; small subunit ribosomal protein S21 +K02971 RP-S21e, RPS21; small subunit ribosomal protein S21e +K02972 sra; stationary-phase-induced ribosome-associated protein +K02973 RP-S23e, RPS23; small subunit ribosomal protein S23e +K02974 RP-S24e, RPS24; small subunit ribosomal protein S24e +K02975 RP-S25e, RPS25; small subunit ribosomal protein S25e +K02976 RP-S26e, RPS26; small subunit ribosomal protein S26e +K02977 RP-S27Ae, RPS27A, UBA80; ubiquitin-small subunit ribosomal protein S27Ae +K02978 RP-S27e, RPS27; small subunit ribosomal protein S27e +K02979 RP-S28e, RPS28; small subunit ribosomal protein S28e +K02980 RP-S29e, RPS29; small subunit ribosomal protein S29e +K02981 RP-S2e, RPS2; small subunit ribosomal protein S2e +K02982 RP-S3, rpsC; small subunit ribosomal protein S3 +K02983 RP-S30e, RPS30; small subunit ribosomal protein S30e +K02984 RP-S3Ae, RPS3A; small subunit ribosomal protein S3Ae +K02985 RP-S3e, RPS3; small subunit ribosomal protein S3e +K02986 RP-S4, NAM9, rpsD; small subunit ribosomal protein S4 +K02987 RP-S4e, RPS4; small subunit ribosomal protein S4e +K02988 RP-S5, MRPS5, rpsE; small subunit ribosomal protein S5 +K02989 RP-S5e, RPS5; small subunit ribosomal protein S5e +K02990 RP-S6, MRPS6, rpsF; small subunit ribosomal protein S6 +K02991 RP-S6e, RPS6; small subunit ribosomal protein S6e +K02992 RP-S7, MRPS7, rpsG; small subunit ribosomal protein S7 +K02993 RP-S7e, RPS7; small subunit ribosomal protein S7e +K02994 RP-S8, MRPS8, rpsH; small subunit ribosomal protein S8 +K02995 RP-S8e, RPS8; small subunit ribosomal protein S8e +K02996 RP-S9, MRPS9, rpsI; small subunit ribosomal protein S9 +K02997 RP-S9e, RPS9; small subunit ribosomal protein S9e +K02998 RP-SAe, RPSA; small subunit ribosomal protein SAe +K02999 RPA1, POLR1A; DNA-directed RNA polymerase I subunit RPA1 [EC:2.7.7.6] +K03000 RPA12, POLR1H, ZNRD1; DNA-directed RNA polymerase I subunit RPA12 +K03001 RPA14; DNA-directed RNA polymerase I subunit RPA14 +K03002 RPA2, POLR1B; DNA-directed RNA polymerase I subunit RPA2 [EC:2.7.7.6] +K03003 RPA34; DNA-directed RNA polymerase I subunit RPA34 +K03004 RPA43, POLR1F, TWISTNB; DNA-directed RNA polymerase I subunit RPA43 +K03005 RPA49, POLR1E; DNA-directed RNA polymerase I subunit RPA49 +K03006 RPB1, POLR2A; DNA-directed RNA polymerase II subunit RPB1 [EC:2.7.7.6] +K03007 RPABC5, RPB10, POLR2L; DNA-directed RNA polymerases I, II, and III subunit RPABC5 +K03008 RPB11, POLR2J; DNA-directed RNA polymerase II subunit RPB11 +K03009 RPABC4, RPB12, POLR2K; DNA-directed RNA polymerases I, II, and III subunit RPABC4 +K03010 RPB2, POLR2B; DNA-directed RNA polymerase II subunit RPB2 [EC:2.7.7.6] +K03011 RPB3, POLR2C; DNA-directed RNA polymerase II subunit RPB3 +K03012 RPB4, POLR2D; DNA-directed RNA polymerase II subunit RPB4 +K03013 RPABC1, RPB5, POLR2E; DNA-directed RNA polymerases I, II, and III subunit RPABC1 +K03014 RPABC2, RPB6, POLR2F; DNA-directed RNA polymerases I, II, and III subunit RPABC2 +K03015 RPB7, POLR2G; DNA-directed RNA polymerase II subunit RPB7 +K03016 RPABC3, RPB8, POLR2H; DNA-directed RNA polymerases I, II, and III subunit RPABC3 +K03017 RPB9, POLR2I; DNA-directed RNA polymerase II subunit RPB9 +K03018 RPC1, POLR3A; DNA-directed RNA polymerase III subunit RPC1 [EC:2.7.7.6] +K03019 RPC11, POLR3K; DNA-directed RNA polymerase III subunit RPC11 +K03020 RPAC2, RPC19, POLR1D; DNA-directed RNA polymerases I and III subunit RPAC2 +K03021 RPC2, POLR3B; DNA-directed RNA polymerase III subunit RPC2 [EC:2.7.7.6] +K03022 RPC8, POLR3H; DNA-directed RNA polymerase III subunit RPC8 +K03023 RPC3, POLR3C; DNA-directed RNA polymerase III subunit RPC3 +K03024 RPC7, POLR3G; DNA-directed RNA polymerase III subunit RPC7 +K03025 RPC6, POLR3F; DNA-directed RNA polymerase III subunit RPC6 +K03026 RPC4, POLR3D; DNA-directed RNA polymerase III subunit RPC4 +K03027 RPAC1, RPC40, POLR1C; DNA-directed RNA polymerases I and III subunit RPAC1 +K03028 PSMD2, RPN1; 26S proteasome regulatory subunit N1 +K03029 PSMD4, RPN10; 26S proteasome regulatory subunit N10 +K03030 PSMD14, RPN11, POH1; 26S proteasome regulatory subunit N11 +K03031 PSMD8, RPN12; 26S proteasome regulatory subunit N12 +K03032 PSMD1, RPN2; 26S proteasome regulatory subunit N2 +K03033 PSMD3, RPN3; 26S proteasome regulatory subunit N3 +K03034 RPN4; protein RPN4 +K03035 PSMD12, RPN5; 26S proteasome regulatory subunit N5 +K03036 PSMD11, RPN6; 26S proteasome regulatory subunit N6 +K03037 PSMD6, RPN7; 26S proteasome regulatory subunit N7 +K03038 PSMD7, RPN8; 26S proteasome regulatory subunit N8 +K03039 PSMD13, RPN9; 26S proteasome regulatory subunit N9 +K03040 rpoA; DNA-directed RNA polymerase subunit alpha [EC:2.7.7.6] +K03041 rpoA1; DNA-directed RNA polymerase subunit A' [EC:2.7.7.6] +K03042 rpoA2; DNA-directed RNA polymerase subunit A" [EC:2.7.7.6] +K03043 rpoB; DNA-directed RNA polymerase subunit beta [EC:2.7.7.6] +K03044 rpoB1; DNA-directed RNA polymerase subunit B' [EC:2.7.7.6] +K03045 rpoB2; DNA-directed RNA polymerase subunit B" [EC:2.7.7.6] +K03046 rpoC; DNA-directed RNA polymerase subunit beta' [EC:2.7.7.6] +K03047 rpoD; DNA-directed RNA polymerase subunit D [EC:2.7.7.6] +K03048 rpoE; DNA-directed RNA polymerase subunit delta +K03049 rpoE1; DNA-directed RNA polymerase subunit E' [EC:2.7.7.6] +K03051 rpoF; DNA-directed RNA polymerase subunit F [EC:2.7.7.6] +K03052 rpoG; DNA-directed RNA polymerase subunit G [EC:2.7.7.6] +K03053 rpoH; DNA-directed RNA polymerase subunit H [EC:2.7.7.6] +K03054 rpoI; DNA-directed RNA polymerase subunit I [EC:2.7.7.6] +K03055 rpoK; DNA-directed RNA polymerase subunit K [EC:2.7.7.6] +K03056 rpoL; DNA-directed RNA polymerase subunit L [EC:2.7.7.6] +K03057 tfs; transcription factor S +K03058 rpoN; DNA-directed RNA polymerase subunit N [EC:2.7.7.6] +K03059 rpoP; DNA-directed RNA polymerase subunit P [EC:2.7.7.6] +K03060 rpoZ; DNA-directed RNA polymerase subunit omega [EC:2.7.7.6] +K03061 PSMC2, RPT1; 26S proteasome regulatory subunit T1 +K03062 PSMC1, RPT2; 26S proteasome regulatory subunit T2 +K03063 PSMC4, RPT3; 26S proteasome regulatory subunit T3 +K03064 PSMC6, RPT4; 26S proteasome regulatory subunit T4 +K03065 PSMC3, RPT5; 26S proteasome regulatory subunit T5 +K03066 PSMC5, RPT6; 26S proteasome regulatory subunit T6 +K03068 LRP5_6; low density lipoprotein receptor-related protein 5/6 +K03069 FRAT1; frequently rearranged in advanced T-cell lymphomas 1 +K03070 secA; preprotein translocase subunit SecA [EC:7.4.2.8] +K03071 secB; preprotein translocase subunit SecB +K03072 secD; preprotein translocase subunit SecD +K03073 secE; preprotein translocase subunit SecE +K03074 secF; preprotein translocase subunit SecF +K03075 secG; preprotein translocase subunit SecG +K03076 secY; preprotein translocase subunit SecY +K03077 araD, ulaF, sgaE, sgbE; L-ribulose-5-phosphate 4-epimerase [EC:5.1.3.4] +K03078 ulaD, sgaH, sgbH; 3-dehydro-L-gulonate-6-phosphate decarboxylase [EC:4.1.1.85] +K03079 ulaE, sgaU, sgbU; L-ribulose-5-phosphate 3-epimerase [EC:5.1.3.22] +K03083 GSK3B; glycogen synthase kinase 3 beta [EC:2.7.11.26] +K03084 SHIP1, INPP5D; phosphatidylinositol-3,4,5-trisphosphate 5-phosphatase 1 [EC:3.1.3.86] +K03085 SIC1; substrate and inhibitor of the cyclin-dependent protein kinase CDC28 +K03086 rpoD; RNA polymerase primary sigma factor +K03087 rpoS; RNA polymerase nonessential primary-like sigma factor +K03088 rpoE; RNA polymerase sigma-70 factor, ECF subfamily +K03089 rpoH; RNA polymerase sigma-32 factor +K03090 sigB; RNA polymerase sigma-B factor +K03091 sigE_F_G; RNA polymerase sigma-E/F/G factor +K03092 rpoN; RNA polymerase sigma-54 factor +K03093 sigI; RNA polymerase sigma-I factor +K03094 SKP1, CBF3D; S-phase kinase-associated protein 1 +K03095 sprL; SprT-like protein +K03096 FRAT2; frequently rearranged in advanced T-cell lymphomas 2 +K03097 CSNK2A; casein kinase II subunit alpha [EC:2.7.11.1] +K03098 APOD; apolipoprotein D and lipocalin family protein +K03099 SOS; son of sevenless +K03100 lepB; signal peptidase I [EC:3.4.21.89] +K03101 lspA; signal peptidase II [EC:3.4.23.36] +K03102 SQD; squid +K03103 MINPP1; multiple inositol-polyphosphate phosphatase / 2,3-bisphosphoglycerate 3-phosphatase [EC:3.1.3.62 3.1.3.80] +K03104 SRP14; signal recognition particle subunit SRP14 +K03105 SRP19; signal recognition particle subunit SRP19 +K03106 SRP54, ffh; signal recognition particle subunit SRP54 [EC:3.6.5.4] +K03107 SRP68; signal recognition particle subunit SRP68 +K03108 SRP72; signal recognition particle subunit SRP72 +K03109 SRP9; signal recognition particle subunit SRP9 +K03110 ftsY; fused signal recognition particle receptor +K03111 ssb; single-strand DNA-binding protein +K03112 damX; DamX protein +K03113 EIF1, SUI1; translation initiation factor 1 +K03114 SWE1; mitosis inhibitor protein kinase SWE1 [EC:2.7.11.1] +K03115 CSNK2B; casein kinase II subunit beta +K03116 tatA; sec-independent protein translocase protein TatA +K03117 tatB; sec-independent protein translocase protein TatB +K03118 tatC; sec-independent protein translocase protein TatC +K03119 tauD; taurine dioxygenase [EC:1.14.11.17] +K03120 TBP, tbp; transcription initiation factor TFIID TATA-box-binding protein +K03121 TFII-I, GTF2I; transcription initiation factor TFII-I +K03122 TFIIA1, GTF2A1, TOA1; transcription initiation factor TFIIA large subunit +K03123 TFIIA2, GTF2A2, TOA2; transcription initiation factor TFIIA small subunit +K03124 TFIIB, GTF2B, SUA7, tfb; transcription initiation factor TFIIB +K03125 TAF1; transcription initiation factor TFIID subunit 1 [EC:2.3.1.48 2.7.11.1] +K03126 TAF12; transcription initiation factor TFIID subunit 12 +K03127 TAF13; transcription initiation factor TFIID subunit 13 +K03128 TAF2; transcription initiation factor TFIID subunit 2 +K03129 TAF4; transcription initiation factor TFIID subunit 4 +K03130 TAF5; transcription initiation factor TFIID subunit 5 +K03131 TAF6; transcription initiation factor TFIID subunit 6 +K03132 TAF7; transcription initiation factor TFIID subunit 7 +K03133 TAF9B, TAF9; transcription initiation factor TFIID subunit 9B +K03134 TAF10; transcription initiation factor TFIID subunit 10 +K03135 TAF11; transcription initiation factor TFIID subunit 11 +K03136 TFIIE1, GTF2E1, TFA1, tfe; transcription initiation factor TFIIE subunit alpha +K03137 TFIIE2, GTF2E2, TFA2; transcription initiation factor TFIIE subunit beta +K03138 TFIIF1, GTF2F1, TFG1; transcription initiation factor TFIIF subunit alpha +K03139 TFIIF2, GTF2F2, TFG2; transcription initiation factor TFIIF subunit beta [EC:5.6.2.-] +K03140 TAF14; transcription initiation factor TFIID/TFIIF subunit +K03141 TFIIH1, GTF2H1, TFB1; transcription initiation factor TFIIH subunit 1 +K03142 TFIIH2, GTF2H2, SSL1; transcription initiation factor TFIIH subunit 2 +K03143 TFIIH3, GTF2H3, TFB4; transcription initiation factor TFIIH subunit 3 +K03144 TFIIH4, GTF2H4, TFB2; transcription initiation factor TFIIH subunit 4 +K03145 TFIIS; transcription elongation factor S-II +K03146 THI4, THI1; cysteine-dependent adenosine diphosphate thiazole synthase [EC:2.4.2.60] +K03147 thiC; phosphomethylpyrimidine synthase [EC:4.1.99.17] +K03148 thiF; sulfur carrier protein ThiS adenylyltransferase [EC:2.7.7.73] +K03149 thiG; thiazole synthase [EC:2.8.1.10] +K03150 thiH; 2-iminoacetate synthase [EC:4.1.99.19] +K03151 thiI; tRNA uracil 4-sulfurtransferase [EC:2.8.1.4] +K03152 thiJ; protein deglycase [EC:3.5.1.124] +K03153 thiO; glycine oxidase [EC:1.4.3.19] +K03154 thiS; sulfur carrier protein +K03156 TNF, TNFA; tumor necrosis factor superfamily, member 2 +K03157 LTB, TNFC; lymphotoxin beta (TNF superfamily, member 3) +K03158 TNFRSF1A, TNFR1, CD120a; tumor necrosis factor receptor superfamily member 1A +K03159 TNFRSF3, LTBR; lymphotoxin beta receptor TNFR superfamily member 3 +K03160 TNFRSF5, CD40; tumor necrosis factor receptor superfamily member 5 +K03161 TNFSF5, CD40L, CD154; tumor necrosis factor ligand superfamily member 5 +K03162 ompA; major outer membrane protein +K03163 TOP1; DNA topoisomerase I [EC:5.6.2.1] +K03164 TOP2; DNA topoisomerase II [EC:5.6.2.2] +K03165 TOP3; DNA topoisomerase III [EC:5.6.2.1] +K03166 top6A; DNA topoisomerase VI subunit A [EC:5.6.2.2] +K03167 top6B; DNA topoisomerase VI subunit B [EC:5.6.2.2] +K03168 topA; DNA topoisomerase I [EC:5.6.2.1] +K03169 topB; DNA topoisomerase III [EC:5.6.2.1] +K03170 topG, rgy; reverse gyrase [EC:5.6.2.2 5.6.2.-] +K03171 TRADD; tumor necrosis factor receptor type 1-associated DEATH domain protein +K03172 TRAF1; TNF receptor-associated factor 1 +K03173 TRAF2; TNF receptor-associated factor 2 [EC:2.3.2.27] +K03174 TRAF3; TNF receptor-associated factor 3 +K03175 TRAF6; TNF receptor-associated factor 6 [EC:2.3.2.27] +K03176 NTRK1, TRKA; neurotrophic tyrosine kinase receptor type 1 [EC:2.7.10.1] +K03177 truB, PUS4, TRUB1; tRNA pseudouridine55 synthase [EC:5.4.99.25] +K03178 UBE1, UBA1; ubiquitin-activating enzyme E1 [EC:6.2.1.45] +K03179 ubiA; 4-hydroxybenzoate polyprenyltransferase [EC:2.5.1.39] +K03181 ubiC; chorismate lyase [EC:4.1.3.40] +K03182 ubiD; 4-hydroxy-3-polyprenylbenzoate decarboxylase [EC:4.1.1.98] +K03183 ubiE; demethylmenaquinone methyltransferase / 2-methoxy-6-polyprenyl-1,4-benzoquinol methylase [EC:2.1.1.163 2.1.1.201] +K03184 ubiF; 3-demethoxyubiquinol 3-hydroxylase [EC:1.14.99.60] +K03185 ubiH; 2-octaprenyl-6-methoxyphenol hydroxylase [EC:1.14.13.-] +K03186 ubiX, bsdB, PAD1; flavin prenyltransferase [EC:2.5.1.129] +K03187 ureE; urease accessory protein +K03188 ureF; urease accessory protein +K03189 ureG; urease accessory protein +K03190 ureD, ureH; urease accessory protein +K03191 ureI; acid-activated urea channel +K03192 ureJ; urease accessory protein +K03193 UST; dermatan/chondrotin sulfate uronyl 2-O-sulfotransferase UST [EC:2.8.2.-] +K03194 virB1; type IV secretion system protein VirB1 +K03195 virB10, lvhB10; type IV secretion system protein VirB10 +K03196 virB11, lvhB11; type IV secretion system protein VirB11 [EC:7.4.2.8] +K03197 virB2, lvhB2; type IV secretion system protein VirB2 +K03198 virB3, lvhB3; type IV secretion system protein VirB3 +K03199 virB4, lvhB4; type IV secretion system protein VirB4 [EC:7.4.2.8] +K03200 virB5, lvhB5; type IV secretion system protein VirB5 +K03201 virB6, lvhB6; type IV secretion system protein VirB6 +K03202 virB7, lvhB7; type IV secretion system protein VirB7 +K03203 virB8, lvhB8; type IV secretion system protein VirB8 +K03204 virB9, lvhB9; type IV secretion system protein VirB9 +K03205 virD4, lvhD4; type IV secretion system protein VirD4 [EC:7.4.2.8] +K03206 azr; azobenzene reductase [EC:1.7.1.6] +K03207 gmm, nudD, wcaH; GDP-mannose mannosyl hydrolase [EC:3.6.1.-] +K03208 wcaI; putative colanic acid biosynthesis glycosyltransferase WcaI +K03209 WNT1; wingless-type MMTV integration site family, member 1 +K03210 yajC; preprotein translocase subunit YajC +K03211 ETV6_7, yan; ETS translocation variant 6/7 +K03212 rumB; 23S rRNA (uracil747-C5)-methyltransferase [EC:2.1.1.189] +K03213 NKD; naked cuticle +K03214 yfiF, trmG; RNA methyltransferase, TrmH family [EC:2.1.1.-] +K03215 rumA; 23S rRNA (uracil1939-C5)-methyltransferase [EC:2.1.1.190] +K03216 trmL, cspR; tRNA (cytidine/uridine-2'-O-)-methyltransferase [EC:2.1.1.207] +K03217 yidC, spoIIIJ, OXA1, ccfA; YidC/Oxa1 family membrane protein insertase +K03218 rlmB; 23S rRNA (guanosine2251-2'-O)-methyltransferase [EC:2.1.1.185] +K03219 yscC, sctC, ssaC; type III secretion protein C +K03220 yscD, sctD, ssaD; type III secretion protein D +K03221 yscF, sctF, ssaG, prgI; type III secretion protein F +K03222 yscJ, sctJ, hrcJ, ssaJ; type III secretion protein J +K03223 yscL, sctL; type III secretion protein L +K03224 yscN, sctN, hrcN, ssaN; ATP synthase in type III secretion protein N [EC:7.4.2.8] +K03225 yscQ, sctQ, hrcQ, ssaQ, spaO; type III secretion protein Q +K03226 yscR, sctR, hrcR, ssaR; type III secretion protein R +K03227 yscS, sctS, hrcS, ssaS; type III secretion protein S +K03228 yscT, sctT, hrcT, ssaT; type III secretion protein T +K03229 yscU, sctU, hrcU, ssaU; type III secretion protein U +K03230 yscV, sctV, hrcV, ssaV, invA; type III secretion protein V +K03231 EEF1A; elongation factor 1-alpha +K03232 EEF1B; elongation factor 1-beta +K03233 EEF1G; elongation factor 1-gamma +K03234 EEF2; elongation factor 2 +K03235 EF3, TEF3; elongation factor 3 +K03236 EIF1A; translation initiation factor 1A +K03237 EIF2S1; translation initiation factor 2 subunit 1 +K03238 EIF2S2; translation initiation factor 2 subunit 2 +K03239 EIF2B1; translation initiation factor eIF-2B subunit alpha +K03240 EIF2B5; translation initiation factor eIF-2B subunit epsilon +K03241 EIF2B3; translation initiation factor eIF-2B subunit gamma +K03242 EIF2S3; translation initiation factor 2 subunit 3 +K03243 EIF5B; translation initiation factor 5B +K03245 EIF3J; translation initiation factor 3 subunit J +K03246 EIF3I; translation initiation factor 3 subunit I +K03247 EIF3H; translation initiation factor 3 subunit H +K03248 EIF3G; translation initiation factor 3 subunit G +K03249 EIF3F; translation initiation factor 3 subunit F +K03250 EIF3E, INT6; translation initiation factor 3 subunit E +K03251 EIF3D; translation initiation factor 3 subunit D +K03252 EIF3C; translation initiation factor 3 subunit C +K03253 EIF3B; translation initiation factor 3 subunit B +K03254 EIF3A; translation initiation factor 3 subunit A +K03255 TIF31, CLU1; protein TIF31 +K03256 TRM6, GCD10; tRNA (adenine58-N1)-methyltransferase non-catalytic subunit +K03257 EIF4A; translation initiation factor 4A +K03258 EIF4B; translation initiation factor 4B +K03259 EIF4E; translation initiation factor 4E +K03260 EIF4G; translation initiation factor 4G +K03261 CAF20; cap-associated protein CAF20 +K03262 EIF5; translation initiation factor 5 +K03263 EIF5A; translation initiation factor 5A +K03264 EIF6; translation initiation factor 6 +K03265 ETF1, ERF1; peptide chain release factor subunit 1 +K03267 ERF3, GSPT; peptide chain release factor subunit 3 +K03268 todC1, bedC1, tcbAa; benzene/toluene/chlorobenzene dioxygenase subunit alpha [EC:1.14.12.3 1.14.12.11 1.14.12.26] +K03269 lpxH; UDP-2,3-diacylglucosamine hydrolase [EC:3.6.1.54] +K03270 kdsC; 3-deoxy-D-manno-octulosonate 8-phosphate phosphatase (KDO 8-P phosphatase) [EC:3.1.3.45] +K03271 gmhA, lpcA; D-sedoheptulose 7-phosphate isomerase [EC:5.3.1.28] +K03272 gmhC, hldE, waaE, rfaE; D-beta-D-heptose 7-phosphate kinase / D-beta-D-heptose 1-phosphate adenosyltransferase [EC:2.7.1.167 2.7.7.70] +K03273 gmhB; D-glycero-D-manno-heptose 1,7-bisphosphate phosphatase [EC:3.1.3.82 3.1.3.83] +K03274 gmhD, rfaD; ADP-L-glycero-D-manno-heptose 6-epimerase [EC:5.1.3.20] +K03275 waaO, rfaI; UDP-glucose:(glucosyl)LPS alpha-1,3-glucosyltransferase [EC:2.4.1.-] +K03276 waaR, waaT, rfaJ; UDP-glucose/galactose:(glucosyl)LPS alpha-1,2-glucosyl/galactosyltransferase [EC:2.4.1.-] +K03277 waaU, rfaK; heptosyltransferase IV [EC:2.4.-.-] +K03278 waaI, rfaI; UDP-D-galactose:(glucosyl)LPS alpha-1,3-D-galactosyltransferase [EC:2.4.1.44] +K03279 waaJ, rfaJ; UDP-glucose:(galactosyl)LPS alpha-1,2-glucosyltransferase [EC:2.4.1.58] +K03280 waaK, rfaK; UDP-N-acetylglucosamine:(glucosyl)LPS alpha-1,2-N-acetylglucosaminyltransferase [EC:2.4.1.56] +K03281 clcA, clcB, CLC-E, CLC-F; chloride channel protein, CIC family +K03282 mscL; large conductance mechanosensitive channel +K03283 HSPA1_6_8; heat shock 70kDa protein 1/6/8 +K03284 corA; magnesium transporter +K03285 TC.GBP; general bacterial porin, GBP family +K03286 TC.OOP; OmpA-OmpF porin, OOP family +K03287 TC.OMF; outer membrane factor, OMF family +K03288 citA, tcuC; MFS transporter, MHS family, citrate/tricarballylate:H+ symporter +K03289 nupG; MFS transporter, NHS family, nucleoside permease +K03290 nanT; MFS transporter, SHS family, sialic acid transporter +K03291 MFS.SET; MFS transporter, SET family, sugar efflux transporter +K03292 TC.GPH; glycoside/pentoside/hexuronide:cation symporter, GPH family +K03293 TC.AAT; amino acid transporter, AAT family +K03294 TC.APA; basic amino acid/polyamine antiporter, APA family +K03296 TC.HAE1; hydrophobic/amphiphilic exporter-1 (mainly G- bacteria), HAE1 family +K03297 emrE, qac, mmr, smr; small multidrug resistance pump +K03298 TC.DME; drug/metabolite transporter, DME family +K03299 TC.GNTP; gluconate:H+ symporter, GntP family +K03300 TC.CITMHS; citrate-Mg2+:H+ or citrate-Ca2+:H+ symporter, CitMHS family +K03301 TC.AAA; ATP:ADP antiporter, AAA family +K03303 lutP, lctP; lactate permease +K03304 tehA; tellurite resistance protein +K03305 TC.POT; proton-dependent oligopeptide transporter, POT family +K03306 TC.PIT; inorganic phosphate transporter, PiT family +K03307 TC.SSS; solute:Na+ symporter, SSS family +K03308 TC.NSS; neurotransmitter:Na+ symporter, NSS family +K03309 TC.DAACS; dicarboxylate/amino acid:cation (Na+ or H+) symporter, DAACS family +K03310 TC.AGCS; alanine or glycine:cation symporter, AGCS family +K03311 TC.LIVCS; branched-chain amino acid:cation transporter, LIVCS family +K03312 gltS; glutamate:Na+ symporter, ESS family +K03313 nhaA; Na+:H+ antiporter, NhaA family +K03314 nhaB; Na+:H+ antiporter, NhaB family +K03315 nhaC; Na+:H+ antiporter, NhaC family +K03316 nhaP, nhaS1, nhaS2; Na+:H+ antiporter +K03317 TC.CNT; concentrative nucleoside transporter, CNT family +K03318 tutB; tyrosine permease +K03319 TC.DASS; divalent anion:Na+ symporter, DASS family +K03320 amt, AMT, MEP; ammonium transporter, Amt family +K03321 TC.SULP; sulfate permease, SulP family +K03322 mntH; manganese transport protein +K03323 SLC29A4, ENT4; solute carrier family 29 (equilibrative nucleoside transporter), member 4 +K03324 yjbB; phosphate:Na+ symporter +K03325 ACR3, arsB; arsenite transporter +K03326 TC.DCUC, dcuC, dcuD; C4-dicarboxylate transporter, DcuC family +K03327 SLC47A, MATE, DTX; MATE family, multidrug and toxin extrusion protein +K03328 TC.PST; polysaccharide transporter, PST family +K03329 yahN; amino acid exporter +K03330 gatE; glutamyl-tRNA(Gln) amidotransferase subunit E [EC:6.3.5.7] +K03331 DCXR; L-xylulose reductase [EC:1.1.1.10] +K03332 fruA; fructan beta-fructosidase [EC:3.2.1.80] +K03333 choD; cholesterol oxidase [EC:1.1.3.6] +K03334 IL4I1; L-amino-acid oxidase [EC:1.4.3.2] +K03335 iolE; inosose dehydratase [EC:4.2.1.44] +K03336 iolD; 3D-(3,5/4)-trihydroxycyclohexane-1,2-dione acylhydrolase (decyclizing) [EC:3.7.1.22] +K03337 iolB; 5-deoxy-glucuronate isomerase [EC:5.3.1.30] +K03338 iolC; 5-dehydro-2-deoxygluconokinase [EC:2.7.1.92] +K03339 iolJ; 6-phospho-5-dehydro-2-deoxy-D-gluconate aldolase [EC:4.1.2.29] +K03340 dapdh; diaminopimelate dehydrogenase [EC:1.4.1.16] +K03341 SEPSECS; O-phospho-L-seryl-tRNASec:L-selenocysteinyl-tRNA synthase [EC:2.9.1.2] +K03342 pabBC; para-aminobenzoate synthetase / 4-amino-4-deoxychorismate lyase [EC:2.6.1.85 4.1.3.38] +K03343 puo; putrescine oxidase [EC:1.4.3.10] +K03344 IDAX; Dvl-binding protein IDAX +K03345 SENP2, AXAM2; sentrin-specific protease 2 (axin associating molecule) [EC:3.4.22.68] +K03346 dnaB; replication initiation and membrane attachment protein +K03347 CUL1, CDC53; cullin 1 +K03348 APC1, ANAPC1; anaphase-promoting complex subunit 1 +K03349 APC2, ANAPC2; anaphase-promoting complex subunit 2 +K03350 APC3, CDC27; anaphase-promoting complex subunit 3 +K03351 APC4, ANAPC4; anaphase-promoting complex subunit 4 +K03352 APC5, ANAPC5; anaphase-promoting complex subunit 5 +K03353 APC6, CDC16; anaphase-promoting complex subunit 6 +K03354 APC7, ANAPC7; anaphase-promoting complex subunit 7 +K03355 APC8, CDC23; anaphase-promoting complex subunit 8 +K03356 APC9; anaphase-promoting complex subunit 9 +K03357 APC10, ANAPC10, DOC1; anaphase-promoting complex subunit 10 +K03358 APC11, ANAPC11; anaphase-promoting complex subunit 11 +K03359 APC12, CDC26; anaphase-promoting complex subunit 12 +K03360 GRR1; F-box and leucine-rich repeat protein GRR1 +K03361 CDC4; F-box and WD-40 domain protein CDC4 +K03362 FBXW1_11, BTRC, beta-TRCP; F-box and WD-40 domain protein 1/11 +K03363 CDC20; cell division cycle 20, cofactor of APC complex +K03364 CDH1, FZR1; cell division cycle 20-like protein 1, cofactor of APC complex +K03365 FCY1; cytosine/creatinine deaminase [EC:3.5.4.1 3.5.4.21] +K03366 butA, budC; meso-butanediol dehydrogenase / (S,S)-butanediol dehydrogenase / diacetyl reductase [EC:1.1.1.- 1.1.1.76 1.1.1.304] +K03367 dltA; D-alanine--poly(phosphoribitol) ligase subunit 1 [EC:6.1.1.13] +K03368 ST3GAL2; beta-galactoside alpha-2,3-sialyltransferase (sialyltransferase 4B) [EC:2.4.3.2 2.4.3.4] +K03369 ST8SIA5; alpha-N-acetyl-neuraminate alpha-2,8-sialyltransferase (sialyltransferase 8E) [EC:2.4.3.-] +K03370 ST3GAL5; lactosylceramide alpha-2,3-sialyltransferase (sialyltransferase 9) [EC:2.4.3.9] +K03371 ST8SIA1; alpha-N-acetylneuraminate alpha-2,8-sialyltransferase (sialyltransferase 8A) [EC:2.4.3.8] +K03372 SLC33A1, ACATN; MFS transporter, PAT family, solute carrier family 33 (acetyl-CoA transportor), member 1 [EC:2.3.1.-] +K03373 ST6GALNAC3; N-acetylgalactosaminide alpha-2,6-sialyltransferase (sialyltransferase 7C) [EC:2.4.3.7] +K03374 ST6GALNAC4; N-acetylgalactosaminide alpha-2,6-sialyltransferase (sialyltransferase 7D) [EC:2.4.3.7] +K03375 ST6GALNAC5; N-acetylgalactosaminide alpha-2,6-sialyltransferase (sialyltransferase 7E) [EC:2.4.3.-] +K03376 ST6GALNAC6; N-acetylgalactosaminide alpha-2,6-sialyltransferase (sialyltransferase 7F) [EC:2.4.3.-] +K03377 CASD1; N-acetylneuraminate 9-O-acetyltransferase [EC:2.3.1.45] +K03378 morA; morphine 6-dehydrogenase [EC:1.1.1.218] +K03379 chnB; cyclohexanone monooxygenase [EC:1.14.13.22] +K03380 E1.14.13.7; phenol 2-monooxygenase (NADPH) [EC:1.14.13.7] +K03381 catA; catechol 1,2-dioxygenase [EC:1.13.11.1] +K03382 atzB; hydroxydechloroatrazine ethylaminohydrolase [EC:3.5.4.43] +K03383 atzD; cyanuric acid amidohydrolase [EC:3.5.2.15] +K03385 nrfA; nitrite reductase (cytochrome c-552) [EC:1.7.2.2] +K03386 PRDX2_4, ahpC; peroxiredoxin 2/4 [EC:1.11.1.24] +K03387 ahpF; NADH-dependent peroxiredoxin subunit F [EC:1.8.1.-] +K03388 hdrA2; heterodisulfide reductase subunit A2 [EC:1.8.7.3 1.8.98.4 1.8.98.5 1.8.98.6] +K03389 hdrB2; heterodisulfide reductase subunit B2 [EC:1.8.7.3 1.8.98.4 1.8.98.5 1.8.98.6] +K03390 hdrC2; heterodisulfide reductase subunit C2 [EC:1.8.7.3 1.8.98.4 1.8.98.5 1.8.98.6] +K03391 pcpB; pentachlorophenol monooxygenase [EC:1.14.13.50] +K03392 ACMSD; aminocarboxymuconate-semialdehyde decarboxylase [EC:4.1.1.45] +K03393 pacX; phenylalanine 3-monooxygenase [EC:1.14.16.7] +K03394 cobI-cbiL; precorrin-2/cobalt-factor-2 C20-methyltransferase [EC:2.1.1.130 2.1.1.151] +K03395 aac3-I; aminoglycoside 3-N-acetyltransferase I [EC:2.3.1.60] +K03396 gfa; S-(hydroxymethyl)glutathione synthase [EC:4.4.1.22] +K03397 E6.3.2.20; indoleacetate---lysine synthetase [EC:6.3.2.20] +K03399 cbiE; cobalt-precorrin-7 (C5)-methyltransferase [EC:2.1.1.289] +K03400 luxC; long-chain-fatty-acyl-CoA reductase [EC:1.2.1.50] +K03402 argR, ahrC; transcriptional regulator of arginine metabolism +K03403 chlH, bchH; magnesium chelatase subunit H [EC:6.6.1.1] +K03404 chlD, bchD; magnesium chelatase subunit D [EC:6.6.1.1] +K03405 chlI, bchI; magnesium chelatase subunit I [EC:6.6.1.1] +K03406 mcp; methyl-accepting chemotaxis protein +K03407 cheA; two-component system, chemotaxis family, sensor kinase CheA [EC:2.7.13.3] +K03408 cheW; purine-binding chemotaxis protein CheW +K03409 cheX; chemotaxis protein CheX +K03410 cheC; chemotaxis protein CheC +K03411 cheD; chemotaxis protein CheD [EC:3.5.1.44] +K03412 cheB; two-component system, chemotaxis family, protein-glutamate methylesterase/glutaminase [EC:3.1.1.61 3.5.1.44] +K03413 cheY; two-component system, chemotaxis family, chemotaxis protein CheY +K03414 cheZ; chemotaxis protein CheZ +K03415 cheV; two-component system, chemotaxis family, chemotaxis protein CheV +K03416 E2.1.3.1-5S; methylmalonyl-CoA carboxyltransferase 5S subunit [EC:2.1.3.1] +K03417 prpB; methylisocitrate lyase [EC:4.1.3.30] +K03418 dmfA2; N,N-dimethylformamidase large subunit [EC:3.5.1.56] +K03419 CHPF2; chondroitin polymerizing factor 2 [EC:2.4.1.226] +K03420 psmR; proteasome regulatory subunit +K03421 mcrC; methyl-coenzyme M reductase subunit C +K03422 mcrD; methyl-coenzyme M reductase subunit D +K03423 E1.8.1.13; bis-gamma-glutamylcystine reductase [EC:1.8.1.13] +K03424 tatD; TatD DNase family protein [EC:3.1.21.-] +K03425 tatE; sec-independent protein translocase protein TatE +K03426 NUDT12_13, nudC; NAD+ diphosphatase [EC:3.6.1.22] +K03427 hsdM; type I restriction enzyme M protein [EC:2.1.1.72] +K03428 bchM, chlM; magnesium-protoporphyrin O-methyltransferase [EC:2.1.1.11] +K03429 ugtP; processive 1,2-diacylglycerol beta-glucosyltransferase [EC:2.4.1.315] +K03430 phnW; 2-aminoethylphosphonate-pyruvate transaminase [EC:2.6.1.37] +K03431 glmM; phosphoglucosamine mutase [EC:5.4.2.10] +K03432 psmA, prcA; proteasome alpha subunit [EC:3.4.25.1] +K03433 psmB, prcB; proteasome beta subunit [EC:3.4.25.1] +K03434 PIGL; N-acetylglucosaminylphosphatidylinositol deacetylase [EC:3.5.1.89] +K03435 fruR1, fruR; LacI family transcriptional regulator, fructose operon transcriptional repressor +K03436 fruR2, fruR; DeoR family transcriptional regulator, fructose operon transcriptional repressor +K03437 spoU; RNA methyltransferase, TrmH family +K03438 mraW, rsmH; 16S rRNA (cytosine1402-N4)-methyltransferase [EC:2.1.1.199] +K03439 trmB, METTL1, TRM8; tRNA (guanine-N7-)-methyltransferase [EC:2.1.1.33] +K03440 ASICN; acid-sensing ion channel, other +K03441 GLP-F; aquaglyceroporin related protein, other eukaryote +K03442 mscS; small conductance mechanosensitive channel +K03443 PANX1; pannexin 1 +K03444 ERD6, ESL1; MFS transporter, SP family, ERD6-like sugar transporter +K03445 nepI; MFS transporter, DHA1 family, purine ribonucleoside efflux pump +K03446 emrB; MFS transporter, DHA2 family, multidrug resistance protein +K03447 SLC37A3; MFS transporter, OPA family, solute carrier family 37 (glycerol-3-phosphate transporter), member 3 +K03448 FEN2, LIZ1; MFS transporter, ACS family, pantothenate transporter +K03449 MFS.CP; MFS transporter, CP family, cyanate transporter +K03451 TC.BCT; betaine/carnitine transporter, BCCT family +K03452 MHX; magnesium/proton exchanger +K03453 TC.BASS; bile acid:Na+ symporter, BASS family +K03454 SLC25A46; solute carrier family 25, member 46 +K03455 KEA1_2_3, kefB, kefC; K+:H+ antiporter +K03456 PPP2R1; serine/threonine-protein phosphatase 2A regulatory subunit A +K03457 TC.NCS1; nucleobase:cation symporter-1, NCS1 family +K03458 TC.NCS2; nucleobase:cation symporter-2, NCS2 family +K03459 focB; formate transporter +K03460 SLCO1A; solute carrier organic anion transporter family, member 1A +K03462 NAMPT; nicotinamide phosphoribosyltransferase [EC:2.4.2.12] +K03463 E5.5.1.30; labda-7,13-dienyl diphosphate synthase [EC:5.5.1.30] +K03464 catC; muconolactone D-isomerase [EC:5.3.3.4] +K03465 thyX, thy1; thymidylate synthase (FAD) [EC:2.1.1.148] +K03466 ftsK, spoIIIE; DNA segregation ATPase FtsK/SpoIIIE, S-DNA-T family +K03468 aaeB; p-hydroxybenzoic acid efflux pump subunit AaeB +K03469 rnhA, RNASEH1; ribonuclease HI [EC:3.1.26.4] +K03470 rnhB; ribonuclease HII [EC:3.1.26.4] +K03471 rnhC; ribonuclease HIII [EC:3.1.26.4] +K03472 epd; D-erythrose 4-phosphate dehydrogenase [EC:1.2.1.72] +K03473 pdxB; erythronate-4-phosphate dehydrogenase [EC:1.1.1.290] +K03474 pdxJ; pyridoxine 5-phosphate synthase [EC:2.6.99.2] +K03475 ulaA, sgaT; ascorbate PTS system EIIC component +K03476 ulaG; L-ascorbate 6-phosphate lactonase [EC:3.1.1.-] +K03477 ulaR; DeoR family transcriptional regulator, ulaG and ulaABCDEF operon transcriptional repressor +K03478 chbG; chitin disaccharide deacetylase [EC:3.5.1.105] +K03479 ST6GALNAC1; alpha-N-acetylgalactosaminide alpha-2,6-sialyltransferase (sialyltransferase 7A) [EC:2.4.3.3] +K03480 glcT; transcriptional antiterminator +K03481 glvR; RpiR family transcriptional regulator, glv operon transcriptional regulator +K03482 yidP; GntR family transcriptional regulator, glv operon transcriptional regulator +K03483 mtlR; mannitol operon transcriptional activator +K03484 scrR; LacI family transcriptional regulator, sucrose operon repressor +K03485 treR; LacI family transcriptional regulator, trehalose operon repressor +K03486 treR2, treR; GntR family transcriptional regulator, trehalose operon transcriptional repressor +K03487 ascG; LacI family transcriptional regulator, asc operon repressor +K03488 licT, bglG; beta-glucoside operon transcriptional antiterminator +K03489 yydK; GntR family transcriptional regulator, transcriptional regulator of bglA +K03490 chbR, celD; AraC family transcriptional regulator, dual regulator of chb operon +K03491 licR; probable licABCH operon transcriptional regulator +K03492 gmuR; GntR family transcriptional regulator, regulator of glucomannan utilization +K03493 bglG1; transcriptional antiterminator +K03494 ST3GAL4; beta-galactoside alpha-2,3-sialyltransferase (sialyltransferase 4C) [EC:2.4.3.2 2.4.3.4 2.4.3.6] +K03495 gidA, mnmG, MTO1; tRNA uridine 5-carboxymethylaminomethyl modification enzyme +K03496 parA, soj; chromosome partitioning protein +K03497 parB, spo0J; ParB family transcriptional regulator, chromosome partitioning protein +K03498 trkH, trkG, ktrB, ktrD; trk/ktr system potassium uptake protein +K03499 trkA, ktrA, ktrC; trk/ktr system potassium uptake protein +K03500 rsmB, sun; 16S rRNA (cytosine967-C5)-methyltransferase [EC:2.1.1.176] +K03501 gidB, rsmG; 16S rRNA (guanine527-N7)-methyltransferase [EC:2.1.1.170] +K03502 umuC; DNA polymerase V +K03503 umuD; DNA polymerase V [EC:3.4.21.-] +K03504 POLD3; DNA polymerase delta subunit 3 +K03505 POLD4; DNA polymerase delta subunit 4 +K03506 POLE4; DNA polymerase epsilon subunit 4 [EC:2.7.7.7] +K03507 DPB11; DNA replication regulator DPB11 +K03508 POLZ2, rev7; DNA polymerase zeta [EC:2.7.7.7] +K03509 POLH; DNA polymerase eta [EC:2.7.7.7] +K03510 POLI; DNA polymerase iota [EC:2.7.7.7] +K03511 POLK; DNA polymerase kappa [EC:2.7.7.7] +K03512 POLL; DNA polymerase lambda [EC:2.7.7.7 4.2.99.-] +K03513 POLM; DNA polymerase mu [EC:2.7.7.7] +K03514 PAPD5_7, TRF4; non-canonical poly(A) RNA polymerase PAPD5/7 [EC:2.7.7.19] +K03515 REV1; DNA repair protein REV1 [EC:2.7.7.-] +K03516 flhE; flagellar protein FlhE +K03517 nadA; quinolinate synthase [EC:2.5.1.72] +K03518 coxS; aerobic carbon-monoxide dehydrogenase small subunit [EC:1.2.5.3] +K03519 coxM, cutM; aerobic carbon-monoxide dehydrogenase medium subunit [EC:1.2.5.3] +K03520 coxL, cutL; aerobic carbon-monoxide dehydrogenase large subunit [EC:1.2.5.3] +K03521 fixA, etfB; electron transfer flavoprotein beta subunit +K03522 fixB, etfA; electron transfer flavoprotein alpha subunit +K03523 bioY; biotin transport system substrate-specific component +K03524 birA; BirA family transcriptional regulator, biotin operon repressor / biotin---[acetyl-CoA-carboxylase] ligase [EC:6.3.4.15] +K03525 coaX; type III pantothenate kinase [EC:2.7.1.33] +K03526 gcpE, ispG; (E)-4-hydroxy-3-methylbut-2-enyl-diphosphate synthase [EC:1.17.7.1 1.17.7.3] +K03527 ispH, lytB; 4-hydroxy-3-methylbut-2-en-1-yl diphosphate reductase [EC:1.17.7.4] +K03528 zipA; cell division protein ZipA +K03529 smc; chromosome segregation protein +K03530 hupB; DNA-binding protein HU-beta +K03531 ftsZ; cell division protein FtsZ +K03532 torC; trimethylamine-N-oxide reductase (cytochrome c), cytochrome c-type subunit TorC +K03533 torD; TorA specific chaperone +K03534 rhaM; L-rhamnose mutarotase [EC:5.1.3.32] +K03535 gudP; MFS transporter, ACS family, glucarate transporter +K03536 rnpA; ribonuclease P protein component [EC:3.1.26.5] +K03537 POP5; ribonuclease P/MRP protein subunit POP5 [EC:3.1.26.5] +K03538 POP4, RPP29; ribonuclease P protein subunit POP4 [EC:3.1.26.5] +K03539 RPP1, RPP30; ribonuclease P/MRP protein subunit RPP1 [EC:3.1.26.5] +K03540 RPR2, RPP21; ribonuclease P protein subunit RPR2 [EC:3.1.26.5] +K03541 psbR; photosystem II 10kDa protein +K03542 psbS; photosystem II 22kDa protein +K03543 emrA; membrane fusion protein, multidrug efflux system +K03544 clpX, CLPX; ATP-dependent Clp protease ATP-binding subunit ClpX +K03545 tig; trigger factor +K03546 sbcC, rad50; DNA repair protein SbcC/Rad50 +K03547 sbcD, mre11; DNA repair protein SbcD/Mre11 +K03548 perM; putative permease +K03549 kup; KUP system potassium uptake protein +K03550 ruvA; holliday junction DNA helicase RuvA +K03551 ruvB; holliday junction DNA helicase RuvB [EC:5.6.2.4] +K03552 hjr, hjc, hje; holliday junction resolvase [EC:3.1.21.10] +K03553 recA; recombination protein RecA +K03554 rdgC; recombination associated protein RdgC +K03555 mutS; DNA mismatch repair protein MutS +K03556 malT; LuxR family transcriptional regulator, maltose regulon positive regulatory protein +K03557 fis; Fis family transcriptional regulator, factor for inversion stimulation protein +K03558 cvpA; membrane protein required for colicin V production +K03559 exbD; biopolymer transport protein ExbD +K03560 tolR; biopolymer transport protein TolR +K03561 exbB; biopolymer transport protein ExbB +K03562 tolQ; biopolymer transport protein TolQ +K03563 csrA; carbon storage regulator +K03564 BCP, PRXQ, DOT5; thioredoxin-dependent peroxiredoxin [EC:1.11.1.24] +K03565 recX; regulatory protein +K03566 gcvA; LysR family transcriptional regulator, glycine cleavage system transcriptional activator +K03567 gcvR; glycine cleavage system transcriptional repressor +K03568 tldD; TldD protein +K03569 mreB; rod shape-determining protein MreB and related proteins +K03570 mreC; rod shape-determining protein MreC +K03571 mreD; rod shape-determining protein MreD +K03572 mutL; DNA mismatch repair protein MutL +K03573 mutH; DNA mismatch repair protein MutH +K03574 mutT, NUDT15, MTH2; 8-oxo-dGTP diphosphatase [EC:3.6.1.55] +K03575 mutY; A/G-specific adenine glycosylase [EC:3.2.2.31] +K03576 metR; LysR family transcriptional regulator, regulator for metE and metH +K03577 acrR, smeT; TetR/AcrR family transcriptional regulator, acrAB operon repressor +K03578 hrpA; ATP-dependent RNA helicase HrpA [EC:5.6.2.6] +K03579 hrpB; ATP-dependent RNA helicase HrpB [EC:5.6.2.6] +K03580 hepA; ATP-dependent helicase HepA [EC:5.6.2.-] +K03581 recD; exodeoxyribonuclease V alpha subunit [EC:3.1.11.5] +K03582 recB; exodeoxyribonuclease V beta subunit [EC:3.1.11.5] +K03583 recC; exodeoxyribonuclease V gamma subunit [EC:3.1.11.5] +K03584 recO; DNA repair protein RecO (recombination protein O) +K03585 acrA, mexA, adeI, smeD, mtrC, cmeA; membrane fusion protein, multidrug efflux system +K03586 ftsL; cell division protein FtsL +K03587 ftsI; cell division protein FtsI (penicillin-binding protein 3) [EC:3.4.16.4] +K03588 ftsW, spoVE; cell division protein FtsW +K03589 ftsQ; cell division protein FtsQ +K03590 ftsA; cell division protein FtsA +K03591 ftsN; cell division protein FtsN +K03592 pmbA; PmbA protein +K03593 mrp, NUBPL; ATP-binding protein involved in chromosome partitioning +K03594 bfr; bacterioferritin [EC:1.16.3.1] +K03595 era, ERAL1; GTPase +K03596 lepA; GTP-binding protein LepA +K03597 rseA; sigma-E factor negative regulatory protein RseA +K03598 rseB; sigma-E factor negative regulatory protein RseB +K03599 sspA, mglA; stringent starvation protein A +K03600 sspB; stringent starvation protein B +K03601 xseA; exodeoxyribonuclease VII large subunit [EC:3.1.11.6] +K03602 xseB; exodeoxyribonuclease VII small subunit [EC:3.1.11.6] +K03603 fadR; GntR family transcriptional regulator, negative regulator for fad regulon and positive regulator of fabA +K03604 purR; LacI family transcriptional regulator, purine nucleotide synthesis repressor +K03605 hyaD, hybD; hydrogenase maturation protease [EC:3.4.23.-] +K03606 wcaJ; undecaprenyl-phosphate glucose phosphotransferase [EC:2.7.8.31] +K03607 proQ; ProP effector +K03608 minE; cell division topological specificity factor +K03609 minD; septum site-determining protein MinD +K03610 minC; septum site-determining protein MinC +K03611 dsbB; protein dithiol:quinone oxidoreductase [EC:1.8.5.9] +K03612 rnfG; H+/Na+-translocating ferredoxin:NAD+ oxidoreductase subunit G +K03613 rnfE; H+/Na+-translocating ferredoxin:NAD+ oxidoreductase subunit E +K03614 rnfD; H+/Na+-translocating ferredoxin:NAD+ oxidoreductase subunit D [EC:7.1.1.11 7.2.1.2] +K03615 rnfC; H+/Na+-translocating ferredoxin:NAD+ oxidoreductase subunit C [EC:7.1.1.11 7.2.1.2] +K03616 rnfB; H+/Na+-translocating ferredoxin:NAD+ oxidoreductase subunit B [EC:7.1.1.11 7.2.1.2] +K03617 rnfA; H+/Na+-translocating ferredoxin:NAD+ oxidoreductase subunit A +K03618 hyaF; hydrogenase-1 operon protein HyaF +K03619 hyaE; hydrogenase-1 operon protein HyaE +K03620 hyaC; Ni/Fe-hydrogenase 1 B-type cytochrome subunit +K03621 plsX; phosphate acyltransferase [EC:2.3.1.274] +K03622 ssh10b; archaea-specific DNA-binding protein +K03623 yhcO; ribonuclease inhibitor +K03624 greA; transcription elongation factor GreA +K03625 nusB; transcription antitermination protein NusB +K03626 EGD2, NACA; nascent polypeptide-associated complex subunit alpha +K03627 MBF1; putative transcription factor +K03628 rho; transcription termination factor Rho +K03629 recF; DNA replication and repair protein RecF +K03630 radC; DNA repair protein RadC +K03631 recN; DNA repair protein RecN (Recombination protein N) +K03632 mukB; chromosome partition protein MukB +K03633 mukF; chromosome partition protein MukF +K03634 lolA; outer membrane lipoprotein carrier protein +K03635 MOCS2B, moaE; molybdopterin synthase catalytic subunit [EC:2.8.1.12] +K03636 moaD, cysO; sulfur-carrier protein +K03637 moaC, CNX3; cyclic pyranopterin monophosphate synthase [EC:4.6.1.17] +K03638 moaB; molybdopterin adenylyltransferase [EC:2.7.7.75] +K03639 moaA, CNX2; GTP 3',8-cyclase [EC:4.1.99.22] +K03640 pal; peptidoglycan-associated lipoprotein +K03641 tolB; TolB protein +K03642 rlpA; peptidoglycan lytic transglycosylase [EC:4.2.2.29] +K03643 lptE, rlpB; LPS-assembly lipoprotein +K03644 lipA, LIAS, LIP1, LIP5; lipoyl synthase [EC:2.8.1.8] +K03645 seqA; negative modulator of initiation of replication +K03646 tolA; colicin import membrane protein +K03647 nrdI; protein involved in ribonucleotide reduction +K03648 UNG, UDG; uracil-DNA glycosylase [EC:3.2.2.27] +K03649 mug; double-stranded uracil-DNA glycosylase [EC:3.2.2.28] +K03650 mnmE, trmE, MSS1; tRNA modification GTPase [EC:3.6.-.-] +K03651 cpdA; 3',5'-cyclic-AMP phosphodiesterase [EC:3.1.4.53] +K03652 MPG; DNA-3-methyladenine glycosylase [EC:3.2.2.21] +K03653 K03653; N-glycosylase/DNA lyase [EC:3.2.2.- 4.2.99.18] +K03654 recQ; ATP-dependent DNA helicase RecQ [EC:5.6.2.4] +K03655 recG; ATP-dependent DNA helicase RecG [EC:5.6.2.4] +K03656 rep; ATP-dependent DNA helicase Rep [EC:5.6.2.4] +K03657 uvrD, pcrA; ATP-dependent DNA helicase UvrD/PcrA [EC:5.6.2.4] +K03658 helD; DNA helicase IV [EC:5.6.2.4] +K03660 OGG1; N-glycosylase/DNA lyase [EC:3.2.2.- 4.2.99.18] +K03661 ATPeV0B, ATP6F; V-type H+-transporting ATPase 21kDa proteolipid subunit +K03662 ATPeVS1, ATP6S1; V-type H+-transporting ATPase S1 subunit +K03663 FUT9; 4-galactosyl-N-acetylglucosaminide 3-alpha-L-fucosyltransferase [EC:2.4.1.152] +K03664 smpB; SsrA-binding protein +K03665 hflX; GTPase +K03666 hfq; host factor-I protein +K03667 hslU; ATP-dependent HslUV protease ATP-binding subunit HslU +K03668 hslJ; heat shock protein HslJ +K03669 mdoH; membrane glycosyltransferase [EC:2.4.1.-] +K03670 mdoG; periplasmic glucans biosynthesis protein +K03671 TXN, trxA; thioredoxin +K03672 trxC; thioredoxin 2 [EC:1.8.1.8] +K03673 dsbA; protein dithiol oxidoreductase (disulfide-forming) [EC:1.8.4.15] +K03674 grxA; glutaredoxin 1 +K03675 grxB; glutaredoxin 2 +K03676 grxC, GLRX, GLRX2; glutaredoxin 3 +K03678 RRP45, EXOSC9; exosome complex component RRP45 +K03679 RRP4, EXOSC2; exosome complex component RRP4 +K03680 EIF2B4; translation initiation factor eIF-2B subunit delta +K03681 RRP40, EXOSC3; exosome complex component RRP40 +K03683 rnt; ribonuclease T [EC:3.1.13.-] +K03684 rnd; ribonuclease D [EC:3.1.13.5] +K03685 rnc, DROSHA, RNT1; ribonuclease III [EC:3.1.26.3] +K03686 dnaJ; molecular chaperone DnaJ +K03687 GRPE; molecular chaperone GrpE +K03688 ubiB, aarF; ubiquinone biosynthesis protein +K03689 petN; cytochrome b6-f complex subunit 8 +K03690 ubiJ; ubiquinone biosynthesis accessory factor UbiJ +K03691 POFUT; peptide-O-fucosyltransferase [EC:2.4.1.221] +K03692 E2.4.1.213; glucosylglycerol-phosphate synthase [EC:2.4.1.213] +K03693 pbp1b; penicillin-binding protein 1B +K03694 clpA; ATP-dependent Clp protease ATP-binding subunit ClpA +K03695 clpB; ATP-dependent Clp protease ATP-binding subunit ClpB +K03696 clpC; ATP-dependent Clp protease ATP-binding subunit ClpC +K03697 clpE; ATP-dependent Clp protease ATP-binding subunit ClpE +K03698 cbf, cbf1; 3'-5' exoribonuclease [EC:3.1.-.-] +K03699 tlyC; magnesium and cobalt exporter, CNNM family +K03700 recU; recombination protein U +K03701 uvrA; excinuclease ABC subunit A +K03702 uvrB; excinuclease ABC subunit B +K03703 uvrC; excinuclease ABC subunit C +K03704 cspA; cold shock protein +K03705 hrcA; heat-inducible transcriptional repressor +K03706 codY; transcriptional pleiotropic repressor +K03707 tenA; thiaminase (transcriptional activator TenA) [EC:3.5.99.2] +K03708 ctsR; transcriptional regulator of stress and heat shock response +K03709 troR, sirR, scaR, mntR; DtxR family transcriptional regulator, Mn-dependent transcriptional regulator +K03710 K03710; GntR family transcriptional regulator +K03711 fur, zur, furB; Fur family transcriptional regulator, ferric uptake regulator +K03712 marR; MarR family transcriptional regulator, multiple antibiotic resistance protein MarR +K03713 glnR; MerR family transcriptional regulator, glutamine synthetase repressor +K03714 XYLT; glycoprotein 2-beta-D-xylosyltransferase [EC:2.4.2.38] +K03715 MGD; 1,2-diacylglycerol 3-beta-galactosyltransferase [EC:2.4.1.46] +K03716 splB; spore photoproduct lyase [EC:4.1.99.14] +K03717 nhaR; LysR family transcriptional regulator, transcriptional activator of nhaA +K03718 asnC; Lrp/AsnC family transcriptional regulator, regulator for asnA, asnC and gidA +K03719 lrp; Lrp/AsnC family transcriptional regulator, leucine-responsive regulatory protein +K03720 trpR; TrpR family transcriptional regulator, trp operon repressor +K03721 tyrR; transcriptional regulator of aroF, aroG, tyrA and aromatic amino acid transport +K03722 dinG; ATP-dependent DNA helicase DinG [EC:5.6.2.3] +K03723 mfd; transcription-repair coupling factor (superfamily II helicase) [EC:5.6.2.4] +K03724 lhr; ATP-dependent helicase Lhr and Lhr-like helicase [EC:5.6.2.6 5.6.2.4] +K03725 K03725; putative ATP-dependent RNA helicase [EC:5.6.2.-] +K03726 helS; ATP-dependent DNA helicase [EC:5.6.2.4] +K03727 helY; ATP-dependent RNA helicase HelY [EC:5.6.2.6] +K03728 NR1D1; nuclear receptor subfamily 1 group D member 1 +K03729 BHLHB2, DEC1; class B basic helix-loop-helix protein 2 +K03730 BHLHB3, DEC2; class B basic helix-loop-helix protein 3 +K03731 E2.4.1.216; trehalose 6-phosphate phosphorylase [EC:2.4.1.216] +K03732 rhlB; ATP-dependent RNA helicase RhlB [EC:5.6.2.7] +K03733 xerC; integrase/recombinase XerC +K03734 apbE; FAD:protein FMN transferase [EC:2.7.1.180] +K03735 eutB; ethanolamine ammonia-lyase large subunit [EC:4.3.1.7] +K03736 eutC; ethanolamine ammonia-lyase small subunit [EC:4.3.1.7] +K03737 por, nifJ; pyruvate-ferredoxin/flavodoxin oxidoreductase [EC:1.2.7.1 1.2.7.-] +K03738 aor; aldehyde:ferredoxin oxidoreductase [EC:1.2.7.5] +K03739 dltB; membrane protein involved in D-alanine export +K03740 dltD; D-alanine transfer protein +K03741 arsC; arsenate reductase (thioredoxin) [EC:1.20.4.4] +K03742 pncC; nicotinamide-nucleotide amidase [EC:3.5.1.42] +K03743 pncC; nicotinamide-nucleotide amidase [EC:3.5.1.42] +K03744 lemA; LemA protein +K03745 slyX; SlyX protein +K03746 hns; DNA-binding protein H-NS +K03747 smg; Smg protein +K03748 sanA; SanA protein +K03749 dedD; DedD protein +K03750 moeA; molybdopterin molybdotransferase [EC:2.10.1.1] +K03752 mobA; molybdenum cofactor guanylyltransferase [EC:2.7.7.77] +K03753 mobB; molybdopterin-guanine dinucleotide biosynthesis adapter protein +K03754 EIF2B2; translation initiation factor eIF-2B subunit beta +K03755 adiY; AraC family transcriptional regulator, transcriptional activator of adiA +K03756 potE; putrescine:ornithine antiporter +K03757 cadB; cadaverine:lysine antiporter +K03758 arcD, lysl, lysP; arginine:ornithine antiporter / lysine permease +K03759 adiC; arginine:agmatine antiporter +K03760 eptA, pmrC; lipid A ethanolaminephosphotransferase [EC:2.7.8.43] +K03761 kgtP; MFS transporter, MHS family, alpha-ketoglutarate permease +K03762 proP; MFS transporter, MHS family, proline/betaine transporter +K03763 polC; DNA polymerase III subunit alpha, Gram-positive type [EC:2.7.7.7] +K03764 metJ; MetJ family transcriptional regulator, methionine regulon repressor +K03765 cadC; transcriptional activator of cad operon +K03766 B3GNT5; beta-1,3-N-acetylglucosaminyltransferase 5 [EC:2.4.1.206] +K03767 PPIA; peptidyl-prolyl cis-trans isomerase A (cyclophilin A) [EC:5.2.1.8] +K03768 PPIB, ppiB; peptidyl-prolyl cis-trans isomerase B (cyclophilin B) [EC:5.2.1.8] +K03769 ppiC; peptidyl-prolyl cis-trans isomerase C [EC:5.2.1.8] +K03770 ppiD; peptidyl-prolyl cis-trans isomerase D [EC:5.2.1.8] +K03771 surA; peptidyl-prolyl cis-trans isomerase SurA [EC:5.2.1.8] +K03772 fkpA; FKBP-type peptidyl-prolyl cis-trans isomerase FkpA [EC:5.2.1.8] +K03773 fklB; FKBP-type peptidyl-prolyl cis-trans isomerase FklB [EC:5.2.1.8] +K03774 slpA; FKBP-type peptidyl-prolyl cis-trans isomerase SlpA [EC:5.2.1.8] +K03775 slyD; FKBP-type peptidyl-prolyl cis-trans isomerase SlyD [EC:5.2.1.8] +K03776 aer; aerotaxis receptor +K03777 dld; D-lactate dehydrogenase (quinone) [EC:1.1.5.12] +K03778 ldhA; D-lactate dehydrogenase [EC:1.1.1.28] +K03779 ttdA; L(+)-tartrate dehydratase alpha subunit [EC:4.2.1.32] +K03780 ttdB; L(+)-tartrate dehydratase beta subunit [EC:4.2.1.32] +K03781 katE, CAT, catB, srpA; catalase [EC:1.11.1.6] +K03782 katG; catalase-peroxidase [EC:1.11.1.21] +K03783 punA, PNP; purine-nucleoside phosphorylase [EC:2.4.2.1] +K03784 deoD; purine-nucleoside phosphorylase [EC:2.4.2.1] +K03785 aroD; 3-dehydroquinate dehydratase I [EC:4.2.1.10] +K03786 aroQ, qutE; 3-dehydroquinate dehydratase II [EC:4.2.1.10] +K03787 surE; 5'/3'-nucleotidase [EC:3.1.3.5 3.1.3.6] +K03788 aphA; acid phosphatase (class B) [EC:3.1.3.2] +K03789 rimI; [ribosomal protein S18]-alanine N-acetyltransferase [EC:2.3.1.266] +K03790 rimJ; [ribosomal protein S5]-alanine N-acetyltransferase [EC:2.3.1.267] +K03791 K03791; putative chitinase +K03792 ST3GAL6; N-acetyllactosaminide alpha-2,3-sialyltransferase (sialyltransferase 10) [EC:2.4.3.6] +K03793 PTR1; pteridine reductase [EC:1.5.1.33] +K03794 sirB; sirohydrochlorin ferrochelatase [EC:4.99.1.4] +K03795 cbiX; sirohydrochlorin cobaltochelatase [EC:4.99.1.3] +K03796 bax; Bax protein +K03797 E3.4.21.102, prc, ctpA; carboxyl-terminal processing protease [EC:3.4.21.102] +K03798 ftsH, hflB; cell division protease FtsH [EC:3.4.24.-] +K03799 htpX; heat shock protein HtpX [EC:3.4.24.-] +K03800 lplA, lplJ, lipL1; lipoate---protein ligase [EC:6.3.1.20] +K03801 lipB; lipoyl(octanoyl) transferase [EC:2.3.1.181] +K03802 cphA; cyanophycin synthetase [EC:6.3.2.29 6.3.2.30] +K03803 rseC; sigma-E factor negative regulatory protein RseC +K03804 mukE; chromosome partition protein MukE +K03805 dsbG; thiol:disulfide interchange protein DsbG +K03806 ampD; N-acetyl-anhydromuramoyl-L-alanine amidase [EC:3.5.1.28] +K03807 ampE; AmpE protein +K03808 pqiA; paraquat-inducible protein A +K03809 wrbA; NAD(P)H dehydrogenase (quinone) [EC:1.6.5.2] +K03810 mviM; virulence factor +K03811 pnuC; nicotinamide mononucleotide transporter +K03812 rmf; ribosome modulation factor +K03813 modD; molybdenum transport protein [EC:2.4.2.-] +K03814 mtgA; monofunctional glycosyltransferase [EC:2.4.99.28] +K03816 xpt; xanthine phosphoribosyltransferase [EC:2.4.2.22] +K03817 rimL; ribosomal-protein-serine acetyltransferase [EC:2.3.1.-] +K03818 wcaF; putative colanic acid biosynthesis acetyltransferase WcaF [EC:2.3.1.-] +K03819 wcaB; putative colanic acid biosynthesis acetyltransferase WcaB [EC:2.3.1.-] +K03820 lnt; apolipoprotein N-acyltransferase [EC:2.3.1.269] +K03821 phaC, phbC; poly[(R)-3-hydroxyalkanoate] polymerase subunit PhaC [EC:2.3.1.304] +K03822 K03822; putative long chain acyl-CoA synthase [EC:6.2.1.-] +K03823 pat, bar; phosphinothricin acetyltransferase [EC:2.3.1.183] +K03824 yhbS; putative acetyltransferase [EC:2.3.1.-] +K03825 aaaT; L-phenylalanine/L-methionine N-acetyltransferase [EC:2.3.1.53 2.3.1.-] +K03826 yiaC; putative acetyltransferase [EC:2.3.1.-] +K03827 yjaB; putative acetyltransferase [EC:2.3.1.-] +K03828 yjgM; putative acetyltransferase [EC:2.3.1.-] +K03829 yedL; putative acetyltransferase [EC:2.3.1.-] +K03830 yafP; putative acetyltransferase [EC:2.3.1.-] +K03831 mogA; molybdopterin adenylyltransferase [EC:2.7.7.75] +K03832 tonB; periplasmic protein TonB +K03833 selB, EEFSEC; selenocysteine-specific elongation factor +K03834 tyrP; tyrosine-specific transport protein +K03835 mtr; tryptophan-specific transport protein +K03836 tnaB; low affinity tryptophan permease +K03837 sdaC; serine transporter +K03838 tdcC; threonine transporter +K03839 fldA, nifF, isiB; flavodoxin I +K03840 fldB; flavodoxin II +K03841 FBP, fbp; fructose-1,6-bisphosphatase I [EC:3.1.3.11] +K03842 ALG1; beta-1,4-mannosyltransferase [EC:2.4.1.142] +K03843 ALG2; alpha-1,3/alpha-1,6-mannosyltransferase [EC:2.4.1.132 2.4.1.257] +K03844 ALG11; alpha-1,2-mannosyltransferase [EC:2.4.1.131] +K03845 ALG3; alpha-1,3-mannosyltransferase [EC:2.4.1.258] +K03846 ALG9; alpha-1,2-mannosyltransferase [EC:2.4.1.259 2.4.1.261] +K03847 ALG12; alpha-1,6-mannosyltransferase [EC:2.4.1.260] +K03848 ALG6; alpha-1,3-glucosyltransferase [EC:2.4.1.267] +K03849 ALG8; alpha-1,3-glucosyltransferase [EC:2.4.1.265] +K03850 ALG10; alpha-1,2-glucosyltransferase [EC:2.4.1.256] +K03851 tpa; taurine-pyruvate aminotransferase [EC:2.6.1.77] +K03852 xsc; sulfoacetaldehyde acetyltransferase [EC:2.3.3.15] +K03853 CAPN2; calpain-2 [EC:3.4.22.53] +K03854 KTR; mannosyltransferase [EC:2.4.1.-] +K03855 fixX; ferredoxin like protein +K03856 AROA2, aroA; 3-deoxy-7-phosphoheptulonate synthase [EC:2.5.1.54] +K03857 PIGA, GPI3; phosphatidylinositol N-acetylglucosaminyltransferase subunit A [EC:2.4.1.198] +K03858 PIGH, GPI15; phosphatidylinositol N-acetylglucosaminyltransferase subunit H +K03859 PIGC, GPI2; phosphatidylinositol N-acetylglucosaminyltransferase subunit C +K03860 PIGQ, GPI1; phosphatidylinositol N-acetylglucosaminyltransferase subunit Q +K03861 PIGP, GPI19, DSCR5; phosphatidylinositol N-acetylglucosaminyltransferase subunit P +K03862 vanA; vanillate monooxygenase [EC:1.14.13.82] +K03863 vanB; vanillate monooxygenase ferredoxin subunit +K03865 GTF1; glutamyl-tRNA(Gln) amidotransferase subunit F [EC:6.3.5.7] +K03867 BGLUT; UDP-glucose:tetrahydrobiopterin glucosyltransferase [EC:2.4.1.-] +K03868 RBX1, ROC1; E3 ubiquitin-protein ligase RBX1 [EC:2.3.2.32] +K03869 CUL3; cullin 3 +K03870 CUL2; cullin 2 +K03871 VHL; von Hippel-Lindau disease tumor supressor +K03872 ELOC, TCEB1; elongin-C +K03873 ELOB, TCEB2; elongin-B +K03874 HECT; other hect domain ubiquitin protein ligase E3 [EC:2.3.2.26] +K03875 SKP2, FBXL1; F-box and leucine-rich repeat protein 1 (S-phase kinase-associated protein 2) +K03876 MEL26; BTB domain ubiquitin protein ligase cofactor +K03877 B3GALT5; beta-1,3-galactosyltransferase 5 [EC:2.4.1.-] +K03878 ND1; NADH-ubiquinone oxidoreductase chain 1 [EC:7.1.1.2] +K03879 ND2; NADH-ubiquinone oxidoreductase chain 2 [EC:7.1.1.2] +K03880 ND3; NADH-ubiquinone oxidoreductase chain 3 [EC:7.1.1.2] +K03881 ND4; NADH-ubiquinone oxidoreductase chain 4 [EC:7.1.1.2] +K03882 ND4L; NADH-ubiquinone oxidoreductase chain 4L [EC:7.1.1.2] +K03883 ND5; NADH-ubiquinone oxidoreductase chain 5 [EC:7.1.1.2] +K03884 ND6; NADH-ubiquinone oxidoreductase chain 6 [EC:7.1.1.2] +K03885 ndh; NADH:quinone reductase (non-electrogenic) [EC:1.6.5.9] +K03886 qcrA; quinol---cytochrome c reductase iron-sulfur subunit, bacillus type [EC:7.1.1.8] +K03887 qcrB; quinol---cytochrome c reductase cytochrome b subunit, bacillus type [EC:7.1.1.8] +K03888 qcrC; quinol---cytochrome c reductase cytochrome c subunit, bacillus type [EC:7.1.1.8] +K03889 qcrC; quinol---cytochrome-c reductase cytochrome c subunit [EC:7.1.1.8] +K03890 qcrA; quinol---cytochrome c reductase iron-sulfur subunit [EC:7.1.1.8] +K03891 qcrB; quinol---cytochrome-c reductase cytochrome b subunit [EC:7.1.1.8] +K03892 arsR; ArsR family transcriptional regulator, arsenate/arsenite/antimonite-responsive transcriptional repressor +K03893 arsB; arsenical pump membrane protein +K03894 iucA; N2-citryl-N6-acetyl-N6-hydroxylysine synthase [EC:6.3.2.38] +K03895 iucC; aerobactin synthase [EC:6.3.2.39] +K03896 iucB; acetyl CoA:N6-hydroxylysine acetyl transferase [EC:2.3.1.102] +K03897 iucD; lysine N6-hydroxylase [EC:1.14.13.59] +K03898 KNG, BK; kininogen +K03899 F8; coagulation factor VIII +K03900 VWF; von Willebrand factor +K03901 F3, CD142; coagulation factor III (tissue factor) +K03902 F5; coagulation factor V (labile factor) +K03903 FGA; fibrinogen alpha chain +K03904 FGB; fibrinogen beta chain +K03905 FGG; fibrinogen gamma chain +K03906 F13B; coagulation factor XIII B polypeptide +K03907 THBD, CD141; thrombomodulin +K03908 PROS1; protein S +K03909 TFPI; tissue factor pathway inhibitor +K03910 A2M; alpha-2-macroglobulin +K03911 SERPINC1, AT3; antithrombin III +K03912 SERPIND1, HCF2; heparin cofactor II +K03913 SERPINA5, PCI; protein C inhibitor +K03914 F2R, PAR1; coagulation factor II (thrombin) receptor +K03915 BDKRB1; bradykinin receptor B1 +K03916 BDKRB2; bradykinin receptor B2 +K03917 F13A1; coagulation factor XIII A1 polypeptide [EC:2.3.2.13] +K03918 lat; L-lysine 6-transaminase [EC:2.6.1.36] +K03919 alkB; DNA oxidative demethylase [EC:1.14.11.33] +K03921 FAB2, SSI2, desA1; acyl-[acyl-carrier protein] desaturase [EC:1.14.19.2 1.14.19.11 1.14.19.26] +K03922 desA2; acyl-[acyl-carrier protein] desaturase [EC:1.14.19.2 1.14.19.-] +K03923 mdaB; NADPH dehydrogenase (quinone) [EC:1.6.5.10] +K03924 moxR; MoxR-like ATPase [EC:3.6.3.-] +K03925 mraZ; transcriptional regulator MraZ +K03926 cutA; periplasmic divalent cation tolerance protein +K03927 CES2; carboxylesterase 2 [EC:3.1.1.1 3.1.1.84 3.1.1.56] +K03928 yvaK; carboxylesterase [EC:3.1.1.1] +K03929 pnbA; para-nitrobenzyl esterase [EC:3.1.1.-] +K03930 estA; putative tributyrin esterase [EC:3.1.1.-] +K03931 ygjK; glucosidase [EC:3.2.1.-] +K03932 lpqC; polyhydroxybutyrate depolymerase +K03933 cpbD; chitin-binding protein +K03934 NDUFS1; NADH dehydrogenase (ubiquinone) Fe-S protein 1 [EC:7.1.1.2] +K03935 NDUFS2; NADH dehydrogenase (ubiquinone) Fe-S protein 2 [EC:7.1.1.2] +K03936 NDUFS3; NADH dehydrogenase (ubiquinone) Fe-S protein 3 [EC:7.1.1.2] +K03937 NDUFS4; NADH dehydrogenase (ubiquinone) Fe-S protein 4 +K03938 NDUFS5; NADH dehydrogenase (ubiquinone) Fe-S protein 5 +K03939 NDUFS6; NADH dehydrogenase (ubiquinone) Fe-S protein 6 +K03940 NDUFS7; NADH dehydrogenase (ubiquinone) Fe-S protein 7 [EC:7.1.1.2] +K03941 NDUFS8; NADH dehydrogenase (ubiquinone) Fe-S protein 8 [EC:7.1.1.2] +K03942 NDUFV1; NADH dehydrogenase (ubiquinone) flavoprotein 1 [EC:7.1.1.2] +K03943 NDUFV2; NADH dehydrogenase (ubiquinone) flavoprotein 2 [EC:7.1.1.2] +K03944 NDUFV3; NADH dehydrogenase (ubiquinone) flavoprotein 3 +K03945 NDUFA1; NADH dehydrogenase (ubiquinone) 1 alpha subcomplex subunit 1 +K03946 NDUFA2; NADH dehydrogenase (ubiquinone) 1 alpha subcomplex subunit 2 +K03947 NDUFA3; NADH dehydrogenase (ubiquinone) 1 alpha subcomplex subunit 3 +K03948 NDUFA4; NADH dehydrogenase (ubiquinone) 1 alpha subcomplex subunit 4 +K03949 NDUFA5; NADH dehydrogenase (ubiquinone) 1 alpha subcomplex subunit 5 +K03950 NDUFA6; NADH dehydrogenase (ubiquinone) 1 alpha subcomplex subunit 6 +K03951 NDUFA7; NADH dehydrogenase (ubiquinone) 1 alpha subcomplex subunit 7 +K03952 NDUFA8; NADH dehydrogenase (ubiquinone) 1 alpha subcomplex subunit 8 +K03953 NDUFA9; NADH dehydrogenase (ubiquinone) 1 alpha subcomplex subunit 9 +K03954 NDUFA10; NADH dehydrogenase (ubiquinone) 1 alpha subcomplex subunit 10 +K03955 NDUFAB1; NADH dehydrogenase (ubiquinone) 1 alpha/beta subcomplex 1, acyl-carrier protein +K03956 NDUFA11; NADH dehydrogenase (ubiquinone) 1 alpha subcomplex subunit 11 +K03957 NDUFB1; NADH dehydrogenase (ubiquinone) 1 beta subcomplex subunit 1 +K03958 NDUFB2; NADH dehydrogenase (ubiquinone) 1 beta subcomplex subunit 2 +K03959 NDUFB3; NADH dehydrogenase (ubiquinone) 1 beta subcomplex subunit 3 +K03960 NDUFB4; NADH dehydrogenase (ubiquinone) 1 beta subcomplex subunit 4 +K03961 NDUFB5; NADH dehydrogenase (ubiquinone) 1 beta subcomplex subunit 5 +K03962 NDUFB6; NADH dehydrogenase (ubiquinone) 1 beta subcomplex subunit 6 +K03963 NDUFB7; NADH dehydrogenase (ubiquinone) 1 beta subcomplex subunit 7 +K03964 NDUFB8; NADH dehydrogenase (ubiquinone) 1 beta subcomplex subunit 8 +K03965 NDUFB9; NADH dehydrogenase (ubiquinone) 1 beta subcomplex subunit 9 +K03966 NDUFB10; NADH dehydrogenase (ubiquinone) 1 beta subcomplex subunit 10 +K03967 NDUFC1; NADH dehydrogenase (ubiquinone) 1 subunit C1 +K03968 NDUFC2; NADH dehydrogenase (ubiquinone) 1 subunit C2 +K03969 pspA; phage shock protein A +K03970 pspB; phage shock protein B +K03971 pspD; phage shock protein D +K03972 pspE; phage shock protein E +K03973 pspC; phage shock protein C +K03974 pspF; psp operon transcriptional activator +K03975 dedA; membrane-associated protein +K03976 ybaK, ebsC; Cys-tRNA(Pro)/Cys-tRNA(Cys) deacylase [EC:3.1.1.-] +K03977 engA, der; GTPase +K03978 engB; GTP-binding protein +K03979 obgE, cgtA, MTG2; GTPase [EC:3.6.5.-] +K03980 murJ, mviN; putative peptidoglycan lipid II flippase +K03981 dsbC; thiol:disulfide interchange protein DsbC [EC:5.3.4.1] +K03982 SERPINE1, PAI1; plasminogen activator inhibitor 1 +K03983 SERPINF2, AAP; alpha-2-antiplasmin +K03984 SERPINA1, AAT; alpha-1-antitrypsin +K03985 PLAUR, CD87; plasminogen activator, urokinase receptor +K03986 C1QA; complement C1q subcomponent subunit A +K03987 C1QB; complement C1q subcomponent subunit B +K03988 C1QG; complement C1q subcomponent subunit C +K03989 C4; complement component 4 +K03990 C3; complement component 3 +K03991 MBL; mannose-binding lectin +K03992 MASP1; mannan-binding lectin serine protease 1 [EC:3.4.21.-] +K03993 MASP2; mannan-binding lectin serine protease 2 [EC:3.4.21.104] +K03994 C5; complement component 5 +K03995 C6; complement component 6 +K03996 C7; complement component 7 +K03997 C8A; complement component 8 subunit alpha +K03998 C8B; complement component 8 subunit beta +K03999 C8G; complement component 8 subunit gamma +K04000 C9; complement component 9 +K04001 SERPING1, C1INH; C1 inhibitor +K04002 C4BPA; complement component 4 binding protein alpha +K04003 C4BPB; complement component 4 binding protein beta +K04004 CFH, HF1; complement factor H +K04006 DAF, CD55; decay accelerating factor +K04007 CD46, MCP; membrane cofactor protein +K04008 CD59; CD59 antigen +K04009 C3AR1; C3a anaphylatoxin chemotactic receptor +K04010 C5AR1, CD88; C5a anaphylatoxin chemotactic receptor 1 +K04011 CR1, CD35; complement component (3b/4b) receptor 1 +K04012 CR2, CD21; complement receptor type 2 +K04013 nrfB; cytochrome c-type protein NrfB +K04014 nrfC; protein NrfC +K04015 nrfD; protein NrfD +K04016 nrfE; cytochrome c-type biogenesis protein NrfE +K04017 nrfF; formate-dependent nitrite reductase complex subunit NrfF +K04018 nrfG; formate-dependent nitrite reductase complex subunit NrfG +K04019 eutA; ethanolamine utilization protein EutA +K04020 eutD; phosphotransacetylase +K04021 eutE; aldehyde dehydrogenase +K04022 eutG; alcohol dehydrogenase +K04023 eutH; ethanolamine transporter +K04024 eutJ; ethanolamine utilization protein EutJ +K04025 eutK; ethanolamine utilization protein EutK +K04026 eutL; ethanolamine utilization protein EutL +K04027 eutM; ethanolamine utilization protein EutM +K04028 eutN; ethanolamine utilization protein EutN +K04029 eutP; ethanolamine utilization protein EutP +K04030 eutQ; ethanolamine utilization protein EutQ +K04031 eutS; ethanolamine utilization protein EutS +K04032 eutT; ethanolamine utilization cobalamin adenosyltransferase [EC:2.5.1.154] +K04033 eutR; AraC family transcriptional regulator, ethanolamine operon transcriptional activator +K04034 bchE; anaerobic magnesium-protoporphyrin IX monomethyl ester cyclase [EC:1.21.98.3] +K04035 E1.14.13.81, acsF, chlE; magnesium-protoporphyrin IX monomethyl ester (oxidative) cyclase [EC:1.14.13.81] +K04036 bchJ; divinyl protochlorophyllide a 8-vinyl-reductase [EC:1.-.-.-] +K04037 chlL; light-independent protochlorophyllide reductase subunit L [EC:1.3.7.7] +K04038 chlN; light-independent protochlorophyllide reductase subunit N [EC:1.3.7.7] +K04039 chlB; light-independent protochlorophyllide reductase subunit B [EC:1.3.7.7] +K04040 chlG, bchG; chlorophyll/bacteriochlorophyll a synthase [EC:2.5.1.62 2.5.1.133] +K04041 fbp3; fructose-1,6-bisphosphatase III [EC:3.1.3.11] +K04042 glmU; bifunctional UDP-N-acetylglucosamine pyrophosphorylase / glucosamine-1-phosphate N-acetyltransferase [EC:2.7.7.23 2.3.1.157] +K04043 dnaK, HSPA9; molecular chaperone DnaK +K04044 hscA; molecular chaperone HscA +K04045 hscC; molecular chaperone HscC +K04046 yegD; hypothetical chaperone protein +K04047 dps; starvation-inducible DNA-binding protein +K04048 yscA, sctA; type III secretion protein A +K04049 yscB, sctB; type III secretion protein B +K04050 yscE, sctE; type III secretion protein E +K04051 yscG, sctG; type III secretion protein G +K04052 yscH, sctH; type III secretion protein H +K04053 yscI, sctI; type III secretion protein I +K04054 yscK, sctK; type III secretion protein K +K04055 yscM, sctM; type III secretion protein M +K04056 yscO, sctO; type III secretion protein O +K04057 yscP, sctP; type III secretion protein P +K04058 yscW, sctW; type III secretion protein W +K04059 yscX, sctX; type III secretion protein X +K04060 yscY, sctY; type III secretion protein Y +K04061 flhB2; flagellar biosynthesis protein +K04062 osmB; osmotically inducible lipoprotein OsmB +K04063 osmC, ohr; lipoyl-dependent peroxiredoxin [EC:1.11.1.28] +K04064 osmE; osmotically inducible lipoprotein OsmE +K04065 osmY; hyperosmotically inducible periplasmic protein +K04066 priA; primosomal protein N' (replication factor Y) (superfamily II helicase) [EC:5.6.2.4] +K04067 priC; primosomal replication protein N'' +K04068 nrdG; anaerobic ribonucleoside-triphosphate reductase activating protein [EC:1.97.1.4] +K04069 pflA, pflC, pflE; pyruvate formate lyase activating enzyme [EC:1.97.1.4] +K04070 pflX; putative pyruvate formate lyase activating enzyme [EC:1.97.1.4] +K04072 adhE; acetaldehyde dehydrogenase / alcohol dehydrogenase [EC:1.2.1.10 1.1.1.1] +K04073 mhpF; acetaldehyde dehydrogenase [EC:1.2.1.10] +K04074 divIVA; cell division initiation protein +K04075 tilS, mesJ; tRNA(Ile)-lysidine synthase [EC:6.3.4.19] +K04076 lonB; ATP-dependent Lon protease [EC:3.4.21.53] +K04077 groEL, HSPD1; chaperonin GroEL [EC:5.6.1.7] +K04078 groES, HSPE1; chaperonin GroES +K04079 HSP90A, htpG; molecular chaperone HtpG +K04080 ibpA; molecular chaperone IbpA +K04081 ibpB; molecular chaperone IbpB +K04082 hscB, HSCB, HSC20; molecular chaperone HscB +K04083 hslO; molecular chaperone Hsp33 +K04084 dsbD, dipZ; thioredoxin:protein disulfide reductase [EC:1.8.4.16] +K04085 tusA, sirA; tRNA 2-thiouridine synthesizing protein A [EC:2.8.1.-] +K04086 clpL; ATP-dependent Clp protease ATP-binding subunit ClpL +K04087 hflC; modulator of FtsH protease HflC +K04088 hflK; modulator of FtsH protease HflK +K04090 E1.2.7.8; indolepyruvate ferredoxin oxidoreductase [EC:1.2.7.8] +K04091 ssuD, msuD; alkanesulfonate monooxygenase [EC:1.14.14.5 1.14.14.34] +K04092 tyrA1; chorismate mutase [EC:5.4.99.5] +K04093 pheA1; chorismate mutase [EC:5.4.99.5] +K04094 trmFO, gid; methylenetetrahydrofolate--tRNA-(uracil-5-)-methyltransferase [EC:2.1.1.74] +K04095 fic, FICD, HYPE; cell filamentation protein, protein adenylyltransferase [EC:2.7.7.108] +K04096 smf; DNA processing protein +K04097 HPGDS; prostaglandin-H2 D-isomerase / glutathione transferase [EC:5.3.99.2 2.5.1.18] +K04098 chqB; hydroxyquinol 1,2-dioxygenase [EC:1.13.11.37] +K04099 desB, galA; gallate dioxygenase [EC:1.13.11.57] +K04100 ligA; protocatechuate 4,5-dioxygenase, alpha chain [EC:1.13.11.8] +K04101 ligB; protocatechuate 4,5-dioxygenase, beta chain [EC:1.13.11.8] +K04102 pht5; 4,5-dihydroxyphthalate decarboxylase [EC:4.1.1.55] +K04103 ipdC; indolepyruvate decarboxylase [EC:4.1.1.74] +K04104 accD3; acyl-CoA carboxylase subunit beta [EC:6.4.1.-] +K04105 hbaA; 4-hydroxybenzoate-CoA ligase [EC:6.2.1.27 6.2.1.25] +K04107 hcrC, hbaB; 4-hydroxybenzoyl-CoA reductase subunit gamma [EC:1.1.7.1] +K04108 hcrA, hbaC; 4-hydroxybenzoyl-CoA reductase subunit alpha [EC:1.1.7.1] +K04109 hcrB, hbaD; 4-hydroxybenzoyl-CoA reductase subunit beta [EC:1.1.7.1] +K04110 badA; benzoate-CoA ligase [EC:6.2.1.25] +K04112 bcrC, badD; benzoyl-CoA reductase subunit C [EC:1.3.7.8] +K04113 bcrB, badE; benzoyl-CoA reductase subunit B [EC:1.3.7.8] +K04114 bcrA, badF; benzoyl-CoA reductase subunit A [EC:1.3.7.8] +K04115 bcrD, badG; benzoyl-CoA reductase subunit D [EC:1.3.7.8] +K04116 aliA; cyclohexanecarboxylate-CoA ligase [EC:6.2.1.-] +K04117 aliB; cyclohexanecarboxyl-CoA dehydrogenase [EC:1.3.99.-] +K04118 E1.3.1.62; pimeloyl-CoA dehydrogenase [EC:1.3.1.62] +K04119 AKR1C3; aldo-keto reductase family 1 member C3 [EC:1.1.1.51 1.1.1.188 1.1.1.213 1.1.1.357] +K04120 E5.5.1.13; ent-copalyl diphosphate synthase [EC:5.5.1.13] +K04121 E4.2.3.19; ent-kaurene synthase [EC:4.2.3.19] +K04122 GA3, CYP701; ent-kaurene oxidase [EC:1.14.14.86] +K04123 KAO, CYP88A; ent-kaurenoic acid monooxygenase [EC:1.14.14.107] +K04124 GA3ox; gibberellin 3beta-dioxygenase [EC:1.14.11.15] +K04125 GA2ox; gibberellin 2beta-dioxygenase [EC:1.14.11.13] +K04126 PCBC; isopenicillin-N synthase [EC:1.21.3.1] +K04127 cefD; isopenicillin-N epimerase [EC:5.1.1.17] +K04128 cmcH; hydroxymethyl cephem carbamoyltransferase [EC:2.1.3.7] +K04129 CHRM1; muscarinic acetylcholine receptor M1 +K04130 CHRM2; muscarinic acetylcholine receptor M2 +K04131 CHRM3; muscarinic acetylcholine receptor M3 +K04132 CHRM4; muscarinic acetylcholine receptor M4 +K04133 CHRM5; muscarinic acetylcholine receptor M5 +K04134 CHRMN; muscarinic acetylcholine receptor +K04135 ADRA1A; adrenergic receptor alpha-1A +K04136 ADRA1B; adrenergic receptor alpha-1B +K04137 ADRA1D; adrenergic receptor alpha-1D +K04138 ADRA2A; adrenergic receptor alpha-2A +K04139 ADRA2B; adrenergic receptor alpha-2B +K04140 ADRA2C; adrenergic receptor alpha-2C +K04141 ADRB1; adrenergic receptor beta-1 +K04142 ADRB2; adrenergic receptor beta-2 +K04143 ADRB3; adrenergic receptor beta-3 +K04144 DRD1; dopamine receptor D1 +K04145 DRD2; dopamine receptor D2 +K04146 DRD3; dopamine receptor D3 +K04147 DRD4; dopamine receptor D4 +K04148 DRD1N; dopamine receptor D1-like +K04149 HRH1; histamine receptor H1 +K04150 HRH2; histamine receptor H2 +K04151 HRH3; histamine receptor H3 +K04152 HRH4; histamine receptor H4 +K04153 HTR1; 5-hydroxytryptamine receptor 1 +K04157 HTR2; 5-hydroxytryptamine receptor 2 +K04160 HTR4; 5-hydroxytryptamine receptor 4 +K04161 HTR5; 5-hydroxytryptamine receptor 5 +K04162 HTR6; 5-hydroxytryptamine receptor 6 +K04163 HTR7; 5-hydroxytryptamine receptor 7 +K04165 Oamb; octopamine receptor +K04166 AGTR1; angiotensin II receptor type 1 +K04167 AGTR2; angiotensin II receptor type 2 +K04168 NMBR; neuromedin B receptor +K04169 GRPR; gastrin-releasing peptide receptor +K04170 BRS3; bombesin receptor subtype-3 +K04171 C5AR2, GPR77; C5a anaphylatoxin chemotactic receptor 2 +K04172 FPR1; formyl peptide receptor 1 +K04173 FPRL; formyl peptide receptor-like +K04174 APLNR; apelin receptor +K04175 CXCR1, IL8RA, CD181; C-X-C chemokine receptor type 1 +K04176 CCR1, CD191; C-C chemokine receptor type 1 +K04177 CCR2, CD192; C-C chemokine receptor type 2 +K04178 CCR3, CD193; C-C chemokine receptor type 3 +K04179 CCR4, CD194; C-C chemokine receptor type 4 +K04180 CCR5, CD195; C-C chemokine receptor type 5 +K04181 CCR6, CD196; C-C chemokine receptor type 6 +K04182 CCR7, CD197; C-C chemokine receptor type 7 +K04183 CCR8, CDw198; C-C chemokine receptor type 8 +K04184 CCR9, CDw199; C-C chemokine receptor type 9 +K04185 CCR10; C-C chemokine receptor type 10 +K04186 ACKR4, CCRL1, CCR11; atypical chemokine receptor 4 +K04187 ACKR2, CCBP2; atypical chemokine receptor 2 +K04188 CXCR3, GPR9, CD183; C-X-C chemokine receptor type 3 +K04189 CXCR4, CD184; C-X-C chemokine receptor type 4 +K04190 CXCR5, BLR1, CD185; C-X-C chemokine receptor type 5 +K04191 CXCR6, CD186; C-X-C chemokine receptor type 6 +K04192 CX3CR1; CX3C chemokine receptor 1 +K04193 XCR1; XC chemokine receptor 1 +K04194 CCKAR; cholecystokinin A receptor +K04195 CCKBR; cholecystokinin B receptor +K04197 EDNRA; endothelin receptor type A +K04198 EDNRB; endothelin receptor type B +K04199 MC1R; melanocortin 1 receptor +K04200 MC2R; melanocortin 2 receptor +K04201 MC3R; melanocortin 3 receptor +K04202 MC4R; melanocortin 4 receptor +K04203 MC5R; melanocortin 5 receptor +K04204 NPY1R; neuropeptide Y receptor type 1 +K04205 NPY2R; neuropeptide Y receptor type 2 +K04206 NPY4R; neuropeptide Y receptor type 4 +K04207 NPY5R; neuropeptide Y receptor type 5 +K04208 NPY6R; neuropeptide Y receptor type 6 +K04209 NPFR; neuropeptide F receptor +K04210 GPR83, GPR72; G protein-coupled receptor 83 +K04211 NTSR1; neurotensin receptor 1 +K04212 NTSR2; neurotensin receptor 2 +K04213 OPRD1; delta-type opioid receptor +K04214 OPRK1; kappa-type opioid receptor +K04215 OPRM1; mu-type opioid receptor +K04216 OPRL1; nociceptin receptor +K04217 SSTR1; somatostatin receptor 1 +K04218 SSTR2; somatostatin receptor 2 +K04219 SSTR3; somatostatin receptor 3 +K04220 SSTR4; somatostatin receptor 4 +K04221 SSTR5; somatostatin receptor 5 +K04222 TACR1; tachykinin receptor 1 +K04223 TACR2; tachykinin receptor 2 +K04224 TACR3; tachykinin receptor 3 +K04226 AVPR1A; arginine vasopressin receptor 1A +K04227 AVPR1B; arginine vasopressin receptor 1B +K04228 AVPR2; arginine vasopressin receptor 2 +K04229 OXTR; oxytocin receptor +K04230 GALR1; galanin receptor 1 +K04231 GALR2; galanin receptor 2 +K04232 GALR3; galanin receptor 3 +K04233 ASTA-R; allatostatin A receptor +K04234 F2RL1, PAR2; coagulation factor II (thrombin) receptor-like 1 +K04235 F2RL2, PAR3; coagulation factor II (thrombin) receptor-like 2 +K04236 F2RL3, PAR4; coagulation factor II (thrombin) receptor-like 3 +K04237 PARD3; partitioning defective protein 3 +K04238 HCRTR1; hypocretin (orexin) receptor 1 +K04239 HCRTR2; hypocretin (orexin) receptor 2 +K04240 NPFFR1; neuropeptide FF receptor 1 +K04241 UTS2R; urotensin 2 receptor +K04242 ADMR; adrenomedullin receptor +K04243 GPR37; prosaposin receptor +K04244 GPR37L1, ETBRLP2; prosaposin receptor +K04245 CMKLR1; chemokine-like receptor 1 +K04246 GPER1, GPR30; G-protein coupled estrogen receptor 1 +K04247 FSHR; follicle stimulating hormone receptor +K04248 LHCGR; lutropin-choriogonadotropic hormone receptor +K04249 TSHR; thyrotropin receptor +K04250 RHO, OPN2; rhodopsin +K04251 OPN1LW, OPN1MW; long/medium wavelength-sensitive opsin +K04252 OPN1SW; short wavelength-sensitive opsin +K04253 RRH; visual pigment-like receptor peropsin +K04254 RGR; retinal G protein coupled receptor +K04255 OPN4, Rh2_7; r-opsin +K04256 OPN3; c-opsin +K04257 OLFR; olfactory receptor +K04258 PTGER1; prostaglandin E receptor 1 +K04259 PTGER2; prostaglandin E receptor 2 +K04260 PTGER3; prostaglandin E receptor 3 +K04261 PTGER4; prostaglandin E receptor 4 +K04262 PTGFR; prostaglandin F receptor +K04263 PTGIR; prostacyclin receptor +K04264 TBXA2R; thromboxane A2 receptor +K04265 ADORA1; adenosine receptor A1 +K04266 ADORA2A, ADOR; adenosine receptor A2a +K04267 ADORA2B; adenosine receptor A2b +K04268 ADORA3; adenosine receptor A3 +K04269 P2RY2; P2Y purinoceptor 2 +K04270 P2RY1; P2Y purinoceptor 1 +K04271 P2RY4; P2Y purinoceptor 4 +K04272 P2RY6; P2Y purinoceptor 6 +K04273 LPAR6, P2RY5; lysophosphatidic acid receptor 6 +K04274 P2RY10; P2Y purinoceptor 10 +K04275 LPAR4, GPR23; lysophosphatidic acid receptor 4 +K04276 CXCR8, GPR35; C-X-C chemokine receptor type 8 +K04277 CNR1; cannabinoid receptor 1 +K04278 CNR2; cannabinoid receptor 2 +K04279 PTAFR; platelet-activating factor receptor +K04280 GNRHR; gonadotropin-releasing hormone receptor +K04281 CAST; calpastatin +K04282 TRHR; thyrotropin-releasing hormone receptor +K04283 TRYR; trypanothione-disulfide reductase [EC:1.8.1.12] +K04284 GHSR; growth hormone secretagogue receptor +K04285 MTNR1A; melatonin receptor type 1A +K04286 MTNR1B; melatonin receptor type 1B +K04287 GPR50; G protein-coupled receptor 50 +K04288 S1PR1, EDG1, CD363; sphingosine 1-phosphate receptor 1 +K04289 LPAR1, EDG2; lysophosphatidic acid receptor 1 +K04290 S1PR3, EDG3; sphingosine 1-phosphate receptor 3 +K04291 LPAR2, EDG4; lysophosphatidic acid receptor 2 +K04292 S1PR2, EDG5; sphingosine 1-phosphate receptor 2 +K04293 S1PR4, EDG6; sphingosine 1-phosphate receptor 4 +K04294 LPAR3, EDG7; lysophosphatidic acid receptor 3 +K04295 S1PR5, EDG8; sphingosine 1-phosphate receptor 5 +K04296 LTB4R1; leukotriene B4 receptor 1 +K04297 LTB4R2; leukotriene B4 receptor 2 +K04298 P2RY12; P2Y purinoceptor 12 +K04299 P2RY14; P2Y purinoceptor 14 +K04300 SREB3, GPR173; super conserved receptor expressed in brain 3 +K04301 SREB1, GPR27; super conserved receptor expressed in brain 1 +K04302 SREB2, GPR85; super conserved receptor expressed in brain 2 +K04303 MAS1; proto-oncogene Mas +K04304 CXCR7, ACKR3, RDC1; C-X-C chemokine receptor type 7 (atypical chemokine receptor 3) +K04305 EBI2; Epstein-Barr virus induced gene 2 +K04306 RXFP1, LGR7; relaxin family peptide receptor 1 +K04307 RXFP2, LGR8; relaxin family peptide receptor 2 +K04308 LGR5, GPR49; leucine-rich repeat-containing G protein-coupled receptor 5 +K04309 LGR4, GPR48; leucine-rich repeat-containing G protein-coupled receptor 4 +K04310 GPR1; G protein-coupled receptor 1 +K04311 GPR3; G protein-coupled receptor 3 +K04312 GPR4; G protein-coupled receptor 4 +K04313 GPR6; G protein-coupled receptor 6 +K04314 PRLHR, GPR10; prolactin releasing hormone receptor +K04315 GPR12; G protein-coupled receptor 12 +K04316 GPR19; G protein-coupled receptor 19 +K04317 GPR20; G protein-coupled receptor 20 +K04318 GPR21; G protein-coupled receptor 21 +K04319 GPR22; G protein-coupled receptor 22 +K04320 MCHR1; melanin-concentrating hormone receptor 1 +K04321 GPR63; G protein-coupled receptor 63 +K04322 CYSLTR1; cysteinyl leukotriene receptor 1 +K04323 CYSLTR2; cysteinyl leukotriene receptor 2 +K04324 MAS1L; Mas-related G-protein coupled receptor MRG +K04325 FFAR1, GPR40; free fatty acid receptor 1 +K04326 FFAR3, GPR41; free fatty acid receptor 3 +K04328 FFAR2, GPR43; free fatty acid receptor 2 +K04332 PTGDR; prostaglandin D2 receptor +K04333 csgD; LuxR family transcriptional regulator, csgAB operon transcriptional regulatory protein +K04334 csgA; major curlin subunit +K04335 csgB; minor curlin subunit +K04336 csgC; curli production protein +K04337 csgE; curli production assembly/transport component CsgE +K04338 csgF; curli production assembly/transport component CsgF +K04339 stsE; scyllo-inosamine 4-kinase [EC:2.7.1.65] +K04340 strB1; scyllo-inosamine-4-phosphate amidinotransferase 1 [EC:2.1.4.2] +K04341 E2.4.2.27; dTDP-dihydrostreptose-streptidine-6-phosphate dihydrostreptosyltransferase [EC:2.4.2.27] +K04342 strK; streptomycin-6-phosphatase [EC:3.1.3.39] +K04343 strB; streptomycin 6-kinase [EC:2.7.1.72] +K04344 CACNA1A, CAV2.1; voltage-dependent calcium channel P/Q type alpha-1A +K04345 PKA; protein kinase A [EC:2.7.11.11] +K04346 GNA12; guanine nucleotide-binding protein subunit alpha-12 +K04347 GNG12; guanine nucleotide-binding protein G(I)/G(S)/G(O) subunit gamma-12 +K04348 PPP3C, CNA; serine/threonine-protein phosphatase 2B catalytic subunit [EC:3.1.3.16] +K04349 RASGRF1; Ras-specific guanine nucleotide-releasing factor 1 +K04350 RASGRP1; RAS guanyl-releasing protein 1 +K04351 RAPGEF4, EPAC2; Rap guanine nucleotide exchange factor 4 +K04352 RASA1, RASGAP; Ras GTPase-activating protein 1 +K04353 RAP1A; Ras-related protein Rap-1A +K04354 PPP2R2; serine/threonine-protein phosphatase 2A regulatory subunit B +K04355 BDNF; brain-derived neurotrophic factor +K04356 NTF3; neurotrophin 3 +K04357 EGF; epidermal growth factor +K04358 FGF; fibroblast growth factor +K04359 PDGFA; platelet-derived growth factor subunit A +K04360 NTRK2, TRKB; neurotrophic tyrosine kinase receptor type 2 [EC:2.7.10.1] +K04361 EGFR, ERBB1; epidermal growth factor receptor [EC:2.7.10.1] +K04362 FGFR1, CD331; fibroblast growth factor receptor 1 [EC:2.7.10.1] +K04363 PDGFRA, CD140A; platelet-derived growth factor receptor alpha [EC:2.7.10.1] +K04364 GRB2; growth factor receptor-bound protein 2 +K04365 BRAF; B-Raf proto-oncogene serine/threonine-protein kinase [EC:2.7.11.1] +K04366 RAF1; RAF proto-oncogene serine/threonine-protein kinase [EC:2.7.11.1] +K04367 MOS; proto-oncogene serine/threonine-protein kinase mos [EC:2.7.11.1] +K04368 MAP2K1, MEK1; mitogen-activated protein kinase kinase 1 [EC:2.7.12.2] +K04369 MAP2K2, MEK2; mitogen-activated protein kinase kinase 2 [EC:2.7.12.2] +K04370 LAMTOR3, MP1, MAP2K1IP1; ragulator complex protein LAMTOR3 +K04371 ERK, MAPK1_3; mitogen-activated protein kinase 1/3 [EC:2.7.11.24] +K04372 MKNK, MNK; MAP kinase interacting serine/threonine kinase [EC:2.7.11.1] +K04373 RPS6KA; ribosomal protein S6 kinase alpha-1/2/3/6 [EC:2.7.11.1] +K04374 ATF4, CREB2; cyclic AMP-dependent transcription factor ATF-4 +K04375 ELK1; ETS domain-containing protein Elk-1 +K04376 ELK4, SAP1; ETS domain-containing protein Elk-4 +K04377 MYC; Myc proto-oncogene protein +K04378 SRF; serum response factor +K04379 FOS; proto-oncogene protein c-fos +K04380 MAPT, TAU; microtubule-associated protein tau +K04381 STMN1; stathmin 1 +K04382 PPP2C; serine/threonine-protein phosphatase 2A catalytic subunit [EC:3.1.3.16] +K04383 IL1A; interleukin 1 alpha +K04384 TGFBN; transforming growth factor beta, invertebrate +K04385 AXIN2; axin 2 +K04386 IL1R1, CD121a; interleukin 1 receptor type I +K04387 IL1R2, CD121b; interleukin 1 receptor type II +K04388 TGFBR2; TGF-beta receptor type-2 [EC:2.7.11.30] +K04389 TNFSF6, FASL, CD178; tumor necrosis factor ligand superfamily member 6 +K04390 TNFRSF6, FAS, CD95; tumor necrosis factor receptor superfamily member 6 +K04391 CD14; monocyte differentiation antigen CD14 +K04392 RAC1; Ras-related C3 botulinum toxin substrate 1 +K04393 CDC42; cell division control protein 42 +K04394 CASP4, CASP11; caspase 4 [EC:3.4.22.57 3.4.22.64] +K04395 CASP5; caspase 5 [EC:3.4.22.58] +K04396 CASP6; caspase 6 [EC:3.4.22.59] +K04397 CASP7; caspase 7 [EC:3.4.22.60] +K04398 CASP8; caspase 8 [EC:3.4.22.61] +K04399 CASP9; caspase 9 [EC:3.4.22.62] +K04400 CASP10; caspase 10 [EC:3.4.22.63] +K04401 CASP14; caspase 14 [EC:3.4.22.-] +K04402 GADD45; growth arrest and DNA-damage-inducible protein +K04403 MAP3K7IP1, TAB1; TAK1-binding protein 1 +K04404 MAP3K7IP2, TAB2; TAK1-binding protein 2 +K04405 ECSIT; evolutionarily conserved signaling intermediate in Toll pathway +K04406 MAP4K3, GLK; mitogen-activated protein kinase kinase kinase kinase 3 [EC:2.7.11.1] +K04407 MAP4K4, HGK; mitogen-activated protein kinase kinase kinase kinase 4 [EC:2.7.11.1] +K04408 MAP4K1, HPK1; mitogen-activated protein kinase kinase kinase kinase 1 [EC:2.7.11.1] +K04409 PAK1; p21-activated kinase 1 [EC:2.7.11.1] +K04410 PAK2; p21-activated kinase 2 [EC:2.7.11.1] +K04411 STK4, MST1; serine/threonine kinase 4 +K04412 STK3, MST2; serine/threonine kinase 3 +K04413 MINK; misshapen/NIK-related kinase [EC:2.7.11.1] +K04414 MAP4K2, GCK; mitogen-activated protein kinase kinase kinase kinase 2 [EC:2.7.11.1] +K04415 MAP3K8, COT; mitogen-activated protein kinase kinase kinase 8 [EC:2.7.11.25] +K04416 MAP3K1, MEKK1; mitogen-activated protein kinase kinase kinase 1 [EC:2.7.11.25] +K04417 MAP3K9, MLK1; mitogen-activated protein kinase kinase kinase 9 [EC:2.7.11.25] +K04418 MAP3K10, MLK2; mitogen-activated protein kinase kinase kinase 10 [EC:2.7.11.25] +K04419 MAP3K11, MLK3; mitogen-activated protein kinase kinase kinase 11 [EC:2.7.11.25] +K04420 MAP3K2, MEKK2; mitogen-activated protein kinase kinase kinase 2 [EC:2.7.11.25] +K04421 MAP3K3, MEKK3; mitogen-activated protein kinase kinase kinase 3 [EC:2.7.11.25] +K04422 MAP3K13, LZK; mitogen-activated protein kinase kinase kinase 13 [EC:2.7.11.25] +K04423 MAP3K12, MUK; mitogen-activated protein kinase kinase kinase 12 [EC:2.7.11.25] +K04424 ZAK, MLTK; sterile alpha motif and leucine zipper containing kinase AZK [EC:2.7.11.25] +K04425 MAP3K6, ASK2; mitogen-activated protein kinase kinase kinase 6 [EC:2.7.11.25] +K04426 MAP3K5, ASK1; mitogen-activated protein kinase kinase kinase 5 [EC:2.7.11.25] +K04427 MAP3K7, TAK1; mitogen-activated protein kinase kinase kinase 7 [EC:2.7.11.25] +K04428 MAP3K4, MEKK4; mitogen-activated protein kinase kinase kinase 4 [EC:2.7.11.25] +K04429 TAO; thousand and one amino acid protein kinase [EC:2.7.11.1] +K04430 MAP2K4, MKK4; mitogen-activated protein kinase kinase 4 [EC:2.7.12.2] +K04431 MAP2K7, MKK7; mitogen-activated protein kinase kinase 7 [EC:2.7.12.2] +K04432 MAP2K3, MKK3; mitogen-activated protein kinase kinase 3 [EC:2.7.12.2] +K04433 MAP2K6, MKK6; mitogen-activated protein kinase kinase 6 [EC:2.7.12.2] +K04434 MAPK8IP1, JIP1; mitogen-activated protein kinase 8 interacting protein 1 +K04435 MAPK8IP2, JIP2; mitogen-activated protein kinase 8 interacting protein 2 +K04436 MAPK8IP3, JIP3; mitogen-activated protein kinase 8 interacting protein 3 +K04437 FLNA; filamin-A +K04438 CRK, CRKII; C-crk adapter molecule crk +K04439 ARRB; beta-arrestin +K04440 JNK; mitogen-activated protein kinase 8/9/10 (c-Jun N-terminal kinase) [EC:2.7.11.24] +K04441 P38; p38 MAP kinase [EC:2.7.11.24] +K04442 MAPKAPK5, PRAK; mitogen-activated protein kinase-activated protein kinase 5 [EC:2.7.11.1] +K04443 MAPKAPK2; mitogen-activated protein kinase-activated protein kinase 2 [EC:2.7.11.1] +K04444 MAPKAPK3; mitogen-activated protein kinase-activated protein kinase 3 [EC:2.7.11.1] +K04445 RPS6KA5, MSK1; ribosomal protein S6 kinase alpha-5 [EC:2.7.11.1] +K04446 NFATC1, NFAT2, NFATC; nuclear factor of activated T-cells, cytoplasmic 1 +K04447 JAK2; Janus kinase 2 [EC:2.7.10.2] +K04448 JUN; transcription factor AP-1 +K04449 JUND; transcription factor jun-D +K04450 ATF2, CREBP1; cyclic AMP-dependent transcription factor ATF-2 +K04451 TP53, P53; tumor protein p53 +K04452 DDIT3, GADD153; DNA damage-inducible transcript 3 +K04453 MAX; Max protein +K04454 MEF2C; MADS-box transcription enhancer factor 2C +K04455 HSPB1; heat shock protein beta-1 +K04456 AKT; RAC serine/threonine-protein kinase [EC:2.7.11.1] +K04457 PPM1A, PP2CA; protein phosphatase 1A [EC:3.1.3.16] +K04458 PTPRR; receptor-type tyrosine-protein phosphatase R [EC:3.1.3.48] +K04459 DUSP, MKP; dual specificity MAP kinase phosphatase [EC:3.1.3.16 3.1.3.48] +K04460 PPP5C; serine/threonine-protein phosphatase 5 [EC:3.1.3.16] +K04461 PPM1B, PP2CB; protein phosphatase 1B [EC:3.1.3.16] +K04462 MECOM, EVI1, PRDM3; [histone H3]-lysine9 N-methyltransferase (ecotropic virus integration site 1 protein) [EC:2.1.1.367] +K04463 MAP2K5, MEK5; mitogen-activated protein kinase kinase 5 [EC:2.7.12.2] +K04464 MAPK7; mitogen-activated protein kinase 7 [EC:2.7.11.24] +K04465 NR4A1, HMR; nuclear receptor subfamily 4 group A member 1 +K04466 MAP3K14, NIK; mitogen-activated protein kinase kinase kinase 14 [EC:2.7.11.25] +K04467 IKBKA, IKKA, CHUK; inhibitor of nuclear factor kappa-B kinase subunit alpha [EC:2.7.11.10] +K04468 NLK; nemo like kinase [EC:2.7.11.24] +K04469 NFKB2; nuclear factor of kappa light polypeptide gene enhancer in B-cells 2 +K04477 ycdX; putative hydrolase +K04478 sgtB; monofunctional glycosyltransferase [EC:2.4.99.28] +K04479 dbh; DNA polymerase IV (archaeal DinB-like DNA polymerase) [EC:2.7.7.7] +K04480 mtaB; methanol---5-hydroxybenzimidazolylcobamide Co-methyltransferase [EC:2.1.1.90] +K04482 RAD51; DNA repair protein RAD51 +K04483 radA; DNA repair protein RadA +K04484 radB; DNA repair protein RadB +K04485 radA, sms; DNA repair protein RadA/Sms +K04486 E3.1.3.15B; histidinol-phosphatase (PHP family) [EC:3.1.3.15] +K04487 iscS, NFS1; cysteine desulfurase [EC:2.8.1.7] +K04488 iscU, nifU; nitrogen fixation protein NifU and related proteins +K04489 CASP3A; caspase 3A [EC:3.4.22.-] +K04490 TCF7L1; transcription factor 7-like 1 +K04491 TCF7L2; transcription factor 7-like 2 +K04492 LEF1; lymphoid enhancer-binding factor 1 +K04493 ICAT, CTNNBIP1; beta-catenin-interacting protein 1 (inhibitor of beta-catenin and Tcf-4) +K04494 CHD8, HELSNF1; chromodomain helicase DNA binding protein 8 [EC:5.6.2.-] +K04495 SOX17; transcription factor SOX17 (SOX group F) +K04496 CTBP; C-terminal binding protein [EC:1.1.1.428] +K04497 GRO, TLE; groucho +K04498 EP300, CREBBP, KAT3; E1A/CREB-binding protein [EC:2.3.1.48] +K04499 RUVBL1, RVB1, INO80H; RuvB-like protein 1 [EC:5.6.2.4] +K04500 SMAD2; mothers against decapentaplegic homolog 2 +K04501 SMAD4; mothers against decapentaplegic homolog 4 +K04502 FOSL1; fos-like antigen 1 +K04503 CCND1; G1/S-specific cyclin-D1 +K04504 NR1C2, PPARD; peroxisome proliferator-activated receptor delta +K04505 PSEN1, PS1; presenilin 1 [EC:3.4.23.-] +K04506 SIAH1; E3 ubiquitin-protein ligase SIAH1 [EC:2.3.2.27] +K04507 CACYBP, SIP; calcyclin binding protein +K04508 TBL1; transducin (beta)-like 1 +K04510 VANGL; vang-like +K04511 PRICKLE; prickle +K04512 DAAM; dishevelled associated activator of morphogenesis +K04513 RHOA; Ras homolog gene family, member A +K04514 ROCK1; Rho-associated protein kinase 1 [EC:2.7.11.1] +K04515 CAMK2; calcium/calmodulin-dependent protein kinase (CaM kinase) II [EC:2.7.11.17] +K04516 AROA1, aroA; chorismate mutase [EC:5.4.99.5] +K04517 tyrA2; prephenate dehydrogenase [EC:1.3.1.12] +K04518 pheA2; prephenate dehydratase [EC:4.2.1.51] +K04519 IL1B; interleukin 1 beta +K04520 APP; amyloid beta A4 protein +K04521 BACE1; beta-site APP-cleaving enzyme 1 (memapsin 2) [EC:3.4.23.46] +K04522 PSEN2, PS2; presenilin 2 [EC:3.4.23.-] +K04523 UBQLN, DSK2; ubiquilin +K04524 APOE; apolipoprotein E +K04525 SERPINA; serpin A +K04526 INS; insulin +K04527 INSR, CD220; insulin receptor [EC:2.7.10.1] +K04528 SNCA; alpha-synuclein +K04529 APBB1, FE65; amyloid beta A4 precursor protein-binding family B member 1 +K04530 APBB2, FE65L; amyloid beta A4 precursor protein-binding family B member 2 +K04531 APBA1, X11; amyloid beta A4 precursor protein-binding family A member 1 +K04532 NAE1, APPBP1; NEDD8-activating enzyme E1 regulatory subunit +K04533 HD; huntingtin +K04534 GNAO, G-ALPHA-O; guanine nucleotide-binding protein G(o) subunit alpha +K04535 GNAZ; guanine nucleotide-binding protein G(z) subunit alpha +K04536 GNB1; guanine nucleotide-binding protein G(I)/G(S)/G(T) subunit beta-1 +K04537 GNB2; guanine nucleotide-binding protein G(I)/G(S)/G(T) subunit beta-2 +K04538 GNB4; guanine nucleotide-binding protein subunit beta-4 +K04539 GNB5; guanine nucleotide-binding protein subunit beta-5 +K04540 GNG3; guanine nucleotide-binding protein G(I)/G(S)/G(O) subunit gamma-3 +K04541 GNG4; guanine nucleotide-binding protein G(I)/G(S)/G(O) subunit gamma-4 +K04542 GNG5; guanine nucleotide-binding protein G(I)/G(S)/G(O) subunit gamma-5 +K04543 GNG7; guanine nucleotide-binding protein G(I)/G(S)/G(O) subunit gamma-7 +K04544 GNG8; guanine nucleotide-binding protein G(I)/G(S)/G(O) subunit gamma-8 +K04545 GNG10; guanine nucleotide-binding protein G(I)/G(S)/G(O) subunit gamma-10 +K04546 GNG11; guanine nucleotide-binding protein G(I)/G(S)/G(O) subunit gamma-11 +K04547 GNG13; guanine nucleotide-binding protein G(I)/G(S)/G(O) subunit gamma-13 +K04548 GNGT1; guanine nucleotide-binding protein G(T) subunit gamma-T1 +K04549 GNGT2; guanine nucleotide-binding protein G(I)/G(S)/G(O) subunit gamma-T2 +K04550 LRP1, CD91; low-density lipoprotein receptor-related protein 1 (alpha-2-macroglobulin receptor) +K04551 UBB; ubiquitin B +K04552 UBE2L3, UBCH7; ubiquitin-conjugating enzyme E2 L3 [EC:2.3.2.23] +K04553 UBE2L6, UBCH8; ubiquitin/ISG15-conjugating enzyme E2 L6 [EC:2.3.2.23] +K04554 UBE2J2, NCUBE2, UBC6; ubiquitin-conjugating enzyme E2 J2 [EC:2.3.2.23] +K04555 UBE2G2, UBC7; ubiquitin-conjugating enzyme E2 G2 [EC:2.3.2.23] +K04556 PARK2; parkin [EC:2.3.2.31] +K04557 SEPT5, PNUTL1, CDCREL1; septin 5 +K04558 SNCAIP; synphilin-1 +K04559 HIP1; huntingtin interacting protein 1 +K04560 STX1A; syntaxin 1A +K04561 norB; nitric oxide reductase subunit B [EC:1.7.2.5] +K04562 flhG, fleN; flagellar biosynthesis protein FlhG +K04563 CDC28, CDC2; cyclin-dependent kinase [EC:2.7.11.22] +K04564 SOD2; superoxide dismutase, Fe-Mn family [EC:1.15.1.1] +K04565 SOD1; superoxide dismutase, Cu-Zn family [EC:1.15.1.1] +K04566 lysK; lysyl-tRNA synthetase, class I [EC:6.1.1.6] +K04567 KARS, lysS; lysyl-tRNA synthetase, class II [EC:6.1.1.6] +K04568 epmA, poxA; elongation factor P--(R)-beta-lysine ligase [EC:6.3.1.-] +K04569 CCS; copper chaperone for superoxide dismutase +K04570 BCL2L1, bcl-xL; Bcl-2-like 1 (apoptosis regulator Bcl-X) +K04571 SSR4; translocon-associated protein subunit delta +K04572 NEFL, NF-L; neurofilament light polypeptide +K04573 NEF3, NF-M; neurofilament medium polypeptide (neurofilament 3) +K04574 NEFH, NF-H; neurofilament heavy polypeptide +K04575 ALS2; amyotrophic lateral sclerosis 2 protein +K04576 CALCR; calcitonin receptor +K04577 CALCRL; calcitonin receptor-like +K04578 CRHR1; corticotropin releasing hormone receptor 1 +K04579 CRHR2; corticotropin releasing hormone receptor 2 +K04580 GIPR; gastric inhibitory polypeptide receptor +K04581 GLP1R; glucagon-like peptide 1 receptor +K04582 GLP2R; glucagon-like peptide 2 receptor +K04583 GCGR; glucagon receptor +K04584 GHRHR; growth hormone releasing hormone receptor +K04585 PTH1R, PTHR1; parathyroid hormone receptor 1 +K04586 PTHR2; parathyroid hormone receptor 2 +K04587 ADCYAP1R1, PACAPRI; pituitary adenylate cyclase-activating polypeptide type I receptor +K04588 SCTR; secretin receptor +K04589 VIPR1; vasoactive intestinal peptide receptor 1 +K04590 VIPR2; vasoactive intestinal peptide receptor 2 +K04591 ADGRE1, EMR1; adhesion G protein-coupled receptor E1 +K04592 ADGRL1, LPHN1; adhesion G protein-coupled receptor L1 +K04593 ADGRL2, LPHN2; adhesion G protein-coupled receptor L2 +K04594 ADGRL3, LPHN3; adhesion G protein-coupled receptor L3 +K04595 ADGRL4, ELTD1; adhesion G protein-coupled receptor L4 +K04596 ADGRB1, BAI1; adhesion G protein-coupled receptor B1 +K04597 ADGRB2, BAI2; adhesion G protein-coupled receptor B2 +K04598 ADGRB3, BAI3; adhesion G protein-coupled receptor B3 +K04599 MTH; G protein-coupled receptor Mth (Methuselah protein) +K04600 CELSR1; cadherin EGF LAG seven-pass G-type receptor 1 +K04601 CELSR2; cadherin EGF LAG seven-pass G-type receptor 2 +K04602 CELSR3; cadherin EGF LAG seven-pass G-type receptor 3 +K04603 GRM1; metabotropic glutamate receptor 1 +K04604 GRM5; metabotropic glutamate receptor 5 +K04605 GRM2; metabotropic glutamate receptor 2 +K04606 GRM3; metabotropic glutamate receptor 3 +K04607 GRM4; metabotropic glutamate receptor 4 +K04608 GRM6; metabotropic glutamate receptor 6 +K04609 GRM7; metabotropic glutamate receptor 7 +K04610 GRM8; metabotropic glutamate receptor 8 +K04611 MXR; metabotropic X receptor +K04612 CASR; calcium-sensing receptor +K04613 V2R; vomeronasal 2 receptor +K04614 V1R; vomeronasal 1 receptor +K04615 GABBR; gamma-aminobutyric acid type B receptor +K04617 GPR156, GABABL; gamma-aminobutyric acid type B receptor-like +K04618 GAOA; galactose oxidase [EC:1.1.3.9] +K04619 GPRC5B; G protein-coupled receptor family C group 5 member B +K04620 GPRC5C; G protein-coupled receptor family C group 5 member C +K04621 GPRC5D; G protein-coupled receptor family C group 5 member D +K04622 GPRC6A; G protein-coupled receptor family C group 6 member A +K04623 BOSS; bride of sevenless protein +K04624 TAS1R1; taste receptor type 1 member 1 +K04625 TAS1R2; taste receptor type 1 member 2 +K04626 TAS1R3; taste receptor type 1 member 3 +K04627 STE3; pheromone a factor receptor +K04628 CGT, UGT8; ceramide galactosyltransferase [EC:2.4.1.47] +K04629 CARN; cAMP receptor +K04630 GNAI; guanine nucleotide-binding protein G(i) subunit alpha +K04631 GNAT1_2; guanine nucleotide-binding protein G(t) subunit alpha 1/2 +K04632 GNAS; guanine nucleotide-binding protein G(s) subunit alpha +K04633 GNAL; guanine nucleotide-binding protein G(olf) subunit alpha +K04634 GNAQ; guanine nucleotide-binding protein G(q) subunit alpha +K04635 GNA11; guanine nucleotide-binding protein subunit alpha-11 +K04636 GNA14; guanine nucleotide-binding protein subunit alpha-14 +K04637 GNA15; guanine nucleotide-binding protein subunit alpha-15 +K04638 IFT57, HIPPI, ESRRBL1; intraflagellar transport protein 57 +K04639 GNA13; guanine nucleotide-binding protein subunit alpha-13 +K04640 GNA; guanine nucleotide-binding protein subunit alpha, other +K04641 bop; bacteriorhodopsin +K04642 hop; halorhodopsin +K04643 sop; sensory rhodopsin +K04644 CLTA, LCA; clathrin light chain A +K04645 CLTB, LCB; clathrin light chain B +K04646 CLTC; clathrin heavy chain +K04647 HAP1; huntingtin-associated protein 1 +K04648 DCTN1; dynactin 1 +K04649 UBE2K, HIP2, UBC1; ubiquitin-conjugating enzyme (huntingtin interacting protein 2) [EC:2.3.2.23] +K04650 NCOR1, N-CoR; nuclear receptor co-repressor 1 +K04651 hypA, hybF; hydrogenase nickel incorporation protein HypA/HybF +K04652 hypB; hydrogenase nickel incorporation protein HypB +K04653 hypC; hydrogenase expression/formation protein HypC +K04654 hypD; hydrogenase expression/formation protein HypD +K04655 hypE; hydrogenase expression/formation protein HypE +K04656 hypF; hydrogenase maturation protein HypF +K04657 CHRD; chordin +K04658 NOG; noggin +K04659 THBS2S; thrombospondin 2/3/4/5 +K04660 DCN; decorin +K04661 FST; follistatin +K04662 BMP4; bone morphogenetic protein 4 +K04663 BMP5; bone morphogenetic protein 5 +K04664 GDF5; growth differentiation factor 5 +K04665 AMH; anti-mullerian hormone +K04666 NODAL; nodal +K04667 INHBA; inhibin beta A chain +K04668 LEFTY; left-right determination factor +K04669 TGFBRX; TGF-beta receptor, other +K04670 ACVR2A; activin receptor type-2A [EC:2.7.11.30] +K04671 BMPR2; bone morphogenetic protein receptor type-2 [EC:2.7.11.30] +K04672 AMHR2; anti-mullerian hormone receptor type-2 [EC:2.7.11.30] +K04673 BMPR1A, ALK3, CD292; bone morphogenetic protein receptor type-1A [EC:2.7.11.30] +K04674 TGFBR1, ALK5; TGF-beta receptor type-1 [EC:2.7.11.30] +K04675 ACVR1, ALK2; activin receptor type-1 [EC:2.7.11.30] +K04676 SMAD1; mothers against decapentaplegic homolog 1 +K04677 SMAD6; mothers against decapentaplegic homolog 6 +K04678 SMURF; E3 ubiquitin ligase SMURF1/2 [EC:2.3.2.26] +K04679 MADHIP, SARA; MAD, mothers against decapentaplegic interacting protein +K04680 ID1; DNA-binding protein inhibitor ID1 +K04681 RBL1; retinoblastoma-like protein 1 +K04682 E2F4_5; transcription factor E2F4/5 +K04683 TFDP1; transcription factor Dp-1 +K04684 SP1; transcription factor Sp1 +K04685 CDKN2B, P15, INK4B; cyclin-dependent kinase inhibitor 2B +K04686 PITX2; paired-like homeodomain transcription factor 2 +K04687 IFNG; interferon gamma +K04688 RPS6KB; ribosomal protein S6 kinase beta [EC:2.7.11.1] +K04690 FZDN, fz3; frizzled +K04691 hhoB, degS; serine protease DegS [EC:3.4.21.-] +K04692 STAT3; signal transducer and activator of transcription 3 +K04693 IRF9, ISGF3G, P48; interferon regulatory factor 9 +K04694 SOCS1, JAB; suppressor of cytokine signaling 1 +K04695 SOCS2, CIS2; suppressor of cytokine signaling 2 +K04696 SOCS3, CIS3; suppressor of cytokine signaling 3 +K04697 SOCS4; suppressor of cytokine signaling 4 +K04698 SOCS5; suppressor of cytokine signaling 5 +K04699 SOCS6_7; suppressor of cytokine signaling 6/7 +K04701 CISH; cytokine inducible SH2-containing protein +K04702 PIM1; proto-oncogene serine/threonine-protein kinase Pim-1 [EC:2.7.11.1] +K04703 SPRED; sprouty-related, EVH1 domain-containing protein +K04704 SPRY1; protein sprouty homolog 1 +K04705 STAM; signal transducing adaptor molecule +K04706 PIAS1; E3 SUMO-protein ligase PIAS1 [EC:2.3.2.-] +K04707 CBL; E3 ubiquitin-protein ligase CBL [EC:2.3.2.27] +K04708 KDSR; 3-dehydrosphinganine reductase [EC:1.1.1.102] +K04709 LAG1, LAC1; very-long-chain ceramide synthase [EC:2.3.1.297] +K04710 CERS1, LASS1; sphingoid base N-stearoyltransferase [EC:2.3.1.299] +K04711 ACER3, YDC1; dihydroceramidase [EC:3.5.1.-] +K04712 DEGS; sphingolipid 4-desaturase/C4-monooxygenase [EC:1.14.19.17 1.14.18.5] +K04713 SUR2; sphinganine C4-monooxygenase [EC:1.14.18.5] +K04714 SGMS; shingomyelin synthase [EC:2.7.8.27] +K04715 CERK; ceramide kinase [EC:2.7.1.138] +K04716 SGPP1; sphingosine-1-phosphate phosphatase 1 [EC:3.1.3.-] +K04717 SGPP2; sphingosine-1-phosphate phosphotase 2 [EC:3.1.3.-] +K04718 SPHK; sphingosine kinase [EC:2.7.1.91] +K04719 bluB; 5,6-dimethylbenzimidazole synthase [EC:1.13.11.79] +K04720 cobD; threonine-phosphate decarboxylase [EC:4.1.1.81] +K04721 TNFSF10, TRAIL, CD253; tumor necrosis factor ligand superfamily member 10 +K04722 TNFRSF10A_B, TRAILR1_2, DR4_5, CD261_2; tumor necrosis factor receptor superfamily member 10A/B +K04723 IL1RAP; interleukin 1 receptor accessory protein +K04724 CFLAR, FLIP; CASP8 and FADD-like apoptosis regulator +K04725 XIAP, BIRC4; E3 ubiquitin-protein ligase XIAP [EC:2.3.2.27] +K04726 BID; BH3 interacting domain death agonist +K04727 AIFM1, PDCD8; apoptosis-inducing factor 1 [EC:1.-.-.-] +K04728 ATM, TEL1; serine-protein kinase ATM [EC:2.7.11.1] +K04729 MYD88; myeloid differentiation primary response protein MyD88 +K04730 IRAK1; interleukin-1 receptor-associated kinase 1 [EC:2.7.11.1] +K04731 IRAK2; interleukin-1 receptor-associated kinase 2 [EC:2.7.11.1] +K04732 IRAK3; interleukin-1 receptor-associated kinase 3 [EC:2.7.11.1] +K04733 IRAK4; interleukin-1 receptor-associated kinase 4 [EC:2.7.11.1] +K04734 NFKBIA; NF-kappa-B inhibitor alpha +K04735 RELA; transcription factor p65 +K04736 IL3; interleukin 3 +K04737 IL3RA, CD123; interleukin 3 receptor alpha +K04738 CSF2RB, IL3RB, CD131; cytokine receptor common subunit beta +K04739 PRKAR; cAMP-dependent protein kinase regulator +K04740 CAPN12; calpain-12 [EC:3.4.22.-] +K04741 CASP12; caspase 12 [EC:3.4.22.-] +K04742 CHST12; chondroitin 4-sulfotransferase 12 [EC:2.8.2.5] +K04743 CHST7; chondroitin 6-sulfotransferase 7 [EC:2.8.2.17] +K04744 lptD, imp, ostA; LPS-assembly protein +K04745 CHST2; carbohydrate 6-sulfotransferase 2 [EC:2.8.2.-] +K04746 CHST4; carbohydrate 6-sulfotransferase 4 [EC:2.8.2.-] +K04747 norF; nitric oxide reductase NorF protein +K04748 norQ; nitric oxide reductase NorQ protein +K04749 rsbV; anti-sigma B factor antagonist +K04750 phnB; PhnB protein +K04751 glnB; nitrogen regulatory protein P-II 1 +K04752 glnK; nitrogen regulatory protein P-II 2 +K04753 sufI; suppressor of ftsI +K04754 mlaA, vacJ; phospholipid-binding lipoprotein MlaA +K04755 fdx; ferredoxin, 2Fe-2S +K04756 ahpD; lipoyl-dependent peroxiredoxin subunit D [EC:1.11.1.28] +K04757 rsbW; serine/threonine-protein kinase RsbW [EC:2.7.11.1] +K04758 feoA; ferrous iron transport protein A +K04759 feoB; ferrous iron transport protein B +K04760 greB; transcription elongation factor GreB +K04761 oxyR; LysR family transcriptional regulator, hydrogen peroxide-inducible genes activator +K04762 hslR; ribosome-associated heat shock protein Hsp15 +K04763 xerD; integrase/recombinase XerD +K04764 ihfA, himA; integration host factor subunit alpha +K04765 mazG; nucleoside triphosphate diphosphatase [EC:3.6.1.9] +K04766 acuA; acetoin utilization protein AcuA [EC:2.3.1.-] +K04767 acuB; acetoin utilization protein AcuB +K04768 acuC; acetoin utilization protein AcuC +K04769 spoVT; AbrB family transcriptional regulator, stage V sporulation protein T +K04770 lonH; Lon-like ATP-dependent protease [EC:3.4.21.-] +K04771 degP, htrA; serine protease Do [EC:3.4.21.107] +K04772 degQ, hhoA; serine protease DegQ [EC:3.4.21.-] +K04773 sppA; protease IV [EC:3.4.21.-] +K04774 sohB; serine protease SohB [EC:3.4.21.-] +K04775 ydgD; protease YdgD [EC:3.4.21.-] +K04778 vibH; vibriobactin synthetase +K04780 dhbF; glyine---[glycyl-carrier protein] ligase [EC:6.2.1.66] +K04781 mbtI, irp9, ybtS; salicylate synthetase [EC:5.4.4.2 4.2.99.21] +K04782 pchB; isochorismate pyruvate lyase [EC:4.2.99.21] +K04783 irp5, ybtE; yersiniabactin salicyl-AMP ligase [EC:6.3.2.-] +K04784 irp2, HMWP2; yersiniabactin nonribosomal peptide synthetase +K04785 irp3, ybtU; yersiniabactin synthetase, thiazolinyl reductase component +K04786 irp1, HMWP1; yersiniabactin nonribosomal peptide/polyketide synthase +K04787 mbtA; mycobactin salicyl-AMP ligase [EC:6.3.2.-] +K04788 mbtB; mycobactin phenyloxazoline synthetase +K04789 mbtE; mycobactin peptide synthetase MbtE +K04790 mbtC; mycobactin polyketide synthetase MbtC +K04791 mbtD; mycobactin polyketide synthetase MbtD +K04792 mbtF; mycobactin peptide synthetase MbtF +K04793 mbtG; mycobactin lysine-N-oxygenase +K04794 PTH2, PTRH2; peptidyl-tRNA hydrolase, PTH2 family [EC:3.1.1.29] +K04795 flpA; fibrillarin-like pre-rRNA processing protein +K04796 RUXX; small nuclear ribonucleoprotein +K04797 pfdA, PFDN5; prefoldin alpha subunit +K04798 pfdB, PFDN6; prefoldin beta subunit +K04799 FEN1, RAD2; flap endonuclease-1 [EC:3.1.-.-] +K04800 rfcL; replication factor C large subunit +K04801 rfcS; replication factor C small subunit +K04802 PCNA; proliferating cell nuclear antigen +K04803 CHRNA1; nicotinic acetylcholine receptor alpha-1 +K04804 CHRNA2; nicotinic acetylcholine receptor alpha-2 +K04805 CHRNA3; nicotinic acetylcholine receptor alpha-3 +K04806 CHRNA4; nicotinic acetylcholine receptor alpha-4 +K04807 CHRNA5; nicotinic acetylcholine receptor alpha-5 +K04808 CHRNA6; nicotinic acetylcholine receptor alpha-6 +K04809 CHRNA7; nicotinic acetylcholine receptor alpha-7 +K04810 CHRNA9; nicotinic acetylcholine receptor alpha-9 +K04811 CHRNA10; nicotinic acetylcholine receptor alpha-10 +K04812 CHRNB1; nicotinic acetylcholine receptor beta-1 +K04813 CHRNB2; nicotinic acetylcholine receptor beta-2 +K04814 CHRNB3; nicotinic acetylcholine receptor beta-3 +K04815 CHRNB4; nicotinic acetylcholine receptor beta-4 +K04816 CHRND; nicotinic acetylcholine receptor delta +K04817 CHRNE; nicotinic acetylcholine receptor epsilon +K04818 CHRNG; nicotinic acetylcholine receptor gamma +K04819 HTR3; 5-hydroxytryptamine receptor 3 +K04824 SCNN1A, ENACA; amiloride-sensitive sodium channel subunit alpha +K04825 SCNN1B, ENACB; amiloride-sensitive sodium channel subunit beta +K04826 SCNN1D, ENACD; amiloride-sensitive sodium channel subunit delta +K04827 SCNN1G, ENACG; amiloride-sensitive sodium channel subunit gamma +K04828 ASIC2, ACCN1, BNAC1; acid-sensing ion channel 2 +K04829 ASIC1, ACCN2, BNAC2; acid-sensing ion channel 1 +K04830 ASIC3, ACCN3; acid-sensing ion channel 3 +K04831 ASIC4, ACCN4, BNAC4; acid-sensing ion channel 4 +K04832 ASIC5, ACCN5; acid-sensing ion channel 5 +K04833 SCN1A, NAV1.1; voltage-gated sodium channel type I alpha +K04834 SCN2A, NAV1.2; voltage-gated sodium channel type II alpha +K04835 mal; methylaspartate ammonia-lyase [EC:4.3.1.2] +K04836 SCN3A, NAV1.3; voltage-gated sodium channel type III alpha +K04837 SCN4A, NAV1.4; voltage-gated sodium channel type IV alpha +K04838 SCN5A, NAV1.5; voltage-gated sodium channel type V alpha +K04839 SCN7A, SCN6A; voltage-gated sodium channel type VII alpha +K04840 SCN8A, NAV1.6; voltage-gated sodium channel type VIII alpha +K04841 SCN9A, NAV1.7; voltage-gated sodium channel type IX alpha +K04842 SCN10A, NAV1.8; voltage-gated sodium channel type X alpha +K04843 SCN11A, NAV1.9; voltage-gated sodium channel type XI alpha +K04845 SCN1B; voltage-gated sodium channel type I beta +K04846 SCN2B; voltage-gated sodium channel type II beta +K04847 SCN3B; voltage-gated sodium channel type III beta +K04848 SCN4B; voltage-gated sodium channel type IV beta +K04849 CACNA1B, CAV2.2; voltage-dependent calcium channel N type alpha-1B +K04850 CACNA1C, CAV1.2; voltage-dependent calcium channel L type alpha-1C +K04851 CACNA1D, CAV1.3; voltage-dependent calcium channel L type alpha-1D +K04852 CACNA1E, CAV2.3; voltage-dependent calcium channel R type alpha-1E +K04853 CACNA1F, CAV1.4; voltage-dependent calcium channel L type alpha-1F +K04854 CACNA1G, CAV3.1; voltage-dependent calcium channel T type alpha-1G +K04855 CACNA1H, CAV3.2; voltage-dependent calcium channel T type alpha-1H +K04856 CACNA1I, CAV3.3; voltage-dependent calcium channel T type alpha-1I +K04857 CACNA1S, CAV1.1; voltage-dependent calcium channel L type alpha-1S +K04858 CACNA2D1; voltage-dependent calcium channel alpha-2/delta-1 +K04859 CACNA2D2; voltage-dependent calcium channel alpha-2/delta-2 +K04860 CACNA2D3; voltage-dependent calcium channel alpha-2/delta-3 +K04861 CACNA2D4; voltage-dependent calcium channel alpha-2/delta-4 +K04862 CACNB1; voltage-dependent calcium channel beta-1 +K04863 CACNB2; voltage-dependent calcium channel beta-2 +K04864 CACNB3; voltage-dependent calcium channel beta-3 +K04865 CACNB4; voltage-dependent calcium channel beta-4 +K04866 CACNG1; voltage-dependent calcium channel gamma-1 +K04867 CACNG2; voltage-dependent calcium channel gamma-2 +K04868 CACNG3; voltage-dependent calcium channel gamma-3 +K04869 CACNG4; voltage-dependent calcium channel gamma-4 +K04870 CACNG5; voltage-dependent calcium channel gamma-5 +K04871 CACNG6; voltage-dependent calcium channel gamma-6 +K04872 CACNG7; voltage-dependent calcium channel gamma-7 +K04873 CACNG8; voltage-dependent calcium channel gamma-8 +K04874 KCNA1, KV1.1; potassium voltage-gated channel Shaker-related subfamily A member 1 +K04875 KCNA2, KV1.2; potassium voltage-gated channel Shaker-related subfamily A member 2 +K04876 KCNA3, KV1.3; potassium voltage-gated channel Shaker-related subfamily A member 3 +K04877 KCNA4, KV1.4; potassium voltage-gated channel Shaker-related subfamily A member 4 +K04878 KCNA5, KV1.5; potassium voltage-gated channel Shaker-related subfamily A member 5 +K04879 KCNA6, KV1.6; potassium voltage-gated channel Shaker-related subfamily A member 6 +K04880 KCNA7, KV1.7; potassium voltage-gated channel Shaker-related subfamily A member 7 +K04881 KCNA10, KV1.8; potassium voltage-gated channel Shaker-related subfamily A member 10 +K04882 KCNAB1; potassium voltage-gated channel Shaker-related subfamily A, beta member 1 +K04883 KCNAB2; potassium voltage-gated channel Shaker-related subfamily A, beta member 2 +K04884 KCNAB3; potassium voltage-gated channel Shaker-related subfamily A, beta member 3 +K04885 KCNB1, KV2.1; potassium voltage-gated channel Shab-related subfamily B member 1 +K04886 KCNB2, KV2.2; potassium voltage-gated channel Shab-related subfamily B member 2 +K04887 KCNC1, KV3.1; potassium voltage-gated channel Shaw-related subfamily C member 1 +K04888 KCNC2, KV3.2; potassium voltage-gated channel Shaw-related subfamily C member 2 +K04889 KCNC3, KV3.3; potassium voltage-gated channel Shaw-related subfamily C member 3 +K04890 KCNC4, KV3.4; potassium voltage-gated channel Shaw-related subfamily C member 4 +K04891 KCND1, KV4.1; potassium voltage-gated channel Shal-related subfamily D member 1 +K04892 KCND2, KV4.2; potassium voltage-gated channel Shal-related subfamily D member 2 +K04893 KCND3, KV4.3; potassium voltage-gated channel Shal-related subfamily D member 3 +K04894 KCNE1; potassium voltage-gated channel Isk-related subfamily E member 1 +K04895 KCNE1L; potassium voltage-gated channel Isk-related subfamily E member 1-like +K04896 KCNE2; potassium voltage-gated channel Isk-related subfamily E member 2 +K04897 KCNE3; potassium voltage-gated channel Isk-related subfamily E member 3 +K04898 KCNE4; potassium voltage-gated channel Isk-related subfamily E member 4 +K04899 KCNF1, KV5.1; potassium voltage-gated channel subfamily F member 1 +K04900 KCNG1, KV6.1; potassium voltage-gated channel subfamily G member 1 +K04901 KCNG2, KV6.2; potassium voltage-gated channel subfamily G member 2 +K04902 KCNG3, KV6.3; potassium voltage-gated channel subfamily G member 3 +K04903 KCNG4, KV6.4; potassium voltage-gated channel subfamily G member 4 +K04904 KCNH1, KV10.1; potassium voltage-gated channel Eag-related subfamily H member 1 +K04905 KCNH2, KV11.1; potassium voltage-gated channel Eag-related subfamily H member 2 +K04906 KCNH3, KV12.2; potassium voltage-gated channel Eag-related subfamily H member 3 +K04907 KCNH4, KV12.3; potassium voltage-gated channel Eag-related subfamily H member 4 +K04908 KCNH5, KV10.2; potassium voltage-gated channel Eag-related subfamily H member 5 +K04909 KCNH6, KV11.2; potassium voltage-gated channel Eag-related subfamily H member 6 +K04910 KCNH7, KV11.3; potassium voltage-gated channel Eag-related subfamily H member 7 +K04911 KCNH8, KV12.1; potassium voltage-gated channel Eag-related subfamily H member 8 +K04912 KCNK1, K2P1.1; potassium channel subfamily K member 1 +K04913 KCNK2, K2P2.1; potassium channel subfamily K member 2 +K04914 KCNK3, K2P3.1; potassium channel subfamily K member 3 +K04915 KCNK4, K2P4.1; potassium channel subfamily K member 4 +K04916 KCNK5, K2P5.1; potassium channel subfamily K member 5 +K04917 KCNK6, K2P6.1; potassium channel subfamily K member 6 +K04918 KCNK7, K2P7.1; potassium channel subfamily K member 7 +K04919 KCNK9, K2P9.1; potassium channel subfamily K member 9 +K04920 KCNK10, K2P10.1; potassium channel subfamily K member 10 +K04921 KCNK12, K2P12.1; potassium channel subfamily K member 12 +K04922 KCNK13, K2P13.1; potassium channel subfamily K member 13 +K04923 KCNK15, K2P15.1; potassium channel subfamily K member 15 +K04924 KCNK16, K2P16.1; potassium channel subfamily K member 16 +K04925 KCNK17, K2P17.1; potassium channel subfamily K member 17 +K04926 KCNQ1, KV7.1; potassium voltage-gated channel KQT-like subfamily member 1 +K04927 KCNQ2, KV7.2; potassium voltage-gated channel KQT-like subfamily member 2 +K04928 KCNQ3, KV7.3; potassium voltage-gated channel KQT-like subfamily member 3 +K04929 KCNQ4, KV7.4; potassium voltage-gated channel KQT-like subfamily member 4 +K04930 KCNQ5, KV7.5; potassium voltage-gated channel KQT-like subfamily member 5 +K04931 KCNS1, KV9.1; potassium voltage-gated channel delayed-rectifier subfamily S member 1 +K04932 KCNS2, KV9.2; potassium voltage-gated channel delayed-rectifier subfamily S member 2 +K04933 KCNS3, KV9.3; potassium voltage-gated channel delayed-rectifier subfamily S member 3 +K04934 KCNV1, KV8.1; potassium channel subfamily V member 1 +K04935 KCNV2, KV8.2; potassium channel subfamily V member 2 +K04936 KCNMA1, KCA1.1; potassium large conductance calcium-activated channel subfamily M alpha member 1 +K04937 KCNMB1; potassium large conductance calcium-activated channel subfamily M beta member 1 +K04938 KCNMB2; potassium large conductance calcium-activated channel subfamily M beta member 2 +K04939 KCNMB3; potassium large conductance calcium-activated channel subfamily M beta member 3 +K04940 odh; opine dehydrogenase [EC:1.5.1.28] +K04941 KCNMB4; potassium large conductance calcium-activated channel subfamily M beta member 4 +K04942 KCNN1, KCA2.1; potassium intermediate/small conductance calcium-activated channel subfamily N member 1 +K04943 KCNN2, KCA2.2; potassium intermediate/small conductance calcium-activated channel subfamily N member 2 +K04944 KCNN3, KCA2.3; potassium intermediate/small conductance calcium-activated channel subfamily N member 3 +K04945 KCNN4, KCA3.1; potassium intermediate/small conductance calcium-activated channel subfamily N member 4 +K04946 KCNT1, KNA1.1; potassium channel subfamily T member 1 +K04947 KCNT2, KNA1.2; potassium channel subfamily T member 2 +K04948 CNGA1; cyclic nucleotide gated channel alpha 1 +K04949 CNGA2; cyclic nucleotide gated channel alpha 2 +K04950 CNGA3; cyclic nucleotide gated channel alpha 3 +K04951 CNGA4; cyclic nucleotide gated channel alpha 4 +K04952 CNGB1; cyclic nucleotide gated channel beta 1 +K04953 CNGB3; cyclic nucleotide gated channel beta 3 +K04954 HCN1; hyperpolarization activated cyclic nucleotide-gated potassium channel 1 +K04955 HCN2; hyperpolarization activated cyclic nucleotide-gated potassium channel 2 +K04956 HCN3; hyperpolarization activated cyclic nucleotide-gated potassium channel 3 +K04957 HCN4; hyperpolarization activated cyclic nucleotide-gated potassium channel 4 +K04958 ITPR1; inositol 1,4,5-triphosphate receptor type 1 +K04959 ITPR2; inositol 1,4,5-triphosphate receptor type 2 +K04960 ITPR3; inositol 1,4,5-triphosphate receptor type 3 +K04961 RYR1; ryanodine receptor 1 +K04962 RYR2; ryanodine receptor 2 +K04963 RYR3; ryanodine receptor 3 +K04964 TRPC1; transient receptor potential cation channel subfamily C member 1 +K04965 TRPC2; transient receptor potential cation channel subfamily C member 2 +K04966 TRPC3; transient receptor potential cation channel subfamily C member 3 +K04967 TRPC4; transient receptor potential cation channel subfamily C member 4 +K04968 TRPC5; transient receptor potential cation channel subfamily C member 5 +K04969 TRPC6; transient receptor potential cation channel subfamily C member 6 +K04970 TRPC7; transient receptor potential cation channel subfamily C member 7 +K04971 TRPV2; transient receptor potential cation channel subfamily V member 2 +K04972 TRPV3; transient receptor potential cation channel subfamily V member 3 +K04973 TRPV4; transient receptor potential cation channel subfamily V member 4 +K04974 TRPV5; transient receptor potential cation channel subfamily V member 5 +K04975 TRPV6; transient receptor potential cation channel subfamily V member 6 +K04976 TRPM1; transient receptor potential cation channel subfamily M member 1 +K04977 TRPM2; transient receptor potential cation channel subfamily M member 2 [EC:3.6.1.13] +K04978 TRPM3; transient receptor potential cation channel subfamily M member 3 +K04979 TRPM4; transient receptor potential cation channel subfamily M member 4 +K04980 TRPM5; transient receptor potential cation channel subfamily M member 5 +K04981 TRPM6, CHAK2; transient receptor potential cation channel subfamily M member 6 [EC:2.7.11.1] +K04982 TRPM7, CHAK1; transient receptor potential cation channel subfamily M member 7 [EC:2.7.11.1] +K04983 TRPM8; transient receptor potential cation channel subfamily M member 8 +K04984 TRPA1, ANKTM1; transient receptor potential cation channel subfamily A member 1 +K04985 PKD1; polycystin 1 +K04986 PKD2; polycystin 2 +K04987 PKD1L1; polycystin 1L1 +K04988 PKD1L2; polycystin 1L2 +K04989 PKD1L3; polycystin 1L3 +K04990 PKD2L1; polycystin 2L1 +K04991 PKD2L2; polycystin 2L2 +K04992 MCOLN1, TRPML1; mucolipin 1 +K04993 MCOLN2, TRPML2; mucolipin 2 +K04994 MCOLN3, TRPML3; mucolipin 3 +K04995 KCNJ1, KIR1.1; potassium inwardly-rectifying channel subfamily J member 1 +K04996 KCNJ2, KIR2.1; potassium inwardly-rectifying channel subfamily J member 2 +K04997 KCNJ3, KIR3.1; potassium inwardly-rectifying channel subfamily J member 3 +K04998 KCNJ4, KIR2.3; potassium inwardly-rectifying channel subfamily J member 4 +K04999 KCNJ5, KIR3.4; potassium inwardly-rectifying channel subfamily J member 5 +K05000 KCNJ6, KIR3.2; potassium inwardly-rectifying channel subfamily J member 6 +K05001 KCNJ8, KIR6.1; potassium inwardly-rectifying channel subfamily J member 8 +K05002 KCNJ9, KIR3.3; potassium inwardly-rectifying channel subfamily J member 9 +K05003 KCNJ10, KIR4.1; potassium inwardly-rectifying channel subfamily J member 10 +K05004 KCNJ11, KIR6.2; potassium inwardly-rectifying channel subfamily J member 11 +K05005 KCNJ12_18, KIR2.2, KIR2.6; potassium inwardly-rectifying channel subfamily J member 12/18 +K05006 KCNJ13, KIR7.1; potassium inwardly-rectifying channel subfamily J member 13 +K05007 KCNJ14, KIR2.4; potassium inwardly-rectifying channel subfamily J member 14 +K05008 KCNJ15, KIR4.2; potassium inwardly-rectifying channel subfamily J member 15 +K05009 KCNJ16, KIR5.1; potassium inwardly-rectifying channel subfamily J member 16 +K05010 CLCN1; chloride channel 1, skeletal muscle +K05011 CLCN2; chloride channel 2 +K05012 CLCN3_4_5; chloride channel 3/4/5 +K05015 CLCN6; chloride channel 6 +K05016 CLCN7; chloride channel 7 +K05017 CLCNKA; chloride channel Ka +K05018 CLCNKB; chloride channel Kb +K05019 CLNS1A; chloride channel, nucleotide-sensitive, 1A +K05020 opuD, betL; glycine betaine transporter +K05021 CLIC1; chloride intracellular channel protein 1 +K05022 CLIC2; chloride intracellular channel protein 2 +K05023 CLIC3; chloride intracellular channel protein 3 +K05024 CLIC4; chloride intracellular channel protein 4 +K05025 CLIC5; chloride intracellular channel protein 5 +K05026 CLIC6; chloride intracellular channel protein 6 +K05027 CLCA1; calcium-activated chloride channel regulator 1 +K05028 CLCA2; calcium-activated chloride channel regulator 2 +K05030 CLCA3_4; calcium-activated chloride channel regulator 3/4 +K05031 CFTR, ABCC7; cystic fibrosis transmembrane conductance regulator [EC:5.6.1.6] +K05032 ABCC8, SUR1; ATP-binding cassette subfamily C (CFTR/MRP) member 8 +K05033 ABCC9, SUR2; ATP-binding cassette subfamily C (CFTR/MRP) member 9 +K05034 SLC6A1, GAT1; solute carrier family 6 (neurotransmitter transporter, GABA) member 1 +K05035 SLC6A2, NET; solute carrier family 6 (neurotransmitter transporter, noradrenalin) member 2 +K05036 SLC6A3, DAT; solute carrier family 6 (neurotransmitter transporter, dopamine) member 3 +K05037 SLC6A4, SERT; solute carrier family 6 (neurotransmitter transporter, serotonin) member 4 +K05038 SLC6A5_9, GLYT; solute carrier family 6 (neurotransmitter transporter, glycine) member 5/9 +K05039 SLC6A6, TAUT; solute carrier family 6 (neurotransmitter transporter, taurine) member 6 +K05040 SLC6A7, PROT; solute carrier family 6 (neurotransmitter transporter, L-proline) member 7 +K05041 SLC6A8, CT1; solute carrier family 6 (neurotransmitter transporter, creatine) member 8 +K05043 SLCO1B; solute carrier organic anion transporter family, member 1B +K05044 SLC6A11, GAT3; solute carrier family 6 (neurotransmitter transporter, GABA) member 11 +K05045 SLC6A12, BGT1; solute carrier family 6 (neurotransmitter transporter, betaine/GABA) member 12 +K05046 SLC6A13, GAT2; solute carrier family 6 (neurotransmitter transporter, GABA) member 13 +K05047 SLC6A14; solute carrier family 6 (neurotransmitter transporter) member 14 +K05048 SLC6A15S; solute carrier family 6 (neurotransmitter transporter, amino acid/orphan) member 15/16/17/18/20 +K05050 CXCR2, IL8RB, CD182; C-X-C chemokine receptor type 2 +K05051 TAAR; trace amine associated receptor +K05052 NMUR1; neuromedin U receptor 1 +K05053 NMUR2; neuromedin U receptor 2 +K05054 MCHR2; melanin-concentrating hormone receptor 2 +K05055 IL6R, CD126; interleukin 6 receptor +K05056 IL11RA; interleukin 11 receptor alpha +K05057 OSMR; oncostatin M receptor +K05058 LIFR, CD118; leukemia inhibitory factor receptor +K05059 CNTFR; ciliary neurotrophic factor receptor +K05060 IL6ST, GP130, CD130; interleukin 6 signal transducer +K05061 CSF3R, CD114; granulocyte colony-stimulating factor receptor +K05062 LEPR, CD295; leptin receptor +K05063 IL12RB1, CD212; interleukin 12 receptor beta-1 +K05064 IL12RB2; interleukin 12 receptor beta-2 +K05065 IL23R; interleukin 23 receptor +K05066 CSF2RA, GMCSFR, CD116; granulocyte-macrophage colony-stimulating factor receptor alpha +K05067 IL5RA, CD125; interleukin 5 receptor alpha +K05068 IL2RA, CD25; interleukin 2 receptor alpha +K05069 IL2RB, CD122; interleukin 2 receptor beta +K05070 IL2RG, CD132; interleukin 2 receptor gamma +K05071 IL4R, CD124; interleukin 4 receptor +K05072 IL7R, CD127; interleukin 7 receptor +K05073 IL9R, CD129; interleukin 9 receptor +K05074 IL15RA, CD215; interleukin 15 receptor alpha +K05075 IL21R, CD360; interleukin 21 receptor +K05076 IL13RA1, CD213A1; interleukin 13 receptor alpha-1 +K05077 IL13RA2, CD213A2; interleukin 13 receptor alpha-2 +K05078 TSLPR; thymic stromal-derived lymphopoietin receptor +K05079 EPOR; erythropoietin receptor +K05080 GHR; growth hormone receptor +K05081 PRLR; prolactin receptor +K05082 TPOR, MPL, CD110; thrombopoietin receptor +K05083 ERBB2, HER2, CD340; receptor tyrosine-protein kinase erbB-2 [EC:2.7.10.1] +K05084 ERBB3, HER3; receptor tyrosine-protein kinase erbB-3 [EC:2.7.10.1] +K05085 ERBB4, HER4; receptor tyrosine-protein kinase erbB-4 [EC:2.7.10.1] +K05086 INSRR; insulin receptor-related receptor [EC:2.7.10.1] +K05087 IGF1R, CD221; insulin-like growth factor 1 receptor [EC:2.7.10.1] +K05088 ROS1; proto-oncogene tyrosine-protein kinase ROS [EC:2.7.10.1] +K05089 PDGFRB, CD140B; platelet-derived growth factor receptor beta [EC:2.7.10.1] +K05090 CSF1R, FMS, CD115; macrophage colony-stimulating factor 1 receptor [EC:2.7.10.1] +K05091 KIT, SCFR, CD117; proto-oncogene tyrosine-protein kinase Kit [EC:2.7.10.1] +K05092 FLT3, FLK2, CD135; fms-related tyrosine kinase 3 [EC:2.7.10.1] +K05093 FGFR2, CD332; fibroblast growth factor receptor 2 [EC:2.7.10.1] +K05094 FGFR3, CD333; fibroblast growth factor receptor 3 [EC:2.7.10.1] +K05095 FGFR4, CD334; fibroblast growth factor receptor 4 [EC:2.7.10.1] +K05096 FLT1, VEGFR1; FMS-like tyrosine kinase 1 [EC:2.7.10.1] +K05097 FLT4, VEGFR3; FMS-like tyrosine kinase 4 [EC:2.7.10.1] +K05098 KDR, VEGFR2, CD309; kinase insert domain protein receptor [EC:2.7.10.1] +K05099 MET, HGFR; proto-oncogene tyrosine-protein kinase Met [EC:2.7.10.1] +K05100 MST1R, RON, CD136; macrophage-stimulating 1 receptor [EC:2.7.10.1] +K05101 NTRK3, TRKC; neurotrophic tyrosine kinase, receptor type 3 [EC:2.7.10.1] +K05102 EPHA1, EPH; Eph receptor A1 [EC:2.7.10.1] +K05103 EPHA2, ECK; Eph receptor A2 [EC:2.7.10.1] +K05104 EPHA3, HEK, TYRO4; Eph receptor A3 [EC:2.7.10.1] +K05105 EPHA4, SEK, TYRO1; Eph receptor A4 [EC:2.7.10.1] +K05106 EPHA5, EHK1, TYRO4; Eph receptor A5 [EC:2.7.10.1] +K05107 EPHA6, EHK2; Eph receptor A6 [EC:2.7.10.1] +K05108 EPHA7, EHK3, HEK11; EphA7 [EC:2.7.10.1] +K05109 EPHA8, EEK; Eph receptor A8 [EC:2.7.10.1] +K05110 EPHB1, ELK, NET; Eph receptor B1 [EC:2.7.10.1] +K05111 EPHB2, ERK, DRT; Eph receptor B2 [EC:2.7.10.1] +K05112 EPHB3, HEK2, ETK2; Eph receptor B3 [EC:2.7.10.1] +K05113 EPHB4, HTK; Eph receptor B4 [EC:2.7.10.1] +K05114 EPHB6; Eph receptor B6 [EC:2.7.10.1] +K05115 AXL, UFO; AXL receptor tyrosine kinase [EC:2.7.10.1] +K05116 TYRO3, RSE; TYRO3 protein tyrosine kinase 3 [EC:2.7.10.1] +K05117 MERTK, MER; c-mer proto-oncogene tyrosine kinase [EC:2.7.10.1] +K05118 LTK; leukocyte tyrosine kinase [EC:2.7.10.1] +K05119 ALK, CD246; anaplastic lymphoma kinase [EC:2.7.10.1] +K05120 TIE1; tyrosine kinase receptor 1 [EC:2.7.10.1] +K05121 TEK, TIE2, CD202; endothelial-specific receptor tyrosine kinase [EC:2.7.10.1] +K05122 ROR1, NTRKR1; receptor tyrosine kinase-like orphan receptor 1 [EC:2.7.10.1] +K05123 ROR2, NTRKR2; receptor tyrosine kinase-like orphan receptor 2 [EC:2.7.10.1] +K05124 DDR1, NEP, CD167a; discoidin domain receptor family member 1 [EC:2.7.10.1] +K05125 DDR2, TKT, CD167b; discoidin domain receptor family member 2 [EC:2.7.10.1] +K05126 RET; proto-oncogene tyrosine-protein kinase Ret [EC:2.7.10.1] +K05127 PTK7, CCK4; PTK7 protein tyrosine kinase 7 [EC:2.7.10.1] +K05128 RYK; RYK receptor-like tyrosine kinase [EC:2.7.10.1] +K05129 MUSK; muscle, skeletal, receptor tyrosine kinase [EC:2.7.10.1] +K05130 IFNAR1; interferon receptor 1 +K05131 IFNAR2; interferon receptor 2 +K05132 IFNGR1, CD119; interferon gamma receptor 1 +K05133 IFNGR2; interferon gamma receptor 2 +K05134 IL10RA, CD210A; interleukin 10 receptor alpha +K05135 IL10RB, CD210B; interleukin 10 receptor beta +K05136 IL20RA; interleukin 20 receptor alpha +K05137 IL20RB; interleukin 20 receptor beta +K05138 IL22RA1; interleukin 22 receptor alpha 1 +K05139 IL22RA2; interleukin 22 receptor alpha 2 +K05140 IFNLR1, IL28RA; interferon lambda receptor 1 +K05141 TNFRSF1B, TNFR2, CD120b; tumor necrosis factor receptor superfamily member 1B +K05142 TNFRSF4, OX40, CD134; tumor necrosis factor receptor superfamily member 4 +K05143 TNFRSF6B, DCR3; tumor necrosis factor receptor superfamily member 6B +K05144 TNFRSF7, CD27; tumor necrosis factor receptor superfamily member 7 +K05145 TNFRSF8, CD30; tumor necrosis factor receptor superfamily member 8 +K05146 TNFRSF9, CD137; tumor necrosis factor receptor superfamily member 9 +K05147 TNFRSF11A, RANK, CD265; tumor necrosis factor receptor superfamily member 11A +K05148 TNFRSF11B, OPG; tumor necrosis factor receptor superfamily member 11B +K05149 TNFRSF12A, FN14, TWEAKR, CD266; tumor necrosis factor receptor superfamily member 12A +K05150 TNFRSF13B, TACI, CD267; tumor necrosis factor receptor superfamily member 13B +K05151 TNFRSF13C, BAFFR, CD268; tumor necrosis factor receptor superfamily member 13C +K05152 TNFRSF14, HVEM, CD270; tumor necrosis factor receptor superfamily member 14 +K05153 TNFRSF17, BCMA, CD269; tumor necrosis factor receptor superfamily member 17 +K05154 TNFRSF18, GITR, CD357; tumor necrosis factor receptor superfamily member 18 +K05155 TNFRSF19, TROY; tumor necrosis factor receptor superfamily member 19 +K05156 RELT, TNFRSF19L; tumor necrosis factor receptor superfamily member 19-like +K05157 TNFRSF21, DR6, CD358; tumor necrosis factor receptor superfamily member 21 +K05158 TNFRSF22; tumor necrosis factor receptor superfamily member 22 +K05159 TNFRSF23; tumor necrosis factor receptor superfamily member 23 +K05160 TNFRSF25; tumor necrosis factor receptor superfamily member 25 +K05161 TNFRSF26; tumor necrosis factor receptor superfamily member 26 +K05162 EDAR; tumor necrosis factor receptor superfamily member EDAR +K05163 EDA2R, TNFRSF27, XEDAR; tumor necrosis factor receptor superfamily member 27 +K05164 IL17RA, CD217; interleukin 17 receptor A +K05165 IL17RB, IL17RH1; interleukin 17 receptor B +K05166 IL17RC, IL17RL; interleukin 17 receptor C +K05167 IL17RD, SEF; interleukin 17 receptor D +K05168 IL17RE; interleukin 17 receptor E +K05169 SIGIRR; single Ig IL-1R-related molecule +K05170 IL1RAPL, IL1R8_9; interleukin 1 receptor accessory protein-like +K05171 IL1RL1, ST2; interleukin 1 receptor-like 1 +K05172 IL1RL2, IL1RRP2; interleukin 1 receptor-like 2 +K05173 IL18R1, IL1RRP, CD218a; interleukin 18 receptor 1 +K05174 IL18RAP, ACPL, CD218b; interleukin 18 receptor accessory protein +K05175 GABRA; gamma-aminobutyric acid receptor subunit alpha +K05181 GABRB; gamma-aminobutyric acid receptor subunit beta +K05184 GABRD; gamma-aminobutyric acid receptor subunit delta +K05185 GABRE; gamma-aminobutyric acid receptor subunit epsilon +K05186 GABRG; gamma-aminobutyric acid receptor subunit gamma +K05189 GABRP; gamma-aminobutyric acid receptor subunit pi +K05190 GABRR; gamma-aminobutyric acid receptor subunit rho +K05192 GABRQ; gamma-aminobutyric acid receptor subunit theta +K05193 GLRA1; glycine receptor alpha-1 +K05194 GLRA2; glycine receptor alpha-2 +K05195 GLRA3; glycine receptor alpha-3 +K05196 GLRB; glycine receptor beta +K05197 GRIA1; glutamate receptor 1 +K05198 GRIA2; glutamate receptor 2 +K05199 GRIA3; glutamate receptor 3 +K05200 GRIA4; glutamate receptor 4 +K05201 GRIK1; glutamate receptor, ionotropic kainate 1 +K05202 GRIK2; glutamate receptor, ionotropic kainate 2 +K05203 GRIK3; glutamate receptor, ionotropic kainate 3 +K05204 GRIK4; glutamate receptor, ionotropic kainate 4 +K05205 GRIK5; glutamate receptor, ionotropic kainate 5 +K05206 GRID1; glutamate receptor delta-1 subunit +K05207 GRID2; glutamate receptor delta-2 subunit +K05208 GRIN1; glutamate receptor ionotropic, NMDA 1 +K05209 GRIN2A; glutamate receptor ionotropic, NMDA 2A +K05210 GRIN2B; glutamate receptor ionotropic, NMDA 2B +K05211 GRIN2C; glutamate receptor ionotropic, NMDA 2C +K05212 GRIN2D; glutamate receptor ionotropic, NMDA 2D +K05213 GRIN3A; glutamate receptor ionotropic, NMDA 3A +K05214 GRIN3B; glutamate receptor ionotropic, NMDA 3B +K05215 P2RX1; P2X purinoceptor 1 +K05216 P2RX2; P2X purinoceptor 2 +K05217 P2RX3; P2X purinoceptor 3 +K05218 P2RX4; P2X purinoceptor 4 +K05219 P2RX5; P2X purinoceptor 5 +K05220 P2RX7; P2X purinoceptor 7 +K05221 P2RX6, P2RXL1; P2X purinoceptor 6 +K05222 TRPV1; transient receptor potential cation channel subfamily V member 1 +K05223 NMB; neuromedin B +K05224 GRP; gastrin-releasing peptide +K05225 APLN; apelin +K05226 CCK; cholecystokinin +K05227 EDN3; endothelin-3 +K05228 POMC; proopiomelanocortin +K05229 PMCH; pro-melanin-concentrating hormone +K05230 DEFA; defensin, alpha +K05231 AGRP; agouti related protein +K05232 NPY; neuropeptide Y +K05233 PYY; peptide YY +K05234 PPY; pancreatic polypeptide +K05235 NTS; neurotensin +K05236 COPA, RET1; coatomer subunit alpha +K05237 SST; somatostatin +K05238 CORT; cortistatin +K05239 TAC1; tachykinin 1 +K05240 TAC3; tachykinin 3 +K05241 TAC4; tachykinin 4 +K05242 AVP; arginine vasopressin +K05243 OXT; oxytocin-neurophysin 1 +K05244 GAL; galanin +K05245 caiT; L-carnitine/gamma-butyrobetaine antiporter +K05246 HCRT; hypocretin (orexin) neuropeptide +K05247 NPFF; neuropeptide FF-amide peptide +K05248 UTS2; urotensin 2 +K05249 NMU; neuromedin U +K05250 FSHB; follitropin subunit beta +K05251 TSHB; thyrotropin subunit beta +K05252 GNRH; gonadotropin-releasing hormone +K05253 TRH; thyrotropin-releasing hormone +K05254 GHRL; ghrelin +K05255 INSL6; insulin-like 6 +K05256 CRH; corticotropin-releasing hormone +K05257 UCN2_3; urocortin 2/3 +K05258 GIP; gastric inhibitory polypeptide +K05259 GCG; glucagon +K05260 GHRH; growth hormone-releasing hormone +K05261 PTH; parathyroid hormone +K05262 ADCYAP; pituitary adenylate cyclase-activating polypeptide +K05263 SCT; secretin +K05264 VIP; vasoactive intestinal peptide +K05265 MLN; motilin +K05266 MLNR; motilin receptor +K05267 NPB; preproneuropeptide B +K05268 NPBWR1; neuropeptides B/W receptor 1 +K05269 PRH; Prolactin-releasing peptide +K05271 GLRA4; glycine receptor alpha-4 +K05273 GRGLCN; glutamate receptor, anionic +K05274 KCNMA3, KCNU1, KCA5.1; potassium large conductance calcium-activated channel subfamily M alpha member 3 +K05275 E1.1.1.65; pyridoxine 4-dehydrogenase [EC:1.1.1.65] +K05277 ANS; anthocyanidin synthase [EC:1.14.20.4] +K05278 FLS; flavonol synthase [EC:1.14.20.6] +K05279 E2.1.1.76; flavonol 3-O-methyltransferase [EC:2.1.1.76] +K05280 CYP75B1; flavonoid 3'-monooxygenase [EC:1.14.14.82] +K05281 IFR; 2'-hydroxyisoflavone reductase [EC:1.3.1.45] +K05282 GA20ox; gibberellin-44 dioxygenase [EC:1.14.11.12] +K05283 PIGW; glucosaminylphosphatidylinositol acyltransferase [EC:2.3.-.-] +K05284 PIGM; GPI mannosyltransferase 1 subunit M [EC:2.4.1.-] +K05285 PIGN; GPI ethanolamine phosphate transferase 1 [EC:2.7.-.-] +K05286 PIGB; GPI mannosyltransferase 3 [EC:2.4.1.-] +K05287 PIGF; GPI ethanolamine phosphate transferase 2/3 subunit F +K05288 PIGO; GPI ethanolamine phosphate transferase 3 subunit O [EC:2.7.-.-] +K05289 GAA1; GPI-anchor transamidase subunit GAA1 +K05290 PIGK; GPI-anchor transamidase subunit K +K05291 PIGS; GPI-anchor transamidase subunit S +K05292 PIGT; GPI-anchor transamidase subunit T +K05293 PIGU; GPI-anchor transamidase subunit U +K05294 PGAP1; GPI inositol-deacylase [EC:3.-.-.-] +K05295 E1.1.1.149; 20alpha-hydroxysteroid dehydrogenase [EC:1.1.1.149] +K05296 E1.1.1.51; 3(or 17)beta-hydroxysteroid dehydrogenase [EC:1.1.1.51] +K05297 rubB, alkT; rubredoxin---NAD+ reductase [EC:1.18.1.1] +K05298 GAPA; glyceraldehyde-3-phosphate dehydrogenase (NADP+) (phosphorylating) [EC:1.2.1.13] +K05299 fdhA; formate dehydrogenase (NADP+) alpha subunit [EC:1.17.1.10] +K05300 K05300; L-amino acid dehydrogenase [EC:1.4.5.-] +K05301 sorA; sulfite dehydrogenase (cytochrome) subunit A [EC:1.8.2.1] +K05302 SETD6; N-lysine methyltransferase SETD6 [EC:2.1.1.-] +K05303 K05303; O-methyltransferase [EC:2.1.1.-] +K05304 NANS, SAS; sialic acid synthase [EC:2.5.1.56 2.5.1.57 2.5.1.132] +K05305 FUK; fucokinase [EC:2.7.1.52] +K05306 phnX; phosphonoacetaldehyde hydrolase [EC:3.11.1.1] +K05307 THTPA; thiamine-triphosphatase [EC:3.6.1.28] +K05308 gnaD; gluconate/galactonate dehydratase [EC:4.2.1.140] +K05309 PTGES2; microsomal prostaglandin-E synthase 2 [EC:5.3.99.3] +K05310 PIGG, GPI7; ethanolamine phosphate transferase 2 subunit G [EC:2.7.-.-] +K05311 cggR; central glycolytic genes regulator +K05312 CHRNN; nicotinic acetylcholine receptor, invertebrate +K05313 GRIN; glutamate receptor, ionotropic, invertebrate +K05323 KCNKN; potassium channel subfamily K, invertebrate +K05330 KCNJN; potassium inwardly-rectifying channel subfamily J, other +K05334 SLC6A19; solute carrier family 6 (neurotransmitter transporter) member 19 +K05336 SLC6AN; solute carrier family 6 (neurotransmitter transporter), invertebrate +K05337 fer; ferredoxin +K05338 lrgA; holin-like protein +K05339 lrgB; holin-like protein LrgB +K05340 glcU; glucose uptake protein +K05341 E2.4.1.4; amylosucrase [EC:2.4.1.4] +K05342 treP; alpha,alpha-trehalose phosphorylase [EC:2.4.1.64] +K05343 treS; maltose alpha-D-glucosyltransferase / alpha-amylase [EC:5.4.99.16 3.2.1.1] +K05345 regB; Straboviridae restriction endoribonuclease [EC:4.6.1.25] +K05346 deoR; deoxyribonucleoside regulator +K05349 bglX; beta-glucosidase [EC:3.2.1.21] +K05350 bglB; beta-glucosidase [EC:3.2.1.21] +K05351 E1.1.1.9; D-xylulose reductase [EC:1.1.1.9] +K05352 tarJ; ribitol-5-phosphate 2-dehydrogenase (NADP+) [EC:1.1.1.405] +K05353 PMT; putrescine N-methyltransferase [EC:2.1.1.53] +K05354 TR2; tropinone reductase II [EC:1.1.1.236] +K05355 hexPS, COQ1; hexaprenyl diphosphate synthase [EC:2.5.1.82 2.5.1.83] +K05356 SPS, sds; all-trans-nonaprenyl-diphosphate synthase [EC:2.5.1.84 2.5.1.85] +K05357 VKORC1; vitamin-K-epoxide reductase (warfarin-sensitive) [EC:1.17.4.4] +K05358 quiA; quinate dehydrogenase (quinone) [EC:1.1.5.8] +K05359 ADT, PDT; arogenate/prephenate dehydratase [EC:4.2.1.91 4.2.1.51] +K05360 TXNDC12; protein-disulfide reductase (glutathione) [EC:1.8.4.2] +K05361 GPX4; phospholipid-hydroperoxide glutathione peroxidase [EC:1.11.1.12] +K05362 murE; UDP-N-acetylmuramoyl-L-alanyl-D-glutamate-L-lysine ligase [EC:6.3.2.7] +K05363 murM; serine/alanine adding enzyme [EC:2.3.2.10] +K05364 pbpA; penicillin-binding protein A +K05365 mrcB; penicillin-binding protein 1B [EC:2.4.99.28 3.4.16.4] +K05366 mrcA; penicillin-binding protein 1A [EC:2.4.99.28 3.4.16.4] +K05367 pbpC; penicillin-binding protein 1C [EC:2.4.99.28] +K05368 fre, ubiB; NAD(P)H-flavin reductase [EC:1.5.1.41] +K05369 pebA; 15,16-dihydrobiliverdin:ferredoxin oxidoreductase [EC:1.3.7.2] +K05370 pebB; phycoerythrobilin:ferredoxin oxidoreductase [EC:1.3.7.3] +K05371 pcyA; phycocyanobilin:ferredoxin oxidoreductase [EC:1.3.7.5] +K05372 ybtA; AraC family transcriptional regulator +K05373 ybtX, irp8; MFS transporter, putative signal transducer +K05374 irp4, ybtT; yersiniabactin synthetase, thioesterase component +K05375 mbtH, nocI; MbtH protein +K05376 cpeA, mpeA; phycoerythrin alpha chain +K05377 cpeB, mpeB; phycoerythrin beta chain +K05378 cpeC, mpeC; phycoerythrin-associated linker protein +K05379 cpeD, mpeD; phycoerythrin-associated linker protein +K05380 cpeE; phycoerythrin-associated linker protein +K05381 cpeR; phycoerythrin-associated linker protein +K05382 cpeS; phycoerythrin-associated linker protein +K05383 cpeT; CpeT protein +K05384 cpeU, mpeU; bilin biosynthesis protein +K05385 cpeY; bilin biosynthesis protein +K05386 cpeZ; bilin biosynthesis protein +K05387 GRIP; glutamate receptor, ionotropic, plant +K05389 KCNKF; potassium channel subfamily K, other eukaryote +K05391 CNGC; cyclic nucleotide gated channel, plant +K05394 atzA; atrazine chlorohydrolase [EC:3.8.1.8] +K05396 dcyD; D-cysteine desulfhydrase [EC:4.4.1.15] +K05397 HCL, HISCL; histamine-gated chloride channel +K05398 TLR1, CD281; toll-like receptor 1 +K05399 LBP; lipopolysaccharide-binding protein +K05400 LY96, MD-2; lymphocyte antigen 96 +K05401 TLR3, CD283; toll-like receptor 3 +K05402 TOLLIP; toll-interacting protein +K05403 TIRAP; toll-interleukin 1 receptor (TIR) domain-containing adaptor protein +K05404 TLR7; toll-like receptor 7 +K05405 IL6; interleukin 6 +K05406 IL12A; interleukin 12A +K05407 PF4, CXCL4; platelet factor 4 +K05408 CCL3; C-C motif chemokine 3 +K05409 TIRP, TRAM; TRIF-related adaptor molecule +K05410 TBK1; TANK-binding kinase 1 [EC:2.7.11.10] +K05411 IRF3; interferon regulatory factor 3 +K05412 CD80; CD80 antigen +K05413 CD86; CD86 antigen +K05414 IFNA; interferon alpha +K05415 IFNB; interferon beta +K05416 CXCL9; C-X-C motif chemokine 9 +K05417 IL11; interleukin 11 +K05418 OSM; oncostatin M +K05419 LIF; leukemia inhibitory factor +K05420 CNTF; ciliary neurotrophic factor +K05421 CLCF1, BSF3, CLC; cardiotrophin-like cytokine factor 1 +K05422 CTF1, CT1; cardiotrophin 1 +K05423 CSF3, GCSF; granulocyte colony-stimulating factor +K05424 LEP; leptin +K05425 IL12B; interleukin 12B +K05426 IL23A; interleukin 23 subunit alpha +K05427 CSF2, GMCSF; granulocyte-macrophage colony-stimulating factor +K05428 IL5; interleukin 5 +K05429 IL2; interleukin 2 +K05430 IL4; interleukin 4 +K05431 IL7; interleukin 7 +K05432 IL9; interleukin 9 +K05433 IL15; interleukin 15 +K05434 IL21; interleukin 21 +K05435 IL13; interleukin 13 +K05436 TSLP; thymic stromal lymphopoietin +K05437 EPO; erythropoietin +K05438 GH; growth hormone +K05439 PRL; prolactin +K05440 IFNW; interferon omega +K05441 IFNK; interferon kappa +K05442 IFNE; interferon epsilon +K05443 IL10, CSIF; interleukin 10 +K05444 IL19; interleukin 19 +K05445 IL22, IL-TIF; interleukin 22 +K05446 IL26; interleukin 26 +K05447 IFNL1, IL29; interferon lambda 1 +K05448 VEGFA; vascular endothelial growth factor A +K05449 VEGFC_D; vascular endothelial growth factor C/D +K05450 PDGFC_D; platelet derived growth factor C/D +K05451 NGFA; nerve growth factor, alpha +K05452 GDNF; glial cell derived neurotrophic factor +K05453 CSF1, MCSF; macrophage colony-stimulating factor 1 +K05454 FLT3LG; fms-related tyrosine kinase 3 ligand +K05455 NRG1; neuregulin 1 +K05456 NRG2; neuregulin 2 +K05457 NRG3; neuregulin 3 +K05458 NRG4; neuregulin 4 +K05459 IGF1; insulin-like growth factor 1 +K05460 HGF; hepatocyte growth factor +K05461 KITLG; KIT ligand +K05462 EFNA; ephrin-A +K05463 EFNB; ephrin-B +K05464 GAS6; growth arrest-specific 6 +K05465 ANGPT1; angiopoietin 1 +K05466 ANGPT2; angiopoietin 2 +K05467 ANGPT4; angiopoietin 4 +K05468 LTA, TNFB; lymphotoxin alpha (TNF superfamily, member 1) +K05469 TNFSF4, OX40L, CD252; tumor necrosis factor ligand superfamily member 4 +K05470 TNFSF7, CD70; tumor necrosis factor ligand superfamily member 7 +K05471 TNFSF8, CD153; tumor necrosis factor ligand superfamily member 8 +K05472 TNFSF9, CD137L; tumor necrosis factor ligand superfamily member 9 +K05473 TNFSF11, RANKL, CD254; tumor necrosis factor ligand superfamily member 11 +K05474 TNFSF12, TWEAK; tumor necrosis factor ligand superfamily member 12 +K05475 TNFSF13, APRIL, CD256; tumor necrosis factor ligand superfamily member 13 +K05476 TNFSF13B, TNFSF20, CD257; tumor necrosis factor ligand superfamily member 13B +K05477 TNFSF14, LIGHT, CD258; tumor necrosis factor ligand superfamily member 14 +K05478 TNFSF15, VEGI; tumor necrosis factor ligand superfamily member 15 +K05479 TNFSF18, GITRL; tumor necrosis factor ligand superfamily member 18 +K05480 EDA; ectodysplasin-A +K05481 IL1RN, IL1F3; interleukin 1 receptor antagonist +K05482 IL18, IL1F4; interleukin 18 +K05483 IL36RN, IL1F5; interleukin 36 receptor antagonist protein +K05484 IL36A, IL1F6; interleukin 36 alpha +K05485 IL37, IL1F7; interleukin 37 +K05486 IL36B, IL1F8; interleukin 36 beta +K05487 IL36G, IL1F9; interleukin 36 gamma +K05488 IL1F10, FKSG75; interleukin 1 family member 10 +K05489 IL17A, CTLA8; interleukin 17A +K05490 IL17B, CX1; interleukin 17B +K05491 IL17C, CX2; interleukin 17C +K05492 IL17D, IL27; interleukin 17D +K05493 IL17E, IL25; interleukin 17E +K05494 IL17F, ML1; interleukin 17F +K05495 GDF1; growth differentiation factor 1 +K05496 BMP3; bone morphogenetic protein 3 +K05497 MSTN, GDF8; growth differentiation factor 8 +K05498 BMP15, GDF9B; bone morphogenetic protein 15 +K05499 cytR; LacI family transcriptional regulator, repressor for deo operon, udp, cdd, tsx, nupC, and nupG +K05500 INHA; inhibin, alpha +K05501 slmA, ttk; TetR/AcrR family transcriptional regulator +K05502 BMP1, TLD; bone morphogenetic protein 1 [EC:3.4.24.19] +K05503 GDF2, BMP9; growth differentiation factor 2 +K05504 GDF15; growth differentiation factor 15 +K05505 CXCL1_2_3, GRO; C-X-C motif chemokine 1/2/3 +K05506 CXCL5_6, SCYB5_6; C-X-C motif chemokine 5/6 +K05507 XCL1, SCM1; C motif chemokine 1 +K05508 CX3CL1, NTT; C-X3-C motif chemokine 1 +K05509 CCL7; C-C motif chemokine 7 +K05510 CCL6; C-C motif chemokine 6 +K05511 CCL15_23; C-C motif chemokine 15/23 +K05512 CCL19, ELC; C-C motif chemokine 19 +K05513 CCL28; C-C motif chemokine 28 +K05514 CCL1; C-C motif chemokine 1 +K05515 mrdA; penicillin-binding protein 2 [EC:3.4.16.4] +K05516 cbpA; curved DNA-binding protein +K05517 tsx; nucleoside-specific channel-forming protein +K05518 rsbX; phosphoserine phosphatase RsbX [EC:3.1.3.3] +K05519 med; transcriptional activator of comK gene +K05520 yhbO; deglycase [EC:3.5.1.124] +K05521 draG; ADP-ribosyl-[dinitrogen reductase] hydrolase [EC:3.2.2.24] +K05522 nei; endonuclease VIII [EC:3.2.2.- 4.2.99.18] +K05523 hchA; D-lactate dehydratase / protein deglycase [EC:4.2.1.130 3.5.1.124] +K05524 fdxA; ferredoxin +K05525 linC, CYP111A; linalool 8-monooxygenase [EC:1.14.14.84] +K05526 astE; succinylglutamate desuccinylase [EC:3.5.1.96] +K05527 bolA; BolA family transcriptional regulator, general stress-responsive regulator +K05528 OCH1; alpha 1,6-mannosyltransferase [EC:2.4.1.232] +K05529 MNN9; mannan polymerase complexes MNN9 subunit [EC:2.4.1.232] +K05530 VAN1; mannan polymerase I complex VAN1 subunit [EC:2.4.1.-] +K05531 MNN10; mannan polymerase II complex MNN10 subunit [EC:2.4.1.-] +K05532 MNN11; mannan polymerase II complex MNN11 subunit [EC:2.4.1.-] +K05533 ANP1; mannan polymerase II complex ANP1 subunit [EC:2.4.1.-] +K05534 HOC1; mannan polymerase II complex HOC1 subunit [EC:2.4.1.-] +K05535 MNN2; alpha 1,2-mannosyltransferase [EC:2.4.1.-] +K05536 MNN5; alpha 1,2-mannosyltransferase [EC:2.4.1.-] +K05537 KTR6; mannosylphosphate transferase [EC:2.7.8.-] +K05538 MNN1; alpha 1,3-mannosyltransferase [EC:2.4.1.-] +K05539 dusA; tRNA-dihydrouridine synthase A [EC:1.-.-.-] +K05540 dusB; tRNA-dihydrouridine synthase B [EC:1.-.-.-] +K05541 dusC; tRNA-dihydrouridine synthase C [EC:1.-.-.-] +K05542 DUS1; tRNA-dihydrouridine synthase 1 [EC:1.3.1.88] +K05543 DUS2; tRNA-dihydrouridine synthase 2 [EC:1.3.1.91] +K05544 DUS3; tRNA-dihydrouridine synthase 3 [EC:1.3.1.89] +K05545 DUS4; tRNA-dihydrouridine synthase 4 [EC:1.3.1.90] +K05546 GANAB; mannosyl-oligosaccharide alpha-1,3-glucosidase [EC:3.2.1.207] +K05547 THRA, NR1A1; thyroid hormone receptor alpha +K05548 benK; MFS transporter, AAHS family, benzoate transport protein +K05549 benA-xylX; benzoate/toluate 1,2-dioxygenase subunit alpha [EC:1.14.12.10 1.14.12.-] +K05550 benB-xylY; benzoate/toluate 1,2-dioxygenase subunit beta [EC:1.14.12.10 1.14.12.-] +K05551 actI1, oxyA, tcmK, snoa1, aknB, mtmP; minimal PKS ketosynthase (KS/KS alpha) [EC:2.3.1.- 2.3.1.260 2.3.1.235] +K05552 actI2, oxyB, tcmL, snoa2, aknC, mtmK; minimal PKS chain-length factor (CLF/KS beta) [EC:2.3.1.- 2.3.1.260 2.3.1.235] +K05553 actI3, oxyC, tcmM, snoa3, aknD, mtmS; minimal PKS acyl carrier protein +K05554 actVII; aromatase [EC:4.2.1.-] +K05555 actIV; cyclase [EC:4.-.-.-] +K05556 actVI1, RED1; ketoreductase RED1 [EC:1.1.1.-] +K05557 actVA1; MFS transporter, DHA2 family, integral membrane protein +K05558 K05558; pyridoxamine 5'-phosphate oxidase family protein +K05559 phaA; multicomponent K+:H+ antiporter subunit A +K05560 phaC; multicomponent K+:H+ antiporter subunit C +K05561 phaD; multicomponent K+:H+ antiporter subunit D +K05562 phaE; multicomponent K+:H+ antiporter subunit E +K05563 phaF; multicomponent K+:H+ antiporter subunit F +K05564 phaG; multicomponent K+:H+ antiporter subunit G +K05565 mnhA, mrpA; multicomponent Na+:H+ antiporter subunit A +K05566 mnhB, mrpB; multicomponent Na+:H+ antiporter subunit B +K05567 mnhC, mrpC; multicomponent Na+:H+ antiporter subunit C +K05568 mnhD, mrpD; multicomponent Na+:H+ antiporter subunit D +K05569 mnhE, mrpE; multicomponent Na+:H+ antiporter subunit E +K05570 mnhF, mrpF; multicomponent Na+:H+ antiporter subunit F +K05571 mnhG, mrpG; multicomponent Na+:H+ antiporter subunit G +K05572 ndhA; NAD(P)H-quinone oxidoreductase subunit 1 [EC:7.1.1.2] +K05573 ndhB; NAD(P)H-quinone oxidoreductase subunit 2 [EC:7.1.1.2] +K05574 ndhC; NAD(P)H-quinone oxidoreductase subunit 3 [EC:7.1.1.2] +K05575 ndhD; NAD(P)H-quinone oxidoreductase subunit 4 [EC:7.1.1.2] +K05576 ndhE; NAD(P)H-quinone oxidoreductase subunit 4L [EC:7.1.1.2] +K05577 ndhF; NAD(P)H-quinone oxidoreductase subunit 5 [EC:7.1.1.2] +K05578 ndhG; NAD(P)H-quinone oxidoreductase subunit 6 [EC:7.1.1.2] +K05579 ndhH; NAD(P)H-quinone oxidoreductase subunit H [EC:7.1.1.2] +K05580 ndhI; NAD(P)H-quinone oxidoreductase subunit I [EC:7.1.1.2] +K05581 ndhJ; NAD(P)H-quinone oxidoreductase subunit J [EC:7.1.1.2] +K05582 ndhK; NAD(P)H-quinone oxidoreductase subunit K [EC:7.1.1.2] +K05583 ndhL; NAD(P)H-quinone oxidoreductase subunit L [EC:7.1.1.2] +K05584 ndhM; NAD(P)H-quinone oxidoreductase subunit M [EC:7.1.1.2] +K05585 ndhN; NAD(P)H-quinone oxidoreductase subunit N [EC:7.1.1.2] +K05586 hoxE; bidirectional [NiFe] hydrogenase diaphorase subunit [EC:7.1.1.2] +K05587 hoxF; bidirectional [NiFe] hydrogenase diaphorase subunit [EC:7.1.1.2] +K05588 hoxU; bidirectional [NiFe] hydrogenase diaphorase subunit [EC:7.1.1.2] +K05589 ftsB; cell division protein FtsB +K05590 srmB; ATP-dependent RNA helicase SrmB [EC:5.6.2.7] +K05591 dbpA; ATP-dependent RNA helicase DbpA [EC:5.6.2.6] +K05592 deaD, cshA; ATP-dependent RNA helicase DeaD [EC:5.6.2.7] +K05593 aadK; aminoglycoside 6-adenylyltransferase [EC:2.7.7.-] +K05594 elaB; ElaB protein +K05595 marC; multiple antibiotic resistance protein +K05596 iciA; LysR family transcriptional regulator, chromosome initiation inhibitor +K05597 aspQ, ansB, ansA; glutamin-(asparagin-)ase [EC:3.5.1.38] +K05599 antA; anthranilate 1,2-dioxygenase (deaminating, decarboxylating) large subunit [EC:1.14.12.1] +K05600 antB; anthranilate 1,2-dioxygenase (deaminating, decarboxylating) small subunit [EC:1.14.12.1] +K05601 hcp; hydroxylamine reductase [EC:1.7.99.1] +K05602 hisN; histidinol-phosphatase [EC:3.1.3.15] +K05603 hutF; formimidoylglutamate deiminase [EC:3.5.3.13] +K05604 CNDP1; beta-Ala-His dipeptidase [EC:3.4.13.20] +K05605 HIBCH; 3-hydroxyisobutyryl-CoA hydrolase [EC:3.1.2.4] +K05606 MCEE, epi; methylmalonyl-CoA/ethylmalonyl-CoA epimerase [EC:5.1.99.1] +K05607 AUH; methylglutaconyl-CoA hydratase [EC:4.2.1.18] +K05609 UCHL3, YUH1; ubiquitin carboxyl-terminal hydrolase L3 [EC:3.4.19.12] +K05610 UCHL5, UCH37; ubiquitin carboxyl-terminal hydrolase L5 [EC:3.4.19.12] +K05611 UCHL1; ubiquitin carboxyl-terminal hydrolase L1 [EC:3.4.19.12] +K05612 SLC1A1, EAAT3; solute carrier family 1 (neuronal/epithelial high affinity glutamate transporter), member 1 +K05613 SLC1A2, EAAT2; solute carrier family 1 (glial high affinity glutamate transporter), member 2 +K05614 SLC1A3, EAAT1; solute carrier family 1 (glial high affinity glutamate transporter), member 3 +K05615 SLC1A4, SATT; solute carrier family 1 (neutral amino acid transporter), member 4 +K05616 SLC1A5; solute carrier family 1 (neutral amino acid transporter), member 5 +K05617 SLC1A6, EAAT4; solute carrier family 1 (high affinity glutamate/aspartate transporter), member 6 +K05618 SLC1A7, EAAT5; solute carrier family 1 (glutamate transporter), member 7 +K05619 TGM1; transglutaminase 1 [EC:2.3.2.13] +K05620 TGM3; transglutaminase 3 [EC:2.3.2.13] +K05621 TGM4; transglutaminase 4 [EC:2.3.2.13] +K05622 TGM5; transglutaminase 5 [EC:2.3.2.13] +K05623 TGM7; transglutaminase 7 [EC:2.3.2.13] +K05624 TGM6; transglutaminase 6 [EC:2.3.2.13] +K05625 TGM2; transglutaminase 2 [EC:2.3.2.13] +K05626 DRPLA; atrophin-1 (dentatorubral-pallidoluysian atrophy protein) +K05627 BAIAP2, IRSP53; BAI1-associated protein 2 +K05628 RERE; arginine-glutamic acid dipeptide repeats protein +K05629 AIP1; atrophin-1 interacting protein 1 +K05630 WWP2, AIP2; NEDD4-like E3 ubiquitin-protein ligase WWP2 [EC:2.3.2.26] +K05631 AIP3, WWP3, BAIAP1; atrophin-1 interacting protein 3 (BAI1-associated protein 1) +K05632 ITCH, AIP4; E3 ubiquitin-protein ligase Itchy [EC:2.3.2.26] +K05633 WWP1, AIP5; NEDD4-like E3 ubiquitin-protein ligase WWP1 [EC:2.3.2.26] +K05634 PRNP, PrP, CD230; prion protein +K05635 LAMC1; laminin, gamma 1 +K05636 LAMB1; laminin, beta 1 +K05637 LAMA1_2; laminin, alpha 1/2 +K05638 NFE2L2, NRF2; nuclear factor erythroid 2-related factor 2 +K05639 APLP1; amyloid-like protein 1 +K05640 GFAP; glial fibrillary acidic protein +K05641 ABCA1; ATP-binding cassette, subfamily A (ABC1), member 1 +K05642 ABCA2; ATP-binding cassette, subfamily A (ABC1), member 2 +K05643 ABCA3; ATP-binding cassette, subfamily A (ABC1), member 3 +K05644 ABCA4; ATP-binding cassette, subfamily A (ABC1), member 4 +K05645 ABCA7; ATP-binding cassette, subfamily A (ABC1), member 7 +K05646 ABCA12; ATP-binding cassette, subfamily A (ABC1), member 12 +K05647 ABCA13; ATP binding cassette, subfamily A (ABC1), member 13 +K05648 ABCA5; ATP-binding cassette, subfamily A (ABC1), member 5 +K05649 ABCA6; ATP-binding cassette, subfamily A (ABC1), member 6 +K05650 ABCA8; ATP-binding cassette, subfamily A (ABC1), member 8 +K05651 ABCA9; ATP-binding cassette, subfamily A (ABC1), member 9 +K05652 ABCA10; ATP-binding cassette, subfamily A (ABC1), member 10 +K05653 ABCB2, TAP1; ATP-binding cassette, subfamily B (MDR/TAP), member 2 [EC:7.4.2.14] +K05654 ABCB3, TAP2; ATP-binding cassette, subfamily B (MDR/TAP), member 3 [EC:7.4.2.14] +K05655 ABCB8; ATP-binding cassette, subfamily B (MDR/TAP), member 8 +K05656 ABCB9, TAPL; ATP-binding cassette, subfamily B (MDR/TAP), member 9 +K05657 ABCB10; ATP-binding cassette, subfamily B (MDR/TAP), member 10 +K05658 ABCB1, CD243; ATP-binding cassette, subfamily B (MDR/TAP), member 1 [EC:7.6.2.2] +K05659 ABCB4; ATP-binding cassette, subfamily B (MDR/TAP), member 4 [EC:7.6.2.2] +K05660 ABCB5; ATP-binding cassette, subfamily B (MDR/TAP), member 5 +K05661 ABCB6; ATP-binding cassette, subfamily B (MDR/TAP), member 6 +K05662 ABCB7, ATM; ATP-binding cassette, subfamily B (MDR/TAP), member 7 +K05664 ABCB11; ATP-binding cassette, subfamily B (MDR/TAP), member 11 +K05665 ABCC1; ATP-binding cassette, subfamily C (CFTR/MRP), member 1 [EC:7.6.2.3] +K05666 ABCC2; ATP-binding cassette, subfamily C (CFTR/MRP), member 2 +K05667 ABCC3; ATP-binding cassette, subfamily C (CFTR/MRP), member 3 +K05668 ABCC5; ATP-binding cassette, subfamily C (CFTR/MRP), member 5 +K05669 ABCC6; ATP-binding cassette, subfamily C (CFTR/MRP), member 6 +K05670 ABCC13; ATP-binding cassette, subfamily C (CFTR/MRP), member 13 +K05671 ABCC11; ATP-binding cassette, subfamily C (CFTR/MRP), member 11 +K05672 ABCC12; ATP-binding cassette, subfamily C (CFTR/MRP), member 12 +K05673 ABCC4; ATP-binding cassette, subfamily C (CFTR/MRP), member 4 +K05674 ABCC10; ATP-binding cassette, subfamily C (CFTR/MRP), member 10 +K05675 ABCD1, ALD; ATP-binding cassette, subfamily D (ALD), member 1 [EC:7.6.2.4] +K05676 ABCD2, ALDL1; ATP-binding cassette, subfamily D (ALD), member 2 [EC:7.6.2.4] +K05677 ABCD3, PMP70; ATP-binding cassette, subfamily D (ALD), member 3 [EC:7.6.2.4] +K05678 ABCD4, PXMP1L; ATP-binding cassette, subfamily D (ALD), member 4 [EC:7.6.2.8] +K05679 ABCG1; ATP-binding cassette, subfamily G (WHITE), member 1 +K05680 ABCG4; ATP-binding cassette, subfamily G (WHITE), member 4 +K05681 ABCG2, CD338; ATP-binding cassette, subfamily G (WHITE), member 2 +K05682 ABCG3, Mxr2, Abcp2; ATP-binding cassette, subfamily G (WHITE), member 3 +K05683 ABCG5; ATP-binding cassette, subfamily G (WHITE), member 5 (sterolin 1) +K05684 ABCG8; ATP-binding cassette, subfamily G (WHITE), member 8 (sterolin 2) +K05685 macB; macrolide transport system ATP-binding/permease protein [EC:7.6.2.-] +K05687 PARK7; protein DJ-1 [EC:3.5.1.124] +K05688 PINK1; PTEN induced putative kinase 1 [EC:2.7.11.1] +K05689 CDH1, CDHE, CD324; cadherin 1, type 1, E-cadherin +K05690 CTNND1; catenin (cadherin-associated protein), delta 1 +K05691 CTNNA; catenin alpha +K05692 ACTB_G1; actin beta/gamma 1 +K05693 PTPRM; receptor-type tyrosine-protein phosphatase mu [EC:3.1.3.48] +K05694 PTPRB, PTPB; receptor-type tyrosine-protein phosphatase beta [EC:3.1.3.48] +K05695 PTPRF, LAR; receptor-type tyrosine-protein phosphatase F [EC:3.1.3.48] +K05696 PTPN1, PTP1B; tyrosine-protein phosphatase non-receptor type 1 [EC:3.1.3.48] +K05697 PTPN6, SHP1; tyrosine-protein phosphatase non-receptor type 6 [EC:3.1.3.48] +K05698 PTPRJ, DEP1, CD148; receptor-type tyrosine-protein phosphatase eta [EC:3.1.3.48] +K05699 ACTN1_4; actinin alpha 1/4 +K05700 VCL; vinculin +K05701 TJP1, ZO1; tight junction protein 1 +K05702 AF6, MLLT4; afadin +K05703 FYN; tyrosine-protein kinase Fyn [EC:2.7.10.2] +K05704 SRC; tyrosine-protein kinase Src [EC:2.7.10.2] +K05705 YES1; tyrosine-protein kinase Yes [EC:2.7.10.2] +K05706 SNAI2, SLUG; snail 2 +K05707 SNAI1; snail 1 +K05708 hcaE, hcaA1; 3-phenylpropionate/trans-cinnamate dioxygenase subunit alpha [EC:1.14.12.19] +K05709 hcaF, hcaA2; 3-phenylpropionate/trans-cinnamate dioxygenase subunit beta [EC:1.14.12.19] +K05710 hcaC; 3-phenylpropionate/trans-cinnamate dioxygenase ferredoxin component +K05711 hcaB; 2,3-dihydroxy-2,3-dihydrophenylpropionate dehydrogenase [EC:1.3.1.87] +K05712 mhpA; 3-(3-hydroxy-phenyl)propionate hydroxylase [EC:1.14.13.127] +K05713 mhpB; 2,3-dihydroxyphenylpropionate 1,2-dioxygenase [EC:1.13.11.16] +K05714 mhpC; 2-hydroxy-6-oxonona-2,4-dienedioate hydrolase [EC:3.7.1.14] +K05715 2PGK; 2-phosphoglycerate kinase [EC:2.7.2.16] +K05716 CPGS; cyclic 2,3-diphosphoglycerate synthase [EC:6.5.1.9] +K05717 FN1; fibronectin 1 +K05718 ITGAL, CD11a; integrin alpha L +K05719 ITGB1, CD29; integrin beta 1 +K05720 FGD1; FYVE, RhoGEF and PH domain containing 1 +K05721 FGD2; FYVE, RhoGEF and PH domain containing 2 +K05722 FGD3; FYVE, RhoGEF and PH domain containing 3 +K05723 FGD4; FYVE, RhoGEF and PH domain containing 4 +K05724 FGD5_6; FYVE, RhoGEF and PH domain containing 5/6 +K05725 PTK2, FAK; focal adhesion kinase 1 [EC:2.7.10.2] +K05726 BCAR1, CAS; breast cancer anti-estrogen resistance 1 +K05727 DOCK3; dedicator of cytokinesis protein 3 +K05728 CSK; c-src tyrosine kinase [EC:2.7.10.2] +K05729 ARHGEF6, PIXA; Rho guanine nucleotide exchange factor 6 +K05730 VAV; guanine nucleotide exchange factor VAV +K05731 TIAM1; T-lymphoma invasion and metastasis-inducing protein 1 +K05732 ARHGAP35, GRLF1; glucocorticoid receptor DNA-binding factor 1 +K05733 PAK3, MRX30; p21-activated kinase 3 [EC:2.7.11.1] +K05734 PAK4; p21-activated kinase 4 [EC:2.7.11.1] +K05735 PAK6; p21-activated kinase 6 [EC:2.7.11.1] +K05736 PAK5, PAK7; p21-activated kinase 5 [EC:2.7.11.1] +K05737 GIT1; G protein-coupled receptor kinase interactor 1 +K05738 MYL1; myosin light chain 1 +K05739 seaA; uncharacterized protein +K05740 DIAPH1; diaphanous 1 +K05741 DIAPH2; diaphanous 2 +K05742 SLC9A1, NHE1; solute carrier family 9 (sodium/hydrogen exchanger), member 1 +K05743 LIMK1; LIM domain kinase 1 [EC:2.7.11.1] +K05744 LIMK2; LIM domain kinase 2 [EC:2.7.11.1] +K05745 DIAPH3, DRF3; diaphanous 3 +K05746 ENAH, MENA; enabled +K05747 WAS; Wiskott-Aldrich syndrome protein +K05748 WASF2; WAS protein family, member 2 +K05749 CYFIP; cytoplasmic FMR1 interacting protein +K05750 NCKAP1, NAP125; NCK-associated protein 1 +K05751 ABI2; abl interactor 2 +K05752 C3ORF10, HSPC300; chromosome 3 open reading frame 10 +K05753 WASF1; WAS protein family, member 1 +K05754 ARPC5; actin related protein 2/3 complex, subunit 5 +K05755 ARPC4; actin related protein 2/3 complex, subunit 4 +K05756 ARPC3; actin related protein 2/3 complex, subunit 3 +K05757 ARPC1A_B; actin related protein 2/3 complex, subunit 1A/1B +K05758 ARPC2; actin related protein 2/3 complex, subunit 2 +K05759 PFN; profilin +K05760 PXN; paxillin +K05761 VIL1; villin 1 +K05762 RDX; radixin +K05763 MSN; moesin +K05764 TMSB4; thymosin, beta 4 +K05765 CFL; cofilin +K05766 SSH; protein phosphatase slingshot [EC:3.1.3.16 3.1.3.48] +K05767 IQGAP2_3; Ras GTPase-activating-like protein IQGAP2/3 +K05768 GSN; gelsolin +K05769 ARHGEF4_29, ASEF1_2; Rho guanine nucleotide exchange factor 4/29 +K05770 TSPO, BZRP; translocator protein +K05771 NR3C1, GR; glucocorticoid receptor +K05772 tupA, vupA; tungstate transport system substrate-binding protein +K05773 tupB, vupB; tungstate transport system permease protein +K05774 phnN; ribose 1,5-bisphosphokinase [EC:2.7.4.23] +K05775 malM; maltose operon periplasmic protein +K05776 modF; molybdate transport system ATP-binding protein +K05777 ynjB; putative thiamine transport system substrate-binding protein +K05778 ynjC; putative thiamine transport system permease protein +K05779 ynjD; putative thiamine transport system ATP-binding protein +K05780 phnL; alpha-D-ribose 1-methylphosphonate 5-triphosphate synthase subunit PhnL [EC:2.7.8.37] +K05781 phnK; putative phosphonate transport system ATP-binding protein +K05782 benE; benzoate membrane transport protein +K05783 benD-xylL; dihydroxycyclohexadiene carboxylate dehydrogenase [EC:1.3.1.25 1.3.1.-] +K05784 benC-xylZ; benzoate/toluate 1,2-dioxygenase reductase component [EC:1.18.1.-] +K05785 rfaH; transcriptional antiterminator RfaH +K05786 rarD; chloramphenicol-sensitive protein RarD +K05787 hupA; DNA-binding protein HU-alpha +K05788 ihfB, himD; integration host factor subunit beta +K05789 wzzB; chain length determinant protein (polysaccharide antigen chain regulator) +K05790 wzzE; lipopolysaccharide biosynthesis protein WzzE +K05791 terZ; tellurium resistance protein TerZ +K05792 terA; tellurite resistance protein TerA +K05793 terB; tellurite resistance protein TerB +K05794 terC; tellurite resistance protein TerC +K05795 terD; tellurium resistance protein TerD +K05796 hydN; electron transport protein HydN +K05797 pchF; 4-cresol dehydrogenase (hydroxylating) flavoprotein subunit [EC:1.17.9.1] +K05798 leuO; LysR family transcriptional regulator, transcriptional activator for leuABCD operon +K05799 pdhR; GntR family transcriptional regulator, transcriptional repressor for pyruvate dehydrogenase complex +K05800 decR, cyuR; Lrp/AsnC family transcriptional regulator, cysteine-sensing transcriptional activator +K05801 djlA; DnaJ like chaperone protein +K05802 mscK, kefA, aefA; potassium-dependent mechanosensitive channel +K05803 nlpI; lipoprotein NlpI +K05804 rob; AraC family transcriptional regulator, mar-sox-rob regulon activator +K05805 creA; CreA protein +K05806 leuL; leu operon leader peptide +K05807 bamD; outer membrane protein assembly factor BamD +K05808 hpf; ribosome hibernation promoting factor +K05809 raiA; ribosome-associated inhibitor A +K05810 LACC1, yfiH; purine-nucleoside/S-methyl-5'-thioadenosine phosphorylase / adenosine deaminase [EC:2.4.2.1 2.4.2.28 3.5.4.4] +K05811 yfiM; putative lipoprotein +K05812 DTWD2, tapT; tRNA-uridine aminocarboxypropyltransferase [EC:2.5.1.25] +K05813 ugpB; sn-glycerol 3-phosphate transport system substrate-binding protein +K05814 ugpA; sn-glycerol 3-phosphate transport system permease protein +K05815 ugpE; sn-glycerol 3-phosphate transport system permease protein +K05816 ugpC; sn-glycerol 3-phosphate transport system ATP-binding protein [EC:7.6.2.10] +K05817 hcaR; LysR family transcriptional regulator, hca operon transcriptional activator +K05818 mhpR; IclR family transcriptional regulator, mhp operon transcriptional activator +K05819 mhpT; MFS transporter, AAHS family, 3-hydroxyphenylpropionic acid transporter +K05820 hcaT; MFS transporter, PPP family, 3-phenylpropionic acid transporter +K05821 ARO9; aromatic amino acid aminotransferase II [EC:2.6.1.58 2.6.1.28] +K05822 dapH, dapD; tetrahydrodipicolinate N-acetyltransferase [EC:2.3.1.89] +K05823 dapL; N-acetyldiaminopimelate deacetylase [EC:3.5.1.47] +K05824 LYS12; homoisocitrate dehydrogenase [EC:1.1.1.87] +K05825 LYSN; 2-aminoadipate transaminase [EC:2.6.1.-] +K05826 lysW, argW; alpha-aminoadipate/glutamate carrier protein LysW +K05827 lysX; [lysine-biosynthesis-protein LysW]---L-2-aminoadipate ligase [EC:6.3.2.43] +K05828 lysZ, argB; [amino group carrier protein]-L-2-aminoadipate/L-glutamate 6-kinase [EC:2.7.2.17 2.7.2.19] +K05829 lysY, argC; [amino group carrier protein]-6-phospho-L-2-aminoadipate/5-phospho-L-glutamate reductase [EC:1.2.1.103 1.2.1.106] +K05830 lysJ, argD; [amino-group carrier protein]-gamma-(L-lysyl/L-ornithyl)-L-glutamate aminotransferase [EC:2.6.1.118 2.6.1.124] +K05831 lysK, argE; [amino group carrier protein]-lysine/ornithine hydrolase [EC:3.5.1.130 3.5.1.132] +K05832 K05832; putative tryptophan/tyrosine transport system permease protein +K05833 K05833; putative tryptophan/tyrosine transport system ATP-binding protein +K05834 rhtB; homoserine/homoserine lactone efflux protein +K05835 rhtC; threonine efflux protein +K05836 hutC; GntR family transcriptional regulator, histidine utilization repressor +K05837 rodA, mrdB; rod shape determining protein RodA +K05838 ybbN; putative thioredoxin +K05839 hha; haemolysin expression modulating protein +K05840 DRD5; dopamine receptor D5 +K05841 E2.4.1.173; sterol 3beta-glucosyltransferase [EC:2.4.1.173] +K05842 TRIF; toll-like receptor adapter molecule 1 +K05843 TGFBR3; transforming growth factor, beta receptor III +K05844 rimK; ribosomal protein S6--L-glutamate ligase [EC:6.3.2.-] +K05845 opuC; osmoprotectant transport system substrate-binding protein +K05846 opuBD; osmoprotectant transport system permease protein +K05847 opuA; osmoprotectant transport system ATP-binding protein [EC:7.6.2.9] +K05848 YPC1; phytoceramidase [EC:3.5.1.-] +K05849 SLC8A, NCX; solute carrier family 8 (sodium/calcium exchanger) +K05850 ATP2B; P-type Ca2+ transporter type 2B [EC:7.2.2.10] +K05851 cyaA; adenylate cyclase, class 1 [EC:4.6.1.1] +K05852 PLN; phospholamban +K05853 ATP2A; P-type Ca2+ transporter type 2A [EC:7.2.2.10] +K05854 LYN; tyrosine-protein kinase Lyn [EC:2.7.10.2] +K05855 SYK; spleen tyrosine kinase [EC:2.7.10.2] +K05856 LCK; lymphocyte cell-specific protein tyrosine kinase [EC:2.7.10.2] +K05857 PLCD; phosphatidylinositol phospholipase C, delta [EC:3.1.4.11] +K05858 PLCB; phosphatidylinositol phospholipase C, beta [EC:3.1.4.11] +K05859 PLCG2; phosphatidylinositol phospholipase C, gamma-2 [EC:3.1.4.11] +K05860 PLCE; phosphatidylinositol phospholipase C, epsilon [EC:3.1.4.11] +K05861 PLCZ; phosphatidylinositol phospholipase C, zeta [EC:3.1.4.11] +K05862 VDAC1; voltage-dependent anion channel protein 1 +K05863 SLC25A4S, ANT; solute carrier family 25 (mitochondrial adenine nucleotide translocator), member 4/5/6/31 +K05864 PPID, CYPD; peptidyl-prolyl isomerase D [EC:5.2.1.8] +K05865 TNNC1; troponin C, slow skeletal and cardiac muscles +K05866 CDC25B; M-phase inducer phosphatase 2 [EC:3.1.3.48] +K05867 CDC25C; M-phase inducer phosphatase 3 [EC:3.1.3.48] +K05868 CCNB1; G2/mitotic-specific cyclin-B1 +K05869 CAMK4; calcium/calmodulin-dependent protein kinase IV [EC:2.7.11.17] +K05870 CREB1; cyclic AMP-responsive element-binding protein 1 +K05871 PTK2B, FAK2; focal adhesion kinase 2 [EC:2.7.10.2] +K05872 NFKBIE; NF-kappa-B inhibitor epsilon +K05873 cyaB; adenylate cyclase, class 2 [EC:4.6.1.1] +K05874 tsr; methyl-accepting chemotaxis protein I, serine sensor receptor +K05875 tar; methyl-accepting chemotaxis protein II, aspartate sensor receptor +K05876 trg; methyl-accepting chemotaxis protein III, ribose and galactose sensor receptor +K05877 tap; methyl-accepting chemotaxis protein IV, peptide sensor receptor +K05878 dhaK; phosphoenolpyruvate---glycerone phosphotransferase subunit DhaK [EC:2.7.1.121] +K05879 dhaL; phosphoenolpyruvate---glycerone phosphotransferase subunit DhaL [EC:2.7.1.121] +K05880 dhaR; transcriptional activator for dhaKLM operon +K05881 dhaM; phosphoenolpyruvate---glycerone phosphotransferase subunit DhaM [EC:2.7.1.121] +K05882 E1.1.1.91; aryl-alcohol dehydrogenase (NADP+) [EC:1.1.1.91] +K05884 comC; L-2-hydroxycarboxylate dehydrogenase (NAD+) [EC:1.1.1.337] +K05886 sdh; serine 3-dehydrogenase (NADP+) [EC:1.1.1.276] +K05887 ydiB; quinate/shikimate dehydrogenase [EC:1.1.1.282] +K05888 K05888; L-gulono-1,4-lactone dehydrogenase [EC:1.1.2.-] +K05889 pvadh; polyvinyl alcohol dehydrogenase (cytochrome) [EC:1.1.2.6] +K05894 OPR; 12-oxophytodienoic acid reductase [EC:1.3.1.42] +K05895 cobK-cbiJ; precorrin-6A/cobalt-precorrin-6A reductase [EC:1.3.1.54 1.3.1.106] +K05896 scpA; segregation and condensation protein A +K05897 patGox; oxazoline/thiazoline dehydrogenase [EC:1.3.3.16] +K05898 kstD; 3-oxosteroid 1-dehydrogenase [EC:1.3.99.4] +K05901 BLVRB; biliverdin reductase / flavin reductase [EC:1.3.1.24 1.5.1.30] +K05906 PCYOX1, FCLY; prenylcysteine oxidase / farnesylcysteine lyase [EC:1.8.3.5 1.8.3.6] +K05907 APR; adenylyl-sulfate reductase (glutathione) [EC:1.8.4.9] +K05908 doxDA; thiosulfate dehydrogenase (quinone) [EC:1.8.5.2] +K05909 E1.10.3.2; laccase [EC:1.10.3.2] +K05910 npr; NADH peroxidase [EC:1.11.1.1] +K05913 dad; 2,4'-dihydroxyacetophenone dioxygenase [EC:1.13.11.41] +K05914 E1.13.12.7; photinus-luciferin 4-monooxygenase (ATP-hydrolysing) [EC:1.13.12.7] +K05915 phnZ1; (hydroxymethyl)phosphonate/2-amino-1-hydroxyethylphosphonate dioxygenase [EC:1.13.11.89 1.13.11.78] +K05916 hmp, YHB1; nitric oxide dioxygenase [EC:1.14.12.17] +K05917 CYP51; sterol 14alpha-demethylase [EC:1.14.14.154 1.14.15.36] +K05918 bmp5; 4-hydroxybenzoate brominase (decarboxylating) [EC:1.14.19.55] +K05919 dfx; superoxide reductase [EC:1.15.1.2] +K05921 hpaG; 5-oxopent-3-ene-1,2,5-tricarboxylate decarboxylase / 2-hydroxyhepta-2,4-diene-1,7-dioate isomerase [EC:4.1.1.68 5.3.3.-] +K05922 hydB; quinone-reactive Ni/Fe-hydrogenase large subunit [EC:1.12.5.1] +K05925 METTL3; mRNA m6A methyltransferase catalytic subunit [EC:2.1.1.348] +K05926 nhs; 23S rRNA (adenosine1067-2'-O)-methyltransferase [EC:2.1.1.230] +K05927 hydA; quinone-reactive Ni/Fe-hydrogenase small subunit [EC:1.12.5.1] +K05928 E2.1.1.95; tocopherol O-methyltransferase [EC:2.1.1.95] +K05929 E2.1.1.103, NMT; phosphoethanolamine N-methyltransferase [EC:2.1.1.103] +K05931 CARM1, PRMT4; type I protein arginine methyltransferase [EC:2.1.1.319] +K05933 E1.14.17.4; aminocyclopropanecarboxylate oxidase [EC:1.14.17.4] +K05934 cobJ, cbiH; precorrin-3B C17-methyltransferase / cobalt-factor III methyltransferase [EC:2.1.1.131 2.1.1.272] +K05936 cobM, cbiF; precorrin-4/cobalt-precorrin-4 C11-methyltransferase [EC:2.1.1.133 2.1.1.271] +K05937 K05937; uncharacterized protein +K05939 aas; acyl-[acyl-carrier-protein]-phospholipid O-acyltransferase / long-chain-fatty-acid--[acyl-carrier-protein] ligase [EC:2.3.1.40 6.2.1.20] +K05940 CROT; carnitine O-octanoyltransferase [EC:2.3.1.137] +K05941 E2.3.2.15; glutathione gamma-glutamylcysteinyltransferase [EC:2.3.2.15] +K05942 E2.3.3.3; citrate (Re)-synthase [EC:2.3.3.3] +K05946 tagA, tarA; N-acetylglucosaminyldiphosphoundecaprenol N-acetyl-beta-D-mannosaminyltransferase [EC:2.4.1.187] +K05947 E2.4.1.217; mannosyl-3-phosphoglycerate synthase [EC:2.4.1.217] +K05948 FNG; fringe [EC:2.4.1.222] +K05951 draT; NAD+---dinitrogen-reductase ADP-D-ribosyltransferase [EC:2.4.2.37] +K05952 K05952; uncharacterized protein +K05953 NAS; nicotianamine synthase [EC:2.5.1.43] +K05954 FNTB; protein farnesyltransferase subunit beta [EC:2.5.1.58] +K05955 FNTA; protein farnesyltransferase/geranylgeranyltransferase type-1 subunit alpha [EC:2.5.1.58 2.5.1.59] +K05956 RABGGTB; geranylgeranyl transferase type-2 subunit beta [EC:2.5.1.60] +K05957 stsC; L-glutamine:scyllo-inosose aminotransferase [EC:2.6.1.50] +K05960 E2.7.11.26; tau-protein kinase [EC:2.7.11.26] +K05961 dnk; deoxynucleoside kinase [EC:2.7.1.145] +K05964 citX; holo-ACP synthase [EC:2.7.7.61] +K05966 citG; triphosphoribosyl-dephospho-CoA synthase [EC:2.4.2.52] +K05967 K05967; uncharacterized protein +K05969 PTRHD1; peptidyl-tRNA hydrolase PTRHD1 [EC:3.1.1.29] +K05970 SIAE; sialate O-acetylesterase [EC:3.1.1.53] +K05972 AXE1; acetylxylan esterase [EC:3.1.1.72] +K05973 phaZ; poly(3-hydroxybutyrate) depolymerase [EC:3.1.1.75] +K05977 dszB; 2'-hydroxybiphenyl-2-sulfinate desulfinase [EC:3.13.1.3] +K05978 stpA; glucosylglycerol 3-phosphatase [EC:3.1.3.69] +K05979 comB; 2-phosphosulfolactate phosphatase [EC:3.1.3.71] +K05982 E3.1.21.7, nfi; deoxyribonuclease V [EC:3.1.21.7] +K05984 cho; excinuclease Cho [EC:3.1.25.-] +K05985 rnmV; ribonuclease M5 [EC:3.1.26.8] +K05986 NUCS; nuclease S1 [EC:3.1.30.1] +K05988 dexA; dextranase [EC:3.2.1.11] +K05989 ramA; alpha-L-rhamnosidase [EC:3.2.1.40] +K05991 E3.2.1.123; endoglycosylceramidase [EC:3.2.1.123] +K05992 amyM; maltogenic alpha-amylase [EC:3.2.1.133] +K05994 E3.4.11.10; bacterial leucyl aminopeptidase [EC:3.4.11.10] +K05995 pepE; dipeptidase E [EC:3.4.13.21] +K05996 cpt; carboxypeptidase T [EC:3.4.17.18] +K05997 sufA; Fe-S cluster assembly protein SufA +K05998 E3.4.21.100; pseudomonalisin [EC:3.4.21.100] +K05999 E3.4.21.101; xanthomonalisin [EC:3.4.21.101] +K06000 E3.4.22.2; papain [EC:3.4.22.2] +K06001 trpB; tryptophan synthase beta chain [EC:4.2.1.20] +K06002 PGA; pepsin A [EC:3.4.23.1] +K06004 E3.4.23.18; aspergillopepsin I [EC:3.4.23.18] +K06005 SAP; candidapepsin [EC:3.4.23.24] +K06006 cpxP, spy; periplasmic protein CpxP/Spy +K06007 PFAPG; plasmepsin I [EC:3.4.23.38] +K06008 PFAPD; plasmepsin II [EC:3.4.23.39] +K06009 YPS1_2; yapsin 1/2 [EC:3.4.23.41] +K06011 boNT; botulinum neurotoxin [EC:3.4.24.69] +K06012 gpr; spore protease [EC:3.4.24.78] +K06013 STE24; STE24 endopeptidase [EC:3.4.24.84] +K06015 E3.5.1.81; N-acyl-D-amino-acid deacylase [EC:3.5.1.81] +K06016 pydC; beta-ureidopropionase / N-carbamoyl-L-amino-acid hydrolase [EC:3.5.1.6 3.5.1.87] +K06018 PPN1; endopolyphosphatase [EC:3.6.1.10] +K06019 ppaX; pyrophosphatase PpaX [EC:3.6.1.1] +K06020 ettA; energy-dependent translational throttle protein EttA +K06023 hprK, ptsK; HPr kinase/phosphorylase [EC:2.7.11.- 2.7.4.-] +K06024 scpB; segregation and condensation protein B +K06027 NSF, SEC18; vesicle-fusing ATPase [EC:3.6.4.6] +K06030 MFN2, FZO1; mitofusin 2 [EC:3.6.5.-] +K06033 E4.1.1.76; arylmalonate decarboxylase [EC:4.1.1.76] +K06034 comD; sulfopyruvate decarboxylase subunit alpha [EC:4.1.1.79] +K06035 DDI2_3; cyanamide hydratase [EC:4.2.1.69] +K06037 THNSL2; O-phospho-L-threonine phospho-lyase [EC:4.2.3.-] +K06038 E4.6.1.14; glycosylphosphatidylinositol diacylglycerol-lyase [EC:4.6.1.14] +K06039 ychN; uncharacterized protein involved in oxidation of intracellular sulfur +K06041 kdsD, kpsF; arabinose-5-phosphate isomerase [EC:5.3.1.13] +K06042 cobH-cbiC; precorrin-8X/cobalt-precorrin-8 methylmutase [EC:5.4.99.61 5.4.99.60] +K06044 treY, glgY; (1->4)-alpha-D-glucan 1-alpha-D-glucosylmutase [EC:5.4.99.15] +K06045 shc; squalene-hopene/tetraprenyl-beta-curcumene cyclase [EC:5.4.99.17 4.2.1.129] +K06046 luxE; long-chain-fatty-acid---luciferin-component ligase [EC:6.2.1.19] +K06047 TTL; tubulin---tyrosine ligase [EC:6.3.2.25] +K06048 gshA, ybdK; glutamate---cysteine ligase / carboxylate-amine ligase [EC:6.3.2.2 6.3.-.-] +K06049 bchO; magnesium chelatase accessory protein +K06051 DLL; delta +K06052 JAG1, CD339; jagged-1 +K06053 RBPSUH, RBPJK; recombining binding protein suppressor of hairless +K06054 HES1; hairy and enhancer of split 1 +K06055 HES5; hairy and enhancer of split 5 +K06056 PTCRA; pre T-cell antigen receptor alpha +K06057 NUMBL; numb +K06058 DTX; deltex [EC:2.3.2.27] +K06059 ADAM17, TACE, CD156b; disintegrin and metalloproteinase domain-containing protein 17 [EC:3.4.24.86] +K06061 MAML; mastermind +K06062 PCAF, KAT2, GCN5; histone acetyltransferase [EC:2.3.1.48] +K06063 SNW1, SKIIP, SKIP; SNW domain-containing protein 1 +K06064 HAIRLESS; hairless +K06065 NCOR2, SMRT; nuclear receptor co-repressor 2 +K06066 CIR; CBF1 interacting corepressor +K06067 HDAC1_2; histone deacetylase 1/2 [EC:3.5.1.98] +K06068 PRKCD; novel protein kinase C delta type [EC:2.7.11.13] +K06069 PRKCI; atypical protein kinase C iota type [EC:2.7.11.13] +K06070 PKD; protein kinase D [EC:2.7.11.13] +K06071 PKN1; serine/threonine-protein kinase N1 [EC:2.7.11.13] +K06072 DOHH; deoxyhypusine monooxygenase [EC:1.14.99.29] +K06073 btuC; vitamin B12 transport system permease protein +K06074 btuD; vitamin B12 transport system ATP-binding protein [EC:7.6.2.8] +K06075 slyA; MarR family transcriptional regulator, transcriptional regulator for hemolysin +K06076 fadL; long-chain fatty acid transport protein +K06077 slyB; outer membrane lipoprotein SlyB +K06078 lpp; murein lipoprotein +K06079 cutF, nlpE; copper homeostasis protein (lipoprotein) +K06080 rcsF; RcsF protein +K06081 NECTIN1, PVRL1, CD111; poliovirus receptor-related protein 1 +K06082 FARP2, FRG; FERM, RhoGEF and pleckstrin domain protein 2 +K06083 WASF3; WAS protein family, member 3 +K06084 LMO7, FBXO20; F-box protein 20 +K06085 SSX2IP, ADIP; synovial sarcoma, X breakpoint 2 interacting protein +K06086 SORBS1, SH3D5, PONSIN, CAP; sorbin and SH3 domain containing protein 1 +K06087 CLDN; claudin +K06088 OCLN; occludin +K06089 F11R, JAM1, CD321; junctional adhesion molecule 1 +K06090 CRB3; crumbs 3 +K06091 MPP5, PALS1; MAGUK p55 subfamily member 5 +K06092 INADL, PATJ; InaD-like protein +K06093 PARD6; partitioning defective protein 6 +K06094 LLGL; lethal(2) giant larvae protein +K06095 MPDZ, MUPP1, Patj; multiple PDZ domain protein +K06096 VAPA; vesicle-associated membrane protein-associated protein A +K06097 TJP3, ZO3; tight junction protein 3 +K06098 TJP2, ZO2; tight junction protein 2 +K06099 CSDA, ZONAB; cold shock domain protein A +K06100 SYMPK; symplekin +K06101 ASH1L; [histone H3]-lysine4 N-trimethyltransferase ASH1L [EC:2.1.1.354] +K06102 CGN; cingulin +K06103 CASK; calcium/calmodulin-dependent serine protein kinase [EC:2.7.11.1] +K06104 AMOTL; angiomotin like +K06105 TJP4, PILT; tight junction protein 4 +K06106 CTTN, EMS1; cortactin +K06107 EPB41; erythrocyte membrane protein band 4.1 +K06108 RAB3B; Ras-related protein Rab-3B +K06109 RAB13; Ras-related protein Rab-13 +K06110 EXOC3, SEC6; exocyst complex component 3 +K06111 EXOC4, SEC8; exocyst complex component 4 +K06112 MAGI3; membrane-associated guanylate kinase-related +K06113 abnA; arabinan endo-1,5-alpha-L-arabinosidase [EC:3.2.1.99] +K06114 SPTAN; spectrin alpha, non-erythrocytic (fodrin) +K06115 SPTBN1_4_5; spectrin beta, non-erythrocytic 1/4/5 +K06116 GPP; glycerol-1-phosphatase [EC:3.1.3.21] +K06117 E3.1.3.21; glycerol-1-phosphatase [EC:3.1.3.21] +K06118 SQD1, sqdB; UDP-sulfoquinovose synthase [EC:3.13.1.1] +K06119 SQD2; sulfoquinovosyltransferase [EC:2.4.1.-] +K06120 dhaB; glycerol dehydratase large subunit [EC:4.2.1.30] +K06121 dhbC; glycerol dehydratase medium subunit [EC:4.2.1.30] +K06122 dhbE; glycerol dehydratase small subunit [EC:4.2.1.30] +K06123 AYR1; 1-acylglycerone phosphate reductase [EC:1.1.1.101] +K06124 PHOSPHO1; phosphoethanolamine/phosphocholine phosphatase [EC:3.1.3.75] +K06125 COQ2; 4-hydroxybenzoate polyprenyltransferase [EC:2.5.1.39] +K06126 COQ6; ubiquinone biosynthesis monooxygenase Coq6 [EC:1.14.13.-] +K06127 COQ5; 2-methoxy-6-polyprenyl-1,4-benzoquinol methylase [EC:2.1.1.201] +K06128 LYPLA1; lysophospholipase I [EC:3.1.1.5] +K06129 LYPLA3; lysophospholipase III [EC:3.1.1.5] +K06130 LYPLA2; lysophospholipase II [EC:3.1.1.5] +K06131 clsA_B; cardiolipin synthase A/B [EC:2.7.8.-] +K06132 clsC; cardiolipin synthase C [EC:2.7.8.-] +K06133 LYS5, acpT; 4'-phosphopantetheinyl transferase [EC:2.7.8.-] +K06134 COQ7; 3-demethoxyubiquinol 3-hydroxylase [EC:1.14.99.60] +K06135 pqqA; pyrroloquinoline quinone biosynthesis protein A +K06136 pqqB; pyrroloquinoline quinone biosynthesis protein B +K06137 pqqC; pyrroloquinoline-quinone synthase [EC:1.3.3.11] +K06138 pqqD; pyrroloquinoline quinone biosynthesis protein D +K06139 pqqE; PqqA peptide cyclase [EC:1.21.98.4] +K06140 rnk; regulator of nucleoside diphosphate kinase +K06141 tsgA; MFS transporter, TsgA protein +K06142 hlpA, ompH; outer membrane protein +K06143 creD; inner membrane protein +K06144 uspB; universal stress protein B +K06145 gntR; LacI family transcriptional regulator, gluconate utilization system Gnt-I transcriptional repressor +K06146 idnR, gntH; LacI family transcriptional regulator, gluconate utilization system Gnt-II transcriptional activator +K06147 ABCB-BAC; ATP-binding cassette, subfamily B, bacterial +K06148 ABCC-BAC; ATP-binding cassette, subfamily C, bacterial +K06149 uspA; universal stress protein A +K06151 E1.1.99.3A; gluconate 2-dehydrogenase alpha chain [EC:1.1.99.3] +K06152 E1.1.99.3G; gluconate 2-dehydrogenase gamma chain [EC:1.1.99.3] +K06153 bacA; undecaprenyl-diphosphatase [EC:3.6.1.27] +K06154 lysM; Lrp/AsnC family transcriptional regulator, involved in the regulation of lysine biosynthesis +K06155 gntT; Gnt-I system high-affinity gluconate transporter +K06156 gntU; Gnt-I system low-affinity gluconate transporter +K06157 idnT; Gnt-II system L-idonate transporter +K06158 ABCF3; ATP-binding cassette, subfamily F, member 3 +K06159 yojI; multidrug/microcin transport system ATP-binding/permease protein +K06160 pvdE; putative pyoverdin transport system ATP-binding/permease protein +K06161 syrD; putative syringomycin transport system ATP-binding/permease protein +K06162 phnM; alpha-D-ribose 1-methylphosphonate 5-triphosphate diphosphatase [EC:3.6.1.63] +K06163 phnJ; alpha-D-ribose 1-methylphosphonate 5-phosphate C-P lyase [EC:4.7.1.1] +K06164 phnI; alpha-D-ribose 1-methylphosphonate 5-triphosphate synthase subunit PhnI [EC:2.7.8.37] +K06165 phnH; alpha-D-ribose 1-methylphosphonate 5-triphosphate synthase subunit PhnH [EC:2.7.8.37] +K06166 phnG; alpha-D-ribose 1-methylphosphonate 5-triphosphate synthase subunit PhnG [EC:2.7.8.37] +K06167 phnP; phosphoribosyl 1,2-cyclic phosphate phosphodiesterase [EC:3.1.4.55] +K06168 miaB; tRNA-2-methylthio-N6-dimethylallyladenosine synthase [EC:2.8.4.3] +K06169 miaE; tRNA 2-(methylsulfanyl)-N6-isopentenyladenosine37 hydroxylase [EC:1.14.99.69] +K06170 PSENEN, PEN2; presenilin enhancer 2 +K06171 NCSTN; nicastrin +K06172 APH1; gamma-secretase subunit APH-1 +K06173 truA, PUS1; tRNA pseudouridine38-40 synthase [EC:5.4.99.12] +K06174 ABCE1, Rli1; ATP-binding cassette, sub-family E, member 1 +K06175 truC; tRNA pseudouridine65 synthase [EC:5.4.99.26] +K06176 truD, PUS7; tRNA pseudouridine13 synthase [EC:5.4.99.27] +K06177 rluA; tRNA pseudouridine32 synthase / 23S rRNA pseudouridine746 synthase [EC:5.4.99.28 5.4.99.29] +K06178 rluB; 23S rRNA pseudouridine2605 synthase [EC:5.4.99.22] +K06179 rluC; 23S rRNA pseudouridine955/2504/2580 synthase [EC:5.4.99.24] +K06180 rluD; 23S rRNA pseudouridine1911/1915/1917 synthase [EC:5.4.99.23] +K06181 rluE; 23S rRNA pseudouridine2457 synthase [EC:5.4.99.20] +K06182 rluF; 23S rRNA pseudouridine2604 synthase [EC:5.4.99.21] +K06183 rsuA; 16S rRNA pseudouridine516 synthase [EC:5.4.99.19] +K06184 ABCF1; ATP-binding cassette, subfamily F, member 1 +K06185 ABCF2; ATP-binding cassette, subfamily F, member 2 +K06186 bamE, smpA; outer membrane protein assembly factor BamE +K06187 recR; recombination protein RecR +K06188 aqpZ; aquaporin Z +K06189 corC, tlyC; hemolysin (HlyC) family protein +K06190 ispZ; intracellular septation protein +K06191 nrdH; glutaredoxin-like protein NrdH +K06192 pqiB; paraquat-inducible protein B +K06193 phnA; protein PhnA +K06194 nlpD; lipoprotein NlpD +K06195 apaG; ApaG protein +K06196 ccdA; cytochrome c-type biogenesis protein +K06197 chaB; cation transport regulator +K06198 coiA; competence protein CoiA +K06199 crcB, FEX; fluoride exporter +K06200 cstA; carbon starvation protein +K06201 cutC; copper homeostasis protein +K06202 cyaY; iron-sulfur cluster assembly protein CyaY +K06203 cysZ; CysZ protein +K06204 dksA; RNA polymerase-binding transcription factor +K06205 mioC; MioC protein +K06206 sfsA; sugar fermentation stimulation protein A +K06207 typA, bipA; GTP-binding protein +K06208 aroH; chorismate mutase [EC:5.4.99.5] +K06209 pheB; chorismate mutase [EC:5.4.99.5] +K06210 NMNAT; nicotinamide mononucleotide adenylyltransferase [EC:2.7.7.1 2.7.7.18] +K06211 nadR; HTH-type transcriptional regulator, transcriptional repressor of NAD biosynthesis genes [EC:2.7.7.1 2.7.1.22] +K06212 focA; formate transporter +K06213 mgtE; magnesium transporter +K06214 csgG; curli production assembly/transport component CsgG +K06215 pdxS, pdx1; pyridoxal 5'-phosphate synthase pdxS subunit [EC:4.3.3.6] +K06216 rbsU; putative ribose uptake protein +K06217 phoH, phoL; phosphate starvation-inducible protein PhoH and related proteins +K06218 relE, stbE; mRNA interferase RelE/StbE +K06219 smtA, cmoM; tRNA 5-carboxymethoxyuridine methyltransferase [EC:2.1.1.-] +K06221 dkgA; 2,5-diketo-D-gluconate reductase A [EC:1.1.1.346] +K06222 dkgB; 2,5-diketo-D-gluconate reductase B [EC:1.1.1.346] +K06223 dam; DNA adenine methylase [EC:2.1.1.72] +K06224 HH; hedgehog +K06225 PTCH1; patched 1 +K06226 SMO; smoothened +K06227 COS2; costal 2 +K06228 FU; fused [EC:2.7.11.1] +K06229 SUFU; suppressor of fused +K06230 GLI3; zinc finger protein GLI3 +K06231 HHIP; hedgehog interacting protein +K06232 GAS1; growth arrest-specific 1 +K06233 LRP2; low density lipoprotein-related protein 2 +K06234 RAB23; Ras-related protein Rab-23 +K06235 ZIC2; zinc finger protein ZIC 2 +K06236 COL1A; collagen type I alpha +K06237 COL4A; collagen type IV alpha +K06238 COL6A; collagen type VI alpha +K06240 LAMA3_5; laminin, alpha 3/5 +K06241 LAMA4; laminin, alpha 4 +K06243 LAMB2; laminin, beta 2 +K06244 LAMB3; laminin, beta 3 +K06245 LAMB4; laminin, beta 4 +K06246 LAMC2; laminin, gamma 2 +K06247 LAMC3; laminin, gamma 3 +K06248 CHAD; chondroadherin +K06249 RELN; reelin [EC:3.4.21.-] +K06250 SPP1, BNSP, OPN; secreted phosphoprotein 1 +K06251 VTN; vitronectin +K06252 TN; tenascin +K06253 IBSP; integrin binding sialoprotein +K06254 AGRN; agrin +K06255 HSPG2; basement membrane-specific heparan sulfate proteoglycan core protein +K06256 CD44; CD44 antigen +K06257 SDC1, CD138; syndecan 1 +K06258 SV2; MFS transporter, VNT family, synaptic vesicle glycoprotein 2 +K06259 CD36; CD36 antigen +K06260 GP5, CD42d; platelet glycoprotein V +K06261 GP1BA, CD42b; platelet glycoprotein Ib alpha chain +K06262 GP1BB, CD42c; platelet glycoprotein Ib beta chain +K06263 GP9, CD42a; platelet glycoprotein IX +K06264 GP6; platelet glycoprotein VI +K06265 DAG1; dystroglycan 1 +K06266 CD47; CD47 antigen (Rh-related antigen, integrin-associated signal transducer) +K06267 HMMR, RHAMM, CD168; hyaluronan-mediated motility receptor +K06268 PPP3R, CNB; serine/threonine-protein phosphatase 2B regulatory subunit +K06269 PPP1C; serine/threonine-protein phosphatase PP1 catalytic subunit [EC:3.1.3.16] +K06270 PPP1R12A, MYPT1; protein phosphatase 1 regulatory subunit 12A +K06271 TLN; talin +K06272 ILK; integrin-linked kinase [EC:2.7.11.1] +K06273 ZYX; zyxin +K06274 VASP; vasodilator-stimulated phosphoprotein +K06275 PARV; parvin +K06276 PDPK1; 3-phosphoinositide dependent protein kinase-1 [EC:2.7.11.1] +K06277 RAPGEF1, GRF2; Rap guanine nucleotide exchange factor 1 +K06278 CAV1; caveolin 1 +K06279 SHC1; SHC-transforming protein 1 +K06281 hyaB, hybC; hydrogenase large subunit [EC:1.12.99.6] +K06282 hyaA, hybO; hydrogenase small subunit [EC:1.12.99.6] +K06283 spoIIID; putative DeoR family transcriptional regulator, stage III sporulation protein D +K06284 abrB, abh; AbrB family transcriptional regulator, transcriptional pleiotropic regulator of transition state genes +K06285 mtrB; transcription attenuation protein (tryptophan RNA-binding attenuator protein) +K06286 ezrA; septation ring formation regulator +K06287 yhdE; nucleoside triphosphate pyrophosphatase [EC:3.6.1.-] +K06288 gerAA; spore germination protein AA +K06289 gerAB; spore germination protein AB +K06290 gerAC; spore germination protein AC +K06291 gerBA; spore germination protein BA +K06292 gerBB; spore germination protein BB +K06293 gerBC; spore germination protein BC +K06294 gerD; spore germination protein D +K06295 gerKA; spore germination protein KA +K06296 gerKB; spore germination protein KB +K06297 gerKC; spore germination protein KC +K06298 gerM; germination protein M +K06299 gerPA; spore germination protein PA +K06300 gerPB; spore germination protein PB +K06301 gerPC; spore germination protein PC +K06302 gerPD; spore germination protein PD +K06303 gerPE; spore germination protein PE +K06304 gerPF; spore germination protein PF +K06305 gerQ; spore germination protein Q +K06306 sleL; cortical fragment-lytic enzyme [EC:3.2.1.-] +K06307 yfkQ; spore germination protein +K06308 yfkR; spore germination protein +K06309 yfkT; spore germination protein +K06310 yndD; spore germination protein +K06311 yndE; spore germination protein +K06312 yndF; spore germination protein +K06313 ypeB; spore germination protein +K06314 rsfA; prespore-specific regulator +K06315 splA; transcriptional regulator of the spore photoproduct lyase operon +K06316 RFT1; oligosaccharide translocation protein RFT1 +K06317 bofA; inhibitor of the pro-sigma K processing machinery +K06318 bofC; forespore regulator of the sigma-K checkpoint +K06319 cgeA; spore maturation protein CgeA +K06320 cgeB; spore maturation protein CgeB +K06321 cgeC; spore maturation protein CgeC +K06322 cgeD; spore maturation protein CgeD +K06323 cgeE; spore maturation protein CgeE +K06324 cotA; spore coat protein A, manganese oxidase [EC:1.16.3.3] +K06325 cotB; spore coat protein B +K06326 cotC; spore coat protein C +K06327 cotD; spore coat protein D +K06328 cotE; spore coat protein E +K06329 cotF; spore coat protein F +K06330 cotH; spore coat protein H +K06331 cotI; spore coat protein I +K06332 cotJA; spore coat protein JA +K06333 cotJB; spore coat protein JB +K06334 cotJC; spore coat protein JC +K06335 cotM; spore coat protein M +K06336 tasA, cotN; spore coat-associated protein N +K06337 cotS; spore coat-associated protein S +K06338 cotSA; spore coat protein SA +K06339 cotT; spore coat protein T +K06340 cotV; spore coat protein V +K06341 cotW; spore coat protein W +K06342 cotX; spore coat protein X +K06343 cotY_Z; CotY/CotZ family spore coat protein +K06345 coxA; spore cortex protein +K06346 jag; spoIIIJ-associated protein +K06347 kapB; kinase-associated protein B +K06348 kapD; sporulation inhibitor KapD +K06349 kbaA; KinB signaling pathway activation protein +K06350 kipA; antagonist of KipI +K06351 kipI; inhibitor of KinA +K06352 phrA; phosphatase RapA inhibitor +K06353 phrC; phosphatase RapC regulator +K06354 phrE; phosphatase RapE regulator +K06355 phrF; phosphatase RapF regulator +K06356 phrG; phosphatase RapG regulator +K06357 phrI; phosphatase RapI regulator +K06358 phrK; phosphatase RapK regulator +K06359 rapA, spo0L; response regulator aspartate phosphatase A (stage 0 sporulation protein L) [EC:3.1.-.-] +K06360 rapB; response regulator aspartate phosphatase B [EC:3.1.-.-] +K06361 rapC; response regulator aspartate phosphatase C [EC:3.1.-.-] +K06362 rapD; response regulator aspartate phosphatase D [EC:3.1.-.-] +K06363 rapE; response regulator aspartate phosphatase E [EC:3.1.-.-] +K06364 rapF; response regulator aspartate phosphatase F [EC:3.1.-.-] +K06365 rapG; response regulator aspartate phosphatase G [EC:3.1.-.-] +K06366 rapH; response regulator aspartate phosphatase H [EC:3.1.-.-] +K06367 rapI; response regulator aspartate phosphatase I [EC:3.1.-.-] +K06368 rapJ; response regulator aspartate phosphatase J [EC:3.1.-.-] +K06369 rapK; response regulator aspartate phosphatase K [EC:3.1.-.-] +K06370 safA; morphogenetic protein associated with SpoVID +K06371 sda; developmental checkpoint coupling sporulation initiation to replication initiation +K06372 sinI; antagonist of SinR +K06373 spmA; spore maturation protein A +K06374 spmB; spore maturation protein B +K06375 spo0B; stage 0 sporulation protein B (sporulation initiation phosphotransferase) [EC:2.7.-.-] +K06376 spo0E; stage 0 sporulation regulatory protein +K06377 spo0M; sporulation-control protein +K06378 spoIIAA; stage II sporulation protein AA (anti-sigma F factor antagonist) +K06379 spoIIAB; stage II sporulation protein AB (anti-sigma F factor) [EC:2.7.11.1] +K06380 spoIIB; stage II sporulation protein B +K06381 spoIID; stage II sporulation protein D (peptidoglycan lytic transglycosylase) [EC:4.2.2.29] +K06382 spoIIE; stage II sporulation protein E [EC:3.1.3.16] +K06383 spoIIGA; stage II sporulation protein GA (sporulation sigma-E factor processing peptidase) [EC:3.4.23.-] +K06384 spoIIM; stage II sporulation protein M +K06385 spoIIP; stage II sporulation protein P +K06386 spoIIQ; stage II sporulation protein Q +K06387 spoIIR; stage II sporulation protein R +K06388 spoIISA; stage II sporulation protein SA +K06389 spoIISB; stage II sporulation protein SB +K06390 spoIIIAA; stage III sporulation protein AA +K06391 spoIIIAB; stage III sporulation protein AB +K06392 spoIIIAC; stage III sporulation protein AC +K06393 spoIIIAD; stage III sporulation protein AD +K06394 spoIIIAE; stage III sporulation protein AE +K06395 spoIIIAF; stage III sporulation protein AF +K06396 spoIIIAG; stage III sporulation protein AG +K06397 spoIIIAH; stage III sporulation protein AH +K06398 spoIVA; stage IV sporulation protein A +K06399 spoIVB; stage IV sporulation protein B [EC:3.4.21.116] +K06400 spoIVCA; site-specific DNA recombinase +K06401 spoIVFA; stage IV sporulation protein FA +K06402 spoIVFB; stage IV sporulation protein FB [EC:3.4.24.-] +K06403 spoVAA; stage V sporulation protein AA +K06404 spoVAB; stage V sporulation protein AB +K06405 spoVAC; stage V sporulation protein AC +K06406 spoVAD; stage V sporulation protein AD +K06407 spoVAE; stage V sporulation protein AE +K06408 spoVAF; stage V sporulation protein AF +K06409 spoVB; stage V sporulation protein B +K06410 spoVFA; dipicolinate synthase subunit A +K06411 spoVFB; dipicolinate synthase subunit B +K06412 spoVG; stage V sporulation protein G +K06413 spoVK; stage V sporulation protein K +K06414 spoVM; stage V sporulation protein M +K06415 spoVR; stage V sporulation protein R +K06416 spoVS; stage V sporulation protein S +K06417 spoVID; stage VI sporulation protein D +K06418 SASP-A, sspA; small acid-soluble spore protein A (major alpha-type SASP) +K06419 SASP-B, sspB; small acid-soluble spore protein B (major beta-type SASP) +K06420 sspC; small acid-soluble spore protein C (minor alpha/beta-type SASP) +K06421 sspD; small acid-soluble spore protein D (minor alpha/beta-type SASP) +K06422 sspE; small acid-soluble spore protein E (minor gamma-type SASP) +K06423 sspF; small acid-soluble spore protein F (minor alpha/beta-type SASP) +K06424 sspG; small acid-soluble spore protein G (minor) +K06425 sspH; small acid-soluble spore protein H (minor) +K06426 sspI; small acid-soluble spore protein I (minor) +K06427 sspJ; small acid-soluble spore protein J (minor) +K06428 sspK; small acid-soluble spore protein K (minor) +K06429 sspL; small acid-soluble spore protein L (minor) +K06430 sspM; small acid-soluble spore protein M (minor) +K06431 sspN; small acid-soluble spore protein N (minor) +K06432 sspO, cotK; small acid-soluble spore protein O (minor) +K06433 sspP, cotL; small acid-soluble spore protein P (minor) +K06434 tlp; small acid-soluble spore protein (thioredoxin-like protein) +K06435 usd; required for translation of spoIIID +K06436 yabG; spore coat assemly protein +K06437 yknT; sigma-E controlled sporulation protein +K06438 yqfD; similar to stage IV sporulation protein +K06439 yraD; similar to spore coat protein +K06440 yraG; similar to spore coat protein +K06441 E1.12.7.2G; ferredoxin hydrogenase gamma subunit [EC:1.12.7.2] +K06442 tlyA; 23S rRNA (cytidine1920-2'-O)/16S rRNA (cytidine1409-2'-O)-methyltransferase [EC:2.1.1.226 2.1.1.227] +K06443 lcyB, crtL1, crtY; lycopene beta-cyclase [EC:5.5.1.19] +K06444 lcyE, crtL2; lycopene epsilon-cyclase [EC:5.5.1.18] +K06445 fadE; acyl-CoA dehydrogenase [EC:1.3.99.-] +K06446 DCAA; acyl-CoA dehydrogenase [EC:1.3.99.-] +K06447 astD; succinylglutamic semialdehyde dehydrogenase [EC:1.2.1.71] +K06448 CD1; T-cell surface glycoprotein CD1 +K06449 CD2; T-cell surface glycoprotein CD2 +K06450 CD3D; T-cell surface glycoprotein CD3 delta chain +K06451 CD3E; T-cell surface glycoprotein CD3 epsilon chain +K06452 CD3G; T-cell surface glycoprotein CD3 gamma chain +K06453 CD3Z, CD247; CD3Z antigen, zeta polypeptide +K06454 CD4; T-cell surface glycoprotein CD4 +K06455 CD5; T-cell surface glycoprotein CD5 +K06456 CD6; T-cell surface glycoprotein CD6 +K06457 CD7; T-cell surface glycoprotein CD7 +K06458 CD8A; T-cell surface glycoprotein CD8 alpha chain +K06459 CD8B; T-cell surface glycoprotein CD8 beta chain +K06460 CD9, TSPAN29; CD9 antigen +K06461 ITGAM, CD11b; integrin alpha M +K06462 ITGAX, CD11c; integrin alpha X +K06463 FCGR3, CD16; low affinity immunoglobulin gamma Fc receptor III +K06464 ITGB2, CD18; integrin beta 2 +K06465 CD19; B-lymphocyte antigen CD19 +K06466 MS4A1, CD20; B-lymphocyte antigen CD20 +K06467 CD22, SIGLEC2; CD22 antigen +K06468 FCER2, CD23; low affinity immunoglobulin epsilon Fc receptor +K06469 CD24; CD24 antigen +K06470 CD28; CD28 antigen +K06471 PECAM1, CD31; platelet/endothelial cell adhesion molecule +K06472 FCGR2A, CD32; low affinity immunoglobulin gamma Fc receptor II-a +K06473 CD33, SIGLEC3; CD33 antigen +K06474 CD34; CD34 antigen +K06475 CD37, TSPAN26; CD37 antigen +K06476 ITGA2B, CD41; integrin alpha 2B +K06477 SPN, CD43; sialophorin +K06478 PTPRC, CD45; receptor-type tyrosine-protein phosphatase C [EC:3.1.3.48] +K06479 CD48, BCM1; CD48 antigen +K06480 ITGA1, CD49a; integrin alpha 1 +K06481 ITGA2, CD49b; integrin alpha 2 +K06482 ITGA3, CD49c; integrin alpha 3 +K06483 ITGA4, CD49d; integrin alpha 4 +K06484 ITGA5, CD49e; integrin alpha 5 +K06485 ITGA6, CD49f; integrin alpha 6 +K06486 ICAM3, CD50; intercellular adhesion molecule 3 +K06487 ITGAV, CD51; integrin alpha V +K06488 CD52; CDW52 antigen +K06489 CD53, MOX44, TSPAN25; CD53 antigen +K06490 ICAM1, CD54; intercellular adhesion molecule 1 +K06491 NCAM, CD56; neural cell adhesion molecule +K06492 CD58, LFA3; CD58 antigen +K06493 ITGB3, CD61; integrin beta 3 +K06494 SELE, CD62E; selectin, endothelial cell +K06495 SELL, CD62L; selectin, lymphocyte +K06496 SELP, CD62P; selectin, platelet +K06497 CD63, MLA1, TSPAN30; CD63 antigen +K06498 FCGR1A, CD64; high affinity immunoglobulin gamma Fc receptor I +K06499 CEACAM, CD66; carcinoembryonic antigen-related cell adhesion molecule +K06500 PSG, CD66f; pregnancy specific beta-1-glycoprotein +K06501 CD68; CD68 antigen +K06502 CD69; CD69 antigen +K06503 TFRC, CD71; transferrin receptor +K06504 CD72; CD72 antigen +K06505 CD74, DHLAG; CD74 antigen +K06506 CD79A, IGA; CD79A antigen +K06507 CD79B, IGB; CD79B antigen +K06508 CD81, TAPA1, TSPAN28; CD81 antigen +K06509 KAI1, CD82, TSPAN27; CD82 antigen +K06510 CD83; CD83 antigen +K06511 CD84; CD84 antigen +K06512 LILR, CD85; leukocyte immunoglobulin-like receptor +K06513 FCAR, CD89; CD89 antigen +K06514 THY1, CD90; Thy-1 cell surface antigen +K06515 SLC44A1, CD92; solute carrier family 44 (choline transporter-like protein), member 1 +K06516 KLRD1, CD94; killer cell lectin-like receptor subfamily D member 1 +K06517 CD96; CD96 antigen +K06518 cidA; holin-like protein +K06519 SLC3A2, MDU1, CD98; solute carrier family 3, member 2 +K06520 CD99, MIC2; CD99 antigen +K06521 SEMA4, CD100; semaphorin 4 +K06522 IGSF2_3, CD101; immunoglobulin superfamily, member 2/3 +K06523 ICAM2, CD102; intercellular adhesion molecule 2 +K06524 ITGAE, CD103; integrin alpha E +K06525 ITGB4, CD104; integrin beta 4 +K06526 ENG, CD105; endoglin +K06527 VCAM1, CD106; vascular cell adhesion molecule 1 +K06528 LAMP1_2, CD107; lysosomal-associated membrane protein 1/2 +K06529 SEMA7, CD108; semaphorin 7 +K06530 CD109; CD109 antigen +K06531 NECTIN2, PVRL2, CD112; poliovirus receptor-related protein 2 +K06532 PROM1, CD133; prominin 1 +K06533 CDH5, CD144; cadherin 5, type 2, VE-cadherin +K06534 MCAM, CD146; melanoma cell adhesion molecule +K06535 BSG, CD147; basigin +K06536 SLAMF1, CD150; signaling lymphocytic activation molecule family member 1 +K06537 CD151, TSPAN24; CD151 antigen +K06538 CTLA4, CD152; cytotoxic T-lymphocyte-associated protein 4 +K06539 PVR, NECL5, CD155; poliovirus receptor +K06540 ADAM8, CD156a; disintegrin and metalloproteinase domain-containing protein 8 [EC:3.4.24.-] +K06541 KLRC1, NKG2A; killer cell lectin-like receptor subfamily C1 +K06542 CD160; CD160 antigen +K06543 KLRB, CD161; killer cell lectin-like receptor subfamily B +K06544 SELPLG, CD162; selectin P ligand +K06545 CD163; CD163 antigen +K06546 CD164, MGC24; CD164 antigen +K06547 ALCAM, CD166; activated leukocyte cell adhesion molecule +K06548 SN, SIGLEC1, CD169; sialoadhesin +K06549 SIGLEC5, CD170; sialic acid binding Ig-like lectin 5 +K06550 L1CAM, CD171; L1 cell adhesion molecule +K06551 SIRPA_B1_G, CD172; signal-regulatory protein alpha/beta1/gamma +K06552 CD177, PRV1; CD177 antigen +K06553 VPREB, CD179a; pre-B lymphocyte gene +K06554 IGLL1, IGLL, CD179b; immunoglobulin lambda-like polypeptide 1 +K06555 CD180; CD180 antigen +K06556 CD200; CD200 antigen +K06557 PROCR, CD201; protein C receptor, endothelial (EPCR) +K06558 MSR1, CD204; macrophage scavenger receptor 1 +K06559 LY75, CD205; lymphocyte antigen 75 +K06560 MRC, CD206, CD280; mannose receptor, C type +K06561 CD207; CD207 antigen +K06562 LAMP3, CD208; lysosomal-associated membrane protein 3 +K06563 CLEC4L_M, DC-SIGN, CD209, CD299; C-type lectin domain family 4 member L/M +K06564 IGF2R, CD222; insulin-like growth factor 2 receptor +K06565 LAG3, CD223; lymphocyte-activation gene 3 protein +K06566 IFITM; interferon induced transmembrane protein +K06567 CD226, DNAM1; CD226 antigen +K06568 MUC1, CD227; mucin-1 +K06569 MFI2, CD228; melanoma-associated antigen p97 +K06570 LY9, CD229; lymphocyte antigen 9 +K06571 TSPAN7, TM4SF2, MXS1, CD231; tetraspanin-7 +K06572 PLXNC, CD232; plexin C +K06573 SLC4A1, AE1, CD233; solute carrier family 4 (anion exchanger), member 1 +K06574 ACKR1, DARC, CD234; atypical chemokine receptor 1 +K06575 GYPA, CD235a; glycophorin A +K06576 GYPC, CD236; glycophorin C +K06577 KEL, CD238; Kell blood group glycoprotein [EC:3.4.24.-] +K06578 LU, CD239; Lutheran blood group glycoprotein +K06579 RH, CD240; Rhesus blood group glycoprotein +K06580 SLC42A, RHAG, RHBG, RHCG, CD241; ammonium transporter Rh +K06581 ICAM4, CD242; intercellular adhesion molecule 4 +K06582 CD244; natural killer cell receptor 2B4 +K06583 ITGA7; integrin alpha 7 +K06584 ITGA8; integrin alpha 8 +K06585 ITGA9; integrin alpha 9 +K06586 ITGA10; integrin alpha 10 +K06587 ITGA11; integrin alpha 11 +K06588 ITGB5; integrin beta 5 +K06589 ITGB6; integrin beta 6 +K06590 ITGB7; integrin beta 7 +K06591 ITGB8; integrin beta 8 +K06592 NECTIN3, PVRL3, CD113; poliovirus receptor-related protein 3 +K06593 NECTIN4, PVRL4; poliovirus receptor-related 4 +K06594 ITGAD, CD11d; integrin alpha D +K06595 hemAT; heam-based aerotactic trancducer +K06596 chpA; chemosensory pili system protein ChpA (sensor histidine kinase/response regulator) +K06597 chpB; chemosensory pili system protein ChpB (putative protein-glutamate methylesterase) +K06598 chpC; chemosensory pili system protein ChpC +K06599 chpD; AraC family transcriptional regulator, chemosensory pili system protein ChpD +K06600 chpE; chemosensory pili system protein ChpE +K06601 flbT; flagellar biosynthesis repressor protein FlbT +K06602 flaF; flagellar biosynthesis activator protein FlaF +K06603 flaG; flagellar protein FlaG +K06604 flaI; flagellar protein FlaI +K06605 iolH; myo-inositol catabolism protein IolH +K06606 iolI; 2-keto-myo-inositol isomerase [EC:5.3.99.11] +K06607 iolS; myo-inositol catabolism protein IolS [EC:1.1.1.-] +K06608 iolR; DeoR family transcriptional regulator, myo-inositol catabolism operon repressor +K06609 iolT; MFS transporter, SP family, major inositol transporter +K06610 iolF; MFS transporter, SP family, inositol transporter +K06611 E2.4.1.67; stachyose synthetase [EC:2.4.1.67] +K06612 ST8SIA2; alpha-N-acetyl-neuraminate alpha-2,8-sialyltransferase (sialyltransferase 8B) [EC:2.4.3.-] +K06613 ST8SIA3; alpha-N-acetyl-neuraminate alpha-2,8-sialyltransferase (sialyltransferase 8C) [EC:2.4.3.-] +K06614 ST8SIA4; alpha-N-acetyl-neuraminate alpha-2,8-sialyltransferase (sialyltransferase 8D) [EC:2.4.3.-] +K06615 ST8SIA6; alpha-N-acetyl-neuraminate alpha-2,8-sialyltransferase (sialyltransferase 8F) [EC:2.4.3.-] +K06616 ST6GALNAC2; alpha-N-acetylgalactosaminide alpha-2,6-sialyltransferase (sialyltransferase 7B) [EC:2.4.3.3] +K06617 E2.4.1.82; raffinose synthase [EC:2.4.1.82] +K06618 RB1; retinoblastoma-associated protein +K06619 ABL1; abelson tyrosine-protein kinase 1 [EC:2.7.10.2] +K06620 E2F3; transcription factor E2F3 +K06621 CDKN2A, P16, INK4A; cyclin-dependent kinase inhibitor 2A +K06622 CDKN2C, P18, INK4C; cyclin-dependent kinase inhibitor 2C +K06623 CDKN2D, P19, INK4D; cyclin-dependent kinase inhibitor 2D +K06624 CDKN1B, P27, KIP1; cyclin-dependent kinase inhibitor 1B +K06625 CDKN1A, P21, CIP1; cyclin-dependent kinase inhibitor 1A +K06626 CCNE; G1/S-specific cyclin-E1 +K06627 CCNA; cyclin-A +K06628 CDC45; cell division control protein 45 +K06629 DBF4, ASK; protein DBF4 +K06630 YWHAE; 14-3-3 protein epsilon +K06631 PLK1; polo-like kinase 1 [EC:2.7.11.21] +K06632 WEE1; wee1-like protein kinase [EC:2.7.11.1] +K06633 PKMYT; membrane-associated tyrosine- and threonine-specific cdc2-inhibitory kinase [EC:2.7.11.1] +K06634 CCNH; cyclin H +K06635 PTTG; securin +K06636 SMC1; structural maintenance of chromosome 1 +K06637 BUB1B, BUBR1, MAD3L; mitotic checkpoint serine/threonine-protein kinase BUB1 beta [EC:2.7.11.1] +K06639 CDC14; cell division cycle 14 [EC:3.1.3.16 3.1.3.48] +K06640 ATR; serine/threonine-protein kinase ATR [EC:2.7.11.1] +K06641 CHEK2; serine/threonine-protein kinase CHEK2 [EC:2.7.11.1] +K06642 PRKDC; DNA-dependent protein kinase catalytic subunit [EC:2.7.11.1] +K06643 MDM2; E3 ubiquitin-protein ligase Mdm2 [EC:2.3.2.27] +K06644 SFN; stratifin +K06645 CDC25A; M-phase inducer phosphatase 1 [EC:3.1.3.48] +K06646 CLN3; G1/S-specific cyclin CLN3 +K06647 MBP1; transcription factor MBP1 +K06648 SWI6; regulatory protein SWI6 +K06649 SWI4; regulatory protein SWI4 +K06650 CLN2; G1/S-specific cyclin CLN2 +K06651 CLB5_6; S-phase entry cyclin 5/6 +K06652 FAR1; cyclin-dependent kinase inhibitor FAR1 +K06653 PHO81; CDK inhibitor PHO81 +K06654 PHO80; phosphate system cyclin PHO80 +K06655 PHO85; negative regulator of the PHO system [EC:2.7.11.22] +K06656 PCL1; PHO85 cyclin-1 +K06657 PCL2_9; PHO85 cyclin-2/9 +K06658 PHO4; phosphate system positive regulatory protein PHO4 +K06659 CLB3_4; G2/mitotic-specific cyclin 3/4 +K06660 CDC5; cell cycle serine/threonine-protein kinase CDC5/MSD2 [EC:2.7.11.21] +K06661 RAD9; DNA repair protein RAD9 +K06662 HRAD17, RAD24; cell cycle checkpoint protein +K06663 DDC1; DNA damage checkpoint protein +K06664 PEX2, PXMP3; peroxin-2 +K06665 SSN6, CYC8; general transcriptional corepressor CYC8 +K06666 TUP1; general transcriptional corepressor TUP1 +K06667 CAK1; serine/threonine-protein kinase CAK1 [EC:2.7.11.22] +K06668 GIN4; serine/threonine-protein kinase GIN4 [EC:2.7.11.-] +K06669 SMC3, CSPG6; structural maintenance of chromosome 3 (chondroitin sulfate proteoglycan 6) +K06670 SCC1, MCD1, RAD21; cohesin complex subunit SCC1 +K06671 STAG1_2, SCC3, IRR1; cohesin complex subunit SA-1/2 +K06672 SCC2, NIPBL; cohesin loading factor subunit SCC2 +K06673 SCC4; cohesin loading factor subunit SCC4 +K06674 SMC2; structural maintenance of chromosome 2 +K06675 SMC4; structural maintenance of chromosome 4 +K06676 BRRN1, BRN1, CAPH; condensin complex subunit 2 +K06677 YCS4, CNAP1, CAPD2; condensin complex subunit 1 +K06678 YCG1, CAPG; condensin complex subunit 3 +K06679 MAD1; mitotic spindle assembly checkpoint protein MAD1 +K06680 MAD3; spindle assembly checkpoint component MAD3 +K06681 LTE1; Gdp/GTP exchange factor required for growth at low temperatures +K06682 TEM1; Gtp-binding protein of the ras superfamily involved in termination of M-phase +K06683 CDC15; cell division control protein CDC15 [EC:2.7.11.1] +K06684 DBF2; cell cycle protein kinase DBF2 [EC:2.7.11.-] +K06685 MOB1, Mats; MOB kinase activator 1 +K06686 DBF20; cell cycle protein kinase DBF20 [EC:2.7.11.-] +K06687 NET1, ESC5; nucleolar protein involved in exit from mitosis +K06688 UBE2C, UBC11; ubiquitin-conjugating enzyme E2 C [EC:2.3.2.23] +K06689 UBE2D, UBC4, UBC5; ubiquitin-conjugating enzyme E2 D [EC:2.3.2.23] +K06691 RPN13; 26S proteasome regulatory subunit N13 +K06692 PSMD5; 26S proteasome non-ATPase regulatory subunit 5 +K06693 PSMD9, RPN4; 26S proteasome regulatory subunit N4 +K06694 PSMD10; 26S proteasome non-ATPase regulatory subunit 10 +K06695 PSMC3IP; 26S proteasome regulatory subunit, ATPase 3, interacting protein +K06696 PSME1; proteasome activator subunit 1 (PA28 alpha) +K06697 PSME2; proteasome activator subunit 2 (PA28 beta) +K06698 PSME3; proteasome activator subunit 3 (PA28 gamma) +K06699 PSME4; proteasome activator subunit 4 +K06700 PSMF1; proteasome inhibitor subunit 1 (PI31) +K06702 CD93; CDW93 antigen +K06704 ADAM10, CD156c; disintegrin and metalloproteinase domain-containing protein 10 [EC:3.4.24.81] +K06706 CD248, CD164L1; CD248 antigen, endosialin +K06707 BTLA, CD272; B- and T-lymphocyte attenuator +K06708 PDCD1LG2, CD273; programmed cell death 1 ligand 2 +K06709 KDM4, JMJD2, JHDM3; [histone H3]-trimethyl-L-lysine9/36 demethylase [EC:1.14.11.66 1.14.11.69] +K06710 ICOSLG, ICOSL, CD275; inducible T-cell co-stimulator ligand +K06711 PH-4; hypoxia-inducible factor prolyl 4-hydroxylase [EC:1.14.11.-] +K06712 BTN, CD277; butyrophilin +K06713 ICOS, AILIM, CD278; inducible T-cell co-stimulator +K06714 rocR; arginine utilization regulatory protein +K06715 PTGDR2, GPR44, CD294; prostaglandin D2 receptor 2 +K06716 ART1, CD296; ADP-ribosyltransferase 1 [EC:2.4.2.31] +K06717 ART4, DO, CD297; ADP-ribosyltransferase 4 [EC:2.4.2.31] +K06718 ectA; L-2,4-diaminobutyric acid acetyltransferase [EC:2.3.1.178] +K06719 CD300; CD300 antigen +K06720 ectC; L-ectoine synthase [EC:4.2.1.108] +K06721 CLEC10A, CLECSF13, CLECSF14, CD301; C-type lectin domain family 10 member A +K06722 CD302; CD302 antigen +K06723 CLEC4C, CLECSF11, CLECSF7, CD303; C-type lectin domain family 4 member C +K06724 NRP1, CD304; neuropilin 1 +K06725 LAIR, CD305_6; leukocyte-associated Ig-like receptor +K06726 rbsD; D-ribose pyranase [EC:5.4.99.62] +K06727 FCRL, IRTA, CD307; Fc receptor-like protein +K06728 KLRK1, CD314; killer cell lectin-like receptor subfamily K member 1 +K06729 PTGFRN, CD315; prostaglandin F2 receptor negative regulator +K06730 IGSF8, CD316; immunoglobulin superfamily, member 8 +K06731 BST2, CD317; bone marrow stromal cell antigen 2 +K06732 CDCP1, CD318; CUB domain-containing protein 1 +K06733 SLAMF7, CD319; SLAM family member 7 +K06734 CD320; CD320 antigen +K06735 JAM2, CD322; junctional adhesion molecule 2 +K06736 CDH2, CDHN, CD325; cadherin 2, type 1, N-cadherin +K06737 EPCAM, TACSTD1, CD326; epithelial cell adhesion molecule +K06738 SIGLEC6, CD327; sialic acid binding Ig-like lectin 6 +K06739 SIGLEC7, CD328; sialic acid binding Ig-like lectin 7 +K06740 SIGLEC9, CD329; sialic acid binding Ig-like lectin 9 +K06741 NCR1, CD335; natural cytotoxicity triggering receptor 1 +K06742 NCR2, CD336; natural cytotoxicity triggering receptor 2 +K06743 NCR3, CD337; natural cytotoxicity triggering receptor 3 +K06744 PDCD1, PD1, CD279; programmed cell death protein 1 +K06745 PDL1, CD274; programmed cell death 1 ligand 1 +K06746 B7H3, CD276; immune costimulatory protein B7-H3 +K06747 B7H4, VTCN1; immune costimulatory protein B7-H4 +K06748 SIGLEC8; sialic acid binding Ig-like lectin 8 +K06749 SIGLEC10; sialic acid binding Ig-like lectin 10 +K06750 SIGLEC11; sialic acid binding Ig-like lectin 11 +K06751 MHC1; MHC class I antigen +K06752 MHC2; MHC class II antigen +K06753 ROBO1; roundabout, axon guidance receptor 1 +K06754 ROBO2; roundabout, axon guidance receptor 2 +K06755 ROBO3; roundabout, axon guidance receptor 3 +K06756 NRCAM; neuronal cell adhesion molecule +K06757 NFASC; neurofascin +K06758 CHL1; L1 cell adhesion molecule like protein +K06759 CNTN1; contactin 1 +K06760 CNTN2; contactin 2 +K06761 CNTN3; contactin 3 +K06762 CNTN4; contactin 4 +K06763 CNTN5; contactin 5 +K06764 CNTN6; contactin 6 +K06765 DCC; deleted in colorectal carcinoma +K06766 NEO1; neogenin +K06767 DSCAM; Down syndrome cell adhesion molecule +K06768 DSCAML1; Down syndrome cell adhesion molecule-like protein 1 +K06769 ICAM5, TLCN; intercellular adhesion molecule 5 +K06770 MPZ; myelin protein zero +K06771 MAG, GMA, SIGLEC4; myelin associated glycoprotein +K06772 LSAMP, LAMP; limbic system-associated membrane protein +K06773 OPCML, OBCAM; opioid binding protein/cell adhesion molecule-like +K06774 HNT; neurotrimin +K06775 NEGR1; neuronal growth regulator 1 +K06776 PTPRK; receptor-type tyrosine-protein phosphatase kappa [EC:3.1.3.48] +K06777 PTPRD; receptor-type tyrosine-protein phosphatase delta [EC:3.1.3.48] +K06778 PTPRS; receptor-type tyrosine-protein phosphatase S [EC:3.1.3.48] +K06779 MADCAM1; mucosal vascular addressin cell adhesion molecule 1 +K06780 CADM3, IGSF4B, NECL1, TSLL1; cell adhesion molecule 3 +K06781 CADM1, IGSF4, NECL2, TSLC1; cell adhesion molecule 1 +K06782 CADM2, IGSF4D, NECL3; cell adhesion molecule 2 +K06783 CADM4, IGSF4C, TSLL2; cell adhesion molecule 4 +K06784 ROBO4; roundabout, axon guidance receptor 4 +K06785 JAM3; junctional adhesion molecule 3 +K06786 JAM4, JCAM; junctional adhesion molecule 4 +K06787 ESAM; endothelial cell adhesion molecule +K06788 CXADR, CAR; coxsackievirus and adenovirus receptor +K06789 ASAM, CLMP; adipocyte-specific adhesion molecule +K06790 GPA33; cell surface A33 antigen +K06791 IGSF11; immunoglobulin superfamily, member 11 +K06792 AGC1, CSPG1; aggrecan 1 +K06793 VCAN, CSPG2; versican core protein +K06794 NCAN, CSPG3; neurocan core protein +K06795 BCAN; brevican +K06796 CDH3; cadherin 3, type 1, P-cadherin +K06797 CDH4; cadherin 4, type 1, R-cadherin +K06798 CDH6; cadherin 6, type 2, K-cadherin +K06799 CDH7; cadherin 7, type 2 +K06800 CDH8; cadherin 8, type 2 +K06801 CDH9; cadherin 9, type 2, T1-cadherin +K06802 CDH10; cadherin 10, type 2, T2-cadherin +K06803 CDH11; cadherin 11, type 2, OB-cadherin +K06804 CDH12; cadherin 12, type 2, N-cadherin 2 +K06805 CDH18; cadherin 18, type 2 +K06806 CDH19; cadherin 19, type 2 +K06807 CDH20; cadherin 20, type 2 +K06808 CDH13; cadherin 13, H-cadherin +K06809 CDH15, CDH3, CDH14; cadherin 15, M-cadherin +K06810 CDH16; cadherin 16, KSP-cadherin +K06811 CDH17; cadherin 17, LI cadherin +K06812 CDH22; cadherin 22 +K06813 CDH23, USH1D; cadherin 23 +K06814 CDH24; cadherin-like 24 +K06815 GLYCAM1; glycosylation dependent cell adhesion molecule 1 +K06816 GLG1, ESL1; golgi apparatus protein 1 +K06817 PODXL; podocalyxin-like +K06818 PODXL2; podocalyxin-like 2 +K06819 NRP2; neuropilin 2 +K06820 PLXNA; plexin A +K06821 PLXNB; plexin B +K06822 PLXND; plexin D +K06823 COL18A; collagen type XVIII alpha +K06824 NPNT; nephronectin +K06825 FBN1; fibrillin 1 +K06826 NID; nidogen (entactin) +K06827 CTGF, CCN2, IGFBP8; connective tissue growth factor (insulin-like growth factor-binding protein 8) +K06828 MDK; midkine +K06829 CYR61, CCN1, IGFBP10; insulin-like growth factor-binding protein 10 +K06830 LGALS1; galectin-1 +K06831 LGALS3; galectin-3 +K06832 LGALS8; galectin-8 +K06833 ADAM2; disintegrin and metalloproteinase domain-containing protein 2 [EC:3.4.24.-] +K06834 ADAM9; disintegrin and metalloproteinase domain-containing protein 9 [EC:3.4.24.-] +K06835 ADAM12; disintegrin and metalloproteinase domain-containing protein 12 [EC:3.4.24.-] +K06836 ADAM15; disintegrin and metalloproteinase domain-containing protein 15 [EC:3.4.24.-] +K06837 ADAM23; disintegrin and metalloproteinase domain-containing protein 23 [EC:3.4.24.-] +K06838 SLIT1; slit 1 +K06839 SLIT2; slit 2 +K06840 SEMA3; semaphorin 3 +K06841 SEMA5; semaphorin 5 +K06842 SEMA6; semaphorin 6 +K06843 NTN1; netrin 1 +K06844 NTN3; netrin 3 +K06845 NTN4; netrin 4 +K06846 LY6D_E_F_G6_H; lymphocyte antigen 6 complex locus protein D/E/F/G6/H +K06847 RGMB; RGM domain family member B +K06848 HAPLN1, CRTL1; hyaluronan and proteoglycan link protein 1 +K06849 PGSG; proteoglycan peptide core protein +K06850 SLIT3; slit 3 +K06851 HAPLN2; hyaluronan and proteoglycan link protein 2 +K06852 HAPLN3; hyaluronan and proteoglycan link protein 3 +K06853 HAPLN4; hyaluronan and proteoglycan link protein 4 +K06854 THPO; thrombopoietin +K06855 MAPK4_6; mitogen-activated protein kinase 4/6 [EC:2.7.11.24] +K06856 IGH; immunoglobulin heavy chain +K06857 tupC, vupC; tungstate transport system ATP-binding protein [EC:7.3.2.6] +K06858 btuF; vitamin B12 transport system substrate-binding protein +K06859 pgi1; glucose-6-phosphate isomerase, archaeal [EC:5.3.1.9] +K06860 K06860; putative heme uptake system protein +K06861 lptB; lipopolysaccharide export system ATP-binding protein [EC:7.5.2.5] +K06862 ehbQ; energy-converting hydrogenase B subunit Q +K06863 purP; 5-formaminoimidazole-4-carboxamide-1-(beta)-D-ribofuranosyl 5'-monophosphate synthetase [EC:6.3.4.23] +K06864 larE; pyridinium-3,5-biscarboxylic acid mononucleotide sulfurtransferase [EC:4.4.1.37] +K06865 K06865; ATPase +K06866 grcA; autonomous glycyl radical cofactor +K06867 K06867; uncharacterized protein +K06868 sepcysS; Sep-tRNA:Cys-tRNA synthetase [EC:2.5.1.73] +K06869 K06869; uncharacterized protein +K06870 K06870; uncharacterized protein +K06871 K06871; uncharacterized protein +K06872 K06872; uncharacterized protein +K06873 K06873; uncharacterized protein +K06874 ZPR1; zinc finger protein ZPR1 +K06875 PDCD5, TFAR19; programmed cell death protein 5 +K06876 phrB; (6-4)DNA photolyase [EC:4.1.99.13] +K06877 K06877; DEAD/DEAH box helicase domain-containing protein +K06878 K06878; tRNA-binding protein +K06879 queF; 7-cyano-7-deazaguanine reductase [EC:1.7.1.13] +K06880 ereA_B; erythromycin esterase [EC:3.1.1.-] +K06881 nrnA; bifunctional oligoribonuclease and PAP phosphatase NrnA [EC:3.1.3.7 3.1.13.3] +K06882 K06882; uncharacterized protein +K06883 K06883; uncharacterized protein +K06884 K06884; uncharacterized protein +K06885 K06885; uncharacterized protein +K06886 glbN; hemoglobin +K06887 K06887; uncharacterized protein +K06888 K06888; uncharacterized protein +K06889 K06889; uncharacterized protein +K06890 K06890; uncharacterized protein +K06891 clpS; ATP-dependent Clp protease adaptor protein ClpS +K06892 F6H; feruloyl-CoA 6-hydroxylase [EC:1.14.11.61] +K06893 K06893; uncharacterized protein +K06894 yfhM; alpha-2-macroglobulin +K06895 lysE, argO; L-lysine exporter family protein LysE/ArgO +K06896 mapP; maltose 6'-phosphate phosphatase [EC:3.1.3.90] +K06897 K06897; 7,8-dihydropterin-6-yl-methyl-4-(beta-D-ribofuranosyl)aminobenzene 5'-phosphate synthase [EC:2.5.1.105] +K06898 larB; pyridinium-3,5-biscarboxylic acid mononucleotide synthase [EC:2.5.1.143] +K06899 ndpA; nucleoid-associated protein +K06900 capV; cGAMP-activated phospholipase [EC:3.1.1.32 3.1.1.-] +K06901 pbuG, azgA, ghxP, ghxQ, adeQ; adenine/guanine/hypoxanthine permease +K06902 UMF1; MFS transporter, UMF1 family +K06903 W; Bacteriophage baseplate protein W +K06904 GP4; Escherichia/Staphylococcus phage prohead protease +K06905 D; Bacteriophage probable baseplate hub protein +K06906 gpU; phage tail protein +K06907 FI; Bacteriophage tail sheath protein +K06908 FII; Bacteriophage tail tube protein +K06909 xtmB; phage terminase large subunit +K06910 PEBP, TFS1; phosphatidylethanolamine-binding protein +K06911 PIR; quercetin 2,3-dioxygenase [EC:1.13.11.24] +K06912 tfdA; alpha-ketoglutarate-dependent 2,4-dichlorophenoxyacetate dioxygenase [EC:1.14.11.-] +K06913 K06913; uncharacterized protein +K06914 mfnD; tyramine---L-glutamate ligase [EC:6.3.4.24] +K06915 herA; DNA double-strand break repair helicase HerA and related ATPase +K06916 zapE; cell division protein ZapE +K06917 selU, mnmH; tRNA 2-selenouridine synthase [EC:2.9.1.3] +K06918 K06918; uncharacterized protein +K06919 K06919; putative DNA primase/helicase +K06920 queC; 7-cyano-7-deazaguanine synthase [EC:6.3.4.20] +K06921 K06921; uncharacterized protein +K06922 K06922; uncharacterized protein +K06923 K06923; uncharacterized protein +K06924 K06924; uncharacterized protein +K06925 tsaE; tRNA threonylcarbamoyladenosine biosynthesis protein TsaE +K06926 K06926; uncharacterized protein +K06927 DPH6; diphthine-ammonia ligase [EC:6.3.1.14] +K06928 NTPCR; nucleoside-triphosphatase [EC:3.6.1.15] +K06929 K06929; uncharacterized protein +K06930 bat; HTH-type transcriptional regulator, bacterioopsin transcriptional activator and related proteins +K06931 K06931; uncharacterized protein +K06932 tiaS; tRNA(Ile2)-agmatinylcytidine synthase [EC:6.3.4.22] +K06933 K06933; uncharacterized protein +K06934 K06934; uncharacterized protein +K06935 K06935; uncharacterized protein +K06936 raSEA; archaeosine synthase beta-subunit [EC:2.6.1.-] +K06937 E1.21.98.5; tetraether lipid synthase [EC:1.21.98.5] +K06938 K06938; uncharacterized protein +K06939 K06939; uncharacterized protein +K06940 K06940; uncharacterized protein +K06941 rlmN; 23S rRNA (adenine2503-C2)-methyltransferase [EC:2.1.1.192] +K06942 ychF; ribosome-binding ATPase +K06943 NOG1; nucleolar GTP-binding protein +K06944 DRG1, RBG1; developmentally-regulated GTP-binding protein 1 [EC:3.6.5.-] +K06945 K06945; uncharacterized protein +K06946 K06946; uncharacterized protein +K06947 GRC3, NOL9; polynucleotide 5'-hydroxyl-kinase GRC3/NOL9 [EC:2.7.1.-] +K06948 yqeH; 30S ribosome assembly GTPase +K06949 rsgA, engC; ribosome biogenesis GTPase / thiamine phosphate phosphatase [EC:3.6.1.- 3.1.3.100] +K06950 K06950; uncharacterized protein +K06951 K06951; uncharacterized protein +K06952 yfdR; 5'-nucleotidase [EC:3.1.3.89] +K06953 K06953; uncharacterized protein +K06954 K06954; uncharacterized protein +K06956 K06956; uncharacterized protein +K06957 tmcA; tRNA(Met) cytidine acetyltransferase [EC:2.3.1.193] +K06958 rapZ; RNase adapter protein RapZ +K06959 tex; protein Tex +K06960 K06960; uncharacterized protein +K06961 KRR1; ribosomal RNA assembly protein +K06962 K06962; uncharacterized protein +K06963 TAN1, THUMPD1; tRNA acetyltransferase TAN1 +K06964 K06964; uncharacterized protein +K06965 PELO, DOM34, pelA; protein pelota +K06966 ppnN; pyrimidine/purine-5'-nucleotide nucleosidase [EC:3.2.2.10 3.2.2.-] +K06967 trmK; tRNA (adenine22-N1)-methyltransferase [EC:2.1.1.217] +K06968 rlmM; 23S rRNA (cytidine2498-2'-O)-methyltransferase [EC:2.1.1.186] +K06969 rlmI; 23S rRNA (cytosine1962-C5)-methyltransferase [EC:2.1.1.191] +K06970 rlmF; 23S rRNA (adenine1618-N6)-methyltransferase [EC:2.1.1.181] +K06971 K06971; uncharacterized protein +K06972 PITRM1, PreP, CYM1; presequence protease [EC:3.4.24.-] +K06973 K06973; uncharacterized protein +K06974 amzA, AMZ2, AMZ1; archaemetzincin [EC:3.4.-.-] +K06975 K06975; uncharacterized protein +K06976 K06976; uncharacterized protein +K06977 K06977; uncharacterized protein +K06978 K06978; uncharacterized protein +K06979 mph; macrolide phosphotransferase +K06980 ygfZ; tRNA-modifying protein YgfZ +K06981 ipk; isopentenyl phosphate kinase [EC:2.7.4.26] +K06982 pok; pantoate kinase [EC:2.7.1.169] +K06983 K06983; uncharacterized protein +K06984 K06984; beta-ribofuranosylaminobenzene 5'-phosphate synthase [EC:2.4.2.54] +K06985 K06985; aspartyl protease family protein +K06986 K06986; uncharacterized protein +K06987 K06987; uncharacterized protein +K06988 fno; 8-hydroxy-5-deazaflavin:NADPH oxidoreductase [EC:1.5.1.40] +K06989 nadX, ASPDH; aspartate dehydrogenase [EC:1.4.1.21] +K06990 MEMO1; MEMO1 family protein +K06991 K06991; uncharacterized protein +K06992 K06992; uncharacterized protein +K06993 K06993; ribonuclease H-related protein +K06994 K06994; putative drug exporter of the RND superfamily +K06995 K06995; uncharacterized protein +K06996 K06996; uncharacterized protein +K06997 yggS, PROSC; PLP dependent protein +K06998 phzF; trans-2,3-dihydro-3-hydroxyanthranilate isomerase [EC:5.3.3.17] +K06999 K06999; phospholipase/carboxylesterase +K07000 K07000; uncharacterized protein +K07001 K07001; NTE family protein +K07002 RBBP9; serine hydrolase [EC:3.-.-.-] +K07003 K07003; uncharacterized protein +K07004 K07004; uncharacterized protein +K07005 K07005; uncharacterized protein +K07006 K07006; uncharacterized protein +K07007 baiN; 3-dehydro-bile acid Delta4,6-reductase [EC:1.3.1.114] +K07008 egtC; gamma-glutamyl hercynylcysteine S-oxide hydrolase [EC:3.5.1.118] +K07009 gatD; lipid II isoglutaminyl synthase (glutamine-hydrolysing) [EC:6.3.5.13] +K07010 K07010; putative glutamine amidotransferase +K07012 cas3; CRISPR-associated endonuclease/helicase Cas3 [EC:3.1.-.- 5.6.2.4] +K07013 K07013; uncharacterized protein +K07014 K07014; uncharacterized protein +K07015 yqeG; putative phosphatase [EC:3.1.3.-] +K07016 csm1, cas10; CRISPR-associated protein Csm1 +K07017 besA; ferri-bacillibactin esterase [EC:3.1.-.-] +K07018 K07018; uncharacterized protein +K07019 K07019; uncharacterized protein +K07020 K07020; uncharacterized protein +K07022 K07022; uncharacterized protein +K07023 YGK1, HDDC2; 5'-deoxynucleotidase [EC:3.1.3.89] +K07024 SPP; sucrose-6-phosphatase [EC:3.1.3.24] +K07025 K07025; putative hydrolase of the HAD superfamily +K07026 E3.1.3.70; mannosyl-3-phosphoglycerate phosphatase [EC:3.1.3.70] +K07027 K07027; glycosyltransferase 2 family protein +K07028 K07028; uncharacterized protein +K07029 dagK; diacylglycerol kinase (ATP) [EC:2.7.1.107] +K07030 fakA; fatty acid kinase [EC:2.7.2.18] +K07031 hddA; D-glycero-alpha-D-manno-heptose-7-phosphate kinase [EC:2.7.1.168] +K07032 K07032; uncharacterized protein +K07033 K07033; uncharacterized protein +K07034 K07034; uncharacterized protein +K07035 K07035; uncharacterized protein +K07037 pgpH; cyclic-di-AMP phosphodiesterase PgpH [EC:3.1.4.-] +K07038 K07038; inner membrane protein +K07039 K07039; uncharacterized protein +K07040 yceD, ylbN; DUF177 domain-containing protein +K07041 K07041; uncharacterized protein +K07042 ybeY, yqfG; probable rRNA maturation factor +K07043 upp; UTP pyrophosphatase [EC:3.6.1.-] +K07044 K07044; uncharacterized protein +K07045 K07045; uncharacterized protein +K07046 E3.1.1.120; L-fucono-1,5-lactonase [EC:3.1.1.120] +K07047 nfdA; N-substituted formamide deformylase [EC:3.5.1.91] +K07048 PTER, php; phosphotriesterase-related protein +K07049 K07049; TatD-related deoxyribonuclease +K07050 AARSD1, ALAX; misacylated tRNA(Ala) deacylase [EC:3.1.1.-] +K07051 K07051; uncharacterized protein +K07052 K07052; CAAX protease family protein +K07053 E3.1.3.97; 3',5'-nucleoside bisphosphate phosphatase [EC:3.1.3.97] +K07054 K07054; uncharacterized protein +K07055 TRM12, TYW2; tRNA wybutosine-synthesizing protein 2 [EC:2.5.1.114] +K07056 rsmI; 16S rRNA (cytidine1402-2'-O)-methyltransferase [EC:2.1.1.198] +K07057 bpsA; N4-bis(aminopropyl)spermidine synthase [EC:2.5.1.128] +K07058 K07058; membrane protein +K07059 K07059; rhomboid family protein +K07060 nob1; endoribonuclease Nob1 [EC:3.1.-.-] +K07061 cmr1; CRISPR-associated protein Cmr1 +K07062 fitB; toxin FitB [EC:3.1.-.-] +K07063 K07063; uncharacterized protein +K07064 K07064; uncharacterized protein +K07065 K07065; uncharacterized protein +K07066 K07066; uncharacterized protein +K07067 disA; diadenylate cyclase [EC:2.7.7.85] +K07068 K07068; uncharacterized protein +K07069 K07069; uncharacterized protein +K07070 K07070; uncharacterized protein +K07071 K07071; uncharacterized protein +K07072 mfnF; (4-(4-[2-(gamma-L-glutamylamino)ethyl]phenoxymethyl)furan-2-yl)methanamine synthase [EC:2.5.1.131] +K07073 K07073; uncharacterized protein +K07074 K07074; uncharacterized protein +K07075 K07075; uncharacterized protein +K07076 K07076; uncharacterized protein +K07077 K07077; uncharacterized protein +K07078 K07078; uncharacterized protein +K07079 K07079; uncharacterized protein +K07080 K07080; uncharacterized protein +K07081 K07081; putative periplasmic solute-binding protein +K07082 mltG; peptidoglycan lytic transglycosylase G [EC:4.2.2.29] +K07083 K07083; putative periplasmic solute-binding protein +K07084 yuiF; putative amino acid transporter +K07085 K07085; putative transport protein +K07086 K07086; uncharacterized protein +K07087 K07087; uncharacterized protein +K07089 K07089; uncharacterized protein +K07090 K07090; uncharacterized protein +K07091 lptF; lipopolysaccharide export system permease protein +K07092 K07092; uncharacterized protein +K07093 K07093; uncharacterized protein +K07094 pcrB; heptaprenylglyceryl phosphate synthase [EC:2.5.1.-] +K07095 K07095; uncharacterized protein +K07096 K07096; uncharacterized protein +K07097 K07097; uncharacterized protein +K07098 K07098; uncharacterized protein +K07099 K07099; uncharacterized protein +K07100 K07100; putative phosphoribosyl transferase +K07101 K07101; uncharacterized protein +K07102 amgK; N-acetylmuramate 1-kinase [EC:2.7.1.221] +K07103 K07103; uncharacterized protein +K07104 catE; catechol 2,3-dioxygenase [EC:1.13.11.2] +K07105 K07105; uncharacterized protein +K07106 murQ; N-acetylmuramic acid 6-phosphate etherase [EC:4.2.1.126] +K07107 ybgC; acyl-CoA thioester hydrolase [EC:3.1.2.-] +K07108 K07108; uncharacterized protein +K07109 K07109; uncharacterized protein +K07110 ramB; XRE family transcriptional regulator, fatty acid utilization regulator +K07111 K07111; uncharacterized protein +K07112 K07112; uncharacterized protein +K07113 fxsA; UPF0716 protein FxsA +K07114 yfbK; Ca-activated chloride channel homolog +K07115 rlmJ; 23S rRNA (adenine2030-N6)-methyltransferase [EC:2.1.1.266] +K07116 pvdQ, quiP; acyl-homoserine-lactone acylase [EC:3.5.1.97] +K07117 K07117; uncharacterized protein +K07118 K07118; uncharacterized protein +K07119 PTGR3, ZADH2; prostaglandin reductase 3 [EC:1.3.1.48] +K07120 K07120; uncharacterized protein +K07121 K07121; uncharacterized protein +K07122 mlaB; phospholipid transport system transporter-binding protein +K07123 K07123; uncharacterized protein +K07124 K07124; uncharacterized protein +K07125 K07125; uncharacterized protein +K07126 K07126; uncharacterized protein +K07127 uraH, pucM, hiuH; 5-hydroxyisourate hydrolase [EC:3.5.2.17] +K07128 K07128; uncharacterized protein +K07129 K07129; uncharacterized protein +K07130 kynB; arylformamidase [EC:3.5.1.9] +K07131 K07131; uncharacterized protein +K07132 MuB; Enterobacteriaceae phage ATP-dependent target DNA activator +K07133 K07133; uncharacterized protein +K07134 K07134; uncharacterized protein +K07135 K07135; uncharacterized protein +K07136 K07136; uncharacterized protein +K07137 K07137; uncharacterized protein +K07138 K07138; uncharacterized protein +K07139 K07139; uncharacterized protein +K07140 K07140; MOSC domain-containing protein +K07141 mocA; molybdenum cofactor cytidylyltransferase [EC:2.7.7.76] +K07142 mptE; 2-amino-4-hydroxy-6-hydroxymethyldihydropteridine diphosphokinase [EC:2.7.6.3] +K07143 K07143; UPF0148 protein +K07144 mfnE; 5-(aminomethyl)-3-furanmethanol phosphate kinase [EC:2.7.4.31] +K07145 isdG, isdI; heme oxygenase (staphylobilin-producing) [EC:1.14.99.48] +K07146 K07146; UPF0176 protein +K07147 msrP; methionine sulfoxide reductase catalytic subunit [EC:1.8.-.-] +K07148 K07148; uncharacterized protein +K07149 K07149; uncharacterized protein +K07150 K07150; uncharacterized protein +K07151 STT3; dolichyl-diphosphooligosaccharide---protein glycosyltransferase [EC:2.4.99.18] +K07152 SCO1; protein SCO1 +K07153 hflD; high frequency lysogenization protein +K07154 hipA; serine/threonine-protein kinase HipA [EC:2.7.11.1] +K07155 qodI; quercetin 2,3-dioxygenase [EC:1.13.11.24] +K07156 copC, pcoC; copper resistance protein C +K07157 K07157; uncharacterized protein +K07158 K07158; uncharacterized protein +K07159 K07159; uncharacterized protein +K07160 pxpA; 5-oxoprolinase (ATP-hydrolysing) subunit A [EC:3.5.2.9] +K07161 K07161; uncharacterized protein +K07162 K07162; uncharacterized protein +K07163 K07163; uncharacterized protein +K07164 K07164; uncharacterized protein +K07165 fecR; transmembrane sensor +K07166 K07166; ACT domain-containing protein +K07167 chrR; putative transcriptional regulator +K07168 K07168; CBS domain-containing membrane protein +K07169 K07169; FHA domain-containing protein +K07171 mazF, ndoA, chpA; mRNA interferase MazF [EC:3.1.-.-] +K07172 mazE, chpAI; antitoxin MazE +K07173 luxS; S-ribosylhomocysteine lyase [EC:4.4.1.21] +K07175 phoH2; PhoH-like ATPase +K07176 K07176; putative serine/threonine protein kinase +K07177 K07177; Lon-like protease +K07178 RIOK1; RIO kinase 1 [EC:2.7.11.1] +K07179 RIOK2; RIO kinase 2 [EC:2.7.11.1] +K07180 prkA; serine protein kinase +K07181 cdgJ; c-di-GMP phosphodiesterase [EC:3.1.4.52] +K07182 K07182; CBS domain-containing protein +K07183 nasT; two-component system, response regulator / RNA-binding antiterminator +K07184 ygiM; SH3 domain protein +K07186 smp; membrane protein +K07187 IRS2; insulin receptor substrate 2 +K07188 LIPE, HSL; hormone-sensitive lipase [EC:3.1.1.79] +K07189 PPP1R3; protein phosphatase 1 regulatory subunit 3A/B/C/D/E +K07190 PHKA_B; phosphorylase kinase alpha/beta subunit +K07191 SLC2A4, GLUT4; MFS transporter, SP family, solute carrier family 2 (facilitated glucose transporter), member 4 +K07192 FLOT; flotillin +K07193 SH2B, APS; SH2B adapter protein 2 +K07194 RHOQ, TC10; Ras homolog gene family, member Q +K07195 EXOC7, EXO70; exocyst complex component 7 +K07196 TRIP10, CIP4; thyroid hormone receptor interactor 10 +K07197 SREBP1, SREBF1; sterol regulatory element-binding transcription factor 1 +K07198 PRKAA, AMPK; 5'-AMP-activated protein kinase, catalytic alpha subunit [EC:2.7.11.31] +K07199 PRKAB; 5'-AMP-activated protein kinase, regulatory beta subunit +K07200 PRKAG; 5'-AMP-activated protein kinase, regulatory gamma subunit +K07201 FOXO1; forkhead box protein O1 +K07202 PPARGC1A, PGC1A; alpha peroxisome proliferator-activated receptor gamma coactivator 1-alpha +K07203 MTOR, FRAP, TOR; serine/threonine-protein kinase mTOR [EC:2.7.11.1] +K07204 RAPTOR; regulatory associated protein of mTOR +K07205 EIF4EBP1; eukaryotic translation initiation factor 4E binding protein 1 +K07206 TSC1; tuberous sclerosis 1 +K07207 TSC2; tuberous sclerosis 2 +K07208 RHEB; Ras homolog enriched in brain +K07209 IKBKB, IKKB; inhibitor of nuclear factor kappa-B kinase subunit beta [EC:2.7.11.10] +K07210 IKBKG, IKKG, NEMO; inhibitor of nuclear factor kappa-B kinase subunit gamma +K07211 IKBKE, IKKE; inhibitor of nuclear factor kappa-B kinase subunit epsilon [EC:2.7.11.10] +K07213 ATOX1, ATX1, copZ, golB; copper chaperone +K07214 fes; iron(III)-enterobactin esterase [EC:3.1.1.108] +K07215 pigA, hemO; heme oxygenase (biliverdin-IX-beta and delta-forming) [EC:1.14.99.58] +K07216 hr; hemerythrin +K07217 ydbD; manganese catalase [EC:1.11.1.6] +K07218 nosD; nitrous oxidase accessory protein +K07219 K07219; putative molybdopterin biosynthesis protein +K07220 K07220; uncharacterized protein +K07221 oprO_P; phosphate-selective porin OprO and OprP +K07222 K07222; putative flavoprotein involved in K+ transport +K07223 yfeX; porphyrinogen peroxidase [EC:1.11.1.-] +K07224 efeO; iron uptake system component EfeO +K07225 hmuS; putative hemin transport protein +K07226 hutZ, hugZ; heme oxygenase (biliverdin-IX-beta and delta-forming) [EC:1.14.99.58] +K07227 chuX; heme iron utilization protein +K07228 khtT; K+:H+ antiporter subunit KhtT +K07229 yqjH; ferric-chelate reductase (NADPH) [EC:1.16.1.9] +K07230 p19, ftrA; periplasmic iron binding protein +K07231 K07231; putative iron-regulated protein +K07232 CHAC, chaC; glutathione-specific gamma-glutamylcyclotransferase [EC:4.3.2.7] +K07233 pcoB, copB; copper resistance protein B +K07234 K07234; uncharacterized protein involved in response to NO +K07235 tusD, dsrE; tRNA 2-thiouridine synthesizing protein D [EC:2.8.1.-] +K07236 tusC, dsrF; tRNA 2-thiouridine synthesizing protein C +K07237 tusB, dsrH; tRNA 2-thiouridine synthesizing protein B +K07238 TC.ZIP, zupT, ZRT3, ZIP2; zinc transporter, ZIP family +K07240 chrA; chromate transporter +K07241 hoxN, nixA; nickel/cobalt transporter (NiCoT) family protein +K07242 K07242; putative multicomponent Na+:H+ antiporter subunit B +K07243 FTR, FTH1, efeU; high-affinity iron transporter +K07244 K07244; mgtE-like transporter +K07245 pcoD; copper resistance protein D +K07246 ttuC, dmlA; tartrate dehydrogenase/decarboxylase / D-malate dehydrogenase [EC:1.1.1.93 4.1.1.73 1.1.1.83] +K07248 aldA; lactaldehyde dehydrogenase / glycolaldehyde dehydrogenase [EC:1.2.1.22 1.2.1.21] +K07249 ALDH1A; retinal dehydrogenase [EC:1.2.1.36] +K07250 gabT; 4-aminobutyrate aminotransferase / (S)-3-amino-2-methylpropionate transaminase / 5-aminovalerate transaminase [EC:2.6.1.19 2.6.1.22 2.6.1.48] +K07251 thiK; thiamine kinase [EC:2.7.1.89] +K07252 DOLPP1; dolichyldiphosphatase [EC:3.6.1.43] +K07253 MIF; phenylpyruvate tautomerase [EC:5.3.2.1] +K07254 atrm56; tRNA (cytidine56-2'-O)-methyltransferase [EC:2.1.1.206] +K07255 tauX; taurine dehydrogenase small subunit [EC:1.4.2.-] +K07256 tauY; taurine dehydrogenase large subunit [EC:1.4.2.-] +K07257 spsF; spore coat polysaccharide biosynthesis protein SpsF +K07258 dacC, dacA, dacD; serine-type D-Ala-D-Ala carboxypeptidase (penicillin-binding protein 5/6) [EC:3.4.16.4] +K07259 dacB; serine-type D-Ala-D-Ala carboxypeptidase/endopeptidase (penicillin-binding protein 4) [EC:3.4.16.4 3.4.21.-] +K07260 vanY; zinc D-Ala-D-Ala carboxypeptidase [EC:3.4.17.14] +K07261 mepA; penicillin-insensitive murein DD-endopeptidase [EC:3.4.24.-] +K07262 pbpG; serine-type D-Ala-D-Ala endopeptidase (penicillin-binding protein 7) [EC:3.4.21.-] +K07263 pqqL; zinc protease [EC:3.4.24.-] +K07264 arnT, pmrK; 4-amino-4-deoxy-L-arabinose transferase [EC:2.4.2.43] +K07265 kpsS, lipB; capsular polysaccharide export protein +K07266 kpsC, lipA; capsular polysaccharide export protein +K07267 oprB; porin +K07268 oapA; opacity associated protein +K07269 ytfB; cell division protein YtfB +K07270 K07270; glycosyl transferase, family 25 +K07271 licD; lipopolysaccharide cholinephosphotransferase [EC:2.7.8.-] +K07272 rgpF; rhamnosyltransferase [EC:2.4.1.-] +K07273 acm; lysozyme +K07274 mipA, ompV; MipA family protein +K07275 ompW; outer membrane protein +K07276 K07276; uncharacterized protein +K07277 SAM50, TOB55, bamA; outer membrane protein insertion porin family +K07278 tamA; translocation and assembly module TamA +K07279 yfaL; autotransporter family porin +K07280 K07280; outer membrane protein +K07281 ipct; 1L-myo-inositol 1-phosphate cytidylyltransferase [EC:2.7.7.74] +K07282 capA, pgsA; gamma-polyglutamate biosynthesis protein CapA +K07283 ydiY; putative salt-induced outer membrane protein +K07284 srtA; sortase A [EC:3.4.22.70] +K07285 slp; outer membrane lipoprotein +K07286 yajG; uncharacterized lipoprotein +K07287 bamC; outer membrane protein assembly factor BamC +K07288 tspA; uncharacterized membrane protein +K07289 asmA; AsmA protein +K07290 yhjG; AsmA family protein +K07291 dipps; CDP-L-myo-inositol myo-inositolphosphotransferase [EC:2.7.8.34] +K07292 NR2A1, HNF4A; hepatocyte nuclear factor 4-alpha +K07293 PTPN11, SHP2; tyrosine-protein phosphatase non-receptor type 11 [EC:3.1.3.48] +K07294 NR1C1, PPARA; peroxisome proliferator-activated receptor alpha +K07295 NR2AN, dsf; nuclear receptor subfamily 2 group A +K07296 ADIPOQ, ACDC; adiponectin +K07297 ADIPOR; adiponectin receptor +K07298 STK11, LKB1; serine/threonine-protein kinase 11 [EC:2.7.11.1] +K07299 SLC2A1, GLUT1; MFS transporter, SP family, solute carrier family 2 (facilitated glucose transporter), member 1 +K07300 chaA, CAX; Ca2+:H+ antiporter +K07301 yrbG; cation:H+ antiporter +K07302 iorA; isoquinoline 1-oxidoreductase subunit alpha [EC:1.3.99.16] +K07303 iorB; isoquinoline 1-oxidoreductase subunit beta [EC:1.3.99.16] +K07304 msrA; peptide-methionine (S)-S-oxide reductase [EC:1.8.4.11] +K07305 msrB; peptide-methionine (R)-S-oxide reductase [EC:1.8.4.12] +K07306 dmsA; anaerobic dimethyl sulfoxide reductase subunit A [EC:1.8.5.3] +K07307 dmsB; anaerobic dimethyl sulfoxide reductase subunit B +K07308 dmsC; anaerobic dimethyl sulfoxide reductase subunit C +K07309 ynfE; Tat-targeted selenate reductase subunit YnfE [EC:1.97.1.9] +K07310 ynfF; Tat-targeted selenate reductase subunit YnfF [EC:1.97.1.9] +K07311 ynfG; Tat-targeted selenate reductase subunit YnfG +K07312 ynfH; Tat-targeted selenate reductase subunit YnfH +K07313 pphA; serine/threonine protein phosphatase 1 [EC:3.1.3.16] +K07314 pphB; serine/threonine protein phosphatase 2 [EC:3.1.3.16] +K07315 rsbU_P; phosphoserine phosphatase RsbU/P [EC:3.1.3.3] +K07316 mod; adenine-specific DNA-methyltransferase [EC:2.1.1.72] +K07317 K07317; adenine-specific DNA-methyltransferase [EC:2.1.1.72] +K07318 K07318; adenine-specific DNA-methyltransferase [EC:2.1.1.72] +K07319 yhdJ; adenine-specific DNA-methyltransferase [EC:2.1.1.72] +K07320 prmB; ribosomal protein L3 glutamine methyltransferase [EC:2.1.1.298] +K07321 cooC; CO dehydrogenase maturation factor +K07322 ytfE, scdA; regulator of cell morphogenesis and NO signaling +K07323 mlaC; phospholipid transport system substrate-binding protein +K07324 flaA; archaeal flagellin FlaA +K07325 flaB; archaeal flagellin FlaB +K07326 fhaC; hemolysin activation/secretion protein +K07327 flaD; archaeal flagellar protein FlaD +K07328 flaE; archaeal flagellar protein FlaE +K07329 flaF; archaeal flagellar protein FlaF +K07330 flaG; archaeal flagellar protein FlaG +K07331 flaH; archaeal flagellar protein FlaH +K07332 flaI; archaeal flagellar protein FlaI +K07333 flaJ; archaeal flagellar protein FlaJ +K07334 higB-1; toxin HigB-1 +K07335 bmpA, bmpB, tmpC; basic membrane protein A and related proteins +K07336 K07336; PKHD-type hydroxylase [EC:1.14.11.-] +K07337 K07337; penicillin-binding protein activator +K07338 K07338; uncharacterized protein +K07339 hicA; mRNA interferase HicA [EC:3.1.-.-] +K07340 ybbJ; inner membrane protein +K07341 doc; death on curing protein +K07342 SEC61G, SSS1, secE; protein transport protein SEC61 subunit gamma and related proteins +K07343 tfoX; DNA transformation protein and related proteins +K07344 trbL; type IV secretion system protein TrbL +K07345 fimA; major type 1 subunit fimbrin (pilin) +K07346 fimC; fimbrial chaperone protein +K07347 fimD, fimC, mrkC, htrE, cssD; outer membrane usher protein +K07348 fimF; minor fimbrial subunit +K07349 fimG; minor fimbrial subunit +K07350 fimH; minor fimbrial subunit +K07351 fimI; fimbrial protein +K07352 sfmA; type 1 fimbrial protein +K07353 sfmC; fimbrial chaperone protein +K07354 sfmD; outer membrane usher protein +K07355 sfmF; fimbrial-like protein +K07356 sfmH; fimbrial protein +K07357 fimB; type 1 fimbriae regulatory protein FimB +K07358 fimE; type 1 fimbriae regulatory protein FimE +K07359 CAMKK2; calcium/calmodulin-dependent protein kinase kinase 2 [EC:2.7.11.17] +K07360 ZAP70; tyrosine-protein kinase ZAP-70 [EC:2.7.10.2] +K07361 LCP2; lymphocyte cytosolic protein 2 +K07362 LAT; linker for activation of T cells family member 1 +K07363 ITK; IL2-inducible T-cell kinase [EC:2.7.10.2] +K07364 TEC; tyrosine-protein kinase Tec [EC:2.7.10.2] +K07365 NCK1; NCK adaptor protein 1 +K07366 GRAP2, GADS; GRB2-related adaptor protein 2 +K07367 CARD11; caspase recruitment domain-containing protein 11 +K07368 BCL10; B-cell CLL/lymphoma 10 +K07369 MALT1; mucosa-associated lymphoid tissue lymphoma translocation protein 1 [EC:3.4.22.-] +K07370 BTK; Bruton agammaglobulinemia tyrosine kinase [EC:2.7.10.2] +K07371 BLNK; B-cell linker protein +K07372 GJA1, CX43; gap junction alpha-1 protein +K07373 GJD2, CX36; gap junction delta-2 protein +K07374 TUBA; tubulin alpha +K07375 TUBB; tubulin beta +K07376 PRKG1; cGMP-dependent protein kinase 1 [EC:2.7.11.12] +K07377 NRXN; neurexin +K07378 NLGN; neuroligin +K07379 CNTNAP1; contactin associated protein 1 +K07380 CNTNAP2; contactin associated protein-like 2 +K07381 CYP71D18; (S)-limonene 6-monooxygenase [EC:1.14.14.51] +K07382 E1.14.14.52; (S)-limonene 7-monooxygenase [EC:1.14.14.52] +K07384 AG3; (-)-alpha/(-)-beta-pinene synthase [EC:4.2.3.119 4.2.3.120] +K07385 TPS-Cin; 1,8-cineole synthase [EC:4.2.3.108] +K07386 pepO; putative endopeptidase [EC:3.4.24.-] +K07387 K07387; metalloprotease [EC:3.4.24.-] +K07388 K07388; hydrogenase expression/formation protein +K07389 cyaC, hlyC, rtxC; cytolysin-activating lysine-acyltransferase [EC:2.3.1.-] +K07390 grxD, GLRX5; monothiol glutaredoxin +K07391 comM; magnesium chelatase family protein +K07392 PRS2; AAA family ATPase +K07393 ECM4, yqjG; glutathionyl-hydroquinone reductase [EC:1.8.5.7] +K07394 K07394; SM-20-related protein +K07395 K07395; putative proteasome-type protease +K07396 K07396; putative protein-disulfide isomerase +K07397 yhfA; putative redox protein +K07398 K07398; conserved protein with predicted RNA binding PUA domain +K07399 resB, ccs1; cytochrome c biogenesis protein +K07400 nfuA; Fe/S biogenesis protein NfuA +K07401 K07401; selenoprotein W-related protein +K07402 xdhC; xanthine dehydrogenase accessory factor +K07403 nfeD; membrane-bound serine protease (ClpP class) +K07404 pgl; 6-phosphogluconolactonase [EC:3.1.1.31] +K07405 E3.2.1.1A; alpha-amylase [EC:3.2.1.1] +K07406 melA; alpha-galactosidase [EC:3.2.1.22] +K07407 E3.2.1.22B, galA, rafA; alpha-galactosidase [EC:3.2.1.22] +K07408 CYP1A1; cytochrome P450 family 1 subfamily A1 [EC:1.14.14.1] +K07409 CYP1A2; cytochrome P450 family 1 subfamily A2 [EC:1.14.14.1] +K07410 CYP1B1; cytochrome P450 family 1 subfamily B1 [EC:1.14.14.1] +K07411 CYP2A; cytochrome P450 family 2 subfamily A [EC:1.14.14.1] +K07412 CYP2B; cytochrome P450 family 2 subfamily B [EC:1.14.14.1] +K07413 CYP2C; cytochrome P450 family 2 subfamily C [EC:1.14.14.1] +K07414 CYP2D; cytochrome P450 family 2 subfamily D [EC:1.14.14.1] +K07415 CYP2E1; cytochrome P450 family 2 subfamily E1 [EC:1.14.14.-] +K07416 CYP2F; cytochrome P450 family 2 subfamily F [EC:1.14.14.1] +K07417 CYP2G1; cytochrome P450 family 2 subfamily G1 +K07418 CYP2J; cytochrome P450 family 2 subfamily J [EC:1.14.14.1 1.14.14.73 1.14.14.74 1.14.14.75] +K07419 CYP2R1; vitamin D 25-hydroxylase [EC:1.14.14.24] +K07420 CYP2S1; cytochrome P450 family 2 subfamily S1 [EC:1.14.14.1] +K07422 CYP2U1; long-chain fatty acid omega-monooxygenase [EC:1.14.14.80] +K07423 CYP2W1; cytochrome P450 family 2 subfamily W1 [EC:1.14.14.-] +K07424 CYP3A; cytochrome P450 family 3 subfamily A [EC:1.14.14.1] +K07425 CYP4A; long-chain fatty acid omega-monooxygenase [EC:1.14.14.80] +K07426 CYP4B1; cytochrome P450 family 4 subfamily B1 [EC:1.14.14.1] +K07427 CYP4V; docosahexaenoic acid omega-hydroxylase [EC:1.14.14.79] +K07428 CYP4X; cytochrome P450 family 4 subfamily X [EC:1.14.14.1] +K07429 CYP4Z; cytochrome P450 family 4 subfamily Z [EC:1.14.14.1] +K07430 CYP7B; 25/26-hydroxycholesterol 7alpha-hydroxylase [EC:1.14.14.29] +K07431 CYP8B1; sterol 12-alpha-hydroxylase [EC:1.14.14.139] +K07432 ALG13; beta-1,4-N-acetylglucosaminyltransferase [EC:2.4.1.141] +K07433 CYP11B2; steroid 11beta-monooxygenase / corticosterone 18-monooxygenase [EC:1.14.15.4 1.14.15.5] +K07434 CYP19A; aromatase [EC:1.14.14.14] +K07435 CYP20A; cytochrome P450 family 20 subfamily A [EC:1.14.-.-] +K07436 CYP24A1; vitamin D3 24-hydroxylase [EC:1.14.15.16] +K07437 CYP26A; cytochrome P450 family 26 subfamily A [EC:1.14.14.-] +K07438 CYP27B1; calcidiol 1-monooxygenase (25-hydroxyvitamin D3 1alpha-hydroxylase) [EC:1.14.15.18] +K07439 CYP39A1; 24-hydroxycholesterol 7alpha-hydroxylase [EC:1.14.14.26] +K07440 CYP46A1; cholesterol 24-hydroxylase [EC:1.14.14.25] +K07441 ALG14; beta-1,4-N-acetylglucosaminyltransferase [EC:2.4.1.141] +K07442 TRM61, GCD14; tRNA (adenine57-N1/adenine58-N1)-methyltransferase catalytic subunit [EC:2.1.1.219 2.1.1.220] +K07443 ybaZ; methylated-DNA-protein-cysteine methyltransferase related protein +K07444 ypsC; putative N6-adenine-specific DNA methylase [EC:2.1.1.-] +K07445 K07445; putative DNA methylase +K07446 trm-G10; tRNA (guanine10-N2)-dimethyltransferase [EC:2.1.1.213] +K07447 ruvX; putative pre-16S rRNA nuclease [EC:3.1.-.-] +K07448 mrr; restriction system protein +K07449 K07449; similar to archaeal holliday junction resolvase and Mrr protein +K07450 K07450; putative resolvase +K07451 mcrA; 5-methylcytosine-specific restriction enzyme A [EC:3.1.21.-] +K07452 mcrB; 5-methylcytosine-specific restriction enzyme B [EC:3.1.21.-] +K07453 K07453; putative restriction endonuclease +K07454 K07454; putative restriction endonuclease +K07455 recT; recombination protein RecT +K07456 mutS2; DNA mismatch repair protein MutS2 +K07457 K07457; endonuclease III related protein +K07458 vsr; DNA mismatch endonuclease, patch repair protein [EC:3.1.-.-] +K07459 ybjD; putative ATP-dependent endonuclease of the OLD family +K07460 yraN; putative endonuclease +K07461 K07461; putative endonuclease +K07462 recJ; single-stranded-DNA-specific exonuclease [EC:3.1.-.-] +K07463 K07463; archaea-specific RecJ-like exonuclease +K07464 cas4; CRISPR-associated exonuclease Cas4 [EC:3.1.12.1] +K07465 K07465; putative RecB family exonuclease +K07466 RFA1, RPA1, rpa; replication factor A1 +K07467 nicK; putative DNA relaxase +K07468 K07468; DNA/RNA ligase [EC:6.5.1.-] +K07469 mop; aldehyde oxidoreductase [EC:1.2.99.7] +K07470 sbmC; DNA gyrase inhibitor +K07471 ygiV; probable transcriptional regulator +K07472 TIP49; TBP-interacting protein +K07473 dinJ; DNA-damage-inducible protein J +K07474 xtmA; phage terminase small subunit +K07475 cas3; CRISPR-associated endonuclease Cas3-HD [EC:3.1.-.-] +K07476 yusF; toprim domain protein +K07477 K07477; translin +K07478 ycaJ; putative ATPase +K07479 yrdD; putative DNA topoisomerase +K07480 insB; insertion element IS1 protein InsB +K07481 K07481; transposase, IS5 family +K07482 K07482; transposase, IS30 family +K07483 K07483; transposase +K07484 K07484; transposase +K07485 K07485; transposase +K07486 K07486; transposase +K07487 K07487; transposase +K07488 K07488; transposase +K07489 K07489; transposase +K07490 feoC; ferrous iron transport protein C +K07491 rayT; REP-associated tyrosine transposase +K07492 K07492; putative transposase +K07493 K07493; putative transposase +K07494 K07494; putative transposase +K07495 K07495; putative transposase +K07496 K07496; putative transposase +K07497 K07497; putative transposase +K07498 K07498; putative transposase +K07499 K07499; putative transposase +K07500 K07500; DNA endonuclease +K07501 K07501; 3'-5' exonuclease +K07502 yprB; uncharacterized protein +K07503 nucS; endonuclease [EC:3.1.-.-] +K07504 K07504; predicted type IV restriction endonuclease +K07505 repA; regulatory protein RepA +K07506 K07506; AraC family transcriptional regulator +K07507 mgtC; putative Mg2+ transporter-C (MgtC) family protein +K07508 ACAA2; acetyl-CoA acyltransferase 2 [EC:2.3.1.16] +K07509 HADHB; acetyl-CoA acyltransferase [EC:2.3.1.16] +K07511 ECHS1; enoyl-CoA hydratase [EC:4.2.1.17] +K07512 MECR, NRBF1; mitochondrial enoyl-[acyl-carrier protein] reductase / trans-2-enoyl-CoA reductase [EC:1.3.1.- 1.3.1.38] +K07513 ACAA1; acetyl-CoA acyltransferase 1 [EC:2.3.1.16] +K07514 EHHADH; enoyl-CoA hydratase / 3-hydroxyacyl-CoA dehydrogenase / 3,2-trans-enoyl-CoA isomerase [EC:4.2.1.17 1.1.1.35 5.3.3.8] +K07515 HADHA; enoyl-CoA hydratase / long-chain 3-hydroxyacyl-CoA dehydrogenase [EC:4.2.1.17 1.1.1.211] +K07516 fadN; 3-hydroxyacyl-CoA dehydrogenase [EC:1.1.1.35] +K07517 ECI1_2; Delta3-Delta2-enoyl-CoA isomerase [EC:5.3.3.8] +K07518 E3.1.1.22; hydroxybutyrate-dimer hydrolase [EC:3.1.1.22] +K07520 ABLIM; actin-binding LIM protein +K07521 UNC5; netrin receptor unc-5 +K07522 NTNG1; netrin-G1 +K07523 LRRC4C, NGL1; netrin-G1 ligand +K07524 RGS3; regulator of G-protein signalling 3 +K07525 NGEF, EPHEXIN, ARHGEF27; neuronal guanine nucleotide exchange factor +K07526 SRGAP; SLIT-ROBO Rho GTPase activating protein +K07527 FES, FPS; tyrosine-protein kinase Fes/Fps [EC:2.7.10.2] +K07528 DPYSL2, CRMP2; dihydropyrimidinase-like 2 +K07529 DPYSL5, CRAM; dihydropyrimidinase-like 5 +K07530 RHOD; Ras homolog gene family, member D +K07531 RND1; Rho family GTPase 1 +K07532 ARHGEF12, LARG; Rho guanine nucleotide exchange factor 12 +K07533 prsA; foldase protein PrsA [EC:5.2.1.8] +K07534 badK; cyclohex-1-ene-1-carboxyl-CoA hydratase [EC:4.2.1.-] +K07535 badH; 2-hydroxycyclohexanecarboxyl-CoA dehydrogenase [EC:1.1.1.-] +K07536 badI; 2-ketocyclohexanecarboxyl-CoA hydrolase [EC:3.1.2.-] +K07537 dch; cyclohexa-1,5-dienecarbonyl-CoA hydratase [EC:4.2.1.100] +K07538 had; 6-hydroxycyclohex-1-ene-1-carbonyl-CoA dehydrogenase [EC:1.1.1.368] +K07539 oah; 6-oxocyclohex-1-ene-carbonyl-CoA hydrolase [EC:3.7.1.21] +K07540 E4.1.99.11; benzylsuccinate synthase [EC:4.1.99.11] +K07541 PIGX; GPI mannosyltransferase 1 subunit X +K07542 PIGV; GPI mannosyltransferase 2 [EC:2.4.1.-] +K07543 bbsE; benzylsuccinate CoA-transferase BbsE subunit [EC:2.8.3.15] +K07544 bbsF; benzylsuccinate CoA-transferase BbsF subunit [EC:2.8.3.15] +K07545 bbsG; (R)-benzylsuccinyl-CoA dehydrogenase [EC:1.3.8.3] +K07546 bbsH; (E)-benzylidenesuccinyl-CoA hydratase [EC:4.2.1.180] +K07547 bbsC; (2S)-[(R)-hydroxy(phenyl)methyl]-succinyl-CoA dehydrogenase BbsC subunit [EC:1.1.1.429] +K07548 bbsD; (2S)-[(R)-hydroxy(phenyl)methyl]-succinyl-CoA dehydrogenase BbsD subunit [EC:1.1.1.429] +K07549 bbsA; benzoylsuccinyl-CoA thiolase BbsA subunit [EC:2.3.1.310] +K07550 bbsB; benzoylsuccinyl-CoA thiolase BbsB subunit [EC:2.3.1.310] +K07552 bcr, tcaB; MFS transporter, DHA1 family, multidrug resistance protein +K07553 B4GALT6; beta-1,4-galactosyltransferase 6 [EC:2.4.1.274] +K07554 ATPeF0S, ATP5S; ATP synthase, H+ transporting, mitochondrial F0 complex, subunit s +K07555 ATPeAF1, ATPAF1, ATP11; ATP synthase mitochondrial F1 complex assembly factor 1 +K07556 ATPeAF2, ATPAF2, ATP12; ATP synthase mitochondrial F1 complex assembly factor 2 +K07557 tgtA2, arcS; archaeosine synthase alpha-subunit [EC:2.6.1.97 2.6.1.-] +K07558 K07558, cca; tRNA nucleotidyltransferase (CCA-adding enzyme) [EC:2.7.7.72] +K07559 kptA; putative RNA 2'-phosphotransferase [EC:2.7.1.-] +K07560 dtd, DTD; D-aminoacyl-tRNA deacylase [EC:3.1.1.96] +K07561 DPH1, dph2; 2-(3-amino-3-carboxypropyl)histidine synthase [EC:2.5.1.108] +K07562 NMD3; 60S ribosomal export protein NMD3 +K07565 NIP7; 60S ribosome subunit biogenesis protein NIP7 +K07566 tsaC, rimN, SUA5, YRDC; L-threonylcarbamoyladenylate synthase [EC:2.7.7.87] +K07568 queA; S-adenosylmethionine:tRNA ribosyltransferase-isomerase [EC:2.4.99.17] +K07569 gar1; RNA-binding protein +K07570 GSP13; general stress protein 13 +K07571 K07571; S1 RNA binding domain protein +K07572 K07572; putative nucleotide binding protein +K07573 CSL4, EXOSC1; exosome complex component CSL4 +K07574 yhbY; RNA-binding protein +K07575 MCTS, TMA20; malignant T-cell-amplified sequence +K07576 K07576; metallo-beta-lactamase family protein +K07577 K07577; putative mRNA 3-end processing factor +K07578 K07578; homologs of the eukaryotic argonaute protein +K07579 K07579; putative methylase +K07580 K07580; Zn-ribbon RNA-binding protein +K07581 K07581; RNA-binding protein +K07583 PUS10; tRNA pseudouridine synthase 10 [EC:5.4.99.25] +K07584 ysxB; uncharacterized protein +K07585 K07585; tRNA methyltransferase +K07586 ygaC; uncharacterized protein +K07587 sepRS; O-phosphoseryl-tRNA synthetase [EC:6.1.1.27] +K07588 MMAA, argK; GTPase [EC:3.6.5.-] +K07589 folX; D-erythro-7,8-dihydroneopterin triphosphate epimerase [EC:5.1.99.7] +K07590 RP-L7A, rplGB; large subunit ribosomal protein L7A +K07591 tdcR; threonine dehydratase operon activator protein +K07592 tdcA; LysR family transcriptional regulator, tdc operon transcriptional activator +K07593 SLC2A2, GLUT2; MFS transporter, SP family, solute carrier family 2 (facilitated glucose transporter), member 2 +K07594 IPF1, PDX1; insulin promoter factor 1 +K07595 MAFA; transcription factor MAFA +K07596 DSG1; desmoglein 1 +K07597 DSG2; desmoglein 2 +K07598 DSG3; desmoglein 3 +K07599 DSG4; desmoglein 4 +K07600 DSC1; desmocollin 1 +K07601 DSC2; desmocollin 2 +K07602 DSC3; desmocollin 3 +K07603 COL17A, BP180; collagen type XVII alpha +K07604 KRT1; type I keratin, acidic +K07605 KRT2; type II keratin, basic +K07606 VIM; vimentin +K07607 PRPH; peripherin +K07608 NF66, INA; internexin neuronal intermediate filament protein, alpha +K07609 NES; nestin +K07610 DES; desmin +K07611 LMNB; lamin B +K07612 GJA3, CX46; gap junction alpha-3 protein +K07613 GJA4, CX37; gap junction alpha-4 protein +K07614 GJA5, CX40; gap junction alpha-5 protein +K07615 GJA6, CX33; gap junction alpha-6 protein +K07616 GJC1, GJA7, CX45; gap junction gamma-1 protein +K07617 GJA8, CX50; gap junction alpha-8 protein +K07618 GJA9; gap junction alpha-9 protein +K07619 GJC2, GJA12, CX47; gap junction gamma-2 protein +K07620 GJB1, CX32; gap junction beta-1 protein +K07621 GJB2, CX26; gap junction beta-2 protein +K07622 GJB3, CX31; gap junction beta-3 protein +K07623 GJB4, CX30.3; gap junction beta-4 protein +K07624 GJB5, CX31.1; gap junction beta-5 protein +K07625 GJB6, CX30; gap junction beta-6 protein +K07626 GJB7, CX25; gap junction beta-7 protein +K07627 GJD3, GJC1; gap junction delta-3 protein +K07628 GJC3, GJE1, CX29; gap junction gamma-3 protein +K07630 GJD4; gap junction delta-4 protein +K07631 GJA10; gap junction alpha-10 protein +K07632 FUT4; galactoside alpha-1,3-fucosyltransferase 4 [EC:2.4.1.-] +K07633 FUT5; galactoside alpha-1,3-fucosyltransferase 5 [EC:2.4.1.65] +K07634 FUT6; galactoside alpha-1,3-fucosyltransferase 6 [EC:2.4.1.65] +K07635 FUT7; galactoside alpha-1,3-fucosyltransferase 7 [EC:2.4.1.-] +K07636 phoR; two-component system, OmpR family, phosphate regulon sensor histidine kinase PhoR [EC:2.7.13.3] +K07637 phoQ; two-component system, OmpR family, sensor histidine kinase PhoQ [EC:2.7.13.3] +K07638 envZ; two-component system, OmpR family, osmolarity sensor histidine kinase EnvZ [EC:2.7.13.3] +K07639 rstB; two-component system, OmpR family, sensor histidine kinase RstB [EC:2.7.13.3] +K07640 cpxA; two-component system, OmpR family, sensor histidine kinase CpxA [EC:2.7.13.3] +K07641 creC; two-component system, OmpR family, sensor histidine kinase CreC [EC:2.7.13.3] +K07642 baeS, smeS; two-component system, OmpR family, sensor histidine kinase BaeS [EC:2.7.13.3] +K07643 basS; two-component system, OmpR family, sensor histidine kinase BasS [EC:2.7.13.3] +K07644 cusS, copS, silS; two-component system, OmpR family, heavy metal sensor histidine kinase CusS [EC:2.7.13.3] +K07645 qseC; two-component system, OmpR family, sensor histidine kinase QseC [EC:2.7.13.3] +K07646 kdpD; two-component system, OmpR family, sensor histidine kinase KdpD [EC:2.7.13.3] +K07647 torS; two-component system, OmpR family, sensor histidine kinase TorS [EC:2.7.13.3] +K07648 arcB; two-component system, OmpR family, aerobic respiration control sensor histidine kinase ArcB [EC:2.7.13.3] +K07649 tctE; two-component system, OmpR family, sensor histidine kinase TctE [EC:2.7.13.3] +K07650 cssS; two-component system, OmpR family, sensor histidine kinase CssS [EC:2.7.13.3] +K07651 resE; two-component system, OmpR family, sensor histidine kinase ResE [EC:2.7.13.3] +K07652 vicK; two-component system, OmpR family, sensor histidine kinase VicK [EC:2.7.13.3] +K07653 mprB; two-component system, OmpR family, sensor histidine kinase MprB [EC:2.7.13.3] +K07654 mtrB; two-component system, OmpR family, sensor histidine kinase MtrB [EC:2.7.13.3] +K07655 prrB; two-component system, OmpR family, sensor histidine kinase PrrB [EC:2.7.13.3] +K07656 trcS; two-component system, OmpR family, sensor histidine kinase TrcS [EC:2.7.13.3] +K07657 phoB; two-component system, OmpR family, phosphate regulon response regulator PhoB +K07658 phoB1, phoP; two-component system, OmpR family, alkaline phosphatase synthesis response regulator PhoP +K07659 ompR; two-component system, OmpR family, phosphate regulon response regulator OmpR +K07660 phoP; two-component system, OmpR family, response regulator PhoP +K07661 rstA; two-component system, OmpR family, response regulator RstA +K07662 cpxR; two-component system, OmpR family, response regulator CpxR +K07663 creB; two-component system, OmpR family, catabolic regulation response regulator CreB +K07664 baeR, smeR; two-component system, OmpR family, response regulator BaeR +K07665 cusR, copR, silR; two-component system, OmpR family, copper resistance phosphate regulon response regulator CusR +K07666 qseB; two-component system, OmpR family, response regulator QseB +K07667 kdpE; two-component system, OmpR family, KDP operon response regulator KdpE +K07668 vicR; two-component system, OmpR family, response regulator VicR +K07669 mprA; two-component system, OmpR family, response regulator MprA +K07670 mtrA; two-component system, OmpR family, response regulator MtrA +K07671 prrA; two-component system, OmpR family, response regulator PrrA +K07672 trcR; two-component system, OmpR family, response regulator TrcR +K07673 narX; two-component system, NarL family, nitrate/nitrite sensor histidine kinase NarX [EC:2.7.13.3] +K07674 narQ; two-component system, NarL family, nitrate/nitrite sensor histidine kinase NarQ [EC:2.7.13.3] +K07675 uhpB; two-component system, NarL family, sensor histidine kinase UhpB [EC:2.7.13.3] +K07676 rcsD; two-component system, NarL family, sensor histidine kinase RcsD [EC:2.7.13.3] +K07677 rcsC; two-component system, NarL family, capsular synthesis sensor histidine kinase RcsC [EC:2.7.13.3] +K07678 barA, gacS, varS; two-component system, NarL family, sensor histidine kinase BarA [EC:2.7.13.3] +K07679 evgS, bvgS; two-component system, NarL family, sensor histidine kinase EvgS [EC:2.7.13.3] +K07680 comP; two-component system, NarL family, sensor histidine kinase ComP [EC:2.7.13.3] +K07681 vraS; two-component system, NarL family, vancomycin resistance sensor histidine kinase VraS [EC:2.7.13.3] +K07682 devS; two-component system, NarL family, sensor histidine kinase DevS [EC:2.7.13.3] +K07683 nreB; two-component system, NarL family, sensor histidine kinase NreB [EC:2.7.13.3] +K07684 narL; two-component system, NarL family, nitrate/nitrite response regulator NarL +K07685 narP; two-component system, NarL family, nitrate/nitrite response regulator NarP +K07686 uhpA; two-component system, NarL family, uhpT operon response regulator UhpA +K07687 rcsB; two-component system, NarL family, captular synthesis response regulator RcsB +K07688 fimZ; two-component system, NarL family, response regulator, fimbrial Z protein, FimZ +K07689 uvrY, gacA, varA; two-component system, NarL family, invasion response regulator UvrY +K07690 evgA, bvgA; two-component system, NarL family, response regulator EvgA +K07691 comA; two-component system, NarL family, competent response regulator ComA +K07692 degU; two-component system, NarL family, response regulator DegU +K07693 desR; two-component system, NarL family, response regulator DesR +K07694 vraR; two-component system, NarL family, vancomycin resistance associated response regulator VraR +K07695 devR; two-component system, NarL family, response regulator DevR +K07696 nreC; two-component system, NarL family, response regulator NreC +K07697 kinB; two-component system, sporulation sensor kinase B [EC:2.7.13.3] +K07698 kinC; two-component system, sporulation sensor kinase C [EC:2.7.13.3] +K07699 spo0A; two-component system, response regulator, stage 0 sporulation protein A +K07700 dpiB, citA; two-component system, CitB family, cit operon sensor histidine kinase CitA [EC:2.7.13.3] +K07701 dcuS; two-component system, CitB family, sensor histidine kinase DcuS [EC:2.7.13.3] +K07702 dpiA, citB; two-component system, CitB family, response regulator CitB +K07703 dcuR; two-component system, CitB family, response regulator DcuR +K07704 lytS; two-component system, LytTR family, sensor histidine kinase LytS [EC:2.7.13.3] +K07705 lytT, lytR; two-component system, LytTR family, response regulator LytT +K07706 agrC, blpH, fsrC; two-component system, LytTR family, sensor histidine kinase AgrC [EC:2.7.13.3] +K07707 agrA, blpR, fsrA; two-component system, LytTR family, response regulator AgrA +K07708 glnL, ntrB; two-component system, NtrC family, nitrogen regulation sensor histidine kinase GlnL [EC:2.7.13.3] +K07709 zraS, hydH; two-component system, NtrC family, sensor histidine kinase HydH [EC:2.7.13.3] +K07710 atoS; two-component system, NtrC family, sensor histidine kinase AtoS [EC:2.7.13.3] +K07711 glrK, qseE; two-component system, NtrC family, sensor histidine kinase GlrK [EC:2.7.13.3] +K07712 glnG, ntrC; two-component system, NtrC family, nitrogen regulation response regulator GlnG +K07713 zraR, hydG; two-component system, NtrC family, response regulator HydG +K07714 atoC; two-component system, NtrC family, response regulator AtoC +K07715 glrR, qseF; two-component system, NtrC family, response regulator GlrR +K07716 pleC; two-component system, cell cycle sensor histidine kinase PleC [EC:2.7.13.3] +K07717 glnK; two-component system, sensor histidine kinase GlnK [EC:2.7.13.3] +K07718 yesM; two-component system, sensor histidine kinase YesM [EC:2.7.13.3] +K07719 glnL; two-component system, response regulator GlnL +K07720 yesN; two-component system, response regulator YesN +K07721 K07721; ArsR family transcriptional regulator +K07722 nikR; CopG family transcriptional regulator, nickel-responsive regulator +K07723 ndoAI; CopG family transcriptional regulator / antitoxin EndoAI +K07724 ner, nlp, sfsB; Ner family transcriptional regulator +K07725 csa3; CRISPR-associated protein Csa3 +K07726 K07726; putative transcriptional regulator +K07727 K07727; putative transcriptional regulator +K07728 K07728; putative transcriptional regulator +K07729 K07729; putative transcriptional regulator +K07730 K07730; putative transcriptional regulator +K07731 K07731; putative transcriptional regulator +K07732 rfk; riboflavin kinase, archaea type [EC:2.7.1.161] +K07733 alpA; prophage regulatory protein +K07734 paiB; transcriptional regulator +K07735 algH; putative transcriptional regulator +K07736 carD; CarD family transcriptional regulator, regulator of rRNA transcription +K07738 nrdR; transcriptional repressor NrdR +K07739 ELP3, KAT9; elongator complex protein 3 (tRNA carboxymethyluridine synthase) [EC:2.3.1.311] +K07740 rsd; regulator of sigma D +K07741 antB; anti-repressor protein +K07742 ylxR; uncharacterized protein +K07743 K07743; transcriptional regulator +K07744 K07744; transcriptional regulator +K07745 K07745; transcriptional regulator +K07746 parD1_3_4; antitoxin ParD1/3/4 +K07747 BACE2; beta-site APP-cleaving enzyme 2 (memapsin 1) [EC:3.4.23.45] +K07748 NSDHL, ERG26; sterol-4alpha-carboxylate 3-dehydrogenase (decarboxylating) [EC:1.1.1.170] +K07749 frc; formyl-CoA transferase [EC:2.8.3.16] +K07750 MESO1, ERG25; methylsterol monooxygenase [EC:1.14.18.9] +K07751 pepB; PepB aminopeptidase [EC:3.4.11.23] +K07752 CPD; carboxypeptidase D [EC:3.4.17.22] +K07753 PECR; peroxisomal trans-2-enoyl-CoA reductase [EC:1.3.1.38] +K07754 DIO3; thyroxine 5-deiodinase [EC:1.21.99.3] +K07755 AS3MT; arsenite methyltransferase [EC:2.1.1.137] +K07756 IP6K, IHPK; inositol-hexakisphosphate 5-kinase [EC:2.7.4.21] +K07757 ybiV; sugar-phosphatase [EC:3.1.3.23] +K07758 PDXP; pyridoxal phosphatase [EC:3.1.3.74] +K07759 PARG; poly(ADP-ribose) glycohydrolase [EC:3.2.1.143] +K07760 CDK; cyclin-dependent kinase [EC:2.7.11.22] +K07761 5MMP; metalloendoproteinase 5-MMP [EC:3.4.24.-] +K07762 PAPPA; pappalysin-1 [EC:3.4.24.79] +K07763 MMP14; matrix metalloproteinase-14 (membrane-inserted) [EC:3.4.24.80] +K07764 ADAMTS4; a disintegrin and metalloproteinase with thrombospondin motifs 4 [EC:3.4.24.82] +K07765 MBTPS2; S2P endopeptidase [EC:3.4.24.85] +K07766 E3.6.1.52; diphosphoinositol-polyphosphate diphosphatase [EC:3.6.1.52] +K07767 KATNA1; katanin p60 ATPase-containing subunit A1 [EC:5.6.1.1] +K07768 senX3; two-component system, OmpR family, sensor histidine kinase SenX3 [EC:2.7.13.3] +K07769 nblS, dfr, dspA, hik33; two-component system, OmpR family, sensor histidine kinase NblS [EC:2.7.13.3] +K07770 cssR; two-component system, OmpR family, response regulator CssR +K07771 basR; two-component system, OmpR family, response regulator BasR +K07772 torR; two-component system, OmpR family, torCAD operon response regulator TorR +K07773 arcA; two-component system, OmpR family, aerobic respiration control protein ArcA +K07774 tctD; two-component system, OmpR family, response regulator TctD +K07775 resD; two-component system, OmpR family, response regulator ResD +K07776 regX3; two-component system, OmpR family, response regulator RegX3 +K07777 degS; two-component system, NarL family, sensor histidine kinase DegS [EC:2.7.13.3] +K07778 desK; two-component system, NarL family, sensor histidine kinase DesK [EC:2.7.13.3] +K07779 CHST13; chondroitin 4-sulfotransferase 13 [EC:2.8.2.5] +K07780 appY; AraC family transcriptional regulator, transcriptional regulator required for anaerobic and stationary phase induction of genes +K07781 rcsA; LuxR family transcriptional regulator, capsular biosynthesis positive transcription factor +K07782 sdiA; LuxR family transcriptional regulator, quorum-sensing system regulator SdiA +K07783 uhpC; MFS transporter, OPA family, sugar phosphate sensor protein UhpC +K07784 uhpT; MFS transporter, OPA family, hexose phosphate transport protein UhpT +K07785 nrsD, nreB; MFS transporter, NRE family, putaive nickel resistance protein +K07786 emrY; MFS transporter, DHA2 family, multidrug resistance protein +K07787 cusA, silA; copper/silver efflux system protein +K07788 mdtB; multidrug efflux pump +K07789 mdtC; multidrug efflux pump +K07790 pagO; putative membrane protein PagO +K07791 dcuA; anaerobic C4-dicarboxylate transporter DcuA +K07792 dcuB; anaerobic C4-dicarboxylate transporter DcuB +K07793 tctA; putative tricarboxylic transport membrane protein +K07794 tctB; putative tricarboxylic transport membrane protein +K07795 tctC; putative tricarboxylic transport membrane protein +K07796 cusC, silC; outer membrane protein, copper/silver efflux system +K07797 emrK; multidrug resistance protein K +K07798 cusB, silB; membrane fusion protein, copper/silver efflux system +K07799 mdtA; membrane fusion protein, multidrug efflux system +K07800 agrD; AgrD protein +K07801 pagK; PhoPQ-activated protein +K07802 trpL; trp operon leader peptide +K07803 zraP; zinc resistance-associated protein +K07804 pagC; putatice virulence related protein PagC +K07805 pagD; putative membrane protein PagD +K07806 arnB, pmrH; UDP-4-amino-4-deoxy-L-arabinose-oxoglutarate aminotransferase [EC:2.6.1.87] +K07807 K07807; uncharacterized protein +K07808 HS3ST2; [heparan sulfate]-glucosamine 3-sulfotransferase 2 [EC:2.8.2.29] +K07809 HS3ST3; [heparan sulfate]-glucosamine 3-sulfotransferase 3 [EC:2.8.2.30] +K07810 cusF; Cu(I)/Ag(I) efflux system periplasmic protein CusF +K07811 torA; trimethylamine-N-oxide reductase (cytochrome c) [EC:1.7.2.3] +K07812 torZ; trimethylamine-N-oxide reductase (cytochrome c) [EC:1.7.2.3] +K07813 agrB; accessory gene regulator B +K07814 K07814; cyclic di-GMP phosphodiesterase [EC:3.1.4.-] +K07816 E2.7.6.5; GTP pyrophosphokinase [EC:2.7.6.5] +K07817 PTPRN; receptor-type tyrosine-protein phosphatase N [EC:3.1.3.48] +K07818 PRF1; perforin 1 +K07819 B3GALT1; beta-1,3-galactosyltransferase 1 [EC:2.4.1.86] +K07820 B3GALT2; beta-1,3-galactosyltransferase 2 [EC:2.4.1.86] +K07821 torY; trimethylamine-N-oxide reductase (cytochrome c), cytochrome c-type subunit TorY +K07822 flaC; archaeal flagellar protein FlaC +K07823 pcaF; 3-oxoadipyl-CoA thiolase [EC:2.3.1.174] +K07824 CYP53A1; benzoate 4-monooxygenase [EC:1.14.14.92] +K07825 GNB3; guanine nucleotide-binding protein G(I)/G(S)/G(T) subunit beta-3 +K07826 GNG2; guanine nucleotide-binding protein G(I)/G(S)/G(O) subunit gamma-2 +K07827 KRAS, KRAS2; GTPase KRas +K07828 NRAS; GTPase NRas +K07829 RRAS; Ras-related protein R-Ras +K07830 RRAS2, TC21; Ras-related protein R-Ras2 +K07831 MRAS; Ras-related protein M-Ras +K07832 RIT1; Ras-like without CAAX 1 +K07833 RIT2, RIN; Ras-like without CAAX 2 +K07834 RALA; Ras-related protein Ral-A +K07835 RALB; Ras-related protein Ral-B +K07836 RAP1B; Ras-related protein Rap-1B +K07837 RAP2A; Ras-related protein Rap-2A +K07838 RAP2B; Ras-related protein Rap-2B +K07839 RAP2C; Ras-related protein Rap-2C +K07840 DIRAS1; DIRAS family, GTP-binding Ras-like 1 +K07841 DIRAS2; DIRAS family, GTP-binding Ras-like 2 +K07842 DIRAS3, NOEY2; DIRAS family, GTP-binding Ras-like 3 +K07843 RASD1; RAS, dexamethasone-induced Ras-related protein 1 +K07844 RASD2; RASD family, member 2 +K07845 RRAD, RAD1; Ras-related associated with diabetes +K07846 GEM; GTP binding protein overexpressed in skeletal muscle +K07847 REM1; Rad and Gem related GTP binding protein 1 +K07848 REM2; Rad and Gem related GTP binding protein 2 +K07849 RHEBL1; Ras homolog enriched in brain like 1 +K07850 RASL10A, RRP22; Ras-like protein family member 10A +K07851 RASL10B; Ras-like protein family member 10B +K07852 RASL11A; Ras-like protein family member 11A +K07853 RASL11B; Ras-like protein family member 11B +K07854 RASL12, RIS; Ras-like protein family member 12 +K07855 RERG; Ras-related and estrogen-regulated growth inhibitor +K07856 RHOB; Ras homolog gene family, member B +K07857 RHOC; Ras homolog gene family, member C +K07858 RND2; Rho family GTPase 2 +K07859 RND3; Rho family GTPase 3 +K07860 RAC2; Ras-related C3 botulinum toxin substrate 2 +K07861 RAC3; Ras-related C3 botulinum toxin substrate 3 +K07862 sstT; serine/threonine transporter +K07863 RHOG; Ras homolog gene family, member G +K07864 RHOJ, TCL; Ras homolog gene family, member J +K07865 RHOU, WRCH1; Ras homolog gene family, member U +K07866 RHOV, WRCH2; Ras homolog gene family, member V +K07868 RHOBTB1_2; Rho-related BTB domain-containing protein 1/2 +K07869 RHOBTB3; Rho-related BTB domain-containing protein 3 +K07870 RHOT1, ARHT1; mitochondrial Rho GTPase 1 [EC:3.6.5.-] +K07871 RHOT2, ARHT2; mitochondrial Rho GTPase 2 [EC:3.6.5.-] +K07872 RHOF, RIF; Ras homolog gene family, member F +K07873 RHOH, TTF; Ras homolog gene family, member H +K07874 RAB1A; Ras-related protein Rab-1A +K07875 RAB1B; Ras-related protein Rab-1B +K07876 RAB35, RAB1C; Ras-related protein Rab-35 +K07877 RAB2A; Ras-related protein Rab-2A +K07878 RAB2B; Ras-related protein Rab-2B +K07879 RAB4A, RAB4; Ras-related protein Rab-4A +K07880 RAB4B; Ras-related protein Rab-4B +K07881 RAB14; Ras-related protein Rab-14 +K07882 RAB3A; Ras-related protein Rab-3A +K07883 RAB3C; Ras-related protein Rab-3C +K07884 RAB3D; Ras-related protein Rab-3D +K07885 RAB27A; Ras-related protein Rab-27A +K07886 RAB27B; Ras-related protein Rab-27B +K07887 RAB5A; Ras-related protein Rab-5A +K07888 RAB5B; Ras-related protein Rab-5B +K07889 RAB5C; Ras-related protein Rab-5C +K07890 RAB21; Ras-related protein Rab-21 +K07891 RAB22; Ras-related protein Rab-22 +K07893 RAB6A; Ras-related protein Rab-6A +K07894 RAB6B; Ras-related protein Rab-6B +K07895 RAB6C; Ras-related protein Rab-6C +K07896 RAB41; Ras-related protein Rab-41 +K07897 RAB7A; Ras-related protein Rab-7A +K07898 RAB7B; Ras-related protein Rab-7B +K07899 RAB9A, RAB9; Ras-related protein Rab-9A +K07900 RAB9B; Ras-related protein Rab-9B +K07901 RAB8A, MEL; Ras-related protein Rab-8A +K07902 RAB8B; Ras-related protein Rab-8B +K07903 RAB10; Ras-related protein Rab-10 +K07904 RAB11A; Ras-related protein Rab-11A +K07905 RAB11B; Ras-related protein Rab-11B +K07906 RAB25; Ras-related protein Rab-25 +K07907 RAB12; Ras-related protein Rab-12 +K07908 RAB15; Ras-related protein Rab-15 +K07909 RAB17; Ras-related protein Rab-17 +K07910 RAB18; Ras-related protein Rab-18 +K07911 RAB20; Ras-related protein Rab-20 +K07912 RAB24; Ras-related protein Rab-24 +K07913 RAB26; Ras-related protein Rab-26 +K07914 RAB37; Ras-related protein Rab-37 +K07915 RAB28; Ras-related protein Rab-28 +K07916 RAB7L1, RAB7L; Ras-related protein Rab-7L1 +K07917 RAB30; Ras-related protein Rab-30 +K07918 RAB32; Ras-related protein Rab-32 +K07919 RAB33A; Ras-related protein Rab-33A +K07920 RAB33B; Ras-related protein Rab-33B +K07921 RAB34; Ras-related protein Rab-34 +K07922 RAB36; Ras-related protein Rab-36 +K07923 RAB38; Ras-related protein Rab-38 +K07924 RAB39A; Ras-related protein Rab-39A +K07925 RAB39B; Ras-related protein Rab-39B +K07928 RAB40; Ras-related protein Rab-40 +K07929 RAB42; Ras-related protein Rab-42 +K07930 RAB43; Ras-related protein Rab-43 +K07931 RABL2; Rab-like protein 2 +K07933 RABL3; Rab-like protein 3 +K07934 IFT27, RAYL, RABL4; intraflagellar transport protein 27 +K07935 IFT22, RABL5; intraflagellar transport protein 22 +K07936 RAN; GTP-binding nuclear protein Ran +K07937 ARF1_2; ADP-ribosylation factor 1/2 +K07938 ARF3; ADP-ribosylation factor 3 +K07939 ARF4; ADP-ribosylation factor 4 +K07940 ARF5; ADP-ribosylation factor 5 +K07941 ARF6; ADP-ribosylation factor 6 +K07942 ARL1; ADP-ribosylation factor-like protein 1 +K07943 ARL2; ADP-ribosylation factor-like protein 2 +K07944 ARL3; ADP-ribosylation factor-like protein 3 +K07945 ARL4; ADP-ribosylation factor-like protein 4 +K07949 ARL5A; ADP-ribosylation factor-like protein 5A +K07950 ARL5B; ADP-ribosylation factor-like protein 5B +K07951 ARL6, BBS3; ADP-ribosylation factor-like protein 6 +K07952 ARFRP1; ADP-ribosylation factor related protein 1 +K07953 SAR1; GTP-binding protein SAR1 [EC:3.6.5.-] +K07955 ARL8; ADP-ribosylation factor-like protein 8 +K07957 ARL9; ADP-ribosylation factor-like protein 9 +K07958 ARL10; ADP-ribosylation factor-like protein 10 +K07959 ARL11; ADP-ribosylation factor-like protein 11 +K07960 ARL12; ADP-ribosylation factor-like protein 12 +K07961 ARL13A; ADP-ribosylation factor-like protein 13A +K07962 ARL13B, ARL2L1; ADP-ribosylation factor-like protein 13B +K07963 TRIM23, ARFD1; tripartite motif-containing protein 23 [EC:2.3.2.27] +K07964 HPSE; heparanase [EC:3.2.1.166] +K07965 HPSE2; heparanase 2 [EC:3.2.1.-] +K07966 B4GALT1; beta-1,4-galactosyltransferase 1 [EC:2.4.1.22 2.4.1.90 2.4.1.38 2.4.1.-] +K07967 B4GALT2; beta-1,4-galactosyltransferase 2 [EC:2.4.1.22 2.4.1.90 2.4.1.38 2.4.1.-] +K07968 B4GALT3; beta-1,4-galactosyltransferase 3 [EC:2.4.1.90 2.4.1.38 2.4.1.-] +K07969 B4GALT4; beta-1,4-galactosyltransferase 4 [EC:2.4.1.90 2.4.1.275 2.4.1.-] +K07970 B3GNT3; beta-1,3-N-acetylglucosaminyltransferase 3 [EC:2.4.1.146 2.4.1.149] +K07971 B3GNT4; beta-1,3-N-acetylglucosaminyltransferase 4 [EC:2.4.1.149] +K07972 GNB; guanine nucleotide-binding protein subunit beta, other +K07973 GNG; guanine nucleotide-binding protein subunit gamma, fungi +K07975 K07975; Rho family, other +K07976 RAB; Rab family, other +K07978 plmA; GntR family transcriptional regulator +K07979 ytrA; GntR family transcriptional regulator +K07980 KIR3DL, CD158; killer cell immunoglobulin-like receptor 3DL +K07981 KIR2DL1_2_3, CD158A_B; killer cell immunoglobulin-like receptor 2DL1/2/3 +K07982 KIR2DS, CD158; killer cell immunoglobulin-like receptor 2DS +K07983 FCER1G; high affinity immunoglobulin epsilon receptor subunit gamma +K07984 SH3BP2; SH3-domain binding protein 2 +K07985 MIC; MHC class I-related protein +K07986 ULBP; UL16 binding protein +K07987 RAET1; retinoic acid early transcript 1 +K07988 HCST, DAP10; hematopoietic cell signal transducer +K07989 SH2D1B, EAT2; SH2 domain-containing protein 1B +K07990 SH2D1A, SAP; SH2 domain-containing protein 1A +K07991 flaK; archaeal preflagellin peptidase FlaK [EC:3.4.23.52] +K07992 TYROBP, DAP12; TYRO protein tyrosine kinase binding protein +K07993 MMP11; matrix metalloproteinase-11 (stromelysin 3) [EC:3.4.24.-] +K07994 MMP13; matrix metalloproteinase-13 (collagenase 3) [EC:3.4.24.-] +K07995 MMP15; matrix metalloproteinase-15 (membrane-inserted) [EC:3.4.24.-] +K07996 MMP16; matrix metalloproteinase-16 (membrane-inserted) [EC:3.4.24.-] +K07997 MMP17; matrix metalloproteinase-17 (membrane-inserted) [EC:3.4.24.-] +K07998 MMP19, MMP18; matrix metalloproteinase-19 (RASI) [EC:3.4.24.-] +K07999 MMP20; matrix metalloproteinase-20 (enamelysin) [EC:3.4.24.-] +K08000 MMP21; matrix metalloproteinase-21 [EC:3.4.24.-] +K08001 MMP23; matrix metalloproteinase-23 (CA-MMP) [EC:3.4.24.-] +K08002 MMP24; matrix metalloproteinase-24 (membrane-inserted) [EC:3.4.24.-] +K08003 MMP25; matrix metalloproteinase-25 (membrane-inserted) [EC:3.4.24.-] +K08004 MMP26; matrix metalloproteinase-26 (matrilysin-2, endometase) [EC:3.4.24.-] +K08005 MMP27; matrix metalloproteinase-27 [EC:3.4.24.-] +K08006 MMP28; matrix metalloproteinase-28 (epilysin) [EC:3.4.24.-] +K08007 EZR, VIL2; ezrin +K08008 NOX1, MOX1; NADPH oxidase 1 +K08009 CYBA, P22PHOX; cytochrome b-245, alpha polypeptide +K08010 NCF2, P67PHOX; neutrophil cytosolic factor 2 +K08011 NCF1, P47PHOX; neutrophil cytosolic factor 1 +K08012 NCF4, P40PHOX; neutrophil cytosolic factor 4 +K08013 SIPA1; signal-induced proliferation-associated gene 1 +K08014 RAPGEF3, EPAC1; Rap guanine nucleotide exchange factor 3 +K08015 RASSF5, RAPL; Ras association domain-containing protein 5 +K08016 TXK, RLK; tyrosine-protein kinase TXK [EC:2.7.10.2] +K08017 AVIL; advillin +K08018 RAPGEF2, PDZGEF1; Rap guanine nucleotide exchange factor 2 +K08019 RAPGEF5; Rap guanine nucleotide exchange factor 5 +K08020 RAPGEF6, PDZGEF2; Rap guanine nucleotide exchange factor 6 +K08021 ALOX12B; arachidonate 12-lipoxygenase (R-type) [EC:1.13.11.-] +K08022 ALOX15B; arachidonate 15-lipoxygenase (second type) / 8-lipoxygenase (S-type) [EC:1.13.11.33 1.13.11.-] +K08023 LTBP2_3_4; latent transforming growth factor beta binding protein 2/3/4 +K08024 HHEX, HEX, PRH; homeobox protein HEX +K08025 HLXB9, HB9; homeobox protein HB9 +K08026 ONECUT1, HNF6; one cut domain, family member 1 (hepatocyte nuclear factor 6) +K08027 NR5A2, FTF; nuclear receptor subfamily 5 group A member 2 +K08028 NEUROG3; neurogenin 3 +K08029 NKX2-2; homeobox protein Nkx-2.2 +K08030 NKX6-1; homeobox protein Nkx-6.1 +K08031 PAX6; paired box protein 6 +K08032 PAX4; paired box protein 4 +K08033 NEUROD1; neurogenic differentiation factor 1 +K08034 TCF2, HNF1B; transcription factor 2, hepatocyte nuclear factor 1-beta +K08035 FOXA2, HNF3B; forkhead box protein A2, hepatocyte nuclear factor 3-beta +K08036 TCF1, HNF1A; transcription factor 1, hepatocyte nuclear factor 1-alpha +K08037 NR2A2, HNF4G; hepatocyte nuclear factor 4-gamma +K08038 FOXA3, HNF3G; forkhead box protein A3, hepatocyte nuclear factor 3-gamma +K08039 IAPP; islet amyloid polypeptide +K08040 BHLHB8, MIST1; class B basic helix-loop-helix protein 8 +K08041 ADCY1; adenylate cyclase 1 [EC:4.6.1.1] +K08042 ADCY2; adenylate cyclase 2 [EC:4.6.1.1] +K08043 ADCY3; adenylate cyclase 3 [EC:4.6.1.1] +K08044 ADCY4; adenylate cyclase 4 [EC:4.6.1.1] +K08045 ADCY5; adenylate cyclase 5 [EC:4.6.1.1] +K08046 ADCY6; adenylate cyclase 6 [EC:4.6.1.1] +K08047 ADCY7; adenylate cyclase 7 [EC:4.6.1.1] +K08048 ADCY8; adenylate cyclase 8 [EC:4.6.1.1] +K08049 ADCY9; adenylate cyclase 9 [EC:4.6.1.1] +K08050 PPP1R1A; protein phosphatase 1 regulatory subunit 1A +K08051 PLEKHA8, FAPP2; pleckstrin homology domain containing family A member 8 +K08052 NF1; neurofibromin 1 +K08053 RASA2, GAP1M; Ras GTPase-activating protein 2 +K08054 CANX; calnexin +K08055 B2M; beta-2-microglobulin +K08056 PDIA3, GRP58; protein disulfide-isomerase A3 [EC:5.3.4.1] +K08057 CALR; calreticulin +K08058 TAPBP; TAP binding protein (tapasin) +K08059 IFI30, GILT; interferon, gamma-inducible protein 30 +K08060 CIITA; MHC class II transactivator [EC:2.7.11.1] +K08061 RFX5; regulatory factor X 5 +K08062 RFXANK; regulatory factor X-associated ankyrin-containing protein +K08063 RFXAP; regulatory factor X-associated protein +K08064 NFYA, HAP2; nuclear transcription factor Y, alpha +K08065 NFYB, HAP3; nuclear transcription Y subunit beta +K08066 NFYC, HAP5; nuclear transcription factor Y, gamma +K08067 PPP1R17, GSBS; protein phosphatase 1 regulatory subunit 17 +K08068 siaA, neuC1; UDP-N-acetylglucosamine 2-epimerase (hydrolysing) [EC:3.2.1.183] +K08069 VNN; pantetheine hydrolase [EC:3.5.1.92] +K08070 E1.3.1.74; 2-alkenal reductase [EC:1.3.1.74] +K08071 NQO2; ribosyldihydronicotinamide dehydrogenase (quinone) [EC:1.10.5.1] +K08073 PNKP; bifunctional polynucleotide phosphatase/kinase [EC:3.1.3.32 2.7.1.78] +K08074 ADPGK; ADP-dependent glucokinase [EC:2.7.1.147] +K08075 E3.1.3.32; polynucleotide 3'-phosphatase [EC:3.1.3.32] +K08076 E3.4.24.21; astacin [EC:3.4.24.21] +K08077 NUDT14; UDP-sugar diphosphatase [EC:3.6.1.45] +K08079 K08079; mimosinase [EC:4.3.3.8] +K08080 CMAH; CMP-N-acetylneuraminate monooxygenase [EC:1.14.18.2] +K08081 TR1; tropinone reductase I [EC:1.1.1.206] +K08082 algZ; two-component system, LytTR family, sensor histidine kinase AlgZ [EC:2.7.13.3] +K08083 algR; two-component system, LytTR family, response regulator AlgR +K08084 fimT; type IV fimbrial biogenesis protein FimT +K08085 fimU; type IV fimbrial biogenesis protein FimU +K08086 fimV; pilus assembly protein FimV +K08087 fimW; fimbrial protein FimW +K08088 fimY; fimbrial regulator +K08089 FCER1A; high affinity immunoglobulin epsilon receptor subunit alpha +K08090 MS4A2, FCER1B; high affinity immunoglobulin epsilon receptor subunit beta +K08091 GAB2; GRB2-associated-binding protein 2 +K08092 dlgD; 3-dehydro-L-gulonate 2-dehydrogenase [EC:1.1.1.130] +K08093 hxlA; 3-hexulose-6-phosphate synthase [EC:4.1.2.43] +K08094 hxlB; 6-phospho-3-hexuloisomerase [EC:5.3.1.27] +K08095 CUT1_2_3; cutinase [EC:3.1.1.74] +K08096 gch3; GTP cyclohydrolase IIa [EC:3.5.4.29] +K08097 comA; phosphosulfolactate synthase [EC:4.4.1.19] +K08098 PIGZ, SMP3; GPI mannosyltransferase 4 [EC:2.4.1.-] +K08099 E3.1.1.14; chlorophyllase [EC:3.1.1.14] +K08100 E1.3.3.5; bilirubin oxidase [EC:1.3.3.5] +K08101 HY2; phytochromobilin:ferredoxin oxidoreductase [EC:1.3.7.4] +K08102 HS6ST2; heparan sulfate 6-O-sulfotransferase HS6ST2 [EC:2.8.2.-] +K08103 HS6ST3; heparan sulfate 6-O-sulfotransferase HS6ST3 [EC:2.8.2.-] +K08104 HS3ST5; [heparan sulfate]-glucosamine 3-sulfotransferase 5 [EC:2.8.2.23] +K08105 D4ST1; dermatan 4-sulfotransferase 1 [EC:2.8.2.35] +K08106 CHST15; N-acetylgalactosamine 4-sulfate 6-O-sulfotransferase [EC:2.8.2.33] +K08107 GPC1; glypican 1 +K08108 GPC2; glypican 2 +K08109 GPC3; glypican 3 +K08110 GPC4; glypican 4 +K08111 GPC5; glypican 5 +K08112 GPC6; glypican 6 +K08114 PTPRZ; receptor-type tyrosine-protein phosphatase zeta [EC:3.1.3.48] +K08115 CSPG4; chondroitin sulfate proteoglycan 4 +K08116 CSPG5; chondroitin sulfate proteoglycan 5 +K08117 APLP2; amyloid-like protein 2 +K08118 BGN; biglycan +K08119 ECM2; extracellular matrix protein 2 +K08120 ASPN; asporin +K08121 FMOD; fibromodulin +K08122 LUM; lumican +K08123 KERA; keratocan +K08124 OMD; osteomodulin +K08125 PRELP; prolargin +K08126 OGN; osteoglycin +K08127 EPYC, DSPG3; epiphycan +K08128 OPTC; opticin +K08129 NYX; nyctalopin +K08130 TSKU; tsukushi +K08131 COL9A; collagen type IX alpha +K08132 COL12A; collagen type XII alpha +K08133 COL14A; collagen type XIV alpha +K08134 P3H1; procollagen-proline 3-dioxygenase 1 [EC:1.14.11.7] +K08135 COL15A; collagen type XV alpha +K08136 SPOCK; testican +K08137 galP; MFS transporter, SP family, galactose:H+ symporter +K08138 xylE; MFS transporter, SP family, xylose:H+ symportor +K08139 HXT; MFS transporter, SP family, sugar:H+ symporter +K08141 MAL; MFS transporter, SP family, general alpha glucoside:H+ symporter +K08142 SLC2A3, GLUT3; MFS transporter, SP family, solute carrier family 2 (facilitated glucose transporter), member 3 +K08143 SLC2A5, GLUT5; MFS transporter, SP family, solute carrier family 2 (facilitated glucose/fructose transporter), member 5 +K08144 SLC2A6, GLUT6; MFS transporter, SP family, solute carrier family 2 (facilitated glucose transporter), member 6 +K08145 SLC2A8, GLUT8; MFS transporter, SP family, solute carrier family 2 (facilitated glucose transporter), member 8 +K08146 SLC2A9, GLUT9; MFS transporter, SP family, solute carrier family 2 (facilitated glucose transporter), member 9 +K08147 SLC2A10, GLUT10; MFS transporter, SP family, solute carrier family 2 (facilitated glucose transporter), member 10 +K08148 SLC2A11, GLUT11; MFS transporter, SP family, solute carrier family 2 (facilitated glucose transporter), member 11 +K08149 SLC2A12, GLUT12; MFS transporter, SP family, solute carrier family 2 (facilitated glucose transporter), member 12 +K08150 SLC2A13, ITR; MFS transporter, SP family, solute carrier family 2 (myo-inositol transporter), member 13 +K08151 tetA; MFS transporter, DHA1 family, tetracycline resistance protein +K08152 lmrP; MFS transporter, DHA1 family, multidrug resistance protein B +K08153 blt; MFS transporter, DHA1 family, multidrug resistance protein +K08154 emrD; MFS transporter, DHA1 family, 2-module integral membrane pump EmrD +K08155 SLC18A1_2, VMAT; MFS transporter, DHA1 family, solute carrier family 18 (vesicular amine transporter), member 1/2 +K08156 araJ; MFS transporter, DHA1 family, arabinose polymer utilization protein +K08157 TPO1; MFS transporter, DHA1 family, multidrug resistance protein +K08158 MDR1, FLR1, CAF5; MFS transporter, DHA1 family, multidrug resistance protein +K08159 sotB; MFS transporter, DHA1 family, L-arabinose/isopropyl-beta-D-thiogalactopyranoside export protein +K08160 mdfA, cmr; MFS transporter, DHA1 family, multidrug/chloramphenicol efflux transport protein +K08161 mdtG, pmrA; MFS transporter, DHA1 family, multidrug resistance protein +K08162 mdtH; MFS transporter, DHA1 family, multidrug resistance protein +K08163 mdtL; MFS transporter, DHA1 family, multidrug resistance protein +K08164 ybcL; MFS transporter, DHA1 family, putative efflux transporter +K08165 ATR1; MFS transporter, DHA2 family, multidrug resistance protein +K08166 mmr; MFS transporter, DHA2 family, methylenomycin A resistance protein +K08167 smvA, qacA, lfrA; MFS transporter, DHA2 family, multidrug resistance protein +K08168 tetB; MFS transporter, DHA2 family, metal-tetracycline-proton antiporter +K08169 yebQ; MFS transporter, DHA2 family, multidrug resistance protein +K08170 norB, norC; MFS transporter, DHA2 family, multidrug resistance protein +K08171 SLC37A4; MFS transporter, OPA family, solute carrier family 37 (glycerol-6-phosphate transporter), member 4 +K08172 shiA; MFS transporter, MHS family, shikimate and dehydroshikimate transport protein +K08173 ydfJ; MFS transporter, MHS family, metabolite:H+ symporter +K08174 glcP; MFS transporter, FHS family, glucose/mannose:H+ symporter +K08175 NAGLT1; MFS transporter, FHS family, Na+ dependent glucose transporter 1 +K08176 PHO84; MFS transporter, PHS family, inorganic phosphate transporter +K08177 oxlT; MFS transporter, OFA family, oxalate/formate antiporter +K08178 JEN; MFS transporter, SHS family, lactate transporter +K08179 SLC16A1; MFS transporter, MCT family, solute carrier family 16 (monocarboxylic acid transporters), member 1 +K08180 SLC16A3; MFS transporter, MCT family, solute carrier family 16 (monocarboxylic acid transporters), member 3 +K08181 SLC16A4; MFS transporter, MCT family, solute carrier family 16 (monocarboxylic acid transporters), member 4 +K08182 SLC16A5; MFS transporter, MCT family, solute carrier family 16 (monocarboxylic acid transporters), member 5 +K08183 SLC16A6; MFS transporter, MCT family, solute carrier family 16 (monocarboxylic acid transporters), member 6 +K08184 SLC16A7; MFS transporter, MCT family, solute carrier family 16 (monocarboxylic acid transporters), member 7 +K08185 SLC16A8; MFS transporter, MCT family, solute carrier family 16 (monocarboxylic acid transporters), member 8 +K08186 SLC16A9; MFS transporter, MCT family, solute carrier family 16 (monocarboxylic acid transporters), member 9 +K08187 SLC16A10; MFS transporter, MCT family, solute carrier family 16 (monocarboxylic acid transporters), member 10 +K08188 SLC16A11; MFS transporter, MCT family, solute carrier family 16 (monocarboxylic acid transporters), member 11 +K08189 SLC16A13; MFS transporter, MCT family, solute carrier family 16 (monocarboxylic acid transporters), member 13 +K08190 SLC16A14; MFS transporter, MCT family, solute carrier family 16 (monocarboxylic acid transporters), member 14 +K08191 exuT; MFS transporter, ACS family, aldohexuronate transporter +K08192 DAL5; MFS transporter, ACS family, DAL5 transporter family protein +K08193 SLC17A; MFS transporter, ACS family, solute carrier family 17 (sodium-dependent inorganic phosphate cotransporter), other +K08194 dgoT; MFS transporter, ACS family, D-galactonate transporter +K08195 pcaK; MFS transporter, AAHS family, 4-hydroxybenzoate transporter +K08196 mucK; MFS transporter, AAHS family, cis,cis-muconate transporter +K08197 ARN; MFS transporter, SIT family, siderophore-iron:H+ symporter +K08198 SLC22A1, OCT1; MFS transporter, OCT family, solute carrier family 22 (organic cation transporter), member 1 +K08199 SLC22A2, OCT2; MFS transporter, OCT family, solute carrier family 22 (organic cation transporter), member 2 +K08200 SLC22A3, OCT3; MFS transporter, OCT family, solute carrier family 22 (organic cation transporter), member 3 +K08202 SLC22A4_5, OCTN; MFS transporter, OCT family, solute carrier family 22 (organic cation transporter), member 4/5 +K08203 SLC22A6, OAT1; MFS transporter, OCT family, solute carrier family 22 (organic anion transporter), member 6 +K08204 SLC22A7, OAT2; MFS transporter, OCT family, solute carrier family 22 (organic anion transporter), member 7 +K08205 SLC22A8, OAT3; MFS transporter, OCT family, solute carrier family 22 (organic anion transporter), member 8 +K08206 SLC22A9S; MFS transporter, OCT family, solute carrier family 22 (organic anion/cation transporter), member 9/10/19/24/25 +K08207 SLC22A11, OAT4; MFS transporter, OCT family, solute carrier family 22 (organic anion/cation transporter), member 11 +K08208 SLC22A12, URAT1; MFS transporter, OCT family, solute carrier family 22 (organic anion/cation transporter), member 12 +K08209 SLC22A13; MFS transporter, OCT family, solute carrier family 22 (organic cation transporter), member 13 +K08210 SLC22A14; MFS transporter, OCT family, solute carrier family 22 (organic cation transporter), member 14 +K08211 SLC22A15; MFS transporter, OCT family, solute carrier family 22 (organic cation transporter), member 15 +K08212 SLC22A16; MFS transporter, OCT family, solute carrier family 22 (organic cation transporter), member 16 +K08213 SLC22A17; MFS transporter, OCT family, solute carrier family 22 (organic cation transporter), member 17 +K08214 SLC22A18; MFS transporter, OCT family, solute carrier family 22 (organic cation transporter), member 18 +K08215 SLC22A23; MFS transporter, OCT family, solute carrier family 22 (organic anion transporter), member 23 +K08216 SLC22A20; MFS transporter, OCT family, solute carrier family 22 (organic anion transporter), member 20 +K08217 mef; MFS transporter, DHA3 family, macrolide efflux protein +K08218 ampG; MFS transporter, PAT family, beta-lactamase induction signal transducer AmpG +K08219 UMF2; MFS transporter, UMF2 family, putative MFS family transporter protein +K08220 FLVCR, SLC49A1_2; MFS transporter, FLVCR family, feline leukemia virus subgroup C receptor-related protein +K08221 yitG, ymfD, yfmO; MFS transporter, ACDE family, multidrug resistance protein +K08222 yqgE; MFS transporter, YQGE family, putative transporter +K08223 fsr; MFS transporter, FSR family, fosmidomycin resistance protein +K08224 ynfM, yybF; MFS transporter, YNFM family, putative membrane transport protein +K08225 entS; MFS transporter, ENTS family, enterobactin (siderophore) exporter +K08226 pucC; MFS transporter, BCD family, chlorophyll transporter +K08227 lplT; MFS transporter, LPLT family, lysophospholipid transporter +K08228 SLC43A1; MFS transporter, LAT3 family, solute carrier family 43, member 1 +K08229 SLC43A2; MFS transporter, LAT3 family, solute carrier family 43, member 2 +K08230 SLC43A3; MFS transporter, LAT3 family, solute carrier family 43, member 3 +K08231 SLC16A2; MFS transporter, MCT family, solute carrier family 16 (monocarboxylic acid transporters), member 2 +K08232 E1.6.5.4; monodehydroascorbate reductase (NADH) [EC:1.6.5.4] +K08233 PNAE; polyneuridine-aldehyde esterase [EC:3.1.1.78] +K08234 yaeR; glyoxylase I family protein +K08235 E2.4.1.207; xyloglucan:xyloglucosyl transferase [EC:2.4.1.207] +K08236 E2.4.1.210; limonoid glucosyltransferase [EC:2.4.1.210] +K08237 E2.4.1.218; hydroquinone glucosyltransferase [EC:2.4.1.218] +K08238 XXT; xyloglucan 6-xylosyltransferase [EC:2.4.2.39] +K08239 GNPTAB; UDP-N-acetylglucosamine-lysosomal-enzyme [EC:2.7.8.17] +K08240 E2.7.11.7; myosin-heavy-chain kinase [EC:2.7.11.7] +K08241 E2.1.1.141; jasmonate O-methyltransferase [EC:2.1.1.141] +K08242 E2.1.1.143; 24-methylenesterol C-methyltransferase [EC:2.1.1.143] +K08243 CHR; chalcone reductase +K08244 R1; alpha-glucan, water dikinase [EC:2.7.9.4] +K08245 E3.4.23.40; phytepsin [EC:3.4.23.40] +K08246 CPI1; cycloeucalenol cycloisomerase [EC:5.5.1.9] +K08247 E2.1.1.12; methionine S-methyltransferase [EC:2.1.1.12] +K08248 MDL3; (R)-mandelonitrile lyase [EC:4.1.2.10] +K08249 E4.1.2.11; hydroxymandelonitrile lyase [EC:4.1.2.11] +K08251 A4GNT; alpha 1,4-N-acetylglucosaminyltransferase [EC:2.4.1.-] +K08252 E2.7.10.1; receptor protein-tyrosine kinase [EC:2.7.10.1] +K08253 E2.7.10.2; non-specific protein-tyrosine kinase [EC:2.7.10.2] +K08254 E3.2.1.59; glucan endo-1,3-alpha-glucosidase [EC:3.2.1.59] +K08255 cdr; CoA-disulfide reductase [EC:1.8.1.14] +K08256 pimA; phosphatidyl-myo-inositol alpha-mannosyltransferase [EC:2.4.1.345] +K08257 E3.2.1.101; mannan endo-1,6-alpha-mannosidase [EC:3.2.1.101] +K08258 sspB2, sspP, scpA; staphopain A [EC:3.4.22.48] +K08259 lytM; lysostaphin [EC:3.4.24.75] +K08260 cbiZ; adenosylcobinamide hydrolase [EC:3.5.1.90] +K08261 E1.1.99.21; D-sorbitol dehydrogenase (acceptor) [EC:1.1.99.21] +K08262 E1.14.19.39; acyl-lipid delta12-acetylenase [EC:1.14.19.39] +K08264 hdrD; heterodisulfide reductase subunit D [EC:1.8.98.1] +K08265 hdrE; heterodisulfide reductase subunit E [EC:1.8.98.1] +K08266 MLST8, GBL; target of rapamycin complex subunit LST8 +K08267 RICTOR; rapamycin-insensitive companion of mTOR +K08268 HIF1A; hypoxia-inducible factor 1 alpha +K08269 ULK2, ATG1; serine/threonine-protein kinase ULK2 [EC:2.7.11.1] +K08270 DDIT4, REDD1; DNA-damage-inducible transcript 4 +K08271 STRADA, LYK5; STE20-related kinase adapter protein alpha +K08272 CAB39, MO25; calcium binding protein 39 +K08273 SH2D2A, VRAP; SH2 domain-containing protein 2A +K08274 ltuA; late transcription unit A protein +K08275 ltuB; late transcription unit B protein +K08276 eco; ecotin +K08277 caiF; transcriptional activator CaiF +K08278 thrL; thr operon leader peptide +K08279 caiE; carnitine operon protein CaiE +K08280 wbbJ; lipopolysaccharide O-acetyltransferase [EC:2.3.1.-] +K08281 pncA; nicotinamidase/pyrazinamidase [EC:3.5.1.19 3.5.1.-] +K08282 E2.7.11.1; non-specific serine/threonine protein kinase [EC:2.7.11.1] +K08283 COL4A3BP; collagen type IV alpha-3-binding protein +K08284 MID1; calcium channel MID1 +K08285 TRIM18, MID1; midline 1 [EC:2.3.2.27] +K08286 E2.7.11.-; protein-serine/threonine kinase [EC:2.7.11.-] +K08287 E2.7.12.1; dual-specificity kinase [EC:2.7.12.1] +K08288 PRKCSH; protein kinase C substrate 80K-H +K08289 purT; phosphoribosylglycinamide formyltransferase 2 [EC:6.3.1.21] +K08290 FASTK; Fas-activated serine/threonine kinase [EC:2.7.11.8] +K08291 GRK4_5_6; G protein-coupled receptor kinase [EC:2.7.11.16] +K08292 EEF2K; elongation factor 2 kinase [EC:2.7.11.20] +K08293 SMK1; sporulation-specific mitogen-activated protein kinase SMK1 [EC:2.7.11.24] +K08294 MKK1_2; mitogen-activated protein kinase kinase [EC:2.7.12.2] +K08295 abmG; 2-aminobenzoate-CoA ligase [EC:6.2.1.32] +K08296 sixA; phosphohistidine phosphatase [EC:3.1.3.-] +K08297 caiA; crotonobetainyl-CoA dehydrogenase [EC:1.3.8.13] +K08298 caiB; L-carnitine CoA-transferase [EC:2.8.3.21] +K08299 caiD; crotonobetainyl-CoA hydratase [EC:4.2.1.149] +K08300 rne; ribonuclease E [EC:3.1.26.12] +K08301 rng, cafA; ribonuclease G [EC:3.1.26.-] +K08302 gatY-kbaY; tagatose 1,6-diphosphate aldolase GatY/KbaY [EC:4.1.2.40] +K08303 prtC, trhP; U32 family peptidase [EC:3.4.-.-] +K08304 mltA; peptidoglycan lytic transglycosylase A [EC:4.2.2.29] +K08305 mltB; peptidoglycan lytic transglycosylase B [EC:4.2.2.29] +K08306 mltC; peptidoglycan lytic transglycosylase C [EC:4.2.2.29] +K08307 mltD, dniR; peptidoglycan lytic transglycosylase D [EC:4.2.2.29] +K08308 mltE, emtA; peptidoglycan lytic transglycosylase E [EC:4.2.2.29] +K08309 slt; peptidoglycan lytic transglycosylase [EC:4.2.2.29] +K08310 nudB, ntpA; dihydroneopterin triphosphate diphosphatase [EC:3.6.1.67] +K08311 nudH; putative (di)nucleoside polyphosphate hydrolase [EC:3.6.1.-] +K08312 nudE; ADP compounds hydrolase [EC:3.6.1.-] +K08313 fsaA, mipB; fructose-6-phosphate aldolase 1 [EC:4.1.2.-] +K08314 fsaB, talC; fructose-6-phosphate aldolase 2 [EC:4.1.2.-] +K08315 hycI; hydrogenase 3 maturation protease [EC:3.4.23.51] +K08316 rsmD; 16S rRNA (guanine966-N2)-methyltransferase [EC:2.1.1.171] +K08317 hcxA; hydroxycarboxylate dehydrogenase A [EC:1.1.1.-] +K08318 yihU; 4-hydroxybutyrate dehydrogenase / sulfolactaldehyde 3-reductase [EC:1.1.1.61 1.1.1.373] +K08319 ltnD; L-threonate 2-dehydrogenase [EC:1.1.1.411] +K08320 nudG; (d)CTP diphosphatase [EC:3.6.1.65] +K08321 lsrF; 3-hydroxy-5-phosphonooxypentane-2,4-dione thiolase [EC:2.3.1.245] +K08322 rspB; L-gulonate 5-dehydrogenase [EC:1.1.1.380] +K08323 rspA, manD; mannonate dehydratase [EC:4.2.1.8] +K08324 sad; succinate-semialdehyde dehydrogenase [EC:1.2.1.16 1.2.1.24] +K08325 yqhD; NADP-dependent alcohol dehydrogenase [EC:1.1.-.-] +K08326 ypdF; aminopeptidase [EC:3.4.11.-] +K08327 PDC; phosducin +K08328 GUCA1; guanylate cyclase activator 1 +K08329 ATG17; autophagy-related protein 17 +K08330 ATG11; autophagy-related protein 11 +K08331 ATG13; autophagy-related protein 13 +K08332 VAC8; vacuolar protein 8 +K08333 PIK3R4, VPS15; phosphoinositide-3-kinase, regulatory subunit 4 [EC:2.7.11.1] +K08334 BECN, VPS30, ATG6; beclin +K08335 ATG14; autophagy-related protein 14 +K08336 ATG12; ubiquitin-like protein ATG12 +K08337 ATG7; ubiquitin-like modifier-activating enzyme ATG7 +K08338 ATG10; ubiquitin-like-conjugating enzyme ATG10 +K08339 ATG5; autophagy-related protein 5 +K08340 ATG16; autophagy-related protein 16 +K08341 GABARAP, ATG8, LC3; GABA(A) receptor-associated protein +K08342 ATG4; cysteine protease ATG4 [EC:3.4.22.-] +K08343 ATG3; ubiquitin-like-conjugating enzyme ATG3 +K08344 scsB; suppressor for copper-sensitivity B +K08348 fdnG; formate dehydrogenase-N, alpha subunit [EC:1.17.5.3] +K08349 fdnH; formate dehydrogenase-N, beta subunit +K08350 fdnI; formate dehydrogenase-N, gamma subunit +K08351 bisC; biotin/methionine sulfoxide reductase [EC:1.-.-.-] +K08352 phsA, psrA; thiosulfate reductase / polysulfide reductase chain A [EC:1.8.5.5] +K08353 phsB; thiosulfate reductase electron transport protein +K08354 phsC; thiosulfate reductase cytochrome b subunit +K08355 aoxA; arsenite oxidase small subunit [EC:1.20.2.1 1.20.9.1] +K08356 aoxB; arsenite oxidase large subunit [EC:1.20.2.1 1.20.9.1] +K08357 ttrA; tetrathionate reductase subunit A +K08358 ttrB; tetrathionate reductase subunit B +K08359 ttrC; tetrathionate reductase subunit C +K08360 CYB561; transmembrane ascorbate-dependent reductase [EC:7.2.1.3] +K08362 THRB, NR1A2; thyroid hormone receptor beta +K08363 merT; mercuric ion transport protein +K08364 merP; periplasmic mercuric ion binding protein +K08365 merR; MerR family transcriptional regulator, mercuric resistance operon regulatory protein +K08366 BLOC1S4, CNO; biogenesis of lysosome-related organelles complex 1 subunit 4 +K08367 RUNX1, AML1; runt-related transcription factor 1 +K08368 yaaU; MFS transporter, putative metabolite transport protein +K08369 ydjE; MFS transporter, putative metabolite:H+ symporter +K08370 CYBRD1, Dcytb; plasma membrane ascorbate-dependent reductase [EC:7.2.1.3] +K08371 CYB561D2; transmembrane reductase [EC:7.2.1.3] +K08372 pepD; putative serine protease PepD [EC:3.4.21.-] +K08373 CCRL2; C-C chemokine receptor-like 2 +K08374 KISS1R; KISS1 receptor +K08375 NPFFR2; neuropeptide FF receptor 2 +K08376 NPSR1, GPR154; neuropeptide S receptor +K08377 NPBWR2; neuropeptides B/W receptor 2 +K08378 QRFPR, GPR103; pyroglutamylated RFamide peptide receptor +K08379 PROKR1; prokineticin receptor 1 +K08380 PROKR2; prokineticin receptor 2 +K08381 GPR32; G protein-coupled receptor 32 +K08382 GPR33; G protein-coupled receptor 33 +K08383 GPR34; G protein-coupled receptor 34 +K08384 spoVD; stage V sporulation protein D (sporulation-specific penicillin-binding protein) +K08385 OPN5; G0-opsin +K08386 P2RY8; P2Y purinoceptor 8 +K08387 P2RY11; P2Y purinoceptor 11 +K08388 P2RY13; P2Y purinoceptor 13 +K08389 GPR87; G protein-coupled receptor 87 +K08390 LPAR5, GPR92; lysophosphatidic acid receptor 5 +K08391 GPR174; G protein-coupled receptor 174 +K08392 MRGPRD; Mas-related G protein-coupled receptor member D +K08393 MRGPRE; Mas-related G protein-coupled receptor member E +K08394 MRGPRF; Mas-related G protein-coupled receptor member F +K08395 MRGPRG; Mas-related G protein-coupled receptor member G +K08396 MRGPRX; Mas-related G protein-coupled receptor member X +K08397 RXFP3, RLN3R1; relaxin family peptide receptor 3 +K08398 RXFP4, RLN3R2; relaxin family peptide receptor 4 +K08399 LGR6; leucine-rich repeat-containing G protein-coupled receptor 6 +K08400 GPBAR1; G protein-coupled bile acid receptor 1 +K08401 HCAR1, GPR81; hydroxycarboxylic acid receptor 1 +K08402 HCAR2_3, GPR109; hydroxycarboxylic acid receptor 2/3 +K08403 GPR15; G protein-coupled receptor 15 +K08404 GPR17; G protein-coupled receptor 17 +K08405 GPR25; G protein-coupled receptor 25 +K08406 GPR31; 12-(S)-hydroxy-5,8,10,14-eicosatetraenoic acid receptor +K08407 GPR52; G protein-coupled receptor 52 +K08408 GPR68, OGR1; ovarian cancer G-protein coupled receptor 1 +K08409 GPR45; G protein-coupled receptor 45 +K08410 GPR18; N-arachidonyl glycine receptor +K08411 GPR26; G protein-coupled receptor 26 +K08412 GPR39; G protein-coupled receptor 39 +K08413 GPR55; G protein-coupled receptor 55 +K08414 GPR61; G protein-coupled receptor 61 +K08415 GPR62; G protein-coupled receptor 62 +K08416 GPR65, TDAG8; psychosine receptor +K08417 GPR75; G protein-coupled receptor 75 +K08418 GPR78; G protein-coupled receptor 78 +K08419 OXGR1, GPR99; oxoglutarate (alpha-ketoglutarate) receptor 1 +K08420 GPR82; G protein-coupled receptor 82 +K08421 GPR84; G protein-coupled receptor 84 +K08422 GPR88; G protein-coupled receptor 88 +K08423 GPR101; G protein-coupled receptor 101 +K08424 GPR119; glucose-dependent insulinotropic receptor +K08425 FFAR4, GPR120; free fatty acid receptor 4 +K08426 GPR132, G2A; G protein-coupled receptor 132 +K08427 GPR135; G protein-coupled receptor 135 +K08428 GPR139; G protein-coupled receptor 139 +K08429 GPR141; G protein-coupled receptor 141 +K08430 GPR142; G protein-coupled receptor 142 +K08431 GPR146; G protein-coupled receptor 146 +K08432 GPR148; G protein-coupled receptor 148 +K08433 GPR149; G protein-coupled receptor 149 +K08434 GPR150; G protein-coupled receptor 150 +K08435 GPR151; G protein-coupled receptor 151 +K08436 GPR152; G protein-coupled receptor 152 +K08437 GPR153; G protein-coupled receptor 153 +K08438 GPR160; G protein-coupled receptor 160 +K08439 GPR161; G protein-coupled receptor 161 +K08440 GPR162; G protein-coupled receptor 162 +K08441 GPR171; G protein-coupled receptor 171 +K08442 GPR176; G protein-coupled receptor 176 +K08443 ADGRE2, EMR2, CD312; adhesion G protein-coupled receptor E2 +K08444 ADGRE3, EMR3; adhesion G protein-coupled receptor E3 +K08445 ADGRE4, EMR4; adhesion G protein-coupled receptor E4 +K08446 ADGRE5, CD97; CD97 antigen +K08447 RAMP1; receptor activity modifying protein 1 +K08448 RAMP2; receptor activity modifying protein 2 +K08449 RAMP3; receptor activity modifying protein 3 +K08450 ADGRG1, GPR56; adhesion G-protein coupled receptor G1 +K08451 ADGRG2, GPR64; adhesion G-protein coupled receptor G2 +K08452 ADGRG3, GPR97; adhesion G-protein coupled receptor G3 +K08453 ADGRF1, GPR110; adhesion G-protein coupled receptor F1 +K08454 ADGRF2, GPR111; adhesion G-protein coupled receptor F2 +K08455 ADGRG4, GPR112; adhesion G-protein coupled receptor G4 +K08456 ADGRF3, GPR113; adhesion G-protein coupled receptor F3 +K08457 ADGRF4, GPR115; adhesion G-protein coupled receptor F4 +K08458 ADGRF5, GPR116; adhesion G-protein coupled receptor F5 +K08459 ADGRG5, GPR114; adhesion G-protein coupled receptor G5 +K08460 ADGRA1, GPR123; adhesion G protein-coupled receptor A1 +K08461 ADGRA2, GPR124; adhesion G protein-coupled receptor A2 +K08462 ADGRA3, GPR125; adhesion G protein-coupled receptor A3 +K08463 ADGRG6, GPR126; adhesion G-protein coupled receptor G6 +K08464 ADGRG7, GPR128; adhesion G-protein coupled receptor G7 +K08465 ADGRD1, GPR133; adhesion G-protein coupled receptor D1 +K08466 ADGRD2, GPR144; adhesion G-protein coupled receptor D2 +K08467 GPR157; G protein-coupled receptor 157 +K08468 GPRC5A; G protein-coupled receptor family C group 5 member A +K08469 GPR158; G protein-coupled receptor 158 +K08470 OA1, GPR143; ocular albinism type 1 protein +K08471 GR; gustatory receptor +K08472 MLO; mlo protein +K08473 K08473; nematode chemoreceptor +K08474 TAS2R; taste receptor type 2 +K08475 pgtB; two-component system, NtrC family, phosphoglycerate transport system sensor histidine kinase PgtB [EC:2.7.13.3] +K08476 pgtA; two-component system, NtrC family, phosphoglycerate transport system response regulator PgtA +K08477 pgtE; outer membrane protease E [EC:3.4.21.-] +K08478 pgtC; phosphoglycerate transport regulatory protein PgtC +K08479 sasA; two-component system, OmpR family, clock-associated histidine kinase SasA [EC:2.7.13.3] +K08480 kaiA; circadian clock protein KaiA +K08481 kaiB; circadian clock protein KaiB +K08482 kaiC; circadian clock protein KaiC +K08483 ptsI; phosphoenolpyruvate-protein phosphotransferase (PTS system enzyme I) [EC:2.7.3.9] +K08484 ptsP; phosphotransferase system, enzyme I, PtsP [EC:2.7.3.9] +K08485 ptsO, npr; phosphocarrier protein NPr +K08486 STX1B_2_3; syntaxin 1B/2/3 +K08487 STX11; syntaxin 11 +K08488 STX7; syntaxin 7 +K08489 STX16; syntaxin 16 +K08490 STX5; syntaxin 5 +K08491 STX17; syntaxin 17 +K08492 STX18; syntaxin 18 +K08493 VTI1; vesicle transport through interaction with t-SNAREs 1 +K08494 NSPN; novel plant SNARE +K08495 GOSR1, GOS1; golgi SNAP receptor complex member 1 +K08496 GOSR2, BOS1; golgi SNAP receptor complex member 2 +K08497 SEC20; protein transport protein SEC20 +K08498 STX6; syntaxin 6 +K08499 TLG1; member of the syntaxin family of t-SNAREs +K08500 SYP6; syntaxin of plants SYP6 +K08501 STX8; syntaxin 8 +K08502 VAM7; regulator of vacuolar morphogenesis +K08503 SYP5; syntaxin of plants SYP5 +K08504 BET1; blocked early in transport 1 +K08505 SFT1; protein transport protein SFT1 +K08506 SYP7; syntaxin of plants SYP7 +K08507 USE1; unconventional SNARE in the endoplasmic reticulum protein 1 +K08508 SNAP23; synaptosomal-associated protein 23 +K08509 SNAP29; synaptosomal-associated protein 29 +K08510 VAMP1; vesicle-associated membrane protein 1 +K08511 ATVAMP72; vesicle-associated membrane protein 72 +K08512 VAMP8; vesicle-associated membrane protein 8 +K08513 VAMP4; vesicle-associated membrane protein 4 +K08514 VAMP5; vesicle-associated membrane protein 5 +K08515 VAMP7; vesicle-associated membrane protein 7 +K08516 YKT6; synaptobrevin homolog YKT6 +K08517 SEC22; vesicle transport protein SEC22 +K08518 STXBP5, SRO7_77; syntaxin-binding protein 5 +K08519 STXBP6; syntaxin-binding protein 6 +K08520 SEC22A_C; SEC22 vesicle trafficking protein A/C +K08521 LHB; lutropin subunit beta +K08522 CGA; glycoprotein hormones alpha chain +K08523 HBEGF; heparin-binding EGF-like growth factor +K08524 RXRA, NR2B1; retinoid X receptor alpha +K08525 RXRB, NR2B2; retinoid X receptor beta +K08526 RXRG, NR2B3; retinoid X receptor gamma +K08527 RARA, NR1B1; retinoic acid receptor alpha +K08528 RARB, NR1B2; retinoic acid receptor beta +K08529 RARG, NR1B3; retinoic acid receptor gamma +K08530 NR1C3, PPARG; peroxisome proliferator-activated receptor gamma +K08531 NR1D2; nuclear receptor subfamily 1 group D member 2 +K08532 NR1F1, RORA; RAR-related orphan receptor alpha +K08533 NR1F2, RORB; RAR-related orphan receptor beta +K08534 NR1F3, RORC; RAR-related orphan receptor gamma +K08535 NR1H2, LXRB; liver X receptor beta +K08536 NR1H3, LXRA; liver X receptor alpha +K08537 NR1H4, FXR; farnesoid X receptor +K08538 NR1H5, FXRB; farnesoid X receptor beta +K08539 VDR, NR1I1; vitamin D3 receptor +K08540 NR1I2, PXR; pregnane X receptor +K08541 NR1I3, CAR; constitutive androstane receptor +K08542 NR2A3, HNF4B; hepatocyte nuclear factor 4-beta +K08543 NR2C1, TR2; testicular receptor 2 +K08544 NR2C2, TR4; testicular receptor 4 +K08545 NR2E1, TLX, tll; nuclear receptor subfamily 2 group E member 1 +K08546 NR2E3, PNR; nuclear receptor subfamily 2 group E member 3 +K08547 NR2F1, TFCOUP1; COUP transcription factor 1 +K08548 NR2F2, TFCOUP2; COUP transcription factor 2 +K08549 NR2F6, EAR2; nuclear receptor subfamily 2 group F member 6 +K08550 ESR1, NR3A1; estrogen receptor alpha +K08551 ESR2, NR3A2; estrogen receptor beta +K08552 NR3B1, ESRRA; estrogen-related receptor alpha +K08553 NR3B2, ESRRB; estrogen-related receptor beta +K08554 NR3B3, ESRRG; estrogen-related receptor gamma +K08555 NR3C2, MR; mineralocorticoid receptor +K08556 PGR, NR3C3; progesterone receptor +K08557 AR, NR3C4; androgen receptor +K08558 NR4A2, NURR1; nuclear receptor subfamily 4 group A member 2 +K08559 NR4A3, NOR1; nuclear receptor subfamily 4 group A member 3 +K08560 NR5A1, SF1; steroidogenic factor 1 +K08561 NR6A1, GCNF; germ cell nuclear factor +K08562 NR0B1, DAX1; nuclear receptor subfamily 0 group B member 1 +K08563 NR0B2, SHP; nuclear receptor subfamily 0 group B member 2 +K08564 NYV1; vacuolar v-SNARE NYV1 +K08565 NAPSA; napsin-A [EC:3.4.23.-] +K08566 pla; plasminogen activator [EC:3.4.23.48] +K08568 CTSZ; cathepsin X [EC:3.4.18.1] +K08569 CTSW; cathepsin W [EC:3.4.22.-] +K08570 EHCP; histolysain [EC:3.4.22.35] +K08571 E3.4.22.51; cruzipain [EC:3.4.22.51] +K08572 CPC; cysteine peptidase C [EC:3.4.22.-] +K08573 CAPN3; calpain-3 [EC:3.4.22.54] +K08574 CAPN5; calpain-5 [EC:3.4.22.-] +K08575 CAPN6; calpain-6 [EC:3.4.22.-] +K08576 CAPN7; calpain-7 [EC:3.4.22.-] +K08577 CAPN8; calpain-8 [EC:3.4.22.-] +K08578 CAPN9; calpain-9 [EC:3.4.22.-] +K08579 CAPN10; calpain-10 [EC:3.4.22.-] +K08580 CAPN11; calpain-11 [EC:3.4.22.-] +K08581 CAPN13; calpain-13 [EC:3.4.22.-] +K08582 CAPN15; calpain-15 [EC:3.4.22.-] +K08583 CAPNS1, CAPN4; calpain, small subunit 1 +K08584 CAPNS2; calpain, small subunit 2 +K08585 CAPNN; calpain, invertebrate [EC:3.4.22.-] +K08586 tpr; thiol protease [EC:3.4.22.-] +K08587 cloSI; clostripain [EC:3.4.22.8] +K08588 BAP1, UCHL2; ubiquitin carboxyl-terminal hydrolase BAP1 [EC:3.4.19.12] +K08589 rgpA_B; gingipain R [EC:3.4.22.37] +K08590 nit; 2-oxoglutaramate amidase [EC:3.5.1.111] +K08591 plsY; acyl phosphate:glycerol-3-phosphate acyltransferase [EC:2.3.1.275] +K08592 SENP1; sentrin-specific protease 1 [EC:3.4.22.68] +K08593 SENP3; sentrin-specific protease 3 [EC:3.4.22.68] +K08594 SENP5; sentrin-specific protease 5 [EC:3.4.22.68] +K08595 SENP6; sentrin-specific protease 6 [EC:3.4.22.68] +K08596 SENP7; sentrin-specific protease 7 [EC:3.4.22.68] +K08597 SENP8, NEDP1, DEN1; sentrin-specific protease 8 [EC:3.4.22.68] +K08598 yopJ; YopJ protease family +K08599 yopT; YopT peptidase [EC:3.4.22.-] +K08600 srtB; sortase B [EC:3.4.22.71] +K08601 CYLD, USLP2; ubiquitin carboxyl-terminal hydrolase CYLD [EC:3.4.19.12] +K08602 pepF, pepB; oligoendopeptidase F [EC:3.4.24.-] +K08603 npr; thermolysin [EC:3.4.24.27] +K08604 hap, nprV; vibriolysin [EC:3.4.24.25] +K08605 gelE; coccolysin [EC:3.4.24.30] +K08606 MEP1B; meprin B [EC:3.4.24.63] +K08607 ADAM1; disintegrin and metalloproteinase domain-containing protein 1 [EC:3.4.24.-] +K08608 ADAM19; disintegrin and metalloproteinase domain-containing protein 19 [EC:3.4.24.-] +K08609 ADAM20; disintegrin and metalloproteinase domain-containing protein 20 [EC:3.4.24.-] +K08610 ADAM21; disintegrin and metalloproteinase domain-containing protein 21 [EC:3.4.24.-] +K08611 ADAM24; disintegrin and metalloproteinase domain-containing protein 24 [EC:3.4.24.-] +K08612 ADAM25; disintegrin and metalloproteinase domain-containing protein 25 [EC:3.4.24.-] +K08613 ADAM26; disintegrin and metalloproteinase domain-containing protein 26 [EC:3.4.24.-] +K08614 ADAM28; disintegrin and metalloproteinase domain-containing protein 28 [EC:3.4.24.-] +K08615 ADAM30; disintegrin and metalloproteinase domain-containing protein 30 [EC:3.4.24.-] +K08616 ADAM33; disintegrin and metalloproteinase domain-containing protein 33 [EC:3.4.24.-] +K08617 ADAMTS1; a disintegrin and metalloproteinase with thrombospondin motifs 1 [EC:3.4.24.-] +K08618 ADAMTS2; a disintegrin and metalloproteinase with thrombospondin motifs 2 [EC:3.4.24.14] +K08619 ADAMTS3; a disintegrin and metalloproteinase with thrombospondin motifs 3 [EC:3.4.24.-] +K08620 ADAMTS5; a disintegrin and metalloproteinase with thrombospondin motifs 5 [EC:3.4.24.-] +K08621 ADAMTS6; a disintegrin and metalloproteinase with thrombospondin motifs 6 [EC:3.4.24.-] +K08622 ADAMTS7; a disintegrin and metalloproteinase with thrombospondin motifs 7 [EC:3.4.24.-] +K08623 ADAMTS8; a disintegrin and metalloproteinase with thrombospondin motifs 8 [EC:3.4.24.-] +K08624 ADAMTS9; a disintegrin and metalloproteinase with thrombospondin motifs 9 [EC:3.4.24.-] +K08625 ADAMTS10; a disintegrin and metalloproteinase with thrombospondin motifs 10 [EC:3.4.24.-] +K08626 ADAMTS12; a disintegrin and metalloproteinase with thrombospondin motifs 12 [EC:3.4.24.-] +K08627 ADAMTS13; a disintegrin and metalloproteinase with thrombospondin motifs 13 [EC:3.4.24.87] +K08628 ADAMTS14; a disintegrin and metalloproteinase with thrombospondin motifs 14 [EC:3.4.24.-] +K08629 ADAMTS15; a disintegrin and metalloproteinase with thrombospondin motifs 15 [EC:3.4.24.-] +K08630 ADAMTS16; a disintegrin and metalloproteinase with thrombospondin motifs 16 [EC:3.4.24.-] +K08631 ADAMTS17; a disintegrin and metalloproteinase with thrombospondin motifs 17 [EC:3.4.24.-] +K08632 ADAMTS18; a disintegrin and metalloproteinase with thrombospondin motifs 18 [EC:3.4.24.-] +K08633 ADAMTS19; a disintegrin and metalloproteinase with thrombospondin motifs 19 [EC:3.4.24.-] +K08634 ADAMDEC1; ADAM-like, decysin 1 [EC:3.4.24.-] +K08635 MMEL1, NEP; neprilysin [EC:3.4.24.11] +K08636 PHEX; phosphate-regulating neutral endopeptidase [EC:3.4.24.-] +K08637 CPA4; carboxypeptidase A4 [EC:3.4.17.-] +K08638 CPXM1; carboxypeptidase X1 [EC:3.4.17.-] +K08639 CPXM2; carboxypeptidase X2 +K08640 E3.4.17.14; zinc D-Ala-D-Ala carboxypeptidase [EC:3.4.17.14] +K08641 vanX; zinc D-Ala-D-Ala dipeptidase [EC:3.4.13.22] +K08642 lasA; LasA protease [EC:3.4.24.-] +K08643 zmpB; zinc metalloprotease ZmpB [EC:3.4.24.-] +K08644 tetX; tentoxilysin [EC:3.4.24.68] +K08645 lef; anthrax lethal toxin endopeptidase [EC:3.4.24.83] +K08646 MEP; peptidyl-Lys metalloendopeptidase [EC:3.4.24.20] +K08647 PAPPA2; pappalysin-2 [EC:3.4.24.-] +K08648 HABP2; hyaluronan binding protein 2 [EC:3.4.21.-] +K08649 GZMM; granzyme M [EC:3.4.21.-] +K08650 KLK8, PRSS19; kallikrein 8 [EC:3.4.21.118] +K08651 E3.4.21.66; thermitase [EC:3.4.21.66] +K08652 C5AP, scpA, scpB; C5a peptidase [EC:3.4.21.110] +K08653 MBTPS1; membrane-bound transcription factor site-1 protease [EC:3.4.21.112] +K08654 PCSK5; proprotein convertase subtilisin/kexin type 5 [EC:3.4.21.-] +K08655 DPP8; dipeptidyl-peptidase 8 [EC:3.4.14.5] +K08656 DPP9; dipeptidyl-peptidase 9 [EC:3.4.14.5] +K08657 TASP1; taspase, threonine aspartase, 1 [EC:3.4.25.-] +K08658 RCE1, FACE2; intramembrane prenyl-peptidase [EC:3.4.26.1] +K08659 pepDA, pepDB; dipeptidase [EC:3.4.-.-] +K08660 CNDP2; cytosolic nonspecific dipeptidase [EC:3.4.13.18] +K08661 MCPT1; mast cell peptidase 1 [EC:3.4.21.-] +K08662 MCPT2; mast cell peptidase 2 [EC:3.4.21.-] +K08663 GZMK; granzyme K [EC:3.4.21.-] +K08664 PRSS8; prostasin [EC:3.4.21.-] +K08665 HPN; hepsin [EC:3.4.21.106] +K08666 KLK4, PRSS17; kallikrein 4 [EC:3.4.21.-] +K08667 KLK6, PRSS9; kallikrein 6 [EC:3.4.21.-] +K08668 KLK7, PRSS6; kallikrein 7 [EC:3.4.21.117] +K08669 HTRA2, PRSS25; HtrA serine peptidase 2 [EC:3.4.21.108] +K08670 ST14, PRSS14; suppressor of tumorigenicity protein 14 [EC:3.4.21.109] +K08671 PCSK4; proprotein convertase subtilisin/kexin type 4 [EC:3.4.21.-] +K08672 PCSK6; proprotein convertase subtilisin/kexin type 6 [EC:3.4.21.-] +K08673 PCSK7; proprotein convertase subtilisin/kexin type 7 [EC:3.4.21.-] +K08674 FAP; fibroblast activation protein, alpha [EC:3.4.21.-] +K08675 PRSS15, PIM1; ATP-dependent Lon protease [EC:3.4.21.53] +K08676 tri; tricorn protease [EC:3.4.21.-] +K08677 kscP, scpA; kumamolisin [EC:3.4.21.123] +K08678 UXS1, uxs; UDP-glucuronate decarboxylase [EC:4.1.1.35] +K08679 GAE, cap1J; UDP-glucuronate 4-epimerase [EC:5.1.3.6] +K08680 menH; 2-succinyl-6-hydroxy-2,4-cyclohexadiene-1-carboxylate synthase [EC:4.2.99.20] +K08681 pdxT, pdx2; pyridoxal 5'-phosphate synthase pdxT subunit [EC:4.3.3.6] +K08682 acpH; acyl carrier protein phosphodiesterase [EC:3.1.4.14] +K08683 HSD17B10; 3-hydroxyacyl-CoA dehydrogenase / 3-hydroxy-2-methylbutyryl-CoA dehydrogenase [EC:1.1.1.35 1.1.1.178] +K08685 qhpA; quinohemoprotein amine dehydrogenase [EC:1.4.9.1] +K08686 cbdA; 2-halobenzoate 1,2-dioxygenase large subunit [EC:1.14.12.13] +K08687 E3.5.1.59; N-carbamoylsarcosine amidase [EC:3.5.1.59] +K08688 E3.5.3.3; creatinase [EC:3.5.3.3] +K08689 bphAa, bphA1, bphA; biphenyl 2,3-dioxygenase subunit alpha [EC:1.14.12.18] +K08690 bphB; cis-2,3-dihydrobiphenyl-2,3-diol dehydrogenase [EC:1.3.1.56] +K08691 mcl; malyl-CoA/(S)-citramalyl-CoA lyase [EC:4.1.3.24 4.1.3.25] +K08692 mtkB; malate-CoA ligase subunit alpha [EC:6.2.1.9] +K08693 yfkN; 2',3'-cyclic-nucleotide 2'-phosphodiesterase / 3'-nucleotidase / 5'-nucleotidase [EC:3.1.4.16 3.1.3.6 3.1.3.5] +K08694 SPDY, RINGO; speedy +K08695 ANR; anthocyanidin reductase [EC:1.3.1.77] +K08696 ccmK; carbon dioxide concentrating mechanism protein CcmK +K08697 ccmL; carbon dioxide concentrating mechanism protein CcmL +K08698 ccmM; carbon dioxide concentrating mechanism protein CcmM +K08699 ccmN; carbon dioxide concentrating mechanism protein CcmN +K08700 ccmO; carbon dioxide concentrating mechanism protein CcmO +K08701 NR1D3; nuclear receptor subfamily 1 group D member 3 +K08702 NR2F5, SVP46; nuclear receptor subfamily 2 group F member 5 +K08703 NR3BN, ERR; estrogen-related receptor ERR +K08704 NR2A4, Hnf4; hepatocyte nuclear factor 4 +K08705 NR5A3, ftz-f1; nuclear receptor subfamily 5 group A member 3 +K08706 NR0AN, kni; nuclear receptor subfamily 0 group A +K08707 DNTTIP1; deoxynucleotidyltransferase terminal-interacting protein 1 +K08709 K08709; nuclear receptor, other families, insect +K08710 atzC; N-isopropylammelide isopropylaminohydrolase [EC:3.5.4.42] +K08711 PDR, CDR1; ATP-binding cassette, subfamily G (WHITE), member 2, PDR +K08712 SNQ2; ATP-binding cassette, subfamily G (WHITE), member 2, SNQ2 +K08713 lctB; potassium channel LctB +K08714 VGSC; voltage-gated sodium channel +K08715 IRPC; inward rectifier potassium channel +K08716 SLC14A; solute carrier family 14 (urea transporter) +K08717 utp; urea transporter +K08718 PDE6A; rod cGMP-specific 3',5'-cyclic phosphodiesterase subunit alpha [EC:3.1.4.35] +K08719 K08719, porB; outer membrane protein B +K08720 ompU; outer membrane protein OmpU +K08721 oprJ; outer membrane protein, multidrug efflux system +K08722 yfbR; 5'-deoxynucleotidase [EC:3.1.3.89] +K08723 yjjG; pyrimidine 5'-nucleotidase [EC:3.1.3.-] +K08724 pbpB; penicillin-binding protein 2B +K08725 ASIP; agouti signaling protein +K08726 EPHX2; soluble epoxide hydrolase / lipid-phosphate phosphatase [EC:3.3.2.10 3.1.3.76] +K08727 NOD1, CARD4; nucleotide-binding oligomerization domain-containing protein 1 +K08728 E2.4.2.6; nucleoside deoxyribosyltransferase [EC:2.4.2.6] +K08729 PTDSS1; phosphatidylserine synthase 1 [EC:2.7.8.-] +K08730 PTDSS2; phosphatidylserine synthase 2 [EC:2.7.8.29] +K08731 BIRC5; baculoviral IAP repeat-containing protein 5 +K08732 RALGDS; ral guanine nucleotide dissociation stimulator +K08733 APPL1, DIP13A; DCC-interacting protein 13 alpha +K08734 MLH1; DNA mismatch repair protein MLH1 +K08735 MSH2; DNA mismatch repair protein MSH2 +K08736 MSH3; DNA mismatch repair protein MSH3 +K08737 MSH6; DNA mismatch repair protein MSH6 +K08738 CYC; cytochrome c +K08739 MLH3; DNA mismatch repair protein MLH3 +K08740 MSH4; DNA mismatch repair protein MSH4 +K08741 MSH5; DNA mismatch repair protein MSH5 +K08742 SIAH2; E3 ubiquitin-protein ligase SIAH2 [EC:2.3.2.27] +K08743 ENPP6; ectonucleotide pyrophosphatase/phosphodiesterase family member 6 [EC:3.1.4.-] +K08744 CRLS; cardiolipin synthase (CMP-forming) [EC:2.7.8.41] +K08745 SLC27A1_4, FATP1_4; solute carrier family 27 (fatty acid transporter), member 1/4 [EC:6.2.1.-] +K08746 SLC27A2, FACVL1, FATP2; solute carrier family 27 (fatty acid transporter), member 2 [EC:6.2.1.- 6.2.1.3] +K08747 SLCO1C; solute carrier organic anion transporter family, member 1C +K08748 SLC27A5, FATP5; solute carrier family 27 (fatty acid transporter), member 5 [EC:6.2.1.7] +K08749 SLC27A6, FATP6; solute carrier family 27 (fatty acid transporter), member 6 +K08750 FABP1, L-FABP; fatty acid-binding protein 1, liver +K08751 FABP2; fatty acid-binding protein 2, intestinal +K08752 FABP3; fatty acid-binding protein 3, muscle and heart +K08753 FABP4, aP2; fatty acid-binding protein 4, adipocyte +K08754 FABP5; fatty acid-binding protein 5, epidermal +K08755 FABP6; fatty acid-binding protein 6, ileal (gastrotropin) +K08756 FABP7; fatty acid-binding protein 7, brain +K08757 APOA1; apolipoprotein A-I +K08758 APOA2; apolipoprotein A-II +K08759 APOC3; apolipoprotein C-III +K08760 APOA4; apolipoprotein A-IV +K08761 PLTP; phospholipid transfer protein +K08762 DBI, ACBP; diazepam-binding inhibitor (GABA receptor modulator, acyl-CoA-binding protein) +K08763 OLR1; oxidised low-density lipoprotein receptor 1 +K08764 SCP2, SCPX; sterol carrier protein 2 [EC:2.3.1.176] +K08765 CPT1A; carnitine O-palmitoyltransferase 1, liver isoform [EC:2.3.1.21] +K08766 CPT2; carnitine O-palmitoyltransferase 2 [EC:2.3.1.21] +K08767 ANGPTL4, PGAR; angiopoietin-like 4 +K08768 PLIN1; perilipin-1 +K08769 UCP1, SLC25A7; solute carrier family 25 (mitochondrial uncoupling protein), member 7 +K08770 UBC; ubiquitin C +K08771 AQP7; aquaporin-7 +K08772 SLC27A3, FATP3; solute carrier family 27 (fatty acid transporter), member 3 [EC:6.2.1.-] +K08773 RALBP1; RalA-binding protein 1 +K08774 TGFA; transforming growth factor, alpha +K08775 BRCA2, FANCD1; breast cancer 2 susceptibility protein +K08776 NPEPPS; puromycin-sensitive aminopeptidase [EC:3.4.11.14] +K08777 nprB; neutral peptidase B [EC:3.4.24.-] +K08778 ASTL; astacin-like metalloendopeptidase [EC:3.4.-.-] +K08779 CPA1; carboxypeptidase A1 [EC:3.4.17.1] +K08780 CPA3; carboxypeptidase A3 [EC:3.4.17.1] +K08781 CPA5; carboxypeptidase A5 [EC:3.4.17.1] +K08782 CPA6; carboxypeptidase A6 [EC:3.4.17.1] +K08783 ECM14; extracellular matrix protein 14 [EC:3.4.17.-] +K08784 HTRA1, PRSS11; HtrA serine peptidase 1 [EC:3.4.21.-] +K08785 HTRA3; HtrA serine peptidase 3 [EC:3.4.21.-] +K08786 HTRA4; HtrA serine peptidase 4 [EC:3.4.21.-] +K08787 STE13; dipeptidyl aminopeptidase Ste13 [EC:3.4.14.-] +K08788 DMPK; dystrophia myotonica-protein kinase [EC:2.7.11.1] +K08789 MAST, IREH1; MAST-subfamily protein kinase [EC:2.7.11.37] +K08790 STK38, NDR; serine/threonine kinase 38 [EC:2.7.11.1] +K08791 LATS1_2, Wts; serine/threonine-protein kinase LATS1/2 [EC:2.7.11.1] +K08793 STK32, YANK; serine/threonine kinase 32 [EC:2.7.11.1] +K08794 CAMK1; calcium/calmodulin-dependent protein kinase I [EC:2.7.11.17] +K08795 PNCK; pregnancy upregulated non-ubiquitously expressed CaM kinase [EC:2.7.11.17] +K08796 BRSK; BR serine/threonine kinase [EC:2.7.11.1] +K08797 HUNK; hormonally upregulated Neu-associated kinase [EC:2.7.11.1] +K08798 MARK; MAP/microtubule affinity-regulating kinase [EC:2.7.11.1] +K08799 MELK; maternal embryonic leucine zipper kinase [EC:2.7.11.1] +K08800 NUAK; NUAK family, SNF1-like kinase [EC:2.7.11.1] +K08801 PASK; PAS domain containing serine/threonine kinase [EC:2.7.11.1] +K08802 SNRK; SNF related kinase [EC:2.7.11.1] +K08803 DAPK; death-associated protein kinase [EC:2.7.11.1] +K08804 STK17; serine/threonine kinase 17 [EC:2.7.11.1] +K08805 DCLK1_2; doublecortin-like kinase 1/2 [EC:2.7.11.1] +K08806 PIM2; proto-oncogene serine/threonine-protein kinase Pim-2 [EC:2.7.11.1] +K08807 PIM3; proto-oncogene serine/threonine-protein kinase Pim-3 [EC:2.7.11.1] +K08808 PSKH; protein serine kinase H [EC:2.7.11.1] +K08809 SPEG; striated muscle-specific serine/threonine protein kinase [EC:2.7.11.1] +K08810 TRIO; triple functional domain protein [EC:2.7.11.1] +K08811 TSSK, STK22; testis-specific serine kinase [EC:2.7.11.1] +K08812 CAMKV; CaM kinase-like vesicle-associated [EC:2.7.11.-] +K08813 STK33; serine/threonine kinase 33 [EC:2.7.11.1] +K08814 TRIB1_2; tribbles homolog 1/2 +K08815 TTBK; tau tubulin kinase [EC:2.7.11.26] +K08816 VRK; vaccinia related kinase [EC:2.7.11.1] +K08817 CCRK; cell cycle related kinase [EC:2.7.11.22] +K08818 CDC2L; cell division cycle 2-like [EC:2.7.11.22] +K08819 CDK12_13; cyclin-dependent kinase 12/13 [EC:2.7.11.22 2.7.11.23] +K08820 CDK16, PCTK1; cyclin-dependent kinase 16 [EC:2.7.11.22] +K08821 CDK14, PFTK1; cyclin-dependent kinase 14 [EC:2.7.11.22] +K08822 GSK3A; glycogen synthase kinase 3 alpha [EC:2.7.11.26] +K08823 CLK2_3; dual specificity protein kinase CLK2/3 [EC:2.7.12.1] +K08824 CDKL; cyclin-dependent kinase-like [EC:2.7.11.22] +K08825 DYRK1; dual specificity tyrosine-phosphorylation-regulated kinase 1 [EC:2.7.12.1] +K08826 HIPK; homeodomain interacting protein kinase [EC:2.7.11.1] +K08827 PRPF4B; serine/threonine-protein kinase PRP4 [EC:2.7.11.1] +K08828 ICK; intestinal cell (MAK-like) kinase [EC:2.7.11.22] +K08829 MAK; male germ cell-associated kinase [EC:2.7.11.22] +K08830 RAGE, MOK; renal tumor antigen [EC:2.7.11.22] +K08831 SRPK2; serine/threonine-protein kinase SRPK2 [EC:2.7.11.1] +K08832 SRPK3, STK23; serine/threonine-protein kinase SRPK3 [EC:2.7.11.1] +K08833 MAP4K5, KHS1; mitogen-activated protein kinase kinase kinase kinase 5 [EC:2.7.11.1] +K08834 MYO3, DFNB30; myosin III [EC:2.7.11.1] +K08835 OXSR1, STK39; serine/threonine-protein kinase OSR1/STK39 [EC:2.7.11.1] +K08836 SLK; STE20-like kinase [EC:2.7.11.1] +K08837 STK10, LOK; serine/threonine kinase 10 [EC:2.7.11.1] +K08838 STK24_25_MST4; serine/threonine-protein kinase 24/25/MST4 [EC:2.7.11.1] +K08840 TNIK; TRAF2 and NCK interacting kinase [EC:2.7.11.1] +K08841 TESK1; testis-specific kinase 1 [EC:2.7.12.1] +K08842 TESK2; testis-specific kinase 2 [EC:2.7.12.1] +K08843 LRRK1; leucine-rich repeat kinase 1 [EC:2.7.11.1] +K08844 LRRK2; leucine-rich repeat kinase 2 [EC:2.7.11.1] +K08845 ARAF, ARAF1; A-Raf proto-oncogene serine/threonine-protein kinase [EC:2.7.11.1] +K08846 RIPK2; receptor-interacting serine/threonine-protein kinase 2 [EC:2.7.11.1] +K08847 RIPK3; receptor-interacting serine/threonine-protein kinase 3 [EC:2.7.11.1] +K08848 RIPK4; receptor-interacting serine/threonine-protein kinase 4 [EC:2.7.11.1] +K08849 MLKL; mixed lineage kinase domain-like [EC:2.7.11.1] +K08850 AURKX; aurora kinase, other [EC:2.7.11.1] +K08851 TP53RK, PRPK, BUD32; TP53 regulating kinase and related kinases [EC:2.7.11.1] +K08852 ERN1; serine/threonine-protein kinase/endoribonuclease IRE1 [EC:2.7.11.1 3.1.26.-] +K08853 AAK; AP2-associated kinase [EC:2.7.11.1] +K08854 BMP2K, BIKE; BMP2 inducible kinase [EC:2.7.11.1] +K08855 GAK; cyclin G-associated kinase [EC:2.7.11.1] +K08856 STK16; serine/threonine kinase 16 [EC:2.7.11.1] +K08857 NEK1_4_5; serine/threonine-protein kinase Nek1/4/5 [EC:2.7.11.1] +K08858 SBK; serine/threonine-protein kinase SBK [EC:2.7.11.1] +K08859 STK35, PDIK1, CLIK1; serine/threonine kinase 35 [EC:2.7.11.1] +K08860 EIF2AK3, PERK; eukaryotic translation initiation factor 2-alpha kinase 3 [EC:2.7.11.1] +K08861 PLK2; polo-like kinase 2 [EC:2.7.11.21] +K08862 PLK3, CNK; polo-like kinase 3 [EC:2.7.11.21] +K08863 PLK4; polo-like kinase 4 [EC:2.7.11.21] +K08864 TLK; tousled-like kinase [EC:2.7.11.1] +K08865 PBK; PDZ-binding kinase [EC:2.7.12.2] +K08866 TTK, MPS1; serine/threonine-protein kinase TTK/MPS1 [EC:2.7.12.1] +K08867 WNK, PRKWNK; WNK lysine deficient protein kinase [EC:2.7.11.1] +K08868 ALPK; alpha-kinase +K08869 ADCK, ABC1; aarF domain-containing kinase +K08870 TWF; twinfilin +K08871 BRD2; bromodomain-containing protein 2 +K08872 RIOK3, SUDD; RIO kinase 3 [EC:2.7.11.1] +K08873 SMG1; serine/threonine-protein kinase SMG1 [EC:2.7.11.1] +K08874 TRRAP; transformation/transcription domain-associated protein +K08875 NRBP; nuclear receptor-binding protein +K08876 SCYL1; SCY1-like protein 1 +K08877 UHMK1, KIS; serine/threonine-protein kinase Kist [EC:2.7.11.1] +K08878 BCR1, BCR; breakpoint cluster region protein [EC:2.7.11.1] +K08879 HSPB8; heat shock protein beta-8 +K08880 STK19; serine/threonine kinase 19 [EC:2.7.11.1] +K08881 TRIM24, TIF1A; tripartite motif-containing protein 24 [EC:2.3.2.27] +K08882 TRIM28, TIF1B; tripartite motif-containing protein 28 [EC:2.3.2.27] +K08883 TRIM33, TIF1G; tripartite motif-containing protein 33 [EC:2.3.2.27] +K08884 K08884; serine/threonine protein kinase, bacterial [EC:2.7.11.1] +K08885 TNK1; non-receptor tyrosine-protein kinase TNK1 [EC:2.7.10.2] +K08886 TNK2, ACK1; activated CDC42 kinase 1 [EC:2.7.10.2 2.7.11.1] +K08887 ABL2; abelson tyrosine-protein kinase 2 [EC:2.7.10.2] +K08888 MATK; megakaryocyte-associated tyrosine kinase [EC:2.7.10.2] +K08889 FER, TYK3; tyrosine-protein kinase Fer [EC:2.7.10.2] +K08890 BLK; B lymphoid tyrosine kinase [EC:2.7.10.2] +K08891 FGR, SRC2; tyrosine-protein kinase Fgr [EC:2.7.10.2] +K08892 FRK, PTK5; fyn-related kinase [EC:2.7.10.2] +K08893 HCK; hemopoietic cell kinase [EC:2.7.10.2] +K08894 PTK6, BRK; protein tyrosine kinase 6 [EC:2.7.10.2] +K08895 SRMS; tyrosine-protein kinase Srms [EC:2.7.10.2] +K08896 BMX, ETK; cytoplasmic tyrosine-protein kinase BMX [EC:2.7.10.2] +K08897 EPHA10; Eph receptor A10 [EC:2.7.10.1] +K08898 LMTK2; lemur tyrosine kinase 2 [EC:2.7.10.1] +K08899 LMTK3; lemur tyrosine kinase 3 [EC:2.7.10.1] +K08900 BCS1; mitochondrial chaperone BCS1 +K08901 psbQ; photosystem II oxygen-evolving enhancer protein 3 +K08902 psb27; photosystem II Psb27 protein +K08903 psb28; photosystem II 13kDa protein +K08904 psb28-2; photosystem II Psb28-2 protein +K08905 psaG; photosystem I subunit V +K08906 petJ; cytochrome c6 +K08907 LHCA1; light-harvesting complex I chlorophyll a/b binding protein 1 +K08908 LHCA2; light-harvesting complex I chlorophyll a/b binding protein 2 +K08909 LHCA3; light-harvesting complex I chlorophyll a/b binding protein 3 +K08910 LHCA4; light-harvesting complex I chlorophyll a/b binding protein 4 +K08911 LHCA5; light-harvesting complex I chlorophyll a/b binding protein 5 +K08912 LHCB1; light-harvesting complex II chlorophyll a/b binding protein 1 +K08913 LHCB2; light-harvesting complex II chlorophyll a/b binding protein 2 +K08914 LHCB3; light-harvesting complex II chlorophyll a/b binding protein 3 +K08915 LHCB4; light-harvesting complex II chlorophyll a/b binding protein 4 +K08916 LHCB5; light-harvesting complex II chlorophyll a/b binding protein 5 +K08917 LHCB6; light-harvesting complex II chlorophyll a/b binding protein 6 +K08918 pcbA; chlorophyll a/b binding light-harvesting protein PcbA +K08919 pcbB; chlorophyll a/b binding light-harvesting protein PcbB +K08920 pcbC; chlorophyll a/b binding light-harvesting protein PcbC +K08921 pcbD; chlorophyll a/b binding light-harvesting protein PcbD +K08922 pcbE; chlorophyll a/b binding light-harvesting protein PcbE +K08923 pcbF; chlorophyll a/b binding light-harvesting protein PcbF +K08924 pcbG; chlorophyll a/b binding light-harvesting protein PcbG +K08925 pcbH; chlorophyll a/b binding light-harvesting protein PcbH +K08926 pufA; light-harvesting complex 1 alpha chain +K08927 pufB; light-harvesting complex 1 beta chain +K08928 pufL; photosynthetic reaction center L subunit +K08929 pufM; photosynthetic reaction center M subunit +K08930 pucA; light-harvesting protein B-800-850 alpha chain +K08939 pucB; light-harvesting protein B-800-850 beta chain +K08940 pscA; photosystem P840 reaction center large subunit +K08941 pscB; photosystem P840 reaction center iron-sulfur protein +K08942 pscC; photosystem P840 reaction center cytochrome c551 +K08943 pscD; photosystem P840 reaction center protein PscD +K08944 fmoA; bacteriochlorophyll A protein +K08945 csmA; chlorosome envelope protein A +K08946 csmB; chlorosome envelope protein B +K08947 csmC; chlorosome envelope protein C +K08948 csmD; chlorosome envelope protein D +K08949 csmE; chlorosome envelope protein E +K08950 csmF; chlorosome envelope protein F +K08951 csmH; chlorosome envelope protein H +K08952 csmI; chlorosome envelope protein I +K08953 csmJ; chlorosome envelope protein J +K08954 csmX; chlorosome envelope protein X +K08955 YME1; ATP-dependent metalloprotease [EC:3.4.24.-] +K08956 AFG3; AFG3 family protein [EC:3.4.24.-] +K08957 CSNK1A; casein kinase 1, alpha [EC:2.7.11.1] +K08958 CSNK1G; casein kinase 1, gamma [EC:2.7.11.1] +K08959 CSNK1D; casein kinase 1, delta [EC:2.7.11.1] +K08960 CSNK1E; casein kinase 1, epsilon [EC:2.7.11.1] +K08961 K08961; chondroitin-sulfate-ABC endolyase/exolyase [EC:4.2.2.20 4.2.2.21] +K08963 mtnA; methylthioribose-1-phosphate isomerase [EC:5.3.1.23] +K08964 mtnB; methylthioribulose-1-phosphate dehydratase [EC:4.2.1.109] +K08965 mtnW; 2,3-diketo-5-methylthiopentyl-1-phosphate enolase [EC:5.3.2.5] +K08966 mtnX; 2-hydroxy-3-keto-5-methylthiopentenyl-1-phosphate phosphatase [EC:3.1.3.87] +K08967 mtnD, mtnZ, ADI1; 1,2-dihydroxy-3-keto-5-methylthiopentene dioxygenase [EC:1.13.11.53 1.13.11.54] +K08968 msrC; L-methionine (R)-S-oxide reductase [EC:1.8.4.14] +K08969 mtnE, mtnV; L-glutamine---4-(methylsulfanyl)-2-oxobutanoate aminotransferase [EC:2.6.1.117] +K08970 rcnA; nickel/cobalt transporter (NicO) family protein +K08971 K08971; putative membrane protein +K08972 K08972; putative membrane protein +K08973 hemJ; protoporphyrinogen IX oxidase [EC:1.3.99.-] +K08974 K08974; putative membrane protein +K08975 K08975; putative membrane protein +K08976 K08976; putative membrane protein +K08977 cruF; bisanhydrobacterioruberin hydratase [EC:4.2.1.161] +K08978 TC.BAT1; bacterial/archaeal transporter family protein +K08979 K08979; putative membrane protein +K08980 K08980; putative membrane protein +K08981 K08981; putative membrane protein +K08982 K08982; putative membrane protein +K08983 K08983; putative membrane protein +K08984 yjdF; putative membrane protein +K08985 K08985; putative lipoprotein +K08986 ycgQ; putative membrane protein +K08987 K08987; putative membrane protein +K08988 K08988; putative membrane protein +K08989 K08989; putative membrane protein +K08990 ycjF; putative membrane protein +K08991 MUS81; crossover junction endonuclease MUS81 [EC:3.1.22.-] +K08992 lapA; lipopolysaccharide assembly protein A +K08993 yhhL; putative membrane protein +K08994 yneE, BEST; ion channel-forming bestrophin family protein +K08995 K08995; putative membrane protein +K08996 yagU; putative membrane protein +K08997 SELENOO, selO; protein adenylyltransferase [EC:2.7.7.108] +K08998 K08998; uncharacterized protein +K08999 K08999; uncharacterized protein +K09000 cmr4; CRISPR-associated protein Cmr4 +K09001 anmK; anhydro-N-acetylmuramic acid kinase [EC:2.7.1.170] +K09002 csm3; CRISPR-associated protein Csm3 +K09003 K09003; uncharacterized protein +K09004 K09004; uncharacterized protein +K09005 K09005; uncharacterized protein +K09006 K09006; RNA-free ribonuclease P [EC:3.1.26.5] +K09007 folE2; GTP cyclohydrolase IB [EC:3.5.4.16] +K09008 NDUFAF3; NADH dehydrogenase [ubiquinone] 1 alpha subcomplex assembly factor 3 +K09009 K09009; uncharacterized protein +K09010 K09010; uncharacterized protein +K09011 cimA; (R)-citramalate synthase [EC:2.3.3.21] +K09012 sufR; DeoR family transcriptional regulator, suf operon transcriptional repressor +K09013 sufC; Fe-S cluster assembly ATP-binding protein +K09014 sufB; Fe-S cluster assembly protein SufB +K09015 sufD; Fe-S cluster assembly protein SufD +K09016 rutG; putative pyrimidine permease RutG +K09017 rutR; TetR/AcrR family transcriptional regulator +K09018 rutA; pyrimidine oxygenase [EC:1.14.99.46] +K09019 rutE; 3-hydroxypropanoate dehydrogenase [EC:1.1.1.-] +K09020 rutB; ureidoacrylate peracid hydrolase [EC:3.5.1.110] +K09021 rutC; aminoacrylate peracid reductase +K09022 ridA, tdcF, RIDA; 2-iminobutanoate/2-iminopropanoate deaminase [EC:3.5.99.10] +K09023 rutD; aminoacrylate hydrolase [EC:3.5.1.-] +K09024 rutF; flavin reductase [EC:1.5.1.-] +K09025 APOA5; apolipoprotein A-V +K09026 NPAS2; neuronal PAS domain-containing protein 2 +K09027 XBP1; X box-binding protein 1 +K09028 JUNB; transcription factor jun-B +K09029 FOSB; protein FosB +K09030 FOSL2; fos-like antigen 2 +K09031 FOSLN; fos-like antigen, invertebrate +K09032 ATF3, LRF1; activating transcription factor 3 +K09033 JDP2; jun dimerization protein 2 +K09034 BATF; ATF-like basic leucine zipper transcriptional factor +K09035 CMAF, MAF; transcription factor Maf +K09036 MAFB; transcription factor MAFB +K09037 MAFF_G_K; transcription factor MAFF/G/K +K09038 NRL; neural retina-specific leucine zipper protein +K09039 NFE2; nuclear factor erythroid 2 +K09040 NFE2L1_3; nuclear factor erythroid 2-related factor 1/3 +K09041 NFE2N, CNC; nuclear factor erythroid 2, invertebrate +K09042 BACH; transcription regulator BACH +K09043 YAP; AP-1-like transcription factor +K09044 ATF5; activating transcription factor 5 +K09045 ATF7, ATFA; activating transcription factor 7 +K09047 CREB5, CREBPA; cyclic AMP-responsive element-binding protein 5 +K09048 CREB3; cyclic AMP-responsive element-binding protein 3 +K09049 ATF6B, CREBL1; cyclic AMP-dependent transcription factor ATF-6 beta +K09051 SKO1, ATF1, PCR1; ATF/CREB family transcription factor +K09052 CREM; cAMP response element modulator +K09053 ATF1; activating transcription factor 1 +K09054 ATF6A; cyclic AMP-dependent transcription factor ATF-6 alpha +K09055 CEBPA; CCAAT/enhancer binding protein (C/EBP), alpha +K09056 DBP; albumin D box-binding protein +K09057 HLF; hepatic leukemia factor +K09058 TEF; thyrotrophic embryonic factor +K09059 NFIL3, E4BP4; nuclear factor, interleukin 3 regulated +K09060 GBF; plant G-box-binding factor +K09061 GCF, C2orf3; GC-rich sequence DNA-binding factor +K09062 GT; protein giant +K09063 TCF3, E2A; transcription factor E2-alpha +K09064 MYOD1, MYF3; myogenic factor 3 +K09065 argF; N-acetylornithine carbamoyltransferase [EC:2.1.3.9] +K09066 FIGLA; factor in the germline alpha +K09067 ASCL; achaete-scute complex protein +K09068 TAL; T-cell acute lymphocytic leukemia protein +K09069 TWIST; twist +K09070 TCF15, PARAXIS; transcription factor 15 +K09071 HAND1; heart-and neural crest derivatives-expressed protein 1 +K09072 MSC; musculin (activated B-cell factor-1) +K09073 PTF1A; pancreas-specific transcription factor 1a +K09074 TYE7; fungal twist-like factor +K09075 NHLH, HEN, NSCL; nescient helix-loop-helix protein +K09076 MESP; mesoderm posterior +K09077 MSGN1; mesogenin 1 +K09078 NEUROD2; neurogenic differentiation factor 2 +K09079 NEUROD4, ATOH3, MATH3; neurogenic differentiation factor 4 +K09080 NEUROD6, ATOH2, MATH2; neurogenic differentiation factor 6 +K09081 NEUROG1; neurogenin 1 +K09082 NEUROG2; neurogenin 2 +K09083 ATOH1_7; atonal protein 1/7 +K09084 ATOH8; atonal protein 8 +K09085 BHLHB1_6_7; class B basic helix-loop-helix protein 1/6/7 +K09086 BHLHB4_5, BETA; class B basic helix-loop-helix protein 4/5 +K09087 HES2_6_7; hairy and enhancer of split 2/6/7 +K09088 HES3; hairy and enhancer of split 3 +K09089 HES4; hairy and enhancer of split 4 +K09090 HESN; hairy and enhancer of split, invertebrate +K09091 HEY; hairy and enhancer of split related with YRPW motif +K09092 TCFL5, CHA; transcription factor-like 5 +K09093 AHR; aryl hydrocarbon receptor +K09094 AHRR, AHH; aryl hydrocarbon receptor repressor +K09095 HIF2A, EPAS1; hypoxia-inducible factor 2 alpha +K09096 HIF3A; hypoxia-inducible factor 3 alpha +K09097 ARNT; aryl hydrocarbon receptor nuclear translocator +K09098 NPAS1_3; neuronal PAS domain-containing protein 1/3 +K09099 ARNTL2, BMAL2; aryl hydrocarbon receptor nuclear translocator-like protein 2 +K09100 SIM; single-minded +K09101 NCOA1, SRC1, KAT13A; nuclear receptor coactivator 1 [EC:2.3.1.48] +K09102 INO; heteromeric Ino2p/Ino4p transcription factor +K09103 EBF, COE; early B-cell factor +K09104 TX; delilah +K09105 TFE3; transcription factor E3 +K09106 USF; upstream stimulatory factor +K09107 SREBP2, SREBF2; sterol regulatory element-binding transcription factor 2 +K09108 TFAP4; transcription factor AP-4 +K09109 NMYC, MYCN; N-myc proto-oncogene protein +K09110 LMYC, MYCL; L-myc proto-oncogene protein +K09111 BMYC, MYCB; brain expressed myelocytomatosis oncogene +K09112 SMYC, MYCS; myc-like oncogene +K09113 MLX; MAX-like protein X +K09114 MXD, MAD; MAX dimerization protein +K09115 MNT, ROX; MAX-binding protein +K09116 K09116; damage-control phosphatase, subfamily I [EC:3.1.3.-] +K09117 K09117; uncharacterized protein +K09118 K09118; uncharacterized protein +K09119 cgi121; KEOPS complex subunit Cgi121 +K09120 K09120; uncharacterized protein +K09121 larC; pyridinium-3,5-bisthiocarboxylic acid mononucleotide nickel chelatase [EC:4.99.1.12] +K09122 K09122; uncharacterized protein +K09123 lhpI; cis-L-3-hydroxyproline dehydratase [EC:4.2.1.171] +K09124 K09124; uncharacterized protein +K09125 yhhQ; queuosine precursor transporter +K09126 K09126; uncharacterized protein +K09127 cmr3; CRISPR-associated protein Cmr3 +K09128 acnX2; phosphomecalonate degydratase small subunit [EC:4.2.1.182] +K09129 K09129; uncharacterized protein +K09130 K09130; uncharacterized protein +K09131 K09131; uncharacterized protein +K09132 K09132; uncharacterized protein +K09133 K09133; uncharacterized protein +K09134 flA; adenosyl-fluoride synthase [EC:2.5.1.63] +K09135 K09135; uncharacterized protein +K09136 ycaO; ribosomal protein S12 methylthiotransferase accessory factor +K09137 K09137; uncharacterized protein +K09138 K09138; uncharacterized protein +K09139 K09139; uncharacterized protein +K09140 TSR3; rRNA small subunit aminocarboxypropyltransferase [EC:2.5.1.157] +K09141 K09141; uncharacterized protein +K09142 SPOUT1; methyltransferase [EC:2.1.1.-] +K09143 K09143; uncharacterized protein +K09144 K09144; uncharacterized protein +K09145 K09145; uncharacterized protein +K09146 K09146; uncharacterized protein +K09147 K09147; uncharacterized protein +K09148 K09148; uncharacterized protein +K09149 K09149; uncharacterized protein +K09150 K09150; uncharacterized protein +K09152 K09152; uncharacterized protein +K09153 K09153; small membrane protein +K09154 K09154; uncharacterized protein +K09155 K09155; uncharacterized protein +K09156 cheF; taxis protein CheF +K09157 K09157; uncharacterized protein +K09158 K09158; uncharacterized protein +K09159 cptB; antitoxin CptB +K09160 K09160; uncharacterized protein +K09161 K09161; uncharacterized protein +K09162 cld; chlorite dismutase [EC:1.13.11.49] +K09163 K09163; uncharacterized protein +K09164 K09164; uncharacterized protein +K09165 K09165; dodecin +K09166 K09166; uncharacterized protein +K09167 K09167; uncharacterized protein +K09168 NFIA; nuclear factor I/A +K09169 NFIB; nuclear factor I/B +K09170 NFIC; nuclear factor I/C +K09171 NFIX; nuclear factor I/X +K09172 NFIN; nuclear factor I, invertebrate +K09173 RFX1_2_3; regulatory factor X 1/2/3 +K09174 RFX4; regulatory factor X 4 +K09175 RFX7; DNA-binding protein RFX7 +K09176 TFAP2A_B; transcription factor AP-2 alpha/beta +K09177 TFAP2C; transcription factor AP-2 gamma +K09178 TFAP2D; transcription factor AP-2 delta +K09179 TFAP2E; transcription factor AP-2 epsilon +K09180 TFAP2N; transcription factor AP-2, invertebrate +K09181 yfiQ; acetyltransferase +K09182 GATA1; GATA-binding protein 1 +K09183 GATA4; GATA-binding protein 4 +K09184 GATAF; GATA-binding protein, other eukaryote +K09185 NR6AN; nuclear receptor subfamily 6 group A +K09186 MLL1; [histone H3]-lysine4 N-trimethyltransferase MLL1 [EC:2.1.1.354] +K09187 MLL2, ALR; [histone H3]-lysine4 N-trimethyltransferase MLL2 [EC:2.1.1.354] +K09188 MLL3; [histone H3]-lysine4 N-trimethyltransferase MLL3 [EC:2.1.1.354] +K09189 MLL5; [histone H3]-lysine4 N-trimethyltransferase MLL5 [EC:2.1.1.354] +K09190 K09190; uncharacterized protein +K09191 GTF3A; general transcription factor IIIA +K09192 SP2; transcription factor Sp2 +K09193 SP3; transcription factor Sp3 +K09194 SP4; transcription factor Sp4 +K09195 SP5; transcription factor Sp5 +K09196 SP6; transcription factor Sp6 +K09197 SP7; transcription factor Sp7 +K09198 SP8; transcription factor Sp8 +K09199 SP9; transcription factor Sp9 +K09200 SP-N; transcription factor Sp, invertebrate +K09201 YY; transcription factor YY +K09202 SWI5; regulatory protein SWI5 +K09203 EGR1; early growth response protein 1 +K09204 KLF1; krueppel-like factor 1 +K09205 KLF8_12; krueppel-like factor 8/12 +K09206 KLF5; krueppel-like factor 5 +K09207 KLF6_7; krueppel-like factor 6/7 +K09208 KLF9S, BTEB; krueppel-like factor 9/13/14/16 +K09209 KLF10_11, TIEG; krueppel-like factor 10/11 +K09210 KLF15; krueppel-like factor 15 +K09211 KLF17; krueppel-like factor 17 +K09213 HB; hunchback +K09214 GL; glass +K09215 OSR, ODD; odd-skipped +K09216 OVOL; ovo +K09217 SNAI3; snail 3 +K09219 SCRT; scratch +K09220 IKZF, ZNFN1A; IKAROS family zinc finger protein +K09221 MZF1; myeloid zinc finger protein 1 +K09222 REST; RE1-silencing transcription factor +K09223 GFI1; growth factor independent 1 +K09224 ZIC1; zinc finger protein ZIC 1 +K09225 ZIC4; zinc finger protein ZIC 4 +K09226 ZIC5; zinc finger protein ZIC 5 +K09227 ZICN; zinc finger protein ZIC, invertebrate +K09228 KRAB; KRAB domain-containing zinc finger protein +K09229 ZKSCAN; KRAB and SCAN domains-containing zinc finger protein +K09230 SCAN; SCAN domain-containing zinc finger protein +K09231 KR; krueppel +K09232 GLIS1_3; zinc finger protein GLIS1/3 +K09233 GLIS2; zinc finger protein GLIS2 +K09234 WT1; Wilms tumor protein 1 +K09235 RME1; zinc finger protein RME1 +K09236 TSHZ; teashirt +K09237 TTK; tramtrack +K09238 ACE2; metallothionein expression activator +K09239 HIVEP; human immunodeficiency virus type I enhancer-binding protein +K09240 CAT8; transcriptional regulatory protein CAT8 +K09241 GAL4; transcriptional regulatory protein GAL4 +K09242 LEU3; transcriptional regulatory protein LEU3 +K09243 UME6; transcriptional regulatory protein UME6 +K09244 AMDR; transcriptional regulatory protein AMDR +K09245 UGA3; transcriptional activator protein UGA3 +K09246 ARG81, ARGR2; arginine metabolism regulation protein II +K09247 CYP1, HAP1; heme activator protein 1 +K09248 PUT3; proline utilization trans-activator +K09249 ABF1, BAF1; ARS-binding factor 1 +K09250 CNBP; cellular nucleic acid-binding protein +K09251 patA; putrescine aminotransferase [EC:2.6.1.82] +K09252 FAEB; feruloyl esterase [EC:3.1.1.73] +K09253 RELB; transcription factor RelB +K09254 REL; c-Rel proto-oncogene protein +K09255 ANK2, ANKB; ankyrin-2 +K09256 NFKBIL1; NF-kappa-B inhibitor-like protein 1 +K09257 NFKBIL2; NF-kappa-B inhibitor-like protein 2 +K09258 BCL3; B-cell CLL/lymphoma 3 protein +K09259 ANK3, ANKG; ankyrin-3 +K09260 MEF2A; MADS-box transcription enhancer factor 2A +K09261 MEF2B; MADS-box transcription enhancer factor 2B +K09262 MEF2D; MADS-box transcription enhancer factor 2D +K09264 K09264; MADS-box transcription factor, plant +K09265 RLM1; transcription factor RLM1 +K09266 SRY; sex-determining region Y protein (SOX group A) +K09267 SOX1S; transcription factor SOX1/3/14/21 (SOX group B) +K09268 SOX11_12; transcription factor SOX11/12 (SOX group C) +K09269 SOX5_6_13; transcription factor SOX5/6/13 (SOX group D) +K09270 SOX7S; transcription factor SOX7/8/10/18 (SOX group E/F) +K09271 SOX15_30; transcription factor SOX15/30 +K09272 SSRP1, POB3; FACT complex subunit SSRP1/POB3 +K09273 UBTF; upstream-binding transcription factor +K09274 K09274; HMG box factor, other +K09275 TFCP2; transcription factor CP2 and related proteins +K09276 YBX1, NSEP1; Y-box-binding protein 1 +K09277 YBX2; Y-box-binding protein 2 +K09278 RUNX2, AML3; runt-related transcription factor 2 +K09279 RUNX3, AML2; runt-related transcription factor 3 +K09280 RUNXA_B; runt-related transcription factor +K09281 K09281; copper-fist transcription factor +K09282 HMGA1; high mobility group AT-hook protein 1 +K09283 HMGA2; high mobility group AT-hook protein 2 +K09284 AP2; AP2-like factor, euAP2 lineage +K09285 OVM, ANT; AP2-like factor, ANT lineage +K09286 EREBP; EREBP-like factor +K09287 RAV; RAV-like factor +K09288 CCDC6, PTC; coiled-coil domain-containing protein 6 +K09289 NCOA4, PTC3; nuclear receptor coactivator 4 +K09290 TPM3; tropomyosin 3 +K09291 TPR, MLP1, MLP2; nucleoprotein TPR +K09292 TFG; protein TFG +K09293 PAX8; paired box protein 8 +K09294 HOX_9; homeobox protein HoxB/C/D9 +K09295 HOXD10; homrobox protein Hox-D10 +K09296 HOX_11; homeobox protein HoxC/D11 +K09297 HOX_12; homeobox protein HoxC/D12 +K09298 HOX_13; homeobox protein HoxA/B/C/D13 +K09299 ZEB1; zinc finger homeobox protein 1 +K09300 ABDB; homeobox protein abdominal-B and related proteins +K09301 HOX_1; homeobox protein HoxA/B/D1 +K09302 HOX_2; homeobox protein HoxA/B2 +K09303 HOX_3; homeobox protein HoxA/B/D3 +K09304 HOX_4; homeobox protein HoxA/B/C/D4 +K09305 HOX_5; homeobox protein HoxA/B/C5 +K09306 HOX_6; homeobox protein HoxA/B/C6 +K09307 HOX_7; homeobox protein HoxA/B7 +K09308 HOX_8; homeobox protein HoxB/C/D8 +K09309 NKX1; homeobox protein Nkx-1 +K09310 GSH; homeobox protein GSH +K09312 CDX1_4; homeobox protein CDX1/4 +K09313 CUTL; homeobox protein cut-like +K09314 DLX1_4_6; homeobox protein DLX1/4/6 +K09315 DLX3; homeobox protein DLX3 +K09317 EMX; homeobox protein EMX +K09318 VAX; homeobox protein ventral anterior +K09319 EN; homeobox protein engrailed +K09320 EVX; homeobox even-skipped homolog protein +K09321 GBX; homeobox protein GBX +K09322 MEOX, MOX; homeobox protein MOX +K09323 ALX3; homeobox protein aristaless-like 3 +K09324 GSC; homeobox protein goosecoid +K09325 GSCL; homeobox protein goosecoid-like +K09326 OTX1; homeobox protein OTX1 +K09327 PROP1; homeobox protein prophet of Pit-1 +K09328 UNC4; homeobox protein Unc-4 +K09329 PRRX, PMX; paired mesoderm homeobox protein +K09330 PHOX2, PMX2; paired mesoderm homeobox protein 2 +K09331 SHOX; short stature homeobox protein +K09332 RAX, RX; retina and anterior neural fold homeobox protein +K09333 RAXL; retina and anterior neural fold homeobox-like protein +K09334 ALX1, CART1; ALX homeobox protein 1 +K09335 VSX1; visual system homeobox protein 1 +K09336 VSX2, CHX10; visual system homeobox protein 2 +K09337 CRX; cone-rod homeobox protein +K09338 HD-ZIP; homeobox-leucine zipper protein +K09339 HLX1; homeobox protein HLX1 +K09340 TLX1, HOX11; T-cell leukemia homeobox protein 1 +K09341 MSX; homeobox protein MSX +K09342 NKX2-1, TITF1; homeobox protein Nkx-2.1 +K09343 NKX2-3; homeobox protein Nkx-2.3 +K09344 NKX2-4; homeobox protein Nkx-2.4 +K09345 NKX2-5; homeobox protein Nkx-2.5 +K09346 NKX2-6; homeobox protein Nkx-2.6 +K09347 NKX2-8; homeobox protein Nkx-2.8 +K09348 NKX3-1; homeobox protein Nkx-3.1 +K09349 NKX5, HMX; homeobox protein Nkx-5 +K09350 NKX6-2; homeobox protein Nkx-6.2 +K09351 NKX6-3; homeobox protein Nkx-6.3 +K09352 NKXN; homeobox protein Nkx, invertebrate +K09353 LBX; homeobox protein LBX +K09354 HESX1; homeobox protein expressed in ES cells 1 +K09355 PBX1; pre-B-cell leukemia transcription factor 1 +K09356 PITX1; paired-like homeodomain transcription factor 1 +K09357 PITX3; paired-like homeodomain transcription factor 3 +K09358 MATA1; mating-type protein A1 +K09359 MATA2; mating-type protein A2 +K09360 BARHL; BarH-like +K09361 BARX; BarH-like homeobox +K09362 K09362; homeo domain only family, other +K09363 POU1F, PIT1; POU domain transcription factor, class 1 +K09364 POU2F, OTF; POU domain transcription factor, class 2 +K09365 POU3F, OTF; POU domain transcription factor, class 3 +K09366 POU4F, BRN3; POU domain transcription factor, class 4 +K09367 POU5F; POU domain transcription factor, class 5 +K09368 POU6F; POU domain transcription factor, class 6 +K09370 ISL1; insulin gene enhancer protein ISL-1 +K09371 LMX1; LIM homeobox transcription factor 1 +K09372 LHX1; LIM homeobox protein 1 +K09373 LHX2_9; LIM homeobox protein 2/9 +K09374 LHX3_4; LIM homeobox protein 3/4 +K09375 LHX6_8; LIM homeobox protein 6/8 +K09377 CSRP; cysteine and glycine-rich protein +K09378 ZFHX3, ATBF1; zinc finger homeobox protein 3 +K09379 ZFHX2; zinc finger homeobox protein 2 +K09380 ZFHX4; zinc finger homeobox protein 4 +K09381 PAX3_7; paired box protein 3/7 +K09382 PAX1_9; paired box protein 1/9 +K09383 PAX5; paired box protein 5 +K09384 K09384; uncharacterized protein +K09385 FOXG; forkhead box protein G +K09386 K09386; uncharacterized protein +K09387 FOXA1, HNF3A; forkhead box protein A1, hepatocyte nuclear factor 3-alpha +K09388 K09388; uncharacterized protein +K09389 E2F2; transcription factor E2F2 +K09390 E2F6; transcription factor E2F6 +K09391 E2F7_8; transcription factor E2F7/8 +K09392 TFDP2; transcription factor Dp-2 +K09393 TFDP3; transcription factor Dp-3 +K09395 FOXB; forkhead box protein B +K09396 FOXC; forkhead box protein C +K09397 FOXD; forkhead box protein D +K09398 FOXE; forkhead box protein E +K09399 FOXF; forkhead box protein F +K09400 FOXH; forkhead box protein H +K09401 FOXI; forkhead box protein I +K09402 FOXJ1; forkhead box protein J1 +K09403 FOXJ2_3; forkhead box protein J2/3 +K09404 FOXK; forkhead box protein K +K09405 FOXL; forkhead box protein L +K09406 FOXM; forkhead box protein M +K09407 FOXN; forkhead box protein N +K09408 FOXO3; forkhead box protein O3 +K09409 FOXP2_4; forkhead box protein P2/4 +K09410 FOXQ, HFH1; forkhead box protein Q +K09411 FOXX; forkhead box protein, other +K09412 FOXS; forkhead box protein S +K09413 HCM1; forkhead transcription factor HCM1 +K09414 HSF1; heat shock transcription factor 1 +K09415 HSF2; heat shock transcription factor 2 +K09416 HSF3; heat shock transcription factor 3 +K09417 HSF4; heat shock transcription factor 4 +K09419 HSFF; heat shock transcription factor, other eukaryote +K09420 MYB, C-MYB; transcriptional activator Myb +K09421 MYBL1, A-MYB; myb-related protein A +K09422 MYBP; transcription factor MYB, plant +K09423 BAS1; Myb-like DNA-binding protein BAS1 +K09424 REB1; Myb-like DNA-binding protein REB1 +K09425 K09425; Myb-like DNA-binding protein FlbD +K09426 RAP1; Myb-like DNA-binding protein RAP1 +K09427 ADF1; Adh transcription factor 1 +K09428 ELF1_2_4; E74-like factor 1/2/4 +K09429 K09429, ELF3; E74-like factor 3 +K09430 ELK3; ETS domain-containing protein Elk-3 (SRF accessory protein 2) +K09431 ETV1; ets translocation variant 1 +K09432 ETV2, ER71; ETS translocation variant 2 +K09433 ETV3; ETS translocation variant 3 +K09434 ERF; ETS domain-containing transcription factor ERF +K09435 ERG; transcriptional regulator ERG +K09436 FLI1; friend leukemia integration 1 transcription factor +K09437 FEV; ETS oncogene family protein FEV +K09438 SPI1; transcription factor PU.1 +K09439 SPIB; transcription factor Spi-B +K09440 SPIC; transcription factor Spi-C +K09441 GABPA; GA-binding protein transcription factor, alpha +K09442 SPDEF; SAM pointed domain-containing ETS transcription factor +K09443 K09443; ETS-type family, other +K09444 IRF1; interferon regulatory factor 1 +K09445 IRF4; interferon regulatory factor 4 +K09446 IRF5; interferon regulatory factor 5 +K09447 IRF7; interferon regulatory factor 7 +K09448 TEAD; transcriptional enhancer factor +K09451 ALX4; homeobox protein aristaless-like 4 +K09452 ARX; homeobox protein aristaless-related +K09453 SNAPC4; snRNA-activating protein complex subunit 4 +K09454 GABPB; GA-binding protein transcription factor, beta +K09455 MITF; microphthalmia-associated transcription factor +K09456 aidB; putative acyl-CoA dehydrogenase +K09457 queF; 7-cyano-7-deazaguanine reductase [EC:1.7.1.13] +K09458 fabF, OXSM, CEM1; 3-oxoacyl-[acyl-carrier-protein] synthase II [EC:2.3.1.179] +K09459 E4.1.1.82; phosphonopyruvate decarboxylase [EC:4.1.1.82] +K09460 auaEII; anthranilate-CoA ligase [EC:6.2.1.32] +K09461 E1.14.13.40; anthraniloyl-CoA monooxygenase [EC:1.14.13.40] +K09462 E3.4.21.119; glandular kallikrein 13 [EC:3.4.21.119] +K09463 KLK13; kallikrein 13 [EC:3.4.21.119] +K09464 GCN4; general control protein GCN4 +K09465 BRLA; zinc finger protein BrlA +K09466 ADR1; zinc finger protein ADR1 +K09467 MIG; zinc-finger protein CreA/MIG +K09468 MSN2_4; zinc finger protein MSN2/4 +K09470 puuA; gamma-glutamylputrescine synthase [EC:6.3.1.11] +K09471 puuB, ordL; gamma-glutamylputrescine oxidase [EC:1.4.3.-] +K09472 puuC, aldH; 4-(gamma-glutamylamino)butanal dehydrogenase [EC:1.2.1.99] +K09473 puuD; gamma-glutamyl-gamma-aminobutyrate hydrolase [EC:3.5.1.94] +K09474 phoN; acid phosphatase (class A) [EC:3.1.3.2] +K09475 ompC; outer membrane pore protein C +K09476 ompF; outer membrane pore protein F +K09477 citT; citrate:succinate antiporter +K09478 ACADSB; short-chain 2-methylacyl-CoA dehydrogenase [EC:1.3.8.5] +K09479 ACADVL; very long chain acyl-CoA dehydrogenase [EC:1.3.8.9] +K09480 DGD; digalactosyldiacylglycerol synthase [EC:2.4.1.241] +K09481 SEC61B, SBH2; protein transport protein SEC61 subunit beta +K09482 gatD; glutamyl-tRNA(Gln) amidotransferase subunit D [EC:6.3.5.7] +K09483 quiC; 3-dehydroshikimate dehydratase [EC:4.2.1.118] +K09484 QUTB, QA-3; quinate dehydrogenase [EC:1.1.1.24] +K09485 HSP110; heat shock protein 110kDa +K09486 HYOU1; hypoxia up-regulated 1 +K09487 HSP90B, TRA1; heat shock protein 90kDa beta +K09488 TRAP1, HSP75; TNF receptor-associated protein 1 +K09489 HSPA4; heat shock 70kDa protein 4 +K09490 HSPA5, BIP; endoplasmic reticulum chaperone BiP [EC:3.6.4.10] +K09491 STCH; stress 70 protein chaperone microsome-associated 60kDa protein +K09492 MKKS; McKusick-Kaufman syndrome protein +K09493 CCT1, TCP1; T-complex protein 1 subunit alpha +K09494 CCT2; T-complex protein 1 subunit beta +K09495 CCT3, TRIC5; T-complex protein 1 subunit gamma +K09496 CCT4; T-complex protein 1 subunit delta +K09497 CCT5; T-complex protein 1 subunit epsilon +K09498 CCT6; T-complex protein 1 subunit zeta +K09499 CCT7; T-complex protein 1 subunit eta +K09500 CCT8; T-complex protein 1 subunit theta +K09501 SERPINH1, HSP47; serpin peptidase inhibitor, clade H, member 1 +K09502 DNAJA1; DnaJ homolog subfamily A member 1 +K09503 DNAJA2; DnaJ homolog subfamily A member 2 +K09504 DNAJA3; DnaJ homolog subfamily A member 3 +K09505 DNAJA4; DnaJ homolog subfamily A member 4 +K09506 DNAJA5; DnaJ homolog subfamily A member 5 +K09507 DNAJB1; DnaJ homolog subfamily B member 1 +K09508 DNAJB2; DnaJ homolog subfamily B member 2 +K09509 DNAJB3; DnaJ homolog subfamily B member 3 +K09510 DNAJB4; DnaJ homolog subfamily B member 4 +K09511 DNAJB5; DnaJ homolog subfamily B member 5 +K09512 DNAJB6; DnaJ homolog subfamily B member 6 +K09513 DNAJB7; DnaJ homolog subfamily B member 7 +K09514 DNAJB8; DnaJ homolog subfamily B member 8 +K09515 DNAJB9; DnaJ homolog subfamily B member 9 +K09516 RETSAT; all-trans-retinol 13,14-reductase [EC:1.3.99.23] +K09517 DNAJB11; DnaJ homolog subfamily B member 11 +K09518 DNAJB12; DnaJ homolog subfamily B member 12 +K09519 DNAJB13; DnaJ homolog subfamily B member 13 +K09520 DNAJB14; DnaJ homolog subfamily B member 14 +K09521 DNAJC1; DnaJ homolog subfamily C member 1 +K09522 DNAJC2; DnaJ homolog subfamily C member 2 +K09523 DNAJC3; DnaJ homolog subfamily C member 3 +K09524 DNAJC4; DnaJ homolog subfamily C member 4 +K09525 DNAJC5; DnaJ homolog subfamily C member 5 +K09526 DNAJC6; DnaJ homolog subfamily C member 6 +K09527 DNAJC7; DnaJ homolog subfamily C member 7 +K09528 DNAJC8; DnaJ homolog subfamily C member 8 +K09529 DNAJC9; DnaJ homolog subfamily C member 9 +K09530 DNAJC10; DnaJ homolog subfamily C member 10 [EC:1.8.4.-] +K09531 DNAJC11; DnaJ homolog subfamily C member 11 +K09532 DNAJC12; DnaJ homolog subfamily C member 12 +K09533 DNAJC13; DnaJ homolog subfamily C member 13 +K09534 DNAJC14; DnaJ homolog subfamily C member 14 +K09535 DNAJC15; DnaJ homolog subfamily C member 15 +K09536 DNAJC16; DnaJ homolog subfamily C member 16 +K09537 DNAJC17; DnaJ homolog subfamily C member 17 +K09538 DNAJC18; DnaJ homolog subfamily C member 18 +K09539 DNAJC19; DnaJ homolog subfamily C member 19 +K09540 SEC63, DNAJC23; translocation protein SEC63 +K09541 CRYAA; crystallin, alpha A +K09542 CRYAB; crystallin, alpha B +K09543 HSPB2; heat shock protein beta-2 +K09544 HSPB3; heat shock protein beta-3 +K09545 HSPB6; heat shock protein beta-6 +K09546 HSPB7; heat shock protein beta-7 +K09547 HSPB9; heat shock protein beta-9 +K09548 PFDN1; prefoldin subunit 1 +K09549 PFDN2; prefoldin subunit 2 +K09550 PFDN4; prefoldin subunit 4 +K09551 CLGN; calmegin +K09552 SPG7; spastic paraplegia 7 [EC:3.4.24.-] +K09553 STIP1; stress-induced-phosphoprotein 1 +K09554 CDC37; cell division cycle protein 37 +K09555 BAG1; BCL2-associated athanogene 1 +K09556 BAG2; BCL2-associated athanogene 2 +K09557 BAG3; BCL2-associated athanogene 3 +K09558 BAG4; BCL2-associated athanogene 4 +K09559 BAG5; BCL2-associated athanogene 5 +K09560 ST13; suppressor of tumorigenicity protein 13 +K09561 STUB1, CHIP; STIP1 homology and U-box containing protein 1 [EC:2.3.2.27] +K09562 HSPBP1, FES1; hsp70-interacting protein +K09563 PPIC, CYPC; peptidyl-prolyl isomerase C (cyclophilin C) [EC:5.2.1.8] +K09564 PPIE; peptidyl-prolyl isomerase E (cyclophilin E) [EC:5.2.1.8] +K09565 PPIF; peptidyl-prolyl isomerase F (cyclophilin D) [EC:5.2.1.8] +K09566 PPIG; peptidyl-prolyl isomerase G (cyclophilin G) [EC:5.2.1.8] +K09567 PPIH, CYPH; peptidyl-prolyl isomerase H (cyclophilin H) [EC:5.2.1.8] +K09568 FKBP1; FK506-binding protein 1 [EC:5.2.1.8] +K09569 FKBP2; FK506-binding protein 2 [EC:5.2.1.8] +K09570 FKBP3; FK506-binding protein 3 [EC:5.2.1.8] +K09571 FKBP4_5; FK506-binding protein 4/5 [EC:5.2.1.8] +K09572 FKBP6; FK506-binding protein 6 [EC:5.2.1.8] +K09573 FKBP7; FK506-binding protein 7 [EC:5.2.1.8] +K09574 FKBP8; FK506-binding protein 8 [EC:5.2.1.8] +K09575 FKBP9_10; FK506-binding protein 9/10 [EC:5.2.1.8] +K09576 FKBP11; FK506-binding protein 11 [EC:5.2.1.8] +K09577 FKBP14; FK506-binding protein 14 [EC:5.2.1.8] +K09578 PIN1; peptidyl-prolyl cis-trans isomerase NIMA-interacting 1 [EC:5.2.1.8] +K09579 PIN4; peptidyl-prolyl cis-trans isomerase NIMA-interacting 4 [EC:5.2.1.8] +K09580 PDIA1, P4HB; protein disulfide-isomerase A1 [EC:5.3.4.1] +K09581 PDIA2; protein disulfide-isomerase A2 [EC:5.3.4.1] +K09582 PDIA4, ERP72; protein disulfide-isomerase A4 [EC:5.3.4.1] +K09583 PDIA5; protein disulfide-isomerase A5 [EC:5.3.4.1] +K09584 PDIA6, TXNDC7; protein disulfide-isomerase A6 [EC:5.3.4.1] +K09585 TMX3, TXNDC10; protein disulfide-isomerase [EC:5.3.4.1] +K09586 ERP29; endoplasmic reticulum protein 29 +K09587 CYP90B, DWF4; steroid 22S-hydroxylase [EC:1.14.14.178] +K09588 CYP90A1, CPD; 3beta,22alpha-dihydroxysteroid 3-dehydrogenase [EC:1.14.19.79] +K09589 CYP90D2, D2; steroid 3-oxidase [EC:1.14.-.-] +K09590 CYP85A1, BR6OX1; brassinosteroid 6-oxygenase [EC:1.14.14.179] +K09591 DET2; steroid 5-alpha-reductase [EC:1.3.1.22] +K09592 EGLN, HPH; hypoxia-inducible factor prolyl hydroxylase [EC:1.14.11.29] +K09593 GAB1; GRB2-associated-binding protein 1 +K09594 FLCN, BHD; folliculin +K09595 HM13; minor histocompatibility antigen H13 [EC:3.4.23.-] +K09596 SPPL2A; signal peptide peptidase-like 2A [EC:3.4.23.-] +K09597 SPPL2B; signal peptide peptidase-like 2B [EC:3.4.23.-] +K09598 SPPL3; signal peptide peptidase-like 3 [EC:3.4.23.-] +K09599 CTSP; cathepsin P [EC:3.4.22.-] +K09600 CTSM; cathepsin M [EC:3.4.22.-] +K09601 CTSR; cathepsin R [EC:3.4.22.-] +K09602 OTUB1; ubiquitin thioesterase protein OTUB1 [EC:3.4.19.12] +K09603 OTUB2; ubiquitin thioesterase protein OTUB2 [EC:3.4.19.12] +K09604 ARTS1; adipocyte-derived leucine aminopeptidase [EC:3.4.11.-] +K09605 RNPEPL1; arginyl aminopeptidase-like 1 [EC:3.4.11.-] +K09606 C9ORF3; aminopeptidase O [EC:3.4.11.-] +K09607 ina; immune inhibitor A [EC:3.4.24.-] +K09608 TLL1; tolloid-like protein 1 [EC:3.4.24.-] +K09609 ADAMTS20; a disintegrin and metalloproteinase with thrombospondin motifs 20 [EC:3.4.24.-] +K09610 ECEL1; endothelin-converting enzyme-like 1 [EC:3.4.24.-] +K09611 NPEPL1; probable aminopeptidase NPEPL1 [EC:3.4.11.-] +K09612 iap; alkaline phosphatase isozyme conversion protein [EC:3.4.11.-] +K09613 COPS5, CSN5; COP9 signalosome complex subunit 5 [EC:3.4.-.-] +K09614 CORIN; atrial natriuretic peptide-converting enzyme [EC:3.4.21.-] +K09615 TPSG1; tryptase gamma 1 [EC:3.4.21.-] +K09616 GZMH, CTSGL2; granzyme H (cathepsin G-like 2) [EC:3.4.21.-] +K09617 KLK5; kallikrein 5 [EC:3.4.21.-] +K09618 KLK9; kallikrein 9 [EC:3.4.21.-] +K09619 KLK10, PRSSL1; kallikrein 10 [EC:3.4.21.-] +K09620 KLK11, PRSS20; kallikrein 11 [EC:3.4.21.-] +K09621 KLK12; kallikrein 12 [EC:3.4.21.-] +K09622 KLK14; kallikrein 14 [EC:3.4.21.-] +K09623 KLK15; kallikrein 15 [EC:3.4.21.-] +K09624 PRSS12; neurotrypsin [EC:3.4.21.-] +K09625 PRSS21; testisin [EC:3.4.21.-] +K09626 PRSS22, BSSP4; brain-specific serine protease 4 [EC:3.4.21.-] +K09627 PRSS23; serine protease 23 [EC:3.4.21.-] +K09628 PRSS27; serine protease 27 [EC:3.4.21.-] +K09629 PRSS33; serine protease 33 [EC:3.4.21.-] +K09630 PRSS36; polyserase 2 [EC:3.4.21.-] +K09631 HGFAC; hepatocyte growth factor activator [EC:3.4.21.-] +K09632 CTRL; chymotrypsin-like protease [EC:3.4.21.-] +K09633 TMPRSS2; transmembrane protease serine 2 [EC:3.4.21.122] +K09634 TMPRSS3; transmembrane protease serine 3 [EC:3.4.21.-] +K09635 TMPRSS4; transmembrane protease serine 4 [EC:3.4.21.-] +K09636 TMPRSS5; transmembrane protease serine 5 [EC:3.4.21.-] +K09637 TMPRSS6; transmembrane protease serine 6 [EC:3.4.21.-] +K09638 TMPRSS7; transmembrane protease serine 7 [EC:3.4.21.-] +K09639 TMPRSS8; transmembrane protease serine 8 [EC:3.4.21.-] +K09640 TMPRSS9; transmembrane protease serine 9 [EC:3.4.21.-] +K09641 TMPRSS11D; transmembrane protease serine 11D [EC:3.4.21.-] +K09642 TMPRSS11E; transmembrane protease serine 11E [EC:3.4.21.-] +K09643 TMPRSS13, TMPRSS11; transmembrane protease serine 13 +K09644 LPA; apolipoprotein(a) [EC:3.4.21.-] +K09645 CPVL; vitellogenic carboxypeptidase-like protein [EC:3.4.16.-] +K09646 SCPEP1; serine carboxypeptidase 1 [EC:3.4.16.-] +K09647 IMP1; mitochondrial inner membrane protease subunit 1 [EC:3.4.21.-] +K09648 IMP2; mitochondrial inner membrane protease subunit 2 [EC:3.4.21.-] +K09649 PRSS16; thymus-specific serine protease [EC:3.4.-.-] +K09650 PARL, PSARL, PCP1; rhomboid-like protein [EC:3.4.21.105] +K09651 RHBDD1, RHBDL4; rhomboid-related protein 4 [EC:3.4.21.105] +K09652 RHBDD2, RHBDL7; rhomboid domain-containing protein 2 +K09653 C1GALT2, C1GALT1C1; C1GALT1-specific chaperone 1 +K09654 B3GALNT2; beta-1,3-N-acetylgalactosaminyltransferase 2 [EC:2.4.1.313] +K09655 B4GALNT2; beta-1,4-N-acetylgalactosaminyltransferase 2 [EC:2.4.1.-] +K09656 B4GALNT3; beta-1,4-N-acetylgalactosaminyltransferase 3 [EC:2.4.1.244] +K09657 B4GALNT4; beta-1,4-N-acetylgalactosaminyltransferase 4 [EC:2.4.1.244] +K09658 DPM2; dolichol phosphate-mannose biosynthesis regulatory protein +K09659 DPM3; dolichol-phosphate mannosyltransferase subunit 3 +K09660 MPDU1; mannose-P-dolichol utilization defect 1 +K09661 MGAT5B; mannosyl alpha-1,6-glycoprotein beta-1,6-N-acetyl-glucosaminyltransferase, isozyme B [EC:2.4.1.-] +K09662 GCNT3; N-acetylglucosaminyltransferase 3, mucin type [EC:2.4.1.-] +K09663 GCNT4; beta-1,6-N-acetylglucosaminyltransferase 4 [EC:2.4.1.-] +K09664 B3GNT7; beta-1,3-N-acetylglucosaminyltransferase 7 [EC:2.4.1.-] +K09665 B3GNT8; beta-1,3-N-acetylglucosaminyltransferase 8 [EC:2.4.1.-] +K09666 POMGNT1; beta-1,2-N-acetylglucosaminyltransferase [EC:2.4.1.-] +K09667 OGT; protein O-GlcNAc transferase [EC:2.4.1.255] +K09668 LARGE; glycosyltransferase-like protein LARGE [EC:2.4.2.- 2.4.1.-] +K09669 FUT10; alpha-1,3-fucosyltransferase 10 [EC:2.4.1.-] +K09670 CHST5; carbohydrate 6-sulfotransferase 5 [EC:2.8.2.-] +K09671 CHST6; carbohydrate 6-sulfotransferase 6 [EC:2.8.2.-] +K09672 CHST8; carbohydrate 4-sulfotransferase 8 [EC:2.8.2.-] +K09673 CHST9; carbohydrate 4-sulfotransferase 9 [EC:2.8.2.-] +K09674 CHST10; carbohydrate 3-sulfotransferase 10 [EC:2.8.2.-] +K09675 GAL3ST2; galactose-3-O-sulfotransferase 2 [EC:2.8.2.-] +K09676 GAL3ST3; galactose-3-O-sulfotransferase 3 [EC:2.8.2.-] +K09677 GAL3ST4; galactose-3-O-sulfotransferase 4 [EC:2.8.2.-] +K09678 HS3ST4; [heparan sulfate]-glucosamine 3-sulfotransferase 4 [EC:2.8.2.-] +K09679 HS3ST6; [heparan sulfate]-glucosamine 3-sulfotransferase 6 [EC:2.8.2.-] +K09680 PANK1_2_3, CAB1, coaW; type II pantothenate kinase [EC:2.7.1.33] +K09681 gltC; LysR family transcriptional regulator, transcription activator of glutamate synthase operon +K09682 hpr; MarR family transcriptional regulator, protease production regulatory protein HPr +K09683 hutP; hut operon positive regulatory protein +K09684 pucR; PucR family transcriptional regulator, purine catabolism regulatory protein +K09685 purR; HTH-type transcriptional regulator, purine operon repressor +K09688 kpsM; capsular polysaccharide transport system permease protein +K09689 kpsT; capsular polysaccharide transport system ATP-binding protein [EC:7.6.2.12] +K09690 wzm, rfbA; homopolymeric O-antigen transport system permease protein +K09691 wzt, rfbB; homopolymeric O-antigen transport system ATP-binding protein [EC:7.5.2.14] +K09692 tagG; teichoic acid transport system permease protein +K09693 tagH; teichoic acid transport system ATP-binding protein [EC:7.5.2.4] +K09694 nodJ; lipooligosaccharide transport system permease protein +K09695 nodI; lipooligosaccharide transport system ATP-binding protein +K09696 natB; sodium transport system permease protein +K09697 natA; sodium transport system ATP-binding protein [EC:7.2.2.4] +K09698 gltX; nondiscriminating glutamyl-tRNA synthetase [EC:6.1.1.24] +K09699 DBT, bkdB; 2-oxoisovalerate dehydrogenase E2 component (dihydrolipoyl transacylase) [EC:2.3.1.168] +K09700 K09700; uncharacterized protein +K09701 K09701; uncharacterized protein +K09702 K09702; uncharacterized protein +K09703 K09703; uncharacterized protein +K09704 K09704; uncharacterized protein +K09705 K09705; uncharacterized protein +K09706 K09706; uncharacterized protein +K09707 K09707; uncharacterized protein +K09708 ACE2, ACEH; angiotensin-converting enzyme 2 [EC:3.4.17.23] +K09709 meh; 3-methylfumaryl-CoA hydratase [EC:4.2.1.153] +K09710 ybeB; ribosome-associated protein +K09711 lipS1; lipoyl synthase +K09712 K09712; uncharacterized protein +K09713 K09713; uncharacterized protein +K09714 tfx; HTH-type transcriptional regulator, fmd operon transcriptional regulator +K09715 K09715; uncharacterized protein +K09716 dtdA, GEK1; D-aminoacyl-tRNA deacylase [EC:3.1.1.96] +K09717 K09717; uncharacterized protein +K09718 K09718; uncharacterized protein +K09719 K09719; uncharacterized protein +K09720 nrpRI; HTH-type transcriptional regulator, global nitrogen regulator NrpRI +K09721 K09721; uncharacterized protein +K09722 K09722, pps; 4-phosphopantoate---beta-alanine ligase [EC:6.3.2.36] +K09723 ginS; DNA replication factor GINS +K09724 K09724; uncharacterized protein +K09725 K09725; uncharacterized protein +K09726 K09726; uncharacterized protein +K09727 K09727; uncharacterized protein +K09728 K09728; uncharacterized protein +K09729 K09729; uncharacterized protein +K09730 K09730; uncharacterized protein +K09731 K09731; uncharacterized protein +K09732 K09732; uncharacterized protein +K09733 mfnB; (5-formylfuran-3-yl)methyl phosphate synthase [EC:4.2.3.153] +K09735 dpck; GTP-dependent dephospho-CoA kinase [EC:2.7.1.237] +K09736 K09736; uncharacterized protein +K09737 K09737; uncharacterized protein +K09738 K09738; uncharacterized protein +K09739 mptD; dihydroneopterin aldolase [EC:4.1.2.25] +K09740 K09740; uncharacterized protein +K09741 pcc1; KEOPS complex subunit Pcc1 +K09742 K09742; uncharacterized protein +K09743 K09743; uncharacterized protein +K09744 K09744; uncharacterized protein +K09745 K09745; uncharacterized protein +K09746 K09746; uncharacterized protein +K09747 ebfC; nucleoid-associated protein EbfC +K09748 rimP; ribosome maturation factor RimP +K09749 K09749; uncharacterized protein +K09750 TMPRSS11A; transmembrane protease serine 11A [EC:3.4.21.-] +K09751 TMPRSS11B; transmembrane protease serine 11B [EC:3.4.21.-] +K09752 TMPRSS11F; transmembrane protease serine 11F [EC:3.4.21.-] +K09753 CCR; cinnamoyl-CoA reductase [EC:1.2.1.44] +K09754 CYP98A, C3'H; 5-O-(4-coumaroyl)-D-quinate 3'-monooxygenase [EC:1.14.14.96] +K09755 CYP84A, F5H; ferulate-5-hydroxylase [EC:1.14.-.-] +K09756 SCPL19, SNG2; serine carboxypeptidase-like 19 [EC:3.4.16.- 2.3.1.91] +K09757 SCPL8, SNG1; serine carboxypeptidase-like 8 [EC:3.4.16.- 2.3.1.92] +K09758 asdA; aspartate 4-decarboxylase [EC:4.1.1.12] +K09759 aspC, aspS; nondiscriminating aspartyl-tRNA synthetase [EC:6.1.1.23] +K09760 rmuC; DNA recombination protein RmuC +K09761 rsmE; 16S rRNA (uracil1498-N3)-methyltransferase [EC:2.1.1.193] +K09762 whiA; cell division protein WhiA +K09763 K09763; uncharacterized protein +K09764 K09764; uncharacterized protein +K09765 queH; epoxyqueuosine reductase [EC:1.17.99.6] +K09766 K09766; uncharacterized protein +K09767 yajQ; cyclic-di-GMP-binding protein +K09768 K09768; uncharacterized protein +K09769 ymdB; 2',3'-cyclic-nucleotide 2'-phosphodiesterase [EC:3.1.4.16] +K09770 K09770; uncharacterized protein +K09771 TC.SMR3; small multidrug resistance family-3 protein +K09772 sepF; cell division inhibitor SepF +K09773 ppsR; [pyruvate, water dikinase]-phosphate phosphotransferase / [pyruvate, water dikinase] kinase [EC:2.7.4.28 2.7.11.33] +K09774 lptA; lipopolysaccharide export system protein LptA +K09775 K09775; uncharacterized protein +K09776 K09776; uncharacterized protein +K09777 remA; extracellular matrix regulatory protein A +K09778 lpxJ; Kdo2-lipid IVA 3' secondary acyltransferase [EC:2.3.1.-] +K09779 K09779; uncharacterized protein +K09780 K09780; uncharacterized protein +K09781 K09781; uncharacterized protein +K09782 AREG; amphiregulin +K09783 BTC; betacellulin +K09784 EREG; epiregulin +K09785 K09785; uncharacterized protein +K09786 K09786; uncharacterized protein +K09787 K09787; uncharacterized protein +K09788 prpF; 2-methylaconitate isomerase [EC:5.3.3.-] +K09789 bioG; pimeloyl-[acyl-carrier protein] methyl ester esterase [EC:3.1.1.85] +K09790 K09790; uncharacterized protein +K09791 K09791; uncharacterized protein +K09792 K09792; uncharacterized protein +K09793 K09793; uncharacterized protein +K09794 K09794; uncharacterized protein +K09795 K09795; uncharacterized protein +K09796 pccA; periplasmic copper chaperone A +K09797 K09797; uncharacterized protein +K09798 K09798; uncharacterized protein +K09799 K09799; uncharacterized protein +K09800 tamB; translocation and assembly module TamB +K09801 K09801; uncharacterized protein +K09802 K09802; uncharacterized protein +K09803 K09803; uncharacterized protein +K09804 K09804; uncharacterized protein +K09805 K09805; uncharacterized protein +K09806 ubiK; ubiquinone biosynthesis accessory factor UbiK +K09807 K09807; uncharacterized protein +K09808 lolC_E; lipoprotein-releasing system permease protein +K09809 tagF; CDP-glycerol glycerophosphotransferase [EC:2.7.8.12] +K09810 lolD; lipoprotein-releasing system ATP-binding protein [EC:7.6.2.-] +K09811 ftsX; cell division transport system permease protein +K09812 ftsE; cell division transport system ATP-binding protein +K09813 hrtB; hemin transport system permease protein +K09814 hrtA; hemin transport system ATP-binding protein [EC:7.6.2.-] +K09815 znuA; zinc transport system substrate-binding protein +K09816 znuB; zinc transport system permease protein +K09817 znuC; zinc transport system ATP-binding protein [EC:7.2.2.20] +K09818 ABC.MN.S; manganese/iron transport system substrate-binding protein +K09819 ABC.MN.P; manganese/iron transport system permease protein +K09820 ABC.MN.A; manganese/iron transport system ATP-binding protein +K09821 AGT, SERPINA8; angiotensinogen +K09822 K09822; uncharacterized protein +K09823 zur; Fur family transcriptional regulator, zinc uptake regulator +K09824 virK; uncharacterized protein +K09825 perR; Fur family transcriptional regulator, peroxide stress response regulator +K09826 irr; Fur family transcriptional regulator, iron response regulator +K09827 ERG27; 3-keto steroid reductase [EC:1.1.1.270] +K09828 DHCR24, DWF1; Delta24-sterol reductase [EC:1.3.1.72 1.3.1.-] +K09829 ERG2; C-8 sterol isomerase [EC:5.-.-.-] +K09831 ERG5, CYP61A; sterol 22-desaturase [EC:1.14.19.41] +K09832 CYP710A; sterol 22-desaturase [EC:1.14.19.41] +K09833 HPT, HGGT, ubiA; homogentisate phytyltransferase / homogentisate geranylgeranyltransferase [EC:2.5.1.115 2.5.1.116] +K09834 VTE1, SXD1; tocopherol cyclase [EC:5.5.1.24] +K09835 crtISO, crtH; prolycopene isomerase [EC:5.2.1.13] +K09836 crtW, BKT; beta-carotene/zeaxanthin 4-ketolase [EC:1.14.99.63 1.14.99.64] +K09837 LUT1, CYP97C1; carotenoid epsilon hydroxylase [EC:1.14.14.158] +K09838 ZEP, ABA1; zeaxanthin epoxidase [EC:1.14.15.21] +K09839 VDE, NPQ1; violaxanthin de-epoxidase [EC:1.23.5.1] +K09840 NCED; 9-cis-epoxycarotenoid dioxygenase [EC:1.13.11.51] +K09841 ABA2; xanthoxin dehydrogenase [EC:1.1.1.288] +K09842 AAO3; abscisic-aldehyde oxidase [EC:1.2.3.14] +K09843 CYP707A; (+)-abscisic acid 8'-hydroxylase [EC:1.14.14.137] +K09844 crtC; carotenoid 1,2-hydratase [EC:4.2.1.131] +K09845 crtD; 1-hydroxycarotenoid 3,4-desaturase [EC:1.3.99.27] +K09846 crtF; demethylspheroidene O-methyltransferase [EC:2.1.1.210] +K09847 crtA; spheroidene monooxygenase [EC:1.14.15.9] +K09848 TRAF4; TNF receptor-associated factor 4 +K09849 TRAF5; TNF receptor-associated factor 5 +K09850 RASSF1; Ras association domain-containing protein 1 +K09851 RASSF2_4; Ras association domain-containing protein 2/4 +K09852 RASSF3; Ras association domain-containing protein 3 +K09854 RASSF6; Ras association domain-containing protein 6 +K09855 RASSF7_8; Ras association domain-containing protein 7/8 +K09856 RASSF9_10; Ras association domain-containing protein 9/10 +K09857 K09857; uncharacterized protein +K09858 K09858; SEC-C motif domain protein +K09859 K09859; uncharacterized protein +K09860 flgP; outer membrane protein FlgP +K09861 K09861; uncharacterized protein +K09862 K09862; uncharacterized protein +K09863 AQP0, MIP; aquaporin-0 +K09864 AQP1; aquaporin-1 +K09865 AQP2; aquaporin-2 +K09866 AQP4; aquaporin-4 +K09867 AQP5; aquaporin-5 +K09868 AQP6; aquaporin-6 +K09869 AQP8; aquaporin-8 +K09870 AQP11; aquaporin-11 +K09871 AQP12; aquaporin-12 +K09872 PIP; aquaporin PIP +K09873 TIP; aquaporin TIP +K09874 NIP; aquaporin NIP +K09875 SIP; aquaporin SIP +K09876 AQP3; aquaporin-3 +K09877 AQP9; aquaporin-9 +K09878 AQP10; aquaporin-10 +K09879 crtU, cruE; carotenoid phi-ring synthase / carotenoid chi-ring synthase [EC:1.3.99.39 1.3.99.40] +K09880 mtnC, ENOPH1; enolase-phosphatase E1 [EC:3.1.3.77] +K09881 AGK; acylglycerol kinase [EC:2.7.1.94] +K09882 cobS; cobaltochelatase CobS [EC:6.6.1.2] +K09883 cobT; cobaltochelatase CobT [EC:6.6.1.2] +K09884 AQPN; aquaporin rerated protein, invertebrate +K09885 AQPF; aquaporin rerated protein, other eukaryote +K09886 GLPN; aquaglyceroporin related protein, invertebrate +K09887 dcd; dCTP deaminase (dUMP-forming) [EC:3.5.4.30] +K09888 zapA; cell division protein ZapA +K09889 yjgA; ribosome-associated protein +K09890 arfA; alternative ribosome-rescue factor +K09891 K09891; uncharacterized protein +K09892 zapB; cell division protein ZapB +K09893 rraB; regulator of ribonuclease activity B +K09894 K09894; uncharacterized protein +K09895 K09895; uncharacterized protein +K09896 K09896; uncharacterized protein +K09897 K09897; uncharacterized protein +K09898 K09898; uncharacterized protein +K09899 K09899; uncharacterized protein +K09900 E3.5.1.135; N4-acetylcytidine amidohydrolase [EC:3.5.1.135] +K09901 K09901; uncharacterized protein +K09902 K09902; uncharacterized protein +K09903 pyrH; uridylate kinase [EC:2.7.4.22] +K09904 K09904; uncharacterized protein +K09905 B4GALT5; beta-1,4-galactosyltransferase 5 [EC:2.4.1.274 2.4.1.-] +K09906 epmC; elongation factor P hydroxylase [EC:1.14.-.-] +K09907 K09907; uncharacterized protein +K09908 K09908; uncharacterized protein +K09909 K09909; uncharacterized protein +K09910 K09910; uncharacterized protein +K09911 K09911; uncharacterized protein +K09912 K09912; uncharacterized protein +K09913 ppnP; purine/pyrimidine-nucleoside phosphorylase [EC:2.4.2.1 2.4.2.2] +K09914 K09914; putative lipoprotein +K09915 K09915; uncharacterized protein +K09916 K09916; uncharacterized protein +K09917 K09917; uncharacterized protein +K09918 K09918; uncharacterized protein +K09919 K09919; uncharacterized protein +K09920 K09920; uncharacterized protein +K09921 K09921; uncharacterized protein +K09922 K09922; uncharacterized protein +K09923 K09923; uncharacterized protein +K09924 K09924; uncharacterized protein +K09925 K09925; uncharacterized protein +K09926 K09926; uncharacterized protein +K09927 K09927; uncharacterized protein +K09928 K09928; uncharacterized protein +K09929 K09929; uncharacterized protein +K09930 K09930; uncharacterized protein +K09931 K09931; uncharacterized protein +K09932 K09932; uncharacterized protein +K09933 mtfA; MtfA peptidase +K09934 K09934; uncharacterized protein +K09935 ybiA; N-glycosidase YbiA [EC:3.2.2.-] +K09936 TC.BAT2; bacterial/archaeal transporter family-2 protein +K09937 K09937; uncharacterized protein +K09938 K09938; uncharacterized protein +K09939 K09939; uncharacterized protein +K09940 K09940; uncharacterized protein +K09941 K09941; uncharacterized protein +K09942 K09942; uncharacterized protein +K09943 K09943; uncharacterized protein +K09944 K09944; uncharacterized protein +K09945 K09945; uncharacterized protein +K09946 K09946; uncharacterized protein +K09947 K09947; uncharacterized protein +K09948 K09948; uncharacterized protein +K09949 lpxI; UDP-2,3-diacylglucosamine hydrolase [EC:3.6.1.54] +K09950 K09950; uncharacterized protein +K09951 cas2; CRISPR-associated protein Cas2 +K09952 csn1, cas9; CRISPR-associated endonuclease Csn1 [EC:3.1.-.-] +K09953 lpxR; lipid A 3-O-deacylase [EC:3.1.1.-] +K09954 K09954; uncharacterized protein +K09955 K09955; uncharacterized protein +K09956 K09956; uncharacterized protein +K09957 K09957; uncharacterized protein +K09958 K09958; uncharacterized protein +K09959 K09959; uncharacterized protein +K09960 K09960; uncharacterized protein +K09961 K09961; uncharacterized protein +K09962 K09962; uncharacterized protein +K09963 K09963; uncharacterized protein +K09964 K09964; uncharacterized protein +K09965 K09965; uncharacterized protein +K09966 K09966; uncharacterized protein +K09967 K09967; uncharacterized protein +K09968 K09968; uncharacterized protein +K09969 aapJ, bztA; general L-amino acid transport system substrate-binding protein +K09970 aapQ, bztB; general L-amino acid transport system permease protein +K09971 aapM, bztC; general L-amino acid transport system permease protein +K09972 aapP, bztD; general L-amino acid transport system ATP-binding protein [EC:7.4.2.1] +K09973 K09973; uncharacterized protein +K09974 K09974; uncharacterized protein +K09975 K09975; uncharacterized protein +K09976 K09976; uncharacterized protein +K09977 K09977; uncharacterized protein +K09978 K09978; uncharacterized protein +K09979 K09979; uncharacterized protein +K09980 K09980; uncharacterized protein +K09981 K09981; uncharacterized protein +K09982 K09982; uncharacterized protein +K09983 K09983; uncharacterized protein +K09984 K09984; uncharacterized protein +K09985 K09985; uncharacterized protein +K09986 K09986; uncharacterized protein +K09987 K09987; uncharacterized protein +K09988 lyxA; D-lyxose ketol-isomerase [EC:5.3.1.15] +K09989 K09989; uncharacterized protein +K09990 K09990; uncharacterized protein +K09991 K09991; uncharacterized protein +K09992 K09992; uncharacterized protein +K09993 CDKN1C, P57, KIP2; cyclin-dependent kinase inhibitor 1C +K09994 phnO; (aminoalkyl)phosphonate N-acetyltransferase [EC:2.3.1.280] +K09995 NKX3-2, BAPX1; homeobox protein Nkx-3.2 +K09996 artJ; arginine transport system substrate-binding protein +K09997 artI; arginine transport system substrate-binding protein +K09998 artM; arginine transport system permease protein +K09999 artQ; arginine transport system permease protein +K10000 artP; arginine transport system ATP-binding protein [EC:7.4.2.1] +K10001 gltI, aatJ; glutamate/aspartate transport system substrate-binding protein +K10002 gltK, aatM; glutamate/aspartate transport system permease protein +K10003 gltJ, aatQ; glutamate/aspartate transport system permease protein +K10004 gltL, aatP; glutamate/aspartate transport system ATP-binding protein [EC:7.4.2.1] +K10005 gluB; glutamate transport system substrate-binding protein +K10006 gluC; glutamate transport system permease protein +K10007 gluD; glutamate transport system permease protein +K10008 gluA; glutamate transport system ATP-binding protein [EC:7.4.2.1] +K10009 tcyB, tcyL; L-cystine transport system permease protein +K10010 tcyC, tcyN; L-cystine transport system ATP-binding protein [EC:7.4.2.1] +K10011 arnA, pmrI; UDP-4-amino-4-deoxy-L-arabinose formyltransferase / UDP-glucuronic acid dehydrogenase (UDP-4-keto-hexauronic acid decarboxylating) [EC:2.1.2.13 1.1.1.305] +K10012 arnC, pmrF; undecaprenyl-phosphate 4-deoxy-4-formamido-L-arabinose transferase [EC:2.4.2.53] +K10013 argT; lysine/arginine/ornithine transport system substrate-binding protein +K10014 hisJ; histidine transport system substrate-binding protein +K10015 hisM; histidine transport system permease protein +K10016 hisQ; histidine transport system permease protein +K10017 hisP; histidine transport system ATP-binding protein [EC:7.4.2.1] +K10018 occT, nocT; octopine/nopaline transport system substrate-binding protein +K10019 occM, nocM; octopine/nopaline transport system permease protein +K10020 occQ, nocQ; octopine/nopaline transport system permease protein +K10021 occP, nocP; octopine/nopaline transport system ATP-binding protein [EC:7.4.2.1] +K10022 aotJ; arginine/ornithine transport system substrate-binding protein +K10023 aotM; arginine/ornithine transport system permease protein +K10024 aotQ; arginine/ornithine transport system permease protein +K10025 aotP; arginine/ornithine transport system ATP-binding protein [EC:7.4.2.1] +K10026 queE; 7-carboxy-7-deazaguanine synthase [EC:4.3.99.3] +K10027 crtI; phytoene desaturase [EC:1.3.99.26 1.3.99.28 1.3.99.29 1.3.99.31] +K10028 DDT; D-dopachrome decarboxylase [EC:4.1.1.84] +K10029 PPBP, CXCL7; platelet basic protein +K10030 IL8, CXCL8; interleukin 8 +K10031 CXCL12; C-X-C motif chemokine 12 +K10032 CXCL13; C-X-C motif chemokine 13 +K10033 CXCL14, SCYB14; C-X-C motif chemokine 14 +K10034 CXCL15; C-X-C motif chemokine 15 +K10035 CXCL16; C-X-C motif chemokine 16 +K10036 glnH; glutamine transport system substrate-binding protein +K10037 glnP; glutamine transport system permease protein +K10038 glnQ; glutamine transport system ATP-binding protein [EC:7.4.2.1] +K10039 peb1A, glnH; aspartate/glutamate/glutamine transport system substrate-binding protein +K10040 peb1B, glnP, glnM; aspartate/glutamate/glutamine transport system permease protein +K10041 peb1C, glnQ; aspartate/glutamate/glutamine transport system ATP-binding protein [EC:7.4.2.1] +K10042 SUCNR1, GPR91; succinate receptor 1 +K10043 OXER1, GPR170; oxoeicosanoid receptor 1 +K10044 RARRES2; retinoic acid receptor responder protein 2 +K10045 CGB; chorionic gonadotropin, beta polypeptide +K10046 GME; GDP-D-mannose 3', 5'-epimerase [EC:5.1.3.18 5.1.3.-] +K10047 VTC4; inositol-phosphate phosphatase / L-galactose 1-phosphate phosphatase [EC:3.1.3.25 3.1.3.93] +K10048 CEBPB; CCAAT/enhancer binding protein (C/EBP), beta +K10049 CEBPG; CCAAT/enhancer binding protein (C/EBP), gamma +K10050 CEBPD; CCAAT/enhancer binding protein (C/EBP), delta +K10051 CEBPE; CCAAT/enhancer binding protein (C/EBP), epsilon +K10052 CEBPN; CCAAT/enhancer binding protein (C/EBP), invertebrate +K10053 RUNX1T1, CBFA2T1; CBFA2/RNUX1 translocation partner 1 +K10054 PML, TRIM19; E3 SUMO-protein ligase PML [EC:2.3.2.-] +K10055 ZBTB16, PLZF; zinc finger and BTB domain-containing protein 16 +K10056 JUP, PG; junction plakoglobin +K10057 CLEC4A, CD367; C-type lectin domain family 4 member A +K10058 CLEC4D, MCL, CD368; C-type lectin domain family 4 member D +K10059 CLEC4E, MINCLE; C-type lectin domain family 4 member E +K10060 CLEC4F, CLECSF13; C-type lectin domain family 4 member F +K10061 CLEC4G; C-type lectin superfamily 4 member G +K10062 COLEC12; collectin sub-family member 12 +K10063 ASGR1; asialoglycoprotein receptor 1 +K10064 ASGR2; asialoglycoprotein receptor 2 +K10065 COLEC10; collectin sub-family member 10 +K10066 COLEC11; collectin sub-family member 11 +K10067 SFTPA; pulmonary surfactant-associated protein A +K10068 SFTPD, SFTP4; pulmonary surfactant-associated protein D +K10069 CLEC1A; C-type lectin domain family 1 member A +K10070 CLEC1B; C-type lectin domain family 1 member B +K10071 CLEC2B; C-type lectin domain family 2 member B +K10072 CLEC2D; C-type lectin domain family 2 member D +K10073 CLEC5A; C-type lectin domain family 5 member A +K10074 CLEC7A, DECTIN1, CD369; C-type lectin domain family 7 member A +K10075 KLRF1; killer cell lectin-like receptor subfamily F member 1 +K10076 KLRG1; killer cell lectin-like receptor subfamily G member 1 +K10077 LAYN; layilin +K10078 CHODL; chondrolectin +K10079 SIGLEC12, SIGLECL1; sialic acid binding Ig-like lectin 12 +K10080 LMAN1, ERGIC53; lectin, mannose-binding 1 +K10081 LMAN1L, ERGL; lectin, mannose-binding 1-like +K10082 LMAN2, VIP36; lectin, mannose-binding 2 +K10083 LMAN2L, VIPL; lectin, mannose-binding 2-like +K10084 EDEM1; ER degradation enhancer, mannosidase alpha-like 1 +K10085 EDEM2; ER degradation enhancer, mannosidase alpha-like 2 +K10086 EDEM3; ER degradation enhancer, mannosidase alpha-like 3 +K10087 GNPTG, GNPTAG; N-acetylglucosamine-1-phosphate transferase, gamma subunit +K10088 OS9; protein OS-9 +K10089 M6PR; cation-dependent mannose-6-phosphate receptor +K10090 LGALS2; galectin-2 +K10091 LGALS4; galectin-4 +K10092 LGALS7; galectin-7 +K10093 LGALS9; galectin-9 +K10094 cbiK; nickel transport protein +K10095 LGALS12; galectin-12 +K10096 LGALS13; galectin-13 +K10097 LGALS14; galectin-14 +K10098 CALR3; calreticulin 3 +K10099 FBXO2, NFB42; F-box protein 2 +K10100 FBXO6; F-box protein 6 +K10101 FBXO17, FBXO26; F-box protein 17 +K10102 FBXO27; F-box protein 27 +K10103 FBXO44; F-box protein 44 +K10104 FCN; ficolin +K10105 LIPT1; lipoyltransferase 1 +K10106 GGCX; vitamin K-dependent gamma-carboxylase [EC:4.1.1.90] +K10107 kpsE; capsular polysaccharide transport system permease protein +K10108 malE; maltose/maltodextrin transport system substrate-binding protein +K10109 malF; maltose/maltodextrin transport system permease protein +K10110 malG; maltose/maltodextrin transport system permease protein +K10111 malK, mtlK, thuK; multiple sugar transport system ATP-binding protein [EC:7.5.2.-] +K10112 msmX, msmK, malK, sugC, ggtA, msiK; multiple sugar transport system ATP-binding protein [EC:7.5.2.-] +K10117 msmE; raffinose/stachyose/melibiose transport system substrate-binding protein +K10118 msmF; raffinose/stachyose/melibiose transport system permease protein +K10119 msmG; raffinose/stachyose/melibiose transport system permease protein +K10120 msmE; fructooligosaccharide transport system substrate-binding protein +K10121 msmF; fructooligosaccharide transport system permease protein +K10122 msmG; fructooligosaccharide transport system permease protein +K10123 feoC; putative ferrous iron transport protein C +K10124 bglH; carbohydrate-specific outer membrane porin +K10125 dctB; two-component system, NtrC family, C4-dicarboxylate transport sensor histidine kinase DctB [EC:2.7.13.3] +K10126 dctD; two-component system, NtrC family, C4-dicarboxylate transport response regulator DctD +K10127 MDM4, MDMX; protein Mdm4 +K10128 RPRM; reprimo, TP53-dependent G2 arrest mediator candidate +K10129 GTSE1, B99; G-2 and S-phase expressed protein 1 +K10130 LRDD, PIDD; leucine-rich repeats and death domain-containing protein +K10131 PMAIP1, NOXA; phorbol-12-myristate-13-acetate-induced protein 1 +K10132 BBC3, PUMA; Bcl-2-binding component 3 +K10133 TP53I3; tumor protein p53-inducible protein 3 [EC:1.-.-.-] +K10134 EI24; etoposide-induced 2.4 mRNA +K10135 SCOTIN; scotin +K10136 PERP; TP53 apoptosis effector +K10137 ZMAT3; zinc finger, matrin type 3 +K10138 IGFBP3; insulin-like growth factor-binding protein 3 +K10139 SERPINB5; serpin B5 +K10140 DDB2; DNA damage-binding protein 2 +K10141 SESN1_3; sestrin 1/3 +K10142 STEAP3, TSAP6; metalloreductase STEAP3 [EC:1.16.1.-] +K10143 RFWD2, COP1; E3 ubiquitin-protein ligase RFWD2 [EC:2.3.2.27] +K10144 RCHY1, PIRH2; RING finger and CHY zinc finger domain-containing protein 1 [EC:2.3.2.27] +K10145 CCNG1; cyclin G1 +K10146 CCNG2; cyclin G2 +K10147 PPM1D, WIP1; protein phosphatase 1D [EC:3.1.3.16] +K10148 TP73; tumor protein p73 +K10149 TP63; tumor protein p63 +K10150 cysO; cysteine synthase / O-phosphoserine sulfhydrylase / cystathionine beta-synthase [EC:2.5.1.47 2.5.1.65 4.2.1.22] +K10151 CCND2; G1/S-specific cyclin-D2 +K10152 CCND3; G1/S-specific cyclin-D3 +K10153 IRF2; interferon regulatory factor 2 +K10154 IRF6; interferon regulatory factor 6 +K10155 IRF8; interferon regulatory factor 8 +K10156 eizS; epi-isozizaene synthase [EC:4.2.3.37] +K10157 B3GAT2; galactosylgalactosylxylosylprotein 3-beta-glucuronosyltransferase 2 [EC:2.4.1.135] +K10158 B3GAT3; galactosylgalactosylxylosylprotein 3-beta-glucuronosyltransferase 3 [EC:2.4.1.135] +K10159 TLR2, CD282; toll-like receptor 2 +K10160 TLR4, CD284; toll-like receptor 4 +K10161 TLR9, CD289; toll-like receptor 9 +K10162 BAMBI; BMP and activin membrane-bound inhibitor +K10163 FOXP3, IPEX; forkhead box P3 +K10164 NANOG; homeobox protein Nanog +K10165 NOD2, CARD15; nucleotide-binding oligomerization domain-containing protein 2 +K10166 TBX21; T-box protein 21 +K10167 TCL1A; T-cell leukemia/lymphoma 1A +K10168 TLR5; toll-like receptor 5 +K10169 TLR6, CD286; toll-like receptor 6 +K10170 TLR8, CD288; toll-like receptor 8 +K10171 TLR10, CD290; toll-like receptor 10 +K10172 BRA, T; brachyury protein +K10173 EOMES, TBR2; eomesodermin protein +K10174 TBR1; T-box brain protein 1 +K10175 TBX1; T-box protein 1 +K10176 TBX2; T-box protein 2 +K10177 TBX3; T-box protein 3 +K10178 TBX4; T-box protein 4 +K10179 TBX5, HOS; T-box protein 5 +K10180 TBX6; T-box protein 6 +K10181 TBX10, TBX7; T-box protein 10 +K10182 TBX15, TBX14; T-box protein 15 +K10183 TBX18; T-box protein 18 +K10184 TBX19; T-box protein 19 +K10185 TBX20; T-box protein 20 +K10186 TBX22; T-box protein 22 +K10187 cyc2; germacradienol/geosmin synthase [EC:4.2.3.22 4.2.3.75 4.1.99.16] +K10188 lacE, araN; lactose/L-arabinose transport system substrate-binding protein +K10189 lacF, araP; lactose/L-arabinose transport system permease protein +K10190 lacG, araQ; lactose/L-arabinose transport system permease protein +K10191 lacK; lactose/L-arabinose transport system ATP-binding protein +K10192 togB; oligogalacturonide transport system substrate-binding protein +K10193 togM; oligogalacturonide transport system permease protein +K10194 togN; oligogalacturonide transport system permease protein +K10195 togA; oligogalacturonide transport system ATP-binding protein +K10196 glcS, araS; glucose/arabinose transport system substrate-binding protein +K10197 glcT, araT; glucose/arabinose transport system permease protein +K10198 glcU, araU; glucose/arabinose transport system permease protein +K10199 glcV, araV; glucose/arabinose transport system ATP-binding protein +K10200 ngcE; N-acetylglucosamine transport system substrate-binding protein +K10201 ngcF; N-acetylglucosamine transport system permease protein +K10202 ngcG; N-acetylglucosamine transport system permease protein +K10203 ELOVL6; elongation of very long chain fatty acids protein 6 [EC:2.3.1.199] +K10205 ELOVL2; elongation of very long chain fatty acids protein 2 [EC:2.3.1.199] +K10206 E2.6.1.83; LL-diaminopimelate aminotransferase [EC:2.6.1.83] +K10207 HSD17B3; testosterone 17beta-dehydrogenase (NADP+) [EC:1.1.1.64] +K10208 crtM; 4,4'-diapophytoene synthase [EC:2.5.1.96] +K10209 crtN; 4,4'-diapophytoene desaturase [EC:1.3.8.2] +K10210 crtP; diapolycopene oxygenase [EC:1.14.99.44] +K10211 crtQ; 4,4'-diaponeurosporenoate glycosyltransferase [EC:2.4.1.-] +K10212 K10212, crtO; glycosyl-4,4'-diaponeurosporenoate acyltransferase [EC:2.3.1.-] +K10213 rihB; ribosylpyrimidine nucleosidase [EC:3.2.2.8] +K10214 ACOX2; 3alpha,7alpha,12alpha-trihydroxy-5beta-cholestanoyl-CoA 24-hydroxylase [EC:1.17.99.3] +K10215 ethA; monooxygenase [EC:1.14.13.-] +K10216 dmpD, xylF; 2-hydroxymuconate-semialdehyde hydrolase [EC:3.7.1.9] +K10217 dmpC, xylG, praB; aminomuconate-semialdehyde/2-hydroxymuconate-6-semialdehyde dehydrogenase [EC:1.2.1.32 1.2.1.85] +K10218 ligK, galC; 4-hydroxy-4-methyl-2-oxoglutarate aldolase [EC:4.1.3.17] +K10219 ligC; 2-hydroxy-4-carboxymuconate semialdehyde hemiacetal dehydrogenase [EC:1.1.1.312] +K10220 ligJ; 4-oxalmesaconate hydratase [EC:4.2.1.83] +K10221 ligI; 2-pyrone-4,6-dicarboxylate lactonase [EC:3.1.1.57] +K10222 bphD; 2,6-dioxo-6-phenylhexa-3-enoate hydrolase [EC:3.7.1.8] +K10223 CH25H; cholesterol 25-hydroxylase [EC:1.14.99.38] +K10224 FADS1; acyl-CoA (8-3)-desaturase (Delta-5 desaturase) [EC:1.14.19.44] +K10225 FADS3; fatty acid desaturase 3 (Delta-13 desaturase) [EC:1.14.19.-] +K10226 FADS2; acyl-CoA 6-desaturase (Delta-6 desaturase) [EC:1.14.19.3] +K10227 smoE, mtlE; polyol transport system substrate-binding protein +K10228 smoF, mtlF; polyol transport system permease protein +K10229 smoG, mtlG; polyol transport system permease protein +K10231 kojP; kojibiose phosphorylase [EC:2.4.1.230] +K10232 aglE, ggtB; alpha-glucoside transport system substrate-binding protein +K10233 aglF, ggtC; alpha-glucoside transport system permease protein +K10234 aglG, ggtD; alpha-glucoside transport system permease protein +K10235 aglK; alpha-glucoside transport system ATP-binding protein +K10236 thuE, lpqY; trehalose/maltose transport system substrate-binding protein +K10237 thuF, sugA; trehalose/maltose transport system permease protein +K10238 thuG, sugB; trehalose/maltose transport system permease protein +K10240 cebE; cellobiose transport system substrate-binding protein +K10241 cebF; cellobiose transport system permease protein +K10242 cebG; cellobiose transport system permease protein +K10244 ELOVL5; elongation of very long chain fatty acids protein 5 [EC:2.3.1.199] +K10245 ELO2; fatty acid elongase 2 [EC:2.3.1.199] +K10246 ELO3; fatty acid elongase 3 [EC:2.3.1.199] +K10247 ELOVL1; elongation of very long chain fatty acids protein 1 [EC:2.3.1.199] +K10248 ELOVL3; elongation of very long chain fatty acids protein 3 [EC:2.3.1.199] +K10249 ELOVL4; elongation of very long chain fatty acids protein 4 [EC:2.3.1.199] +K10250 ELOVL7; elongation of very long chain fatty acids protein 7 [EC:2.3.1.199] +K10251 HSD17B12, KAR, IFA38; 17beta-estradiol 17-dehydrogenase / very-long-chain 3-oxoacyl-CoA reductase [EC:1.1.1.62 1.1.1.330] +K10252 BCDO2; beta,beta-carotene 9',10'-dioxygenase [EC:1.13.11.71] +K10253 DODA; DOPA 4,5-dioxygenase [EC:1.14.99.-] +K10254 ohyA, sph; oleate hydratase [EC:4.2.1.53] +K10255 FAD6, desA; acyl-lipid omega-6 desaturase (Delta-12 desaturase) [EC:1.14.19.23 1.14.19.45] +K10256 FAD2; omega-6 fatty acid desaturase / acyl-lipid omega-6 desaturase (Delta-12 desaturase) [EC:1.14.19.6 1.14.19.22] +K10257 FAD3, FAD7, FAD8, desB; acyl-lipid omega-3 desaturase [EC:1.14.19.25 1.14.19.35 1.14.19.36] +K10258 TER, TSC13, CER10; very-long-chain enoyl-CoA reductase [EC:1.3.1.93] +K10259 MET30; F-box and WD-40 domain protein MET30 +K10260 FBXW7, SEL10; F-box and WD-40 domain protein 7 +K10261 FBXW2, MD6; F-box and WD-40 domain protein 2 +K10262 FBXW4, SHFM3; F-box and WD-40 domain protein 4 +K10263 FBXW5; F-box and WD-40 domain protein 5 +K10264 FBXW8; F-box and WD-40 domain protein 8 +K10265 FBXW9; F-box and WD-40 domain protein 9 +K10266 FBXW10; F-box and WD-40 domain protein 10 +K10267 FBXW12S; F-box and WD-40 domain protein 12/13/14/15/16/17/19 +K10268 FBXL2_20; F-box and leucine-rich repeat protein 2/20 +K10269 FBXL3; F-box and leucine-rich repeat protein 3 +K10270 FBXL4; F-box and leucine-rich repeat protein 4 +K10271 FBXL5; F-box and leucine-rich repeat protein 5 +K10272 FBXL6; F-box and leucine-rich repeat protein 6 +K10273 FBXL7; F-box and leucine-rich repeat protein 7 +K10274 FBXL8; F-box and leucine-rich repeat protein 8 +K10275 FBXL9, LRRC29; F-box and leucine-rich repeat protein 9 +K10276 FBXL10_11, KDM2; F-box and leucine-rich repeat protein 10/11 [EC:1.14.11.27] +K10277 KDM8, JMJD5; [protein]-arginine 3-hydroxylase / protease [EC:1.14.11.73 3.4.-.-] +K10278 FBXL12; F-box and leucine-rich repeat protein 12 +K10279 FBXL13, DRC6; dynein regulatory complex subunit 6 +K10280 FBXL14; F-box and leucine-rich repeat protein 14 +K10281 FBXL15; F-box and leucine-rich repeat protein 15 +K10282 FBXL16; F-box and leucine-rich repeat protein 16 +K10283 FBXL17; F-box and leucine-rich repeat protein 17 +K10284 FBXL18; F-box and leucine-rich repeat protein 18 +K10285 FBXL19; F-box and leucine-rich repeat protein 19 +K10287 FBXL21; F-box and leucine-rich repeat protein 21 +K10288 FBXL22; F-box and leucine-rich repeat protein 22 +K10289 CCNF, FBXO1; F-box protein 1 (cyclin F) +K10290 FBXO3; F-box protein 3 +K10291 FBXO4; F-box protein 4 +K10292 FBXO5, EMI1; F-box protein 5 +K10293 FBXO7; F-box protein 7 +K10294 FBXO8; F-box protein 8 +K10295 FBXO9; F-box protein 9 +K10296 FBXO10; F-box protein 10 +K10297 FBXO11; F-box protein 11 +K10298 FBXO15; F-box protein 15 +K10299 FBXO16; F-box protein 16 +K10300 FBH1, FBXO18; F-box DNA helicase 1 [EC:5.6.2.4] +K10301 FBXO21; F-box protein 21 +K10302 FBXO22; F-box protein 22 +K10303 FBXO23, TSPAN17; F-box protein 23 +K10304 FBXO24; F-box protein 24 +K10305 FBXO25_32; F-box protein 25/32 +K10306 FBXO28; F-box protein 28 +K10307 FBXO30; F-box protein 30 +K10308 FBXO31; F-box protein 31 +K10310 FBXO33; F-box protein 33 +K10311 FBXO34; F-box protein 34 +K10312 FBXO36; F-box protein 36 +K10313 FBXO38, MOKA; F-box protein 38 +K10314 FBXO39; F-box protein 39 +K10315 FBXO40; F-box protein 40 +K10316 FBXO41; F-box protein 41 +K10317 FBXO42; F-box protein 42 +K10318 FBXO43, EMI2; F-box protein 43 +K10319 FBXO45; F-box protein 45 +K10320 FBXO46; F-box protein 46 +K10321 FBXO47; F-box protein 47 +K10323 ASB1; ankyrin repeat and SOCS box protein 1 +K10324 ASB2; ankyrin repeat and SOCS box protein 2 +K10325 ASB3; ankyrin repeat and SOCS box protein 3 +K10326 ASB4; ankyrin repeat and SOCS box protein 4 +K10327 ASB5; ankyrin repeat and SOCS box protein 5 +K10328 ASB6; ankyrin repeat and SOCS box protein 6 +K10329 ASB7; ankyrin repeat and SOCS box protein 7 +K10330 ASB8; ankyrin repeat and SOCS box protein 8 +K10331 ASB9; ankyrin repeat and SOCS box protein 9 +K10332 ASB10; ankyrin repeat and SOCS box protein 10 +K10333 ASB11; ankyrin repeat and SOCS box protein 11 +K10334 ASB12; ankyrin repeat and SOCS box protein 12 +K10335 ASB13; ankyrin repeat and SOCS box protein 13 +K10336 ASB14; ankyrin repeat and SOCS box protein 14 +K10337 ASB15; ankyrin repeat and SOCS box protein 15 +K10338 ASB16; ankyrin repeat and SOCS box protein 16 +K10339 ASB17; ankyrin repeat and SOCS box protein 17 +K10340 ASB18; ankyrin repeat and SOCS box protein 18 +K10341 WSB1; WD repeat and SOCS box-containing protein 1 +K10342 WSB2; WD repeat and SOCS box-containing protein 2 +K10343 SPSB1_4, SSB1, SSB4; SPRY domain-containing SOCS box protein 1/4 +K10344 SPSB2, SSB2; SPRY domain-containing SOCS box protein 2 +K10345 SPSB3, SSB3; SPRY domain-containing SOCS box protein 3 +K10347 LRRC41, MUF1; leucine-rich repeat-containing protein 41 +K10348 LRR1, PPIL5; LRR-repeat protein 1 +K10349 FEM1B; protein fem-1 homolog B +K10350 ZYG11; Zyg-11 protein +K10351 MYL2; myosin regulatory light chain 2 +K10352 MYH9s; myosin heavy chain 9/10/11/14 +K10353 E2.7.1.76, dak; deoxyadenosine kinase [EC:2.7.1.76] +K10354 ACTA1; actin, alpha skeletal muscle +K10355 ACTF; actin, other eukaryote +K10356 MYO1; myosin I +K10357 MYO5; myosin V +K10358 MYO6; myosin VI +K10359 MYO7A, USH1B; myosin VIIa +K10360 MYO9; myosin IX +K10361 MYO15; myosin XV +K10362 MYO18; myosin XVIII +K10363 DSTN; destrin +K10364 CAPZA; F-actin-capping protein subunit alpha +K10365 CAPZB; F-actin-capping protein subunit beta +K10366 DMD; dystrophin +K10367 FMN1; formin 1 +K10368 CAPG; macrophage-capping protein +K10369 SVIL; supervillin +K10370 TMOD; tropomodulin +K10371 TNNI1; troponin I, slow skeletal muscle +K10372 TNNT1; troponin T, slow skeletal muscle +K10373 TPM1; tropomyosin 1 +K10374 TPM2; tropomyosin 2 +K10375 TPM4; tropomyosin 4 +K10376 DMN; desmuslin +K10377 SYNC1; syncoilin 1 +K10378 BFSP1; filensin +K10379 BFSP2; phakinin +K10380 ANK1; ankyrin-1 +K10381 DSP; desmoplakin +K10382 DST; dystonin +K10383 EVPL; envoplakin +K10384 FLG; filaggrin +K10385 LOR; loricrin +K10386 PPL; periplakin +K10387 PKP1; plakophilin 1 +K10388 PLEC; plectin +K10389 TUBG; tubulin gamma +K10390 TUBD; tubulin delta +K10391 TUBE; tubulin epsilon +K10392 KIF1; kinesin family member 1 +K10393 KIF2_24, MCAK; kinesin family member 2/24 +K10394 KIF3A; kinesin family member 3A +K10395 KIF4; kinesin family member 4 +K10396 KIF5; kinesin family member 5 +K10397 KIF6_9; kinesin family member 6/9 +K10398 KIF11, EG5; kinesin family member 11 +K10399 KIF12; kinesin family member 12 +K10400 KIF15; kinesin family member 15 +K10401 KIF18A; kinesin family member 18A +K10402 KIF20; kinesin family member 20 +K10403 KIF22; kinesin family member 22 +K10404 KIF26; kinesin family member 26 +K10405 KIFC1; kinesin family member C1 +K10406 KIFC2_3; kinesin family member C2/C3 +K10407 KLC; kinesin light chain +K10408 DNAH; dynein axonemal heavy chain +K10409 DNAI1; dynein axonemal intermediate chain 1 +K10410 DNALI; dynein axonemal light intermediate chain 1 +K10411 DNAL1; dynein axonemal light chain 1 +K10412 DNAL4; dynein axonemal light chain 4 +K10413 DYNC1H; dynein cytoplasmic 1 heavy chain +K10414 DYNC2H, DNCH2; dynein cytoplasmic 2 heavy chain +K10415 DYNC1I, DNCI; dynein cytoplasmic 1 intermediate chain +K10416 DYNC1LI, DNCLI; dynein cytoplasmic 1 light intermediate chain +K10417 DYNC2LI; dynein cytoplasmic 2 light intermediate chain +K10418 DYNLL; dynein light chain LC8-type +K10419 DYNLRB, DNCL2; dynein light chain roadblock-type +K10420 DYNLT1_3; dynein light chain Tctex-type 1/3 +K10421 CLIP1, RSN; CAP-Gly domain-containing linker protein 1 +K10422 CLIP2, CYLN2; CAP-Gly domain-containing linker protein 2 +K10423 CLIP3_4; CAP-Gly domain-containing linker protein 3/4 +K10424 DCTN2; dynactin 2 +K10425 DCTN3; dynactin 3 +K10426 DCTN4; dynactin 4 +K10427 DCTN5; dynactin 5 +K10428 DCTN6; dynactin 6 +K10429 MAP1; microtubule-associated protein 1 +K10430 MAP2; microtubule-associated protein 2 +K10431 MAP4; microtubule-associated protein 4 +K10432 MAP6; microtubule-associated protein 6 +K10433 MAP7; microtubule-associated protein 7 +K10434 MAP9; microtubule-associated protein 9 +K10435 MAP1LC; microtubule-associated protein 1 light chain +K10436 MAPRE; microtubule-associated protein, RP/EB family +K10437 PHAA, PHACA, CYP504A1; phenylacetate 2-hydroxylase [EC:1.14.14.54] +K10438 PHACB, CYP504B1; 3-hydroxyphenylacetate 6-hydroxylase [EC:1.14.13.63] +K10439 rbsB; ribose transport system substrate-binding protein +K10440 rbsC; ribose transport system permease protein +K10441 rbsA; ribose transport system ATP-binding protein [EC:7.5.2.7] +K10442 KLHL1_4_5; kelch-like protein 1/4/5 +K10443 KLHL2_3; kelch-like protein 2/3 +K10444 KLHL6; kelch-like protein 6 +K10445 KLHL7; kelch-like protein 7 +K10446 KLHL8; kelch-like protein 8 +K10447 KLHL9_13; kelch-like protein 9/13 +K10448 KLHL10; kelch-like protein 10 +K10449 KLHL11; kelch-like protein 11 +K10450 KLHL12, C3IP1; kelch-like protein 12 +K10451 KLHL14; kelch-like protein 14 +K10452 KLHL15; kelch-like protein 15 +K10453 KLHL16, GAN; kelch-like protein 16 (gigaxonin) +K10454 KLHL17; kelch-like protein 17 (actinfilin) +K10455 KLHL18; kelch-like protein 18 +K10456 KLHL19, KEAP1, INRF2; kelch-like protein 19 +K10457 KLHL20, KLEIP; kelch-like protein 20 +K10458 KLHL21; kelch-like protein 21 +K10459 KLHL22, KELCHL; kelch-like protein 22 +K10460 KLHL23; kelch-like protein 23 +K10461 KLHL24_35; kelch-like protein 24/35 +K10462 KLHL25_37, ENC1, ENC2; kelch-like protein 25/37 (ectoderm-neural cortex protein) +K10463 KLHL26; kelch-like protein 26 +K10464 KLHL28; kelch-like protein 28 +K10465 KLHL29, KBTBD9; kelch-like protein 29 +K10466 KLHL30; kelch-like protein 30 +K10467 KLHL31; kelch-like protein 31 +K10468 KLHL32; kelch-like protein 32 +K10469 KLHL34; kelch-like protein 34 +K10470 KBTBD2; kelch repeat and BTB domain-containing protein 2 +K10471 KBTBD3; kelch repeat and BTB domain-containing protein 3 +K10472 KBTBD4; kelch repeat and BTB domain-containing protein 4 +K10473 KBTBD5_10; kelch repeat and BTB domain-containing protein 5/10 +K10474 KBTBD6_7; kelch repeat and BTB domain-containing protein 6/7 +K10475 KBTBD8; kelch repeat and BTB domain-containing protein 8 +K10476 KBTBD11; kelch repeat and BTB domain-containing protein 11 +K10477 BTBD1_2; BTB/POZ domain-containing protein 1/2 +K10478 BTBD3_6; BTB/POZ domain-containing protein 3/6 +K10479 BTBD7; BTB/POZ domain-containing protein 7 +K10480 BTBD8; BTB/POZ domain-containing protein 8 +K10481 BTBD9; BTB/POZ domain-containing protein 9 +K10482 BTBD10; BTB/POZ domain-containing protein 10 +K10483 BTBD11; BTB/POZ domain-containing protein 11 +K10484 BTBD12, SLX4; structure-specific endonuclease subunit SLX4 (BTB/POZ domain-containing protein 12) +K10485 BTBD13, GMCL1, GCL; BTB/POZ domain-containing protein 13 (germ cell-less protein-like 1) +K10486 BTBD14; BTB/POZ domain-containing protein 14 +K10487 BTBD16; BTB/POZ domain-containing protein 16 +K10488 ZBTB1; zinc finger and BTB domain-containing protein 1 +K10489 ZBTB2; zinc finger and BTB domain-containing protein 2 +K10490 ZBTB3; zinc finger and BTB domain-containing protein 3 +K10491 ZBTB4; zinc finger and BTB domain-containing protein 4 +K10492 ZBTB5; zinc finger and BTB domain-containing protein 5 +K10493 ZBTB6; zinc finger and BTB domain-containing protein 6 +K10494 ZBTB7; zinc finger and BTB domain-containing protein 7 +K10495 ZBTB8; zinc finger and BTB domain-containing protein 8 +K10496 ZBTB9; zinc finger and BTB domain-containing protein 9 +K10497 ZBTB10, RINZF; zinc finger and BTB domain-containing protein 10 +K10498 ZBTB11; zinc finger and BTB domain-containing protein 11 +K10499 ZBTB12; zinc finger and BTB domain-containing protein 12 +K10500 ZBTB17, MIZ1; zinc finger and BTB domain-containing protein 17 +K10501 ZBTB20, HOF, DPZF; zinc finger and BTB domain-containing protein 20 +K10502 ZBTB22, BING1; zinc finger and BTB domain-containing protein 22 +K10503 ZBTB24, BIF1; zinc finger and BTB domain-containing protein 24 +K10504 ZBTB25; zinc finger and BTB domain-containing protein 25 +K10505 ZBTB26; zinc finger and BTB domain-containing protein 26 +K10506 ZBTB32, TZFP; zinc finger and BTB domain-containing protein 32 +K10507 ZBTB33, KAISO; zinc finger and BTB domain-containing protein 33 +K10508 ZBTB34; zinc finger and BTB domain-containing protein 34 +K10509 ZBTB37; zinc finger and BTB domain-containing protein 37 +K10510 ZBTB38; zinc finger and BTB domain-containing protein 38 +K10511 ZBTB39; zinc finger and BTB domain-containing protein 39 +K10512 ZBTB40; zinc finger and BTB domain-containing protein 40 +K10513 ZBTB41; zinc finger and BTB domain-containing protein 41 +K10514 ZBTB43; zinc finger and BTB domain-containing protein 43 +K10515 ZBTB44, BTBD15; zinc finger and BTB domain-containing protein 44 +K10516 ZBTB45; zinc finger and BTB domain-containing protein 45 +K10517 ZBTB46, BTBD4; zinc finger and BTB domain-containing protein 46 +K10518 ZBTB47; zinc finger and BTB domain-containing protein 47 +K10519 ZBTB48, HKR3; zinc finger and BTB domain-containing protein 48 +K10520 ABTB1, BPOZ; ankyrin repeat and BTB/POZ domain-containing protein 1 +K10521 ABTB2; ankyrin repeat and BTB/POZ domain-containing protein 2 +K10522 DIABLO, SMAC; diablo +K10523 SPOP; speckle-type POZ protein +K10524 NRK1_2; nicotinamide/nicotinate riboside kinase [EC:2.7.1.22 2.7.1.173] +K10525 AOC; allene oxide cyclase [EC:5.3.99.6] +K10526 OPCL1; OPC-8:0 CoA ligase 1 [EC:6.2.1.-] +K10527 MFP2; enoyl-CoA hydratase/3-hydroxyacyl-CoA dehydrogenase [EC:4.2.1.17 1.1.1.35 1.1.1.211] +K10528 HPL, CYP74B24; hydroperoxide lyase [EC:4.1.2.-] +K10529 DOX; fatty acid alpha-dioxygenase [EC:1.13.11.92] +K10530 lctO; L-lactate oxidase [EC:1.1.3.2] +K10531 pvdA, SIDA; L-ornithine N5-monooxygenase [EC:1.14.13.195 1.14.13.196] +K10532 HGSNAT; heparan-alpha-glucosaminide N-acetyltransferase [EC:2.3.1.78] +K10533 E3.3.2.8; limonene-1,2-epoxide hydrolase [EC:3.3.2.8] +K10534 NR; nitrate reductase (NAD(P)H) [EC:1.7.1.1 1.7.1.2 1.7.1.3] +K10535 hao; hydroxylamine dehydrogenase [EC:1.7.2.6] +K10536 aguA; agmatine deiminase [EC:3.5.3.12] +K10537 araF; L-arabinose transport system substrate-binding protein +K10538 araH; L-arabinose transport system permease protein +K10539 araG; L-arabinose transport system ATP-binding protein [EC:7.5.2.12] +K10540 mglB; methyl-galactoside transport system substrate-binding protein +K10541 mglC; methyl-galactoside transport system permease protein +K10542 mglA; methyl-galactoside transport system ATP-binding protein [EC:7.5.2.11] +K10543 xylF; D-xylose transport system substrate-binding protein +K10544 xylH; D-xylose transport system permease protein +K10545 xylG; D-xylose transport system ATP-binding protein [EC:7.5.2.10] +K10546 chvE; putative multiple sugar transport system substrate-binding protein +K10547 gguB; putative multiple sugar transport system permease protein +K10548 gguA; putative multiple sugar transport system ATP-binding protein [EC:7.5.2.-] +K10549 alsB; D-allose transport system substrate-binding protein +K10550 alsC; D-allose transport system permease protein +K10551 alsA; D-allose transport system ATP-binding protein [EC:7.5.2.8] +K10552 frcB; fructose transport system substrate-binding protein +K10553 frcC; fructose transport system permease protein +K10554 frcA; fructose transport system ATP-binding protein +K10555 lsrB; AI-2 transport system substrate-binding protein +K10556 lsrC; AI-2 transport system permease protein +K10557 lsrD; AI-2 transport system permease protein +K10558 lsrA, ego; AI-2 transport system ATP-binding protein +K10559 rhaS; rhamnose transport system substrate-binding protein +K10560 rhaP; rhamnose transport system permease protein +K10561 rhaQ; rhamnose transport system permease protein +K10562 rhaT; rhamnose transport system ATP-binding protein [EC:7.5.2.-] +K10563 mutM, fpg; formamidopyrimidine-DNA glycosylase [EC:3.2.2.23 4.2.99.18] +K10564 motC; chemotaxis protein MotC +K10565 motD; chemotaxis protein MotD +K10566 oxdB; phenylacetaldoxime dehydratase [EC:4.8.1.4] +K10567 NEIL1; endonuclease VIII-like 1 [EC:3.2.2.- 4.2.99.18] +K10568 NEIL2; endonuclease VIII-like 2 [EC:3.2.2.- 4.2.99.18] +K10569 NEIL3; endonuclease VIII-like 3 [EC:3.2.2.- 4.2.99.18] +K10570 ERCC8, CKN1, CSA; DNA excision repair protein ERCC-8 +K10571 DET1; de-etiolated-1 +K10572 IPPK; inositol-pentakisphosphate 2-kinase [EC:2.7.1.158] +K10573 UBE2A, UBC2, RAD6A; ubiquitin-conjugating enzyme E2 A [EC:2.3.2.23] +K10574 UBE2B, RAD6B; ubiquitin-conjugating enzyme E2 B [EC:2.3.2.23] +K10575 UBE2G1, UBC7; ubiquitin-conjugating enzyme E2 G1 [EC:2.3.2.23] +K10576 UBE2H, UBC8; ubiquitin-conjugating enzyme E2 H [EC:2.3.2.23] +K10577 UBE2I, UBC9; ubiquitin-conjugating enzyme E2 I +K10578 UBE2J1, NCUBE1, UBC6; ubiquitin-conjugating enzyme E2 J1 [EC:2.3.2.23] +K10579 UBE2M, UBC12; ubiquitin-conjugating enzyme E2 M [EC:2.3.2.34] +K10580 UBE2N, BLU, UBC13; ubiquitin-conjugating enzyme E2 N [EC:2.3.2.23] +K10581 UBE2O; ubiquitin-conjugating enzyme E2 O [EC:2.3.2.24] +K10582 UBE2Q; ubiquitin-conjugating enzyme E2 Q [EC:2.3.2.23] +K10583 UBE2S, E2EPF; ubiquitin-conjugating enzyme E2 S [EC:2.3.2.23] +K10584 UBE2U; ubiquitin-conjugating enzyme E2 U [EC:2.3.2.23] +K10585 UBE2Z; ubiquitin-conjugating enzyme E2 Z [EC:2.3.2.23] +K10586 BIRC6, BRUCE; baculoviral IAP repeat-containing protein 6 (apollon) [EC:2.3.2.23] +K10587 UBE3A, E6AP; ubiquitin-protein ligase E3 A [EC:2.3.2.26] +K10588 UBE3B; ubiquitin-protein ligase E3 B [EC:2.3.2.26] +K10589 UBE3C; ubiquitin-protein ligase E3 C [EC:2.3.2.26] +K10590 TRIP12; E3 ubiquitin-protein ligase TRIP12 [EC:2.3.2.26] +K10591 NEDD4, RSP5; E3 ubiquitin-protein ligase NEDD4 [EC:2.3.2.26] +K10592 HUWE1, MULE, ARF-BP1, TOM1; E3 ubiquitin-protein ligase HUWE1 [EC:2.3.2.26] +K10593 EDD1, UBR5; E3 ubiquitin-protein ligase EDD1 [EC:2.3.2.26] +K10594 HERC1; E3 ubiquitin-protein ligase HERC1 [EC:2.3.2.26] +K10595 HERC2; E3 ubiquitin-protein ligase HERC2 [EC:2.3.2.26] +K10596 UBE4A; ubiquitin conjugation factor E4 A [EC:2.3.2.27] +K10597 UBE4B, UFD2; ubiquitin conjugation factor E4 B [EC:2.3.2.27] +K10598 PPIL2, CYC4, CHP60; peptidyl-prolyl cis-trans isomerase-like 2 [EC:5.2.1.8] +K10599 PRPF19, PRP19; pre-mRNA-processing factor 19 [EC:2.3.2.27] +K10600 UBOX5, UIP5; U-box domain-containing protein 5 +K10601 SYVN1, HRD1; E3 ubiquitin-protein ligase synoviolin [EC:2.3.2.27] +K10602 NHLRC1; E3 ubiquitin-protein ligase NHLRC1 [EC:2.3.2.27] +K10603 AIRE; autoimmune regulator +K10604 MGRN1; E3 ubiquitin-protein ligase MGRN1 [EC:2.3.2.27] +K10605 BRCA1; breast cancer type 1 susceptibility protein [EC:2.3.2.27] +K10606 FANCL, PHF9; E3 ubiquitin-protein ligase FANCL [EC:2.3.2.27] +K10607 TRIM32, HT2A; tripartite motif-containing protein 32 [EC:2.3.2.27] +K10608 TRIM37, MUL; tripartite motif-containing protein 37 [EC:2.3.2.27] +K10609 CUL4; cullin 4 +K10610 DDB1; DNA damage-binding protein 1 +K10611 RBX2, ROC2, RNF7; RING-box protein 2 +K10612 CUL5; cullin 5 +K10613 CUL7; cullin 7 +K10614 HERC3; E3 ubiquitin-protein ligase HERC3 [EC:2.3.2.26] +K10615 HERC4; E3 ubiquitin-protein ligase HERC4 [EC:2.3.2.26] +K10616 cymAa; p-cymene methyl-monooxygenase [EC:1.14.15.25] +K10617 cymB; p-cumic alcohol dehydrogenase +K10618 cymC; p-cumic aldehyde dehydrogenase +K10619 cmtAb; p-cumate 2,3-dioxygenase subunit alpha [EC:1.14.12.25] +K10620 cmtB; 2,3-dihydroxy-2,3-dihydro-p-cumate dehydrogenase [EC:1.3.1.58] +K10621 cmtC, dhbA; 2,3-dihydroxy-p-cumate/2,3-dihydroxybenzoate 3,4-dioxygenase [EC:1.13.11.- 1.13.11.14] +K10622 cmtD, dhbB; HCOMODA/2-hydroxy-3-carboxy-muconic semialdehyde decarboxylase [EC:4.1.1.-] +K10623 cmtE; HOMODA hydrolase [EC:3.7.1.-] +K10624 RBBP6; E3 ubiquitin-protein ligase RBBP6 [EC:2.3.2.27] +K10625 UBR1; E3 ubiquitin-protein ligase UBR1 [EC:2.3.2.27] +K10626 UBR2; E3 ubiquitin-protein ligase UBR2 [EC:2.3.2.27] +K10627 RAD18; E3 ubiquitin-protein ligase RAD18 [EC:2.3.2.27] +K10628 RAG1; V(D)J recombination-activating protein 1 [EC:2.3.2.27] +K10629 RNF128, GRAIL; E3 ubiquitin-protein ligase RNF128 [EC:2.3.2.27] +K10630 RBCK1, HOIL1; RanBP-type and C3HC4-type zinc finger-containing protein 1 [EC:2.3.2.31] +K10631 TOPORS; E3 ubiquitin-protein ligase Topors [EC:2.3.2.27] +K10632 BRAP; BRCA1-associated protein [EC:2.3.2.27] +K10633 PJA1; E3 ubiquitin-protein ligase Praja1 [EC:2.3.2.27] +K10634 PJA2; E3 ubiquitin-protein ligase Praja2 [EC:2.3.2.27] +K10635 RNF111; E3 ubiquitin-protein ligase Arkadia [EC:2.3.2.27] +K10636 AMFR, GP78; E3 ubiquitin-protein ligase AMFR [EC:2.3.2.36] +K10637 MYLIP, MIR; E3 ubiquitin-protein ligase MYLIP [EC:2.3.2.27] +K10638 UHRF1, NP95; E3 ubiquitin-protein ligase UHRF1 [EC:2.3.2.27] +K10639 CCNB1IP1, HEI10; E3 ubiquitin-protein ligase CCNP1IP1 [EC:2.3.2.27] +K10640 RNF25, AO7; E3 ubiquitin-protein ligase RNF25 [EC:2.3.2.27] +K10641 LRSAM1; E3 ubiquitin-protein ligase LRSAM1 [EC:2.3.2.27] +K10642 DZIP3; E3 ubiquitin-protein ligase DZIP3 [EC:2.3.2.27] +K10643 CNOT4, NOT4, MOT2; CCR4-NOT transcription complex subunit 4 [EC:2.3.2.27] +K10644 CHFR; E3 ubiquitin-protein ligase CHFR [EC:2.3.2.27] +K10645 MIB; E3 ubiquitin-protein ligase mind-bomb [EC:2.3.2.27] +K10646 TRAF7, RFWD1; E3 ubiquitin-protein ligase TRAF7 [EC:2.3.2.27] +K10647 TRIM1, MID2; midline 2 [EC:2.3.2.27] +K10648 TRIM5; tripartite motif-containing protein 5 [EC:2.3.2.27] +K10649 TRIM9_67; tripartite motif-containing protein 9/67 +K10650 TRIM11; tripartite motif-containing protein 11 [EC:2.3.2.27] +K10651 TRIM21, SSA1; tripartite motif-containing protein 21 [EC:2.3.2.27] +K10652 TRIM25, EFP; tripartite motif-containing protein 25 [EC:2.3.2.27] +K10653 TRIM54, MURF3; tripartite motif-containing protein 54 +K10654 TRIM55, MURF2; tripartite motif-containing protein 55 +K10655 TRIM63, MURF1; tripartite motif-containing protein 63 [EC:2.3.2.27] +K10656 MARCH1_8; E3 ubiquitin-protein ligase MARCH1/8 [EC:2.3.2.27] +K10657 MARCH2_3; E3 ubiquitin-protein ligase MARCH2/3 [EC:2.3.2.27] +K10659 MARCH4_9_11; E3 ubiquitin-protein ligase MARCH4/9/11 [EC:2.3.2.27] +K10660 MARCH5; E3 ubiquitin-protein ligase MARCH5 [EC:2.3.2.27] +K10661 MARCH6, DOA10; E3 ubiquitin-protein ligase MARCH6 [EC:2.3.2.27] +K10662 MARCH7, AXOT; E3 ubiquitin-protein ligase MARCH7 [EC:2.3.2.27] +K10663 ATL4; E3 ubiquitin-protein ligase ATL4 [EC:2.3.2.27] +K10664 ATL6S; E3 ubiquitin-protein ligase ATL6/9/15/31/42/55 [EC:2.3.2.27] +K10665 MARCH10; E3 ubiquitin-protein ligase MARCH10 [EC:2.3.2.27] +K10666 RNF5_185; E3 ubiquitin-protein ligase RNF5/185 [EC:2.3.2.27] +K10667 RNF8; E3 ubiquitin-protein ligase RNF8 [EC:2.3.2.27] +K10668 RNF138; E3 ubiquitin-protein ligase RNF138 [EC:2.3.2.27] +K10669 TRPT1, TPT1; 2'-phosphotransferase [EC:2.7.1.160] +K10670 grdA; glycine/sarcosine/betaine reductase complex component A [EC:1.21.4.2 1.21.4.3 1.21.4.4] +K10671 grdE; glycine reductase complex component B subunit alpha and beta [EC:1.21.4.2] +K10672 grdB; glycine reductase complex component B subunit gamma [EC:1.21.4.2] +K10673 strA; streptomycin 3"-kinase [EC:2.7.1.87] +K10674 ectD; ectoine hydroxylase [EC:1.14.11.55] +K10675 E4.2.1.66; cyanide hydratase [EC:4.2.1.66] +K10676 tfdB; 2,4-dichlorophenol 6-monooxygenase [EC:1.14.13.20] +K10677 E4.2.2.17; inulin fructotransferase (DFA-I-forming) [EC:4.2.2.17] +K10678 nfsA; nitroreductase [EC:1.-.-.-] +K10679 nfnB, nfsB; nitroreductase / dihydropteridine reductase [EC:1.-.-.- 1.5.1.34] +K10680 nemA; N-ethylmaleimide reductase [EC:1.-.-.-] +K10681 saeS; two-component system, OmpR family, sensor histidine kinase SaeS [EC:2.7.13.3] +K10682 saeR; two-component system, OmpR family, response regulator SaeR +K10683 BARD1; BRCA1-associated RING domain protein 1 +K10684 UBLE1A, SAE1; ubiquitin-like 1-activating enzyme E1 A [EC:6.2.1.45] +K10685 UBLE1B, SAE2, UBA2; ubiquitin-like 1-activating enzyme E1 B [EC:6.2.1.45] +K10686 UBA3, UBE1C; NEDD8-activating enzyme E1 [EC:6.2.1.64] +K10687 UBE2F; ubiquitin-conjugating enzyme E2 F [EC:2.3.2.34] +K10688 UBE2W, UBC16; ubiquitin-conjugating enzyme E2 W [EC:2.3.2.23 2.3.2.25] +K10689 PEX4; peroxin-4 [EC:2.3.2.23] +K10691 UBR4, ZUBR1; E3 ubiquitin-protein ligase UBR4 [EC:2.3.2.27] +K10692 LNX1_2; ligand of Numb protein X 1/2 [EC:2.3.2.27] +K10693 MYCBP2, PAM; RCR-type E3 ubiquitin transferase [EC:2.3.2.33] +K10694 ZNRF1_2; E3 ubiquitin-protein ligase ZNRF1/2 [EC:2.3.2.27] +K10695 RNF1_2; E3 ubiquitin-protein ligase RNF1/2 [EC:2.3.2.27] +K10696 BRE1; E3 ubiquitin-protein ligase BRE1 [EC:2.3.2.27] +K10697 rpaA; two-component system, OmpR family, response regulator RpaA +K10698 UBE1L, UBA7; ubiquitin-activating enzyme E1-like [EC:6.2.1.45] +K10699 UBE1L2, UBA6; ubiquitin-activating enzyme E1-like protein 2 [EC:6.2.1.45] +K10700 ebdA; ethylbenzene hydroxylase subunit alpha [EC:1.17.99.2] +K10701 apc; acetophenone carboxylase [EC:6.4.1.8] +K10702 todF; 2-hydroxy-6-oxohepta-2,4-dienoate hydrolase [EC:3.7.1.25] +K10703 HACD, PHS1, PAS2; very-long-chain (3R)-3-hydroxyacyl-CoA dehydratase [EC:4.2.1.134] +K10704 UBE2V; ubiquitin-conjugating enzyme E2 variant +K10705 GAPDHS; glyceraldehyde-3-phosphate dehydrogenase (phosphorylating), spermatogenic [EC:1.2.1.12] +K10706 SETX, ALS4, SEN1; ATP-dependent RNA/DNA helicase, senataxin [EC:5.6.2.5 5.6.2.3] +K10707 VAPB, ALS8; vesicle-associated membrane protein-associated protein B +K10708 frlB; fructoselysine 6-phosphate deglycase [EC:3.5.-.-] +K10709 frlC; fructoselysine 3-epimerase [EC:5.1.3.41] +K10710 frlD; fructoselysine 6-kinase [EC:2.7.1.218] +K10711 frlR; GntR family transcriptional regulator, frlABCD operon transcriptional regulator +K10712 ADO; cysteamine dioxygenase [EC:1.13.11.19] +K10713 fae; 5,6,7,8-tetrahydromethanopterin hydro-lyase [EC:4.2.1.147] +K10714 mtdB; methylene-tetrahydromethanopterin dehydrogenase [EC:1.5.1.-] +K10715 rpfC; two-component system, sensor histidine kinase RpfC [EC:2.7.13.3] +K10716 kch, trkA, mthK, pch; voltage-gated potassium channel +K10717 CYP735A; cytokinin trans-hydroxylase +K10718 JHAMT; juvenile hormone-III synthase [EC:2.1.1.325] +K10719 JHEH; juvenile hormone epoxide hydrolase +K10720 PHM, CYP306A1; ecdysteroid 25-hydroxylase [EC:1.14.-.-] +K10721 DIB, CYP302A1; ecdysteroid 22-hydroxylase [EC:1.14.-.-] +K10722 SAD, CYP315A1; ecdysteroid 2-hydroxylase [EC:1.14.-.-] +K10723 SHD, CYP314A1; ecdysone 20-monooxygenase [EC:1.14.99.22] +K10724 EO; ecdysone oxidase [EC:1.1.3.16] +K10725 cdc6A; archaeal cell division control protein 6 +K10726 mcm; replicative DNA helicase Mcm [EC:5.6.2.3] +K10727 CDT1; chromatin licensing and DNA replication factor 1 +K10728 TOPBP1; topoisomerase (DNA) II binding protein 1 +K10729 SLD2; DNA replication regulator SLD2 +K10730 RECQL4; ATP-dependent DNA helicase Q4 [EC:5.6.2.4] +K10731 SLD3; DNA replication regulator SLD3 +K10732 GINS1, PSF1; GINS complex subunit 1 +K10733 GINS2, PSF2; GINS complex subunit 2 +K10734 GINS3; GINS complex subunit 3 +K10735 GINS4, SLD5; GINS complex subunit 4 +K10736 MCM10; minichromosome maintenance protein 10 +K10737 MCM8; DNA helicase MCM8 [EC:5.6.2.4] +K10738 MCM9; DNA helicase MCM9 [EC:5.6.2.4] +K10739 RFA2, RPA2; replication factor A2 +K10740 RPA3; replication factor A3 +K10741 RPA4; replication factor A4 +K10742 DNA2; DNA replication ATP-dependent helicase/nuclease Dna2 [EC:5.6.2.3 3.1.-.-] +K10743 RNASEH2A; ribonuclease H2 subunit A [EC:3.1.26.4] +K10744 RNASEH2B; ribonuclease H2 subunit B +K10745 RNASEH2C; ribonuclease H2 subunit C +K10746 EXO1; exonuclease 1 [EC:3.1.-.-] +K10747 LIG1; DNA ligase 1 [EC:6.5.1.1 6.5.1.6 6.5.1.7] +K10748 tus, tau; DNA replication terminus site-binding protein +K10749 GMNN; geminin +K10750 CHAF1A; chromatin assembly factor 1 subunit A +K10751 CHAF1B; chromatin assembly factor 1 subunit B +K10752 RBBP4, HAT2, CAF1, MIS16; histone-binding protein RBBP4 +K10753 ASF1; histone chaperone ASF1 +K10754 RFC1; replication factor C subunit 1 +K10755 RFC2_4; replication factor C subunit 2/4 +K10756 RFC3_5; replication factor C subunit 3/5 +K10757 E2.4.1.91; flavonol 3-O-glucosyltransferase [EC:2.4.1.91] +K10758 QSOX; thiol oxidase [EC:1.8.3.2] +K10759 E3.1.1.20; tannase [EC:3.1.1.20] +K10760 IPT; adenylate dimethylallyltransferase (cytokinin synthase) [EC:2.5.1.27 2.5.1.112] +K10761 THG1; tRNA(His) guanylyltransferase [EC:2.7.7.79] +K10762 ydaV; putative replication protein +K10763 hda; DnaA-homolog protein +K10764 metZ; O-succinylhomoserine sulfhydrylase [EC:2.5.1.-] +K10765 ALKBH1; alkylated DNA repair protein alkB homolog 1 [EC:1.14.11.51 4.2.99.18 1.14.11.-] +K10766 ALKBH4; DNA N6-methyl adenine demethylase [EC:1.14.11.51] +K10767 ALKBH5; mRNA N6-methyladenine demethylase [EC:1.14.11.53] +K10768 ALKBH6; alkylated DNA repair protein alkB homolog 6 [EC:1.14.11.-] +K10769 ALKBH7; alkylated DNA repair protein alkB homolog 7 [EC:1.14.11.-] +K10770 ALKBH8, TRM9; alkylated DNA repair protein alkB homolog 8 [EC:1.14.11.- 2.1.1.229] +K10771 APEX1; AP endonuclease 1 [EC:3.1.11.2] +K10772 APEX2; AP endonuclease 2 [EC:3.1.11.2] +K10773 NTHL1, nth; endonuclease III [EC:3.2.2.- 4.2.99.18] +K10774 E4.3.1.23; tyrosine ammonia-lyase [EC:4.3.1.23] +K10775 PAL; phenylalanine ammonia-lyase [EC:4.3.1.24] +K10776 LIG3; DNA ligase 3 [EC:6.5.1.1] +K10777 LIG4, DNL4; DNA ligase 4 [EC:6.5.1.1] +K10778 ada; AraC family transcriptional regulator, regulatory protein of adaptative response / methylated-DNA-[protein]-cysteine methyltransferase [EC:2.1.1.63] +K10779 ATRX; transcriptional regulator ATRX +K10780 fabL; enoyl-[acyl-carrier protein] reductase III [EC:1.3.1.104] +K10781 FATB; fatty acyl-ACP thioesterase B [EC:3.1.2.14 3.1.2.21] +K10782 FATA; fatty acyl-ACP thioesterase A [EC:3.1.2.14] +K10784 TRAV; T cell receptor alpha chain V region +K10785 TRBV; T-cell receptor beta chain V region +K10786 PRG2, MBP; bone marrow proteoglycan +K10787 RNASE3, ECP; eosinophil cationic protein [EC:3.1.27.-] +K10788 EPX, EPO; eosinophil peroxidase [EC:1.11.1.7] +K10789 MPO; myeloperoxidase [EC:1.11.2.2] +K10790 TREX1; three prime repair exonuclease 1 [EC:3.1.11.2] +K10791 TREX2; three prime repair exonuclease 2 [EC:3.1.11.2] +K10793 prdA; D-proline reductase (dithiol) PrdA [EC:1.21.4.1] +K10794 prdB; D-proline reductase (dithiol) PrdB [EC:1.21.4.1] +K10795 prdD; D-proline reductase (dithiol)-stabilizing protein PrdD +K10796 prdE; D-proline reductase (dithiol)-stabilizing protein PrdE +K10797 enr; 2-enoate reductase [EC:1.3.1.31] +K10798 PARP2_3_4; poly [ADP-ribose] polymerase 2/3/4 [EC:2.4.2.30] +K10799 TNKS; tankyrase [EC:2.4.2.30] +K10800 SMUG1; single-strand selective monofunctional uracil DNA glycosylase [EC:3.2.2.-] +K10801 MBD4; methyl-CpG-binding domain protein 4 [EC:3.2.2.-] +K10802 HMGB1; high mobility group protein B1 +K10803 XRCC1; DNA-repair protein XRCC1 +K10804 tesA; acyl-CoA thioesterase I [EC:3.1.2.- 3.1.2.2 3.1.1.2 3.1.1.5] +K10805 tesB; acyl-CoA thioesterase II [EC:3.1.2.-] +K10806 yciA; acyl-CoA thioesterase YciA [EC:3.1.2.-] +K10807 RRM1; ribonucleoside-diphosphate reductase subunit M1 [EC:1.17.4.1] +K10808 RRM2; ribonucleoside-diphosphate reductase subunit M2 [EC:1.17.4.1] +K10809 TG; thyroglobulin +K10810 tenI; thiazole tautomerase (transcriptional regulator TenI) [EC:5.3.99.10] +K10811 E2.5.1.2; thiamine pyridinylase [EC:2.5.1.2] +K10812 GlcAT-S; beta-1,3-glucuronyltransferase S [EC:2.4.1.135 2.4.1.-] +K10814 hcnA; hydrogen cyanide synthase HcnA [EC:1.4.99.5] +K10815 hcnB; hydrogen cyanide synthase HcnB [EC:1.4.99.5] +K10816 hcnC; hydrogen cyanide synthase HcnC [EC:1.4.99.5] +K10817 eryAI; 6-deoxyerythronolide-B synthase EryAI [EC:2.3.1.94] +K10819 E2.7.13.3; histidine kinase [EC:2.7.13.3] +K10820 ytfR; galactofuranose transport system ATP-binding protein [EC:7.5.2.9] +K10822 E7.4.2.2; nonpolar-amino-acid-transporting ATPase [EC:7.4.2.2] +K10823 oppF; oligopeptide transport system ATP-binding protein +K10824 nikE, cntF; nickel transport system ATP-binding protein [EC:7.2.2.11] +K10829 fhuC; ferric hydroxamate transport system ATP-binding protein [EC:7.2.2.16] +K10830 psaB, scaC, sloA; manganese/zinc transport system ATP-binding protein [EC:7.2.2.5] +K10831 tauB; taurine transport system ATP-binding protein [EC:7.6.2.7] +K10834 hmuV, phuV, bhuV, hemV; heme transport system ATP-binding protein [EC:7.6.2.5] +K10837 PSTK; O-phosphoseryl-tRNA(Sec) kinase [EC:2.7.1.164] +K10838 XPC; xeroderma pigmentosum group C-complementing protein +K10839 RAD23, HR23; UV excision repair protein RAD23 +K10840 CETN2; centrin-2 +K10841 ERCC6, CSB, RAD26; DNA excision repair protein ERCC-6 +K10842 MNAT1; CDK-activating kinase assembly factor MAT1 +K10843 ERCC3, XPB; DNA excision repair protein ERCC-3 [EC:5.6.2.4] +K10844 ERCC2, XPD; DNA excision repair protein ERCC-2 [EC:5.6.2.3] +K10845 TTDA, GTF2H5, TFB5; TFIIH basal transcription factor complex TTD-A subunit +K10846 ERCC5, XPG, RAD2; DNA excision repair protein ERCC-5 +K10847 XPA; DNA-repair protein complementing XP-A cells +K10848 ERCC4, XPF; DNA excision repair protein ERCC-4 [EC:3.1.-.-] +K10849 ERCC1; DNA excision repair protein ERCC-1 +K10850 narT; MFS transporter, NNP family, putative nitrate transporter +K10851 nreA; nitrogen regulatory protein A +K10852 PENDE; isopenicillin-N N-acyltransferase [EC:2.3.1.164] +K10854 acxB; acetone carboxylase, alpha subunit [EC:6.4.1.6] +K10855 acxA; acetone carboxylase, beta subunit [EC:6.4.1.6] +K10856 acxC; acetone carboxylase, gamma subunit [EC:6.4.1.6] +K10857 exoX; exodeoxyribonuclease X [EC:3.1.11.-] +K10858 PMS2; DNA mismatch repair protein PMS2 +K10859 ALKBH2; DNA oxidative demethylase [EC:1.14.11.33] +K10860 ALKBH3, DEPC1; mRNA N1-methyladenine demethylase [EC:1.14.11.54] +K10861 UDG2, CCNO; uracil-DNA glycosylase 2 [EC:3.2.2.-] +K10862 TDP1; tyrosyl-DNA phosphodiesterase 1 [EC:3.1.4.-] +K10863 APTX; aprataxin [EC:3.6.1.70 3.6.1.71 3.6.1.72] +K10864 PMS1; DNA mismatch repair protein PMS1 +K10865 MRE11; double-strand break repair protein MRE11 +K10866 RAD50; DNA repair protein RAD50 [EC:3.6.-.-] +K10867 NBN, NBS1; nibrin +K10868 XRS2; DNA repair protein XRS2 +K10869 RAD51L1, RAD51B; RAD51-like protein 1 +K10870 RAD51L2, RAD51C; RAD51-like protein 2 +K10871 RAD51L3, RAD51D; RAD51-like protein 3 +K10872 DMC1; meiotic recombination protein DMC1 +K10873 RAD52; DNA repair and recombination protein RAD52 +K10874 RDM1, RAD52B; RAD52 motif-containing protein 1 +K10875 RAD54L, RAD54; DNA repair and recombination protein RAD54 and RAD54-like protein [EC:5.6.2.-] +K10876 RAD54L2; RAD54-like protein 2 [EC:5.6.2.-] +K10877 RAD54B; DNA repair and recombination protein RAD54B [EC:5.6.2.-] +K10878 SPO11; meiotic recombination protein SPO11 +K10879 XRCC2; DNA-repair protein XRCC2 +K10880 XRCC3; DNA-repair protein XRCC3 +K10881 SHFM1, DSS1, RPN15; 26 proteasome complex subunit DSS1 +K10882 EME1, MMS4; crossover junction endonuclease EME1 [EC:3.1.22.-] +K10883 EME2; crossover junction endonuclease EME2 +K10884 XRCC6, KU70, G22P1; ATP-dependent DNA helicase 2 subunit 1 +K10885 XRCC5, KU80, G22P2; ATP-dependent DNA helicase 2 subunit 2 +K10886 XRCC4; DNA-repair protein XRCC4 +K10887 DCLRE1C, ARTEMIS, SCIDA; DNA cross-link repair 1C protein [EC:3.1.-.-] +K10888 FANCA; fanconi anemia group A protein +K10889 FANCB; fanconi anemia group B protein +K10890 FANCC; fanconi anemia group C protein +K10891 FANCD2; fanconi anemia group D2 protein +K10892 FANCE; fanconi anemia group E protein +K10893 FANCF; fanconi anemia group F protein +K10894 FANCG; fanconi anemia group G protein +K10895 FANCI; fanconi anemia group I protein +K10896 FANCM; fanconi anemia group M protein +K10897 PALB2, FANCN; partner and localizer of BRCA2 +K10898 FAAP24; fanconi anemia-associated protein +K10899 RECQL; ATP-dependent DNA helicase Q1 [EC:5.6.2.4] +K10900 WRN, RECQL2; werner syndrome ATP-dependent helicase [EC:5.6.2.4] +K10901 BLM, RECQL3, SGS1; bloom syndrome protein [EC:5.6.2.4] +K10902 RECQL5; ATP-dependent DNA helicase Q5 [EC:5.6.2.4] +K10903 HUS1; HUS1 checkpoint protein +K10905 ATRIP; ATR interacting protein +K10906 recE; exodeoxyribonuclease VIII [EC:3.1.11.-] +K10907 K10907; aminotransferase [EC:2.6.1.-] +K10908 POLRMT, RPO41; DNA-directed RNA polymerase, mitochondrial [EC:2.7.7.6] +K10909 luxQ; two-component system, autoinducer 2 sensor kinase/phosphatase LuxQ [EC:2.7.13.3 3.1.3.-] +K10910 luxP; autoinducer 2-binding periplasmic protein LuxP +K10911 luxU; two-component system, phosphorelay protein LuxU +K10912 luxO; two-component system, repressor protein LuxO +K10913 hapR, luxR, litR; TetR/AcrR family transcriptional regulator, hemagglutinin/protease regulatory protein +K10914 crp; CRP/FNR family transcriptional regulator, cyclic AMP receptor protein +K10915 cqsA; CAI-1 autoinducer synthase [EC:2.3.-.-] +K10916 cqsS; two-component system, CAI-1 autoinducer sensor kinase/phosphatase CqsS [EC:2.7.13.3 3.1.3.-] +K10917 aphA; PadR family transcriptional regulator, regulatory protein AphA +K10918 aphB; LysR family transcriptional regulator, transcriptional activator AphB +K10919 tcpH; toxin coregulated pilus biosynthesis protein H +K10920 tcpP; toxin coregulated pilus biosynthesis protein P +K10921 toxR; cholera toxin transcriptional activator +K10922 toxS; transmembrane regulatory protein ToxS +K10923 tcpN, toxT; AraC family transcriptional regulator, TCP pilus virulence regulatory protein +K10924 mshA; MSHA pilin protein MshA +K10925 mshB; MSHA pilin protein MshB +K10926 mshC; MSHA pilin protein MshC +K10927 mshD; MSHA pilin protein MshD +K10928 ctxA; cholera enterotoxin subunit A [EC:2.4.2.36] +K10929 ctxB; cholera enterotoxin subunit B +K10930 tcpA; toxin coregulated pilin +K10931 tcpB; toxin coregulated pilus biosynthesis protein B +K10932 tcpC; toxin coregulated pilus biosynthesis outer membrane protein C +K10933 tcpD; toxin coregulated pilus biosynthesis protein D +K10934 tcpE; toxin coregulated pilus biosynthesis protein E +K10935 tcpF; toxin coregulated pilus biosynthesis protein F +K10936 acfA; accessory colonization factor AcfA +K10937 acfB; accessory colonization factor AcfB +K10938 acfC; accessory colonization factor AcfC +K10939 acfD; accessory colonization factor AcfD +K10940 ompT; outer membrane protein OmpT +K10941 flrA, fleQ, flaK; sigma-54 dependent transcriptional regulator, flagellar regulatory protein +K10942 flrB, fleS, flaL; two-component system, sensor histidine kinase FlrB [EC:2.7.13.3] +K10943 flrC, fleR, flaM; two-component system, response regulator FlrC +K10944 pmoA-amoA; methane/ammonia monooxygenase subunit A [EC:1.14.18.3 1.14.99.39] +K10945 pmoB-amoB; methane/ammonia monooxygenase subunit B +K10946 pmoC-amoC; methane/ammonia monooxygenase subunit C +K10947 K10947; PadR family transcriptional regulator +K10948 hlyA; hemolysin +K10949 KDELR; ER lumen protein retaining receptor +K10950 ERO1L; ERO1-like protein alpha [EC:1.8.4.-] +K10951 SLC12A2, NKCC1; solute carrier family 12 (sodium/potassium/chloride transporter), member 2 +K10952 ace; accessory cholera enterotoxin +K10953 rtxA; RTX toxin RtxA +K10954 zot; zona occludens toxin +K10955 MUC2; mucin-2 +K10956 SEC61A; protein transport protein SEC61 subunit alpha +K10957 RAD55; DNA repair protein RAD55 +K10958 RAD57; DNA repair protein RAD57 +K10959 RAD59; DNA repair protein RAD59 +K10960 chlP, bchP; geranylgeranyl diphosphate/geranylgeranyl-bacteriochlorophyllide a reductase [EC:1.3.1.83 1.3.1.111] +K10961 tcpI; toxin coregulated pilus biosynthesis protein I +K10962 tcpQ; toxin coregulated pilus biosynthesis protein Q +K10963 tcpR; toxin coregulated pilus biosynthesis protein R +K10964 tcpS; toxin coregulated pilus biosynthesis protein S +K10965 tcpT; toxin coregulated pilus biosynthesis protein T +K10966 tcpJ; toxin coregulated pilus biosynthesis protein J [EC:3.4.23.43 2.1.1.-] +K10967 KTR1_3; alpha 1,2-mannosyltransferase [EC:2.4.1.-] +K10968 MNT2; alpha 1,3-mannosyltransferase [EC:2.4.1.-] +K10969 MNT3; alpha 1,3-mannosyltransferase [EC:2.4.1.-] +K10970 MNN25; alpha 1,2-mannosyltransferase [EC:2.4.1.-] +K10971 GMA12; alpha 1,2-galactosyltransferase [EC:2.4.1.-] +K10972 allS; LysR family transcriptional regulator, transcriptional activator of the allD operon +K10973 allR; IclR family transcriptional regulator, negative regulator of allantoin and glyoxylate utilization operons +K10974 codB; cytosine permease +K10975 allP; allantoin permease +K10976 ERO1LB; ERO1-like protein beta [EC:1.8.4.-] +K10977 aksA; methanogen homocitrate synthase [EC:2.3.3.14 2.3.3.-] +K10978 aksF; methanogen homoisocitrate dehydrogenase [EC:1.1.1.87 1.1.1.-] +K10979 ku; DNA end-binding protein Ku +K10980 NHEJ1, XLF; non-homologous end-joining factor 1 +K10981 POL4; DNA polymerase IV [EC:2.7.7.7] +K10982 LIF1; ligase-interacting factor 1 +K10983 NEJ1, LIF2; non-homologous end-joining protein 1 +K10984 agaB; galactosamine PTS system EIIB component [EC:2.7.1.-] +K10985 agaC; galactosamine PTS system EIIC component +K10986 agaD; galactosamine PTS system EIID component +K10988 RAG2; recombination-activating protein 2 +K10989 AICDA, AID; activation-induced cytidine deaminase [EC:3.5.4.38] +K10990 RMI1, BRAP75; RecQ-mediated genome instability protein 1 +K10991 SWI5, SAE3; DNA repair protein Swi5/Sae3 +K10992 SFR1; Swi5-dependent recombination DNA repair protein 1 +K10993 FAAP100; fanconi anemia core complex 100 kDa subunit +K10994 RAD9A; cell cycle checkpoint control protein RAD9A [EC:3.1.11.2] +K10995 RAD9B; cell cycle checkpoint control protein RAD9B +K10996 HUS1B; checkpoint protein HUS1B +K10997 TIMELESS, TOF1, SWI1; replication fork protection complex subunit TIMELESS/Tof1/Swi1 +K10998 TIPIN, CSM3, SWI3; replication fork protection complex subunit TIPIN/Csm3/Swi3 +K10999 CESA; cellulose synthase A [EC:2.4.1.12] +K11000 CALS; callose synthase [EC:2.4.1.-] +K11001 PIGY; phosphatidylinositol N-acetylglucosaminyltransferase subunit Y +K11002 ERI1; phosphatidylinositol N-acetylglucosaminyltransferase ERI1 subunit +K11003 hlyD, cyaD; membrane fusion protein, hemolysin D +K11004 hlyB, cyaB; ATP-binding cassette, subfamily B, bacterial HlyB/CyaB +K11005 hlyA; hemolysin A +K11006 stxA; shiga toxin subunit A +K11007 stxB; shiga toxin subunit B +K11008 cnf1; cytotoxic necrotizing factor 1 +K11009 ymt; murine toxin +K11010 ympA; superantigen YpmA +K11011 set1A; enterotoxin Set1A +K11012 set1B; enterotoxin Set1B +K11013 cdtA; cytolethal distending toxin subunit A +K11014 cdtB; cytolethal distending toxin subunit B +K11015 cdtC; cytolethal distending toxin subunit C +K11016 shlA, hhdA, hpmA; hemolysin +K11017 shlB, hhdB, hpmB; hemolysin activation/secretion protein +K11018 tlh; thermolabile hemolysin +K11019 tdh; thermostable direct hemolysin +K11020 toxA; exotoxin A [EC:2.4.2.-] +K11021 tccC; insecticidal toxin complex protein TccC +K11022 rtxA1, rtxA; structural toxin protein (hemagglutinin/hemolysin) RtxA +K11023 ptxA, artA, pltA; pertussis toxin subunit 1 [EC:2.4.2.-] +K11024 ptxB; pertussis toxin subunit 2 +K11025 ptxC; pertussis toxin subunit 3 +K11026 ptxD; pertussis toxin subunit 4 +K11027 ptxE; pertussis toxin subunit 5 +K11028 vacA; vacuolating cytotoxin +K11029 cyaA; anthrax edema toxin adenylate cyclase [EC:4.6.1.1] +K11030 pagA; protective antigen +K11031 slo; thiol-activated cytolysin +K11032 hlyII; hemolysin II +K11033 nheA; non-hemolytic enterotoxin A +K11034 nheBC; non-hemolytic enterotoxin B/C +K11035 hblAB; hemolysin BL binding component +K11036 hblC; hemolysin BL lytic component L2 +K11037 hblD; hemolysin BL lytic component L1 +K11038 hlg, luk; leukocidin/hemolysin toxin family protein +K11039 hld; delta-hemolysin +K11040 se; staphylococcal enterotoxin +K11041 eta; exfoliative toxin A/B +K11042 ssl1; superantigen-like protein 1 +K11043 tst; toxic shock syndrome toxin-1 +K11044 spyA; C3 family ADP-ribosyltransferase [EC:2.4.2.-] +K11045 cfa; cAMP factor +K11046 sagA; streptolysin S associated protein +K11047 cylX; CylX protein +K11048 cylD; CylD protein +K11049 cylG; CylG protein +K11050 cylA; multidrug/hemolysin transport system ATP-binding protein +K11051 cylB; multidrug/hemolysin transport system permease protein +K11052 cylE; CylE protein +K11053 cylF; CylF protein +K11054 cylI; CylI protein +K11055 cylJ; CylJ protein +K11056 cylK; CylK protein +K11057 cpb2; beta2-toxin +K11058 cpe; enterotoxin Cpe +K11059 entA; probable enterotoxin A +K11060 entB; probable enterotoxin B +K11061 entC; probable enterotoxin C +K11062 entD; probable enterotoxin D +K11063 tcdAB; toxin A/B +K11064 MMD; monocyte to macrophage differentiation protein +K11065 tpx; thioredoxin-dependent peroxiredoxin [EC:1.11.1.24] +K11066 amiD; N-acetylmuramoyl-L-alanine amidase [EC:3.5.1.28] +K11067 NAGS; N-acetylglutamate synthase [EC:2.3.1.1] +K11068 hlyIII; hemolysin III +K11069 potD; spermidine/putrescine transport system substrate-binding protein +K11070 potC; spermidine/putrescine transport system permease protein +K11071 potB; spermidine/putrescine transport system permease protein +K11072 potA; spermidine/putrescine transport system ATP-binding protein [EC:7.6.2.11] +K11073 potF, spuD, spuE; putrescine transport system substrate-binding protein +K11074 potI, spuH; putrescine transport system permease protein +K11075 potH, spuG; putrescine transport system permease protein +K11076 potG, spuF; putrescine transport system ATP-binding protein [EC:7.6.2.16] +K11077 attC; mannopine transport system substrate-binding protein +K11078 attB; mannopine transport system permease protein +K11079 attA2; mannopine transport system permease protein +K11080 attA1; mannopine transport system ATP-binding protein +K11081 phnS; 2-aminoethylphosphonate transport system substrate-binding protein +K11082 phnV; 2-aminoethylphosphonate transport system permease protein +K11083 phnU; 2-aminoethylphosphonate transport system permease protein +K11084 phnT; 2-aminoethylphosphonate transport system ATP-binding protein +K11085 msbA; ATP-binding cassette, subfamily B, bacterial MsbA [EC:7.5.2.6] +K11086 SNRPB, SMB; small nuclear ribonucleoprotein B and B' +K11087 SNRPD1, SMD1; small nuclear ribonucleoprotein D1 +K11088 SNRPD3, SMD3; small nuclear ribonucleoprotein D3 +K11089 TROVE2, SSA2; 60 kDa SS-A/Ro ribonucleoprotein +K11090 LA, SSB; lupus La protein +K11091 SNRPA; U1 small nuclear ribonucleoprotein A +K11092 SNRPA1; U2 small nuclear ribonucleoprotein A' +K11093 SNRP70; U1 small nuclear ribonucleoprotein 70kDa +K11094 SNRPB2; U2 small nuclear ribonucleoprotein B'' +K11095 SNRPC; U1 small nuclear ribonucleoprotein C +K11096 SNRPD2, SMD2; small nuclear ribonucleoprotein D2 +K11097 SNRPE, SME; small nuclear ribonucleoprotein E +K11098 SNRPF, SMF; small nuclear ribonucleoprotein F +K11099 SNRPG, SMG; small nuclear ribonucleoprotein G +K11100 SNRPN, SMN; small nuclear ribonucleoprotein N +K11101 PTCH2; patched 2 +K11102 gltP, gltT; proton glutamate symport protein +K11103 dctA; aerobic C4-dicarboxylate transport protein +K11104 melB; melibiose permease +K11105 cvrA, nhaP2; potassium/hydrogen antiporter +K11106 ttdT; L-tartrate/succinate antiporter +K11107 yfaE; ferredoxin +K11108 RCL1; RNA 3'-terminal phosphate cyclase-like protein +K11109 POT1; protection of telomeres protein 1 +K11110 TERF1, TRF1; telomeric repeat-binding factor 1 +K11111 TERF2, TRF2; telomeric repeat-binding factor 2 +K11112 TINF2, TIN2; TERF1-interacting nuclear factor 2 +K11113 TERF2IP, RAP1; telomeric repeat-binding factor 2-interacting protein 1 +K11114 ACD, TPP1; adrenocortical dysplasia protein +K11115 CDC13; cell division control protein 13 +K11116 TEN1; telomere length regulation protein +K11117 STN1; protein STN1 +K11118 RIF1; RAP1-interacting factor 1 +K11119 RIF2; RAP1-interacting factor 2 +K11120 SIR1; regulatory protein SIR1 +K11121 SIR2; NAD-dependent protein deacetylase SIR2 [EC:2.3.1.286] +K11122 SIR3; regulatory protein SIR3 +K11123 SIR4; regulatory protein SIR4 +K11124 SMG6, EST1A; protein SMG6 [EC:3.1.-.-] +K11125 SMG5, EST1B; protein SMG5 +K11126 TERT, EST2; telomerase reverse transcriptase [EC:2.7.7.49] +K11127 TEP1; telomerase protein component 1 +K11128 GAR1, NOLA1; H/ACA ribonucleoprotein complex subunit 1 +K11129 NHP2, NOLA2; H/ACA ribonucleoprotein complex subunit 2 +K11130 NOP10, NOLA3; H/ACA ribonucleoprotein complex subunit 3 +K11131 DKC1, NOLA4, CBF5; H/ACA ribonucleoprotein complex subunit 4 [EC:5.4.99.-] +K11132 EST1; telomere elongation protein [EC:2.7.7.-] +K11133 EST3; telomere replication protein +K11134 ELG1; telomere length regulation protein +K11135 PINX1; Pin2-interacting protein X1 +K11136 RTEL1; regulator of telomere elongation helicase 1 [EC:5.6.2.3] +K11137 TELO2, TEL2; telomere length regulation protein +K11138 RIF1; telomere-associated protein RIF1 +K11139 hlyE, clyA, sheA; hemolysin E +K11140 ANPEP, CD13; aminopeptidase N [EC:3.4.11.2] +K11141 ENPEP, CD249; glutamyl aminopeptidase [EC:3.4.11.7] +K11142 LAP3; cytosol aminopeptidase [EC:3.4.11.1 3.4.11.5] +K11143 DNAI2; dynein axonemal intermediate chain 2 +K11144 dnaI; primosomal protein DnaI +K11145 mrnC; mini-ribonuclease III [EC:3.1.26.-] +K11146 DHRS3; short-chain dehydrogenase/reductase 3 [EC:1.1.1.300] +K11147 DHRS4; dehydrogenase/reductase SDR family member 4 [EC:1.1.-.-] +K11148 DHRS4L2; dehydrogenase/reductase SDR family member 4-like protein 2 [EC:1.1.-.-] +K11149 DHRS9; dehydrogenase/reductase SDR family member 9 [EC:1.1.-.-] +K11150 RDH8; retinol dehydrogenase 8 [EC:1.1.1.-] +K11151 RDH10; retinol dehydrogenase 10 [EC:1.1.1.-] +K11152 RDH11; retinol dehydrogenase 11 [EC:1.1.1.300] +K11153 RDH12; retinol dehydrogenase 12 [EC:1.1.1.300] +K11154 RDH16; retinol dehydrogenase 16 [EC:1.1.1.-] +K11155 DGAT1; diacylglycerol O-acyltransferase 1 [EC:2.3.1.20 2.3.1.75 2.3.1.76] +K11156 DGAT2L4, MFAT, AWAT2; diacylglycerol O-acyltransferase 2-like protein 4 [EC:2.3.1.75 2.3.1.76] +K11157 PNPLA4; patatin-like phospholipase domain-containing protein 4 [EC:3.1.1.-] +K11158 RPE65; retinoid isomerohydrolase / lutein isomerase [EC:3.1.1.64 5.3.3.22] +K11159 K11159; carotenoid cleavage oxygenase [EC:1.13.11.-] +K11160 DGAT2; diacylglycerol O-acyltransferase 2 [EC:2.3.1.20 2.3.1.75] +K11161 RDH13; retinol dehydrogenase 13 [EC:1.1.1.300] +K11162 RDH14; retinol dehydrogenase 14 [EC:1.1.1.-] +K11163 DHRS1; dehydrogenase/reductase SDR family member 1 [EC:1.1.-.-] +K11164 DHRS2; dehydrogenase/reductase SDR family member 2 [EC:1.1.-.-] +K11165 DHRS7; dehydrogenase/reductase SDR family member 7 [EC:1.1.-.-] +K11166 DHRS7B; dehydrogenase/reductase SDR family member 7B [EC:1.1.-.-] +K11167 DHRS7C; dehydrogenase/reductase SDR family member 7C [EC:1.1.-.-] +K11168 DHRS12; dehydrogenase/reductase SDR family member 12 [EC:1.1.-.-] +K11169 DHRS13; dehydrogenase/reductase SDR family member 13 [EC:1.1.-.-] +K11170 DHRSX; dehydrogenase/reductase SDR family member X [EC:1.1.-.-] +K11171 DGAT2L3, AWAT1; diacylglycerol O-acyltransferase 2-like protein 3 [EC:2.3.1.75] +K11172 DGAT2L6; diacylglycerol O-acyltransferase 2-like protein 6 [EC:2.3.1.-] +K11173 ADHFE1; hydroxyacid-oxoacid transhydrogenase [EC:1.1.99.24] +K11175 purN; phosphoribosylglycinamide formyltransferase 1 [EC:2.1.2.2] +K11176 purO; IMP cyclohydrolase [EC:3.5.4.10] +K11177 yagR; xanthine dehydrogenase YagR molybdenum-binding subunit [EC:1.17.1.4] +K11178 yagS; xanthine dehydrogenase YagS FAD-binding subunit [EC:1.17.1.4] +K11179 tusE, dsrC; tRNA 2-thiouridine synthesizing protein E [EC:2.8.1.-] +K11180 dsrA; dissimilatory sulfite reductase alpha subunit [EC:1.8.1.22] +K11181 dsrB; dissimilatory sulfite reductase beta subunit [EC:1.8.1.22] +K11182 AOC1, ABP1; diamine oxidase [EC:1.4.3.22] +K11183 fruB, fpr; multiphosphoryl transfer protein [EC:2.7.1.202] +K11184 chr, crh; catabolite repression HPr-like protein +K11185 TRYP; cytosolic tryparedoxin peroxidase, trypanosomatid typical 2-Cys peroxiredoxin [EC:1.11.1.-] +K11186 MTRYP; mitochondrial tryparedoxin peroxidase, trypanosomatid typical 2-Cys peroxiredoxin [EC:1.11.1.-] +K11187 PRDX5; peroxiredoxin 5 [EC:1.11.1.24] +K11188 PRDX6; peroxiredoxin 6 [EC:1.11.1.7 1.11.1.27 3.1.1.-] +K11192 murP; N-acetylmuramic acid PTS system EIICB component [EC:2.7.1.192] +K11194 levD; fructose PTS system EIIA component [EC:2.7.1.202] +K11195 levE; fructose PTS system EIIB component [EC:2.7.1.202] +K11196 levF; fructose PTS system EIIC component +K11200 mngA, hrsA; 2-O-A-mannosyl-D-glycerate PTS system EIIABC component [EC:2.7.1.195] +K11201 frvA; fructose-like PTS system EIIA component [EC:2.7.1.-] +K11202 fryB; fructose-like PTS system EIIB component [EC:2.7.1.-] +K11203 fryC, frvB; fructose-like PTS system EIIC or EIIBC or EIIABC component +K11204 GCLC; glutamate--cysteine ligase catalytic subunit [EC:6.3.2.2] +K11205 GCLM; glutamate--cysteine ligase regulatory subunit +K11206 NIT1, ybeM; deaminated glutathione amidase [EC:3.5.1.128] +K11207 TDPX; glutathione peroxidase-type tryparedoxin peroxidase [EC:1.11.1.-] +K11208 yncG; GST-like protein +K11209 yghU, yfcG; GSH-dependent disulfide-bond oxidoreductase [EC:1.8.4.-] +K11210 fosB; metallothiol transferase [EC:2.5.1.-] +K11211 kdkA; 3-deoxy-D-manno-octulosonic acid kinase [EC:2.7.1.166] +K11212 cofD; LPPG:FO 2-phospho-L-lactate transferase [EC:2.7.8.28] +K11213 STE2; pheromone alpha factor receptor +K11214 SHPK; sedoheptulokinase [EC:2.7.1.14] +K11215 STE12; transcription factor STE12 +K11216 lsrK; autoinducer-2 kinase [EC:2.7.1.189] +K11217 JAK1; Janus kinase 1 [EC:2.7.10.2] +K11218 JAK3; Janus kinase 3 [EC:2.7.10.2] +K11219 TYK2; non-receptor tyrosine-protein kinase TYK2 [EC:2.7.10.2] +K11220 STAT1; signal transducer and activator of transcription 1 +K11221 STAT2; signal transducer and activator of transcription 2 +K11222 STAT4; signal transducer and activator of transcription 4 +K11223 STAT5A; signal transducer and activator of transcription 5A +K11224 STAT5B; signal transducer and activator of transcription 5B +K11225 STAT6; signal transducer and activator of transcription 6 +K11226 STE7; mitogen-activated protein kinase kinase [EC:2.7.12.2] +K11227 PBS2; mitogen-activated protein kinase kinase [EC:2.7.12.2] +K11228 STE11; mitogen-activated protein kinase kinase kinase [EC:2.7.11.25] +K11229 BCK1; mitogen-activated protein kinase kinase kinase [EC:2.7.11.25] +K11230 SSK2; mitogen-activated protein kinase kinase kinase [EC:2.7.11.25] +K11231 SLN1; osomolarity two-component system, sensor histidine kinase SLN1 [EC:2.7.13.3] +K11232 YPD1; osomolarity two-component system, phosphorelay intermediate protein YPD1 +K11233 SSK1; osomolarity two-component system, response regulator SSK1 +K11234 MFAL; mating pheromone alpha-factor +K11235 MFA; mating pheromone A-factor +K11236 CDC24; cell division control protein 24 +K11237 BEM1; bud emergence protein 1 +K11238 BNI1; cytokinesis protein +K11239 STE5; pheromone-response scaffold protein +K11240 MSG5; tyrosine-protein phosphatase MSG5 [EC:3.1.3.48] +K11241 DIG1; down-regulator of invasive growth 1 +K11242 DIG2; down-regulator of invasive growth 2 +K11243 FUS1; nuclear fusion protein +K11244 WSC; cell wall integrity and stress response component +K11245 MID2, MTL1; mating pheromone-induced death protein 2 +K11246 SHO1; SHO1 osmosensor +K11247 SH3GL; endophilin-A +K11248 SH3GLB1; endophilin-B1 +K11249 eamB; cysteine/O-acetylserine efflux protein +K11250 leuE; leucine efflux protein +K11251 H2A; histone H2A +K11252 H2B; histone H2B +K11253 H3; histone H3 +K11254 H4; histone H4 +K11255 NCOA2, TIF2, KAT13C; nuclear receptor coactivator 2 +K11256 NCOA3, ACTR, KAT13B; nuclear receptor coactivator 3 [EC:2.3.1.48] +K11257 FUT11; galactoside 3-L-fucosyltransferase 11 [EC:2.4.1.-] +K11258 ilvM; acetolactate synthase II small subunit [EC:2.2.1.6] +K11259 ILVBL, HACL2; 2-hydroxyacyl-CoA lyase [EC:4.1.2.-] +K11260 fwdG; 4Fe-4S ferredoxin +K11261 fwdE, fmdE; formylmethanofuran dehydrogenase subunit E [EC:1.2.7.12] +K11262 ACACA; acetyl-CoA carboxylase / biotin carboxylase 1 [EC:6.4.1.2 6.3.4.14 2.1.3.15] +K11263 bccA, pccA, accA3; acetyl-CoA/propionyl-CoA/long-chain acyl-CoA carboxylase, biotin carboxylase, biotin carboxyl carrier protein [EC:6.4.1.2 6.4.1.3 6.4.1.- 6.3.4.14] +K11264 scpB, mmcD; methylmalonyl-CoA decarboxylase [EC:4.1.1.-] +K11265 ADCY10; adenylate cyclase 10 [EC:4.6.1.1] +K11266 MAU2; MAternally affected uncoordination +K11267 PDS5; sister chromatid cohesion protein PDS5 +K11268 ESCO, ECO1; N-acetyltransferase [EC:2.3.1.-] +K11269 CTF18, CHL12; chromosome transmission fidelity protein 18 +K11270 CTF8; chromosome transmission fidelity protein 8 +K11271 DSCC1, DCC1; sister chromatid cohesion protein DCC1 +K11272 MRC1; mediator of replication checkpoint protein 1 +K11273 DDX11, CHL1, CTF1; chromosome transmission fidelity protein 1 [EC:5.6.2.7] +K11274 WDHD1, CTF4; chromosome transmission fidelity protein 4 +K11275 H1_5; histone H1/5 +K11276 NPM1; nucleophosmin 1 +K11277 NPM2; nucleophosmin 2 +K11278 NPM3; nucleophosmin 3 +K11279 NAP1L1, NRP; nucleosome assembly protein 1-like 1 +K11280 NAP1L2, BPX; nucleosome assembly protein 1-like 2 +K11281 NAP1L3, BNAP; nucleosome assembly protein 1-like 3 +K11282 NAP1L4, NAP2; nucleosome assembly protein 1-like 4 +K11283 NAP1L5; nucleosome assembly protein 1-like 5 +K11284 TSPYL1; TSPY-like 1 +K11285 TSPYL2, CINAP, DENTT; TSPY-like 2 +K11286 TSPYL3; TSPY-like 3 +K11287 TSPYL4; TSPY-like 4 +K11288 TSPYL5; TSPY-like 5 +K11289 TSPYL6; TSPY-like 6 +K11290 SET, TAF1, I2PP2A; template-activating factor I +K11291 NASP; nuclear autoantigenic sperm protein +K11292 SUPT6H, SPT6; transcription elongation factor SPT6 +K11293 HIRA, HIR1; protein HIRA/HIR1 +K11294 NCL, NSR1; nucleolin +K11295 HMGB2; high mobility group protein B2 +K11296 HMGB3; high mobility group protein B3 +K11297 HMGB4; high mobility group protein B4 +K11298 HMGXB4, HMG2L1; HMG domain-containing protein 4 +K11299 HMGN1; high-mobility group nucleosome-binding domain-containing protein 1 +K11300 HMGN2; high-mobility group nucleosome-binding domain-containing protein 2 +K11301 HMGN3, TRIP7; high-mobility group nucleosome-binding domain-containing protein 3 +K11302 HMGN4; high-mobility group nucleosome-binding domain-containing protein 4 +K11303 HAT1, KAT1; histone acetyltransferase 1 [EC:2.3.1.48] +K11304 TIP60, KAT5, ESA1; histone acetyltransferase HTATIP [EC:2.3.1.48] +K11305 MYST3, KAT6A; histone acetyltransferase MYST3 [EC:2.3.1.48] +K11306 MYST4, KAT6B; histone acetyltransferase MYST4 [EC:2.3.1.48] +K11307 MYST2, HBO1, KAT7; histone acetyltransferase MYST2 [EC:2.3.1.48] +K11308 MYST1, MOF, KAT8; histone acetyltransferase MYST1 [EC:2.3.1.48] +K11309 RTT109, KAT11; regulator of Ty1 transposition protein 109 +K11310 GTF3C4, KAT12; general transcription factor 3C polypeptide 4 [EC:2.3.1.48] +K11311 antC; anthranilate 1,2-dioxygenase reductase component [EC:1.18.1.-] +K11312 K11312; cupin 2 domain-containing protein +K11313 SUPT3H, SPT3; transcription initiation protein SPT3 +K11314 TADA2A, ADA2; transcriptional adapter 2-alpha +K11315 TADA3, ADA3, NGG1; transcriptional adapter 3 +K11316 SUPT7L; STAGA complex 65 subunit gamma +K11317 TADA1, STAF42; transcriptional adapter 1 +K11318 ATXN7, SCA7; ataxin-7 +K11319 ING3; inhibitor of growth protein 3 +K11320 EP400; E1A-binding protein p400 [EC:5.6.2.-] +K11321 BRD8; bromodomain-containing protein 8 +K11322 EPC; enhancer of polycomb-like protein +K11323 JMJD6; histone arginine demethylase JMJD6 [EC:1.14.11.-] +K11324 DMAP1, SWC4, EAF2; DNA methyltransferase 1-associated protein 1 +K11325 K11325; L-cysteine/cystine lyase +K11326 nrsA, czcA; cation efflux system protein involved in nickel and cobalt tolerance +K11327 nrsB; membrane fusion protein, cation efflux system +K11328 nrsS, rppB; two-component system, OmpR family, Ni(II)-sensor and/or redox sensor kinase NrsS [EC:2.7.13.3] +K11329 rpaB; two-component system, OmpR family, response regulator RpaB +K11330 nrsR, rppA; two-component system, OmpR family, Ni(II)-responsive and/or redox-responsive regulator NrsR +K11331 nrsC; cation efflux system protein involved in nickel and cobalt tolerance [EC:3.2.1.17] +K11332 nblR; two-component system, OmpR family, response regulator NblR +K11333 bchX; 3,8-divinyl chlorophyllide a/chlorophyllide a reductase subunit X [EC:1.3.7.14 1.3.7.15] +K11334 bchY; 3,8-divinyl chlorophyllide a/chlorophyllide a reductase subunit Y [EC:1.3.7.14 1.3.7.15] +K11335 bchZ; 3,8-divinyl chlorophyllide a/chlorophyllide a reductase subunit Z [EC:1.3.7.14 1.3.7.15] +K11336 bchF; 3-vinyl bacteriochlorophyllide hydratase [EC:4.2.1.165] +K11337 bchC; bacteriochlorophyllide a dehydrogenase [EC:1.1.1.396] +K11338 RUVBL2, RVB2, INO80J; RuvB-like protein 2 [EC:5.6.2.3] +K11339 MORF4L1, MRG15, EAF3; mortality factor 4-like protein 1 +K11340 ACTL6A, INO80K; actin-like protein 6A +K11341 YEATS4, GAS41, YAF9; YEATS domain-containing protein 4 +K11342 MORF4L2, MRGX; mortality factor 4-like protein 2 +K11343 MRGBP; MRG-binding protein +K11344 MEAF6, EAF6; chromatin modification-related protein EAF6 +K11345 ING5; inhibitor of growth protein 5 +K11346 ING4; inhibitor of growth protein 4 +K11347 JADE1, PHF17; protein Jade-1 +K11348 BRPF1; bromodomain and PHD finger-containing protein 1 +K11349 BRD1, BRPF2; bromodomain-containing protein 1 +K11350 BRPF3; bromodomain and PHD finger-containing protein 3 +K11351 NDUFB11; NADH dehydrogenase (ubiquinone) 1 beta subcomplex subunit 11 +K11352 NDUFA12; NADH dehydrogenase (ubiquinone) 1 alpha subcomplex subunit 12 +K11353 NDUFA13; NADH dehydrogenase (ubiquinone) 1 alpha subcomplex subunit 13 +K11354 cph1; two-component system, chemotaxis family, sensor kinase Cph1 [EC:2.7.13.3] +K11355 rcp1; two-component system, chemotaxis family, response regulator Rcp1 +K11356 cikA; two-component system, sensor histidine kinase and response regulator [EC:2.7.13.3] +K11357 divJ; two-component system, cell cycle sensor histidine kinase DivJ [EC:2.7.13.3] +K11358 yhdR; aspartate aminotransferase [EC:2.6.1.1] +K11359 SPT7; transcriptional activator SPT7 +K11360 SPT8; transcriptional activator SPT8 +K11361 SPT20, ADA5; transcription factor SPT20 +K11362 HFI1, ADA1; transcriptional coactivator HFI1/ADA1 +K11363 SGF11; SAGA-associated factor 11 +K11364 SGF29; SAGA-associated factor 29 +K11365 SGF73; SAGA-associated factor 73 +K11366 USP22_27_51, UBP8; ubiquitin carboxyl-terminal hydrolase 22/27/51 [EC:3.4.19.12] +K11367 CHD1; chromodomain-helicase-DNA-binding protein 1 [EC:5.6.2.-] +K11368 ENY2, DC6, SUS1; enhancer of yellow 2 transcription factor +K11369 RTG2; retrograde regulation protein 2 +K11370 AHC1; ADA HAT complex component 1 +K11371 AHC2; ADA HAT complex component 2 +K11372 HIF1; HAT1-interacting factor 1 +K11373 ELP1, IKI3, IKBKAP; elongator complex protein 1 +K11374 ELP2; elongator complex protein 2 +K11375 ELP4; elongator complex protein 4 +K11376 ELP5, IKI1; elongator complex protein 5 +K11377 ELP6; elongator complex protein 6 +K11378 SAS3; histone acetyltransferase SAS3 [EC:2.3.1.48] +K11379 YNG1; protein YNG1 +K11380 NTO1; NuA3 HAT complex component NTO1 +K11381 bkdA; 2-oxoisovalerate dehydrogenase E1 component [EC:1.2.4.4] +K11382 pgtP; MFS transporter, OPA family, phosphoglycerate transporter protein +K11383 kinB; two-component system, NtrC family, sensor histidine kinase KinB [EC:2.7.13.3] +K11384 algB; two-component system, NtrC family, response regulator AlgB +K11385 embA; arabinosyltransferase A [EC:2.4.2.-] +K11386 embB; arabinosyltransferase B [EC:2.4.2.-] +K11387 embC; arabinosyltransferase C [EC:2.4.2.-] +K11389 gapor; glyceraldehyde-3-phosphate dehydrogenase (ferredoxin) [EC:1.2.7.6] +K11390 CLYBL; citrate lyase subunit beta-like protein [EC:4.1.-.-] +K11391 rlmG; 23S rRNA (guanine1835-N2)-methyltransferase [EC:2.1.1.174] +K11392 rsmF; 16S rRNA (cytosine1407-C5)-methyltransferase [EC:2.1.1.178] +K11393 METTL16, METT10D; U6 snRNA m6A methyltransferase [EC:2.1.1.346] +K11394 PRODH2; hydroxyproline dehydrogenase [EC:1.5.5.3] +K11395 kdpgA; 2-dehydro-3-deoxy-phosphogluconate/2-dehydro-3-deoxy-6-phosphogalactonate aldolase [EC:4.1.2.55] +K11396 YNG2, EAF4; chromatin modification-related protein YNG2 +K11397 EAF1, VID21; chromatin modification-related protein VID21 +K11398 EAF5; chromatin modification-related protein EAF5 +K11399 EAF7; chromatin modification-related protein EAF7 +K11400 ARP4; actin-related protein 4 +K11401 SAS2; histone acetyltransferase SAS2 [EC:2.3.1.48] +K11402 SAS4; something about silencing protein 4 +K11403 SAS5; something about silencing protein 5 +K11404 HDAC3; histone deacetylase 3 [EC:3.5.1.98] +K11405 HDAC8; histone deacetylase 8 [EC:3.5.1.98] +K11406 HDAC4_5; histone deacetylase 4/5 [EC:3.5.1.98] +K11407 HDAC6; histone deacetylase 6 [EC:3.5.1.98] +K11408 HDAC7; histone deacetylase 7 [EC:3.5.1.98] +K11409 HDAC9; histone deacetylase 9 [EC:3.5.1.98] +K11410 acdH; short-chain 2-methylacyl-CoA dehydrogenase [EC:1.3.8.5] +K11411 SIRT1, SIR2L1; NAD-dependent protein deacetylase sirtuin 1 [EC:2.3.1.286] +K11412 SIRT2, SIR2L2; NAD-dependent protein deacetylase sirtuin 2 [EC:2.3.1.286] +K11413 SIRT3, SIR2L3; NAD-dependent protein deacetylase sirtuin 3 [EC:2.3.1.286] +K11414 SIRT4, SIR2L4; NAD-dependent protein deacetylase/lipoamidase sirtuin 4 [EC:2.3.1.286 2.3.1.313] +K11415 SIRT5, SIR2L5; NAD-dependent protein deacetylase sirtuin 5 [EC:2.3.1.286] +K11416 SIRT6, SIR2L6; NAD-dependent protein deacetylase sirtuin 6 [EC:2.3.1.286] +K11417 SIRT7, SIR2L7; NAD-dependent protein deacetylase sirtuin 7 [EC:2.3.1.286] +K11418 HDAC11; histone deacetylase 11 [EC:3.5.1.98] +K11419 SUV39H, CLR4; [histone H3]-lysine9 N-trimethyltransferase SUV39H [EC:2.1.1.355] +K11420 EHMT; [histone H3]-lysine9 N-trimethyltransferase EHMT [EC:2.1.1.355] +K11421 SETDB1; [histone H3]-N6,N6-dimethyl-lysine9 N-methyltransferase [EC:2.1.1.366] +K11422 SETD1, SET1; [histone H3]-lysine4 N-trimethyltransferase SETD1 [EC:2.1.1.354] +K11423 SETD2; [histone H3]-lysine36 N-trimethyltransferase [EC:2.1.1.359] +K11424 WHSC1, MMSET, NSD2; [histone H3]-lysine36 N-dimethyltransferase NSD2 [EC:2.1.1.357] +K11425 WHSC1L1, NSD3; [histone H3]-lysine4 N-dimethyltransferase / [histone H3]-lysine27 N-dimethyltransferase [EC:2.1.1.370 2.1.1.371] +K11426 SMYD; [histone H3]-lysine4/36 N-trimethyltransferase SMYD [EC:2.1.1.354 2.1.1.357] +K11427 DOT1L, DOT1; [histone H3]-lysine79 N-trimethyltransferase [EC:2.1.1.360] +K11428 SETD8; [histone H4]-lysine20 N-methyltransferase SETD8 [EC:2.1.1.361] +K11429 SUV420H; [histone H4]-N-methyl-L-lysine20 N-methyltransferase [EC:2.1.1.362] +K11430 EZH2; [histone H3]-lysine27 N-trimethyltransferase EZH2 [EC:2.1.1.356] +K11431 SETD7; [histone H3]-lysine4 N-methyltransferase [EC:2.1.1.364] +K11432 PRDM2, RIZ; [histone H3]-lysine9 N-trimethyltransferase PRDM2 [EC:2.1.1.355] +K11433 SETMAR; [histone H3]-lysine36 N-dimethyltransferase SETMAR [EC:2.1.1.357] +K11434 PRMT1; type I protein arginine methyltransferase [EC:2.1.1.319] +K11435 PRMT2; type I protein arginine methyltransferase [EC:2.1.1.319] +K11436 PRMT3; type I protein arginine methyltransferase [EC:2.1.1.319] +K11437 PRMT6; type I protein arginine methyltransferase [EC:2.1.1.319] +K11438 PRMT7; type III protein arginine methyltransferase [EC:2.1.1.321] +K11439 PRMT8; type I protein arginine methyltransferase [EC:2.1.1.319] +K11440 gbsB; choline dehydrogenase [EC:1.1.1.1] +K11441 kguK; dehydrogluconokinase [EC:2.7.1.13] +K11442 K11442; putative uridylyltransferase [EC:2.7.7.-] +K11443 divK; two-component system, cell cycle response regulator DivK +K11444 wspR; two-component system, chemotaxis family, response regulator WspR [EC:2.7.7.65] +K11445 KDM7A, JHDM1D; [histone H3]-dimethyl-L-lysine9 demethylase [EC:1.14.11.65 1.14.11.-] +K11446 KDM5, JARID1; [histone H3]-trimethyl-L-lysine4 demethylase [EC:1.14.11.67] +K11447 UTX, KDM6A; lysine-specific demethylase 6A [EC:1.14.11.68] +K11448 KDM6B, JMJD3; lysine-specific demethylase 6B [EC:1.14.11.68] +K11449 JMJD1C; jumonji domain-containing protein 1C [EC:1.14.11.-] +K11450 KDM1A, AOF2, LSD1; [histone H3]-N6,N6-dimethyl-L-lysine4 FAD-dependent demethylase [EC:1.14.99.66] +K11451 CBX2; chromobox protein 2 +K11452 CBX4, PC2; E3 SUMO-protein ligase CBX4 [EC:2.3.2.-] +K11453 CBX6; chromobox protein 6 +K11454 CBX7; chromobox protein 7 +K11455 CBX8, PC3; chromobox protein 8 +K11456 PHC1, EDR1; polyhomeotic-like protein 1 +K11457 PHC2, EDR2; polyhomeotic-like protein 2 +K11458 PHC3, EDR3; polyhomeotic-like protein 3 +K11459 PCGF4, BMI1; polycomb group RING finger protein 4 +K11460 PCGF2, RNF110; polycomb group RING finger protein 2 +K11461 SCMH1; polycomb protein SCMH1 +K11462 EED; polycomb protein EED +K11463 SUZ12; polycomb protein SUZ12 +K11464 SCML1; sex comb on midleg-like protein 1 +K11465 SCML2; sex comb on midleg-like protein 2 +K11466 SCML4; sex comb on midleg-like protein 4 +K11467 PHF1, PCL1; PHD finger protein 1 +K11468 YAF2; YY1-associated factor 2 +K11469 RYBP; RING1 and YY1-binding protein +K11470 PCGF6, MBLR; polycomb group RING finger protein 6 +K11471 ASXL; additional sex combs-like protein +K11472 glcE; glycolate dehydrogenase FAD-binding subunit [EC:1.1.99.14] +K11473 glcF; glycolate dehydrogenase iron-sulfur subunit [EC:1.1.99.14] +K11474 glcC; GntR family transcriptional regulator, glc operon transcriptional activator +K11475 vanR; GntR family transcriptional regulator, vanillate catabolism transcriptional regulator +K11476 gntR; GntR family transcriptional regulator, gluconate operon transcriptional repressor +K11477 glcG; glc operon protein GlcG +K11478 JARID2, JMJ; protein Jumonji +K11479 AURKB; aurora kinase B [EC:2.7.11.1] +K11480 AURKC; aurora kinase C [EC:2.7.11.1] +K11481 AURKA; aurora kinase A [EC:2.7.11.1] +K11482 HOS1; histone deacetylase HOS1 [EC:3.5.1.98] +K11483 HOS2; histone deacetylase HOS2 [EC:3.5.1.98] +K11484 HOS3; histone deacetylase HOS3 [EC:3.5.1.98] +K11485 MTF2, PCL2; metal regulatory transcription factor 2 +K11486 PHF19, PCL3; PHD finger protein 19 +K11487 PCGF1, NSPC1; polycomb group RING finger protein 1 +K11488 PCGF3; polycomb group RING finger protein 3 +K11489 PCGF5; polycomb group RING finger protein 5 +K11490 NCAPH2; condensin-2 complex subunit H2 +K11491 NCAPD3; condensin-2 complex subunit D3 +K11492 NCAPG2, LUZP5; condensin-2 complex subunit G2 +K11493 RCC1; regulator of chromosome condensation +K11494 RCBTB; RCC1 and BTB domain-containing protein +K11495 CENPA; histone H3-like centromeric protein A +K11496 CENPB; centromere protein B +K11497 CENPC; centromere protein C +K11498 CENPE, KIF10; centromeric protein E +K11499 CENPF; centromere protein F +K11500 CENPH; centromere protein H +K11501 CENPI; centromere protein I +K11502 CENPJ; centromere protein J +K11503 CENPK; centromere protein K +K11504 CENPL; centromere protein L +K11505 CENPM; centromere protein M +K11506 CENPN; centromere protein N +K11507 CENPO; centromere protein O +K11508 CENPP; centromere protein P +K11509 CENPQ; centromere protein Q +K11510 ITGB3BP, CENPR; centromere protein R +K11511 APITD1, CENPS, MHF1; centromere protein S +K11512 CENPT; centromere protein T +K11513 MLF1IP, CENPU; centromere protein U +K11514 CDCA8; Borealin +K11515 INCENP; inner centromere protein +K11516 ZFP42, REX1; zinc finger protein 42 +K11517 HAO; (S)-2-hydroxy-acid oxidase [EC:1.1.3.15] +K11518 TOM40; mitochondrial import receptor subunit TOM40 +K11519 DERL1; Derlin-1 +K11520 manS; two-component system, OmpR family, manganese sensing sensor histidine kinase [EC:2.7.13.3] +K11521 manR; two-component system, OmpR family, manganese sensing response regulator +K11522 pixG; two-component system, chemotaxis family, response regulator PixG +K11523 pixH; two-component system, chemotaxis family, response regulator PixH +K11524 pixI; positive phototaxis protein PixI +K11525 pixJ; methyl-accepting chemotaxis protein PixJ +K11526 pixL; two-component system, chemotaxis family, sensor histidine kinase and response regulator PixL +K11527 K11527; two-component system, sensor histidine kinase and response regulator [EC:2.7.13.3] +K11528 glmU; UDP-N-acetylglucosamine pyrophosphorylase [EC:2.7.7.23] +K11529 gck, gckA, GLYCTK; glycerate 2-kinase [EC:2.7.1.165] +K11530 lsrG; (4S)-4-hydroxy-5-phosphonooxypentane-2,3-dione isomerase [EC:5.3.1.32] +K11531 lsrR; lsr operon transcriptional repressor +K11532 glpX-SEBP; fructose-1,6-bisphosphatase II / sedoheptulose-1,7-bisphosphatase [EC:3.1.3.11 3.1.3.37] +K11533 fas; fatty acid synthase, bacteria type [EC:2.3.1.-] +K11534 deoR; DeoR family transcriptional regulator, deoxyribose operon repressor +K11535 nupC; nucleoside transport protein +K11536 SLC28A; pyrimidine nucleoside transport protein +K11537 xapB; MFS transporter, NHS family, xanthosine permease +K11538 ACAD8; isobutyryl-CoA dehydrogenase [EC:1.3.99.-] +K11539 CBR4; carbonyl reductase 4 / 3-oxoacyl-[acyl-carrier protein] reductase beta subunit [EC:1.1.1.-] +K11540 CAD; carbamoyl-phosphate synthase / aspartate carbamoyltransferase / dihydroorotase [EC:6.3.5.5 2.1.3.2 3.5.2.3] +K11541 URA2; carbamoyl-phosphate synthase / aspartate carbamoyltransferase [EC:6.3.5.5 2.1.3.2] +K11542 CASC5, KNL1; protein CASC5 +K11543 MIS12; kinetochore-associated protein MIS12 +K11544 DSN1; kinetochore-associated protein DSN1 +K11545 NSL1, MIS14, DC8; kinetochore-associated protein NSL1 +K11546 PMF1; polyamine-modulated factor 1 +K11547 NDC80, HEC1, TID3; kinetochore protein NDC80 +K11548 NUF2, CDCA1; kinetochore protein Nuf2 +K11549 SPBC24, SPC24; kinetochore protein Spc24, animal type +K11550 SPBC25, SPC25; kinetochore protein Spc25, animal type +K11551 MIS15, CHL4; central kinetochore subunit Mis15/CHL4 +K11552 MAL2, MCM21; central kinetochore subunit Mal2/MCM21 +K11553 DAD1; DASH complex subunit DAD1 +K11554 CTF19; central kinetochore subunit CTF19 +K11555 OKP1; central kinetochore subunit OKP1 +K11556 AME1; central kinetochore subunit AME1 +K11557 SPC24; kinetochore protein Spc24, fungi type +K11558 SPC25; kinetochore protein Spc25, fungi type +K11559 mis12, MTW1; kinetochore protein Mis12/MTW1 +K11560 mis13, DSN1; kinetochore protein Mis13/DSN1 +K11561 mis14, NSL1; kinetochor protein Mis14/NSL1 +K11562 NNF1; kinetochore protein NNF1 +K11563 SPC7, SPC105; kinetochore protein Spc7/SPC105 +K11564 MIS18, FASP1; kinetochore protein Mis18 +K11565 OIP5; opa-interacting protein 5 +K11566 ASK1; DASH complex subunit ASK1 +K11567 DAD2, HSK1; DASH complex subunit DAD2 +K11568 DAD3; DASH complex subunit DAD3 +K11569 DAD4, HSK2; DASH complex subunit DAD4 +K11570 DUO1; DASH complex subunit DUO1 +K11571 HSK3; DASH complex subunit HSK3 +K11572 SPC19; DASH complex subunit SPC19 +K11573 SPC34; DASH complex subunit SPC34 +K11574 CBF2, CBF3A, CTF14; centromere DNA-binding protein complex CBF3 subunit A +K11575 CEP3, CBF3B; centromere DNA-binding protein complex CBF3 subunit B +K11576 CTF13, CBF3C; centromere DNA-binding protein complex CBF3 subunit C +K11577 KNTC1, ROD; kinetochore-associated protein 1 +K11578 ZW10, DSL1; protein transport protein DSL1/ZW10 +K11579 ZWILCH; protein zwilch +K11580 SGOL1; shugoshin-like 1 +K11581 SGOL2; shugoshin-like 2 +K11582 SGO1; shugoshin +K11583 PPP2R3; serine/threonine-protein phosphatase 2A regulatory subunit B'' +K11584 PPP2R5; serine/threonine-protein phosphatase 2A regulatory subunit B' +K11585 CBX1, HP1B, SWI6; chromobox protein 1 +K11586 CBX3, HP1G; chromobox protein 3 +K11587 CBX5, HP1A; chromobox protein 5 +K11588 MECP2; methyl CpG binding protein 2 +K11589 MBD1; methyl-CpG-binding domain protein 1 +K11590 MBD2; methyl-CpG-binding domain protein 2 +K11591 MBD3; methyl-CpG-binding domain protein 3 +K11592 DICER1, DCR1; endoribonuclease Dicer [EC:3.1.26.-] +K11593 ELF2C, AGO; eukaryotic translation initiation factor 2C +K11594 DDX3X, bel; ATP-dependent RNA helicase DDX3X [EC:5.6.2.7] +K11595 CHP1; chromo domain-containing protein 1 +K11597 TAS3; RNA-induced transcriptional silencing complex protein Tas3 +K11598 PSMB11; 20S proteasome subunit beta 11 [EC:3.4.25.1] +K11599 POMP, UMP1; proteasome maturation protein +K11600 RRP41, EXOSC4, SKI6; exosome complex component RRP41 +K11601 mntC; manganese transport system substrate-binding protein +K11602 mntB; manganese transport system permease protein +K11603 mntA; manganese transport system ATP-binding protein [EC:7.2.2.5] +K11604 sitA; manganese/iron transport system substrate-binding protein +K11605 sitC; manganese/iron transport system permease protein +K11606 sitD; manganese/iron transport system permease protein +K11607 sitB; manganese/iron transport system ATP-binding protein +K11608 mtfabH; mycobacterial beta-ketoacyl-[acyl-carrier protein] synthase III [EC:2.3.1.301] +K11609 kasA; meromycolic acid 3-oxoacyl-[acyl-carrier protein] synthase I [EC:2.3.1.293] +K11610 mabA; meromycolic acid 3-oxoacyl-[acyl-carrier protein] reductase [EC:1.1.1.-] +K11611 inhA; meromycolic acid enoyl-[acyl-carrier protein] reductase [EC:1.3.1.118] +K11614 yufL, malK; two-component system, CitB family, sensor histidine kinase MalK [EC:2.7.13.3] +K11615 malR; two-component system, CitB family, response regulator MalR +K11616 maeN; malate:Na+ symporter +K11617 liaS; two-component system, NarL family, sensor histidine kinase LiaS [EC:2.7.13.3] +K11618 liaR; two-component system, NarL family, response regulator LiaR +K11619 liaI; lia operon protein LiaI +K11620 liaH; lia operon protein LiaH +K11621 liaG; lia operon protein LiaG +K11622 liaF; lia operon protein LiaF +K11623 ydfH; two-component system, NarL family, sensor histidine kinase YdfH [EC:2.7.13.3] +K11624 ydfI; two-component system, NarL family, response regulator YdfI +K11625 ydfJ; membrane protein YdfJ +K11626 glnT; putative sodium/glutamine symporter +K11627 pylS; pyrrolysyl-tRNA synthetase [EC:6.1.1.26] +K11628 mas; mycocerosic acid synthase [EC:2.3.1.111] +K11629 bceS; two-component system, OmpR family, bacitracin resistance sensor histidine kinase BceS [EC:2.7.13.3] +K11630 bceR; two-component system, OmpR family, bacitracin resistance response regulator BceR +K11631 bceA, vraD; bacitracin transport system ATP-binding protein +K11632 bceB, vraE; bacitracin transport system permease protein +K11633 yxdK; two-component system, OmpR family, sensor histidine kinase YxdK [EC:2.7.13.3] +K11634 yxdJ; two-component system, OmpR family, response regulator YxdJ +K11635 yxdL; putative ABC transport system ATP-binding protein +K11636 yxdM; putative ABC transport system permease protein +K11637 citS; two-component system, CitB family, sensor histidine kinase CitS [EC:2.7.13.3] +K11638 K11638, citT; two-component system, CitB family, response regulator CitT +K11639 citM; Mg2+/citrate complex secondary transporter +K11640 natK; two-component system, LytTR family, sensor histidine kinase NatK [EC:2.7.13.3] +K11641 natR; two-component system, LytTR family, response regulator NatR +K11642 CHD3, MI2A; chromodomain-helicase-DNA-binding protein 3 [EC:5.6.2.-] +K11643 CHD4, MI2B; chromodomain-helicase-DNA-binding protein 4 [EC:5.6.2.-] +K11644 SIN3A; paired amphipathic helix protein Sin3a +K11645 fbaB; fructose-bisphosphate aldolase, class I [EC:4.1.2.13] +K11646 K11646; 3-dehydroquinate synthase II [EC:1.4.1.24] +K11647 SMARCA2_4; SWI/SNF-related matrix-associated actin-dependent regulator of chromatin subfamily A member 2/4 [EC:5.6.2.-] +K11648 SMARCB1, SNF5, INI1; SWI/SNF-related matrix-associated actin-dependent regulator of chromatin subfamily B member 1 +K11649 SMARCC; SWI/SNF-related matrix-associated actin-dependent regulator of chromatin subfamily C +K11650 SMARCD; SWI/SNF-related matrix-associated actin-dependent regulator of chromatin subfamily D +K11651 SMARCE1; SWI/SNF-related matrix-associated actin-dependent regulator of chromatin subfamily E member 1 +K11652 ACTL6B; actin-like protein 6B +K11653 ARID1; AT-rich interactive domain-containing protein 1 +K11654 SMARCA5, SNF2H, ISWI; SWI/SNF-related matrix-associated actin-dependent regulator of chromatin subfamily A member 5 [EC:5.6.2.-] +K11655 BAZ1A, ACF1; bromodomain adjacent to zinc finger domain protein 1A +K11656 CHRAC1, CHRAC15; chromatin accessibility complex protein 1 +K11657 RSF1; remodeling and spacing factor 1 +K11658 BAZ1B, WSTF; bromodomain adjacent to zinc finger domain protein 1B +K11659 RBBP7; histone-binding protein RBBP7 +K11660 MTA; metastasis-associated protein MTA +K11661 SRCAP, SWR1; helicase SRCAP/SWR1 [EC:5.6.2.-] +K11662 ACTR6, ARP6; actin-related protein 6 +K11663 ZNHIT1, VPS71; zinc finger HIT domain-containing protein 1 +K11664 VPS72, TCFL1, YL1; vacuolar protein sorting-associated protein 72 +K11665 INO80, INOC1; chromatin-remodeling ATPase INO80 [EC:5.6.2.-] +K11666 INO80B, ZNHIT4, PAPA1; INO80 complex subunit B +K11667 INO80C, IES6; INO80 complex subunit C +K11668 INO80D; INO80 complex subunit D +K11669 INO80E; INO80 complex subunit E +K11670 TEPT, INO80F; TCF3 fusion partner +K11671 NFRKB, INO80G; nuclear factor related to kappa-B-binding protein +K11672 ACTR5, ARP5, INO80M; actin-related protein 5 +K11673 ACTR8, ARP8, INO80N; actin-related protein 8 +K11674 MCRS1, INO80Q; microspherule protein 1 +K11675 IES1; Ino eighty subunit 1 +K11676 IES2; Ino eighty subunit 2 +K11677 IES3; Ino eighty subunit 3 +K11678 IES4; Ino eighty subunit 4 +K11679 IES5; Ino eighty subunit 5 +K11680 NHP10; non-histone protein 10 +K11682 SWC3; SWR1-complex protein 3 +K11683 SWC7; SWR1-complex protein 7 +K11684 BDF1; bromodomain-containing factor 1 +K11685 stpA; DNA-binding protein StpA +K11686 racA; chromosome-anchoring protein RacA +K11687 ADPRHL2; poly(ADP-ribose) glycohydrolase ARH3 [EC:3.2.1.143] +K11688 dctP; C4-dicarboxylate-binding protein DctP +K11689 dctQ; C4-dicarboxylate transporter, DctQ subunit +K11690 dctM; C4-dicarboxylate transporter, DctM subunit +K11691 K11691, dctS; two-component system, CitB family, sensor histidine kinase DctS [EC:2.7.13.3] +K11692 K11692, dctR; two-component system, CitB family, response regulator DctR +K11693 femX, fmhB; peptidoglycan pentaglycine glycine transferase (the first glycine) [EC:2.3.2.16] +K11694 femA; peptidoglycan pentaglycine glycine transferase (the second and third glycine) [EC:2.3.2.17] +K11695 femB; peptidoglycan pentaglycine glycine transferase (the fourth and fifth glycine) [EC:2.3.2.18] +K11696 CNL2; centromere-localized protein 2 +K11697 FTA7, CNL3; kinetochore protein Fta7 +K11698 SIM4; centromere protein Sim4 +K11699 RDR, RDRP; RNA-dependent RNA polymerase [EC:2.7.7.48] +K11700 CID12; poly(A) RNA polymerase Cid12 [EC:2.7.7.19] +K11701 HRR1; helicase required for RNAi-mediated heterochromatin assembly 1 [EC:5.6.2.5] +K11702 CXT1; beta-1,2-xylosyltransferase [EC:2.4.2.-] +K11703 GLT25D; collagen beta-1,O-galactosyltransferase [EC:2.4.1.50] +K11704 mtsA; iron/zinc/manganese/copper transport system substrate-binding protein +K11705 mtsC; iron/zinc/manganese/copper transport system permease protein +K11706 mtsB; iron/zinc/manganese/copper transport system ATP-binding protein +K11707 troA, mntA, znuA; manganese/zinc/iron transport system substrate-binding protein +K11708 troC, mntC, znuB; manganese/zinc/iron transport system permease protein +K11709 troD, mntD, znuB; manganese/zinc/iron transport system permease protein +K11710 troB, mntB, znuC; manganese/zinc/iron transport system ATP- binding protein [EC:7.2.2.5] +K11711 dctS; two-component system, LuxR family, sensor histidine kinase DctS [EC:2.7.13.3] +K11712 dctR; two-component system, LuxR family, response regulator DctR +K11713 PGTB1; geranylgeranyl transferase type-1 subunit beta [EC:2.5.1.59] +K11714 RGXT; rhamnogalacturonan II specific xylosyltransferase [EC:2.4.2.-] +K11715 ERN2; serine/threonine-protein kinase/endoribonuclease IRE2 [EC:2.7.11.1 3.1.26.-] +K11716 CDK5R1; cyclin-dependent kinase 5 activator 1 +K11717 sufS; cysteine desulfurase / selenocysteine lyase [EC:2.8.1.7 4.4.1.16] +K11718 HUGT; UDP-glucose:glycoprotein glucosyltransferase [EC:2.4.1.-] +K11719 lptC; lipopolysaccharide export system protein LptC +K11720 lptG; lipopolysaccharide export system permease protein +K11721 BRD3; bromodomain-containing protein 3 +K11722 BRD4; bromodomain-containing protein 4 +K11723 BRD7; bromodomain-containing protein 7 +K11724 BRDT; bromodomain testis-specific protein +K11725 LHPP; phospholysine phosphohistidine inorganic pyrophosphate phosphatase [EC:3.6.1.1 3.1.3.-] +K11726 NURF38; nucleosome-remodeling factor 38 kDa subunit [EC:3.6.1.1] +K11727 SMARCA1, SNF2L; SWI/SNF-related matrix-associated actin-dependent regulator of chromatin subfamily A member 1 [EC:5.6.2.-] +K11728 BPTF, E(bx); nucleosome-remodeling factor subunit BPTF +K11729 ACAD10; acyl-CoA dehydrogenase family member 10 +K11730 ACAD11; acyl-CoA dehydrogenase family member 11 +K11731 atuD; citronellyl-CoA dehydrogenase [EC:1.3.99.-] +K11732 pheP; phenylalanine-specific permease +K11733 lysP; lysine-specific permease +K11734 aroP; aromatic amino acid transport protein AroP +K11735 gabP; GABA permease +K11736 proY; proline-specific permease ProY +K11737 cycA; D-serine/D-alanine/glycine transporter +K11738 ansP; L-asparagine permease +K11739 nfrA; bacteriophage N4 adsorption protein A +K11740 nfrB; bacteriophage N4 adsorption protein B +K11741 sugE; quaternary ammonium compound-resistance protein SugE +K11742 mdtI; spermidine export protein MdtI +K11743 mdtJ; spermidine export protein MdtJ +K11744 tqsA; AI-2 transport protein TqsA +K11745 kefC; glutathione-regulated potassium-efflux system protein KefC +K11746 kefF; glutathione-regulated potassium-efflux system ancillary protein KefF +K11747 kefB; glutathione-regulated potassium-efflux system protein KefB +K11748 kefG; glutathione-regulated potassium-efflux system ancillary protein KefG +K11749 rseP; regulator of sigma E protease [EC:3.4.24.-] +K11750 frsA; esterase FrsA [EC:3.1.-.-] +K11751 ushA; 5'-nucleotidase / UDP-sugar diphosphatase [EC:3.1.3.5 3.6.1.45] +K11752 ribD; diaminohydroxyphosphoribosylaminopyrimidine deaminase / 5-amino-6-(5-phosphoribosylamino)uracil reductase [EC:3.5.4.26 1.1.1.193] +K11753 ribF; riboflavin kinase / FMN adenylyltransferase [EC:2.7.1.26 2.7.7.2] +K11754 folC; dihydrofolate synthase / folylpolyglutamate synthase [EC:6.3.2.12 6.3.2.17] +K11755 hisIE; phosphoribosyl-AMP cyclohydrolase / phosphoribosyl-ATP pyrophosphohydrolase [EC:3.5.4.19 3.6.1.31] +K11756 RSC1_2; chromatin structure-remodeling complex subunit RSC1/2 +K11757 PBRM1, PB1; protein polybromo-1 +K11758 RSC3_30; chromatin structure-remodeling complex subunit RSC3/30 +K11759 RSC4; chromatin structure-remodeling complex subunit RSC4 +K11760 RSC6; chromatin structure-remodeling complex subunit RSC6 +K11761 NPL6, RSC7; chromatin structure-remodeling complex protein RSC7 +K11762 RSC8, SWH3, SSR2; chromatin structure-remodeling complex subunit RSC8 +K11763 RSC9; chromatin structure-remodeling complex subunit RSC9 +K11764 LDB7, RSC14; chromatin structure-remodeling complex protein RSC14 +K11765 ARID2; AT-rich interactive domain-containing protein 2 +K11766 RSC58; chromatin structure-remodeling complex subunit RSC58 +K11767 ARP7, SWP61; actin-related protein 7 +K11768 ARP9, SWP59; actin-related protein 9 +K11769 HTL1; chromatin structure-remodeling complex protein HTL1 +K11770 SFH1; chromatin structure-remodeling complex subunit SFH1 +K11771 SWI1, ADR6; SWI/SNF chromatin-remodeling complex subunit SWI1 +K11772 SWI3; SWI/SNF complex subunit SWI3 +K11773 SNF6; SWI/SNF complex component SNF6 +K11774 SNF11; SWI/SNF complex component SNF11 +K11775 SNF12, SWP73; SWI/SNF complex component SWP73 +K11776 SWP82; SWI/SNF complex component SWP82 +K11777 K11777; HAD superfamily phosphatase +K11778 DHDDS, RER2, SRT1; ditrans,polycis-polyprenyl diphosphate synthase [EC:2.5.1.87] +K11779 fbiC; FO synthase [EC:2.5.1.147 4.3.1.32] +K11780 cofG; 7,8-didemethyl-8-hydroxy-5-deazariboflavin synthase [EC:4.3.1.32] +K11781 cofH; 5-amino-6-(D-ribitylamino)uracil---L-tyrosine 4-hydroxyphenyl transferase [EC:2.5.1.147] +K11782 mqnA; chorismate dehydratase [EC:4.2.1.151] +K11783 mqnB; futalosine hydrolase [EC:3.2.2.26] +K11784 mqnC; cyclic dehypoxanthinyl futalosine synthase [EC:1.21.98.1] +K11785 mqnD; 5,8-dihydroxy-2-naphthoate synthase [EC:4.1.99.29] +K11786 STH1_SNF2; ATP-dependent helicase STH1/SNF2 [EC:5.6.2.-] +K11787 GART; phosphoribosylamine--glycine ligase / phosphoribosylglycinamide formyltransferase / phosphoribosylformylglycinamidine cyclo-ligase [EC:6.3.4.13 2.1.2.2 6.3.3.1] +K11788 ADE5; phosphoribosylamine--glycine ligase / phosphoribosylformylglycinamidine cyclo-ligase [EC:6.3.4.13 6.3.3.1] +K11789 DCAF1, VPRBP; DDB1- and CUL4-associated factor 1 [EC:2.7.11.1] +K11790 DTL, CDT2, DCAF2; denticleless +K11791 DCAF15; DDB1- and CUL4-associated factor 15 +K11792 DDA1; DET1- and DDB1-associated protein 1 +K11793 CRBN; cereblon +K11794 IFRG15; IFRG15 protein +K11795 DCAF6, IQWD1, NRIP, ARCAP; DDB1- and CUL4-associated factor 6 +K11796 TRPC4AP; Trpc4-associated protein +K11797 PHIP, DCAF14; PH-interacting protein +K11798 BRWD1_3; bromodomain and WD repeat domain containing protein 1/3 +K11799 DCAF4; DDB1- and CUL4-associated factor 4 +K11800 DCAF5, BCRP2; DDB1- and CUL4-associated factor 5 +K11801 DCAF11; DDB1- and CUL4-associated factor 11 +K11802 DCAF10; DDB1- and CUL4-associated factor 10 +K11803 DCAF12; DDB1- and CUL4-associated factor 12 +K11804 DCAF8; DDB1- and CUL4-associated factor 8 +K11805 DCAF7, HAN11; DDB1- and CUL4-associated factor 7 +K11806 DCAF13, WDSOF1; DDB1- and CUL4-associated factor 13 +K11807 WDTC1, DCAF9; WD and tetratricopeptide repeats protein 1 +K11808 ADE2; phosphoribosylaminoimidazole carboxylase [EC:4.1.1.21] +K11809 PGM2L1; glucose-1,6-bisphosphate synthase [EC:2.7.1.106] +K11810 SLC16A12; MFS transporter, MCT family, solute carrier family 16 (monocarboxylic acid transporters), member 12 +K11811 arsH; arsenical resistance protein ArsH +K11812 CYP79B1_2; tryptophan N-monooxygenase [EC:1.14.14.156] +K11813 CYP79B3; tryptophan N-monooxygenase [EC:1.14.14.156] +K11814 ebrA; multidrug resistance protein EbrA +K11815 ebrB; multidrug resistance protein EbrB +K11816 YUCCA; indole-3-pyruvate monooxygenase [EC:1.14.13.168] +K11817 AAO1_2; indole-3-acetaldehyde oxidase [EC:1.2.3.7] +K11818 CYP83B1; aromatic aldoxime N-monooxygenase [EC:1.14.14.45] +K11819 SUR1, RTY; S-alkyl-thiohydroximate lyase SUR1 [EC:4.4.1.-] +K11820 UGT74B1; N-hydroxythioamide S-beta-glucosyltransferase [EC:2.4.1.195] +K11821 ST5A, SOT16; aromatic desulfoglucosinolate sulfotransferase [EC:2.8.2.24] +K11822 SULT2A; bile-salt sulfotransferase [EC:2.8.2.14] +K11823 SULT4A1; sulfotransferase 4A1 [EC:2.8.2.-] +K11824 AP2A; AP-2 complex subunit alpha +K11825 AP2B1; AP-2 complex subunit beta-1 +K11826 AP2M1; AP-2 complex subunit mu-1 +K11827 AP2S1; AP-2 complex subunit sigma-1 +K11828 DLG4, PSD95; discs large protein 4 +K11829 RCOR1, COREST; REST corepressor 1 +K11830 TFAM, MTTFA; transcription factor A, mitochondrial +K11831 NRF1; nuclear respiratory factor 1 +K11832 USP1; ubiquitin carboxyl-terminal hydrolase 1 [EC:3.4.19.12] +K11833 USP2; ubiquitin carboxyl-terminal hydrolase 2 [EC:3.4.19.12] +K11834 USP44_49; ubiquitin carboxyl-terminal hydrolase 44/49 [EC:3.4.19.12] +K11835 USP4_11, UBP12; ubiquitin carboxyl-terminal hydrolase 4/11 [EC:3.4.19.12] +K11836 USP5_13, UBP14; ubiquitin carboxyl-terminal hydrolase 5/13 [EC:3.4.19.12] +K11837 USP6_32; ubiquitin carboxyl-terminal hydrolase 6/32 [EC:3.4.19.12] +K11838 USP7, UBP15; ubiquitin carboxyl-terminal hydrolase 7 [EC:3.4.19.12] +K11839 USP8, UBP5; ubiquitin carboxyl-terminal hydrolase 8 [EC:3.4.19.12] +K11840 USP9_24; ubiquitin carboxyl-terminal hydrolase 9/24 [EC:3.4.19.12] +K11841 USP10, UBP3; ubiquitin carboxyl-terminal hydrolase 10 [EC:3.4.19.12] +K11842 USP12_46; ubiquitin carboxyl-terminal hydrolase 12/46 [EC:3.4.19.12] +K11843 USP14, UBP6; ubiquitin carboxyl-terminal hydrolase 14 [EC:3.4.19.12] +K11844 USP16_45; ubiquitin carboxyl-terminal hydrolase 16/45 [EC:3.4.19.12] +K11845 USP17, DUB3; ubiquitin carboxyl-terminal hydrolase 17 [EC:3.4.19.12] +K11846 USP18_41; ubiquitin carboxyl-terminal hydrolase 18/41 [EC:3.4.19.12] +K11847 USP19; ubiquitin carboxyl-terminal hydrolase 19 [EC:3.4.19.12] +K11848 USP20_33; ubiquitin carboxyl-terminal hydrolase 20/33 [EC:3.4.19.12] +K11849 USP25; ubiquitin carboxyl-terminal hydrolase 25 [EC:3.4.19.12] +K11850 USP26_29_37; ubiquitin carboxyl-terminal hydrolase 26/29/37 [EC:3.4.19.12] +K11851 USP30; ubiquitin carboxyl-terminal hydrolase 30 [EC:3.4.19.12] +K11852 USP31; ubiquitin carboxyl-terminal hydrolase 31 [EC:3.4.19.12] +K11853 USP34; ubiquitin carboxyl-terminal hydrolase 34 [EC:3.4.19.12] +K11854 USP35_38; ubiquitin carboxyl-terminal hydrolase 35/38 [EC:3.4.19.12] +K11855 USP36_42; ubiquitin carboxyl-terminal hydrolase 36/42 [EC:3.4.19.12] +K11856 USP43; ubiquitin carboxyl-terminal hydrolase 43 [EC:3.4.19.12] +K11857 USP47; ubiquitin carboxyl-terminal hydrolase 47 [EC:3.4.19.12] +K11858 USP48; ubiquitin carboxyl-terminal hydrolase 48 [EC:3.4.19.12] +K11859 TNFAIP3, A20, OTUD7C; tumor necrosis factor, alpha-induced protein 3 [EC:3.4.19.12] +K11860 OTUD7A_B; OTU domain-containing protein 7 [EC:3.4.19.12] +K11861 VCPIP1, VCIP135; deubiquitinating protein VCIP135 [EC:3.4.19.12] +K11862 ZRANB1, TRABID; ubiquitin thioesterase ZRANB1 [EC:3.4.19.12] +K11863 ATXN3, MJD; Ataxin-3 [EC:3.4.22.-] +K11864 BRCC3, BRCC36; BRCA1/BRCA2-containing complex subunit 3 [EC:3.4.19.-] +K11865 MYSM1; histone H2A deubiquitinase [EC:3.4.19.-] +K11866 STAMBP, AMSH; STAM-binding protein [EC:3.4.19.12] +K11867 STAMBPL1; AMSH-like protease [EC:3.4.19.12] +K11868 CYP71A13; indoleacetaldoxime dehydratase [EC:4.8.1.3] +K11869 USP40; ubiquitin carboxyl-terminal hydrolase 40 [EC:3.4.19.12] +K11870 UBP1; ubiquitin carboxyl-terminal hydrolase 1 [EC:3.4.19.12] +K11871 UBP7_11; ubiquitin carboxyl-terminal hydrolase 7/11 [EC:3.4.19.12] +K11872 UBP9_13; ubiquitin carboxyl-terminal hydrolase 9/13 [EC:3.4.19.12] +K11873 UBP10; ubiquitin carboxyl-terminal hydrolase 10 [EC:3.4.19.12] +K11874 UBP16; ubiquitin carboxyl-terminal hydrolase 16 [EC:3.4.19.12] +K11875 PSMG1, DSCR2, PAC1; proteasome assembly chaperone 1 +K11876 PSMG2, PAC2; proteasome assembly chaperone 2 +K11877 PSMG3, PAC3; proteasome assembly chaperone 3 +K11878 PSMG4, PAC4; proteasome assembly chaperone 4 +K11879 PBA1, POC1; proteasome chaperone 1 +K11880 ADD66, PBA2, POC2; proteasome chaperone 2 +K11881 IRC25, POC3; proteasome chaperone 3 +K11882 POC4; proteasome chaperone 4 +K11883 NOB1; RNA-binding protein NOB1 +K11884 PNO1, DIM2; RNA-binding protein PNO1 +K11885 DDI1; DNA damage-inducible protein 1 +K11886 ECM29; proteasome component ECM29 +K11887 PAAF1, RPN14; proteasomal ATPase-associated factor 1 +K11888 CUT8, STS1; protein Cut8 +K11889 impN; type VI secretion system protein ImpN [EC:2.7.11.1] +K11890 impM; type VI secretion system protein ImpM +K11891 impL, vasK, icmF; type VI secretion system protein ImpL +K11892 impK, ompA, vasF, dotU; type VI secretion system protein ImpK +K11893 impJ, vasE; type VI secretion system protein ImpJ +K11894 impI, vasC; type VI secretion system protein ImpI +K11895 impH, vasB; type VI secretion system protein ImpH +K11896 impG, vasA; type VI secretion system protein ImpG +K11897 impF; type VI secretion system protein ImpF +K11898 impE; type VI secretion system protein ImpE +K11899 impD; type VI secretion system protein ImpD +K11900 impC; type VI secretion system protein ImpC +K11901 impB; type VI secretion system protein ImpB +K11902 impA; type VI secretion system protein ImpA +K11903 hcp; type VI secretion system secreted protein Hcp +K11904 vgrG; type VI secretion system secreted protein VgrG +K11905 K11905; type VI secretion system protein +K11906 vasD, lip; type VI secretion system protein VasD +K11907 vasG, clpV; type VI secretion system protein VasG +K11908 vasH; sigma-54 dependent transcriptional regulator +K11909 vasI; type VI secretion system protein VasI +K11910 vasJ; type VI secretion system protein VasJ +K11911 vasL; type VI secretion system protein VasL +K11912 ppkA; serine/threonine-protein kinase PpkA [EC:2.7.11.1] +K11913 fha1; type VI secretion system protein +K11914 sfa2; sigma-54 dependent transcriptional regulator +K11915 stp1, pppA; serine/threonine protein phosphatase Stp1 [EC:3.1.3.16] +K11916 stk1; serine/threonine-protein kinase Stk1 [EC:2.7.11.-] +K11917 sfa3; sigma-54 dependent transcriptional regulator +K11918 lip3; type VI secretion system protein +K11919 hsiF3; type VI secretion system lysozyme-related protein +K11920 envY; AraC family transcriptional regulator +K11921 cynR; LysR family transcriptional regulator, cyn operon transcriptional activator +K11922 mngR, farR; GntR family transcriptional regulator, mannosyl-D-glycerate transport/metabolism system repressor +K11923 cueR; MerR family transcriptional regulator, copper efflux regulator +K11924 mntR; DtxR family transcriptional regulator, manganese transport regulator +K11925 sgrR; SgrR family transcriptional regulator +K11926 crl; sigma factor-binding protein Crl +K11927 rhlE; ATP-dependent RNA helicase RhlE [EC:5.6.2.7] +K11928 putP; sodium/proline symporter +K11929 phoE; outer membrane pore protein E +K11930 torT; periplasmic protein TorT +K11931 pgaB; poly-beta-1,6-N-acetyl-D-glucosamine N-deacetylase [EC:3.5.1.-] +K11932 uspG; universal stress protein G +K11933 hcr; NADH oxidoreductase Hcr [EC:1.-.-.-] +K11934 ompX; outer membrane protein X +K11935 pgaA; biofilm PGA synthesis protein PgaA +K11936 pgaC, icaA; poly-beta-1,6-N-acetyl-D-glucosamine synthase [EC:2.4.1.-] +K11937 pgaD; biofilm PGA synthesis protein PgaD +K11938 cof; HMP-PP phosphatase [EC:3.6.1.-] +K11939 rhtA; inner membrane transporter RhtA +K11940 hspQ; heat shock protein HspQ +K11941 mdoC; glucans biosynthesis protein C [EC:2.1.-.-] +K11942 icmF; isobutyryl-CoA mutase [EC:5.4.99.13] +K11943 nidA; PAH dioxygenase large subunit [EC:1.13.11.-] +K11944 nidB; PAH dioxygenase small subunit [EC:1.13.11.-] +K11945 phdF; extradiol dioxygenase [EC:1.13.11.-] +K11946 phdG; hydratase-aldolase [EC:4.1.2.-] +K11947 nidD; aldehyde dehydrogenase [EC:1.2.1.-] +K11948 phdI; 1-hydroxy-2-naphthoate dioxygenase [EC:1.13.11.38] +K11949 phdJ; 4-(2-carboxyphenyl)-2-oxobut-3-enoate aldolase [EC:4.1.2.34] +K11950 cmpA; bicarbonate transport system substrate-binding protein +K11951 cmpB; bicarbonate transport system permease protein +K11952 cmpC; bicarbonate transport system ATP-binding protein [EC:7.3.2.-] +K11953 cmpD; bicarbonate transport system ATP-binding protein [EC:7.3.2.-] +K11954 natB; neutral amino acid transport system substrate-binding protein +K11955 natC; neutral amino acid transport system permease protein +K11956 natD; neutral amino acid transport system permease protein +K11957 natA; neutral amino acid transport system ATP-binding protein +K11958 natE; neutral amino acid transport system ATP-binding protein +K11959 urtA; urea transport system substrate-binding protein +K11960 urtB; urea transport system permease protein +K11961 urtC; urea transport system permease protein +K11962 urtD; urea transport system ATP-binding protein +K11963 urtE; urea transport system ATP-binding protein +K11964 PELI; pellino [EC:2.3.2.27] +K11967 ANKIB1; ankyrin repeat and IBR domain-containing protein 1 [EC:2.3.2.31] +K11968 ARIH1; ariadne-1 [EC:2.3.2.31] +K11969 ARIH2; ariadne-2 [EC:2.3.2.31] +K11970 CUL9, PARC; cullin 9 +K11971 RNF14, ARA54; E3 ubiquitin-protein ligase RNF14 [EC:2.3.2.31] +K11972 RNF19A; E3 ubiquitin-protein ligase RNF19A [EC:2.3.2.31] +K11973 RNF19B; E3 ubiquitin-protein ligase RNF19B [EC:2.3.2.31] +K11974 RNF31, HOIP; E3 ubiquitin-protein ligase RNF31 [EC:2.3.2.31] +K11975 RNF144; E3 ubiquitin-protein ligase RNF144 [EC:2.3.2.31] +K11976 RNF216, TRIAD3; E3 ubiquitin-protein ligase RNF216 [EC:2.3.2.31] +K11977 RNF217, IBRDC1; E3 ubiquitin-protein ligase RNF217 [EC:2.3.2.31] +K11978 UBR3; E3 ubiquitin-protein ligase UBR3 [EC:2.3.2.27] +K11979 UBR7; E3 ubiquitin-protein ligase UBR7 [EC:2.3.2.27] +K11980 RNF11; E3 ubiquitin-protein ligase RNF11 +K11981 RNF41, NRDP1; E3 ubiquitin-protein ligase NRDP1 [EC:2.3.2.27] +K11982 RNF115_126; E3 ubiquitin-protein ligase RNF115/126 [EC:2.3.2.27] +K11983 RNF182; E3 ubiquitin-protein ligase RNF182 [EC:2.3.2.27] +K11984 SART1, HAF, SNU66; U4/U6.U5 tri-snRNP-associated protein 1 +K11985 TRAIP, TRIP; TRAF-interacting protein [EC:2.3.2.27] +K11986 USP3; ubiquitin carboxyl-terminal hydrolase 3 [EC:3.4.19.12] +K11987 PTGS2, COX2; prostaglandin-endoperoxide synthase 2 [EC:1.14.99.1] +K11988 SHH; sonic hedgehog +K11989 IHH; indian hedgehog +K11990 DHH; desert hedgehog +K11991 tadA; tRNA(adenine34) deaminase [EC:3.5.4.33] +K11992 ACOT8, PTE; acyl-CoA thioesterase 8 [EC:3.1.2.27] +K11993 ACOT6; acyl-CoA thioesterase 6 [EC:3.1.2.-] +K11994 DNASE1; deoxyribonuclease-1 [EC:3.1.21.1] +K11995 DNASE1L; deoxyribonuclease-1-like protein [EC:3.1.21.-] +K11996 MOCS3, UBA4; adenylyltransferase and sulfurtransferase [EC:2.7.7.80 2.8.1.11] +K11997 TRIM2_3; tripartite motif-containing protein 2/3 +K11998 TRIM4; tripartite motif-containing protein 4 [EC:2.3.2.27] +K11999 TRIM6_22_34; tripartite motif-containing protein 6/22/34 +K12000 TRIM7; tripartite motif-containing protein 7 +K12001 TRIM8; tripartite motif-containing protein 8 [EC:2.3.2.27] +K12002 TRIM10; tripartite motif-containing protein 10 +K12003 TRIM13; tripartite motif-containing protein 13 [EC:2.3.2.27] +K12004 TRIM14; tripartite motif-containing protein 14 +K12005 TRIM15; tripartite motif-containing protein 15 +K12006 TRIM16; tripartite motif-containing protein 16 +K12007 TRIM17; tripartite motif-containing protein 17 [EC:2.3.2.27] +K12008 TRIM26; tripartite motif-containing protein 26 +K12009 TRIM27, RFP; tripartite motif-containing protein 27 [EC:2.3.2.27] +K12010 TRIM29, ATDC; tripartite motif-containing protein 29 +K12011 TRIM31; tripartite motif-containing protein 31 [EC:2.3.2.27] +K12012 TRIM35; tripartite motif-containing protein 35 +K12013 TRIM36; tripartite motif-containing protein 36 [EC:2.3.2.27] +K12014 TRIM38; tripartite motif-containing protein 38 [EC:2.3.2.27] +K12015 TRIM39; tripartite motif-containing protein 39 [EC:2.3.2.27] +K12016 TRIM40; tripartite motif-containing protein 40 +K12017 TRIM41; tripartite motif-containing protein 41 [EC:2.3.2.27] +K12018 TRIM42; tripartite motif-containing protein 42 +K12019 TRIM43S; tripartite motif-containing protein 43/48/49/64/77 +K12020 TRIM44; tripartite motif-containing protein 44 +K12021 TRIM45; tripartite motif-containing protein 45 +K12022 TRIM46; tripartite motif-containing protein 46 +K12023 TRIM47; tripartite motif-containing protein 47 +K12024 TRIM50_73_74; tripartite motif-containing protein 50/73/74 +K12025 TRIM52; tripartite motif-containing protein 52 +K12026 TRIM56; tripartite motif-containing protein 56 [EC:2.3.2.27] +K12027 TRIM58; tripartite motif-containing protein 58 [EC:2.3.2.27] +K12028 TRIM59; tripartite motif-containing protein 59 +K12029 TRIM60_61; tripartite motif-containing protein 60/61 +K12030 TRIM62; tripartite motif-containing protein 62 [EC:2.3.2.27] +K12031 TRIM65; tripartite motif-containing protein 65 +K12032 TRIM66; tripartite motif-containing protein 66 +K12033 TRIM68; tripartite motif-containing protein 68 [EC:2.3.2.27] +K12034 TRIM69; tripartite motif-containing protein 69 [EC:2.3.2.27] +K12035 TRIM71; tripartite motif-containing protein 71 [EC:2.3.2.27] +K12036 TRIM72; tripartite motif-containing protein 72 +K12037 TRIM75; tripartite motif-containing protein 75 +K12038 TRIML1; tripartite motif family-like protein 1 +K12039 TRIML2; tripartite motif family-like protein 2 +K12040 SLC9A3, NHE3; solute carrier family 9 (sodium/hydrogen exchanger), member 3 +K12041 SLC9A6_7, NHE6_7; solute carrier family 9 (sodium/hydrogen exchanger), member 6/7 +K12042 TNNC2; troponin C, skeletal muscle +K12043 TNNI2; troponin I, fast skeletal muscle +K12044 TNNI3; troponin I, cardiac muscle +K12045 TNNT2; troponin T, cardiac muscle +K12046 TNNT3; troponin T, fast skeletal muscle +K12047 MGAM; maltase-glucoamylase [EC:3.2.1.20 3.2.1.3] +K12048 comB10; ComB10 competence protein +K12049 comB9; ComB9 competence protein +K12050 comB8; ComB8 competence protein +K12051 comB7; ComB7 competence protein +K12052 comB6; ComB6 competence protein +K12053 comB4; ComB4 competence protein +K12054 atlA; lytic transglycosylase AtlA +K12055 K12055, parA; chromosome partitioning related protein ParA +K12056 traG; conjugal transfer mating pair stabilization protein TraG +K12057 traF; conjugal transfer pilus assembly protein TraF +K12058 traN; conjugal transfer mating pair stabilization protein TraN +K12059 trbC; conjugal transfer pilus assembly protein TrbC +K12060 traU; conjugal transfer pilus assembly protein TraU +K12061 traW; conjugal transfer pilus assembly protein TraW +K12062 trbI; conjugal transfer pilin signal peptidase TrbI +K12063 traC; conjugal transfer ATP-binding protein TraC +K12064 traV; conjugal transfer pilus assembly protein TraV +K12065 traB; conjugal transfer pilus assembly protein TraB +K12066 traK; conjugal transfer pilus assembly protein TraK +K12067 traE; conjugal transfer pilus assembly protein TraE +K12068 traL; conjugal transfer pilus assembly protein TraL +K12069 traA; conjugal transfer pilus assembly protein TraA +K12070 traI; conjugal transfer pilus assembly protein TraI +K12071 traD; conjugal transfer pilus assembly protein TraD +K12072 traH; conjugative transfer pilus assembly protein TraH +K12073 E3.1.2.28; 1,4-dihydroxy-2-naphthoyl-CoA hydrolase [EC:3.1.2.28] +K12074 TIM; timeless +K12075 DLG2; discs large protein 2 +K12076 DLG1; disks large protein 1 +K12077 PDK1; pyruvate dehydrogenase kinase isoform 1 [EC:2.7.11.2] +K12078 ptlA; type IV secretion system protein PtlA +K12079 ptlB; type IV secretion system protein PtlB +K12080 ptlC; type IV secretion system protein PtlC [EC:7.4.2.8] +K12081 ptlE; type IV secretion system protein PtlE +K12082 ptlG; type IV secretion system protein PtlG +K12083 ptlH; type IV secretion system protein PtlH [EC:7.4.2.8] +K12084 ptlD; type IV secretion system protein PtlD +K12085 ptlF; type IV secretion system protein PtlF +K12086 cag1; cag pathogenicity island protein 1 +K12087 cag2; cag pathogenicity island protein 2 +K12088 cag3; cag pathogenicity island protein 3 +K12089 cag4; cag pathogenicity island protein 4 +K12090 cag5; cag pathogenicity island protein 5 +K12091 cag6; cag pathogenicity island protein 6 +K12092 cag7; cag pathogenicity island protein 7 +K12093 cag8; cag pathogenicity island protein 8 +K12094 cag9; cag pathogenicity island protein 9 +K12095 cag10; cag pathogenicity island protein 10 +K12096 cag11; cag pathogenicity island protein 11 +K12097 cag12; cag pathogenicity island protein 12 +K12098 cag13; cag pathogenicity island protein 13 +K12099 cag14; cag pathogenicity island protein 14 +K12100 cag15; cag pathogenicity island protein 15 +K12101 cag16; cag pathogenicity island protein 16 +K12102 cag17; cag pathogenicity island protein 17 +K12103 cag18; cag pathogenicity island protein 18 +K12104 cag19; cag pathogenicity island protein 19 +K12105 cag20; cag pathogenicity island protein 20 +K12106 cag21; cag pathogenicity island protein 21 +K12107 cag22; cag pathogenicity island protein 22 +K12108 cag23; cag pathogenicity island protein 23 [EC:7.4.2.8] +K12109 cag24; cag pathogenicity island protein 24 +K12110 cag25; cag pathogenicity island protein 25 +K12111 ebgA; evolved beta-galactosidase subunit alpha [EC:3.2.1.23] +K12112 ebgC; evolved beta-galactosidase subunit beta +K12113 ebgR; LacI family transcriptional regulator, ebg operon repressor +K12114 VRI; vrille +K12115 ZTL; clock-associated PAS protein ZTL +K12116 FKF1; flavin-binding kelch repeat F-box protein 1 +K12117 LKP2; LOV kelch protein 2 +K12118 CRY1; cryptochrome 1 +K12119 CRY2; cryptochrome 2 +K12120 PHYA; phytochrome A +K12121 PHYB; phytochrome B +K12122 PHYD; phytochrome D +K12123 PHYE; phytochrome E +K12124 GI; GIGANTEA +K12125 ELF3; protein EARLY FLOWERING 3 +K12126 PIF3; phytochrome-interacting factor 3 +K12127 TOC1, APRR1; pseudo-response regulator 1 +K12128 PRR9; pseudo-response regulator 9 +K12129 PRR7; pseudo-response regulator 7 +K12130 PRR5; pseudo-response regulator 5 +K12131 PRR3; pseudo-response regulator 3 +K12132 prkC, stkP; eukaryotic-like serine/threonine-protein kinase [EC:2.7.11.1] +K12133 LHY; MYB-related transcription factor LHY +K12134 CCA1; circadian clock associated 1 +K12135 CO; zinc finger protein CONSTANS +K12136 hyfA; hydrogenase-4 component A [EC:1.-.-.-] +K12137 hyfB; hydrogenase-4 component B [EC:1.-.-.-] +K12138 hyfC; hydrogenase-4 component C [EC:1.-.-.-] +K12139 hyfD; hydrogenase-4 component D [EC:1.-.-.-] +K12140 hyfE; hydrogenase-4 component E [EC:1.-.-.-] +K12141 hyfF; hydrogenase-4 component F [EC:1.-.-.-] +K12142 hyfG; hydrogenase-4 component G [EC:1.-.-.-] +K12143 hyfH; hydrogenase-4 component H +K12144 hyfI; hydrogenase-4 component I [EC:1.-.-.-] +K12145 hyfJ; hydrogenase-4 component J [EC:1.-.-.-] +K12146 hyfR; hydrogenase-4 transcriptional activator +K12147 msyB; acidic protein MsyB +K12148 bssS; biofilm regulator BssS +K12149 dinI; DNA-damage-inducible protein I +K12150 HINT3; adenosine 5'-monophosphoramidase HINT3 [EC:3.9.1.-] +K12151 bhsA; multiple stress resistance protein BhsA +K12152 nudJ; phosphatase NudJ [EC:3.6.1.-] +K12153 CYP79A2; phenylalanine N-monooxygenase [EC:1.14.14.40] +K12154 CYP79F1; homomethionine N-monooxygenase [EC:1.14.14.42] +K12155 CYP79F2; homomethionine N-monooxygenase [EC:1.14.14.42] +K12156 CYP83A1; (methylthio)alkanaldoxime N-monooxygenase [EC:1.14.14.43] +K12157 UBD, FAT10; ubiquitin D +K12158 NEDD8; ubiquitin-like protein Nedd8 +K12159 ISG15; ubiquitin cross-reactive protein +K12160 SUMO, SMT3; small ubiquitin-related modifier +K12161 URM1; ubiquitin related modifier 1 +K12162 UFM1; ubiquitin-fold modifier 1 +K12163 ZFAND4, ANUBL1; AN1-type zinc finger protein 4 +K12164 UBA5, UBE1DC1; ubiquitin-like modifier-activating enzyme 5 +K12165 UFC1; ufm1-conjugating enzyme 1 +K12166 HACE1; E3 ubiquitin-protein ligase HACE1 [EC:2.3.2.26] +K12167 HECW1; E3 ubiquitin-protein ligase HECW1 [EC:2.3.2.26] +K12168 HECW2; E3 ubiquitin-protein ligase HECW2 [EC:2.3.2.26] +K12169 KPC1, RNF123; Kip1 ubiquitination-promoting complex protein 1 [EC:2.3.2.27] +K12170 RNF125; E3 ubiquitin-protein ligase RNF125 [EC:2.3.2.27] +K12171 SH3RF, POSH; E3 ubiquitin-protein ligase SH3RF [EC:2.3.2.27] +K12172 RANBP2, NUP358; E3 SUMO-protein ligase RanBP2 [EC:2.3.2.-] +K12173 BRE, BRCC45; BRCA1-A complex subunit BRE +K12174 KPC2, UBAC1; Kip1 ubiquitination-promoting complex protein 2 +K12175 GPS1, COPS1, CSN1; COP9 signalosome complex subunit 1 +K12176 COPS2, CSN2, TRIP15; COP9 signalosome complex subunit 2 +K12177 COPS3, CSN3; COP9 signalosome complex subunit 3 +K12178 COPS4, CSN4; COP9 signalosome complex subunit 4 +K12179 COPS6, CSN6; COP9 signalosome complex subunit 6 +K12180 COPS7, CSN7; COP9 signalosome complex subunit 7 +K12181 COPS8, CSN8; COP9 signalosome complex subunit 8 +K12182 HGS, HRS, VPS27; hepatocyte growth factor-regulated tyrosine kinase substrate +K12183 TSG101, STP22, VPS23; ESCRT-I complex subunit TSG101 +K12184 VPS28; ESCRT-I complex subunit VPS28 +K12185 VPS37; ESCRT-I complex subunit VPS37 +K12186 FAM125; ESCRT-I complex subunit MVB12 +K12187 MVB12; ESCRT-I complex subunit MVB12 +K12188 SNF8, EAP30; ESCRT-II complex subunit VPS22 +K12189 VPS25, EAP20; ESCRT-II complex subunit VPS25 +K12190 VPS36, EAP45; ESCRT-II complex subunit VPS36 +K12191 CHMP2A; charged multivesicular body protein 2A +K12192 CHMP2B; charged multivesicular body protein 2B +K12193 VPS24, CHMP3; charged multivesicular body protein 3 +K12194 CHMP4A_B, SNF7, VPS32A_B; charged multivesicular body protein 4A/B +K12195 CHMP6, VPS20; charged multivesicular body protein 6 +K12196 VPS4; vacuolar protein-sorting-associated protein 4 +K12197 CHMP1, VPS46, DID2; charged multivesicular body protein 1 +K12198 CHMP5, VPS60; charged multivesicular body protein 5 +K12199 VTA1, LIP5; vacuolar protein sorting-associated protein VTA1 +K12200 PDCD6IP, ALIX, RIM20; programmed cell death 6-interacting protein +K12201 SLC2A7, GLUT7; MFS transporter, SP family, solute carrier family 2 (facilitated glucose/fructose transporter), member 7 +K12202 dotA; defect in organelle trafficking protein DotA +K12203 dotB, traJ; defect in organelle trafficking protein DotB [EC:7.2.4.8] +K12204 dotC, traI; defect in organelle trafficking protein DotC +K12205 dotD, traH; defect in organelle trafficking protein DotD +K12206 icmB, dotO; intracellular multiplication protein IcmB [EC:7.2.4.8] +K12207 icmC, dotE; intracellular multiplication protein IcmC +K12208 icmD, dotP; intracellular multiplication protein IcmD +K12209 icmE, dotG; intracellular multiplication protein IcmE +K12210 icmF; intracellular multiplication protein IcmF +K12211 icmG, dotF; intracellular multiplication protein IcmG +K12212 icmJ, dotN; intracellular multiplication protein IcmJ +K12213 icmK, traN, dotH; intracellular multiplication protein IcmK +K12214 icmL, traM, dotI; intracellular multiplication protein IcmL +K12215 icmM, dotJ; intracellular multiplication protein IcmM +K12216 icmN, lphA, dotK; intracellular multiplication protein IcmN +K12217 icmO, trbC, dotL; intracellular multiplication protein IcmO [EC:7.2.4.8] +K12218 icmP, trbA; intracellular multiplication protein IcmP +K12219 icmQ; intracellular multiplication protein IcmQ +K12220 icmR; intracellular multiplication protein IcmR +K12221 icmS; intracellular multiplication protein IcmS +K12222 icmT, traK; intracellular multiplication protein IcmT +K12223 icmV; intracellular multiplication protein IcmV +K12224 icmW; intracellular multiplication protein IcmW +K12225 icmX; intracellular multiplication protein IcmX +K12226 tphA; proline/betaine transport protein TphA +K12227 K12227, traL; TraL protein +K12228 trbB; TrbB protein +K12229 DAPP1, BAM32; dual adapter for phosphotyrosine and 3-phosphotyrosine and 3-phosphoinositide +K12230 PIK3AP1, BCAP; phosphoinositide 3-kinase adapter protein 1 +K12231 HECTD1; E3 ubiquitin-protein ligase HECTD1 [EC:2.3.2.26] +K12232 HECTD2; E3 ubiquitin-protein ligase HECTD2 [EC:2.3.2.26] +K12233 HECTD3; E3 ubiquitin-protein ligase HECTD3 [EC:2.3.2.26] +K12234 cofE; coenzyme F420-0:L-glutamate ligase / coenzyme F420-1:gamma-L-glutamate ligase [EC:6.3.2.31 6.3.2.34] +K12235 SRR; serine racemase [EC:5.1.1.18] +K12236 NFX1; transcriptional repressor NF-X1 +K12237 vibF; nonribosomal peptide synthetase VibF +K12238 pchD; salicylate---[aryl-carrier protein] ligase [EC:6.2.1.61] +K12239 pchE; L-cysteine---[L-cysteinyl-carrier protein] ligase PchE [EC:6.2.1.69] +K12240 pchF; L-cysteine---[L-cysteinyl-carrier protein] ligase PchF [EC:6.2.1.69] +K12241 pchG; pyochelin biosynthesis protein PchG +K12242 pchC; pyochelin biosynthesis protein PchC +K12243 pchR; AraC family transcriptional regulator, transcriptional activator of the genes for pyochelin and ferripyochelin receptors +K12244 GNT1; [Skp1-protein]-hydroxyproline N-acetylglucosaminyltransferase [EC:2.4.1.229] +K12245 PGTA; bifunctional glycosyltransferase PgtA [EC:2.4.1.- 2.4.1.69] +K12246 neuS, siaD; poly-alpha-2,8 sialosyl sialyltransferase [EC:2.4.-.-] +K12247 cstII, cstIII; alpha-2,3 sialyltransferase [EC:2.4.3.-] +K12248 bst; beta-galactoside alpha-2,6-sialyltransferase (sialyltransferase 0160) [EC:2.4.3.1] +K12249 TRI5; trichodiene synthase [EC:4.2.3.6] +K12250 ptlA; pentalenene synthase [EC:4.2.3.7] +K12251 aguB; N-carbamoylputrescine amidase [EC:3.5.1.53] +K12252 aruH; arginine:pyruvate transaminase [EC:2.6.1.84] +K12253 aruI; 5-guanidino-2-oxopentanoate decarboxylase [EC:4.1.1.75] +K12254 kauB; 4-guanidinobutyraldehyde dehydrogenase / NAD-dependent aldehyde dehydrogenase [EC:1.2.1.54 1.2.1.-] +K12255 gbuA; guanidinobutyrase [EC:3.5.3.7] +K12256 spuC; putrescine---pyruvate transaminase [EC:2.6.1.113] +K12257 secDF; SecD/SecF fusion protein +K12258 GC; vitamin D-binding protein +K12259 SMOX, PAO5; spermine oxidase [EC:1.5.3.16 1.5.3.-] +K12260 SRX1; sulfiredoxin [EC:1.8.98.2] +K12261 HACL1; 2-hydroxyacyl-CoA lyase [EC:4.1.2.63] +K12262 cybB; superoxide oxidase [EC:1.10.3.17] +K12263 cccB; cytochrome c551 +K12264 norV; anaerobic nitric oxide reductase flavorubredoxin +K12265 norW; nitric oxide reductase FlRd-NAD(+) reductase [EC:1.18.1.-] +K12266 norR; anaerobic nitric oxide reductase transcription regulator +K12267 msrAB; peptide methionine sulfoxide reductase msrA/msrB [EC:1.8.4.11 1.8.4.12] +K12268 asp1; accessory secretory protein Asp1 +K12269 asp2; accessory secretory protein Asp2 +K12270 asp3; accessory secretory protein Asp3 +K12271 SRP43, CAO; signal recognition particle 43 kDa protein +K12272 SRPRB, SRP102; signal recognition particle receptor subunit beta +K12273 SEC66; translocation protein SEC66 +K12274 SEC72; translocation protein SEC72 +K12275 SEC62; translocation protein SEC62 +K12276 mshE; MSHA biogenesis protein MshE +K12277 mshF; MSHA biogenesis protein MshF +K12278 mshG; MSHA biogenesis protein MshG +K12279 mshI; MSHA biogenesis protein MshI +K12280 mshJ; MSHA biogenesis protein MshJ +K12281 mshK; MSHA biogenesis protein MshK +K12282 mshL; MSHA biogenesis protein MshL +K12283 mshM; MSHA biogenesis protein MshM +K12284 mshN; MSHA biogenesis protein MshN +K12285 mshO; MSHA biogenesis protein MshO +K12286 mshP; MSHA biogenesis protein MshP +K12287 mshQ; MSHA biogenesis protein MshQ +K12288 hofM; pilus assembly protein HofM +K12289 hofN; pilus assembly protein HofN +K12290 hofO; pilus assembly protein HofO +K12291 hofP; pilus assembly protein HofP +K12292 comA; ATP-binding cassette, subfamily C, bacterial, competence factor transporting protein [EC:3.4.22.-] +K12293 comB; competence factor transport accessory protein ComB +K12294 comD; two-component system, LytTR family, sensor histidine kinase ComD [EC:2.7.13.3] +K12295 comE; two-component system, LytTR family, response regulator ComE +K12296 comX1_2; competence protein ComX +K12297 rlmKL; 23S rRNA (guanine2069-N7)-methyltransferase / 23S rRNA (guanine2445-N2)-methyltransferase [EC:2.1.1.264 2.1.1.173] +K12298 CEL; bile salt-stimulated lipase [EC:3.1.1.3 3.1.1.13] +K12299 garP; MFS transporter, ACS family, probable galactarate transporter +K12300 SLC17A1S; MFS transporter, ACS family, solute carrier family 17 (sodium-dependent inorganic phosphate cotransporter), member 1/2/3/4 +K12301 SLC17A5; MFS transporter, ACS family, solute carrier family 17 (sodium-dependent inorganic phosphate cotransporter), member 5 +K12302 SLC17A6_7_8; MFS transporter, ACS family, solute carrier family 17 (sodium-dependent inorganic phosphate cotransporter), member 6/7/8 +K12303 SLC17A9; MFS transporter, ACS family, solute carrier family 17 (sodium-dependent inorganic phosphate cotransporter), member 9 +K12304 CANT1; soluble calcium-activated nucleotidase 1 [EC:3.6.1.6] +K12305 ENTPD4, LALP70; ectonucleoside triphosphate diphosphohydrolase 4 [EC:3.6.1.6] +K12306 MSFD7, SLC49A4; MFS transporter, FLVCR family, MFS-domain-containing protein 7 +K12307 MSFD8, CLN7; MFS transporter, ceroid-lipofuscinosis neuronal protein 7 +K12308 bgaB, lacA; beta-galactosidase [EC:3.2.1.23] +K12309 GLB1, ELNR1; beta-galactosidase [EC:3.2.1.23] +K12310 CTBS; Di-N-acetylchitobiase [EC:3.2.1.-] +K12311 MAN2B1, LAMAN; lysosomal alpha-mannosidase [EC:3.2.1.24] +K12312 MAN2B2; epididymis-specific alpha-mannosidase [EC:3.2.1.24] +K12313 ACTA2; actin, aortic smooth muscle +K12314 ACTC1; actin, alpha cardiac muscle +K12315 ACTG2; actin, gamma-enteric smooth muscle +K12316 GAA; lysosomal alpha-glucosidase [EC:3.2.1.20] +K12317 GANC; neutral alpha-glucosidase C [EC:3.2.1.20] +K12318 GUCY1A; guanylate cyclase soluble subunit alpha [EC:4.6.1.2] +K12319 GUCY1B; guanylate cyclase soluble subunit beta [EC:4.6.1.2] +K12320 GUCY2C; heat-stable enterotoxin receptor [EC:4.6.1.2] +K12321 GUCY2D_E; guanylate cyclase 2D/E [EC:4.6.1.2] +K12322 GUCY2F; guanylate cyclase 2F [EC:4.6.1.2] +K12323 ANPRA, NPR1; atrial natriuretic peptide receptor A [EC:4.6.1.2] +K12324 ANPRB, NPR2; atrial natriuretic peptide receptor B [EC:4.6.1.2] +K12325 NPR3; atrial natriuretic peptide clearance receptor +K12326 RASGRF2; Ras-specific guanine nucleotide-releasing factor 2 +K12327 CALD1; caldesmon +K12328 PPP1R14A, CPI17; protein phosphatase 1 regulatory subunit 14A +K12329 PPP1R12B, MYPT2; protein phosphatase 1 regulatory subunit 12B +K12330 ARHGEF1; Rho guanine nucleotide exchange factor 1 +K12331 ARHGEF11; Rho guanine nucleotide exchange factor 11 +K12332 CALC; calcitonin +K12333 ADM; adrenomedullin +K12334 NPPA; natriuretic peptide A +K12335 NPPB; natriuretic peptide B +K12336 NPPC; natriuretic peptide C +K12337 MRVI1, IRAG; inositol 1,4,5-triphosphate receptor-associated cGMP kinase substrate +K12338 UGT75C1; anthocyanidin 3-O-glucoside 5-O-glucosyltransferase [EC:2.4.1.298] +K12339 cysM; S-sulfo-L-cysteine synthase (O-acetyl-L-serine-dependent) [EC:2.5.1.144] +K12340 tolC, bepC, cyaE, raxC, sapF, rsaF, hasF; outer membrane protein +K12341 yadA; adhesin YadA +K12342 yadB_C; adhesin YadB/C +K12343 SRD5A1; 3-oxo-5-alpha-steroid 4-dehydrogenase 1 [EC:1.3.1.22] +K12344 SRD5A2; 3-oxo-5-alpha-steroid 4-dehydrogenase 2 [EC:1.3.1.22] +K12345 SRD5A3; 3-oxo-5-alpha-steroid 4-dehydrogenase 3 / polyprenol reductase [EC:1.3.1.22 1.3.1.94] +K12346 SMF; metal iron transporter +K12347 SLC11A1, NRAMP1; natural resistance-associated macrophage protein 1 +K12348 ASAH1; acid ceramidase [EC:3.5.1.23] +K12349 ASAH2; neutral ceramidase [EC:3.5.1.23] +K12350 SMPD1, ASM; sphingomyelin phosphodiesterase [EC:3.1.4.12] +K12351 SMPD2; sphingomyelin phosphodiesterase 2 [EC:3.1.4.12] +K12352 SMPD3; sphingomyelin phosphodiesterase 3 [EC:3.1.4.12] +K12353 SMPD4; sphingomyelin phosphodiesterase 4 [EC:3.1.4.12] +K12354 ENPP7; ectonucleotide pyrophosphatase/phosphodiesterase family member 7 [EC:3.1.4.12] +K12355 REF1; coniferyl-aldehyde dehydrogenase [EC:1.2.1.68] +K12356 UGT72E; coniferyl-alcohol glucosyltransferase [EC:2.4.1.111] +K12357 NEU2_3_4; sialidase-2/3/4 [EC:3.2.1.18] +K12358 FOXO4; forkhead box protein O4 +K12359 CLN6; ceroid-lipofuscinosis neuronal protein 6 +K12360 CLN8; ceroid-lipofuscinosis neuronal protein 8 +K12361 RASGRP2; RAS guanyl-releasing protein 2 +K12362 RASGRP3; RAS guanyl-releasing protein 3 +K12363 RASGRP4; RAS guanyl-releasing protein 4 +K12364 RASGRP; RAS guanyl-releasing protein, other +K12365 PREX1; phosphatidylinositol-3,4,5-trisphosphate-dependent Rac exchanger 1 protein +K12366 ELMO1, CED12; engulfment and cell motility protein 1 +K12367 DOCK2; dedicator of cytokinesis protein 2 +K12368 dppA; dipeptide transport system substrate-binding protein +K12369 dppB; dipeptide transport system permease protein +K12370 dppC; dipeptide transport system permease protein +K12371 dppD; dipeptide transport system ATP-binding protein +K12372 dppF; dipeptide transport system ATP-binding protein +K12373 HEXA_B; hexosaminidase [EC:3.2.1.52] +K12374 ARSD_F_H; arylsulfatase D/F/H [EC:3.1.6.-] +K12375 ARSI_J; arylsulfatase I/J [EC:3.1.6.-] +K12376 ARSK; arylsulfatase K [EC:3.1.6.-] +K12377 TSL; torso-like protein +K12378 TOR; tyrosine-protein kinase receptor torso [EC:2.7.10.1] +K12379 HKB; huckebein +K12380 RASA3; Ras GTPase-activating protein 3 +K12381 ARSG; arylsulfatase G [EC:3.1.6.-] +K12382 PSAP, SGP1; saposin +K12383 GM2A; ganglioside GM2 activator +K12384 SCARB2, LIMP2, CD36L2; lysosome membrane protein 2 +K12385 NPC1; Niemann-Pick C1 protein +K12386 CTNS; cystinosin +K12387 LAPTM; lysosomal-associated transmembrane protein +K12388 SORT1; sortilin +K12389 BTS, CLN3; battenin +K12390 CLN5; ceroid-lipofuscinosis neuronal protein 5 +K12391 AP1G1; AP-1 complex subunit gamma-1 +K12392 AP1B1; AP-1 complex subunit beta-1 +K12393 AP1M; AP-1 complex subunit mu +K12394 AP1S1_2; AP-1 complex subunit sigma 1/2 +K12395 AP1S3; AP-1 complex subunit sigma-3 +K12396 AP3D; AP-3 complex subunit delta +K12397 AP3B; AP-3 complex subunit beta +K12398 AP3M; AP-3 complex subunit mu +K12399 AP3S; AP-3 complex subunit sigma +K12400 AP4E1; AP-4 complex subunit epsilon-1 +K12401 AP4B1; AP-4 complex subunit beta-1 +K12402 AP4M1; AP-4 complex subunit mu-1 +K12403 AP4S1; AP-4 complex subunit sigma-1 +K12404 GGA; ADP-ribosylation factor-binding protein GGA +K12405 HSD17B4; (3R)-3-hydroxyacyl-CoA dehydrogenase / 3a,7a,12a-trihydroxy-5b-cholest-24-enoyl-CoA hydratase / enoyl-CoA hydratase 2 [EC:1.1.1.- 4.2.1.107 4.2.1.119] +K12406 PKLR; pyruvate kinase isozymes R/L [EC:2.7.1.40] +K12407 GCK; glucokinase [EC:2.7.1.2] +K12408 HSD3B7; cholest-5-ene-3beta,7alpha-diol 3beta-dehydrogenase [EC:1.1.1.181] +K12409 GNE; bifunctional UDP-N-acetylglucosamine 2-epimerase / N-acetylmannosamine kinase [EC:3.2.1.183 2.7.1.60] +K12410 cobB, srtN, npdA; NAD-dependent protein deacetylase/lipoamidase [EC:2.3.1.286 2.3.1.313] +K12411 YOX1, YHP1; homeobox protein YOX1/YHP1 +K12412 MCM1; pheromone receptor transcription factor +K12413 WHI5; G1-specific transcriptional repressor WHI5 +K12414 TAH11; DNA replication licensing factor, required for pre-replication complex assembly +K12415 comC; competence-stimulating peptide +K12416 SWM1, APC13; anaphase-promoting complex subunit SWM1 +K12417 ACOT11; acyl-CoA thioesteraes 11 [EC:3.1.2.-] +K12418 DES4, des1; acyl-lipid (7-3)-desaturase (Delta-4 desaturase) [EC:1.14.19.31] +K12419 FADS6; fatty acid desaturase 6 [EC:1.14.19.-] +K12420 actIII, oxyJ, snoaD, aknA; ketoreductase [EC:1.1.1.-] +K12421 fadD9; fatty acid CoA ligase FadD9 +K12422 fadD10; long chain fatty acid CoA ligase FadD10 [EC:6.2.1.-] +K12423 fadD21; fatty acid CoA ligase FadD21 +K12424 fadD22; 4-hydroxybenzoate adenylyltransferase [EC:6.2.1.50] +K12425 fadD23; long-chain fatty acid adenylase/transferase FadD23 [EC:6.2.1.57] +K12426 fadD26; long-chain fatty acid adenylase/transferase FadD26 [EC:6.2.1.59] +K12427 fadD28; long-chain fatty acid adenylyltransferase FadD28 [EC:6.2.1.49] +K12428 fadD32; fatty acyl-AMP ligase FadD32 [EC:6.2.1.-] +K12429 fadD36; fatty acid CoA ligase FadD36 +K12430 pks1_15; 4-hydroxyphenylalkanoate synthase [EC:2.3.1.261] +K12431 pks2; phthioceranic/hydroxyphthioceranic acid synthase [EC:2.3.1.287] +K12432 pks3_4; mycolipanoate synthase [EC:2.3.1.252] +K12433 pks5; polyketide synthase 5 +K12434 pks7; polyketide synthase 7 +K12435 pks8; polyketide synthase 8 +K12436 pks12; mycoketide-CoA synthase [EC:2.3.1.295] +K12437 pks13; polyketide synthase 13 +K12439 pks17; polyketide synthase 17 +K12440 ppsA; phthiocerol/phenolphthiocerol synthesis type-I polyketide synthase A [EC:2.3.1.292] +K12441 ppsB; phthiocerol/phenolphthiocerol synthesis type-I polyketide synthase B [EC:2.3.1.292] +K12442 ppsC; phthiocerol/phenolphthiocerol synthesis type-I polyketide synthase C [EC:2.3.1.292] +K12443 ppsD; phthiocerol/phenolphthiocerol synthesis type-I polyketide synthase D [EC:2.3.1.292] +K12444 ppsE; phthiocerol/phenolphthiocerol synthesis type-I polyketide synthase E [EC:2.3.1.292] +K12445 K12445; trans enoyl reductase [EC:1.3.1.-] +K12446 E2.7.1.46; L-arabinokinase [EC:2.7.1.46] +K12447 USP; UDP-sugar pyrophosphorylase [EC:2.7.7.64] +K12448 UXE, uxe; UDP-arabinose 4-epimerase [EC:5.1.3.5] +K12449 AXS; UDP-apiose/xylose synthase +K12450 RHM; UDP-glucose 4,6-dehydratase [EC:4.2.1.76] +K12451 UER1; 3,5-epimerase/4-reductase [EC:5.1.3.- 1.1.1.-] +K12452 ascC, ddhC, rfbH; CDP-4-dehydro-6-deoxyglucose reductase, E1 [EC:1.17.1.1] +K12453 rfbS; CDP-paratose synthetase [EC:1.1.1.342] +K12454 rfbE; CDP-paratose 2-epimerase [EC:5.1.3.10] +K12455 rfbJ; CDP-abequose synthase [EC:1.1.1.341] +K12456 APC13, ANAPC13; anaphase-promoting complex subunit 13 +K12457 NTF4; neurotrophin 4 +K12458 ZNF274; zinc finger protein 274 +K12459 SH2B1_3; SH2B adaptor protein 1/3 +K12460 KIDINS220, ARMS; ankyrin repeat-rich membrane spanning protein +K12461 FRS2; fibroblast growth factor receptor substrate 2 +K12462 ARHGDI, RHOGDI; Rho GDP-dissociation inhibitor +K12463 PRDM4; PR domain zinc finger protein 4 [EC:2.1.1.-] +K12464 MAGED1, NRAGE; melanoma-associated antigen D1 +K12465 NGFRAP1; nerve growth factor receptor-associated protein 1 +K12466 E1.1.1.275; (+)-trans-carveol dehydrogenase [EC:1.1.1.275] +K12467 E4.2.3.15; myrcene/ocimene synthase [EC:4.2.3.15] +K12469 EHD2; EH domain-containing protein 2 +K12470 SH3KBP1, CIN85; SH3 domain-containing kinase-binding protein 1 +K12471 EPN; epsin +K12472 EPS15; epidermal growth factor receptor substrate 15 +K12473 LDLR; low-density lipoprotein receptor +K12474 LDLRAP1, ARH; low density lipoprotein receptor adapter protein 1 +K12475 DAB2; disabled homolog 2 +K12476 EHD3; EH domain-containing protein 3 +K12477 EHD4; EH domain-containing protein 4 +K12478 EEA1; early endosome antigen 1 +K12479 VPS45; vacuolar protein sorting-associated protein 45 +K12480 RABEP1; Rab GTPase-binding effector protein 1 +K12481 RBSN, ZFYVE20; rabenosyn-5 +K12482 RUFY1_2, RABIP4; RUN and FYVE domain-containing protein 1/2 +K12483 EHD1; EH domain-containing protein 1 +K12484 RAB11FIP1_2_5; Rab11 family-interacting protein 1/2/5 +K12485 RAB11FIP3_4; Rab11 family-interacting protein 3/4 +K12486 SMAP; stromal membrane-associated protein +K12487 GIT2; G protein-coupled receptor kinase interactor 2 +K12488 ASAP; Arf-GAP with SH3 domain, ANK repeat and PH domain-containing protein +K12489 ACAP; Arf-GAP with coiled-coil, ANK repeat and PH domain-containing protein +K12490 ARAP3; Arf-GAP with Rho-GAP domain, ANK repeat and PH domain-containing protein 3 +K12491 AGAP; Arf-GAP with GTPase, ANK repeat and PH domain-containing protein 1/3/4/5/6/9/11 +K12492 ARFGAP1; ADP-ribosylation factor GTPase-activating protein 1 +K12493 ARFGAP2_3; ADP-ribosylation factor GTPase-activating protein 2/3 +K12494 PSD; PH and SEC7 domain-containing protein +K12495 IQSEC; IQ motif and SEC7 domain-containing protein +K12496 EGR2; early growth response protein 2 +K12497 EGR3; early growth response protein 3 +K12498 EGR4; early growth response protein 4 +K12499 CCL5; C-C motif chemokine 5 +K12500 tesC; thioesterase III [EC:3.1.2.-] +K12501 HST; homogentisate solanesyltransferase [EC:2.5.1.117] +K12502 VTE3, APG1; MPBQ/MSBQ methyltransferase [EC:2.1.1.295] +K12503 uppS; short-chain Z-isoprenyl diphosphate synthase [EC:2.5.1.68] +K12504 PDSS1; decaprenyl-diphosphate synthase subunit 1 [EC:2.5.1.91] +K12505 PDSS2; decaprenyl-diphosphate synthase subunit 2 [EC:2.5.1.91] +K12506 ispDF; 2-C-methyl-D-erythritol 4-phosphate cytidylyltransferase / 2-C-methyl-D-erythritol 2,4-cyclodiphosphate synthase [EC:2.7.7.60 4.6.1.12] +K12507 fadK; acyl-CoA synthetase [EC:6.2.1.-] +K12508 fcs; feruloyl-CoA synthase [EC:6.2.1.34] +K12509 rcpB; pilus assembly protein RcpB +K12510 tadB; tight adherence protein B +K12511 tadC; tight adherence protein C +K12512 tadD; tight adherence protein D +K12513 tadE; tight adherence protein E +K12514 tadF; tight adherence protein F +K12515 tadG; tight adherence protein G +K12516 bigA; putative surface-exposed virulence protein +K12517 papA; major pilin subunit PapA +K12518 papC; outer membrane usher protein PapC +K12519 papD; chaperone protein PapD +K12520 papE; minor pilin subunit PapE +K12521 papF; minor pilin subunit PapF +K12522 papG; adhesin PapG +K12523 papK; minor pilin subunit PapK +K12524 thrA; bifunctional aspartokinase / homoserine dehydrogenase 1 [EC:2.7.2.4 1.1.1.3] +K12525 metL; bifunctional aspartokinase / homoserine dehydrogenase 2 [EC:2.7.2.4 1.1.1.3] +K12526 lysAC; bifunctional diaminopimelate decarboxylase / aspartate kinase [EC:4.1.1.20 2.7.2.4] +K12527 ygfK; putative selenate reductase [EC:1.97.1.9] +K12528 xdhD; putative selenate reductase molybdopterin-binding subunit +K12529 ygfM; putative selenate reductase FAD-binding subunit +K12530 rtxB, fitA; ATP-binding cassette, subfamily B, bacterial RtxB +K12531 rtxE, fitC; ATP-binding cassette, subfamily B, bacterial RtxE +K12532 rtxD, fitB; membrane fusion protein, RTX toxin transport system +K12536 hasD, prtD, aprD, rsaD, prsD, eexD; ATP-binding cassette, subfamily C, type I secretion system permease/ATPase +K12537 hasE, prtE, rsaE, prsE, eexE; membrane fusion protein, type I secretion system +K12538 hasF, prtF; outer membrane protein, type I secretion system +K12541 lapB; ATP-binding cassette, subfamily C, bacterial LapB +K12542 lapC; membrane fusion protein, adhesin transport system +K12543 lapE; outer membrane protein, adhesin transport system +K12544 rsaA; S-layer protein +K12545 hasA; heme acquisition protein HasA +K12546 nodO; putative nodulation protein +K12547 plyA; polysaccharidase protein +K12548 rap; autoaggregation protein RapA/B/C +K12549 lapA; surface adhesion protein +K12550 LPO; lactoperoxidase [EC:1.11.1.7] +K12551 sgtA; monofunctional glycosyltransferase [EC:2.4.99.28] +K12552 pbpA; penicillin-binding protein 1 [EC:3.4.-.-] +K12553 pbp3; penicillin-binding protein 3 [EC:3.4.-.-] +K12554 murN; alanine adding enzyme [EC:2.3.2.-] +K12555 pbp2A; penicillin-binding protein 2A [EC:2.4.99.28 3.4.16.4] +K12556 pbp2X; penicillin-binding protein 2X +K12557 MYBPC1; myosin-binding protein C, slow-type +K12558 MYBPC2; myosin-binding protein C, fast-type +K12559 MYO10; myosin X +K12560 FCGR2B, CD32; low affinity immunoglobulin gamma Fc receptor II-b +K12561 MARCKS; myristoylated alanine-rich C-kinase substrate +K12562 AMPH; amphiphysin +K12563 SGCD; delta-sarcoglycan +K12564 SGCG; gamma-sarcoglycan +K12565 SGCA; alpha-sarcoglycan +K12566 SGCB; beta-sarcoglycan +K12567 TTN; titin [EC:2.7.11.1] +K12568 MYBPC3; myosin-binding protein C, cardiac-type +K12569 EMD; emerin +K12570 aphD, strA; streptomycin 6-kinase [EC:2.7.1.72] +K12571 PAN2; PAB-dependent poly(A)-specific ribonuclease subunit 2 [EC:3.1.13.4] +K12572 PAN3; PAB-dependent poly(A)-specific ribonuclease subunit 3 +K12573 rnr, vacB; ribonuclease R [EC:3.1.13.1] +K12574 rnj; ribonuclease J [EC:3.1.-.-] +K12575 SLK19; kinetochore protein SLK19 +K12576 SPO12; sporulation-specific protein 12 +K12577 FOB1; DNA replication fork-blocking protein FOB1 +K12578 LCD1, ddc2; DNA damage checkpoint protein LCD1 +K12579 ISG20; interferon-stimulated gene 20 kDa protein [EC:3.1.13.1] +K12580 CNOT3, NOT3; CCR4-NOT transcription complex subunit 3 +K12581 CNOT7_8, CAF1, POP2; CCR4-NOT transcription complex subunit 7/8 +K12582 wecF, rffT; dTDP-N-acetylfucosamine:lipid II N-acetylfucosaminyltransferase [EC:2.4.1.325] +K12583 mgtA; phosphatidylinositol alpha 1,6-mannosyltransferase [EC:2.4.1.-] +K12584 DCPS, DCS; m7GpppX diphosphatase [EC:3.6.1.59] +K12585 DIS3, RRP44; exosome complex exonuclease DIS3/RRP44 [EC:3.1.13.-] +K12586 RRP43, EXOSC8, OIP2; exosome complex component RRP43 +K12587 MTR3, EXOSC6; exosome complex component MTR3 +K12589 RRP42, EXOSC7; exosome complex component RRP42 +K12590 RRP46, EXOSC5; exosome complex component RRP46 +K12591 RRP6, EXOSC10; exosome complex exonuclease RRP6 [EC:3.1.13.-] +K12592 C1D, LRP1; exosome complex protein LRP1 +K12593 MPHOSPH6, MPP6; M-phase phosphoprotein 6, animal type +K12594 MPP6; M-phase phosphoprotein 6, fungi type +K12595 SKI7; superkiller protein 7 +K12596 TRF5; poly(A) RNA polymerase +K12597 AIR1_2; protein AIR1/2 +K12598 MTR4, SKIV2L2; ATP-dependent RNA helicase DOB1 [EC:5.6.2.6] +K12599 SKI2, SKIV2L; antiviral helicase SKI2 [EC:5.6.2.6] +K12600 SKI3, TTC37; superkiller protein 3 +K12601 SKI8; superkiller protein 8 +K12602 WDR61, REC14, SKI8; WD repeat-containing protein 61 +K12603 CNOT6, CCR4; CCR4-NOT transcription complex subunit 6 [EC:3.1.13.4] +K12604 CNOT1, NOT1; CCR4-NOT transcription complex subunit 1 +K12605 CNOT2, NOT2; CCR4-NOT transcription complex subunit 2 +K12606 RCD1, CNOT9, CAF40; CCR4-NOT transcription complex subunit 9 +K12607 CNOT10; CCR4-NOT transcription complex subunit 10 +K12608 CAF16; CCR4-NOT complex subunit CAF16 +K12609 CAF120; CCR4-NOT transcriptional complex subunit CAF120 +K12610 DCP1A; mRNA-decapping enzyme 1A [EC:3.-.-.-] +K12611 DCP1B; mRNA-decapping enzyme 1B [EC:3.-.-.-] +K12612 DCP1; mRNA-decapping enzyme subunit 1 +K12613 DCP2; mRNA-decapping enzyme subunit 2 [EC:3.6.1.62] +K12614 DDX6, RCK, DHH1; ATP-dependent RNA helicase DDX6/DHH1 [EC:5.6.2.7] +K12615 EDC3; enhancer of mRNA-decapping protein 3 +K12616 EDC4; enhancer of mRNA-decapping protein 4 +K12617 PATL1, PAT1; DNA topoisomerase 2-associated protein PAT1 +K12618 XRN1, SEP1, KEM1; 5'-3' exoribonuclease 1 [EC:3.1.13.-] +K12619 XRN2, RAT1; 5'-3' exoribonuclease 2 [EC:3.1.13.-] +K12620 LSM1; U6 snRNA-associated Sm-like protein LSm1 +K12621 LSM2; U6 snRNA-associated Sm-like protein LSm2 +K12622 LSM3; U6 snRNA-associated Sm-like protein LSm3 +K12623 LSM4; U6 snRNA-associated Sm-like protein LSm4 +K12624 LSM5; U6 snRNA-associated Sm-like protein LSm5 +K12625 LSM6; U6 snRNA-associated Sm-like protein LSm6 +K12626 LSM7; U6 snRNA-associated Sm-like protein LSm7 +K12627 LSM8; U6 snRNA-associated Sm-like protein LSm8 +K12628 pur10; puromycin biosynthesis protein Pur10 [EC:1.-.-.-] +K12629 pur7; puromycin biosynthesis protein Pur7 [EC:3.-.-.-] +K12630 pur4; puromycin biosynthesis protein Pur4 [EC:2.-.-.-] +K12631 pur6; puromycin biosynthesis protein Pur6 +K12632 pac; puromycin N-acetyltransferase [EC:2.3.-.-] +K12633 pur5; N-methyl-transferase [EC:2.1.1.-] +K12634 pur3; puromycin biosynthesis protein Pur3 +K12635 dmpM; O-demethylpuromycin O-methyltransferase [EC:2.1.1.38] +K12636 napH; N-acetylpuromycin N-acetylhydrolase +K12637 CYP90C1, ROT3; 3-epi-6-deoxocathasterone 23-monooxygenase [EC:1.14.14.147] +K12638 CYP90D1; 3-epi-6-deoxocathasterone 23-monooxygenase [EC:1.14.14.147] +K12639 CYP724, D11; steroid 22S-hydroxylase [EC:1.14.14.178] +K12640 CYP85A2, BR6OX2; brassinosteroid 6-oxygenase / brassinolide synthase [EC:1.14.14.179 1.14.14.180] +K12641 LMNA; lamin A/C +K12642 PKP2; plakophilin 2 +K12643 ANMT; anthranilate N-methyltransferase [EC:2.1.1.111] +K12644 E2.3.1.159; acridone synthase [EC:2.3.1.159] +K12645 CYP170A; epi-isozizaene 5-monooxygenase / beta-farnesene synthase [EC:1.14.15.39 4.2.3.47] +K12646 RIGI, DDX58; ATP-dependent RNA helicase DDX58 [EC:5.6.2.6] +K12647 IFIH1, MDA5; interferon-induced helicase C domain-containing protein 1 [EC:5.6.2.6] +K12648 MAVS, IPS1; mitochondrial antiviral-signaling protein +K12649 DHX58, LGP2; ATP-dependent RNA helicase DHX58 [EC:5.6.2.6] +K12650 TANK; TRAF family member-associated NF-kappa-B activator +K12651 AZI2; 5-azacytidine-induced protein 2 +K12652 TBKBP1; TANK-binding kinase 1-binding protein +K12653 NLRX1; NLR family member X1 +K12654 STING1, TMEM173, MITA; stimulator of interferon genes protein +K12655 OTUD5, DUBA; OTU domain-containing protein 5 [EC:3.4.19.12] +K12656 SIKE; suppressor of IKK-epsilon +K12657 ALDH18A1, P5CS; delta-1-pyrroline-5-carboxylate synthetase [EC:2.7.2.11 1.2.1.41] +K12658 lhpA; 4-hydroxyproline epimerase [EC:5.1.1.8] +K12659 ARG56; N-acetyl-gamma-glutamyl-phosphate reductase / acetylglutamate kinase [EC:1.2.1.38 2.7.2.8] +K12660 rhmA; 2-dehydro-3-deoxy-L-rhamnonate aldolase [EC:4.1.2.53] +K12661 LRA3, rhmD; L-rhamnonate dehydratase [EC:4.2.1.90] +K12662 PRPF4, PRP4; U4/U6 small nuclear ribonucleoprotein PRP4 +K12663 ECH1; Delta3,5-Delta2,4-dienoyl-CoA isomerase [EC:5.3.3.21] +K12664 CYP26B; cytochrome P450 family 26 subfamily B [EC:1.14.14.-] +K12665 CYP26C; cytochrome P450 family 26 subfamily C [EC:1.14.14.-] +K12666 RPN1, OST1; dolichyl-diphosphooligosaccharide---protein glycosyltransferase subunit 1 (ribophorin I) +K12667 RPN2, SWP1; dolichyl-diphosphooligosaccharide---protein glycosyltransferase subunit 2 (ribophorin II) +K12668 DAD1, OST2; dolichyl-diphosphooligosaccharide---protein glycosyltransferase subunit DAD1/OST2 +K12669 OST3_6; dolichyl-diphosphooligosaccharide---protein glycosyltransferase subunit 3/6 +K12670 DDOST, WBP1; dolichyl-diphosphooligosaccharide---protein glycosyltransferase subunit DDOST/WBP1 +K12671 CXCL10, IP10; C-X-C motif chemokine 10 +K12672 CXCL11, I-TAC; C-X-C motif chemokine 11 +K12673 ceaS; N2-(2-carboxyethyl)arginine synthase [EC:2.5.1.66] +K12674 bls; (carboxyethyl)arginine beta-lactam-synthase [EC:6.3.3.4] +K12675 cs; clavaminate synthase [EC:1.14.11.21] +K12676 pah; proclavaminate amidinohydrolase [EC:3.5.3.22] +K12677 car; clavulanate-9-aldehyde reducatase +K12678 aidA-I, misL; autotransporter family porin +K12679 icsA, virG; outer membrane protein IcsA +K12681 prn; pertactin +K12682 tcfA; tracheal colonization factor +K12683 brkA; serum resistance protein +K12684 esp, sigA, sepA; serine protease autotransporter [EC:3.4.21.-] +K12685 ssp; subtilase-type serine protease [EC:3.4.21.-] +K12686 apeE, estA, lip-1; outer membrane lipase/esterase +K12687 flu; antigen 43 +K12688 sphB1, nalP, ausP; autotransporter serine protease [EC:3.4.21.-] +K12689 capA; campylobacter adhesion protein +K12690 hsf; adhesin Hsf +K12691 OST5; dolichyl-diphosphooligosaccharide---protein glycosyltransferase subunit 5 +K12692 H6H; hyoscyamine (6S)-dioxygenase / 6beta-hydroxyhyoscyamine epoxidase [EC:1.14.11.11 1.14.20.13] +K12693 SGR1; strictosidine beta-D-glucosidase [EC:3.2.1.105] +K12694 E2.3.1.160; vinorine synthase [EC:2.3.1.160] +K12695 RG; raucaffricine beta-D-glucosidase / vomilenine glucosyltransferase [EC:3.2.1.125 2.4.1.219] +K12696 CYP71D12; tabersonine 16-hydroxylase [EC:1.14.14.103] +K12697 D4H; deacetoxyvindoline 4-hydroxylase [EC:1.14.11.20] +K12698 DAT; deacetylvindoline O-acetyltransferase [EC:2.3.1.107] +K12699 MAT; minovincinine 19-hydroxy-O-acetyltransferase +K12700 rihC; non-specific riboncleoside hydrolase [EC:3.2.2.-] +K12701 novH; novobiocin biosynthesis protein NovH +K12702 novI, CYP163A; novobiocin biosynthesis protein NovI +K12703 novJ; novobiocin biosynthesis protein NovJ +K12704 novK; novobiocin biosynthesis protein NovK +K12705 novO, couO; 8-demethylnovobiocic acid C8-methyltransferase [EC:2.1.1.284] +K12706 novC; novobiocin biosynthesis protein NovC +K12707 novQ, cloQ; 4-hydroxyphenylpyruvate 3-dimethylallyltransferase [EC:2.5.1.111] +K12708 novR, cloR; 4-hydroxy-3-prenylphenylpyruvate oxygenase / 4-hydroxy-3-prenylbenzoate synthase [EC:1.13.11.83 1.13.12.23] +K12709 novL, cloL, couL; 8-demethylnovobiocic acid synthase [EC:6.3.1.15] +K12710 novU; C-methyltransferase [EC:2.1.1.-] +K12711 novM, cloM, couM; L-demethylnoviosyl transferase [EC:2.4.1.302] +K12712 novP, cloP, couP; demethyldecarbamoylnovobiocin O-methyltransferase [EC:2.1.1.285] +K12713 novN; decarbamoylnovobiocin carbamoyltransferase [EC:2.1.3.12] +K12714 clohal; clorobiocin biosynthesis protein Clo-hal +K12719 cloN4, couN4; L-proline---[L-prolyl-carrier protein] ligase [EC:6.2.1.53] +K12720 cloN5, couN5; peptidyl carrier protein +K12721 cloN3, couN3; L-prolyl-[peptidyl-carrier protein] dehydrogenase [EC:1.3.8.14] +K12722 cloN6, couN6; clorobiocin/coumermycin A biosynthesis protein CloN6/CouN6 +K12723 cloN2; clorobiocin biosynthesis protein CloN2 +K12724 cloN7, couN7; clorobiocin/coumermycin A biosynthesis protein CloN7/CouN7 +K12729 XMT; 7-methylxanthosine synthase [EC:2.1.1.158] +K12730 MXMT; theobromine synthase [EC:2.1.1.159] +K12731 DXMT; caffeine synthase [EC:2.1.1.160] +K12732 ARO10; phenylpyruvate decarboxylase [EC:4.1.1.-] +K12733 PPIL1; peptidyl-prolyl cis-trans isomerase-like 1 [EC:5.2.1.8] +K12734 PPIL3; peptidyl-prolyl cis-trans isomerase-like 3 [EC:5.2.1.8] +K12735 PPIL4; peptidyl-prolyl cis-trans isomerase-like 4 [EC:5.2.1.8] +K12736 PPWD1; peptidylprolyl isomerase domain and WD repeat-containing protein 1 [EC:5.2.1.8] +K12737 SDCCAG10; peptidyl-prolyl cis-trans isomerase SDCCAG10 [EC:5.2.1.8] +K12738 PPIAL4; peptidylprolyl cis-trans isomerase A-like 4 [EC:5.2.1.8] +K12739 PPIL6; peptidyl-prolyl cis-trans isomerase-like 6 [EC:5.2.1.8] +K12740 NKTR; NK-tumor recognition protein +K12741 HNRNPA1_3; heterogeneous nuclear ribonucleoprotein A1/A3 +K12742 ispS; isoprene synthase [EC:4.2.3.27] +K12743 PCBAB; N-(5-amino-5-carboxypentanoyl)-L-cysteinyl-D-valine synthase [EC:6.3.2.26] +K12744 cefE; deacetoxycephalosporin-C synthase [EC:1.14.20.1] +K12745 cefF; deacetoxycephalosporin-C hydroxylase [EC:1.14.11.26] +K12747 cefG; deacetylcephalosporin-C acetyltransferase [EC:2.3.1.175] +K12748 gca; glutaryl-7-aminocephalosporanic-acid acylase [EC:3.5.1.93] +K12749 MYL3; myosin light chain 3 +K12750 MYL4; myosin light chain 4 +K12751 MYL6; myosin light chain 6 +K12753 MYL5; myosin regulatory light chain 5 +K12754 MYL7; myosin regulatory light chain 7 +K12755 MYL9; myosin regulatory light chain 9 +K12756 MYL10; myosin regulatory light chain 10 +K12757 MYL12; myosin regulatory light chain 12 +K12758 MYLPF; fast skeletal myosin light chain 2 +K12760 CLN1; G1/S-specific cyclin CLN1 +K12761 SNF1; carbon catabolite-derepressing protein kinase [EC:2.7.11.1] +K12762 GPR1; G protein-coupled receptor GPR1 +K12763 EFG1, SOK2; enhanced filamentous growth protein 1 +K12764 IME1; meiosis-inducing protein 1 +K12765 IME2; meiosis induction protein kinase IME2/SME1 [EC:2.7.11.1] +K12766 MDS1, RIM11; serine/threonine-protein kinase MDS1/RIM11 [EC:2.7.11.1] +K12767 RIM15; serine/threonine-protein kinase RIM15 [EC:2.7.11.36] +K12768 ZIP1; synaptonemal complex protein ZIP1 +K12769 NDT80; meiosis-specific transcription factor NDT80 +K12770 GIP1; GLC7-interacting protein 1 +K12771 SPS1; sporulation-specific protein 1 [EC:2.7.11.1] +K12772 SPS4; sporulation-specific protein 4 +K12773 SPR3; sporulation-regulated protein 3 +K12774 MAM1; monopolin complex subunit MAM1 +K12775 LRS4; monopolin complex subunit LRS4 +K12776 MEK1; meiosis-specific serine/threonine-protein kinase MEK1 [EC:2.7.11.1] +K12777 RED1; protein RED1 +K12778 HORMAD, HOP1; meiosis-specific protein +K12779 SUM1; suppressor of MAR1-1 protein +K12780 REC8; meiotic recombination protein REC8, fungi type +K12781 MND2; anaphase-promoting complex subunit MND2 +K12782 AMA1; meiosis-specific APC/C activator protein AMA1 +K12783 SSP1; sporulation-specific protein 1 +K12784 tir; translocated intimin receptor +K12785 espG, virA; LEE-encoded effector EspG +K12786 espF; LEE-encoded effector EspF +K12787 map; LEE-encoded effector Map +K12788 espH; LEE-encoded effector EspH +K12789 tccP; Tir-cytoskeleton coupling protein +K12790 eae; intimin +K12791 ARHGEF2, GEF-H1; Rho guanine nucleotide exchange factor 2 +K12792 TRIP6; thyroid receptor-interacting protein 6 +K12793 MAP3K7IP3, TAB3; TAK1-binding protein 3 +K12794 CARD9; caspase recruitment domain-containing protein 9 +K12795 SUGT1, SGT1; suppressor of G2 allele of SKP1 +K12796 ERBIN, ERBB2IP; erbb2-interacting protein +K12797 CARD6; caspase recruitment domain-containing protein 6 +K12798 NLRP1, CARD7; NACHT, LRR and PYD domains-containing protein 1 +K12799 PYCARD, ASC; apoptosis-associated speck-like protein containing a CARD +K12800 NLRP3, PYPAF1; NACHT, LRR and PYD domains-containing protein 3 +K12801 CARD8, CARDINAL; caspase recruitment domain-containing protein 8 +K12802 PYDC1; pyrin domain-containing protein 1 +K12803 MEFV; pyrin +K12804 PSTPIP1; proline-serine-threonine phosphatase interacting protein 1 +K12805 NLRC4, CARD12; NLR family CARD domain-containing protein 4 +K12806 CARD16_17_18; caspase recruitment domain-containing protein 16/17/18 +K12807 NAIP, BIRC1; baculoviral IAP repeat-containing protein 1 +K12809 espG2; T3SS secreted effector EspG-like protein +K12810 bfpA; major structural subunit of bundle-forming pilus +K12811 DDX46, PRP5; ATP-dependent RNA helicase DDX46/PRP5 [EC:5.6.2.7] +K12812 DDX39B, UAP56, SUB2; ATP-dependent RNA helicase UAP56/SUB2 [EC:5.6.2.7] +K12813 DHX16; pre-mRNA-splicing factor ATP-dependent RNA helicase DHX16 [EC:5.6.2.6] +K12814 PRP2; pre-mRNA-splicing factor ATP-dependent RNA helicase-like protein PRP2 [EC:5.6.2.6] +K12815 DHX38, PRP16; pre-mRNA-splicing factor ATP-dependent RNA helicase DHX38/PRP16 [EC:5.6.2.6] +K12816 CDC40, PRP17; pre-mRNA-processing factor 17 +K12817 PRPF18, PRP18; pre-mRNA-splicing factor 18 +K12818 DHX8, PRP22; ATP-dependent RNA helicase DHX8/PRP22 [EC:5.6.2.6] +K12819 SLU7; pre-mRNA-processing factor SLU7 +K12820 DHX15, PRP43; pre-mRNA-splicing factor ATP-dependent RNA helicase DHX15/PRP43 [EC:5.6.2.6] +K12821 PRPF40, PRP40; pre-mRNA-processing factor 40 +K12822 RBM25, S164; RNA-binding protein 25 +K12823 DDX5, DBP2; ATP-dependent RNA helicase DDX5/DBP2 [EC:5.6.2.7] +K12824 TCERG1, CA150; transcription elongation regulator 1 +K12825 SF3A1, SAP114; splicing factor 3A subunit 1 +K12826 SF3A2, SAP62; splicing factor 3A subunit 2 +K12827 SF3A3, SAP61, PRP9; splicing factor 3A subunit 3 +K12828 SF3B1, SAP155; splicing factor 3B subunit 1 +K12829 SF3B2, SAP145, CUS1; splicing factor 3B subunit 2 +K12830 SF3B3, SAP130, RSE1; splicing factor 3B subunit 3 +K12831 SF3B4, SAP49; splicing factor 3B subunit 4 +K12832 SF3B5, SF3B10; splicing factor 3B subunit 5 +K12833 SF3B14; pre-mRNA branch site protein p14 +K12834 PHF5A; PHD finger-like domain-containing protein 5A +K12835 DDX42, SF3B125; ATP-dependent RNA helicase DDX42 [EC:5.6.2.7] +K12836 U2AF1; splicing factor U2AF 35 kDa subunit +K12837 U2AF2; splicing factor U2AF 65 kDa subunit +K12838 PUF60; poly(U)-binding-splicing factor PUF60 +K12839 SMNDC1, SPF30; survival of motor neuron-related-splicing factor 30 +K12840 RBM17, SPF45; splicing factor 45 +K12841 CHERP; calcium homeostasis endoplasmic reticulum protein +K12842 SR140; U2-associated protein SR140 +K12843 PRPF3, PRP3; U4/U6 small nuclear ribonucleoprotein PRP3 +K12844 PRPF31; U4/U6 small nuclear ribonucleoprotein PRP31 +K12845 SNU13, NHP2L; U4/U6 small nuclear ribonucleoprotein SNU13 +K12846 SNRNP27; U4/U6.U5 tri-snRNP-associated protein 3 +K12847 USP39, SAD1; U4/U6.U5 tri-snRNP-associated protein 2 +K12848 SNU23; U4/U6.U5 tri-snRNP component SNU23 +K12849 PRPF38A; pre-mRNA-splicing factor 38A +K12850 PRPF38B; pre-mRNA-splicing factor 38B +K12851 PRP38; pre-mRNA-splicing factor 38 +K12852 EFTUD2; 116 kDa U5 small nuclear ribonucleoprotein component +K12853 SNU114; 114 kDa U5 small nuclear ribonucleoprotein component +K12854 SNRNP200, BRR2; pre-mRNA-splicing helicase BRR2 [EC:5.6.2.6] +K12855 PRPF6, PRP6; pre-mRNA-processing factor 6 +K12856 PRPF8, PRP8; pre-mRNA-processing factor 8 +K12857 SNRNP40, PRP8BP; Prp8 binding protein +K12858 DDX23, PRP28; ATP-dependent RNA helicase DDX23/PRP28 [EC:5.6.2.7] +K12859 TXNL4A, DIB1; U5 snRNP protein, DIM1 family +K12860 CDC5L, CDC5, CEF1; pre-mRNA-splicing factor CDC5/CEF1 +K12861 BCAS2; pre-mRNA-splicing factor SPF27 +K12862 PLRG1, PRL1, PRP46; pleiotropic regulator 1 +K12863 CWC15; protein CWC15 +K12864 CTNNBL1; beta-catenin-like protein 1 +K12865 PQBP1, NPW38; polyglutamine-binding protein 1 +K12866 WBP11, NPWBP; WW domain-binding protein 11 +K12867 SYF1, XAB2; pre-mRNA-splicing factor SYF1 +K12868 SYF2; pre-mRNA-splicing factor SYF2 +K12869 CRN, CRNKL1, CLF1, SYF3; crooked neck +K12870 ISY1; pre-mRNA-splicing factor ISY1 +K12871 CCDC12; coiled-coil domain-containing protein 12 +K12872 RBM22, SLT11; pre-mRNA-splicing factor RBM22/SLT11 +K12873 BUD31, G10; bud site selection protein 31 +K12874 AQR; intron-binding protein aquarius +K12875 ACIN1, ACINUS; apoptotic chromatin condensation inducer in the nucleus +K12876 RBM8A, Y14; RNA-binding protein 8A +K12877 MAGOH; protein mago nashi +K12878 THOC1; THO complex subunit 1 +K12879 THOC2; THO complex subunit 2 +K12880 THOC3; THO complex subunit 3 +K12881 THOC4, ALY; THO complex subunit 4 +K12882 NCBP1, CBP80; nuclear cap-binding protein subunit 1 +K12883 NCBP2, CBP20; nuclear cap-binding protein subunit 2 +K12884 HNRNPC; heterogeneous nuclear ribonucleoprotein C1/C2 +K12885 RBMX, HNRNPG; heterogeneous nuclear ribonucleoprotein G +K12886 HNRNPK; heterogeneous nuclear ribonucleoprotein K +K12887 HNRNPM; heterogeneous nuclear ribonucleoprotein M +K12888 HNRNPU; heterogeneous nuclear ribonucleoprotein U +K12889 PCBP1; poly(rC)-binding protein 1 +K12890 SRSF1, SFRS1, ASF, SF2; serine/arginine-rich splicing factor 1 +K12891 SRSF2_8, SFRS2A_B; serine/arginine-rich splicing factor 2/8 +K12892 SRSF3, SFRS3; serine/arginine-rich splicing factor 3 +K12893 SRSF4_5_6, SFRS4_5_6; serine/arginine-rich splicing factor 4/5/6 +K12894 HNRNPA0; heterogeneous nuclear ribonucleoprotein A0 +K12895 RALY, HNRNPCL2; RNA-binding protein Raly +K12896 SRSF7, SFRS7; serine/arginine-rich splicing factor 7 +K12897 TRA2; transformer-2 protein +K12898 HNRNPF_H; heterogeneous nuclear ribonucleoprotein F/H +K12899 SRSF11, SFRS11; serine/arginine-rich splicing factor 11 +K12900 SRSF10, FUSIP1; serine/arginine-rich splicing factor 10 +K12901 fomC; phosphonoacetaldehyde reductase +K12902 fom3; phosphonoacetaldehyde methylase [EC:2.1.1.308] +K12903 fom4; (S)-2-hydroxypropylphosphonic acid epoxidase [EC:1.11.1.23] +K12904 phpC; phosphonoacetaldehyde reductase [EC:1.1.1.309] +K12905 phpD; 2-hydroxyethylphosphonate dioxygenase [EC:1.13.11.72] +K12906 phpE; D-3-phosphoglycerate dehydrogenase +K12907 phpJ; aldehyde dehydrogenase +K12908 phpF; phosphonoformate cytidylyltransferase [EC:2.7.7.93] +K12909 phpI; carboxyvinyl-carboxyphosphonate phosphorylmutase [EC:2.7.8.23] +K12910 pmmS; 2-phosphinomethylmalate synthase [EC:2.3.3.18] +K12911 phsA; phosphinothricin tripeptide synthetase PhsA +K12912 phsB; phosphinothricin tripeptide synthetase phsB [EC:6.2.1.67] +K12913 phsC; phosphinothricin tripeptide synthetase PhsC +K12914 phpK; P-methyltransferase [EC:2.1.1.326] +K12915 dea; phosphinothricin tripeptide acetyl hydrolase +K12917 P450I, CYP68A; cytochrome P450 monooxygenase 1 +K12918 P450II, CYP68B; cytochrome P450 monooxygenase 2 +K12919 P450III, CYP69A; cytochrome P450 monooxygenase 3 +K12920 K12920, DES; GA4 desaturase +K12921 TDC1; taxadiene synthase [EC:4.2.3.17] +K12922 CYP725A2; taxane 13alpha-hydroxylase [EC:1.14.14.106] +K12923 TAT; taxadien-5alpha-ol O-acetyltransferase [EC:2.3.1.162] +K12924 CYP725A1; taxane 10beta-hydroxylase [EC:1.14.14.105] +K12925 TBT; 2alpha-hydroxytaxane 2-O-benzoyltransferase [EC:2.3.1.166] +K12926 DBAT; 10-deacetylbaccatin III 10-O-acetyltransferase [EC:2.3.1.167] +K12927 AG22; abietadiene/neoabietadiene/copalyl diphosphate synthase [EC:4.2.3.18 4.2.3.132 5.5.1.12] +K12928 K12928, ACS; aphidicolan-16beta-ol synthase/syn-copalyl-diphosphate synthase [EC:4.2.3.42 5.5.1.14] +K12929 E4.2.3.8; casbene synthase [EC:4.2.3.8] +K12930 BZ1; anthocyanidin 3-O-glucosyltransferase [EC:2.4.1.115] +K12931 3MaT1; anthocyanin 3-O-glucoside-6''-O-malonyltransferase [EC:2.3.1.171] +K12932 3MaT2; anthocyanidin 3-O-glucoside-3'',6''-O-dimalonyltransferase [EC:2.3.1.-] +K12933 3GGT; anthocyanidin 3-O-glucoside 2''-O-glucosyltransferase [EC:2.4.1.297] +K12934 5MaT1; anthocyanin 5-O-glucoside-6'''-O-malonyltransferase [EC:2.3.1.172] +K12935 5MaT2; anthocyanin 5-O-glucoside-4'''-O-malonyltransferase [EC:2.3.1.214] +K12936 5AT; anthocyanin 5-aromatic acyltransferase [EC:2.3.1.153] +K12937 UGAT; cyanidin-3-O-glucoside 2''-O-glucuronosyltransferase [EC:2.4.1.254] +K12938 GT1; anthocyanidin 5,3-O-glucosyltransferase [EC:2.4.1.-] +K12939 3GT; anthocyanin 3'-O-beta-glucosyltransferase [EC:2.4.1.238] +K12940 abgA; aminobenzoyl-glutamate utilization protein A +K12941 abgB; aminobenzoyl-glutamate utilization protein B +K12942 abgT; aminobenzoyl-glutamate transport protein +K12943 ygeR; lipoprotein YgeR +K12944 nudI; nucleoside triphosphatase [EC:3.6.1.-] +K12945 nudK; GDP-mannose pyrophosphatase NudK [EC:3.6.1.-] +K12946 SPCS1; signal peptidase complex subunit 1 [EC:3.4.-.-] +K12947 SPCS2, SPC2; signal peptidase complex subunit 2 [EC:3.4.-.-] +K12948 SPCS3, SPC3; signal peptidase complex subunit 3 [EC:3.4.-.-] +K12949 ctpB; cation-transporting P-type ATPase B [EC:7.2.2.-] +K12950 ctpC; manganese-transporting P-type ATPase C [EC:7.2.2.22] +K12951 ctpD; cobalt/nickel-transporting P-type ATPase D [EC:7.2.2.-] +K12952 ctpE; cation-transporting P-type ATPase E [EC:7.2.2.-] +K12953 ctpF; cation-transporting P-type ATPase F [EC:7.2.2.-] +K12954 ctpG; cation-transporting P-type ATPase G [EC:7.2.2.-] +K12955 ctpI; cation-transporting P-type ATPase I [EC:7.2.2.-] +K12956 ctpV; copper-transporting P-type ATPase V [EC:7.2.2.8] +K12957 ahr; alcohol/geraniol dehydrogenase (NADP+) [EC:1.1.1.2 1.1.1.183] +K12958 CAV2; caveolin 2 +K12959 CAV3; caveolin 3 +K12960 mtaD; 5-methylthioadenosine/S-adenosylhomocysteine deaminase [EC:3.5.4.31 3.5.4.28] +K12961 diaA; DnaA initiator-associating protein +K12962 arnE; undecaprenyl phosphate-alpha-L-ara4N flippase subunit ArnE +K12963 arnF; undecaprenyl phosphate-alpha-L-ara4N flippase subunit ArnF +K12964 CCL4; C-C motif chemokine 4 +K12965 ZBP1, DAI; Z-DNA binding protein 1 +K12966 AIM2; absent in melanoma 2 +K12967 IL33; interleukin 33 +K12968 ADAR, ADAR1; double-stranded RNA-specific adenosine deaminase [EC:3.5.4.37] +K12969 E3L; Poxviridae RNA-binding protein E3 +K12970 M45; Murid betaherpesvirus 1 ribonucleoside-diphosphate reductase [EC:1.17.4.1] +K12971 IFI202; interferon-activable protein 202 +K12972 ghrA; glyoxylate/hydroxypyruvate reductase [EC:1.1.1.79 1.1.1.81] +K12973 pagP, crcA; lipid IVA palmitoyltransferase [EC:2.3.1.251] +K12974 lpxP; KDO2-lipid IV(A) palmitoleoyltransferase [EC:2.3.1.242] +K12975 eptB; KDO II ethanolaminephosphotransferase [EC:2.7.8.42] +K12976 pagL; lipid A 3-O-deacylase [EC:3.1.1.-] +K12977 lpxE; lipid A 1-phosphatase [EC:3.1.3.-] +K12978 lpxF; lipid A 4'-phosphatase [EC:3.1.3.-] +K12979 lpxO; beta-hydroxylase [EC:1.14.11.-] +K12980 lpxQ; lipid A oxidase +K12981 waaZ, rfaZ; KDO transferase III [EC:2.4.99.-] +K12982 opsX; heptosyltransferase I [EC:2.4.-.-] +K12983 waaV; UDP-glucose:(glucosyl)LPS beta-1,3-glucosyltransferase [EC:2.4.1.-] +K12984 waaE, kdtX; (heptosyl)LPS beta-1,4-glucosyltransferase [EC:2.4.1.-] +K12985 waaW; (galactosyl)LPS 1,2-glucosyltransferase [EC:2.4.1.-] +K12986 waaS, rfaS; 1,5-rhamnosyltransferase [EC:2.4.1.-] +K12987 migA; alpha-1,6-rhamnosyltransferase [EC:2.4.1.-] +K12988 wapR; alpha-1,3-rhamnosyltransferase [EC:2.4.1.-] +K12989 lpcC; mannosyltransferase [EC:2.4.1.-] +K12990 rfbF, rhlC; rhamnosyltransferase [EC:2.4.1.-] +K12991 rfbG; rhamnosyltransferase [EC:2.4.1.-] +K12992 rfbN, wbaN; O-antigen biosynthesis alpha-1,3-rhamnosyltransferase [EC:2.4.1.377] +K12993 wbdA, mtfA; O-antigen biosynthesis alpha-1,2-mannosyltransferase [EC:2.4.1.371 2.4.1.-] +K12994 wbdB, mtfB; O-antigen biosynthesis alpha-1,3-mannosyltransferase [EC:2.4.1.349 2.4.1.-] +K12995 wbdC, mtfC; O-antigen biosynthesis alpha-1,3-mannosyltransferase [EC:2.4.1.348 2.4.1.-] +K12996 rgpA; rhamnosyltransferase [EC:2.4.1.-] +K12997 rgpB; rhamnosyltransferase [EC:2.4.1.-] +K12998 rgpE; glucosyltransferase [EC:2.4.1.-] +K12999 rgpI; glucosyltransferase [EC:2.4.1.-] +K13000 wbyJ; mannosyltransferase [EC:2.4.1.-] +K13001 wbyK; mannosyltransferase [EC:2.4.1.-] +K13002 wbyL; glycosyltransferase [EC:2.4.1.-] +K13003 wbtG; glycosyltransferase WbtG [EC:2.4.1.-] +K13004 wbtD; galacturonosyltransferase WbtD [EC:2.4.1.-] +K13005 rfbV, wbaV; O-antigen biosynthesis alpha-1,3-abequosyltransferase [EC:2.4.1.60] +K13006 wbqR; UDP-perosamine 4-acetyltransferase [EC:2.3.1.-] +K13007 wbpL; glycosyltransferase WbpL [EC:2.4.1.-] +K13008 rfc, wbbH, wzyB; O-antigen polymerase [EC:2.4.99.27] +K13009 wzy; O-antigen polymerase [EC:2.4.99.27] +K13010 per, rfbE; perosamine synthetase [EC:2.6.1.102] +K13011 wbqL; O-antigen biosynthesis protein WbqL +K13012 wbqP; O-antigen biosynthesis protein WbqP +K13013 wbqV; O-antigen biosynthesis protein WbqV +K13014 arnD; undecaprenyl phosphate-alpha-L-ara4FN deformylase [EC:3.5.1.-] +K13015 wbpA; UDP-N-acetyl-D-glucosamine dehydrogenase [EC:1.1.1.136] +K13016 wbpB; UDP-N-acetyl-2-amino-2-deoxyglucuronate dehydrogenase [EC:1.1.1.335] +K13017 wbpE, wlbC; UDP-2-acetamido-2-deoxy-ribo-hexuluronate aminotransferase [EC:2.6.1.98] +K13018 wbpD, wlbB; UDP-2-acetamido-3-amino-2,3-dideoxy-glucuronate N-acetyltransferase [EC:2.3.1.201] +K13019 wbpI, wlbD; UDP-GlcNAc3NAcA epimerase [EC:5.1.3.23] +K13020 wlbA, bplA; UDP-N-acetyl-2-amino-2-deoxyglucuronate dehydrogenase [EC:1.1.1.335] +K13021 ttuB; MFS transporter, ACS family, tartrate transporter +K13022 CPZ; carboxypeptidase Z [EC:3.4.17.-] +K13023 CPN2; carboxypeptidase N regulatory subunit +K13024 PPIP5K, VIP; inositol-hexakisphosphate/diphosphoinositol-pentakisphosphate 1-kinase [EC:2.7.4.24] +K13025 EIF4A3, FAL1; ATP-dependent RNA helicase [EC:5.6.2.7] +K13026 DHX57; ATP-dependent RNA helicase DHX57 [EC:5.6.2.6] +K13027 CYP79A1; tyrosine N-monooxygenase [EC:1.14.14.36] +K13028 oxdA; aliphatic aldoxime dehydratase [EC:4.8.1.2] +K13029 CYP71E1; 4-hydroxyphenylacetaldehyde oxime monooxygenase [EC:1.14.14.37] +K13030 UGT85B1; cyanohydrin beta-glucosyltransferase [EC:2.4.1.85] +K13031 AH; amygdalin beta-glucosidase [EC:3.2.1.117] +K13032 PH; prunasin beta-glucosidase [EC:3.2.1.118] +K13033 HNL; (S)-hydroxynitrile lyase [EC:4.1.2.47] +K13034 ATCYSC1; L-3-cyanoalanine synthase/ cysteine synthase [EC:2.5.1.47 4.4.1.9] +K13035 NIT4; beta-cyano-L-alanine hydratase/nitrilase [EC:3.5.5.4 4.2.1.65] +K13037 bacD; L-alanine-L-anticapsin ligase [EC:6.3.2.49] +K13038 coaBC, dfp; phosphopantothenoylcysteine decarboxylase / phosphopantothenate---cysteine ligase [EC:4.1.1.36 6.3.2.5] +K13039 comE; sulfopyruvate decarboxylase subunit beta [EC:4.1.1.79] +K13040 ttrS; two-component system, LuxR family, sensor histidine kinase TtrS [EC:2.7.13.3] +K13041 ttrR; two-component system, LuxR family, response regulator TtrR +K13042 bsmB; dimethylglycine N-methyltransferase [EC:2.1.1.161] +K13043 argF; N-succinyl-L-ornithine transcarbamylase [EC:2.1.3.11] +K13044 HNRNPABD; heterogeneous nuclear ribonucleoprotein A/B/D +K13045 tld; tolloid [EC:3.4.24.-] +K13046 tok; tolkin [EC:3.4.24.-] +K13047 TLL2; tolloid-like protein 2 [EC:3.4.24.-] +K13048 cps; carboxypeptidase Ss1 [EC:3.4.17.-] +K13049 PM20D1; carboxypeptidase PM20D1 [EC:3.4.17.-] +K13050 PCSK9; proprotein convertase subtilisin/kexin type 9 [EC:3.4.21.-] +K13051 ASRGL1, iaaA; L-asparaginase / beta-aspartyl-peptidase [EC:3.5.1.1 3.4.19.5] +K13052 divIC, divA; cell division protein DivIC +K13053 sulA; cell division inhibitor SulA +K13054 REC8L; meiotic recombination protein REC8, animal type +K13055 STAG3; cohesin complex subunit SA-3 +K13056 C3H-4; CCCH zinc finger protein C3H-4 +K13057 treT; trehalose synthase [EC:2.4.1.245] +K13058 mfpsA; mannosylfructose-phosphate synthase [EC:2.4.1.246] +K13059 nahK, lnpB; N-acetylhexosamine 1-kinase [EC:2.7.1.162] +K13060 lasI; acyl homoserine lactone synthase [EC:2.3.1.184] +K13061 rhlI, phzI, solI, cepI, tofI; acyl homoserine lactone synthase [EC:2.3.1.184] +K13062 ainS, luxM; acyl homoserine lactone synthase [EC:2.3.1.184] +K13063 phzE; 2-amino-4-deoxychorismate synthase [EC:2.6.1.86] +K13064 PTAL; phenylalanine/tyrosine ammonia-lyase [EC:4.3.1.25] +K13065 E2.3.1.133, HCT; shikimate O-hydroxycinnamoyltransferase [EC:2.3.1.133] +K13066 COMT; caffeic acid 3-O-methyltransferase / acetylserotonin O-methyltransferase [EC:2.1.1.68 2.1.1.4] +K13067 ATTSM1; putative caffeoyl-CoA 3-O-methyltransferase [EC:2.1.1.-] +K13068 BRT1; sinapate 1-glucosyltransferase [EC:2.4.1.120] +K13069 E2.7.7.65; diguanylate cyclase [EC:2.7.7.65] +K13070 MAS; momilactone-A synthase [EC:1.1.1.295] +K13071 PAO, ACD1; pheophorbide a oxygenase [EC:1.14.15.17] +K13072 CCL25; C-C motif chemokine 25 +K13073 PIGR; polymeric immunoglobulin receptor +K13074 CYP158A2; biflaviolin synthase [EC:1.14.19.69] +K13075 ahlD, aiiA, attM, blcC; N-acyl homoserine lactone hydrolase [EC:3.1.1.81] +K13076 SLD; sphingolipid 8-(E)-desaturase [EC:1.14.19.18] +K13077 FNSI; flavone synthase I [EC:1.14.20.5] +K13078 DICGT; chalcononaringenin 2'-O-glucosyltransferase [EC:2.4.1.-] +K13079 AS1; aureusidin synthase [EC:1.21.3.6] +K13080 C12RT1; flavanone 7-O-glucoside 2''-O-beta-L-rhamnosyltransferase [EC:2.4.1.236] +K13081 LAR; leucoanthocyanidin reductase [EC:1.17.1.3] +K13082 DFR; bifunctional dihydroflavonol 4-reductase/flavanone 4-reductase [EC:1.1.1.219 1.1.1.234] +K13083 CYP75A; flavonoid 3',5'-hydroxylase [EC:1.14.14.81] +K13084 TMEM55; phosphatidylinositol-4,5-bisphosphate 4-phosphatase [EC:3.1.3.78] +K13085 ipgD, sopB; phosphatidylinositol-4,5-bisphosphate 4-phosphatase [EC:3.1.3.78] +K13086 mfppA; mannosylfructose-6-phosphate phosphatase [EC:3.1.3.79] +K13087 BCLAF1; bcl2 associated transcription factor 1 +K13088 ELAVL1, HUR; ELAV-like protein 1 +K13089 ILF2; interleukin enhancer-binding factor 2 +K13090 ILF3; interleukin enhancer-binding factor 3 +K13091 RBM23_39; RNA-binding protein 23/39 +K13092 ZC3H18; nuclear protein NHN1 +K13093 HTATSF1; HIV Tat-specific factor 1 +K13094 RBM5_10; RNA-binding protein 5/10 +K13095 SF1; splicing factor 1 +K13096 SF4, SUGP1; splicing factor 4 +K13097 TET1; methylcytosine dioxygenase [EC:1.14.11.80] +K13098 TLS, FUS; RNA-binding protein FUS +K13099 CD2BP2, PPP1R59; CD2 antigen cytoplasmic tail-binding protein 2 +K13100 CWC22; pre-mRNA-splicing factor CWC22 +K13101 GPKOW; G patch domain and KOW motifs-containing protein +K13102 KIN; DNA/RNA-binding protein KIN17 +K13103 TFIP11; tuftelin-interacting protein 11 +K13104 ZNF830, CCDC16; zinc finger protein 830 +K13105 PRCC; proline-rich protein PRCC +K13106 BUD13, CWC26; pre-mRNA-splicing factor CWC26 +K13107 RBMX2, IST3; RNA-binding motif protein, X-linked 2 +K13108 SNIP1; smad nuclear-interacting protein 1 +K13109 IK, RED, RER; IK cytokine +K13110 MFAP1; microfibrillar-associated protein 1 +K13111 SMU1; WD40 repeat-containing protein SMU1 +K13112 THRAP3; thyroid hormone receptor-associated protein 3 +K13113 UBL5, HUB1; ubiquitin-like protein 5 +K13114 PNN; pinin +K13115 CCDC130; coiled-coil domain-containing protein 130 +K13116 DDX41, ABS; ATP-dependent RNA helicase DDX41 [EC:5.6.2.7] +K13117 DHX35; ATP-dependent RNA helicase DDX35 [EC:5.6.2.6] +K13118 DGCR14; protein DGCR14 +K13119 FAM50, XAP5; protein FAM50 +K13120 FAM32A; protein FAM32A +K13121 FRA10AC1; protein FRA10AC1 +K13122 FRG1; protein FRG1 +K13123 GPATCH1; G patch domain-containing protein 1 +K13124 MORG1; mitogen-activated protein kinase organizer 1 +K13125 NOSIP; nitric oxide synthase-interacting protein +K13126 PABPC; polyadenylate-binding protein +K13127 RNF113A, CWC24; RING finger protein 113A +K13128 ZCCHC8; zinc finger CCHC domain-containing protein 8 +K13129 SMN; survival motor neuron protein +K13130 GEMIN2, SIP1; gem associated protein 2 +K13131 DDX20, GEMIN3; ATP-dependent RNA helicase DDX20 [EC:5.6.2.7] +K13132 GEMIN4; gem associated protein 4 +K13133 GEMIN5; gem associated protein 5 +K13134 GEMIN6, SIP2; gem associated protein 6 +K13135 GEMIN7, SIP3; gem associated protein 7 +K13136 GEMIN8; gem associated protein 8 +K13137 STRAP, UNRIP; serine-threonine kinase receptor-associated protein +K13138 INTS1; integrator complex subunit 1 +K13139 INTS2; integrator complex subunit 2 +K13140 INTS3; integrator complex subunit 3 +K13141 INTS4; integrator complex subunit 4 +K13142 INTS5; integrator complex subunit 5 +K13143 INTS6, DDX26; integrator complex subunit 6 +K13144 INTS7; integrator complex subunit 7 +K13145 INTS8; integrator complex subunit 8 +K13146 INTS9; integrator complex subunit 9 +K13147 INTS10; integrator complex subunit 10 +K13148 CPSF3L, INTS11; integrator complex subunit 11 [EC:3.1.27.-] +K13149 INTS12; integrator complex subunit 12 +K13150 COIL, CLN80; coilin +K13151 SNUPN, RNUT1; snurportin-1 +K13152 ZMAT5; U11/U12 small nuclear ribonucleoprotein 20 kDa protein +K13153 SNRNP25; U11/U12 small nuclear ribonucleoprotein 25 kDa protein +K13154 ZCRB1; U11/U12 small nuclear ribonucleoprotein 31 kDa protein +K13155 SNRNP35; U11/U12 small nuclear ribonucleoprotein 35 kDa protein +K13156 SNRNP48; U11/U12 small nuclear ribonucleoprotein 48 kDa protein +K13157 RNPC3; U11/U12 small nuclear ribonucleoprotein 65 kDa protein +K13158 HNRNPA2B1; heterogeneous nuclear ribonucleoprotein A2/B1 +K13159 HNRNPL; heterogeneous nuclear ribonucleoprotein L +K13160 SYNCRIP, HNRNPQ; heterogeneous nuclear ribonucleoprotein Q +K13161 HNRNPR; heterogeneous nuclear ribonucleoprotein R +K13162 PCBP2; poly(rC)-binding protein 2 +K13163 MSL1; male-specific lethal 1 +K13164 MSL2; male-specific lethal 2 +K13165 SREK1, SFRS12; splicing regulatory glutamine/lysine-rich protein 1 +K13166 SUGP2, SFRS14; SURP and G-patch domain-containing protein 2 +K13167 SCAF4, SFRS15; SR-related and CTD-associated factor 4 +K13168 CLASRP, SFRS16; CLK4-associating serine/arginine rich protein +K13169 AKAP17, SFRS17; A-kinase anchor protein 17 +K13170 PNISR, SFRS18; arginine/serine-rich protein PNISR +K13171 SRRM1, SRM160; serine/arginine repetitive matrix protein 1 +K13172 SRRM2, SRM300; serine/arginine repetitive matrix protein 2 +K13173 ARGLU1; arginine and glutamate-rich protein 1 +K13174 THOC5; THO complex subunit 5 +K13175 THOC6; THO complex subunit 6 +K13176 THOC7; THO complex subunit 7 +K13177 DDX1; ATP-dependent RNA helicase DDX1 [EC:5.6.2.7] +K13178 DDX17; ATP-dependent RNA helicase DDX17 [EC:5.6.2.7] +K13179 DDX18, HAS1; ATP-dependent RNA helicase DDX18/HAS1 [EC:5.6.2.7] +K13180 INTS6L, DDX26B; integrator complex subunit 6-like +K13181 DDX27, DRS1; ATP-dependent RNA helicase DDX27 [EC:5.6.2.7] +K13182 DDX39; ATP-dependent RNA helicase DDX39 [EC:5.6.2.7] +K13183 DDX50; ATP-dependent RNA helicase DDX50 [EC:5.6.2.7] +K13184 DHX9; ATP-dependent RNA/DNA helicase DHX9 [EC:5.6.2.6 5.6.2.4] +K13185 DHX30; ATP-dependent RNA helicase DHX30 [EC:5.6.2.6] +K13186 RBM3; RNA-binding protein 3 +K13187 RBM4; RNA-binding protein 4 +K13188 RBM7; RNA-binding protein 7 +K13189 RBM14; RNA-binding protein 14 +K13190 RBM15; RNA-binding protein 15 +K13191 RBM16, SCAF8; RNA-binding protein 16 +K13192 RBM26; RNA-binding protein 26 +K13193 RBM27; RNA-binding protein 27 +K13194 ADARB; double stranded RNA-specific editase B [EC:3.5.-.-] +K13195 CIRBP; cold-inducible RNA-binding protein +K13196 DPF2, REQ; zinc finger protein ubi-d4 +K13197 IGF2BP3; insulin-like growth factor 2 mRNA-binding protein 3 +K13198 KHDRBS1; KH domain-containing, RNA-binding, signal transduction-associated protein 1 +K13199 SERBP1; plasminogen activator inhibitor 1 RNA-binding protein +K13200 STRBP; spermatid perinuclear RNA-binding protein +K13201 TIA1, TIAL1; nucleolysin TIA-1/TIAR +K13202 TOE1; target of EGR1 protein 1 +K13203 ZFR; zinc finger RNA-binding protein +K13204 ZNF326; zinc finger protein 326 +K13205 AAR2, C20orf4; A1 cistron-splicing factor AAR2 +K13206 CCDC55; coiled-coil domain-containing protein 55 +K13207 CUGBP, BRUNOL, CELF; CUG-BP- and ETR3-like factor +K13208 ELAVL2_3_4; ELAV like protein 2/3/4 +K13209 EWSR1; RNA-binding protein EWS +K13210 FUBP; far upstream element-binding protein +K13211 GCFC; GC-rich sequence DNA-binding factor +K13212 LUC7L2; RNA-binding protein Luc7-like 2 +K13213 MATR3; matrin 3 +K13214 NONO, NRB54; non-POU domain-containing octamer-binding protein +K13215 NRIP2; nuclear receptor-interacting protein 2 +K13216 PPP1R8, NIPP1; nuclear inhibitor of protein phosphatase 1 [EC:3.1.4.-] +K13217 PRPF39, PRP39; pre-mRNA-processing factor 39 +K13218 PTBP1, PTB; polypyrimidine tract-binding protein 1 +K13219 SFPQ, PSF; splicing factor, proline- and glutamine-rich +K13220 WBP4, FBP21; WW domain-binding protein 4 +K13221 WDR77, MEP50; methylosome protein 50 +K13222 BX1, IGL; indole-3-glycerol-phosphate lyase [EC:4.1.2.8] +K13223 BX2, CYP71C4, CYP71C9; indole-2-monooxygenase [EC:1.14.14.153] +K13224 BX3, CYP71C2, CYP71C7; indolin-2-one monooxygenase [EC:1.14.14.157] +K13225 BX4, CYP71C1, CYP71C6; 3-hydroxyindolin-2-one monooxygenase [EC:1.14.14.109] +K13226 BX5, CYP71C3, CYP71C8; 2-hydroxy-1,4-benzoxazin-3-one monooxygenase [EC:1.14.14.110] +K13227 BX8_9; UDP-glucosyltransferase BX8/BX9 [EC:2.4.1.202] +K13229 BX6; 2,4-dihydroxy-1,4-benzoxazin-3-one-glucoside dioxygenase [EC:1.14.11.59] +K13230 BX7; 2,4,7-trihydroxy-1,4-benzoxazin-3-one-glucoside 7-O-methyltransferase [EC:2.1.1.241] +K13231 STS; pinosylvin synthase [EC:2.3.1.146] +K13232 ST; stilbene synthase [EC:2.3.1.95] +K13233 DCS; phenylpropanoylacetyl-CoA synthase [EC:2.3.1.218] +K13234 CURS1_2; curcumin synthase [EC:2.3.1.217] +K13235 CAUGT2; UDP-glucose glucosyltransferase [EC:2.4.1.-] +K13236 DECR1; 2,4-dienoyl-CoA reductase [(3E)-enoyl-CoA-producing], mitochondrial [EC:1.3.1.124] +K13237 DECR2, SPS19; 2,4-dienoyl-CoA reductase [(3E)-enoyl-CoA-producing], peroxisomal [EC:1.3.1.124] +K13238 ECI1, DCI; Delta3-Delta2-enoyl-CoA isomerase [EC:5.3.3.8] +K13239 ECI2, PECI; Delta3-Delta2-enoyl-CoA isomerase [EC:5.3.3.8] +K13240 NOS1; nitric-oxide synthase, brain [EC:1.14.13.39] +K13241 NOS2; nitric-oxide synthase, inducible [EC:1.14.13.39] +K13242 NOS3; nitric-oxide synthase, endothelial [EC:1.14.13.39] +K13243 dos, pdeO; c-di-GMP-specific phosphodiesterase [EC:3.1.4.52] +K13244 pdeL; c-di-GMP-specific phosphodiesterase [EC:3.1.4.52] +K13245 pdeA; c-di-GMP-specific phosphodiesterase [EC:3.1.4.52] +K13246 vieA; c-di-GMP phosphodiesterase [EC:3.1.4.52] +K13247 CRYL1; L-gulonate 3-dehydrogenase [EC:1.1.1.45] +K13248 PHOSPHO2; pyridoxal phosphate phosphatase PHOSPHO2 [EC:3.1.3.74] +K13249 SSR1; translocon-associated protein subunit alpha +K13250 SSR2; translocon-associated protein subunit beta +K13251 SSR3; translocon-associated protein subunit gamma +K13252 ptcA; putrescine carbamoyltransferase [EC:2.1.3.6] +K13254 SPAST; spastin [EC:5.6.1.1] +K13255 fhuF; ferric iron reductase protein FhuF +K13256 psiE; protein PsiE +K13257 CYP93C; 2-hydroxyisoflavanone synthase [EC:1.14.14.87] +K13258 HIDH; 2-hydroxyisoflavanone dehydratase [EC:4.2.1.105] +K13259 HI4OMT; 2,7,4'-trihydroxyisoflavanone 4'-O-methyltransferase / isoflavone 4'-O-methyltransferase [EC:2.1.1.212 2.1.1.46] +K13260 CYP81E; isoflavone/4'-methoxyisoflavone 2'-hydroxylase [EC:1.14.14.90 1.14.14.89] +K13261 CYP93A1; 3,9-dihydroxypterocarpan 6a-monooxygenase [EC:1.14.14.93] +K13262 7-IOMT; isoflavone-7-O-methyltransferase [EC:2.1.1.150] +K13263 IF7GT; isoflavone 7-O-glucosyltransferase [EC:2.4.1.170] +K13264 IF7MAT; isoflavone 7-O-glucoside-6''-O-malonyltransferase [EC:2.3.1.115] +K13265 VR; vestitone reductase [EC:1.1.1.348] +K13266 PTR; pterocarpan reductase [EC:1.23.1.-] +K13267 CYP71D9, F6H; flavonoid 6-hydroxylase [EC:1.14.13.-] +K13269 E2.4.1.234; kaempferol 3-O-beta-D-galactosyltransferase [EC:2.4.1.234] +K13270 E2.8.2.25; flavonol 3-sulfotransferase [EC:2.8.2.25] +K13271 E2.8.2.27; flavonol 4'-sulfotransferase [EC:2.8.2.27] +K13272 AOMT, CROMT2; flavonoid O-methyltransferase [EC:2.1.1.267] +K13273 PMVK; phosphomevalonate kinase [EC:2.7.4.2] +K13274 wprA; cell wall-associated protease [EC:3.4.21.-] +K13275 isp; major intracellular serine protease [EC:3.4.21.-] +K13276 bpr; bacillopeptidase F [EC:3.4.21.-] +K13277 epr; minor extracellular protease Epr [EC:3.4.21.-] +K13278 ASPG; 60kDa lysophospholipase [EC:3.1.1.5 3.1.1.47 3.5.1.1] +K13279 PRDX1; peroxiredoxin 1 [EC:1.11.1.24] +K13280 SEC11, sipW; signal peptidase I [EC:3.4.21.89] +K13281 uvsE, UVE1; UV DNA damage endonuclease [EC:3.-.-.-] +K13282 cphB; cyanophycinase [EC:3.4.15.6] +K13283 fieF; ferrous-iron efflux pump FieF +K13284 sipA, ipaA; invasin A +K13285 sipB, ipaB, bipB; invasin B +K13286 sipC, ipaC, bipC; invasin C +K13287 sipD, ipaD, bipD; invasin D +K13288 orn, REX2, REXO2; oligoribonuclease [EC:3.1.-.-] +K13289 CTSA, CPY; cathepsin A (carboxypeptidase C) [EC:3.4.16.5] +K13290 K13290; serine---pyruvate transaminase [EC:2.6.1.51] +K13291 TUT; terminal uridylyltransferase [EC:2.7.7.52] +K13292 lgt, umpA; phosphatidylglycerol---prolipoprotein diacylglyceryl transferase [EC:2.5.1.145] +K13293 PDE4; cAMP-specific phosphodiesterase 4 [EC:3.1.4.53] +K13294 PDEB2, PDE2B; cAMP-specific phosphodiesterase [EC:3.1.4.53] +K13295 APLF; aprataxin and PNK-like factor [EC:3.1.-.-] +K13296 PDE3B; cGMP-inhibited 3',5'-cyclic phosphodiesterase B [EC:3.1.4.17] +K13297 PTPRT; receptor-type tyrosine-protein phosphatase T [EC:3.1.3.48] +K13298 PDE11; dual 3',5'-cyclic-AMP and -GMP phosphodiesterase 11 [EC:3.1.4.17 3.1.4.35] +K13299 GSTK1; glutathione S-transferase kappa 1 [EC:2.5.1.18] +K13300 cccA; cytochrome c550 +K13301 secM; secretion monitor +K13302 SGK1; serum/glucocorticoid-regulated kinase 1 [EC:2.7.11.1] +K13303 SGK2; serum/glucocorticoid-regulated kinase 2 [EC:2.7.11.1] +K13304 SGK3; serum/glucocorticoid-regulated kinase 3 [EC:2.7.11.1] +K13305 NEDD4L; E3 ubiquitin-protein ligase NEDD4-like [EC:2.3.2.26] +K13306 fcd; dTDP-4-dehydro-6-deoxyglucose reductase [EC:1.1.1.266] +K13307 tylMI; dTDP-3-amino-3,6-dideoxy-alpha-D-glucopyranose N,N-dimethyltransferase [EC:2.1.1.235] +K13308 desI, eryCIV; dTDP-4-amino-4,6-dideoxy-D-glucose transaminase [EC:2.6.1.33] +K13309 desII, eryCV; dTDP-4-amino-4,6-dideoxy-D-glucose ammonia-lyase [EC:4.3.1.30] +K13310 desV, eryCI; dTDP-3-amino-3,4,6-trideoxy-alpha-D-glucose transaminase [EC:2.6.1.106] +K13311 desVI, eryCVI; dTDP-3-amino-3,4,6-trideoxy-alpha-D-glucopyranose N,N-dimethyltransferase [EC:2.1.1.234] +K13312 tylJ, gerF; dTDP-4-dehydro-6-deoxy-D-glucose 3-epimerase [EC:5.1.3.27] +K13313 tylD, gerKI, mydI; dTDP-4-dehydro-6-deoxy-alpha-D-gulose 4-ketoreductase [EC:1.1.1.364] +K13315 eryBII, tylCII, tylC1, calS12, atmS12; NDP-hexose C3-ketoreductase / dTDP-4-oxo-2-deoxy-alpha-D-pentos-2-ene 2,3-reductase [EC:1.1.1.-] +K13316 tylCVII, tylK; NDP-hexose 5-epimerase [EC:5.1.3.-] +K13317 eryBIII, tylCIII, tylC3; NDP-4-keto-2,6-dideoxyhexose 3-C-methyltransferase [EC:2.1.1.-] +K13318 eryBIV, tylCIV, tylC2; dTDP-4-keto-6-deoxy-L-hexose 4-reductase [EC:1.1.1.-] +K13319 oleU; 4-ketoreductase +K13320 oleY; L-olivosyl-oleandolide 3-O-methyltransferase [EC:2.1.1.239] +K13322 megDV; dTDP-4-keto-6-deoxyhexose 4-ketoreductase +K13326 megDIII; dTDP-3-amino-2,3,6-trideoxy-4-keto-D-glucose/dTDP-3-amino-3,4,6-trideoxy-alpha-D-glucopyranose N,N-dimethyltransferase [EC:2.1.1.- 2.1.1.234] +K13327 spnN, oleW; dTDP-3,4-didehydro-2,6-dideoxy-alpha-D-glucose 3-reductase [EC:1.1.1.384] +K13328 spnQ; dTDP-4-dehydro-2,6-dideoxy-D-glucose 3-dehydratase [EC:4.2.1.164] +K13329 spnR; dTDP-4-dehydro-2,3,6-trideoxy-D-glucose 4-aminotransferase [EC:2.6.1.110] +K13330 spnS; dTDP-4-amino-2,3,4,6-tetradeoxy-D-glucose N,N-dimethyltransferase [EC:2.1.1.324] +K13332 angMI; N,N-dimethyltransferase +K13333 PLB; lysophospholipase [EC:3.1.1.5] +K13334 CLC; eosinophil lysophospholipase (galectin-10) [EC:3.1.1.5] +K13335 PEX16; peroxin-16 +K13336 PEX3; peroxin-3 +K13337 PEX19; peroxin-19 +K13338 PEX1; peroxin-1 +K13339 PEX6, PXAAA1; peroxin-6 +K13340 PEX26; peroxin-26 +K13341 PEX7, PTS2R; peroxin-7 +K13342 PEX5, PXR1; peroxin-5 +K13343 PEX14; peroxin-14 +K13344 PEX13; peroxin-13 +K13345 PEX12, PAF3; peroxin-12 +K13346 PEX10; peroxin-10 +K13347 PXMP2, PMP22; peroxisomal membrane protein 2 +K13348 MPV17; protein Mpv17 +K13349 MPV17L; Mpv17-like protein +K13350 PXMP4, PMP24; peroxisomal membrane protein 4 +K13351 PEX11A; peroxin-11A +K13352 PEX11B; peroxin-11B +K13353 PEX11C; peroxin-11C +K13354 SLC25A17, PMP34; solute carrier family 25 (peroxisomal adenine nucleotide transporter), member 17 +K13355 NUDT19; acyl-coenzyme A diphosphatase NUDT19, mitochondrial [EC:3.6.1.77] +K13356 FAR; alcohol-forming fatty acyl-CoA reductase [EC:1.2.1.84] +K13357 SPO1; putative meiotic phospholipase SPO1 [EC:3.1.1.-] +K13358 SLC9A3R2, NHERF2; sodium/hydrogen exchange regulatory cofactor NHE-RF2 +K13359 FXYD4, CHIF; FXYD domain containing ion transport regulator 4 +K13360 FXYD1, PLM; FXYD domain-containing ion transport regulator 1 +K13361 FXYD3, MAT8; FXYD domain-containing ion transport regulator 3 +K13362 FXYD5, DYSAD; FXYD domain-containing ion transport regulator 5 +K13363 FXYD6; FXYD domain-containing ion transport regulator 6 +K13364 FXYD7; FXYD domain-containing ion transport regulator 7 +K13365 SLC9A3R1, NHERF1; sodium/hydrogen exchange regulatory cofactor NHE-RF1 +K13366 MPAO, PAO1; polyamine oxidase [EC:1.5.3.14 1.5.3.16 1.5.3.-] +K13367 FMS1; polyamine oxidase [EC:1.5.3.17] +K13368 HSD17B2; 17beta-estradiol 17-dehydrogenase / 3alpha(17beta)-hydroxysteroid dehydrogenase (NAD+) [EC:1.1.1.62 1.1.1.239] +K13369 HSD17B6; 17beta-estradiol 17-dehydrogenase / all-trans-retinol dehydrogenase (NAD+) / 3alpha(17beta)-hydroxysteroid dehydrogenase (NAD+) [EC:1.1.1.62 1.1.1.105 1.1.1.239] +K13370 HSD17B8; 17beta-estradiol 17-dehydrogenase / 3alpha(17beta)-hydroxysteroid dehydrogenase (NAD+) / 3-oxoacyl-[acyl-carrier protein] reductase alpha subunit [EC:1.1.1.62 1.1.1.239] +K13371 aauA; aralkylamine dehydrogenase light chain [EC:1.4.9.2] +K13372 aauB; aralkylamine dehydrogenase heavy chain [EC:1.4.9.2] +K13373 HSD17B7; 17beta-estradiol 17-dehydrogenase / 3beta-hydroxysteroid 3-dehydrogenase [EC:1.1.1.62 1.1.1.270] +K13374 AKR1C13; aldo-keto reductase family 1 member C13 [EC:1.1.1.218] +K13375 TGFB1; transforming growth factor beta-1 +K13376 TGFB2; transforming growth factor beta-2 +K13377 TGFB3; transforming growth factor beta-3 +K13378 nuoCD; NADH-quinone oxidoreductase subunit C/D [EC:7.1.1.2] +K13379 RGP, UTM; reversibly glycosylated polypeptide / UDP-arabinopyranose mutase [EC:2.4.1.- 5.4.99.30] +K13380 nuoBCD; NADH-quinone oxidoreductase subunit B/C/D [EC:7.1.1.2] +K13381 chiA; bifunctional chitinase/lysozyme [EC:3.2.1.14 3.2.1.17] +K13382 NCS; (S)-norcoclaurine synthase [EC:3.5.99.14] +K13383 E2.1.1.128; (RS)-norcoclaurine 6-O-methyltransferase [EC:2.1.1.128] +K13384 CNMT; (RS)-1-benzyl-1,2,3,4-tetrahydroisoquinoline N-methyltransferase [EC:2.1.1.115 2.1.1.140] +K13385 CYP80B1; N-methylcoclaurine 3'-monooxygenase [EC:1.14.14.102] +K13386 E2.1.1.116; 3'-hydroxy-N-methyl-(S)-coclaurine 4'-O-methyltransferase [EC:2.1.1.116] +K13387 CYP80A1; berbamunine synthase [EC:1.14.19.66] +K13389 CYP80G2; (S)-corytuberine synthase [EC:1.14.19.51] +K13390 PSOMT1; (R,S)-reticuline 7-O-methyltransferase [EC:2.1.1.291] +K13391 CYP719B1; salutaridine synthase [EC:1.14.19.67] +K13392 SALR; salutaridine reductase (NADPH) [EC:1.1.1.248] +K13393 SALAT; salutaridinol 7-O-acetyltransferase [EC:2.3.1.150] +K13394 COR1; codeinone reductase [EC:1.1.1.247] +K13395 CYP719A1_2_3_13; (S)-stylopine/(S)-canadine/(S)-nandinine synthase [EC:1.14.19.64 1.14.19.68 1.14.19.73] +K13396 E2.1.1.122; (S)-tetrahydroprotoberberine N-methyltransferase [EC:2.1.1.122] +K13397 SMT; (S)-scoulerine 9-O-methyltransferase [EC:2.1.1.117] +K13398 E2.1.1.118; columbamine O-methyltransferase [EC:2.1.1.118] +K13400 CYP72A1; secologanin synthase [EC:1.14.19.62] +K13401 CYP79D1_2; valine N-monooxygenase [EC:1.14.14.38] +K13402 MTHFD1L; monofunctional C1-tetrahydrofolate synthase, mitochondrial [EC:6.3.4.3] +K13403 MTHFD2; methylenetetrahydrofolate dehydrogenase(NAD+) / 5,10-methenyltetrahydrofolate cyclohydrolase [EC:1.5.1.15 3.5.4.9] +K13404 CYP76B1; 7-ethoxycoumarin O-deethylase [EC:1.14.-.-] +K13405 CYP82B1; (S)-N-methylcoclaurine 3'-hydroxylase +K13406 CYP93B1; flavanone 2-hydroxylase [EC:1.14.14.162] +K13407 CYP94A1; fatty acid omega-hydroxylase [EC:1.14.-.-] +K13408 cvaA, mchE, raxA; membrane fusion protein +K13409 cvaB, mchF, raxB; ATP-binding cassette, subfamily B, bacterial CvaB/MchF/RaxB +K13411 DUOX, THOX; dual oxidase [EC:1.6.3.1 1.11.1.-] +K13412 CPK; calcium-dependent protein kinase [EC:2.7.11.1] +K13413 MKK4_5; mitogen-activated protein kinase kinase 4/5 [EC:2.7.12.2] +K13414 MEKK1; mitogen-activated protein kinase kinase kinase 1 [EC:2.7.11.25] +K13415 BRI1; protein brassinosteroid insensitive 1 [EC:2.7.10.1 2.7.11.1] +K13416 BAK1; brassinosteroid insensitive 1-associated receptor kinase 1 [EC:2.7.10.1 2.7.11.1] +K13417 SERK4, BKK1; somatic embryogenesis receptor kinase 4 [EC:2.7.10.1 2.7.11.1] +K13418 SERK1; somatic embryogenesis receptor kinase 1 [EC:2.7.10.1 2.7.11.1] +K13419 pknK; serine/threonine-protein kinase PknK [EC:2.7.11.1] +K13420 FLS2; LRR receptor-like serine/threonine-protein kinase FLS2 [EC:2.7.11.1] +K13421 UMPS; uridine monophosphate synthetase [EC:2.4.2.10 4.1.1.23] +K13422 MYC2; transcription factor MYC2 +K13423 WRKY25; WRKY transcription factor 25 +K13424 WRKY33; WRKY transcription factor 33 +K13425 WRKY22; WRKY transcription factor 22 +K13426 WRKY29; WRKY transcription factor 29 +K13427 NOA1; nitric-oxide synthase, plant [EC:1.14.13.39] +K13428 EFR; LRR receptor-like serine/threonine-protein kinase EFR [EC:2.7.11.1] +K13429 CERK1; chitin elicitor receptor kinase 1 +K13430 PBS1; serine/threonine-protein kinase PBS1 [EC:2.7.11.1] +K13431 SRPR; signal recognition particle receptor subunit alpha +K13432 PTI4; pathogenesis-related genes transcriptional activator PTI4 +K13433 PTI5; pathogenesis-related genes transcriptional activator PTI5 +K13434 PTI6; pathogenesis-related genes transcriptional activator PTI6 +K13435 PTO; serine/threonine-protein kinase Pto +K13436 PTI1; pto-interacting protein 1 [EC:2.7.11.1] +K13437 XA21; receptor kinase-like protein +K13438 RETN; resistin +K13439 avrRpt2; cysteine protease avirulence protein AvrRpt2 [EC:3.4.22.-] +K13440 avrPphB; cysteine protease avirulence protein AvrPphB [EC:3.4.22.-] +K13441 RCR3; cysteine protease +K13442 CAPN14; calpain-14 [EC:3.4.22.-] +K13443 NPC2; Niemann-Pick C2 protein +K13444 SUMF1, FGE; formylglycine-generating enzyme [EC:1.8.3.7] +K13445 AVR9; race-specific elicitor A9 +K13446 CF9; disease resistance protein +K13447 RBOH; respiratory burst oxidase [EC:1.6.3.- 1.11.1.-] +K13448 CML; calcium-binding protein CML +K13449 PR1; pathogenesis-related protein 1 +K13450 ospF, mkaD, spvC; phosphothreonine lyase [EC:4.2.3.-] +K13451 avrPto1; type III effector protein AvrPto1 +K13452 hopAB, avrPtoB; effector protein HopAB [EC:6.3.2.-] +K13453 PRF; disease resistance protein +K13454 avrRpm1; type III effector protein AvrRpm1 +K13455 avrXccC, avrB; avirulence protein +K13456 RIN4; RPM1-interacting protein 4 +K13457 RPM1, RPS3; disease resistance protein RPM1 +K13458 RAR1; disease resistance protein +K13459 RPS2; disease resistance protein RPS2 +K13460 RPS5; disease resistance protein RPS5 +K13461 hopM1; effector protein HopM1 +K13462 MIN7; guanine nucleotide-exchange factor +K13463 COI-1; coronatine-insensitive protein 1 +K13464 JAZ; jasmonate ZIM domain-containing protein +K13465 EIX; ethylene-1,4-beta-xylanase [EC:3.2.1.8] +K13466 EIX1_2; EIX receptor 1/2 +K13467 AVR2; Avr2 protein +K13468 K13468, CF2; disease resistance protein +K13469 AVR4; race-specific elicitor A4 +K13470 CF4; disease resistance protein +K13471 CF5; disease resistance protein +K13472 raxST; sulfotransferase +K13473 CEBIP; chitin elicitor-binding protein +K13474 A10; AvrA10 protein +K13475 MLA10; R protein MLA10 +K13476 AvrL567; AvrL567 protein +K13477 L6; R protein L6 +K13478 popP2; type III effector protein PopP2 +K13479 ygeT, xdhB; xanthine dehydrogenase FAD-binding subunit [EC:1.17.1.4] +K13480 ygeU, xdhC; xanthine dehydrogenase iron-sulfur-binding subunit +K13481 xdhA; xanthine dehydrogenase small subunit [EC:1.17.1.4] +K13482 xdhB; xanthine dehydrogenase large subunit [EC:1.17.1.4] +K13483 yagT; xanthine dehydrogenase YagT iron-sulfur-binding subunit +K13484 TTHL; 5-hydroxyisourate hydrolase / 2-oxo-4-hydroxy-4-carboxy-5-ureidoimidazoline decarboxylase [EC:3.5.2.17 4.1.1.97] +K13485 PRHOXNB, URAD; 2-oxo-4-hydroxy-4-carboxy-5-ureidoimidazoline decarboxylase [EC:4.1.1.97] +K13486 wspC; chemotaxis protein methyltransferase WspC +K13487 wspA; methyl-accepting chemotaxis protein WspA +K13488 wspB; chemotaxis-related protein WspB +K13489 wspD; chemotaxis-related protein WspD +K13490 wspE; two-component system, chemotaxis family, sensor histidine kinase and response regulator WspE +K13491 wspF; two-component system, chemotaxis family, response regulator WspF [EC:3.1.1.61] +K13492 ZOG1; zeatin O-glucosyltransferase [EC:2.4.1.203] +K13493 UGT76C1_2; cytokinin-N-glucosyltransferase [EC:2.4.1.-] +K13494 ZOX1; zeatin O-xylosyltransferase [EC:2.4.2.40] +K13495 CISZOG; cis-zeatin O-glucosyltransferase [EC:2.4.1.215] +K13496 UGT73C; UDP-glucosyltransferase 73C [EC:2.4.1.-] +K13497 trpGD; anthranilate synthase/phosphoribosyltransferase [EC:4.1.3.27 2.4.2.18] +K13498 trpCF; indole-3-glycerol phosphate synthase / phosphoribosylanthranilate isomerase [EC:4.1.1.48 5.3.1.24] +K13499 CHSY; chondroitin sulfate synthase [EC:2.4.1.175 2.4.1.226] +K13500 fcbD; chondroitin synthase [EC:2.4.1.175 2.4.1.226] +K13501 TRP1; anthranilate synthase / indole-3-glycerol phosphate synthase / phosphoribosylanthranilate isomerase [EC:4.1.3.27 4.1.1.48 5.3.1.24] +K13502 STX4; syntaxin 4 +K13503 trpEG; anthranilate synthase [EC:4.1.3.27] +K13504 VAMP2; vesicle-associated membrane protein 2 +K13505 VAMP3; vesicle-associated membrane protein 3 +K13506 GPAT3_4, AGPAT9, AGPAT6; glycerol-3-phosphate O-acyltransferase 3/4 [EC:2.3.1.15] +K13507 GAT; glycerol-3-phosphate O-acyltransferase / dihydroxyacetone phosphate acyltransferase [EC:2.3.1.15 2.3.1.42] +K13508 GPAT; glycerol-3-phosphate acyltransferase [EC:2.3.1.15 2.3.1.198] +K13509 AGPAT1_2; lysophosphatidate acyltransferase [EC:2.3.1.51] +K13510 LPCAT1_2; lysophosphatidylcholine acyltransferase / lyso-PAF acetyltransferase [EC:2.3.1.23 2.3.1.67] +K13511 TAZ; monolysocardiolipin acyltransferase [EC:2.3.1.-] +K13512 LPCAT4, AGPAT7; lysophospholipid acyltransferase [EC:2.3.1.23 2.3.1.-] +K13513 LCLAT1, AGPAT8; lysocardiolipin and lysophospholipid acyltransferase [EC:2.3.1.- 2.3.1.51] +K13514 LPGAT1; lysophosphatidylglycerol acyltransferase 1 [EC:2.3.1.-] +K13515 LPCAT3, MBOAT5; lysophospholipid acyltransferase 5 [EC:2.3.1.23 2.3.1.-] +K13516 MBOAT7; lysophospholipid acyltransferase 7 [EC:2.3.1.-] +K13517 MBOAT1_2; lysophospholipid acyltransferase 1/2 [EC:2.3.1.51 2.3.1.-] +K13519 LPT1, ALE1; lysophospholipid acyltransferase [EC:2.3.1.51 2.3.1.23 2.3.1.-] +K13520 icsP, sopA; outer membrane protease [EC:3.4.23.-] +K13521 CASP15; caspase 15 +K13522 K13522, nadM; bifunctional NMN adenylyltransferase/nudix hydrolase [EC:2.7.7.1 3.6.1.-] +K13523 AGPAT3_4; lysophosphatidic acid acyltransferase / lysophosphatidylinositol acyltransferase [EC:2.3.1.51 2.3.1.-] +K13524 ABAT; 4-aminobutyrate aminotransferase / (S)-3-amino-2-methylpropionate transaminase [EC:2.6.1.19 2.6.1.22] +K13525 VCP, CDC48; transitional endoplasmic reticulum ATPase +K13526 ATP13A2; cation-transporting P-type ATPase 13A2 [EC:7.2.2.-] +K13527 mpa; proteasome-associated ATPase +K13528 MED20; mediator of RNA polymerase II transcription subunit 20 +K13529 ada-alkA; AraC family transcriptional regulator, regulatory protein of adaptative response / DNA-3-methyladenine glycosylase II [EC:3.2.2.21] +K13530 adaA; AraC family transcriptional regulator, regulatory protein of adaptative response / methylphosphotriester-DNA alkyltransferase methyltransferase [EC:2.1.1.-] +K13531 adaB; methylated-DNA-[protein]-cysteine S-methyltransferase [EC:2.1.1.63] +K13532 kinD; two-component system, sporulation sensor kinase D [EC:2.7.13.3] +K13533 kinE; two-component system, sporulation sensor kinase E [EC:2.7.13.3] +K13534 PNPLA3; patatin-like phospholipase domain-containing protein 3 [EC:3.1.1.3 2.3.1.-] +K13535 CLD1; cardiolipin-specific phospholipase [EC:3.1.1.-] +K13536 MARCKSL1, MRP; MARCKS-related protein +K13537 CPB; cysteine peptidase B [EC:3.4.22.-] +K13538 CPA; cysteine peptidase A [EC:3.4.22.-] +K13539 LMLN; leishmanolysin-like peptidase [EC:3.4.24.-] +K13540 cobIJ; precorrin-2 C20-methyltransferase / precorrin-3B C17-methyltransferase [EC:2.1.1.130 2.1.1.131] +K13541 cbiGH-cobJ; cobalt-precorrin 5A hydrolase / cobalt-factor III methyltransferase / precorrin-3B C17-methyltransferase [EC:3.7.1.12 2.1.1.272 2.1.1.131] +K13542 cobA-hemD; uroporphyrinogen III methyltransferase / synthase [EC:2.1.1.107 4.2.1.75] +K13543 hemDX; uroporphyrinogen III methyltransferase / synthase [EC:2.1.1.107 4.2.1.75] +K13544 PPD, MES16; pheophorbidase [EC:3.1.1.82] +K13545 RCCR, ACD2; red chlorophyll catabolite reductase [EC:1.3.7.12] +K13546 btrC, neoC, kanC; 2-deoxy-scyllo-inosose synthase [EC:4.2.3.124] +K13547 btrR, neoB, kanB; L-glutamine:2-deoxy-scyllo-inosose/3-amino-2,3-dideoxy-scyllo-inosose aminotransferase [EC:2.6.1.100 2.6.1.101] +K13548 neoA, kanK; 2-deoxy-scyllo-inosamine dehydrogenase [EC:1.1.1.329] +K13549 btrN; 2-deoxy-scyllo-inosamine dehydrogenase (SAM-dependent) [EC:1.1.99.38] +K13550 btrM, neoD, kanF; 2-deoxystreptamine N-acetyl-D-glucosaminyltransferase / 2-deoxystreptamine glucosyltransferase [EC:2.4.1.283 2.4.1.284] +K13551 btrD; 2'-N-acetylparomamine deacetylase [EC:3.5.1.112] +K13552 btrQ; paromamine 6'-oxidase [EC:1.1.3.43] +K13553 btrB; neamine transaminase [EC:2.6.1.93] +K13554 btrL, neoM; neamine phosphoribosyltransferase [EC:2.4.2.49] +K13555 btrP, neoI; 5''-phosphoribostamycin phosphatase [EC:3.1.3.88] +K13556 neoK; UDP-N-acetyl-D-glucosamine:ribostamycin N-acetyl-D-glucosaminyltransferase [EC:2.4.1.285] +K13557 neoN, neoH; neomycin C epimerase [EC:5.1.3.-] +K13558 btrI; acyl carrier protein BtrI +K13559 btrJ; [BtrI acyl-carrier protein]--L-glutamate ligase [EC:6.2.1.39] +K13560 btrK; L-glutamyl-[BtrI acyl-carrier protein] decarboxylase [EC:4.1.1.95] +K13561 btrO; 4-(gamma-L-glutamylamino)butanoyl-[BtrI acyl-carrier protein] monooxygenase [EC:1.14.14.13] +K13562 btrV, btrU; NAD(P)H:FMN oxidoreductase [EC:1.5.1.-] +K13563 btrH; ribostamycin:4-(gamma-L-glutamylamino)-(S)-2-hydroxybutanoyl-[BtrI acyl-carrier protein] 4-(gamma-L-glutamylamino)-(S)-2-hydroxybutanoate transferase [EC:2.3.2.19] +K13564 btrG; gamma-L-glutamyl-butirosin B gamma-L-glutamyl cyclotransferase [EC:4.3.2.6] +K13565 LEPGT; 4-hydroxybenzoate geranyltransferase [EC:2.5.1.93] +K13566 NIT2, yafV; omega-amidase [EC:3.5.1.3] +K13567 ACVR1B, ALK4; activin receptor type-1B [EC:2.7.11.30] +K13568 ACVR1C, ALK7; activin receptor type-1C [EC:2.7.11.30] +K13570 pup; prokaryotic ubiquitin-like protein Pup +K13571 pafA; proteasome accessory factor A [EC:6.3.1.19] +K13572 pafB; proteasome accessory factor B +K13573 pafC; proteasome accessory factor C +K13574 hcxB; hydroxycarboxylate dehydrogenase B [EC:1.1.1.237 1.1.1.-] +K13575 SLC4A4, NBC1; solute carrier family 4 (sodium bicarbonate cotransporter), member 4 +K13576 SLC38A3, SNAT3; solute carrier family 38 (sodium-coupled neutral amino acid transporter), member 3 +K13577 SLC25A10, DIC; solute carrier family 25 (mitochondrial dicarboxylate transporter), member 10 +K13578 BMPR1B, ALK6, CDw293; bone morphogenetic protein receptor type-1B [EC:2.7.11.30] +K13580 K13580; magnesium chelatase subunit ChlD-like protein +K13581 ccrM; modification methylase [EC:2.1.1.72] +K13582 podJ; localization factor PodJL +K13583 gcrA; GcrA cell cycle regulator +K13584 ctrA; two-component system, cell cycle response regulator CtrA +K13585 hfaA; holdfast attachment protein HfaA +K13586 hfaB; holdfast attachment protein HfaB +K13587 cckA; two-component system, cell cycle sensor histidine kinase and response regulator CckA [EC:2.7.13.3] +K13588 chpT; histidine phosphotransferase ChpT +K13589 cpdR; two-component system, cell cycle response regulator CpdR +K13590 dgcB; diguanylate cyclase [EC:2.7.7.65] +K13591 popA; two-component system, cell cycle response regulator PopA +K13592 rcdA; regulator of CtrA degradation +K13593 tipF; cyclic-di-GMP phosphodiesterase, flagellum assembly factor TipF +K13594 ACVRL1, ALK1; activin receptor-like kinase 1 [EC:2.7.11.30] +K13596 ACVR2B; activin receptor type-2B [EC:2.7.11.30] +K13598 ntrY; two-component system, NtrC family, nitrogen regulation sensor histidine kinase NtrY [EC:2.7.13.3] +K13599 ntrX; two-component system, NtrC family, nitrogen regulation response regulator NtrX +K13600 CAO; chlorophyllide a oxygenase [EC:1.14.13.122] +K13601 bchQ; bacteriochlorophyllide d C-8(2)-methyltransferase [EC:2.1.1.332] +K13602 bchR; bacteriochlorophyllide d C-12(1)-methyltransferase [EC:2.1.1.331] +K13603 bchV; 3-vinyl bacteriochlorophyllide hydratase [EC:4.2.1.169] +K13604 bchU; bacteriochlorophyllide d C-20 methyltransferase [EC:2.1.1.333] +K13605 bchK; bacteriochlorophyll c synthase [EC:2.5.1.-] +K13606 NOL, NYC1; chlorophyll(ide) b reductase [EC:1.1.1.294] +K13607 fldA; cinnamoyl-CoA:phenyllactate CoA-transferase [EC:2.8.3.17] +K13608 SNO; senecionine N-oxygenase [EC:1.14.13.101] +K13609 dpkA, lhpD; delta1-piperideine-2-carboxylate reductase [EC:1.5.1.21] +K13610 HMT; 13-hydroxylupinine O-tigloyltransferase [EC:2.3.1.93] +K13611 pksJ, baeJ; bacillaene biosynthesis, polyketide synthase / nonribosomal peptide synthetase PksJ/BaeJ +K13612 pksL, baeL; bacillaene polyketide synthase PksL/BaeL +K13613 pksM, baeM; bacillaene polyketide synthase PksM/BaeM +K13614 pksN, baeN; bacillaene biosynthesis, polyketide synthase / nonribosomal peptide synthetase PksN/BaeN +K13615 pksR, baeR; bacillaene polyketide synthase PksR/BaeR +K13616 AADAC; arylacetamide deacetylase [EC:3.1.1.3] +K13617 PPME1; protein phosphatase methylesterase 1 [EC:3.1.1.89] +K13618 PLA1A; phosphatidylserine sn-1 acylhydrolase [EC:3.1.1.111] +K13619 DDHD1; phospholipase DDHD1 [EC:3.1.1.118] +K13620 wcaD; putative colanic acid polymerase +K13621 BTA1; betaine lipid synthase +K13622 btaA; S-adenosylmethionine-diacylglycerol 3-amino-3-carboxypropyl transferase +K13623 btaB; S-adenosylmethionine-diacylgycerolhomoserine-N-methlytransferase +K13624 CP; ceruloplasmin [EC:1.16.3.1] +K13625 FTL; ferritin light chain +K13626 fliW; flagellar assembly factor FliW +K13627 SLC12A7, KCC4; solute carrier family 12 (potassium/chloride transporter), member 7 +K13628 iscA; iron-sulfur cluster assembly protein +K13629 dsdX; D-serine transporter +K13630 marB; multiple antibiotic resistance protein MarB +K13631 soxS; AraC family transcriptional regulator, mar-sox-rob regulon activator +K13632 marA; AraC family transcriptional regulator, mar-sox-rob regulon activator +K13633 ftrA; AraC family transcriptional regulator, transcriptional activator FtrA +K13634 cysB; LysR family transcriptional regulator, cys regulon transcriptional activator +K13635 cbl; LysR family transcriptional regulator, cys regulon transcriptional activator +K13636 dsdC; LysR family transcriptional regulator, D-serine deaminase activator +K13637 uxuR; GntR family transcriptional regulator, uxu operon transcriptional repressor +K13638 zntR; MerR family transcriptional regulator, Zn(II)-responsive regulator of zntA +K13639 soxR; MerR family transcriptional regulator, redox-sensitive transcriptional activator SoxR +K13640 hspR; MerR family transcriptional regulator, heat shock protein HspR +K13641 iclR; IclR family transcriptional regulator, acetate operon repressor +K13642 ftrB; CRP/FNR family transcriptional regulator, transcriptional activator FtrB +K13643 iscR; Rrf2 family transcriptional regulator, iron-sulfur cluster assembly transcription factor +K13644 CEPT1; choline/ethanolamine phosphotransferase [EC:2.7.8.1 2.7.8.2] +K13645 PLOD2; procollagen-lysine,2-oxoglutarate 5-dioxygenase 2 [EC:1.14.11.4] +K13646 PLOD3; lysyl hydroxylase/galactosyltransferase/glucosyltransferase [EC:1.14.11.4 2.4.1.50 2.4.1.66] +K13647 PLODN; procollagen-lysine,2-oxoglutarate 5-dioxygenase, invertebrate [EC:1.14.11.4] +K13648 GAUT; alpha-1,4-galacturonosyltransferase [EC:2.4.1.43] +K13649 FOLR; folate receptor +K13650 mcbA; MqsR-controlled colanic acid and biofilm protein A +K13651 mqsR; motility quorum-sensing regulator / GCU-specific mRNA interferase toxin +K13652 K13652; AraC family transcriptional regulator +K13653 K13653; AraC family transcriptional regulator +K13654 mcbR; GntR family transcriptional regulator, colanic acid and biofilm gene transcriptional regulator +K13655 mqsA; HTH-type transcriptional regulator / antitoxin MqsA +K13656 gumD; undecaprenyl-phosphate glucose phosphotransferase [EC:2.7.8.31] +K13657 gumH, aceA; alpha-1,3-mannosyltransferase [EC:2.4.1.252] +K13658 gumI; beta-1,4-mannosyltransferase [EC:2.4.1.251] +K13659 gumK; 2-beta-glucuronyltransferase [EC:2.4.1.264] +K13660 gumM; beta-1,4-glucosyltransferase [EC:2.4.1.-] +K13661 gumC; GumC protein +K13662 gumE; putative polymerase +K13663 gumF; acyltransferase [EC:2.3.1.-] +K13664 gumG; acyltransferase [EC:2.3.1.-] +K13665 gumL; pyruvyltransferase +K13666 OGNT; UDP-GlcNAc:polypeptide alpha-N-acetylglucosaminyltransferase [EC:2.4.1.-] +K13667 POGLUT1, RUMI, KTELC1; EGF-domain serine glucosyl/xylosyltransferase [EC:2.4.1.376 2.4.2.63] +K13668 pimB; phosphatidyl-myo-inositol dimannoside synthase [EC:2.4.1.346] +K13669 pimE; alpha-1,2-mannosyltransferase [EC:2.4.1.-] +K13670 pimF; putative glycosyltransferase [EC:2.4.-.-] +K13671 K13671; alpha-1,2-mannosyltransferase [EC:2.4.1.-] +K13672 LPG1; galactofuranosyltransferase [EC:2.4.1.-] +K13673 SCG; phosphoglycan beta-1,3-galactosyltransferase [EC:2.4.1.-] +K13674 SCA; phosphoglycan alpha-1,2-arabinopyranosyltransferase [EC:2.4.2.-] +K13675 B3GALTL; UDP-glucose:O-linked fucose beta-1,3-glucosyltransferase [EC:2.4.1.-] +K13676 GXYLT; UDP-D-xylose:beta-D-glucoside alpha-1,3-D-xylosyltransferase [EC:2.4.2.42] +K13677 dgs, bgsA; 1,2-diacylglycerol-3-alpha-glucose alpha-1,2-glucosyltransferase [EC:2.4.1.208] +K13678 cpoA; 1,2-diacylglycerol-3-alpha-glucose alpha-1,2-galactosyltransferase [EC:2.4.1.-] +K13679 WAXY; granule-bound starch synthase [EC:2.4.1.242] +K13680 CSLA; beta-mannan synthase [EC:2.4.1.32] +K13681 FUT; xyloglucan fucosyltransferase [EC:2.4.1.-] +K13682 BMT, WRY; beta-1,2-mannosyltransferase [EC:2.4.1.-] +K13683 wcaE; putative colanic acid biosynthesis glycosyltransferase WcaE [EC:2.4.-.-] +K13684 wcaC; putative colanic acid biosynthesis glycosyltransferase WcaC [EC:2.4.-.-] +K13686 aftA; galactan 5-O-arabinofuranosyltransferase [EC:2.4.2.46] +K13687 aftB; arabinofuranosyltransferase [EC:2.4.2.-] +K13688 chvB, cgs, ndvB; cyclic beta-1,2-glucan glucanotransferase [EC:2.4.1.397] +K13689 cgtA; beta-1,4-N-acetylgalactosaminyltransferase [EC:2.4.1.-] +K13690 CMT1; alpha-1,3-mannosyltransferase [EC:2.4.1.-] +K13691 SGT1; pathogen-inducible salicylic acid glucosyltransferase [EC:2.4.1.-] +K13692 IAGLU; UDP-glucose:(indol-3-yl)acetate beta-D-glucosyltransferase [EC:2.4.1.121] +K13693 gpgS; glucosyl-3-phosphoglycerate synthase [EC:2.4.1.266] +K13694 mepS, spr; murein DD-endopeptidase / murein LD-carboxypeptidase [EC:3.4.-.- 3.4.17.13] +K13695 nlpC; probable lipoprotein NlpC +K13696 ABHD1_3; abhydrolase domain-containing protein 1/3 +K13697 ABHD2; abhydrolase domain-containing protein 2 +K13698 ABHD4; abhydrolase domain-containing protein 4 +K13699 ABHD5, CGI-58; abhydrolase domain-containing protein 5 [EC:2.3.1.51] +K13700 ABHD6; abhydrolase domain-containing protein 6 [EC:3.1.1.23] +K13701 ABHD8; abhydrolase domain-containing protein 8 +K13702 ABHD10; abhydrolase domain-containing protein 10 [EC:3.1.1.93] +K13703 ABHD11; abhydrolase domain-containing protein 11 +K13704 ABHD12; abhydrolase domain-containing protein 12 [EC:3.1.1.23] +K13705 ABHD12B; abhydrolase domain-containing protein 12B [EC:3.-.-.-] +K13706 ABHD14; abhydrolase domain-containing protein 14 +K13707 ABHD15; abhydrolase domain-containing protein 15 +K13708 DOCK1; dedicator of cytokinesis protein 1 +K13709 ARHGAP5; Rho GTPase-activating protein 5 +K13710 ARHGEF7, PIXB; Rho guanine nucleotide exchange factor 7 +K13711 PI4K2; phosphatidylinositol 4-kinase type 2 [EC:2.7.1.67] +K13712 PIP5KL1; phosphatidylinositol-4-phosphate 5-kinase-like protein 1 [EC:2.7.1.68] +K13713 purCD; fusion protein PurCD [EC:6.3.2.6 6.3.4.13] +K13714 atl; bifunctional autolysin [EC:3.5.1.28 3.2.1.96] +K13715 sspB; staphopain B [EC:3.4.22.-] +K13716 OTUD1; OTU domain-containing protein 1 [EC:3.4.19.12] +K13717 OTUD3; OTU domain-containing protein 3 [EC:3.4.19.12] +K13718 OTUD4; OTU domain-containing protein 4 [EC:3.4.19.12] +K13719 OTU1, YOD1; ubiquitin thioesterase OTU1 [EC:3.1.2.-] +K13720 NAAA; N-(long-chain-acyl)ethanolamine deacylase [EC:3.5.1.60] +K13721 APE2; aminopeptidase 2 [EC:3.4.11.-] +K13722 trf2_3; tricorn protease interacting factor F2/3 [EC:3.4.11.-] +K13723 ERAP2; endoplasmic reticulum aminopeptidase 2 [EC:3.4.11.-] +K13724 AQPEP; aminopeptidase Q [EC:3.4.11.-] +K13725 PFAM1; M1-family aminopeptidase [EC:3.4.11.-] +K13726 MEPB; metallopeptidase MepB [EC:3.4.24.-] +K13727 pdc; phenolic acid decarboxylase [EC:4.1.1.-] +K13728 MAD2L2; mitotic spindle assembly checkpoint protein MAD2B +K13729 TCAC2, TC52; thiol-dependent reductase 1 +K13730 inlA; internalin A +K13731 inlB; internalin B +K13732 fnbA; fibronectin-binding protein A +K13733 fnbB; fibronectin-binding protein B +K13734 sfb1; fibronectin-binding protein 1 +K13735 yeeJ; adhesin/invasin +K13736 ARHGAP10; Rho GTPase-activating protein 10 +K13737 SEPT1; septin 1 +K13738 CD2AP; CD2-associated protein +K13739 sopD; secreted effector protein SopD +K13740 sptP; secreted effector protein SptP +K13741 sopE; guanine nucleotide exchange factor SopE +K13742 ipgB1; protein IpgB1 +K13743 ipgB2; protein IpgB2 +K13744 ARHGEF26, SGEF; Rho guanine nucleotide exchange factor 26 +K13745 ddc; L-2,4-diaminobutyrate decarboxylase [EC:4.1.1.86] +K13746 cansdh; carboxynorspermidine synthase [EC:1.5.1.43] +K13747 nspC; carboxynorspermidine decarboxylase [EC:4.1.1.96] +K13748 MGAT4C; alpha-1,3-mannosylglycoprotein beta-1,4-N-acetylglucosaminyltransferase C [EC:2.4.1.201 2.4.1.145] +K13749 SLC24A1, NCKX1; solute carrier family 24 (sodium/potassium/calcium exchanger), member 1 +K13750 SLC24A2, NCKX2; solute carrier family 24 (sodium/potassium/calcium exchanger), member 2 +K13751 SLC24A3, NCKX3; solute carrier family 24 (sodium/potassium/calcium exchanger), member 3 +K13752 SLC24A4, NCKX4; solute carrier family 24 (sodium/potassium/calcium exchanger), member 4 +K13753 SLC24A5, NCKX5; solute carrier family 24 (sodium/potassium/calcium exchanger), member 5 +K13754 SLC24A6, NCKX6; solute carrier family 24 (sodium/potassium/calcium exchanger), member 6 +K13755 PDE1; calcium/calmodulin-dependent 3',5'-cyclic nucleotide phosphodiesterase [EC:3.1.4.17] +K13756 PDE6B; rod cGMP-specific 3',5'-cyclic phosphodiesterase subunit beta [EC:3.1.4.35] +K13757 PDE6C; cone cGMP-specific 3',5'-cyclic phosphodiesterase subunit alpha' [EC:3.1.4.35] +K13758 PDE6D; retinal rod rhodopsin-sensitive cGMP 3',5'-cyclic phosphodiesterase subunit delta +K13759 PDE6G; retinal rod rhodopsin-sensitive cGMP 3',5'-cyclic phosphodiesterase subunit gamma +K13760 PDE6H; retinal cone rhodopsin-sensitive cGMP 3',5'-cyclic phosphodiesterase subunit gamma +K13761 PDE9; high affinity cGMP-specific 3',5'-cyclic phosphodiesterase 9 [EC:3.1.4.35] +K13762 PDE5; cGMP-specific 3',5'-cyclic phosphodiesterase [EC:3.1.4.35] +K13763 PDE6N; cGMP-specific 3',5'-cyclic phosphodiesterase, invertebrate [EC:3.1.4.35] +K13764 RCVRN; recoverin +K13765 RGS9; regulator of G-protein signaling 9 +K13766 liuC; methylglutaconyl-CoA hydratase [EC:4.2.1.18] +K13767 fadB; enoyl-CoA hydratase [EC:4.2.1.17] +K13768 GAST; gastrin +K13769 IGF2; insulin-like growth factor 2 +K13770 ysiA, fadR; TetR/AcrR family transcriptional regulator, fatty acid metabolism regulator protein +K13771 nsrR; Rrf2 family transcriptional regulator, nitric oxide-sensitive transcriptional repressor +K13772 rirA; Rrf2 family transcriptional regulator, iron-responsive regulator +K13773 TP53AIP1; p53-regulated apoptosis-inducing protein 1 +K13774 atuB; citronellol/citronellal dehydrogenase +K13775 atuG; citronellol/citronellal dehydrogenase +K13776 atuH; citronellyl-CoA synthetase [EC:6.2.1.-] +K13777 atuF; geranyl-CoA carboxylase alpha subunit [EC:6.4.1.5] +K13778 atuC; geranyl-CoA carboxylase beta subunit [EC:6.4.1.5] +K13779 atuE; isohexenylglutaconyl-CoA hydratase [EC:4.2.1.57] +K13780 SLC7A5, LAT1; solute carrier family 7 (L-type amino acid transporter), member 5 +K13781 SLC7A8, LAT2; solute carrier family 7 (L-type amino acid transporter), member 8 +K13782 SLC7A10, ASC1; solute carrier family 7 (D/L-type amino acid transporter), member 10 +K13783 SLC37A1_2; MFS transporter, OPA family, solute carrier family 37 (glycerol-3-phosphate transporter), member 1/2 +K13784 PTMA; prothymosin alpha +K13785 TMSB10; thymosin beta 10 +K13786 cobR; cob(II)yrinic acid a,c-diamide reductase [EC:1.16.8.-] +K13787 idsA; geranylgeranyl diphosphate synthase, type I [EC:2.5.1.1 2.5.1.10 2.5.1.29] +K13788 pta; phosphate acetyltransferase [EC:2.3.1.8] +K13789 GGPS; geranylgeranyl diphosphate synthase, type II [EC:2.5.1.1 2.5.1.10 2.5.1.29] +K13790 icsB, bopA; virulence protein IcsB +K13791 ipaH9.8; invasion plasmid antigen +K13792 ospG; secreted effector OspG +K13793 ospE, espO; secreted effector OspE +K13794 tcuR; LysR family transcriptional regulator, regulatory protein for tcuABC +K13795 citB, tcuB; citrate/tricarballylate utilization protein +K13796 cobZ, tcuA; tricarballylate dehydrogenase +K13797 rpoBC; DNA-directed RNA polymerase subunit beta-beta' [EC:2.7.7.6] +K13798 rpoB; DNA-directed RNA polymerase subunit B [EC:2.7.7.6] +K13799 panC-cmk; pantoate ligase / CMP/dCMP kinase [EC:6.3.2.1 2.7.4.25] +K13800 CMPK1, UMPK; UMP-CMP kinase [EC:2.7.4.14] +K13801 ARR3; arrestin-C +K13802 NINAE, Rh1; opsin Rh1 +K13803 TRPL; transient-receptor-potential-like protein +K13804 INAD; inactivation no afterpotential D protein +K13805 ARR2; arrestin-2 +K13806 DAGL; sn1-specific diacylglycerol lipase [EC:3.1.1.116] +K13807 PPEF, PPP7C; serine/threonine-protein phosphatase with EF-hands [EC:3.1.3.16] +K13808 ARR1; arrestin-1 +K13809 CMPK2; UMP-CMP kinase 2, mitochondrial [EC:2.7.4.14] +K13810 tal-pgi; transaldolase / glucose-6-phosphate isomerase [EC:2.2.1.2 5.3.1.9] +K13811 PAPSS; 3'-phosphoadenosine 5'-phosphosulfate synthase [EC:2.7.7.4 2.7.1.25] +K13812 fae-hps; bifunctional enzyme Fae/Hps [EC:4.2.1.147 4.1.2.43] +K13813 STX12, STX13; syntaxin 12/13 +K13814 TSNARE1; t-SNARE domain-containing protein 1 +K13815 rpfG; two-component system, response regulator RpfG +K13816 rpfF; DSF synthase +K13818 mobAB; molybdopterin-guanine dinucleotide biosynthesis protein [EC:2.7.7.77] +K13819 K13819; NifU-like protein +K13820 fliR-flhB; flagellar biosynthesis protein FliR/FlhB +K13821 putA; RHH-type transcriptional regulator, proline utilization regulon repressor / proline dehydrogenase / delta 1-pyrroline-5-carboxylate dehydrogenase [EC:1.5.5.2 1.2.1.88] +K13822 HBA; hemoglobin subunit alpha +K13823 HBB; hemoglobin subunit beta +K13824 HBG; hemoglobin subunit gamma +K13825 HBE; hemoglobin subunit epsilon +K13826 HBZ; hemoglobin subunit zeta +K13827 HBQ1; hemoglobin subunit theta +K13828 HBM; hemoglobin subunit mu +K13829 aroKB; shikimate kinase / 3-dehydroquinate synthase [EC:2.7.1.71 4.2.3.4] +K13830 ARO1; pentafunctional AROM polypeptide [EC:4.2.3.4 4.2.1.10 1.1.1.25 2.7.1.71 2.5.1.19] +K13831 hps-phi; 3-hexulose-6-phosphate synthase / 6-phospho-3-hexuloisomerase [EC:4.1.2.43 5.3.1.27] +K13832 aroDE, DHQ-SDH; 3-dehydroquinate dehydratase / shikimate dehydrogenase [EC:4.2.1.10 1.1.1.25] +K13833 SPECT; sporozoite microneme protein +K13834 SPECT2; sporozoite microneme protein 2 +K13835 CELTOS; cell-traversal protein for ookinetes and sporozoites +K13836 CSP; circumsporozoite protein +K13837 TRAP; thrombospondin-related anonymous protein +K13838 MSP1; merozoite surface protein 1 +K13839 MSP2; merozoite surface protein 2 +K13840 MSP3; merozoite surface protein 3 +K13841 MSP4; merozoite surface protein 4 +K13842 MSP5; merozoite surface protein 5 +K13843 MSP6; merozoite surface protein 6 +K13844 MSP8; merozoite surface protein 8 +K13845 AMA-1; apical merozoite antigen 1 +K13846 PVDR, DBP; Duffy binding protein +K13847 EBA175; erythrocyte-binding antigen 175 +K13848 EBA140; erythrocyte-binding antigen 140 +K13849 RBP; reticulocyte-binding protein +K13850 PFEMP1; erythrocyte membrane protein 1 +K13851 RIF; repetitive interspersed family protein +K13852 STEVOR; subtelomeric variable open reading frame +K13853 aroG, aroA; 3-deoxy-7-phosphoheptulonate synthase / chorismate mutase [EC:2.5.1.54 5.4.99.5] +K13854 K13854, glf; MFS transporter, SP family, glucose uniporter +K13855 SLC4A2, AE2; solute carrier family 4 (anion exchanger), member 2 +K13856 SLC4A3, AE3; solute carrier family 4 (anion exchanger), member 3 +K13857 SLC4A5, NBC4; solute carrier family 4 (sodium bicarbonate cotransporter), member 5 +K13858 SLC4A7, NBC3; solute carrier family 4 (sodium bicarbonate cotransporter), member 7 +K13859 SLC4A8; solute carrier family 4 (sodium bicarbonate cotransporter), member 8 +K13860 SLC4A9, AE4; solute carrier family 4 (sodium bicarbonate cotransporter), member 9 +K13861 SLC4A10, NCBE; solute carrier family 4 (sodium bicarbonate transporter), member 10 +K13862 SLC4A11, BTR1; solute carrier family 4 (sodium borate transporter), member 11 +K13863 SLC7A1, ATRC1; solute carrier family 7 (cationic amino acid transporter), member 1 +K13864 SLC7A2, ATRC2; solute carrier family 7 (cationic amino acid transporter), member 2 +K13865 SLC7A3, ATRC3; solute carrier family 7 (cationic amino acid transporter), member 3 +K13866 SLC7A4; solute carrier family 7 (cationic amino acid transporter), member 4 +K13867 SLC7A7; solute carrier family 7 (L-type amino acid transporter), member 7 +K13868 SLC7A9_15, BAT1; solute carrier family 7 (L-type amino acid transporter), member 9/15 +K13869 SLC7A11; solute carrier family 7 (L-type amino acid transporter), member 11 +K13870 SLC7A12_13, AGT1; solute carrier family 7 (L-type amino acid transporter), member 12/13 +K13871 SLC7A14; solute carrier family 7 (cationic amino acid transporter), member 14 +K13872 SLC7A6; solute carrier family 7 (L-type amino acid transporter), member 6 +K13873 araA; L-arabinose 1-dehydrogenase [EC:1.1.1.376] +K13874 araB; L-arabinonolactonase [EC:3.1.1.15] +K13875 araC; L-arabonate dehydrase [EC:4.2.1.25] +K13876 araD; 2-keto-3-deoxy-L-arabinonate dehydratase [EC:4.2.1.43] +K13877 aldH; 2,5-dioxopentanoate dehydrogenase [EC:1.2.1.26] +K13878 BEST1, VMD2; bestrophin-1 +K13879 BEST2, VMD2L1; bestrophin-2 +K13880 BEST3, VMD2L3; bestrophin-3 +K13881 BEST4, VMD2L2; bestrophin-4 +K13882 CORO1A; coronin-1A +K13883 RILP; Rab-interacting lysosomal protein +K13884 MARCO; macrophage receptor with collagenous structure +K13885 SCARB1; scavenger receptor class B, member 1 +K13886 CORO1B_1C_6; coronin-1B/1C/6 +K13887 CORO2; coronin-2 +K13888 macA; membrane fusion protein, macrolide-specific efflux system +K13889 gsiB; glutathione transport system substrate-binding protein +K13890 gsiC; glutathione transport system permease protein +K13891 gsiD; glutathione transport system permease protein +K13892 gsiA; glutathione transport system ATP-binding protein +K13893 yejA; microcin C transport system substrate-binding protein +K13894 yejB; microcin C transport system permease protein +K13895 yejE; microcin C transport system permease protein +K13896 yejF; microcin C transport system ATP-binding protein +K13897 CST1; cystatin-SN +K13898 CST2; cystatin-SA +K13899 CST3; cystatin-C +K13900 CST4; cystatin-S +K13901 CST5; cystatin-D +K13902 CST6; cystatin-M +K13903 CST7; cystatin-F +K13904 CST8; cystatin-8 +K13905 CST9; cystatin-9 +K13906 CST11; cystatin-11 +K13907 CSTA_B; cystatin-A/B +K13908 MUC5; mucin-5 +K13909 MUC7, MG2; mucin-7 +K13910 PRH1_2; salivary acidic proline-rich phosphoprotein 1/2 +K13911 PRB1_2; basic salivary proline-rich protein 1/2 +K13912 DMBT1; deleted in malignant brain tumors 1 protein +K13913 HTN; histatin +K13914 STATH; statherin +K13915 LYZ; lysozyme C [EC:3.2.1.17] +K13916 CAMP, LL37; cathelicidin antimicrobial peptide +K13917 RNGTT; mRNA-capping enzyme [EC:2.7.7.50 3.6.1.74] +K13918 gudX; glucarate dehydratase-related protein +K13919 pduD; propanediol dehydratase medium subunit [EC:4.2.1.28] +K13920 pduE; propanediol dehydratase small subunit [EC:4.2.1.28] +K13921 pduQ; 1-propanol dehydrogenase +K13922 pduP; propionaldehyde dehydrogenase [EC:1.2.1.87] +K13923 pduL; phosphate propanoyltransferase [EC:2.3.1.222] +K13924 cheBR; two-component system, chemotaxis family, CheB/CheR fusion protein [EC:2.1.1.80 3.1.1.61] +K13925 pfbA; plasmin and fibronectin-binding protein A +K13926 rbbA; ribosome-dependent ATPase +K13927 citXG; holo-ACP synthase / triphosphoribosyl-dephospho-CoA synthase [EC:2.7.7.61 2.4.2.52] +K13928 mdcR; LysR family transcriptional regulator, malonate utilization transcriptional regulator +K13929 mdcA; malonate decarboxylase alpha subunit [EC:2.3.1.187] +K13930 mdcB; triphosphoribosyl-dephospho-CoA synthase [EC:2.4.2.52] +K13931 mdcC; malonate decarboxylase delta subunit +K13932 mdcD; malonate decarboxylase beta subunit [EC:4.1.1.87] +K13933 mdcE; malonate decarboxylase gamma subunit [EC:4.1.1.87] +K13934 mdcG; phosphoribosyl-dephospho-CoA transferase [EC:2.7.7.66] +K13935 mdcH; malonate decarboxylase epsilon subunit [EC:2.3.1.39] +K13936 mdcF; malonate transporter and related proteins +K13937 H6PD; hexose-6-phosphate dehydrogenase [EC:1.1.1.47 3.1.1.31] +K13938 folM; dihydromonapterin reductase / dihydrofolate reductase [EC:1.5.1.50 1.5.1.3] +K13939 FOL1; dihydroneopterin aldolase / 2-amino-4-hydroxy-6-hydroxymethyldihydropteridine diphosphokinase / dihydropteroate synthase [EC:4.1.2.25 2.7.6.3 2.5.1.15] +K13940 sulD; dihydroneopterin aldolase / 2-amino-4-hydroxy-6-hydroxymethyldihydropteridine diphosphokinase [EC:4.1.2.25 2.7.6.3] +K13941 folKP; 2-amino-4-hydroxy-6-hydroxymethyldihydropteridine diphosphokinase / dihydropteroate synthase [EC:2.7.6.3 2.5.1.15] +K13942 hmd; 5,10-methenyltetrahydromethanopterin hydrogenase [EC:1.12.98.2] +K13943 CBT; cabut +K13944 LBD16; LOB domain-containing protein 16 +K13945 LBD29; LOB domain-containing protein 29 +K13946 AUX1, LAX; auxin influx carrier (AUX1 LAX family) +K13947 PIN; auxin efflux carrier family protein +K13948 PTGR1, LTB4DH; prostaglandin reductase 1 [EC:1.3.1.74 1.3.1.48] +K13949 PTGR2, ZADH1; prostaglandin reductase 2 [EC:1.3.1.48] +K13950 pabAB; para-aminobenzoate synthetase [EC:2.6.1.85] +K13951 ADH1_7; alcohol dehydrogenase 1/7 [EC:1.1.1.1] +K13952 ADH6; alcohol dehydrogenase 6 [EC:1.1.1.1] +K13953 adhP; alcohol dehydrogenase, propanol-preferring [EC:1.1.1.1] +K13954 yiaY; alcohol dehydrogenase [EC:1.1.1.1] +K13955 yogA; zinc-binding alcohol dehydrogenase/oxidoreductase +K13956 IPP, KLHL27; actin-binding protein IPP +K13957 KLHL33; kelch-like protein 33 +K13958 KLHL36; kelch-like protein 36 +K13959 KLHL38; kelch-like protein 38 +K13960 UBE2T, HSPC150; ubiquitin-conjugating enzyme E2 T [EC:2.3.2.23] +K13961 SLC9A4, NHE4; solute carrier family 9 (sodium/hydrogen exchanger), member 4 +K13962 SLC26A7, SUT2; solute carrier family 26 (anion exchange transporter), member 7 +K13963 SERPINB; serpin B +K13964 SERPINB7; serpin B7 +K13965 SERPINB8; serpin B8 +K13966 SERPINB11_12; serpin B11/12 +K13967 nanEK; N-acetylmannosamine-6-phosphate 2-epimerase / N-acetylmannosamine kinase [EC:5.1.3.9 2.7.1.60] +K13968 CP112; cysteine proteinase +K13969 ADH112; adhesin +K13970 HGL; galactose-inhibitable lectin heavy subunit +K13971 LGL; galactose-inhibitable lectin light subunit +K13972 IGL; galactose-inhibitable lectin intermediate subunit +K13973 AP; pore-forming peptide ameobapore +K13974 EHCBP; calcium-binding protein +K13975 PATMK; phagosome-associated TMK96 +K13976 EHPAK; p21-activated kinase +K13977 EHLIMA; LIM domain-containing protein +K13978 ACTNL; actinin-like protein +K13979 yahK; alcohol dehydrogenase (NADP+) [EC:1.1.1.2] +K13980 ADH4; alcohol dehydrogenase 4 [EC:1.1.1.1] +K13981 AKR1E2, AKR1CL2; 1,5-anhydro-D-fructose reductase [EC:1.1.1.263] +K13982 DDX4, VASA; probable ATP-dependent RNA helicase DDX4 [EC:5.6.2.7] +K13983 MOV10L1; RNA helicase MOV10L1 [EC:5.6.2.5] +K13984 TXNDC5, ERP46; thioredoxin domain-containing protein 5 [EC:5.3.4.1] +K13985 NAPEPLD; N-acyl-phosphatidylethanolamine-hydrolysing phospholipase D [EC:3.1.4.54] +K13986 MAP3K15; mitogen-activated protein kinase kinase kinase 15 [EC:2.7.11.25] +K13987 NUDT5; ADP-ribose diphosphatase / 8-oxo-dGDP phosphatase / ADP-D-ribose pyrophosphorylase [EC:3.6.1.13 3.6.1.58 2.7.7.96] +K13988 NUDT9; ADP-ribose diphosphatase [EC:3.6.1.13] +K13989 DERL2_3; Derlin-2/3 +K13990 FTCD; glutamate formiminotransferase / formiminotetrahydrofolate cyclodeaminase [EC:2.1.2.5 4.3.1.4] +K13991 puhA; photosynthetic reaction center H subunit +K13992 pufC; photosynthetic reaction center cytochrome c subunit +K13993 HSP20; HSP20 family protein +K13994 pufX; photosynthetic reaction center PufX protein +K13995 nicF; maleamate amidohydrolase [EC:3.5.1.107] +K13996 EPS1; protein disulfide-isomerase [EC:5.3.4.1] +K13997 PDHX; dihydrolipoamide dehydrogenase-binding protein of pyruvate dehydrogenase complex +K13998 DHFR-TS; dihydrofolate reductase / thymidylate synthase [EC:1.5.1.3 2.1.1.45] +K13999 CKAP4, CLIMP63; cytoskeleton-associated protein 4 +K14000 RRBP1; ribosome-binding protein 1 +K14001 SIL1, SLS1; nucleotide exchange factor SIL1 +K14002 SCJ1; DnaJ-related protein SCJ1 +K14003 PREB, SEC12; prolactin regulatory element-binding protein +K14004 SEC13; protein transport protein SEC13 +K14005 SEC31; protein transport protein SEC31 +K14006 SEC23; protein transport protein SEC23 +K14007 SEC24; protein transport protein SEC24 +K14008 ERLEC1, XTP3B; endoplasmic reticulum lectin 1 +K14009 BCAP31, BAP31; B-cell receptor-associated protein 31 +K14010 TRAM1; translocating chain-associated membrane protein 1 +K14011 UBXN6, UBXD1; UBX domain-containing protein 6 +K14012 NSFL1C, UBX1, SHP1; UBX domain-containing protein 1 +K14013 UBX2, SEL1; UBX domain-containing protein 2 +K14014 SVIP; small VCP/p97-interacting protein +K14015 NPLOC4, NPL4; nuclear protein localization protein 4 +K14016 UFD1; ubiquitin fusion degradation protein 1 +K14017 SNL1; HSP70 co-chaperone SNL1 +K14018 PLAA, DOA1, UFD3; phospholipase A-2-activating protein +K14019 PPP1R15A, GADD34; protein phosphatase 1 regulatory subunit 15A +K14020 WFS1; wolfamin +K14021 BAK, BAK1; Bcl-2 homologous antagonist/killer +K14022 CUE1, KIS4; coupling of ubiquitin conjugation to ER degradation protein 1 +K14023 HRD3; ERAD-associated E3 ubiquitin-protein ligase component HRD3 +K14024 USA1; U1 SNP1-associating protein 1 +K14025 SELS, VIMP; selenoprotein S +K14026 SEL1, SEL1L; SEL1 protein +K14027 HERPUD1, HERP; homocysteine-responsive endoplasmic reticulum-resident ubiquitin-like domain member 1 protein +K14028 mdh1, mxaF; methanol dehydrogenase (cytochrome c) subunit 1 [EC:1.1.2.7] +K14029 mdh2, mxaI; methanol dehydrogenase (cytochrome c) subunit 2 [EC:1.1.2.7] +K14030 NR2B4, usp; nuclear receptor subfamily 2 group B member 4 +K14031 NR2CN; nuclear receptor subfamily 2 group C +K14032 NR2F3, svp; nuclear receptor subfamily 2 group F member 3 +K14033 NR1F4; nuclear receptor subfamily 1 group F member 4 +K14034 NR1H1, EcR; ecdysone receptor +K14035 NR1IN; nuclear receptor subfamily 1 group I +K14036 KSL7, DTC1; ent-cassa-12,15-diene synthase [EC:4.2.3.28] +K14037 KSL10; ent-sandaracopimaradiene/labdatriene synthase [EC:4.2.3.29 4.2.3.99] +K14038 KSL5; ent-pimara-8(14),15-diene synthase [EC:4.2.3.30] +K14039 E1.14.14.176; taxadiene 5alpha-hydroxylase [EC:1.14.14.176] +K14040 CYP720B, PTAO; abieta-7,13-dien-18-ol hydroxylase [EC:1.14.14.145] +K14041 TPS-LAS, LPS; levopimaradiene/copalyl diphosphate synthase [EC:4.2.3.32 5.5.1.12] +K14042 TPS-ISO; isopimara-7,15-diene synthase /copalyl diphosphate synthase [EC:4.2.3.44 5.5.1.12] +K14043 CPS4; syn-copalyl-diphosphate synthase [EC:5.5.1.14] +K14044 KSL8, DTC2; stemar-13-ene synthase [EC:4.2.3.33] +K14045 KSL11; stemod-13(17)-ene synthase [EC:4.2.3.34] +K14046 KSL4, DTS2; syn-pimara-7,15-diene synthase [EC:4.2.3.35] +K14047 PADC4; fusicocca-2,10(14)-diene synthase [EC:4.2.3.43] +K14048 ureAB; urease subunit gamma/beta [EC:3.5.1.5] +K14050 RABGGTA; geranylgeranyl transferase type-2 subunit alpha [EC:2.5.1.60] +K14051 gmr, pdeR; c-di-GMP phosphodiesterase Gmr [EC:3.1.4.52] +K14052 puuP; putrescine importer +K14053 ompG; outer membrane protein G +K14054 mpaA; murein peptide amidase A +K14055 uspE; universal stress protein E +K14056 puuR; HTH-type transcriptional regulator, repressor for puuD +K14057 abgR; LysR family transcriptional regulator, regulator of abg operon +K14058 ttcA; tRNA 2-thiocytidine biosynthesis protein TtcA +K14059 int; integrase +K14060 pinR; putative DNA-invertase from lambdoid prophage Rac +K14061 uspF; universal stress protein F +K14062 ompN; outer membrane protein N +K14063 feaR; AraC family transcriptional regulator, positive regulator of tynA and feaB +K14064 uspC; universal stress protein C +K14065 uspD; universal stress protein D +K14066 GPS; geranyl diphosphate synthase [EC:2.5.1.1] +K14067 mtkA; malate-CoA ligase subunit beta [EC:6.2.1.9] +K14068 vhoA, vhtA; methanophenazine hydrogenase, large subunit [EC:1.12.98.3] +K14069 vhoC, vhtC; methanophenazine hydrogenase, cytochrome b subunit [EC:1.12.98.3] +K14070 vhoG, vhtG; methanophenazine hydrogenase [EC:1.12.98.3] +K14071 LKR; leucokinin receptor +K14072 Rya-R, NEPYR; RYamide receptor +K14073 PNLIP, PL; pancreatic triacylglycerol lipase [EC:3.1.1.3] +K14074 PNLIPRP1, PLRP1; pancreatic lipase-related protein 1 [EC:3.1.1.3] +K14075 PNLIPRP2, PLRP2; pancreatic lipase-related protein 2 [EC:3.1.1.3] +K14076 PNLIPRP3, PLRP3; pancreatic lipase-related protein 3 [EC:3.1.1.3] +K14077 TPCN2; two pore calcium channel protein 2 +K14078 SLC26A3, DRA; solute carrier family 26 (chloride anion exchanger), member 3 +K14079 PAPD4, GLD2; poly(A) RNA polymerase GLD2 [EC:2.7.7.19] +K14080 mtaA; [methyl-Co(III) methanol/glycine betaine-specific corrinoid protein]:coenzyme M methyltransferase [EC:2.1.1.246 2.1.1.377] +K14081 mtaC; methanol corrinoid protein +K14082 mtbA; [methyl-Co(III) methylamine-specific corrinoid protein]:coenzyme M methyltransferase [EC:2.1.1.247] +K14083 mttB; trimethylamine---corrinoid protein Co-methyltransferase [EC:2.1.1.250] +K14084 mttC; trimethylamine corrinoid protein +K14085 ALDH7A1; aldehyde dehydrogenase family 7 member A1 [EC:1.2.1.31 1.2.1.8 1.2.1.3] +K14086 echA; ech hydrogenase subunit A +K14087 echB; ech hydrogenase subunit B +K14088 echC; ech hydrogenase subunit C +K14089 echD; ech hydrogenase subunit D +K14090 echE; ech hydrogenase subunit E +K14091 echF; ech hydrogenase subunit F +K14092 ehaA; energy-converting hydrogenase A subunit A +K14093 ehaB; energy-converting hydrogenase A subunit B +K14094 ehaC; energy-converting hydrogenase A subunit C +K14095 ehaD; energy-converting hydrogenase A subunit D +K14096 ehaE; energy-converting hydrogenase A subunit E +K14097 ehaF; energy-converting hydrogenase A subunit F +K14098 ehaG; energy-converting hydrogenase A subunit G +K14099 ehaH; energy-converting hydrogenase A subunit H +K14100 ehaI; energy-converting hydrogenase A subunit I +K14101 ehaJ; energy-converting hydrogenase A subunit J +K14102 ehaK; energy-converting hydrogenase A subunit K +K14103 ehaL; energy-converting hydrogenase A subunit L +K14104 ehaM; energy-converting hydrogenase A subunit M +K14105 ehaN; energy-converting hydrogenase A subunit N +K14106 ehaO; energy-converting hydrogenase A subunit O +K14107 ehaP; energy-converting hydrogenase A subunit P +K14108 ehaQ; energy-converting hydrogenase A subunit Q +K14109 ehaR; energy-converting hydrogenase A subunit R +K14110 ehbA; energy-converting hydrogenase B subunit A +K14111 ehbB; energy-converting hydrogenase B subunit B +K14112 ehbC; energy-converting hydrogenase B subunit C +K14113 ehbD; energy-converting hydrogenase B subunit D +K14114 ehbE; energy-converting hydrogenase B subunit E +K14115 ehbF; energy-converting hydrogenase B subunit F +K14116 ehbG; energy-converting hydrogenase B subunit G +K14117 ehbH; energy-converting hydrogenase B subunit H +K14118 ehbI; energy-converting hydrogenase B subunit I +K14119 ehbJ; energy-converting hydrogenase B subunit J +K14120 ehbK; energy-converting hydrogenase B subunit K +K14121 ehbL; energy-converting hydrogenase B subunit L +K14122 ehbM; energy-converting hydrogenase B subunit M +K14123 ehbN; energy-converting hydrogenase B subunit N +K14124 ehbO; energy-converting hydrogenase B subunit O +K14125 ehbP; energy-converting hydrogenase B subunit P +K14126 mvhA, vhuA, vhcA; F420-non-reducing hydrogenase large subunit [EC:1.12.99.- 1.8.98.5] +K14127 mvhD, vhuD, vhcD; F420-non-reducing hydrogenase iron-sulfur subunit [EC:1.12.99.- 1.8.98.5 1.8.98.6] +K14128 mvhG, vhuG, vhcG; F420-non-reducing hydrogenase small subunit [EC:1.12.99.- 1.8.98.5] +K14129 K14129; aromatic prenyltransferase [EC:2.5.1.-] +K14130 FGAPT2; tryptophan 4-dimethylallyltransferase [EC:2.5.1.34] +K14131 7-DMATS; tryptophan 7-dimethylallyltransferase [EC:2.5.1.80] +K14132 FTMPT1; tryprostatin B synthase [EC:2.5.1.106] +K14133 CDPNPT; cyclic dipeptide N-dimethylallyltransferase [EC:2.5.1.-] +K14134 FTMPT2; 12alpha,13alpha-dihydroxyfumitremorgin C prenyltransferase [EC:2.5.1.110] +K14135 FGAPT1; fumigaclavine A dimethylallyltransferase [EC:2.5.1.100] +K14136 K14136; decaprenyl-phosphate phosphoribosyltransferase [EC:2.4.2.45] +K14137 PTAR1; protein prenyltransferase alpha subunit repeat containing protein 1 +K14138 acsB; acetyl-CoA synthase [EC:2.3.1.169] +K14139 IRGM, LRG47; immunity-related GTPase family M protein [EC:3.6.5.-] +K14140 IGTP; interferon gamma induced GTPase +K14141 PFNL; profilin-like protein +K14142 TLR11; toll-like receptor 11 +K14143 SAG; major surface antigen +K14144 MIC3; microneme protein +K14145 RON2; rhoptry neck protein 2 +K14146 RON4; rhoptry neck protein 4 +K14147 GRA7; dense granule protein 7 +K14148 ROP2; rhoptry protein 2 +K14149 GRA3; dense granule protein 3 +K14150 GRA5; dense granule protein 5 +K14151 ROP16; rhoptry protein 16 +K14152 HIS4; phosphoribosyl-ATP pyrophosphohydrolase / phosphoribosyl-AMP cyclohydrolase / histidinol dehydrogenase [EC:3.6.1.31 3.5.4.19 1.1.1.23] +K14153 thiDE; hydroxymethylpyrimidine kinase / phosphomethylpyrimidine kinase / thiamine-phosphate diphosphorylase [EC:2.7.1.49 2.7.4.7 2.5.1.3] +K14154 THI6; thiamine-phosphate diphosphorylase / hydroxyethylthiazole kinase [EC:2.5.1.3 2.7.1.50] +K14155 patB, malY; cysteine-S-conjugate beta-lyase [EC:4.4.1.13] +K14156 CHK; choline/ethanolamine kinase [EC:2.7.1.32 2.7.1.82] +K14157 AASS; alpha-aminoadipic semialdehyde synthase [EC:1.5.1.8 1.5.1.9] +K14158 SLC5A1, SGLT1; solute carrier family 5 (sodium/glucose cotransporter), member 1 +K14159 rnhA-dnaQ; ribonuclease HI / DNA polymerase III subunit epsilon [EC:3.1.26.4 2.7.7.7] +K14160 imuA; protein ImuA +K14161 imuB; protein ImuB +K14162 dnaE2; error-prone DNA polymerase [EC:2.7.7.7] +K14163 EPRS; bifunctional glutamyl/prolyl-tRNA synthetase [EC:6.1.1.17 6.1.1.15] +K14164 glyQS; glycyl-tRNA synthetase [EC:6.1.1.14] +K14165 K14165; atypical dual specificity phosphatase [EC:3.1.3.16 3.1.3.48] +K14166 ycnJ; copper transport protein +K14167 CDKN3, KAP; cyclin-dependent kinase inhibitor 3 [EC:3.1.3.16 3.1.3.48] +K14168 CTU1, NCS6; cytoplasmic tRNA 2-thiolation protein 1 [EC:2.7.7.-] +K14169 CTU2, NCS2; cytoplasmic tRNA 2-thiolation protein 2 +K14170 pheA; chorismate mutase / prephenate dehydratase [EC:5.4.99.5 4.2.1.51] +K14171 AHP1; alkyl hydroperoxide reductase 1 [EC:1.11.1.24] +K14172 LHCB7; light-harvesting complex II chlorophyll a/b binding protein 7 +K14173 AFS1; alpha-farnesene synthase [EC:4.2.3.46] +K14174 TPS10; beta-farnesene/exo-alpha-bergamotene synthase [EC:4.2.3.47 4.2.3.81] +K14175 NES1; (3S,6E)-nerolidol synthase [EC:4.2.3.48] +K14176 ECS1; epi-cedrol synthase [EC:4.2.3.39] +K14177 E4.2.3.38; alpha-bisabolene synthase [EC:4.2.3.38] +K14178 AMS1; amorpha-4,11-diene synthase [EC:4.2.3.24] +K14179 GAS; germacrene-A synthase [EC:4.2.3.23] +K14180 ARI1; aristolochene synthase [EC:4.2.3.9] +K14181 TPS1; valencene/7-epi-alpha-selinene synthase [EC:4.2.3.73 4.2.3.86] +K14182 HVS; vetispiradiene synthase [EC:4.2.3.21] +K14183 CDN1; (+)-delta-cadinene synthase [EC:4.2.3.13] +K14184 TPS21; alpha-humulene/beta-caryophyllene synthase [EC:4.2.3.104 4.2.3.57] +K14185 TPS-LON; longifolene/alpha-longipinene synthase [EC:4.2.3.58 4.2.3.80] +K14186 AG5; gamma-humulene synthase [EC:4.2.3.56] +K14187 tyrA; chorismate mutase / prephenate dehydrogenase [EC:5.4.99.5 1.3.1.12] +K14188 dltC; D-alanine--poly(phosphoribitol) ligase subunit 2 [EC:6.1.1.13] +K14189 dltE; uncharacterized oxidoreductase [EC:1.-.-.-] +K14190 VTC2_5; GDP-L-galactose phosphorylase [EC:2.7.7.69] +K14191 DIM1; 18S rRNA (adenine1779-N6/adenine1780-N6)-dimethyltransferase [EC:2.1.1.183] +K14192 clfB; clumping factor B +K14193 isdA; iron-regulated surface determinant protein A +K14194 sdrC_D_E; serine-aspartate repeat-containing protein C/D/E +K14195 sasG; surface protein G +K14196 spa; immunoglobulin G-binding protein A +K14197 sbi; immunoglobulin G-binding protein Sbi +K14198 sak; staphylokinase +K14199 scn, scin; staphylococcal complement inhibitor +K14200 fib, efb; fibrinogen-binding protein +K14201 clfA; clumping factor A +K14202 chp, chips; chemotaxis inhibitory protein +K14203 flr, flipr; FPRL1 inhibitory protein +K14204 eap, map; protein Map +K14205 mprF, fmtC; phosphatidylglycerol lysyltransferase [EC:2.3.2.3] +K14206 SLC15A1, PEPT1; solute carrier family 15 (oligopeptide transporter), member 1 +K14207 SLC38A2, SNAT2; solute carrier family 38 (sodium-coupled neutral amino acid transporter), member 2 +K14208 XPNPEP2; Xaa-Pro aminopeptidase 2 [EC:3.4.11.9] +K14209 SLC36A, PAT; solute carrier family 36 (proton-coupled amino acid transporter) +K14210 SLC3A1, RBAT; solute carrier family 3 (neutral and basic amino acid transporter), member 1 +K14211 ELN; elastin +K14212 SPPL2C, IMP5; signal peptide peptidase-like 2C [EC:3.4.23.-] +K14213 PEPD; Xaa-Pro dipeptidase [EC:3.4.13.9] +K14214 NFKBID; NF-kappa-B inhibitor delta +K14215 E2.5.1.86; trans,polycis-decaprenyl diphosphate synthase [EC:2.5.1.86] +K14216 OAS; 2'-5'-oligoadenylate synthetase [EC:2.7.7.84] +K14217 IFIT1; interferon-induced protein with tetratricopeptide repeats 1 +K14218 tRNA-Ala; tRNA Ala +K14219 tRNA-Arg; tRNA Arg +K14220 tRNA-Asn; tRNA Asn +K14221 tRNA-Asp; tRNA Asp +K14222 tRNA-Cys; tRNA Cys +K14223 tRNA-Gln; tRNA Gln +K14224 tRNA-Glu; tRNA Glu +K14225 tRNA-Gly; tRNA Gly +K14226 tRNA-His; tRNA His +K14227 tRNA-Ile; tRNA Ile +K14228 tRNA-Leu; tRNA Leu +K14229 tRNA-Lys; tRNA Lys +K14230 tRNA-Met; tRNA Met +K14231 tRNA-Phe; tRNA Phe +K14232 tRNA-Pro; tRNA Pro +K14233 tRNA-Ser; tRNA Ser +K14234 tRNA-Thr; tRNA Thr +K14235 tRNA-Trp; tRNA Trp +K14236 tRNA-Tyr; tRNA Tyr +K14237 tRNA-Val; tRNA Val +K14238 tRNA-Sec; tRNA Sec +K14239 tRNA-Pyl; tRNA Pyl +K14242 NFKBIZ; NF-kappa-B inhibitor zeta +K14244 oxyD; amidotransferase [EC:6.3.5.-] +K14245 auaC; PKS ketosynthase (KS/KS alpha) [EC:2.3.1.-] +K14246 auaD; PKS chain-length factor (CLF/KS beta) [EC:2.3.1.-] +K14249 oxyK; bifunctional cyclase/aromatase [EC:4.2.1.-] +K14250 oxyN, snoaM, dpsY, aknW, mtmY; cyclase +K14251 oxyF; C-methyltransferase [EC:2.1.1.-] +K14252 oxyL; 6-methylpretetramide 4-monooxygenase / 4-hydroxy-6-methylpretetramide 12a-monooxygenase [EC:1.14.13.232 1.14.13.233] +K14253 oxyE; 6-methylpretetramide 4-monooxygenase [EC:1.14.13.232] +K14254 oxyQ; aminotransferase +K14255 oxyT, ctcO, cts6; 4-amino-anhydrotetracycline N4-methyltransferase [EC:2.1.1.335] +K14256 oxyS, cts8; anhydrotetracycline 6-monooxygenase / 5a,11a-dehydrotetracycline 5-monooxygenase [EC:1.14.13.38 1.14.13.234] +K14257 ctcP, cts4, prnC; tetracycline 7-halogenase / FADH2 O2-dependent halogenase [EC:1.14.19.49 1.14.19.-] +K14258 TRET1; facilitated trehalose transporter +K14259 kdaD, xacE, kdxD; 2-dehydro-3-deoxy-D-arabinonate dehydratase [EC:4.2.1.141] +K14260 alaA; alanine-synthesizing transaminase [EC:2.6.1.66 2.6.1.2] +K14261 alaC; alanine-synthesizing transaminase [EC:2.6.1.-] +K14262 DUG2; di- and tripeptidase [EC:3.4.-.-] +K14263 BNA7; kynurenine formamidase [EC:3.5.1.9] +K14264 BNA3; kynurenine aminotransferase [EC:2.6.1.7] +K14265 Tam1; tryptophan aminotransferase [EC:2.6.1.27] +K14266 prnA, rebH, ktzQ; tryptophan 7-halogenase [EC:1.14.19.9] +K14267 dapC; N-succinyldiaminopimelate aminotransferase [EC:2.6.1.17] +K14268 davT, gabT; 5-aminovalerate/4-aminobutyrate aminotransferase [EC:2.6.1.48 2.6.1.19] +K14270 ACS10_12; aminotransferase +K14271 NAAT; nicotianamine aminotransferase [EC:2.6.1.80] +K14272 GGAT; glutamate--glyoxylate aminotransferase [EC:2.6.1.4 2.6.1.2 2.6.1.44] +K14273 xdh; D-xylose 1-dehydrogenase (NADP+, D-xylono-1,5-lactone-forming) [EC:1.1.1.179] +K14274 xylC; xylono-1,5-lactonase [EC:3.1.1.110] +K14275 xad; D-xylonate dehydratase [EC:4.2.1.82] +K14276 U1snRNA; U1 spliceosomal RNA +K14277 U2snRNA; U2 spliceosomal RNA +K14278 U4snRNA; U4 spliceosomal RNA +K14279 U5snRNA; U5 spliceosomal RNA +K14280 U6snRNA; U6 spliceosomal RNA +K14281 TACC1; transforming acidic coiled-coil-containing protein 1 +K14282 TACC2; transforming acidic coiled-coil-containing protein 2 +K14283 TACC3, maskin; transforming acidic coiled-coil-containing protein 3 +K14284 NXF, TAP, MEX67; nuclear RNA export factor +K14285 NXT1_2, P15; NTF2-related export protein 1/2 +K14286 AGXT2L1, ETNPPL; ethanolamine-phosphate phospho-lyase [EC:4.2.3.2] +K14287 ybdL; methionine transaminase [EC:2.6.1.88] +K14288 XPOT; exportin-T +K14289 XPO5; exportin-5 +K14290 XPO1, CRM1; exportin-1 +K14291 PHAX; phosphorylated adapter RNA export protein +K14292 TGS1; trimethylguanosine synthase [EC:2.1.1.-] +K14293 KPNB1, IPO1; importin subunit beta-1 +K14294 WIBG, PYM; partner of Y14 and mago +K14295 NUP50, NPAP60; nuclear pore complex protein Nup50 +K14296 NUP153; nuclear pore complex protein Nup153 +K14297 NUP98, ADAR2, NUP116; nuclear pore complex protein Nup98-Nup96 +K14298 RAE1, GLE2; mRNA export factor +K14299 SEH1; nucleoporin SEH1 +K14300 NUP133; nuclear pore complex protein Nup133 +K14301 NUP107, NUP84; nuclear pore complex protein Nup107 +K14302 NUP37; nuclear pore complex protein Nup37 +K14303 NUP160, NUP120; nuclear pore complex protein Nup160 +K14304 NUP85; nuclear pore complex protein Nup85 +K14305 NUP43; nuclear pore complex protein Nup43 +K14306 NUP62, NSP1; nuclear pore complex protein Nup62 +K14307 NUPL1, NUP49; nucleoporin p58/p45 +K14308 NUP54, NUP57; nuclear pore complex protein Nup54 +K14309 NUP93, NIC96; nuclear pore complex protein Nup93 +K14310 NUP205, NUP192; nuclear pore complex protein Nup205 +K14311 NUP188; nuclear pore complex protein Nup188 +K14312 NUP155, NUP170, NUP157; nuclear pore complex protein Nup155 +K14313 NUP35, NUP53; nuclear pore complex protein Nup53 +K14314 NUP210, GP210; nuclear pore complex protein Nup210 +K14315 NDC1, TMEM48; nucleoporin NDC1 +K14316 POM121, NUP121; nuclear pore complex protein Nup121 +K14317 NUP214, CAN; nuclear pore complex protein Nup214 +K14318 NUP88; nuclear pore complex protein Nup88 +K14319 RANGAP1; Ran GTPase-activating protein 1 +K14320 AAAS; aladin +K14321 NUPL2, NUP42, CG1; nucleoporin-like protein 2 +K14322 PAIP1; polyadenylate-binding protein-interacting protein 1 +K14323 CASC3, MLN51; protein CASC3 +K14324 SAP18; histone deacetylase complex subunit SAP18 +K14325 RNPS1; RNA-binding protein with serine-rich domain 1 +K14326 UPF1, RENT1; regulator of nonsense transcripts 1 [EC:5.6.2.5 5.6.2.3] +K14327 UPF2, RENT2; regulator of nonsense transcripts 2 +K14328 UPF3, RENT3; regulator of nonsense transcripts 3 +K14329 ACT; agmatine coumaroyltransferase [EC:2.3.1.64 2.3.1.-] +K14330 K14330; fatty aldehyde-generating acyl-ACP reductase [EC:1.2.1.80] +K14331 K14331; fatty aldehyde decarbonylase [EC:4.1.99.5] +K14332 psaO; photosystem I subunit PsaO +K14333 DHBD; 2,3-dihydroxybenzoate decarboxylase [EC:4.1.1.46] +K14334 CMLE; carboxy-cis,cis-muconate cyclase [EC:5.5.1.5] +K14335 pimC; alpha-1,6-mannosyltransferase [EC:2.4.1.-] +K14336 rlmA2; 23S rRNA (guanine748-N1)-methyltransferase [EC:2.1.1.188] +K14337 mptA; alpha-1,6-mannosyltransferase [EC:2.4.1.-] +K14338 cypD_E, CYP102A, CYP505; cytochrome P450 / NADPH-cytochrome P450 reductase [EC:1.14.14.1 1.6.2.4] +K14339 mptB; alpha-1,6-mannosyltransferase [EC:2.4.1.-] +K14340 K14340; mannosyltransferase [EC:2.4.1.-] +K14341 SLC10A1, NTCP; solute carrier family 10 (sodium/bile acid cotransporter), member 1 +K14342 SLC10A2, ASBT; solute carrier family 10 (sodium/bile acid cotransporter), member 2 +K14343 SLC10A3_5; solute carrier family 10 (sodium/bile acid cotransporter), member 3/5 +K14344 SLC10A4; solute carrier family 10 (sodium/bile acid cotransporter), member 4 +K14345 SLCO2A; solute carrier organic anion transporter family, member 2A +K14346 SLC10A6, SOAT; solute carrier family 10 (sodium/bile acid cotransporter), member 6 +K14347 SLC10A7, P7; solute carrier family 10 (sodium/bile acid cotransporter), member 7 +K14348 lldR; GntR family transcriptional regulator, L-lactate dehydrogenase operon regulator +K14349 NCEH1, AADACL1; neutral cholesterol ester hydrolase 1 [EC:3.1.1.-] +K14350 AADACL2; arylacetamide deacetylase-like 2 [EC:3.1.1.-] +K14351 AADACL3_4; arylacetamide deacetylase-like 3/4 [EC:3.1.1.-] +K14352 SLCO2B; solute carrier organic anion transporter family, member 2B +K14353 SLCO3A; solute carrier organic anion transporter family, member 3A +K14354 SLCO4A; solute carrier organic anion transporter family, member 4A +K14355 SLCO4C; solute carrier organic anion transporter family, member 4C +K14356 SLCO5A; solute carrier organic anion transporter family, member 5A +K14357 SLCO6A; solute carrier organic anion transporter family, member 6A +K14358 SCRN; secernin +K14359 TMPRSS11C; transmembrane protease serine 11C [EC:3.4.21.-] +K14360 OSTALPHA, OSTA, SLC51A1; organic solute transporter subunit alpha +K14361 OSTBETA, OSTB, SLC51A2; organic solute transporter subunit beta +K14362 TREM1, CD354; triggering receptor expressed on myeloid cells 1 +K14363 TLT1; trem-like transcript 1 protein +K14364 TLT2; trem-like transcript 2 protein +K14365 FHL1, SLIM1; four and a half LIM domains protein 1 +K14366 eryF, CYP107A; 6-deoxyerythronolide B hydroxylase [EC:1.14.15.35] +K14367 eryBV; erythronolide mycarosyltransferase [EC:2.4.1.328] +K14368 eryCIII; 3-alpha-mycarosylerythronolide B desosaminyl transferase [EC:2.4.1.278] +K14369 eryG; erythromycin 3''-O-methyltransferase [EC:2.1.1.254] +K14370 eryK, CYP113A; erythromycin 12 hydroxylase [EC:1.14.13.154] +K14371 aveA1; avermectin polyketide synthase AveA1 +K14372 aveE, CYP171A; cytochrome P450 hydroxylase [EC:1.14.-.-] +K14373 aveF; C-5 ketoreductase +K14374 aveD; avermectin B 5-O-methyltransferase [EC:2.1.1.-] +K14375 aveBI; dTDP-L-oleandrosyltransferase [EC:2.4.1.-] +K14376 PAP; poly(A) polymerase [EC:2.7.7.19] +K14377 OSCAR; osteoclast-associated immunoglobulin-like receptor +K14378 TREM2; triggering receptor expressed on myeloid cells 2 +K14379 ACP5; tartrate-resistant acid phosphatase type 5 [EC:3.1.3.2] +K14380 FHL2; four and a half LIM domains protein 2 +K14381 SQSTM1; sequestosome 1 +K14382 SLC5A2, SGLT2; solute carrier family 5 (sodium/glucose cotransporter), member 2 +K14383 SLC5A3, SMIT; solute carrier family 5 (sodium/myo-inositol cotransporter), member 3 +K14384 SLC5A4, SGLT3; solute carrier family 5 (low affinity sodium-glucose cotransporter), member 4 +K14385 SLC5A5, NIS; solute carrier family 5 (sodium/iodide cotransporter), member 5 +K14386 SLC5A6, SMVT; solute carrier family 5 (sodium-dependent multivitamin transporter), member 6 +K14387 SLC5A7, CHT1; solute carrier family 5 (high affinity choline transporter), member 7 +K14388 SLC5A8_12, SMCT; solute carrier family 5 (sodium-coupled monocarboxylate transporter), member 8/12 +K14389 SLC5A9, SGLT4; solute carrier family 5 (sodium/glucose cotransporter), member 9 +K14390 SLC5A10, SGLT5; solute carrier family 5 (sodium/glucose cotransporter), member 10 +K14391 SLC5A11, SMIT2, SGLT6; solute carrier family 5 (sodium/myo-inositol cotransporter), member 11 +K14392 panF; sodium/pantothenate symporter +K14393 actP; cation/acetate symporter +K14394 ACP1; low molecular weight phosphotyrosine protein phosphatase [EC:3.1.3.2 3.1.3.48] +K14395 ACP6; lysophosphatidic acid phosphatase type 6 [EC:3.1.3.2] +K14396 PABPN1, PABP2; polyadenylate-binding protein 2 +K14397 NUDT21, CPSF5, CFIM25; cleavage and polyadenylation specificity factor subunit 5 +K14398 CPSF6_7; cleavage and polyadenylation specificity factor subunit 6/7 +K14399 CLP1, HERB; polyribonucleotide 5'-hydroxyl-kinase [EC:2.7.1.78] +K14400 PCF11; pre-mRNA cleavage complex 2 protein Pcf11 +K14401 CPSF1, CFT1; cleavage and polyadenylation specificity factor subunit 1 +K14402 CPSF2, CFT2; cleavage and polyadenylation specificity factor subunit 2 +K14403 CPSF3, YSH1; cleavage and polyadenylation specificity factor subunit 3 [EC:3.1.27.-] +K14404 CPSF4, YTH1; cleavage and polyadenylation specificity factor subunit 4 +K14405 FIP1L1, FIP1; pre-mRNA 3'-end-processing factor FIP1 +K14406 CSTF1; cleavage stimulation factor subunit 1 +K14407 CSTF2, RNA15; cleavage stimulation factor subunit 2 +K14408 CSTF3, RNA14; cleavage stimulation factor subunit 3 +K14409 SMG7, EST1C; protein SMG7 +K14410 ACP2; lysosomal acid phosphatase [EC:3.1.3.2] +K14411 MSI; RNA-binding protein Musashi +K14412 FUT13, FucTC; alpha-1,4-fucosyltransferase [EC:2.4.1.65] +K14413 GALT1; beta-1,3-galactosyltransferase [EC:2.4.1.-] +K14414 rtcR; transcriptional regulatory protein RtcR +K14415 RTCB, rtcB; tRNA-splicing ligase RtcB (3'-phosphate/5'-hydroxy nucleic acid ligase) [EC:6.5.1.8] +K14416 HBS1; elongation factor 1 alpha-like protein +K14417 fcbA; 4-chlorobenzoate-CoA ligase [EC:6.2.1.33] +K14418 fcbB; 4-chlorobenzoyl-CoA dehalogenase [EC:3.8.1.7] +K14419 caaD1; alpha-subunit of trans-3-chloroacrylic acid dehalogenase [EC:3.8.1.-] +K14420 caaD2; beta-subunit of trans-3-chloroacrylic acid dehalogenase [EC:3.8.1.-] +K14421 cis-caaD; cis-3-chloroacrylic acid dehalogenase [EC:3.8.1.-] +K14422 msaD; malonate semialdehyde decarboxylase [EC:4.1.1.-] +K14423 SMO1; plant 4,4-dimethylsterol C-4alpha-methyl-monooxygenase [EC:1.14.18.10] +K14424 SMO2; plant 4alpha-monomethylsterol monooxygenase [EC:1.14.18.11] +K14425 SLC12A1, NKCC2; solute carrier family 12 (sodium/potassium/chloride transporter), member 1 +K14426 SLC12A3, TSC; solute carrier family 12 (sodium/chloride transporter), member 3 +K14427 SLC12A4_6, KCC1_3; solute carrier family 12 (potassium/chloride transporter), member 4/6 +K14428 SLC12A8, CCC9; solute carrier family 12 (potassium/chloride transporters), member 8 +K14429 SLC12A9, CCC6; solute carrier family 12 (potassium/chloride transporters), member 9 +K14430 PHO87_91; phosphate transporter +K14431 TGA; transcription factor TGA +K14432 ABF; ABA responsive element binding factor +K14433 DQX1; ATP-dependent helicase [EC:5.6.2.-] +K14434 GALT-1; alpha 1,6-fucoside beta 1,4-galactosyltransferase [EC:2.4.1.-] +K14435 CHD5; chromodomain-helicase-DNA-binding protein 5 [EC:5.6.2.-] +K14436 CHD6; chromodomain-helicase-DNA-binding protein 6 [EC:5.6.2.-] +K14437 CHD7; chromodomain-helicase-DNA-binding protein 7 [EC:5.6.2.-] +K14438 CHD9; chromodomain-helicase-DNA-binding protein 9 [EC:5.6.2.-] +K14439 SMARCAD1; SWI/SNF-related matrix-associated actin-dependent regulator of chromatin subfamily A containing DEAD/H box 1 [EC:5.6.2.-] +K14440 SMARCAL1, HARP; SWI/SNF-related matrix-associated actin-dependent regulator of chromatin subfamily A-like protein 1 [EC:5.6.2.-] +K14441 rimO; ribosomal protein S12 methylthiotransferase [EC:2.8.4.4] +K14442 DHX36, RHAU; ATP-dependent RNA helicase DHX36 [EC:5.6.2.6] +K14443 TOB; protein Tob/BTG +K14444 SLC13A1_4; solute carrier family 13 (sodium/sulfate cotransporter), member 1/4 +K14445 SLC13A2_3_5; solute carrier family 13 (sodium-dependent dicarboxylate transporter), member 2/3/5 +K14446 ccr; crotonyl-CoA carboxylase/reductase [EC:1.3.1.85] +K14447 ecm; ethylmalonyl-CoA mutase [EC:5.4.99.63] +K14448 mcd; (2S)-methylsuccinyl-CoA dehydrogenase [EC:1.3.8.12] +K14449 mch, mcd; 2-methylfumaryl-CoA hydratase [EC:4.2.1.148] +K14451 mcl2; (3S)-malyl-CoA thioesterase [EC:3.1.2.30] +K14452 LIPF; gastric triacylglycerol lipase [EC:3.1.1.3] +K14453 K14453; solute carrier family 26, other +K14454 GOT1; aspartate aminotransferase, cytoplasmic [EC:2.6.1.1] +K14455 GOT2; aspartate aminotransferase, mitochondrial [EC:2.6.1.1] +K14456 MOGAT3, MGAT3; 2-acylglycerol O-acyltransferase 3 [EC:2.3.1.20 2.3.1.22] +K14457 MOGAT2, MGAT2; 2-acylglycerol O-acyltransferase 2 [EC:2.3.1.22] +K14458 MOGAT1, MGAT1; 2-acylglycerol O-acyltransferase 1 [EC:2.3.1.22] +K14459 HEX; hexosaminidase [EC:3.2.1.52] +K14460 CLPS; colipase +K14461 NPC1L1; Niemann-Pick C1-like protein 1 +K14462 APOB; apolipoprotein B +K14463 MTTP, MTP; microsomal triglyceride transfer protein large subunit +K14464 FUT-1, FucTC; alpha-1,3-fucosyltransferase [EC:2.4.1.-] +K14465 K14465; succinate semialdehyde reductase (NADPH) [EC:1.1.1.-] +K14466 K14466; 4-hydroxybutyrate---CoA ligase (AMP-forming) [EC:6.2.1.40] +K14467 4hbl; 4-hydroxybutyrate---CoA ligase (AMP-forming) [EC:6.2.1.40] +K14468 mcr; malonyl-CoA reductase / 3-hydroxypropionate dehydrogenase (NADP+) [EC:1.2.1.75 1.1.1.298] +K14469 K14469; acrylyl-CoA reductase (NADPH) / 3-hydroxypropionyl-CoA dehydratase / 3-hydroxypropionyl-CoA synthetase [EC:1.3.1.84 4.2.1.116 6.2.1.36] +K14470 mct; 2-methylfumaryl-CoA isomerase [EC:5.4.1.3] +K14471 smtA1; succinyl-CoA:(S)-malate CoA-transferase subunit A [EC:2.8.3.22] +K14472 smtB; succinyl-CoA:(S)-malate CoA-transferase subunit B [EC:2.8.3.22] +K14473 VSG; variant surface glycoprotein +K14474 TLTF; T-lymphocyte triggering factor +K14475 ICP; inhibitor of cysteine peptidase +K14477 HPR; haptoglobin-related protein +K14478 HPHBR; haptoglobin-hemoglobin receptor +K14479 EP; procyclin +K14480 APOL; apolipoprotein L +K14481 styA; styrene monooxygenase [EC:1.14.14.11] +K14482 styB; styrene monooxygenase reductase component [EC:1.5.1.-] +K14483 SNORD3, U3, SNR17; small nucleolar RNA SNORD3 +K14484 IAA; auxin-responsive protein IAA +K14485 TIR1; transport inhibitor response 1 +K14486 ARF; auxin response factor +K14487 GH3; auxin responsive GH3 gene family +K14488 SAUR; SAUR family protein +K14489 AHK2_3_4; arabidopsis histidine kinase 2/3/4 (cytokinin receptor) [EC:2.7.13.3] +K14490 AHP; histidine-containing phosphotransfer peotein +K14491 ARR-B; two-component response regulator ARR-B family +K14492 ARR-A; two-component response regulator ARR-A family +K14493 GID1; gibberellin receptor GID1 [EC:3.-.-.-] +K14494 DELLA; DELLA protein +K14495 GID2, SLY1; F-box protein GID2 +K14496 PYL; abscisic acid receptor PYR/PYL family +K14497 PP2C; protein phosphatase 2C [EC:3.1.3.16] +K14498 SNRK2; serine/threonine-protein kinase SRK2 [EC:2.7.11.1] +K14499 BKI1; BRI1 kinase inhibitor 1 +K14500 BSK; BR-signaling kinase [EC:2.7.11.1] +K14501 BSU1; serine/threonine-protein phosphatase BSU1 [EC:3.1.3.16] +K14502 ASK6_7_9, BIN2; shaggy-related protein kinase (protein brassinosteroid insensitive 2) [EC:2.7.11.1] +K14503 BZR1_2; brassinosteroid resistant 1/2 +K14504 TCH4; xyloglucan:xyloglucosyl transferase TCH4 [EC:2.4.1.207] +K14505 CYCD3; cyclin D3, plant +K14506 JAR1_4_6; jasmonic acid-amino synthetase [EC:6.3.2.52] +K14507 ORCA2_3; AP2-domain DNA-binding protein ORCA2/3 +K14508 NPR1; regulatory protein NPR1 +K14509 ETR, ERS; ethylene receptor [EC:2.7.13.-] +K14510 CTR1; serine/threonine-protein kinase CTR1 [EC:2.7.11.1] +K14512 MPK6; mitogen-activated protein kinase 6 [EC:2.7.11.24] +K14513 EIN2; ethylene-insensitive protein 2 +K14514 EIN3; ethylene-insensitive protein 3 +K14515 EBF1_2; EIN3-binding F-box protein +K14516 ERF1; ethylene-responsive transcription factor 1 +K14517 ERF2; ethylene-responsive transcription factor 2 +K14518 pipX; PII interaction protein X +K14519 aldH; NADP-dependent aldehyde dehydrogenase [EC:1.2.1.4] +K14520 hapE; 4-hydroxyacetophenone monooxygenase [EC:1.14.13.84] +K14521 NAT10, KRE33; N-acetyltransferase 10 [EC:2.3.1.-] +K14522 POP3; ribonuclease P/MRP protein subunit POP3 [EC:3.1.26.5] +K14523 RPP38; ribonucleases P/MRP protein subunit RPP38 [EC:3.1.26.5] +K14524 POP6; ribonuclease P/MRP protein subunit POP6 [EC:3.1.26.5] +K14525 RPP25; ribonucleases P/MRP protein subunit RPP25 [EC:3.1.26.5] +K14526 POP7, RPP2; ribonuclease P/MRP protein subunit POP7 [EC:3.1.26.5] +K14527 RPP20, POP7; ribonuclease P/MRP protein subunit RPP20 [EC:3.1.26.5] +K14528 POP8; ribonuclease P/MRP protein subunit POP8 [EC:3.1.26.5] +K14529 RPP14; ribonuclease P protein subunit RPP14 [EC:3.1.26.5] +K14530 RPP40; ribonucleases P/MRP protein subunit RPP40 [EC:3.1.26.5] +K14531 SNM1; ribonuclease MRP protein subunit SNM1 +K14532 RMP1; ribonuclease MRP protein subunit RMP1 +K14533 RPM2; ribonuclease P protein component, mitochondrial [EC:3.1.26.5] +K14534 abfD; 4-hydroxybutyryl-CoA dehydratase / vinylacetyl-CoA-Delta-isomerase [EC:4.2.1.120 5.3.3.3] +K14535 TAF9; transcription initiation factor TFIID subunit 9 +K14536 RIA1; ribosome assembly protein 1 [EC:3.6.5.-] +K14537 NUG2, GNL2; nuclear GTP-binding protein +K14538 NUG1, GNL3; nuclear GTP-binding protein +K14539 LSG1; large subunit GTPase 1 [EC:3.6.1.-] +K14540 rbgA; ribosome biogenesis GTPase A +K14541 DUR1; urea carboxylase / allophanate hydrolase [EC:6.3.4.6 3.5.1.54] +K14543 MTR2; mRNA transport regulator MTR2 +K14544 UTP22, NOL6; U3 small nucleolar RNA-associated protein 22 +K14545 RRP7; ribosomal RNA-processing protein 7 +K14546 UTP5, WDR43; U3 small nucleolar RNA-associated protein 5 +K14547 UTP8; U3 small nucleolar RNA-associated protein 8 +K14548 UTP4, CIRH1A; U3 small nucleolar RNA-associated protein 4 +K14549 UTP15; U3 small nucleolar RNA-associated protein 15 +K14550 UTP10, HEATR1; U3 small nucleolar RNA-associated protein 10 +K14551 UTP9; U3 small nucleolar RNA-associated protein 9 +K14552 NAN1, UTP17, WDR75; NET1-associated nuclear protein 1 (U3 small nucleolar RNA-associated protein 17) +K14553 UTP18; U3 small nucleolar RNA-associated protein 18 +K14554 UTP21, WDR36; U3 small nucleolar RNA-associated protein 21 +K14555 UTP13, TBL3; U3 small nucleolar RNA-associated protein 13 +K14556 DIP2, UTP12, WDR3; U3 small nucleolar RNA-associated protein 12 +K14557 UTP6; U3 small nucleolar RNA-associated protein 6 +K14558 PWP2, UTP1; periodic tryptophan protein 2 +K14559 MPP10; U3 small nucleolar RNA-associated protein MPP10 +K14560 IMP3; U3 small nucleolar ribonucleoprotein protein IMP3 +K14561 IMP4; U3 small nucleolar ribonucleoprotein protein IMP4 +K14562 TCOF1; Treacher Collins syndrome protein +K14563 NOP1, FBL; rRNA 2'-O-methyltransferase fibrillarin [EC:2.1.1.-] +K14564 NOP56; nucleolar protein 56 +K14565 NOP58; nucleolar protein 58 +K14566 UTP24, FCF1; U3 small nucleolar RNA-associated protein 24 +K14567 UTP14; U3 small nucleolar RNA-associated protein 14 +K14568 EMG1, NEP1; rRNA small subunit pseudouridine methyltransferase Nep1 [EC:2.1.1.260] +K14569 BMS1; ribosome biogenesis protein BMS1 +K14570 REX1, REXO1, REXO5, RNH70; RNA exonuclease [EC:3.1.-.-] +K14571 RIX7, NVL; ribosome biogenesis ATPase +K14572 MDN1, REA1; midasin +K14573 NOP4, RBM28; nucleolar protein 4 +K14574 SDO1, SBDS; ribosome maturation protein SDO1 +K14575 AFG2, DRG1, SPATA5; AAA family ATPase +K14576 RMRP; small nucleolar RNA MRP +K14577 E4.1.2.46; aliphatic (R)-hydroxynitrile lyase [EC:4.1.2.46] +K14578 nahAb, nagAb, ndoA, nbzAb, dntAb; naphthalene 1,2-dioxygenase ferredoxin component +K14579 nahAc, ndoB, nbzAc, dntAc; naphthalene 1,2-dioxygenase subunit alpha [EC:1.14.12.12 1.14.12.23 1.14.12.24] +K14580 nahAd, ndoC, nbzAd, dntAd; naphthalene 1,2-dioxygenase subunit beta [EC:1.14.12.12 1.14.12.23 1.14.12.24] +K14581 nahAa, nagAa, ndoR, nbzAa, dntAa; naphthalene 1,2-dioxygenase ferredoxin reductase component [EC:1.18.1.7] +K14582 nahB, doxE; cis-1,2-dihydro-1,2-dihydroxynaphthalene/dibenzothiophene dihydrodiol dehydrogenase [EC:1.3.1.29 1.3.1.60] +K14583 nahC; 1,2-dihydroxynaphthalene dioxygenase [EC:1.13.11.56] +K14584 nahD; 2-hydroxychromene-2-carboxylate isomerase [EC:5.99.1.4] +K14585 nahE; trans-o-hydroxybenzylidenepyruvate hydratase-aldolase [EC:4.1.2.45] +K14586 nmoAB; 2-naphthoate monooxygenase +K14587 sgcE; protein sgcE [EC:5.1.3.-] +K14588 cueO; cuproxidase [EC:1.16.3.4] +K14589 CMTR1, FTSJD2, MTR1; cap1 methyltransferase [EC:2.1.1.57] +K14590 CMTR2, FTSJD1, AFT; cap2 methyltransferase [EC:2.1.1.296] +K14591 aroM; protein AroM +K14592 FOLH1, GCPII; glutamate carboxypeptidase II (folate hydrolase 1) [EC:3.4.17.21] +K14593 CCS1; capsanthin/capsorubin synthase [EC:5.3.99.8] +K14594 NSY; neoxanthin synthase [EC:5.3.99.9] +K14595 AOG; abscisate beta-glucosyltransferase [EC:2.4.1.263] +K14596 crtX; zeaxanthin glucosyltransferase [EC:2.4.1.276] +K14597 cruC; chlorobactene glucosyltransferase +K14598 cruD; chlorobactene lauroyltransferase +K14599 dbfA1; dibenzofuran dioxygenase subunit alpha [EC:1.14.12.-] +K14600 dbfA2; dibenzofuran dioxygenase subunit beta [EC:1.14.12.-] +K14601 flnB; 1,1a-dihydroxy-1-hydro-9-fluorenone dehydrogenase +K14602 flnD1; 2'-carboxy-2,3-dihydroxybiphenyl 1,2-dioxygenase large subunit +K14603 flnD2; 2'-carboxy-2,3-dihydroxybiphenyl 1,2-dioxygenase small subunit and ferredoxin fusion protein +K14604 flnE; 2-hydroxy-6-oxo-6-(2'-carboxyphenyl)-hexa-2,4-dienoate hydrolase [EC:3.7.1.-] +K14605 cruA; lycopene cyclase CruA [EC:5.5.1.19] +K14606 cruP; lycopene cyclase CruP [EC:5.5.1.19] +K14607 SULF; extracellular sulfatase Sulf [EC:3.1.6.-] +K14608 OASL; 2'-5'-oligoadenylate synthase-like protein +K14609 SLC19A1, RFC1; solute carrier family 19 (folate transporter), member 1 +K14610 SLC19A2_3, THTR; solute carrier family 19 (thiamine transporter), member 2/3 +K14611 SLC23A1, SVCT1; solute carrier family 23 (nucleobase transporter), member 1 +K14612 SLC23A3, SVCT3; solute carrier family 23 (nucleobase transporter), member 3 +K14613 SLC46A1; MFS transporter, PCFT/HCP family, solute carrier family 46 (folate transporter), member 1 +K14614 SLC46A2; MFS transporter, PCFT/HCP family, solute carrier family 46 (thymic stromal cotransporter), member 2 +K14615 CBLIF, GIF, IF; gastric intrinsic factor +K14616 CUBN; cubilin +K14617 LMBRD1; LMBR1 domain-containing protein 1 +K14618 MMACHC; cyanocobalamin reductase (cyanide-eliminating) / alkylcobalamin dealkylase [EC:1.16.1.6 2.5.1.151] +K14619 TCN2; transcobalamin-2 +K14620 SLC52A3, RFT2; riboflavin transporter 2 +K14621 PLB1, PLB; phospholipase B1, membrane-associated [EC:3.1.1.4 3.1.1.5] +K14622 RBP2, CRBP2; retinol binding protein 2 +K14623 dinD; DNA-damage-inducible protein D +K14624 CCL2, MCP1; C-C motif chemokine 2 +K14625 CCL20; C-C motif chemokine 20 +K14626 actVIA; actinorhodin biosynthesis protein ActVIA +K14627 actVI3; dehydratase [EC:4.2.1.-] +K14628 actVI2; enoyl reductase +K14629 actVI4; enoyl reductase +K14630 actVA5; two-component flavin-dependent monooxygenase [EC:1.14.14.-] +K14631 actVB; flavin reductase ActVB [EC:1.5.1.-] +K14632 actVA6; C-6 monooxygenase +K14633 gra6, RED2; ketoreductase RED2 [EC:1.1.1.-] +K14634 TIGAR; fructose-2,6-bisphosphatase [EC:3.1.3.46] +K14635 MPH1; ATP-dependent DNA helicase MPH1 [EC:5.6.2.4] +K14636 SLC18A3, VACHT; MFS transporter, DHA1 family, solute carrier family 18 (vesicular acetylcholine transporter), member 3 +K14637 SLC15A2, PEPT2; solute carrier family 15 (oligopeptide transporter), member 2 +K14638 SLC15A3_4, PHT, NPF8; solute carrier family 15 (peptide/histidine transporter), member 3/4 +K14639 SLC15A5; solute carrier family 15, member 5 +K14640 SLC20A, PIT; solute carrier family 20 (sodium-dependent phosphate transporter) +K14641 APY; apyrase [EC:3.6.1.5] +K14642 YND1; golgi apyrase [EC:3.6.1.5] +K14643 ENTPD7; ectonucleoside triphosphate diphosphohydrolase 7 [EC:3.6.1.-] +K14644 OSW3, RRT12; subtilase-type proteinase RRT12 [EC:3.4.21.-] +K14645 K14645; serine protease [EC:3.4.21.-] +K14647 vpr; minor extracellular serine protease Vpr [EC:3.4.21.-] +K14648 ENDOU, PP11; poly(U)-specific endoribonuclease [EC:3.1.-.-] +K14649 TAF8; transcription initiation factor TFIID subunit 8 +K14650 TAF3; transcription initiation factor TFIID subunit 3 +K14651 TAF15, NPL3; transcription initiation factor TFIID subunit 15 +K14652 ribBA; 3,4-dihydroxy 2-butanone 4-phosphate synthase / GTP cyclohydrolase II [EC:4.1.99.12 3.5.4.25] +K14653 arfB; 2-amino-5-formylamino-6-ribosylaminopyrimidin-4(3H)-one 5'-monophosphate deformylase [EC:3.5.1.102] +K14654 RIB7, arfC; 2,5-diamino-6-(ribosylamino)-4(3H)-pyrimidinone 5'-phosphate reductase [EC:1.1.1.302] +K14655 RIB2, PUS8; tRNA pseudouridine32 synthase / 2,5-diamino-6-(5-phospho-D-ribitylamino)-pyrimidin-4(3H)-one deaminase [EC:5.4.99.28] +K14656 ribL; FAD synthetase [EC:2.7.7.2] +K14657 nodD; LysR family transcriptional regulator, nod-box dependent transcriptional activator +K14658 nodA; nodulation protein A [EC:2.3.1.-] +K14659 nodB; chitooligosaccharide deacetylase [EC:3.5.1.-] +K14660 nodE; nodulation protein E [EC:2.3.1.-] +K14661 nodF; nodulation protein F [EC:2.3.1.-] +K14662 NTAN1; protein N-terminal asparagine amidohydrolase [EC:3.5.1.121] +K14663 NTA1; protein N-terminal amidase [EC:3.5.1.-] +K14664 ILR1; IAA-amino acid hydrolase [EC:3.5.1.-] +K14665 amhX; amidohydrolase [EC:3.5.1.-] +K14666 nodC; N-acetylglucosaminyltransferase [EC:2.4.1.-] +K14667 whiEIII; minimal PKS ketosynthase (KS/KS alpha) [EC:2.3.1.-] +K14668 whiEIV; minimal PKS chain-length factor (CLF/KS beta) [EC:2.3.1.-] +K14669 whiEV; minimal PKS acyl carrier protein +K14670 whiEVI; aromatase +K14671 whiEVII; cyclase +K14672 whiEVIII; putative polyketide hydroxylase +K14673 whiEII; putative monooxygenase +K14674 TGL4; TAG lipase / steryl ester hydrolase / phospholipase A2 / LPA acyltransferase [EC:3.1.1.3 3.1.1.13 3.1.1.4 2.3.1.51] +K14675 TGL3; TAG lipase / lysophosphatidylethanolamine acyltransferase [EC:3.1.1.3 2.3.1.-] +K14676 NTE, NRE; lysophospholipid hydrolase [EC:3.1.1.5] +K14677 ACY1; aminoacylase [EC:3.5.1.14] +K14678 LOXL1; lysyl oxidase-like protein 1 [EC:1.4.3.-] +K14679 TRL1; tRNA ligase [EC:6.5.1.3] +K14680 K14680; putative RNA ligase [EC:6.5.1.-] +K14681 argHA; argininosuccinate lyase / amino-acid N-acetyltransferase [EC:4.3.2.1 2.3.1.1] +K14682 argAB; amino-acid N-acetyltransferase [EC:2.3.1.1] +K14683 SLC34A, NPT, nptA; solute carrier family 34 (sodium-dependent phosphate cotransporter) +K14684 SLC25A23S; solute carrier family 25 (mitochondrial phosphate transporter), member 23/24/25/41 +K14685 SLC40A1, FPN1; solute carrier family 40 (iron-regulated transporter), member 1 +K14686 SLC31A1, CTR1; solute carrier family 31 (copper transporter), member 1 +K14687 SLC31A2, CTR2; solute carrier family 31 (copper transporter), member 2 +K14688 SLC30A1, ZNT1; solute carrier family 30 (zinc transporter), member 1 +K14689 SLC30A2, ZNT2; solute carrier family 30 (zinc transporter), member 2 +K14690 SLC30A3, ZNT3; solute carrier family 30 (zinc transporter), member 3 +K14691 SLC30A4, ZNT4; solute carrier family 30 (zinc transporter), member 4 +K14692 SLC30A5_7, ZNT5_7, MTP, MSC2; solute carrier family 30 (zinc transporter), member 5/7 +K14693 SLC30A6, ZNT6; solute carrier family 30 (zinc transporter), member 6 +K14694 SLC30A11, ZNT11; solute carrier family 30 (zinc transporter), member 11 +K14695 SLC30A8, ZNT8; solute carrier family 30 (zinc transporter), member 8 +K14696 SLC30A9, ZNT9; solute carrier family 30 (zinc transporter), member 9 +K14697 SLC30A10, ZNT10; solute carrier family 30 (zinc transporter), member 10 +K14698 irtA, ybtP; ATP-binding cassette, subfamily B, bacterial IrtA/YbtP [EC:7.-.-.-] +K14699 irtB, ybtQ; ATP-binding cassette, subfamily B, bacterial IrtB/YbtQ [EC:7.-.-.-] +K14700 SLC26A1, SAT1; solute carrier family 26 (sulfate anion transporter), member 1 +K14701 SLC26A2, DTD; solute carrier family 26 (sulfate anion transporter), member 2 +K14702 SLC26A4, PDS; solute carrier family 26 (sodium-independent chloride/iodide transporter), member 4 +K14703 SLC26A5, PRES; solute carrier family 26, member 5 +K14704 SLC26A6; solute carrier family 26 (sulfate anion transporter), member 6 +K14705 SLC26A8, TAT1; solute carrier family 26 (testis anion transporter), member 8 +K14706 SLC26A9; solute carrier family 26 (sulfate anion transporter), member 9 +K14707 SLC26A10; solute carrier family 26, member 10 +K14708 SLC26A11; solute carrier family 26 (sodium-independent sulfate anion transporter), member 11 +K14709 SLC39A1_2_3, ZIP1_2_3; solute carrier family 39 (zinc transporter), member 1/2/3 +K14710 SLC39A4, ZIP4; solute carrier family 39 (zinc transporter), member 4 +K14711 SLC39A5, ZIP5; solute carrier family 39 (zinc transporter), member 5 +K14712 SLC39A6, LIV1, ZIP6; solute carrier family 39 (zinc transporter), member 6 +K14713 SLC39A7, KE4, ZIP7; solute carrier family 39 (zinc transporter), member 7 +K14714 SLC39A8, ZIP8; solute carrier family 39 (zinc transporter), member 8 +K14715 SLC39A9, ZIP9; solute carrier family 39 (zinc transporter), member 9 +K14716 SLC39A10, ZIP10; solute carrier family 39 (zinc transporter), member 10 +K14717 SLC39A11, ZIP11; solute carrier family 39 (zinc transporter), member 11 +K14718 SLC39A12, ZIP12; solute carrier family 39 (zinc transporter), member 12 +K14719 SLC39A13, ZIP13; solute carrier family 39 (zinc transporter), member 13 +K14720 SLC39A14, ZIP14; solute carrier family 39 (zinc transporter), member 14 +K14721 RPC5, POLR3E; DNA-directed RNA polymerase III subunit RPC5 +K14722 SLC9A2, NHE2; solute carrier family 9 (sodium/hydrogen exchanger), member 2 +K14723 SLC9A5, NHE5; solute carrier family 9 (sodium/hydrogen exchanger), member 5 +K14724 SLC9A8, NHE8; solute carrier family 9 (sodium/hydrogen exchanger), member 8 +K14725 SLC9A9, NHE9; solute carrier family 9 (sodium/hydrogen exchanger), member 9 +K14726 SLC9A10_11; solute carrier family 9 (sodium/hydrogen exchanger), member 10/11 +K14727 pcaL; 3-oxoadipate enol-lactonase / 4-carboxymuconolactone decarboxylase [EC:3.1.1.24 4.1.1.44] +K14728 K14728; phthiodiolone/phenolphthiodiolone dimycocerosates ketoreductase [EC:1.2.-.-] +K14729 FOX2; multifunctional beta-oxidation protein [EC:4.2.1.- 1.1.1.-] +K14730 E1.1.1.243; (-)-trans-carveol dehydrogenase [EC:1.1.1.243] +K14731 mlhB, chnC; epsilon-lactone hydrolase [EC:3.1.1.83] +K14732 K14732; limonene hydroxylase [EC:1.14.14.51 1.14.14.52 1.1.1.243 1.1.1.144] +K14733 limB; limonene 1,2-monooxygenase [EC:1.14.13.107] +K14734 S100G; protein S100-G +K14735 HEPH; hephaestin [EC:1.16.3.1] +K14736 TF; transferrin +K14737 STEAP1; metalloreductase STEAP1 [EC:1.16.1.-] +K14738 STEAP2; metalloreductase STEAP2 [EC:1.16.1.-] +K14739 MT1_2; metallothionein 1/2 +K14740 MT3; metallothionein 3 +K14741 MT4; metallothionein 4 +K14742 tsaB; tRNA threonylcarbamoyladenosine biosynthesis protein TsaB +K14743 mycP; membrane-anchored mycosin MYCP [EC:3.4.21.-] +K14744 rzpD; prophage endopeptidase [EC:3.4.-.-] +K14745 ska; streptokinase A [EC:3.4.-.-] +K14746 ped; (S)-1-phenylethanol dehydrogenase [EC:1.1.1.311] +K14747 bal; benzoylacetate-CoA ligase [EC:6.2.1.-] +K14748 etbAa; ethylbenzene dioxygenase subunit alpha [EC:1.14.12.-] +K14749 etbAb; ethylbenzene dioxygenase subunit beta [EC:1.14.12.-] +K14750 etbAc; ethylbenzene dioxygenase ferredoxin component +K14751 etbC; 2,3-dihydroxyethylbenzene 1,2-dioxygenase [EC:1.13.11.-] +K14752 DOK1; docking protein 1 +K14753 RACK1; guanine nucleotide-binding protein subunit beta-2-like 1 protein +K14754 MX; interferon-induced GTP-binding protein Mx +K14755 CRNS1, ATPGD1; carnosine synthase [EC:6.3.2.11] +K14756 KL; klotho [EC:3.2.1.31] +K14757 CALB1, CALB; calbindin +K14758 HRR25; casein kinase I homolog HRR25 [EC:2.7.11.1] +K14759 PHYLLO; isochorismate synthase / 2-succinyl-5-enolpyruvyl-6-hydroxy-3-cyclohexene-1-carboxylate synthase / 2-succinyl-6-hydroxy-2,4-cyclohexadiene-1-carboxylate synthase / o-succinylbenzoate synthase [EC:5.4.4.2 2.2.1.9 4.2.99.20 4.2.1.113] +K14760 AAE14; o-succinylbenzoate---CoA ligase [EC:6.2.1.26] +K14761 rlbA, ybcJ; ribosome-associated protein +K14762 yibL; ribosome-associated protein +K14763 NAF1; H/ACA ribonucleoprotein complex non-core subunit NAF1 +K14764 SHQ1; protein SHQ1 +K14765 NGDN, LCP5; U3 small nucleolar ribonucleoprotein protein LCP5 +K14766 NOP14, UTP2; nucleolar protein 14 +K14767 UTP3, SAS10; U3 small nucleolar RNA-associated protein 3 +K14768 UTP7, WDR46; U3 small nucleolar RNA-associated protein 7 +K14769 UTP11; U3 small nucleolar RNA-associated protein 11 +K14770 BUD21, UTP16; U3 small nucleolar RNA-associated protein 16 +K14771 NOC4, UTP19; U3 small nucleolar RNA-associated protein 19 +K14772 UTP20; U3 small nucleolar RNA-associated protein 20 +K14773 UTP23; U3 small nucleolar RNA-associated protein 23 +K14774 UTP25, DEF; U3 small nucleolar RNA-associated protein 25 +K14775 UTP30, RSL1D1; ribosome biogenesis protein UTP30 +K14776 DDX10, DBP4; ATP-dependent RNA helicase DDX10/DBP4 [EC:5.6.2.7] +K14777 DDX47, RRP3; ATP-dependent RNA helicase DDX47/RRP3 [EC:5.6.2.7] +K14778 DDX49, DBP8; ATP-dependent RNA helicase DDX49/DBP8 [EC:5.6.2.7] +K14779 DDX52, ROK1; ATP-dependent RNA helicase DDX52/ROK1 [EC:5.6.2.7] +K14780 DHX37, DHR1; ATP-dependent RNA helicase DHX37/DHR1 [EC:5.6.2.6] +K14781 DHR2; ATP-dependent RNA helicase DHR2 [EC:5.6.2.6] +K14782 AATF, BFR2; protein AATF/BFR2 +K14783 CIC1, NSA3; proteasome-interacting protein CIC1 +K14784 CMS1; protein CMS1 +K14785 ESF2, ABT1; ESF2/ABP1 family protein +K14786 KRI1; protein KRI1 +K14787 MRD1, RBM19; multiple RNA-binding domain-containing protein 1 +K14788 NOL10, ENP2; ribosome biogenesis protein ENP2 +K14789 NOP6; nucleolar protein 6 +K14790 NOP9; nucleolar protein 9 +K14791 PWP1; periodic tryptophan protein 1 +K14792 RRP5, PDCD11; rRNA biogenesis protein RRP5 +K14793 RRP9; ribosomal RNA-processing protein 9 +K14794 RRP12; ribosomal RNA-processing protein 12 +K14795 RRP36; ribosomal RNA-processing protein 36 +K14796 TMA23; nucleolar protein TMA23 +K14797 ENP1, BYSL; essential nuclear protein 1 +K14798 LTV1; protein LTV1 +K14799 TSR1; pre-rRNA-processing protein TSR1 +K14800 TSR2; pre-rRNA-processing protein TSR2 +K14801 TSR4; pre-rRNA-processing protein TSR4 +K14802 DRS2, ATP8A; phospholipid-transporting ATPase [EC:7.6.2.1] +K14803 PTC2_3; protein phosphatase PTC2/3 [EC:3.1.3.16] +K14804 SLX9; ribosome biogenesis protein SLX9 +K14805 DDX24, MAK5; ATP-dependent RNA helicase DDX24/MAK5 [EC:5.6.2.7] +K14806 DDX31, DBP7; ATP-dependent RNA helicase DDX31/DBP7 [EC:5.6.2.7] +K14807 DDX51, DBP6; ATP-dependent RNA helicase DDX51/DBP6 [EC:5.6.2.7] +K14808 DDX54, DBP10; ATP-dependent RNA helicase DDX54/DBP10 [EC:5.6.2.7] +K14809 DDX55, SPB4; ATP-dependent RNA helicase DDX55/SPB4 [EC:5.6.2.7] +K14810 DDX56, DBP9; ATP-dependent RNA helicase DDX56/DBP9 [EC:5.6.2.7] +K14811 DBP3; ATP-dependent RNA helicase DBP3 [EC:5.6.2.7] +K14812 NGL2; RNA exonuclease NGL2 [EC:3.1.-.-] +K14813 ARX1; metalloprotease ARX1 [EC:3.-.-.-] +K14814 ALB1; ribosome biogenesis protein ALB1 +K14815 MRT4; mRNA turnover protein 4 +K14816 REI1; pre-60S factor REI1 +K14817 LOC1; 60S ribosomal subunit assembly/export protein LOC1 +K14818 SQT1; ribosome assembly protein SQT1 +K14819 DUSP12, YVH1; dual specificity phosphatase 12 [EC:3.1.3.16 3.1.3.48] +K14820 BRX1, BRIX1; ribosome biogenesis protein BRX1 +K14821 BUD20; bud site selection protein 20 +K14822 CGR1; rRNA-processing protein CGR1 +K14823 EBP2, EBNA1BP2; rRNA-processing protein EBP2 +K14824 ERB1, BOP1; ribosome biogenesis protein ERB1 +K14825 TMED5, ERP2, ERP4; p24 family protein gamma-2 +K14826 FPR3_4; FK506-binding nuclear protein [EC:5.2.1.8] +K14827 IPI1, TEX10; pre-rRNA-processing protein IPI1 +K14828 RIX1, IPI2; pre-rRNA-processing protein RIX1 +K14829 IPI3; pre-rRNA-processing protein IPI3 +K14830 MAK11, PAK1IP1; protein MAK11 +K14831 MAK16; protein MAK16 +K14832 MAK21, NOC1, CEBPZ; ribosome biogenesis protein MAK21 +K14833 NOC2; nucleolar complex protein 2 +K14834 NOC3; nucleolar complex protein 3 +K14835 NOP2; 25S rRNA (cytosine2870-C5)-methyltransferase [EC:2.1.1.310] +K14836 NOP8, NOL8, NOP132; nucleolar protein 8 +K14837 NOP12; nucleolar protein 12 +K14838 NOP15; nucleolar protein 15 +K14839 NOP16; nucleolar protein 16 +K14840 NOP53, GLTSCR2; nucleolar protein 53 +K14841 NSA1, WDR74; ribosome biogenesis protein NSA1 +K14842 NSA2; ribosome biogenesis protein NSA2 +K14843 PES1, NOP7; pescadillo +K14844 PUF6; pumilio homology domain family member 6 +K14845 RAI1, DOM3Z; RAT1-interacting protein +K14846 RPF1; ribosome production factor 1 +K14847 RPF2; ribosome production factor 2 +K14848 RRB1, GRWD1; ribosome assembly protein RRB1 +K14849 RRP1; ribosomal RNA-processing protein 1 +K14850 RRP8; ribosomal RNA-processing protein 8 [EC:2.1.1.287] +K14851 RRP17, NOL12; ribosomal RNA-processing protein 17 +K14852 RRS1; regulator of ribosome biosynthesis +K14853 RSA1; ribosome assembly protein 1 +K14854 RSA3; ribosome assembly protein 3 +K14855 RSA4, NLE1; ribosome assembly protein 4 +K14856 SDA1, SDAD1; protein SDA1 +K14857 SPB1, FTSJ3; AdoMet-dependent rRNA methyltransferase SPB1 [EC:2.1.1.-] +K14858 SRD1; pre-rRNA-processing protein SRD1 +K14859 SSF1_2; ribosome biogenesis protein SSF1/2 +K14860 TMA16; translation machinery-associated protein 16 +K14861 URB1; nucleolar pre-ribosomal-associated protein 1 +K14862 URB2; nucleolar pre-ribosomal-associated protein 2 +K14863 WDR12, YTM1; ribosome biogenesis protein +K14864 FTSJ1, TRM7; tRNA (cytidine32/guanosine34-2'-O)-methyltransferase [EC:2.1.1.205] +K14865 SNORD14, U14, SNR128; small nucleolar RNA SNORD14 +K14866 SNORD18, U18, SNR18; small nucleolar RNA SNORD18 +K14867 SNORD24, U24, SNR24; small nucleolar RNA SNORD24 +K14868 SNR13; small nucleolar RNA SNR13 +K14869 SNORD1, SNR38; small nucleolar RNA SNORD1 +K14870 SNORD2, SNR39B; small nucleolar RNA SNORD2 +K14871 SNR40; small nucleolar RNA SNR40 +K14872 SNR41; small nucleolar RNA SNR41 +K14873 SNR45; small nucleolar RNA SNR45 +K14874 SNORD36, U36, SNR47; small nucleolar RNA SNORD36 +K14875 SNORD60, U60; small nucleolar RNA SNORD60 +K14876 SNR50; small nucleolar RNA SNR50 +K14877 SNORD57, U57, SNR51; small nucleolar RNA SNORD57 +K14878 SNR52; small nucleolar RNA SNR52 +K14879 SNORA70, U70; small nucleolar RNA SNORA70 +K14880 SNORD59, U59, SNR54; small nucleolar RNA SNORD59 +K14881 SNORD32_33, U32_33, SNR55; small nucleolar RNA SNORD32/33 +K14882 SNORD25, U25, SNR56; small nucleolar RNA SNORD25 +K14883 SNR57; small nucleolar RNA SNR57 +K14884 SNORD52, U52; small nucleolar RNA SNORD52 +K14885 SNORD51, U51, SNR39_59; small nucleolar RNA SNORD51 +K14886 SNORD77_80, U77_80, SNR60; small nucleolar RNA SNORD77/80 +K14887 SNORD38, U38, SNR61; small nucleolar RNA SNORD38 +K14888 SNORD34, U34, SNR62; small nucleolar RNA SNORD34 +K14889 SNORD46, U46; small nucleolar RNA SNORD46 +K14890 SNORD74, U74, SNR64; small nucleolar RNA SNORD74 +K14891 SNR65; small nucleolar RNA SNR65 +K14892 SNORD42, U42, SNR66; small nucleolar RNA SNORD42 +K14893 SNORD31, U31, SNR67; small nucleolar RNA SNORD31 +K14894 SNR68; small nucleolar RNA SNR68 +K14895 SNORD29, U29; small nucleolar RNA SNORD29 +K14896 SNORD11, SNR70; small nucleolar RNA SNORD11 +K14897 SNR71; small nucleolar RNA SNR71 +K14898 SNR72; small nucleolar RNA SNR72 +K14899 SNORD35, U35; small nucleolar RNA SNORD35 +K14900 SNORD27, U27, SNR74; small nucleolar RNA SNORD27 +K14901 SNR75; small nucleolar RNA SNR75 +K14902 SNR76; small nucleolar RNA SNR76 +K14903 SNORD65, SNR77; small nucleolar RNA SNORD65 +K14904 SNORD104, U104; small nucleolar RNA SNORD104 +K14905 SNR79; small nucleolar RNA SNR79 +K14906 SNORD16, U16; small nucleolar RNA SNORD16 +K14907 SNORD12; small nucleolar RNA SNORD12 +K14908 SNORA73, U17; small nucleolar RNA SNORA73 +K14909 SNORA21, ACA21; small nucleolar RNA SNORA21 +K14910 SNORA6_62; small nucleolar RNA SNORA6/62 +K14911 SNORA52, ACA52; small nucleolar RNA SNORA52 +K14912 SNORA56, ACA56; small nucleolar RNA SNORA56 +K14913 snR9; small nucleolar RNA snR9 +K14914 SNORA3, ACA3; small nucleolar RNA SNORA3 +K14915 snR31; small nucleolar RNA snR31 +K14916 SNORA14, ACA14, SNR32; small nucleolar RNA SNORA14 +K14917 SNORD88; small nucleolar RNA SNORD88 +K14918 SNORA1, ACA1; small nucleolar RNA SNORA1 +K14919 SNORD62, U62; small nucleolar RNA SNORD62 +K14920 SNORD47, U47; small nucleolar RNA SNORD47 +K14921 SNORD15, U15; small nucleolar RNA SNORD15 +K14922 SNORA2_34, ACA2_34; small nucleolar RNA SNORA2/34 +K14923 SNORA5, ACA5; small nucleolar RNA SNORA5 +K14924 SNORA10_64; small nucleolar RNA SNORA10/64 +K14925 SNORA11; small nucleolar RNA SNORA11 +K14926 SNORA40, ACA40, SNR49; small nucleolar RNA SNORA40 +K14927 SNORA16; small nucleolar RNA SNORA16 +K14928 SNORA50_76; small nucleolar RNA SNORA50/76 +K14929 SNORA53, ACA53; small nucleolar RNA SNORA53 +K14930 SNORA13, ACA13; small nucleolar RNA SNORA13 +K14931 SNORA54, ACA54; small nucleolar RNA SNORA54 +K14932 SNORA74, U19; small nucleolar RNA SNORA74 +K14933 SNORA20, ACA20; small nucleolar RNA SNORA20 +K14934 SNORD19; small nucleolar RNA SNORD19 +K14935 SNORA77, ACA63; small nucleolar RNA SNORA77 +K14936 SNORA78, ACA64; small nucleolar RNA SNORA78 +K14937 CYP15A1_C1; methyl farnesoate epoxidase / farnesoate epoxidase [EC:1.14.14.127 1.14.14.128] +K14938 NVD, DAF36; cholesterol 7-desaturase [EC:1.14.19.21] +K14939 SPO, SPOK, CYP307A; cytochrome P450 family 307 subfamily A +K14940 cofF; gamma-F420-2:alpha-L-glutamate ligase [EC:6.3.2.32] +K14941 cofC, fbiD; 2-phospho-L-lactate/phosphoenolpyruvate guanylyltransferase [EC:2.7.7.68 2.7.7.105] +K14942 KHDRBS3, SLM2; KH domain-containing, RNA-binding, signal transduction-associated protein 3 +K14943 MBNL; muscleblind +K14944 NOVA; RNA-binding protein Nova +K14945 QKI; protein quaking +K14946 RBFOX, FOX; RNA binding protein fox-1 +K14947 ESRP1_2; epithelial splicing regulatory protein 1/2 +K14948 PTBP2, NPTB; polypyrimidine tract-binding protein 2 +K14949 pknG; serine/threonine-protein kinase PknG [EC:2.7.11.1] +K14950 ATP13A1, SPF1; manganese-transporting P-type ATPase [EC:7.2.2.-] +K14951 ATP13A3_4_5; cation-transporting P-type ATPase 13A3/4/5 [EC:7.2.2.-] +K14952 namH; UDP-MurNAc hydroxylase +K14953 lpqH; ipoprotein LpqH +K14954 lprG; lipoprotein LprG +K14955 lprA; lipoprotein LprA +K14956 esx, esat6, cfp10; ESAT-6 family protein +K14957 LSP1; lymphocyte-specific protein 1 +K14958 KSR1; kinase suppressor of Ras 1 +K14959 MLL4; [histone H3]-lysine4 N-trimethyltransferase MLL4 [EC:2.1.1.354] +K14960 CXXC1, SPP1, CPS40; COMPASS component SPP1 +K14961 RBBP5, SWD1, CPS50; COMPASS component SWD1 +K14962 WDR82, SWD2, CPS35; COMPASS component SWD2 +K14963 WDR5, SWD3, CPS30; COMPASS component SWD3 +K14964 ASH2; Set1/Ash2 histone methyltransferase complex subunit ASH2 +K14965 DPY30; protein dpy-30 +K14966 HCFC1; host cell factor 1 +K14967 BRE2, CPS60; COMPASS component BRE2 +K14968 CPS25, SDC1; COMPASS component SDC1 +K14969 SHG1, CPS15; COMPASS component SHG1 +K14970 MEN1, MNN1; menin +K14971 NCOA6, ASC2; nuclear receptor coactivator 6 +K14972 PAXIP1, PTIP; PAX-interacting protein 1 +K14973 PA1; PAXIP1-associated protein 1 +K14974 nicC; 6-hydroxynicotinate 3-monooxygenase [EC:1.14.13.114] +K14975 CODM; codeine 3-O-demethylase [EC:1.14.11.32] +K14976 T6ODM; thebaine 6-O-demethylase [EC:1.14.11.31] +K14977 ylbA, UGHY; (S)-ureidoglycine aminohydrolase [EC:3.5.3.26] +K14978 ssrA; two-component system, LuxR family, secretion system sensor histidine kinase SsrA +K14979 ssrB; two-component system, LuxR family, secretion system response regulator SsrB +K14980 chvG; two-component system, OmpR family, sensor histidine kinase ChvG [EC:2.7.13.3] +K14981 chvI; two-component system, OmpR family, response regulator ChvI +K14982 ciaH; two-component system, OmpR family, sensor histidine kinase CiaH [EC:2.7.13.3] +K14983 ciaR; two-component system, OmpR family, response regulator CiaR +K14984 CYP79D3_4; isoleucine N-monooxygenase [EC:1.14.14.39] +K14985 CYP18A1; 26-hydroxylase [EC:1.14.-.-] +K14986 fixL; two-component system, LuxR family, sensor kinase FixL [EC:2.7.13.3] +K14987 fixJ; two-component system, LuxR family, response regulator FixJ +K14988 salK; two-component system, NarL family, secretion system sensor histidine kinase SalK +K14989 salR; two-component system, NarL family, secretion system response regulator SalR +K14990 SLC38A1, SNAT1, GLNT; solute carrier family 38 (sodium-coupled neutral amino acid transporter), member 1 +K14991 SLC38A4, SNAT4; solute carrier family 38 (sodium-coupled neutral amino acid transporter), member 4 +K14992 SLC38A5, SNAT5; solute carrier family 38 (sodium-coupled neutral amino acid transporter), member 5 +K14993 SLC38A6, SNAT6; solute carrier family 38 (sodium-coupled neutral amino acid transporter), member 6 +K14994 SLC38A7_8; solute carrier family 38 (sodium-coupled neutral amino acid transporter), member 7/8 +K14995 SLC38A9; solute carrier family 38 (sodium-coupled neutral amino acid transporter), member 9 +K14996 SLC38A10; solute carrier family 38 (sodium-coupled neutral amino acid transporter), member 10 +K14997 SLC38A11; solute carrier family 38 (sodium-coupled neutral amino acid transporter), member 11 +K14998 SURF1, SHY1; surfeit locus 1 family protein +K14999 CYP6; cytochrome P450 family 6 [EC:1.14.-.-] +K15001 CYP4; cytochrome P450 family 4 [EC:1.14.-.-] +K15003 CYP9; cytochrome P450 family 9 [EC:1.14.-.-] +K15004 CYP12; cytochrome P450 family 12 [EC:1.14.-.-] +K15005 CYP28; cytochrome P450 family 28 [EC:1.14.-.-] +K15006 CYP309; cytochrome P450 family 309 [EC:1.14.-.-] +K15007 CYP313; cytochrome P450 family 313 [EC:1.14.-.-] +K15008 DLGAP1, GKAP; discs, large-associated protein 1 +K15009 SHANK; SH3 and multiple ankyrin repeat domains protein +K15010 HOMER; homer +K15011 regB, regS, actS; two-component system, sensor histidine kinase RegB [EC:2.7.13.3] +K15012 regA, regR, actR; two-component system, response regulator RegA +K15013 ACSBG; long-chain-fatty-acid--CoA ligase ACSBG [EC:6.2.1.3] +K15014 SLC29A1_2_3, ENT1_2_3; solute carrier family 29 (equilibrative nucleoside transporter), member 1/2/3 +K15015 SLC32A, VGAT; solute carrier family 32 (vesicular inhibitory amino acid transporter) +K15016 K15016; enoyl-CoA hydratase / 3-hydroxyacyl-CoA dehydrogenase [EC:4.2.1.17 1.1.1.35] +K15017 K15017; malonyl-CoA/succinyl-CoA reductase (NADPH) [EC:1.2.1.75 1.2.1.76] +K15018 K15018; 3-hydroxypropionyl-coenzyme A synthetase [EC:6.2.1.36] +K15019 K15019; 3-hydroxypropionyl-coenzyme A dehydratase [EC:4.2.1.116] +K15020 K15020; acryloyl-coenzyme A reductase [EC:1.3.1.84] +K15022 fdhB; formate dehydrogenase (NADP+) beta subunit [EC:1.17.1.10] +K15023 acsE; 5-methyltetrahydrofolate corrinoid/iron sulfur protein methyltransferase [EC:2.1.1.258] +K15024 K15024; putative phosphotransacetylase [EC:2.3.1.8] +K15025 EIF1AD; probable RNA-binding protein EIF1AD +K15026 EIF2A; translation initiation factor 2A +K15027 EIF2D; translation initiation factor 2D +K15028 EIF3K; translation initiation factor 3 subunit K +K15029 EIF3L; translation initiation factor 3 subunit L +K15030 EIF3M; translation initiation factor 3 subunit M +K15031 MTERF; mitochondrial transcription termination factor family protein +K15033 ICT1, MRPL58; peptidyl-tRNA hydrolase ICT1 [EC:3.1.1.29] +K15034 yaeJ; ribosome-associated protein +K15035 ssrA, sipB; transfer-messenger RNA +K15036 K15036; acetyl-CoA/propionyl-CoA carboxylase [EC:6.4.1.2 6.4.1.3 2.1.3.15] +K15037 K15037; biotin carboxyl carrier protein +K15038 K15038; succinyl-CoA reductase [EC:1.2.1.76] +K15039 K15039; 3-hydroxypropionate dehydrogenase (NADP+) [EC:1.1.1.298] +K15040 VDAC2; voltage-dependent anion channel protein 2 +K15041 VDAC3; voltage-dependent anion channel protein 3 +K15042 KPNA5_6; importin subunit alpha-6/7 +K15043 KPNA2_7; importin subunit alpha-1/8 +K15044 AGFG1; Arf-GAP domain and FG repeats-containing protein 1 +K15045 RSAD2; radical S-adenosyl methionine domain-containing protein 2 +K15046 IVNS1ABP, NS1BP; influenza virus NS1A-binding protein +K15047 HNRNPUL1, E1BAP5; heterogeneous nuclear ribonucleoprotein U-like protein 1 +K15048 KALRN; kalirin [EC:2.7.11.1] +K15049 ENDOD1; endonuclease domain-containing 1 protein +K15050 EXOG; nuclease EXOG, mitochondrial +K15051 endA; DNA-entry nuclease +K15052 K15052; propionyl-CoA carboxylase [EC:6.4.1.3 2.1.3.15] +K15053 CHMP7; charged multivesicular body protein 7 +K15054 mdlB; (S)-mandelate dehydrogenase [EC:1.1.99.31] +K15055 nbaA; 2-nitrobenzoate nitroreductase [EC:1.7.1.-] +K15056 nbaB; 2-hydroxylaminobenzoate mutase [EC:5.4.99.-] +K15057 nbzA; nitrobenzene nitroreductase [EC:1.7.1.16] +K15058 amnA; 2-aminophenol/2-amino-5-chlorophenol 1,6-dioxygenase subunit alpha +K15059 amnB; 2-aminophenol/2-amino-5-chlorophenol 1,6-dioxygenase subunit beta [EC:1.13.11.74 1.13.11.76] +K15060 ligXa; 5,5'-dehydrodivanillate O-demethylase oxygenase subunit [EC:1.14.13.-] +K15061 ligZ; OH-DDVA oxygenase +K15062 ligY; OH-DDVA meta-cleavage compound hydrolase +K15063 ligW; 5-carboxyvanillate decarboxylase +K15064 desA; syringate O-demethylase [EC:2.1.1.-] +K15065 desZ; 3-O-methylgallate 3,4-dioxygenase [EC:1.13.11.-] +K15066 ligM; vanillate/3-O-methylgallate O-demethylase [EC:2.1.1.341] +K15067 amnD; 2-aminomuconate deaminase [EC:3.5.99.5] +K15068 DIA2, POF3; protein DIA2 +K15069 POF3; F-box/TPR repeat protein Pof3 +K15070 MDM30; mitochondrial distribution and morphology protein 30 +K15071 RCY1, POF6; recyclin-1 +K15072 SAF1; SCF-associated factor 1 +K15073 UFO1; ubiquitin ligase complex F-box protein UFO1 +K15074 BACURD; BTB/POZ domain-containing adapter for CUL3-mediated RhoA degradation protein +K15075 MET18, MMS19; DNA repair/transcription protein MET18/MMS19 +K15076 ELOA, TCEB3; elongin-A +K15077 ELA1; elongin-A +K15078 SLX1; structure-specific endonuclease subunit SLX1 [EC:3.6.1.-] +K15079 SLX4; structure-specific endonuclease subunit SLX4 +K15080 SAW1; single-strand annealing weakened protein 1 +K15081 AMN1; antagonist of mitotic exit network protein 1 +K15082 RAD7; DNA repair protein RAD7 +K15083 RAD16; DNA repair protein RAD16 +K15084 SLC25A16, GDA, LEU5; solute carrier family 25 (mitochondrial carrier protein), member 16 +K15085 SLC25A42; solute carrier family 25, member 42 +K15086 TPS14; (3S)-linalool synthase [EC:4.2.3.25] +K15087 E4.2.3.26; (3R)-linalool synthase [EC:4.2.3.26] +K15088 E4.2.3.16; (4S)-limonene synthase [EC:4.2.3.16] +K15089 CYP71D13_15_95; (S)-limonene 3-monooxygenase [EC:1.14.14.99] +K15090 E1.1.1.223; isopiperitenol dehydrogenase [EC:1.1.1.223] +K15091 E1.3.1.82; (-)-isopiperitenone reductase [EC:1.3.1.82] +K15092 E1.3.1.81; (+)-pulegone reductase [EC:1.3.1.81] +K15093 E1.14.14.143; (+)-menthofuran synthase [EC:1.14.14.143] +K15094 E1.1.1.207; (-)-menthol dehydrogenase [EC:1.1.1.207] +K15095 E1.1.1.208; (+)-neomenthol dehydrogenase [EC:1.1.1.208] +K15096 E4.2.3.20; (R)-limonene synthase [EC:4.2.3.20] +K15097 E4.2.3.10; (-)-endo-fenchol synthase [EC:4.2.3.10] +K15098 E5.5.1.8; bornyl diphosphate synthase [EC:5.5.1.8] +K15099 CYP76B6, G10H; geraniol 8-hydroxylase [EC:1.14.14.83] +K15100 SLC25A1, CTP; solute carrier family 25 (mitochondrial citrate transporter), member 1 +K15101 SLC25A2_15, ORNT; solute carrier family 25 (mitochondrial ornithine transporter) member 2/15 +K15102 SLC25A3, PHC, PIC; solute carrier family 25 (mitochondrial phosphate transporter), member 3 +K15103 UCP2_3, SLC25A8_9; solute carrier family 25 (mitochondrial uncoupling protein), member 8/9 +K15104 SLC25A11, OGC; solute carrier family 25 (mitochondrial oxoglutarate transporter), member 11 +K15105 SLC25A12_13, AGC; solute carrier family 25 (mitochondrial aspartate/glutamate transporter), member 12/13 +K15106 SLC25A14_30; solute carrier family 25 (mitochondrial carrier), member 14/30 +K15107 SLC25A18_22, GC; solute carrier family 25 (mitochondrial glutamate transporter), member 18/22 +K15108 SLC25A19, DNC, TPC1; solute carrier family 25 (mitochondrial thiamine pyrophosphate transporter), member 19 +K15109 SLC25A20_29, CACT, CACL, CRC1; solute carrier family 25 (mitochondrial carnitine/acylcarnitine transporter), member 20/29 +K15110 SLC25A21, ODC; solute carrier family 25 (mitochondrial 2-oxodicarboxylate transporter), member 21 +K15111 SLC25A26; solute carrier family 25 (mitochondrial S-adenosylmethionine transporter), member 26 +K15112 SLC25A27, UCP4; solute carrier family 25 (mitochondrial uncoupling protein), member 27 +K15113 SLC25A28_37, MFRN; solute carrier family 25 (mitochondrial iron transporter), member 28/37 +K15114 ORT1; mitochondrial ornithine carrier protein +K15115 SLC25A32, MFT; solute carrier family 25 (mitochondrial folate transporter), member 32 +K15116 SLC25A33_36, RIM2; solute carrier family 25, member 33/36 +K15117 SLC25A34_35, OAC1; solute carrier family 25, member 34/35 +K15118 SLC25A38; solute carrier family 25, member 38 +K15119 SLC25A39_40; solute carrier family 25, member 39/40 +K15120 SLC25A43; solute carrier family 25, member 43 +K15121 SLC25A44; solute carrier family 25, member 44 +K15122 SLC41A; solute carrier family 41 +K15123 SLC25A45_47; solute carrier family 25, member 45/47 +K15124 SLC25A48; solute carrier family 25, member 48 +K15125 fhaB; filamentous hemagglutinin +K15126 bteA; type III secretion system cytotoxic effector protein +K15127 TADA2B; transcriptional adapter 2-beta +K15128 MED6; mediator of RNA polymerase II transcription subunit 6 +K15129 MED8; mediator of RNA polymerase II transcription subunit 8 +K15130 MED8; mediator of RNA polymerase II transcription subunit 8, fungi type +K15131 MED11; mediator of RNA polymerase II transcription subunit 11 +K15132 MED11; mediator of RNA polymerase II transcription subunit 11, fungi type +K15133 MED17; mediator of RNA polymerase II transcription subunit 17 +K15134 SRB4, MED17; mediator of RNA polymerase II transcription subunit 17, fungi type +K15135 MED18; mediator of RNA polymerase II transcription subunit 18 +K15136 SRB5, MED18; mediator of RNA polymerase II transcription subunit 18, fungi type +K15137 MED19; mediator of RNA polymerase II transcription subunit 19 +K15138 ROX3, MED19; mediator of RNA polymerase II transcription subunit 19, fungi type +K15139 MED22; mediator of RNA polymerase II transcription subunit 22 +K15140 SRB6, MED22; mediator of RNA polymerase II transcription subunit 22, fungi type +K15141 MED28; mediator of RNA polymerase II transcription subunit 28 +K15142 MED29; mediator of RNA polymerase II transcription subunit 29 +K15143 MED30; mediator of RNA polymerase II transcription subunit 30 +K15144 MED1; mediator of RNA polymerase II transcription subunit 1 +K15145 MED1; mediator of RNA polymerase II transcription subunit 1, fungi type +K15146 MED4; mediator of RNA polymerase II transcription subunit 4 +K15147 MED5, NUT1; mediator of RNA polymerase II transcription subunit 5 +K15148 MED7; mediator of RNA polymerase II transcription subunit 7 +K15149 MED9; mediator of RNA polymerase II transcription subunit 9 +K15150 CSE2, MED9; mediator of RNA polymerase II transcription subunit 9, fungi type +K15151 MED10, NUT2; mediator of RNA polymerase II transcription subunit 10 +K15152 MED21, SRB7; mediator of RNA polymerase II transcription subunit 21 +K15153 MED31, SOH1; mediator of RNA polymerase II transcription subunit 31 +K15154 MED2; mediator of RNA polymerase II transcription subunit 2 +K15155 MED3, HRS1, PGD1; mediator of RNA polymerase II transcription subunit 3 +K15156 MED14, RGR1; mediator of RNA polymerase II transcription subunit 14 +K15157 MED15; mediator of RNA polymerase II transcription subunit 15 +K15158 GAL11, MED15; mediator of RNA polymerase II transcription subunit 15, fungi type +K15159 MED16; mediator of RNA polymerase II transcription subunit 16 +K15160 SIN4, MED16; mediator of RNA polymerase II transcription subunit 16, fungi type +K15161 CCNC, SSN8; cyclin-C +K15162 MED12; mediator of RNA polymerase II transcription subunit 12 +K15163 SRB8, MED12; mediator of RNA polymerase II transcription subunit 12, fungi type +K15164 MED13; mediator of RNA polymerase II transcription subunit 13 +K15165 SSN2, MED13; mediator of RNA polymerase II transcription subunit 13, fungi type +K15166 MED23; mediator of RNA polymerase II transcription subunit 23 +K15167 MED24; mediator of RNA polymerase II transcription subunit 24 +K15168 MED25; mediator of RNA polymerase II transcription subunit 25 +K15169 MED26; mediator of RNA polymerase II transcription subunit 26 +K15170 MED27; mediator of RNA polymerase II transcription subunit 27 +K15171 SUPT4H1, SPT4; transcription elongation factor SPT4 +K15172 SUPT5H, SPT5; transcription elongation factor SPT5 +K15173 TTF2; transcription termination factor 2 [EC:5.6.2.-] +K15174 PAF1; RNA polymerase II-associated factor 1 +K15175 CDC73; parafibromin +K15176 CTR9; RNA polymerase-associated protein CTR9 +K15177 LEO1; RNA polymerase-associated protein LEO1 +K15178 RTF1; RNA polymerase-associated protein RTF1 +K15179 WHSC2, NELFA; negative elongation factor A +K15180 COBRA1, NELFB; negative elongation factor B +K15181 TH1L, NELFD; negative elongation factor C/D +K15182 RDBP, NELFE; negative elongation factor E +K15183 ELL; RNA polymerase II elongation factor ELL +K15184 AFF1; AF4/FMR2 family member 1 +K15185 AFF4; AF4/FMR2 family member 4 +K15186 EAF; ELL-associated factor +K15187 MLLT1_3, ENL, AF9; YEATS domain-containing protein 1/3 +K15188 CCNT; cyclin T +K15189 HEXIM1_2; protein HEXIM1/2 +K15190 MEPCE, BCDIN3; 7SK snRNA methylphosphate capping enzyme [EC:2.1.1.-] +K15191 LARP7; La-related protein 7 +K15192 BTAF1, MOT1; TATA-binding protein-associated factor [EC:5.6.2.-] +K15193 SPTY2D1, SPT2; protein SPT2 +K15194 AFF2; AF4/FMR2 family member 2 +K15195 AFF3; AF4/FMR2 family member 3 +K15196 BRF1, GTF3B; transcription factor IIIB 90 kDa subunit +K15197 BRF2; transcription factor IIIB 50 kDa subunit +K15198 BDP1, TFC5; transcription factor TFIIIB component B'' +K15199 GTF3C1; general transcription factor 3C polypeptide 1 +K15200 GTF3C2; general transcription factor 3C polypeptide 2 +K15201 GTP3C3, TFC4; general transcription factor 3C polypeptide 3 (transcription factor C subunit 4) +K15202 GTF3C5, TFC1; general transcription factor 3C polypeptide 5 (transcription factor C subunit 1) +K15203 GTF3C6; general transcription factor 3C polypeptide 6 +K15204 TFC3; transcription factor C subunit 3 +K15205 TFC6; transcription factor C subunit 6 +K15206 TFC7; transcription factor C subunit 7 +K15207 TFC8; transcription factor C subunit 8 +K15208 SNAPC1; snRNA-activating protein complex subunit 1 +K15209 SNAPC2; snRNA-activating protein complex subunit 2 +K15210 SNAPC3; snRNA-activating protein complex subunit 3 +K15211 SNAPC5; snRNA-activating protein complex subunit 5 +K15212 TAF1A, SL1; TATA box-binding protein-associated factor RNA polymerase I subunit A +K15213 TAF1B; TATA box-binding protein-associated factor RNA polymerase I subunit B +K15214 TAF1C; TATA box-binding protein-associated factor RNA polymerase I subunit C +K15215 TAF1D; TATA box-binding protein-associated factor RNA polymerase I subunit D +K15216 RRN3, TIFIA; RNA polymerase I-specific transcription initiation factor RRN3 +K15217 RRN5; RNA polymerase I-specific transcription initiation factor RRN5 +K15218 RRN6; RNA polymerase I-specific transcription initiation factor RRN6 +K15219 RRN7; RNA polymerase I-specific transcription initiation factor RRN7 +K15220 RRN9; RNA polymerase I-specific transcription initiation factor RRN9 +K15221 RRN10; RNA polymerase I-specific transcription initiation factor RRN10 +K15222 RRN11; RNA polymerase I-specific transcription initiation factor RRN11 +K15223 UAF30, SPP27; upstream activation factor subunit UAF30 +K15224 BAZ2A, TIP5; bromodomain adjacent to zinc finger domain protein 2A +K15225 TTF1; transcription termination factor 1 +K15226 tyrAa; arogenate dehydrogenase (NADP+) [EC:1.3.1.78] +K15227 TYRAAT; arogenate dehydrogenase (NADP+), plant [EC:1.3.1.78] +K15228 mauA; methylamine dehydrogenase light chain [EC:1.4.9.1] +K15229 mauB; methylamine dehydrogenase heavy chain [EC:1.4.9.1] +K15230 aclA; ATP-citrate lyase alpha-subunit [EC:2.3.3.8] +K15231 aclB; ATP-citrate lyase beta-subunit [EC:2.3.3.8] +K15232 ccsA; citryl-CoA synthetase large subunit [EC:6.2.1.18] +K15233 ccsB; citryl-CoA synthetase small subunit +K15234 ccl; citryl-CoA lyase [EC:4.1.3.34] +K15235 JOSD; josephin [EC:3.4.19.12] +K15236 linA; gamma-hexachlorocyclohexane dehydrochlorinase [EC:4.5.1.-] +K15237 linC; 2,5-dichloro-2,5-cyclohexadiene-1,4-diol dehydrogenase 1 [EC:1.3.1.-] +K15238 linX; 2,5-dichloro-2,5-cyclohexadiene-1,4-diol dehydrogenase 2 [EC:1.3.1.-] +K15239 linD; 2,5-dichlorohydroquinone reductive dechlorinase [EC:2.5.1.-] +K15240 linE; hydroquinone 1,2-dioxygenase [EC:1.13.11.66] +K15241 pcpC; tetrachlorohydroquinone reductive dehalogenase [EC:1.21.4.5] +K15242 pcpA; 2,6-dichloro-p-hydroquinone 1,2-dioxygenase [EC:1.13.11.-] +K15243 tftA; 2,4,5-trichlorophenoxyacetic acid oxygenase 1 [EC:1.14.13.-] +K15244 tftB; 2,4,5-trichlorophenoxyacetic acid oxygenase 2 [EC:1.14.13.-] +K15245 tftC, tcpX; flavin reductase [EC:1.5.1.37] +K15246 tftD; chlorophenol-4-monooxygenase [EC:1.14.14.173 1.14.14.-] +K15253 tcbC, tfdC; chlorocatechol 1,2-dioxygenase [EC:1.13.11.-] +K15254 HELB; DNA helicase B [EC:5.6.2.3] +K15255 PIF1; ATP-dependent DNA helicase PIF1 [EC:5.6.2.3] +K15256 cmoA; tRNA (cmo5U34)-methyltransferase [EC:2.1.1.-] +K15257 cmoB; tRNA (mo5U34)-methyltransferase [EC:2.1.1.-] +K15258 PARP6_8; poly [ADP-ribose] polymerase 6/8 [EC:2.4.2.30] +K15259 PARP7S; poly [ADP-ribose] polymerase 7/11/12/13 [EC:2.4.2.30] +K15260 PARP9; poly [ADP-ribose] polymerase 9 [EC:2.4.2.30] +K15261 PARP10_14_15; poly [ADP-ribose] polymerase 10/14/15 [EC:2.4.2.30] +K15262 BCP1, BCCIP; protein BCP1 +K15263 LYER; cell growth-regulating nucleolar protein +K15264 NSUN5, WBSCR20, RCM1; 25S rRNA (cytosine2278-C5)-methyltransferase [EC:2.1.1.311] +K15265 PUS5; 21S rRNA pseudouridine2819 synthase [EC:5.4.99.43] +K15266 TFB1M; dimethyladenosine transferase 1, mitochondrial [EC:2.1.1.-] +K15267 MTEF1; mitochondrial transcription factor 1 +K15268 eamA; O-acetylserine/cysteine efflux transporter +K15269 pecM; probable blue pigment (indigoidine) exporter +K15270 sam; S-adenosylmethionine uptake transporter +K15271 HFM1, MER3; ATP-dependent DNA helicase HFM1/MER3 [EC:5.6.2.4] +K15272 SLC35A1_2_3; solute carrier family 35 (UDP-sugar transporter), member A1/2/3 +K15273 SLC35A4; solute carrier family 35 (probable UDP-sugar transporter), member A4 +K15274 SLC35A5; solute carrier family 35 (probable UDP-sugar transporter), member A5 +K15275 SLC35B1; solute carrier family 35 (UDP-galactose transporter), member B1 +K15276 SLC35B2, PAPST1; solute carrier family 35 (adenosine 3'-phospho 5'-phosphosulfate transporter), member B2 +K15277 SLC35B3, PAPST2; solute carrier family 35 (adenosine 3'-phospho 5'-phosphosulfate transporter), member B3 +K15278 SLC35B4, YEA4; solute carrier family 35 (UDP-xylose/UDP-N-acetylglucosamine transporter), member B4 +K15279 SLC35C1, FUCT1; solute carrier family 35 (GDP-fucose transporter), member C1 +K15280 SLC35C2; solute carrier family 35, member C2 +K15281 SLC35D1_2_3; solute carrier family 35, member D1/2/3 +K15282 SLC44A3; solute carrier family 44 (choline transporter-like protein), member 3 +K15283 SLC35E1; solute carrier family 35, member E1 +K15284 SLC35E2; solute carrier family 35, member E2 +K15285 SLC35E3; solute carrier family 35, member E3 +K15286 SLC35E4; solute carrier family 35, member E4 +K15287 SLC35F1_2; solute carrier family 35, member F1/2 +K15288 SLC35F3_4; solute carrier family 35, member F3/4 +K15289 SLC35F5; solute carrier family 35, member F5 +K15290 SYT1; synaptotagmin-1 +K15291 RIMS1, RIM1; regulating synaptic membrane exocytosis protein 1 +K15292 STXBP1, MUNC18-1; syntaxin-binding protein 1 +K15293 UNC13A_B_C, MUNC13; protein unc-13 A/B/C +K15294 CPLX1_2; complexin-1/2 +K15295 CPLX3_4; complexin-3/4 +K15296 NAPA, SNAPA, SEC17; alpha-soluble NSF attachment protein +K15297 RIMS2, RIM2; regulating synaptic membrane exocytosis protein 2 +K15298 RIMS3, RIM3; regulating synaptic membrane exocytosis protein 3 +K15299 RIMS4, RIM4; regulating synaptic membrane exocytosis protein 4 +K15300 STXBP2, MUNC18-2; syntaxin-binding protein 2 +K15301 STXBP3, MUNC18-3; syntaxin-binding protein 3 +K15302 STXBP4, SYNIP; syntaxin-binding protein 4 +K15303 AKR7; aflatoxin B1 aldehyde reductase +K15304 RANBP3; Ran-binding protein 3 +K15305 VAC14, TAX1BP2; vacuole morphology and inheritance protein 14 +K15306 RANBP1; Ran-binding protein 1 +K15307 GPS2; G protein pathway suppressor 2 +K15308 TTP; tristetraprolin +K15309 CRTC1, TORC1; CREB-regulated transcription coactivator 1 +K15310 TP53INP1; tumor protein p53-inducible nuclear protein 1 +K15311 pksG, curD, aprE, corE; 3-carboxymethyl-3-hydroxy-acyl-[acp] synthase [EC:2.3.3.22] +K15312 pksH, curE, aprF, corF; 3-carboxymethyl-3-hydroxy-acyl-[acp] dehydratase [EC:4.2.1.181] +K15313 pksI, corG; 4-carboxy-3-alkylbut-2-enoyl-[acp] decarboxylase [EC:4.1.1.125] +K15314 sgcE, mdpE, ncsE, kedE, calE8, pksE; enediyne polyketide synthase +K15315 sgcE10, mdpE10, ncsE10, kedE10, calE7, pksE10; enediyne core biosynthesis thioesterase +K15316 PKSA; noranthrone synthase [EC:2.3.1.221] +K15317 APTA; asperthecin polyketide synthase +K15318 APTB; hydrolase +K15319 APTC; monooxygenase +K15320 ATX, chlB1, mdpB; 6-methylsalicylic acid synthase [EC:2.3.1.165] +K15321 WA; naphtho-gamma-pyrone polyketide synthase +K15322 TSEN2; tRNA-splicing endonuclease subunit Sen2 [EC:4.6.1.16] +K15323 TSEN34; tRNA-splicing endonuclease subunit Sen34 [EC:4.6.1.16] +K15324 TSEN15; tRNA-splicing endonuclease subunit Sen15 +K15325 SEN15; tRNA-splicing endonuclease subunit Sen15, fungi type +K15326 TSEN54; tRNA-splicing endonuclease subunit Sen54 +K15327 pksC; polyketide biosynthesis malonyl-CoA-[acyl-carrier-protein] transacylase +K15328 pksD, baeD; bacillaene synthase trans-acting acyltransferase +K15329 pksE, baeE; trans-AT polyketide synthase, acyltransferase and oxidoreductase domains +K15331 TRMT2B, TRM2; tRNA (uracil-5-)-methyltransferase [EC:2.1.1.35] +K15332 TRMT2A; tRNA (uracil-5-)-methyltransferase [EC:2.1.1.-] +K15333 TRM3, TARBP1; tRNA guanosine-2'-O-methyltransferase [EC:2.1.1.34] +K15334 NCL1, TRM4; multisite-specific tRNA:(cytosine-C5)-methyltransferase [EC:2.1.1.202] +K15335 NSUN2, TRM4; tRNA (cytosine34-C5)-methyltransferase [EC:2.1.1.203] +K15336 TRDMT1, DNMT2; tRNA (cytosine38-C5)-methyltransferase [EC:2.1.1.204] +K15337 acpK, curB, aprC, corC; polyketide biosynthesis acyl carrier protein +K15338 GEN1, YEN1; holliday junction resolvase GEN1/YEN1 [EC:3.1.-.-] +K15340 DCLRE1A, SNM1A, PSO2; DNA cross-link repair 1A protein +K15341 DCLRE1B, SNM1B; DNA cross-link repair 1B protein [EC:3.1.-.-] +K15342 cas1; CRISP-associated protein Cas1 +K15343 sspH1; E3 ubiquitin-protein ligase SspH1 +K15344 sseB; secreted effector protein SseB +K15345 sseC; secreted effector protein SseC +K15346 sseD; secreted effector protein SseD +K15347 sifA; secreted effector protein SifA +K15348 PLEKHM2, SKIP; pleckstrin homology domain-containing family M member 2 +K15349 sseJ; secreted effector protein SseJ +K15350 sseF; secreted effector protein SseF +K15351 sseG; secreted effector protein SseG +K15352 pipB2; secreted effector protein PipB2 +K15353 sspH2; E3 ubiquitin-protein ligase SspH2 +K15354 sseI, srfH; secreted effector protein SseI +K15355 K15355; malonyl CoA-acyl carrier protein transacylase +K15356 GONST1_2, VRG4; GDP-mannose transporter +K15357 nicD; N-formylmaleamate deformylase [EC:3.5.1.106] +K15358 ena; enamidase [EC:3.5.2.18] +K15359 hspA; 6-hydroxy-3-succinoylpyridine 3-monooxygenase [EC:1.14.13.163] +K15360 STRA13, CENPX, MHF2; centromere protein X +K15361 WDR48, UAF1; WD repeat-containing protein 48 +K15362 BRIP1, BACH1, FANCJ; fanconi anemia group J protein [EC:5.6.2.3] +K15363 FAN1, MTMR15; fanconi-associated nuclease 1 [EC:3.1.21.- 3.1.4.1] +K15364 NCE4, RMI1; RecQ-mediated genome instability protein 1 +K15365 RMI2; RecQ-mediated genome instability protein 2 +K15366 spvB; salmonella plasmid virulence protein B +K15367 sseA; secretion system chaperone SseA +K15368 sscA; secretion system chaperone SscA +K15369 TRAK1; trafficking kinesin-binding protein 1 +K15370 PLCL2; inactive phospholipase C-like protein 2 +K15371 GDH2; glutamate dehydrogenase [EC:1.4.1.2] +K15372 toa; taurine---2-oxoglutarate transaminase [EC:2.6.1.55] +K15373 isfD; sulfoacetaldehyde reductase [EC:1.1.1.313] +K15374 TRAK2, GRIF1; trafficking kinesin-binding protein 2 +K15375 PLCL1, PRIP; inactive phospholipase C-like protein 1 +K15376 GPHN; gephyrin [EC:2.10.1.1 2.7.7.75] +K15377 SLC44A2_4_5; solute carrier family 44 (choline transporter-like protein), member 2/4/5 +K15378 SLC45A1_2_4; solute carrier family 45, member 1/2/4 +K15379 SLC45A3; solute carrier family 45, member 3 +K15380 SLC48A1, HRG1; solute carrier family 48 (heme transporter), member 1 +K15381 DIRC2, SLC49A3; MFS transporter, FLVCR family, disrupted in renal carcinoma protein 2 +K15382 SLC50A, SWEET; solute carrier family 50 (sugar transporter) +K15383 K15383; MtN3 and saliva related transmembrane protein +K15384 APDA; aspyridone synthetase, hybrid polyketide synthase / nonribosomal peptide synthetase +K15385 APDC; aspyridone synthetase trans-acting enoyl reductase +K15386 APDB, CYP685A1; cytochrome P450 monooxygenase +K15387 APDD; FAD-dependent monooxygenase +K15388 APDE, CYP655; cytochrome P450 monooxygenase +K15389 APDG; acyl-CoA dehydrogenase +K15390 PSOA; pseurotin A synthetase, hybrid polyketide synthase / nonribosomal peptide synthetase +K15391 CPAA; cyclopiazonic acid synthetase, hybrid polyketide synthase / nonribosomal peptide synthetase +K15392 CPAD; cyclo-acetoacetyl-L-tryptophan dimethylallyltransferase [EC:2.5.1.-] +K15393 CPAO; beta-cyclopiazonate dehydrogenase [EC:1.21.99.1] +K15394 ACE1; hybrid polyketide synthase / nonribosomal peptide synthetase ACE1 +K15395 ftdB; hybrid polyketide synthase / nonribosomal peptide synthetase FtdB +K15396 trmJ; tRNA (cytidine32/uridine32-2'-O)-methyltransferase [EC:2.1.1.200] +K15397 KCS; 3-ketoacyl-CoA synthase [EC:2.3.1.199] +K15398 CYP86A4S; fatty acid omega-hydroxylase [EC:1.14.-.-] +K15400 HHT1; omega-hydroxypalmitate O-feruloyl transferase [EC:2.3.1.188] +K15401 CYP86A1; long-chain fatty acid omega-monooxygenase [EC:1.14.14.80] +K15402 CYP86B1; fatty acid omega-hydroxylase [EC:1.14.-.-] +K15403 ACE, HTH; fatty acid omega-hydroxy dehydrogenase [EC:1.1.-.-] +K15404 K15404, CER1; aldehyde decarbonylase [EC:4.1.99.5] +K15405 MAH1, CYP96A15; midchain alkane hydroxylase +K15406 WSD1; wax-ester synthase / diacylglycerol O-acyltransferase [EC:2.3.1.75 2.3.1.20] +K15407 QTRT2, QTRTD1; queuine tRNA-ribosyltransferase accessory subunit +K15408 coxAC; cytochrome c oxidase subunit I+III [EC:7.1.1.9] +K15409 SRPK1; serine/threonine-protein kinase SRPK1 [EC:2.7.11.1] +K15410 EEF1D; elongation factor 1-delta +K15411 PILR; paired immunoglobulin-like type 2 receptor +K15412 CFP; complement factor properdin +K15413 SP100; nuclear body protein Sp100 +K15414 C1QBP; complement component 1 Q subcomponent-binding protein, mitochondrial +K15415 MDPG; monodictyphenone polyketide synthase +K15416 ORSA; orsellinic acid synthase +K15417 ZEA1; zearalenone synthase, nonreducing iterative type I polyketide synthase +K15418 ZEA2; zearalenone synthase, highly reducing iterative type I polyketide synthase +K15419 EASB; emericellamide biosynthesis, highly reducing iterative type I polyketide synthase +K15420 EML4; echinoderm microtubule-associated protein-like 4 +K15421 SERGEF; secretion-regulating guanine nucleotide exchange factor +K15422 SAL; 3'(2'), 5'-bisphosphate nucleotidase / inositol polyphosphate 1-phosphatase [EC:3.1.3.7 3.1.3.57] +K15423 PPP4C; serine/threonine-protein phosphatase 4 catalytic subunit [EC:3.1.3.16] +K15424 PPP4R1; serine/threonine-protein phosphatase 4 regulatory subunit 1 +K15425 PPP4R2; serine/threonine-protein phosphatase 4 regulatory subunit 2 +K15426 PPP4R4; serine/threonine-protein phosphatase 4 regulatory subunit 4 +K15427 SIT4, PPH1; serine/threonine-protein phosphatase PP1-1 [EC:3.1.3.16] +K15428 DUG1; Cys-Gly metallodipeptidase DUG1 [EC:3.4.13.-] +K15429 TRM5, TRMT5; tRNA (guanine37-N1)-methyltransferase [EC:2.1.1.228] +K15430 TRM11, TRMT11; tRNA (guanine10-N2)-methyltransferase [EC:2.1.1.214] +K15431 phlD; phloroglucinol synthase [EC:2.3.1.253] +K15432 ASW; ashwin +K15433 CGI99, CLE7, RLLM1; RLL motif containing protein 1 +K15434 FAM98B; protein FAM98B +K15435 CPD1; 2',3'-cyclic-nucleotide 3'-phosphodiesterase [EC:3.1.4.37] +K15436 TRPO3, MTR10; transportin-3 +K15437 AIMP1, ARC1; aminoacyl tRNA synthase complex-interacting multifunctional protein 1 +K15438 AIMP2; aminoacyl tRNA synthase complex-interacting multifunctional protein 2 +K15439 EEF1E1, AIMP3; eukaryotic translation elongation factor 1 epsilon-1 +K15440 TAD1, ADAT1; tRNA-specific adenosine deaminase 1 [EC:3.5.4.34] +K15441 TAD2, ADAT2; tRNA-specific adenosine deaminase 2 [EC:3.5.4.-] +K15442 TAD3, ADAT3; tRNA-specific adenosine deaminase 3 +K15443 TRM82, WDR4; tRNA (guanine-N(7)-)-methyltransferase subunit TRM82 +K15444 TRM9; tRNA (uracil-5-)-methyltransferase TRM9 [EC:2.1.1.229] +K15445 TRMT10, TRM10, RG9MTD; tRNA (guanine9-N1)-methyltransferase [EC:2.1.1.221] +K15446 TRM13, CCDC76; tRNA:m4X modification enzyme [EC:2.1.1.225] +K15447 TRM44, METTL19; tRNASer (uridine44-2'-O)-methyltransferase [EC:2.1.1.211] +K15448 TRM112, TRMT112; multifunctional methyltransferase subunit TRM112 +K15449 TYW1; tRNA wybutosine-synthesizing protein 1 [EC:4.1.3.44] +K15450 TYW3; tRNA wybutosine-synthesizing protein 3 [EC:2.1.1.282] +K15451 PPM2, LCMT2, TYW4; tRNA wybutosine-synthesizing protein 4 [EC:2.1.1.290 2.3.1.231] +K15452 PUS2; mitochondrial tRNA pseudouridine27/28 synthase [EC:5.4.99.44] +K15453 PUS6; tRNA pseudouridine31 synthase [EC:5.4.99.42] +K15454 PUS9; tRNA pseudouridine32 synthase [EC:5.4.99.28] +K15455 DPH3, KTI11; diphthamide biosynthesis protein 3 +K15456 KTI12; protein KTI12 +K15457 SAP155; SIT4-associating protein SAP155 +K15458 SAP185_190; SIT4-associating protein SAP185/190 +K15460 yfiC, trmX; tRNA1Val (adenine37-N6)-methyltransferase [EC:2.1.1.223] +K15461 mnmC; tRNA 5-methylaminomethyl-2-thiouridine biosynthesis bifunctional protein [EC:2.1.1.61 1.5.-.-] +K15462 KTI13, ATS1; protein ATS1 +K15463 RIT1; tRNA A64-2'-O-ribosylphosphate transferase [EC:2.4.2.-] +K15464 BNIP3; BCL2/adenovirus E1B 19 kDa protein-interacting protein 3 +K15465 BNIP3L; BCL2/adenovirus E1B 19 kDa protein-interacting protein 3-like +K15466 rifF, asm9; amide synthase +K15467 rif14; 27-O-demethylrifamycin SV methyltransferase [EC:2.1.1.315] +K15468 pksS, CYP107K1; cytochrome P450 family 107 subfamily K polypeptide 1 +K15469 rhiG; rhizoxin biosynthesis acyltransferase +K15470 rhiH; cytochrome P450 monooxygenase +K15471 rhiI; O-methyltransferase [EC:2.1.1.-] +K15472 CYP71D55; premnaspirodiene oxygenase [EC:1.14.14.151] +K15473 sdeA, laiA; effector protein SdeA +K15474 enhC; enhanced entry protein EnhC +K15475 lpnE; enhanced entry protein LpnE +K15476 vipA; VPS inhibitor protein A +K15477 vipD; VPS inhibitor protein D +K15478 vipE; VPS inhibitor protein E +K15479 ralF; guanine nucleotide exchange protein RalF +K15480 drrA, sidM; effector protein DrrA/SidM [EC:2.7.7.108] +K15481 lidA; effector protein LidA +K15482 sidC; effector protein SidC +K15483 sdcA; effector protein SdcA +K15484 sidF; inhibitor of growth protein SidF +K15485 BCL2L13, BCL-RAMBO; Bcl-2-like protein 13 +K15486 legK1; serine/threonine-protein kinase LegK1 [EC:2.7.1.-] +K15487 sdbA; effector protein SdbA +K15488 lubX; E3 ubiquitin-protein ligase LubX +K15490 lgt1_2_3; glucosyltransferase Lgt1/2/3 +K15491 sidI; effector protein SidI +K15492 K15492, lepB; effector protein B +K15493 CALY; neuron-specific vesicular protein calcyon +K15494 PPP1R1B, DARPP32; protein phosphatase 1 regulatory subunit 1B +K15495 wtpA; molybdate/tungstate transport system substrate-binding protein +K15496 wtpB; molybdate/tungstate transport system permease protein +K15497 wtpC; molybdate/tungstate transport system ATP-binding protein [EC:7.3.2.5 7.3.2.6] +K15498 PPP6C; serine/threonine-protein phosphatase 6 catalytic subunit [EC:3.1.3.16] +K15499 PPP6R1, SAPS1; serine/threonine-protein phosphatase 6 regulatory subunit 1 +K15500 PPP6R2, SAPS2; serine/threonine-protein phosphatase 6 regulatory subunit 2 +K15501 PPP6R3, SAPS3; serine/threonine-protein phosphatase 6 regulatory subunit 3 +K15502 ANKRD28; serine/threonine-protein phosphatase 6 regulatory ankyrin repeat subunit A +K15503 ANKRD44; serine/threonine-protein phosphatase 6 regulatory ankyrin repeat subunit B +K15504 ANKRD52; serine/threonine-protein phosphatase 6 regulatory ankyrin repeat subunit C +K15505 RAD5; DNA repair protein RAD5 [EC:5.6.2.-] +K15506 CYP98A8; cytochrome P450 family 98 subfamily A8 [EC:1.14.13.-] +K15507 MRM1, PET56; 21S rRNA (GM2251-2'-O)-methyltransferase [EC:2.1.1.-] +K15508 MRM2; 21S rRNA (uridine2791-2'-O)-methyltransferase [EC:2.1.1.168] +K15509 hpsN; sulfopropanediol 3-dehydrogenase [EC:1.1.1.308] +K15510 fgd1; coenzyme F420-dependent glucose-6-phosphate dehydrogenase [EC:1.1.98.2] +K15511 boxA; benzoyl-CoA 2,3-epoxidase subunit A [EC:1.14.13.208] +K15512 boxB; benzoyl-CoA 2,3-epoxidase subunit B [EC:1.14.13.208] +K15513 boxC; benzoyl-CoA-dihydrodiol lyase [EC:4.1.2.44] +K15514 boxD; 3,4-dehydroadipyl-CoA semialdehyde dehydrogenase [EC:1.2.1.77] +K15515 sauS; sulfoacetaldehyde dehydrogenase [EC:1.2.1.81] +K15516 FMR; fragile X mental retardation protein +K15517 GLYAL; glycine N-phenylacetyltransferase [EC:2.3.1.192] +K15518 dgk; deoxyguanosine kinase [EC:2.7.1.113] +K15519 dck; deoxyadenosine/deoxycytidine kinase [EC:2.7.1.76 2.7.1.74] +K15520 mshD; mycothiol synthase [EC:2.3.1.189] +K15521 mshA; D-inositol-3-phosphate glycosyltransferase [EC:2.4.1.250] +K15522 FN3K; protein-fructosamine 3-kinase [EC:2.7.1.171] +K15523 FN3KRP; protein-ribulosamine 3-kinase [EC:2.7.1.172] +K15524 mngB; 2-O-(6-phospho-alpha-D-mannosyl)-D-glycerate hydrolase [EC:3.2.1.-] +K15525 mshB; N-acetyl-1-D-myo-inositol-2-amino-2-deoxy-alpha-D-glucopyranoside deacetylase [EC:3.5.1.103] +K15526 mshC; L-cysteine:1D-myo-inositol 2-amino-2-deoxy-alpha-D-glucopyranoside ligase [EC:6.3.1.13] +K15527 K15527; cysteate synthase [EC:2.5.1.76] +K15528 FAAH; fatty acid amide hydrolase [EC:3.5.1.99] +K15529 POA1; ADP-ribose 1''-phosphate phosphatase [EC:3.1.3.84] +K15530 RGAE; rhamnogalacturonan acetylesterase [EC:3.1.1.86] +K15531 rexA; oligosaccharide reducing-end xylanase [EC:3.2.1.156] +K15532 yteR, yesR; unsaturated rhamnogalacturonyl hydrolase [EC:3.2.1.172] +K15533 K15533; 1,3-beta-galactosyl-N-acetylhexosamine phosphorylase [EC:2.4.1.211] +K15534 K15534; beta-D-galactosyl-(1->4)-L-rhamnose phosphorylase [EC:2.4.1.247] +K15535 PWD; phosphoglucan, water dikinase [EC:2.7.9.5] +K15536 cybC; soluble cytochrome b562 +K15537 AGMO; alkylglycerol monooxygenase [EC:1.14.16.5] +K15538 MANEA; glycoprotein endo-alpha-1,2-mannosidase [EC:3.2.1.130] +K15539 rodZ; cytoskeleton protein RodZ +K15540 ecpD; chaperone protein EcpD +K15541 MPE1; protein MPE1 +K15542 PFS2; polyadenylation factor subunit 2 +K15543 REF2; RNA end formation protein 2 +K15544 SSU72; RNA polymerase II subunit A C-terminal domain phosphatase SSU72 [EC:3.1.3.16] +K15545 mlc; transcriptional regulator of PTS gene +K15546 boxR, bzdR; XRE family transcriptional regulator, aerobic/anaerobic benzoate catabolism transcriptional regulator +K15547 mdtO; multidrug resistance protein MdtO +K15548 aaeA; p-hydroxybenzoic acid efflux pump subunit AaeA +K15549 mdtN; membrane fusion protein, multidrug efflux system +K15550 mdtP; outer membrane protein, multidrug efflux system +K15551 tauA; taurine transport system substrate-binding protein +K15552 tauC; taurine transport system permease protein +K15553 ssuA; sulfonate transport system substrate-binding protein +K15554 ssuC; sulfonate transport system permease protein +K15555 ssuB; sulfonate transport system ATP-binding protein [EC:7.6.2.14] +K15556 ophF; phthalate transport system substrate-binding protein +K15557 ophG; phthalate transport system permease protein +K15558 ophH; phthalate transport system ATP-binding protein +K15559 RTT103; regulator of Ty1 transposition protein 103 +K15560 NRD1; protein NRD1 +K15561 NAB3; nuclear polyadenylated RNA-binding protein 3 +K15562 BUR1, SGV1; serine/threonine-protein kinase BUR1 [EC:2.7.11.22 2.7.11.23] +K15563 BUR2; protein BUR2 +K15564 CTK2; CTD kinase subunit beta +K15565 CTK3; CTD kinase subunit gamma +K15566 trm10; tRNA (adenine9-N1/guanine9-N1)-methyltransferase [EC:2.1.1.218 2.1.1.221] +K15567 nmsB; naphthyl-2-methylsuccinate synthase beta subunit [EC:4.1.99.-] +K15568 nmsC; naphthyl-2-methylsuccinate synthase gamma subunit [EC:4.1.99.-] +K15569 bnsE; naphthyl-2-methylsuccinate CoA transferase subunit [EC:2.8.3.-] +K15570 bnsF; naphthyl-2-methylsuccinate CoA transferase subunit [EC:2.8.3.-] +K15571 bnsG; naphthyl-2-methylsuccinyl-CoA dehydrogenase [EC:1.3.99.-] +K15572 bnsH; naphthyl-2-hydroxymethylsuccinyl-CoA hydratase [EC:4.2.1.-] +K15573 bnsC; naphthyl-2-hydroxymethylsuccinyl-CoA dehydrogenase BnsC subunit [EC:1.1.-.-] +K15574 bnsA; naphthyl-2-oxomethyl-succinyl-CoA thiolase subunit [EC:2.3.1.-] +K15575 bnsB; naphthyl-2-oxomethyl-succinyl-CoA thiolase subunit [EC:2.3.1.-] +K15576 nrtA, nasF, cynA; nitrate/nitrite transport system substrate-binding protein +K15577 nrtB, nasE, cynB; nitrate/nitrite transport system permease protein +K15578 nrtC, nasD; nitrate/nitrite transport system ATP-binding protein [EC:7.3.2.4] +K15579 nrtD, cynD; nitrate/nitrite transport system ATP-binding protein +K15580 oppA, mppA; oligopeptide transport system substrate-binding protein +K15581 oppB; oligopeptide transport system permease protein +K15582 oppC; oligopeptide transport system permease protein +K15583 oppD; oligopeptide transport system ATP-binding protein +K15584 nikA, cntA; nickel transport system substrate-binding protein +K15585 nikB, cntB; nickel transport system permease protein +K15586 nikC, cntC; nickel transport system permease protein +K15587 nikD, cntD; nickel transport system ATP-binding protein [EC:7.2.2.11] +K15588 NSD1; [histone H3]-lysine36 N-dimethyltransferase NSD1 [EC:2.1.1.357] +K15589 ARNT2; aryl hydrocarbon receptor nuclear translocator 2 +K15590 TFEB; transcription factor EB +K15591 TFEC; transcription factor EC +K15592 ETV4; ets translocation variant 4 +K15593 ETV5; ets translocation variant 5 +K15594 CDK15, PFTK2; cyclin-dependent kinase 15 [EC:2.7.11.22] +K15595 CDK17, PCTK2; cyclin-dependent kinase 17 [EC:2.7.11.22] +K15596 CDK18, PCTK3; cyclin-dependent kinase 18 [EC:2.7.11.22] +K15598 thiY; putative hydroxymethylpyrimidine transport system substrate-binding protein +K15599 thiX; putative hydroxymethylpyrimidine transport system permease protein +K15600 thiZ; putative hydroxymethylpyrimidine transport system ATP-binding protein +K15601 KDM3; [histone H3]-dimethyl-L-lysine9 demethylase [EC:1.14.11.65] +K15602 PROM2; prominin 2 +K15603 TCF4_12; transcription factor 4/12 +K15604 LYL1; protein lyl-1 +K15605 KLF3; krueppel-like factor 3 +K15606 TLX2, HOX11L1; T-cell leukemia homeobox protein 2 +K15607 TLX3, HOX11L2; T-cell leukemia homeobox protein 3 +K15608 PAX2; paired box protein 2 +K15609 PBX2; pre-B-cell leukemia transcription factor 2 +K15610 PBX3; pre-B-cell leukemia transcription factor 3 +K15611 PBX4; pre-B-cell leukemia transcription factor 4 +K15612 LMO2; rhombotin-2 +K15613 MEIS1; homeobox protein Meis1 +K15614 SIX1; homeobox protein SIX1 +K15615 SIX4; homeobox protein SIX4 +K15616 EYA1; eyes absent homolog 1 [EC:3.1.3.48] +K15617 LDB1; LIM domain-binding protein 1 +K15618 BCL6; B-cell lymphoma 6 protein +K15619 SPINT1; Kunitz-type protease inhibitor 1 +K15620 GOLPH3, GPP34; golgi phosphoprotein 3 +K15621 BAIAP3; BAI1-associated protein 3 +K15622 MLF1; myeloid leukemia factor 1 +K15623 SS18, SSXT, SYT, CREST; protein SSXT +K15624 SSX1; protein SSX1 +K15625 SSX2; protein SSX2 +K15626 NUPR1, COM1; nuclear protein 1 +K15627 ASPSCR1, ASPL; tether containing UBX domain for GLUT4 +K15628 PXA; ATP-binding cassette, subfamily D (ALD), peroxisomal long-chain fatty acid import protein [EC:7.6.2.4] +K15629 CYP152A; fatty-acid peroxygenase [EC:1.11.2.4] +K15630 VTC2; GDP-D-glucose phosphorylase [EC:2.7.7.78] +K15631 ABA3; molybdenum cofactor sulfurtransferase [EC:2.8.1.9] +K15632 cfr; 23S rRNA (adenine-C8)-methyltransferase [EC:2.1.1.224] +K15633 gpmI; 2,3-bisphosphoglycerate-independent phosphoglycerate mutase [EC:5.4.2.12] +K15634 gpmB; 2,3-bisphosphoglycerate-dependent phosphoglycerate mutase [EC:5.4.2.11] +K15635 apgM; 2,3-bisphosphoglycerate-independent phosphoglycerate mutase [EC:5.4.2.12] +K15636 PGM5; phosphoglucomutase-like protein 5 +K15637 PGAM5; serine/threonine-protein phosphatase PGAM5 [EC:3.1.3.16] +K15638 CYP72C1, SOB7; cytochrome P450 family 72 subfamily C1 +K15639 CYP734A1, BAS1; PHYB activation tagged suppressor 1 [EC:1.14.-.-] +K15640 K15640, phoE; uncharacterized phosphatase +K15641 mxaF; myxalamid-type polyketide synthase MxaF +K15642 mxaD; myxalamid-type polyketide synthase MxaD +K15643 mxaB; myxalamid-type polyketide synthase MxaB +K15644 cfa6; coronafacic acid polyketide synthase Cfa6 +K15645 cfa7; coronafacic acid polyketide synthase Cfa7 +K15646 cmaA; coronamic acid synthetase CmaA, adenylation and thiolation didomain protein [EC:6.2.1.46] +K15647 cmaE; coronamic acid synthetase CmaE, aminoacyltransferase [EC:2.3.2.28] +K15648 cmaD; coronamic acid synthetase CmaD, carrier protein +K15649 cmaT; coronamic acid synthetase CmaT, thioesterase component +K15650 cmaB; non-haem Fe2+, alpha-ketoglutarate-dependent halogenase +K15651 cmaC; aminocarboxycyclopropane-forming enzyme +K15652 asbF; 3-dehydroshikimate dehydratase [EC:4.2.1.118] +K15653 mxcG; nonribosomal peptide synthetase MxcG +K15654 srfAA, licA, lchAA; surfactin/lichenysin synthetase A +K15655 srfAB, licB, lchAB; surfactin/lichenysin synthetase B +K15656 srfAC, licC, lchAC; surfactin/lichenysin synthetase C +K15657 srfATE, srfAD, lchAD; external thioesterase TEII +K15658 ofaA, arfA; arthrofactin-type cyclic lipopeptide synthetase A +K15659 ofaB, arfB; arthrofactin-type cyclic lipopeptide synthetase B +K15660 ofaC, arfC; arthrofactin-type cyclic lipopeptide synthetase C +K15661 ituA, mycA, bmyA; iturin family lipopeptide synthetase A +K15662 ituB, mycB, bmyB; iturin family lipopeptide synthetase B +K15663 ituC, mycC, bmyC; iturin family lipopeptide synthetase C +K15664 ppsA, fenC; plipastatin/fengycin lipopeptide synthetase A +K15665 ppsB, fenD; plipastatin/fengycin lipopeptide synthetase B +K15666 ppsC, fenE; plipastatin/fengycin lipopeptide synthetase C +K15667 ppsD, fenA; plipastatin/fengycin lipopeptide synthetase D +K15668 ppsE, fenB; plipastatin/fengycin lipopeptide synthetase E +K15669 hddC; D-glycero-alpha-D-manno-heptose 1-phosphate guanylyltransferase [EC:2.7.7.71] +K15670 rifA; rifamycin polyketide synthase modules 1, 2 and 3 [EC:6.2.1.74] +K15671 rifB; rifamycin polyketide synthase modules 4, 5 and 6 +K15672 rifC_D; rifamycin polyketide synthase modules 7 and 8 +K15673 rifE; rifamycin polyketide synthase modules 9 and 10 +K15674 rhiA; rhizoxin biosynthesis, polyketide synthase / nonribosomal peptide synthetase RhiA +K15675 rhiB; rhizoxin biosynthesis, polyketide synthase / nonribosomal peptide synthetase RhiB +K15676 rhiC; rhizoxin biosynthesis, polyketide synthase RhiC +K15677 rhiD; rhizoxin biosynthesis, polyketide synthase RhiD +K15678 rhiE; rhizoxin biosynthesis, polyketide synthase RhiE +K15679 rhiF; rhizoxin biosynthesis, polyketide synthase RhiF +K15680 HSD11B1; corticosteroid 11-beta-dehydrogenase isozyme 1 [EC:1.1.1.146] +K15681 mxcL; aminotransferase MxcL +K15682 PDZRN3_4, LNX3_4; ligand of Numb protein X 3/4 [EC:2.3.2.27] +K15683 NFXL1, OZFP; NF-X1-type zinc finger protein NFXL1 +K15684 BFAR; bifunctional apoptosis regulator +K15685 CBLL1; E3 ubiquitin-protein ligase Hakai [EC:2.3.2.27] +K15686 MEX3, RKHD; RNA-binding protein MEX3 [EC:2.3.2.27] +K15687 MKRN; E3 ubiquitin-protein ligase makorin [EC:2.3.2.27] +K15688 MUL1; E3 ubiquitin-protein ligase MUL1 [EC:2.3.2.27] +K15689 NEURL3, LINCR; E3 ubiquitin-protein ligase NEURL3 [EC:2.3.2.27] +K15690 RC3H; RING finger and CCCH-type zinc finger domain-containing protein +K15691 RFWD3; E3 ubiquitin-protein ligase RFWD3 [EC:2.3.2.27] +K15692 RNF13, RZF; E3 ubiquitin-protein ligase RNF13 [EC:2.3.2.27] +K15693 RNF26; E3 ubiquitin-protein ligase RNF26 [EC:2.3.2.27] +K15694 RNF43; E3 ubiquitin-protein ligase RNF43 [EC:2.3.2.27] +K15695 RNF103, KF1; E3 ubiquitin-protein ligase RNF103 [EC:2.3.2.27] +K15696 RNF113B; RING finger protein 113B +K15697 RNF114; E3 ubiquitin-protein ligase RNF114 [EC:2.3.2.27] +K15698 RNF121_175; RING finger protein 121/175 +K15699 RNF122; RING finger protein 122 +K15700 RNF146; E3 ubiquitin-protein ligase RNF146 [EC:2.3.2.27] +K15701 RNF130, GOLIATH; E3 ubiquitin-protein ligase RNF130 [EC:2.3.2.27] +K15702 RNF133; E3 ubiquitin-protein ligase RNF133 [EC:2.3.2.27] +K15703 RNF139, TRC8; E3 ubiquitin-protein ligase RNF139 [EC:2.3.2.27] +K15704 RNF149; E3 ubiquitin-protein ligase RNF149 [EC:2.3.2.27] +K15705 RNF152; E3 ubiquitin-protein ligase RNF152 [EC:2.3.2.27] +K15706 RNF167; E3 ubiquitin-protein ligase RNF167 [EC:2.3.2.27] +K15707 RNF170; E3 ubiquitin-protein ligase RNF170 [EC:2.3.2.27] +K15708 RNF180; E3 ubiquitin-protein ligase RNF180 [EC:2.3.2.27] +K15709 RNF187; E3 ubiquitin-protein ligase RNF187 [EC:2.3.2.27] +K15710 SHPRH; E3 ubiquitin-protein ligase SHPRH [EC:5.6.2.- 2.3.2.27] +K15711 SMARCA3, HLTF; SWI/SNF-related matrix-associated actin-dependent regulator of chromatin subfamily A3 [EC:5.6.2. 2.3.2.27] +K15712 TTC3; E3 ubiquitin-protein ligase TTC3 [EC:2.3.2.27] +K15713 UHRF2, NIRF; E3 ubiquitin-protein ligase UHRF2 [EC:2.3.2.27] +K15714 ZNF645; E3 ubiquitin-protein ligase ZNF645 [EC:2.3.2.27] +K15715 ZNRF4; E3 ubiquitin-protein ligase ZNRF4 [EC:2.3.2.27] +K15716 ZSWIM2; E3 ubiquitin-protein ligase ZSWIM2 [EC:2.3.2.27] +K15717 PRXL2B, FAM213B; prostamide/prostaglandin F2alpha synthase [EC:1.11.1.20] +K15718 LOX1_5; linoleate 9S-lipoxygenase [EC:1.13.11.58] +K15719 NCOAT, MGEA5; protein O-GlcNAcase / histone acetyltransferase [EC:3.2.1.169 2.3.1.48] +K15720 N4BP2; NEDD4-binding protein 2 [EC:3.-.-.-] +K15721 fyuA; pesticin/yersiniabactin receptor +K15722 cedA; cell division activator +K15723 syd; SecY interacting protein Syd +K15724 erpA; iron-sulfur cluster insertion protein +K15725 czcC, cusC, cnrC; outer membrane protein, heavy metal efflux system +K15726 czcA, cusA, cnrA; heavy metal efflux system protein +K15727 czcB, cusB, cnrB; membrane fusion protein, heavy metal efflux system +K15728 LPIN; phosphatidate phosphatase LPIN [EC:3.1.3.4] +K15729 PTGES; microsomal prostaglandin-E synthase 1 [EC:5.3.99.3] +K15730 PTGES3; cytosolic prostaglandin-E synthase [EC:5.3.99.3] +K15731 CTDSP; carboxy-terminal domain RNA polymerase II polypeptide A small phosphatase [EC:3.1.3.16] +K15732 CTDP1, FCP1; RNA polymerase II subunit A C-terminal domain phosphatase [EC:3.1.3.16] +K15733 E1.11.1.19; dye decolorizing peroxidase [EC:1.11.1.19] +K15734 SDR16C5; all-trans-retinol dehydrogenase (NAD+) [EC:1.1.1.105] +K15735 csiR; GntR family transcriptional regulator, carbon starvation induced regulator +K15736 lhgO; (S)-2-hydroxyglutarate dehydrogenase [EC:1.1.5.13] +K15737 csiD; glutarate dioxygenase [EC:1.14.11.64] +K15738 uup; ABC transport system ATP-binding/permease protein +K15739 vanB, vanA, vanD; D-alanine---(R)-lactate ligase [EC:6.1.2.1] +K15740 mptN; tetrahydromethanopterin:alpha-L-glutamate ligase [EC:6.3.2.33] +K15741 MAM1, IMS3; methylthioalkylmalate synthase 1 [EC:2.3.3.17] +K15742 MAM3, IMS2; methylthioalkylmalate synthase 3 [EC:2.3.3.17] +K15743 CES3_5; carboxylesterase 3/5 [EC:3.1.1.1] +K15744 Z-ISO; zeta-carotene isomerase [EC:5.2.1.12] +K15745 AL1; phytoene desaturase (3,4-didehydrolycopene-forming) [EC:1.3.99.30] +K15746 crtZ; beta-carotene 3-hydroxylase [EC:1.14.15.24] +K15747 LUT5, CYP97A3; beta-ring hydroxylase [EC:1.14.-.-] +K15748 BG1; beta-D-glucopyranosyl abscisate beta-glucosidase [EC:3.2.1.175] +K15749 dbfB; 2,2',3-trihydroxybiphenyl dioxygenase [EC:1.13.11.-] +K15750 bphAb, bphA2, bphE; biphenyl 2,3-dioxygenase subunit beta [EC:1.14.12.18] +K15751 carAa; carbazole 1,9a-dioxygenase [EC:1.14.12.22] +K15752 carAc; carbazole 1,9a-dioxygenase ferredoxin component +K15753 carAd; carbazole 1,9a-dioxygenase ferredoxin reductase component +K15754 carBa; 2'-aminobiphenyl-2,3-diol 1,2-dioxygenase, small subunit [EC:1.13.11.-] +K15755 carBb; 2'-aminobiphenyl-2,3-diol 1,2-dioxygenase, large subunit [EC:1.13.11.-] +K15756 carC; 2-hydroxy-6-oxo-6-(2'-aminophenyl)hexa-2,4-dienoate hydrolase [EC:3.7.1.13] +K15757 xylM; toluene methyl-monooxygenase [EC:1.14.15.26] +K15758 xylA; toluene methyl-monooxygenase electron transfer component [EC:1.18.1.3] +K15759 IMPAD1, IMPA3; Golgi-resident PAP phosphatase [EC:3.1.3.7] +K15760 tmoA, tbuA1, touA; toluene monooxygenase system protein A [EC:1.14.13.236 1.14.13.-] +K15761 tmoB, tbuU, touB; toluene monooxygenase system protein B [EC:1.14.13.236 1.14.13.-] +K15762 tmoC, tbuB, touC; toluene monooxygenase system ferredoxin subunit +K15763 tmoD, tbuV, touD; toluene monooxygenase system protein D [EC:1.14.13.236 1.14.13.-] +K15764 tmoE, tbuA2, touE; toluene monooxygenase system protein E [EC:1.14.13.236 1.14.13.-] +K15765 tmoF, tbuC, touF; toluene monooxygenase electron transfer component [EC:1.18.1.3] +K15766 absAa; 2-aminobenzenesulfonate 2,3-dioxygenase subunit alpha [EC:1.14.12.14] +K15767 absAb; 2-aminobenzenesulfonate 2,3-dioxygenase subunit beta [EC:1.14.12.14] +K15768 tsaM; p-toluenesulfonate methyl-monooxygenase oxygenase component TsaM [EC:1.14.13.-] +K15769 tsaB; p-toluenesulfonate methyl-monooxygenase reductase component TsaB [EC:1.5.1.-] +K15770 cycB, ganO, mdxE; arabinogalactan oligomer / maltooligosaccharide transport system substrate-binding protein +K15771 ganP, mdxF; arabinogalactan oligomer / maltooligosaccharide transport system permease protein +K15772 ganQ, mdxG; arabinogalactan oligomer / maltooligosaccharide transport system permease protein +K15773 hipB; HTH-type transcriptional regulator / antitoxin HipB +K15774 5GT; betanidin 5-O-glucosyltransferase [EC:2.4.1.-] +K15775 6GT; betanidin 6-O-glucosyltransferase [EC:2.4.1.-] +K15776 CDOPA5GT; cyclo-DOPA 5-O-glucosyltransferase [EC:2.4.1.-] +K15777 DODA; 4,5-DOPA dioxygenase extradiol [EC:1.13.11.-] +K15778 pmm-pgm; phosphomannomutase / phosphoglucomutase [EC:5.4.2.8 5.4.2.2] +K15779 PGM2; phosphoglucomutase / phosphopentomutase [EC:5.4.2.2 5.4.2.7] +K15780 tilS-hprT; bifunctional protein TilS/HprT [EC:6.3.4.19 2.4.2.8] +K15781 serB-plsC; putative phosphoserine phosphatase / 1-acylglycerol-3-phosphate O-acyltransferase [EC:3.1.3.3 2.3.1.51] +K15782 doeX; Lrp/AsnC family transcriptional regulator, regulator of ectoine-degradation genes +K15783 doeA; ectoine hydrolase [EC:3.5.4.44] +K15784 doeB; N2-acetyl-L-2,4-diaminobutanoate deacetylase [EC:3.5.1.125] +K15785 doeD; L-2,4-diaminobutyrate transaminase [EC:2.6.1.76] +K15786 doeC; aspartate-semialdehyde dehydrogenase [EC:1.2.1.-] +K15787 UGT78D1; flavonol-3-O-rhamnosyltransferase [EC:2.4.1.-] +K15789 TDH; threonine 3-dehydrogenase [EC:1.1.1.103] +K15790 nifQ; nitrogen fixation protein NifQ +K15791 DHKTD1; 2-oxoadipate dehydrogenase E1 component [EC:1.2.4.-] +K15792 murEF; MurE/MurF fusion protein [EC:6.3.2.13 6.3.2.10] +K15793 K15793; acyclic sesquiterpene synthase [EC:4.2.3.49 4.2.3.47 3.1.7.6] +K15794 E4.2.3.55; (S)-beta-bisabolene synthase [EC:4.2.3.55] +K15795 TPS12_13; (Z)-gamma-bisabolene synthase [EC:4.2.3.40] +K15796 TPS3; (E)-gamma-bisabolene synthase [EC:4.2.3.59] +K15797 TPS6_11; (S)-beta-macrocarpene synthase [EC:5.5.1.17] +K15798 SBS; santalene and bergamotene synthase [EC:4.2.3.50 4.2.3.53 4.2.3.54] +K15799 BS, TPS11; (+)-alpha-barbatene/beta-chamigrene/thujopsene synthase [EC:4.2.3.69 4.2.3.78 4.2.3.79] +K15800 GAO; germacrene A oxidase [EC:1.14.14.95] +K15801 SSTLH1; (E,E)-germacrene B synthase [EC:4.2.3.71] +K15802 SSTLE1; germacrene C synthase [EC:4.2.3.60] +K15803 GERD; (-)-germacrene D synthase [EC:4.2.3.75] +K15804 EAS; 5-epiaristolochene/(+)-2-epi-prezizaene/(-)-alpha-cedrene synthase [EC:4.2.3.61 4.2.3.226 4.2.3.227] +K15805 EAH, CYP71D20; 5-epiaristolochene 1,3-dihydroxylase [EC:1.14.14.149] +K15806 AG4; (+)-delta-selinene synthase [EC:4.2.3.76] +K15807 TPS177; patchoulol/alpha-guaiene/delta-guaiene synthase [EC:4.2.3.70 4.2.3.87 4.2.3.93] +K15808 QHS1; beta-caryophyllene synthase [EC:4.2.3.57] +K15809 MXPSS1; cis-muuroladiene synthase [EC:4.2.3.67] +K15810 DCD; dammaradiene synthase [EC:5.4.99.37] +K15811 PDSA, HELA; protostadienol synthase [EC:5.4.99.32] +K15812 CPQ; cucurbitadienol synthase [EC:5.4.99.33] +K15813 LUP4; beta-amyrin synthase [EC:5.4.99.39] +K15814 CYP93E1; beta-amyrin 24-hydroxylase [EC:1.14.14.134] +K15815 LUP2; lupeol synthase 2 [EC:5.4.99.39 5.4.99.40 5.4.99.41] +K15816 LUP1; lupeol synthase 1 [EC:4.2.1.128 5.4.99.41] +K15817 DDS; dammarenediol II synthase [EC:4.2.1.125] +K15818 M1; germanicol synthase [EC:5.4.99.34] +K15819 M2; taraxerol synthase [EC:5.4.99.35] +K15820 IMS1; isomultiflorenol synthase [EC:5.4.99.36] +K15821 THAS1; thalianol synthase [EC:5.4.99.31] +K15822 CAMS1, LUP3; camelliol C synthase [EC:5.4.99.38] +K15823 PEN1; arabidiol synthase [EC:4.2.1.124] +K15824 FAMET; farsoic acid methyltransferase +K15825 JHDK; juvenile hormone diol kinase +K15826 CYP4C7; sesquiterpenoid omega-hydroxylase +K15827 hycB; formate hydrogenlyase subunit 2 +K15828 hycC; formate hydrogenlyase subunit 3 +K15829 hycD; formate hydrogenlyase subunit 4 +K15830 hycE; formate hydrogenlyase subunit 5 +K15831 hycF; formate hydrogenlyase subunit 6 +K15832 hycG; formate hydrogenlyase subunit 7 +K15833 hycA; formate hydrogenlyase regulatory protein HycA +K15834 hycH; formate hydrogenlyase maturation protein HycH +K15835 murR; RpiR family transcriptional regulator, murPQ operon repressor +K15836 fhlA; formate hydrogenlyase transcriptional activator +K15837 GPSM2; G-protein signaling modulator 2 +K15838 GPSM3, AGS4; G-protein signaling modulator 3 +K15839 GPSM1, AGS3; G-protein signaling modulator 1 +K15840 PDYN, PENKB; proenkephalin B (prodynorphin) +K15841 glmY; small regulatory RNA GlmY +K15842 cagA; cytotoxicity-associated immunodominant antigen +K15843 hopC, alpA; outer membrane protein HopC/AlpA +K15844 hopB, alpB; outer membrane protein HopB/AlpB +K15845 hopZ; outer membrane protein HopZ +K15846 hpaA; neuraminyllactose-binding hemagglutinin +K15847 babA; outer membrane protein BabA +K15848 sabA; outer membrane protein SabA +K15849 PAT, AAT; bifunctional aspartate aminotransferase and glutamate/aspartate-prephenate aminotransferase [EC:2.6.1.1 2.6.1.78 2.6.1.79] +K15850 luxN; two-component system, autoinducer 1 sensor kinase/phosphatase LuxN [EC:2.7.13.3 3.1.3.-] +K15851 qrr; quorum regulatory RNA Qrr +K15852 luxR, vanR; LuxR family transcriptional regulator, transcriptional activator of the bioluminescence operon +K15853 luxD; acyl transferase [EC:2.3.1.-] +K15854 luxB; alkanal monooxygenase beta chain [EC:1.14.14.3] +K15855 csxA; exo-1,4-beta-D-glucosaminidase [EC:3.2.1.165] +K15856 rmd; GDP-4-dehydro-6-deoxy-D-mannose reductase [EC:1.1.1.281] +K15857 ascE; CDP-3, 6-dideoxy-D-glycero-D-glycero-4-hexulose-5-epimerase [EC:5.1.-.-] +K15858 ascF; CDP-3, 6-dideoxy-D-glycero-L-glycero-4-hexulose-4-reductase [EC:1.1.1.-] +K15859 SKN7; osomolarity two-component system, response regulator SKN7 +K15860 ciaX; regulatory peptide CiaX +K15861 fixK; CRP/FNR family transcriptional regulator, nitrogen fixation regulation protein +K15862 ccoNO; cytochrome c oxidase cbb3-type subunit I/II [EC:7.1.1.9] +K15863 nuoLM; NADH-quinone oxidoreductase subunit L/M [EC:7.1.1.2] +K15864 nirS; nitrite reductase (NO-forming) / hydroxylamine reductase [EC:1.7.2.1 1.7.99.1] +K15865 CDKAL1; threonylcarbamoyladenosine tRNA methylthiotransferase CDKAL1 [EC:2.8.4.5] +K15866 paaG; 2-(1,2-epoxy-1,2-dihydrophenyl)acetyl-CoA isomerase [EC:5.3.3.18] +K15867 ARC; activity-regulated cytoskeleton-associated protein +K15868 baiB; bile acid-coenzyme A ligase [EC:6.2.1.7] +K15869 baiA; 3alpha-hydroxy bile acid-CoA-ester 3-dehydrogenase [EC:1.1.1.395] +K15870 baiCD; 3-oxocholoyl-CoA 4-desaturase [EC:1.3.1.115] +K15871 baiF; bile acid CoA-transferase [EC:2.8.3.25] +K15872 baiE; bile-acid 7alpha-dehydratase [EC:4.2.1.106] +K15873 baiH; 7beta-hydroxy-3-oxochol-24-oyl-CoA 4-desaturase [EC:1.3.1.116] +K15874 baiI; bile acid 7beta-dehydratase +K15876 nrfH; cytochrome c nitrite reductase small subunit +K15877 CYP55; fungal nitric oxide reductase [EC:1.7.1.14] +K15878 K15878, narB; rieske iron-sulfur protein +K15879 narC; cytochrome b-561 +K15884 snoaE, aknE1; bifunctional aromatase (cyclase/dehydratase) [EC:4.2.1.-] +K15885 mtmQ; C7-C12 aromatase (ARO/CYC) [EC:4.2.1.-] +K15886 tcmN; multifunctional cyclase / dehydratase / O-methyltransferase [EC:2.3.1.235] +K15887 ZFPS; (2Z,6Z)-farnesyl diphosphate synthase [EC:2.5.1.92] +K15888 uppS, cpdS; tritrans,polycis-undecaprenyl-diphosphate synthase [geranylgeranyl-diphosphate specific] [EC:2.5.1.89] +K15889 PCME; prenylcysteine alpha-carboxyl methylesterase [EC:3.1.1.-] +K15890 FOHSDR; NADP+-dependent farnesol dehydrogenase [EC:1.1.1.216] +K15891 FLDH; NAD+-dependent farnesol dehydrogenase [EC:1.1.1.354] +K15892 FOLK; farnesol kinase [EC:2.7.1.216] +K15893 HPR1; glycerate dehydrogenase [EC:1.1.1.29] +K15894 pseB, wbjB; UDP-N-acetylglucosamine 4,6-dehydratase/5-epimerase [EC:4.2.1.115 5.1.3.-] +K15895 pseC; UDP-4-amino-4,6-dideoxy-L-N-acetyl-beta-L-altrosamine transaminase [EC:2.6.1.92] +K15896 pseH; UDP-4-amino-4,6-dideoxy-N-acetyl-beta-L-altrosamine N-acetyltransferase [EC:2.3.1.202] +K15897 pseG; UDP-2,4-diacetamido-2,4,6-trideoxy-beta-L-altropyranose hydrolase [EC:3.6.1.57] +K15898 pseI, neuB3; pseudaminic acid synthase [EC:2.5.1.97] +K15899 pseF; pseudaminic acid cytidylyltransferase [EC:2.7.7.81] +K15901 TPRKB, CGI121; EKC/KEOPS complex subunit TPRKB/CGI121 +K15902 LAGE3, PCC1; EKC/KEOPS complex subunit LAGE3/PCC1 +K15903 GON7, PCC2; EKC/KEOPS complex subunit GON7 +K15904 kae1-bud32; bifunctional N6-L-threonylcarbamoyladenine synthase / protein kinase Bud32 [EC:2.3.1.234 2.7.11.1] +K15907 ptlI, CYP183A; pentalenene oxygenase [EC:1.14.15.32] +K15908 EAP1; protein EAP1 +K15909 SHIP2, INPPL1; phosphatidylinositol-3,4,5-trisphosphate 5-phosphatase 2 [EC:3.1.3.86] +K15910 pglE; UDP-N-acetylbacillosamine transaminase [EC:2.6.1.34] +K15911 E2.5.1.153; adenosine tuberculosinyltransferase [EC:2.5.1.153] +K15912 pglF; UDP-N-acetylglucosamine 4,6-dehydratase [EC:4.2.1.135] +K15913 pglD; UDP-N-acetylbacillosamine N-acetyltransferase [EC:2.3.1.203] +K15914 pglA; N,N'-diacetylbacillosaminyl-diphospho-undecaprenol alpha-1,3-N-acetylgalactosaminyltransferase [EC:2.4.1.290] +K15915 pglC; undecaprenyl phosphate N,N'-diacetylbacillosamine 1-phosphate transferase [EC:2.7.8.36] +K15916 pgi-pmi; glucose/mannose-6-phosphate isomerase [EC:5.3.1.9 5.3.1.8] +K15918 GLYK; D-glycerate 3-kinase [EC:2.7.1.31] +K15919 HPR2_3; glyoxylate/hydroxypyruvate reductase [EC:1.1.1.79 1.1.1.81] +K15920 XYL4; xylan 1,4-beta-xylosidase [EC:3.2.1.37] +K15921 xynD; arabinoxylan arabinofuranohydrolase [EC:3.2.1.55] +K15922 yihQ; sulfoquinovosidase [EC:3.2.1.199] +K15923 AXY8, FUC95A, afcA; alpha-L-fucosidase 2 [EC:3.2.1.51] +K15924 xynC; glucuronoarabinoxylan endo-1,4-beta-xylanase [EC:3.2.1.136] +K15925 XYL1; alpha-D-xyloside xylohydrolase [EC:3.2.1.177] +K15926 jadI; cyclase +K15927 jadF; oxygenase +K15928 jadH; bifunctional hydroxylase/dehydrase +K15929 jadS; glycosyltransferase [EC:2.4.1.-] +K15930 lndM2; bifunctional oxygenase/reductase +K15931 lndGT2, lanGT2; D-olivosyltransferase +K15932 lndZ4, lanZ4; reductase LndZ4/LanZ4 +K15933 lndZ5, lanZ5; oxygenase LndZ5/LanZ5 +K15934 lndGT1, lanGT1; D-olivosyltransferase +K15935 lndGT4, lanGT4; L-rhodinosyltransferase +K15936 urdGT2; glycosyltransferase [EC:2.4.1.-] +K15937 urdGT1a; glycosyltransferase +K15938 urdGT1c; glycosyltransferase +K15939 urdGT1b; glycosyltransferase [EC:2.4.1.-] +K15941 snoaB, dnrG, aknX; deoxynogalonate / 12-deoxyaklanonic acid monooxygenase [EC:1.13.12.22 1.13.12.-] +K15942 snoaC, dnrC, dauC, aknG; O-methyltransferase / aklanonic acid methyltransferase [EC:2.1.1.- 2.1.1.288] +K15943 snoaL, dnrD, dauD, aknH; nogalonic acid methyl ester cyclase / aklanonic acid methyl ester cyclase [EC:5.5.1.26 5.5.1.23] +K15944 snoaF, dnrE, dauE, aknU; nogalaviketone/aklaviketone reductase [EC:1.1.1.- 1.1.1.362] +K15945 snoaL2; C-1 hydroxylase +K15946 aknS; aklavinone 7-alpha-L-rhodosaminyltransferase [EC:2.4.1.326] +K15947 aknT; aklavinone 7-alpha-L-rhodosaminyltransferase auxiliary protein +K15948 aknK; aclacinomycin-T 2-deoxy-L-fucose transferase [EC:2.4.1.327] +K15949 aknOx; aclacinomycin-N/aclacinomycin-A oxidase [EC:1.1.3.45 1.3.3.14] +K15950 dnrF, rdmE; aklavinone 12-hydroxylase [EC:1.14.13.180] +K15951 dnrS; glycosyltransferase [EC:2.4.1.-] +K15952 dnrQ; glycosyltransferase auxiliary protein +K15953 dnrP, dauP; 10-carbomethoxy-13-deoxycarminomycin esterase +K15954 dnrK, dauK; carminomycin 4-O-methyltransferase [EC:2.1.1.292] +K15955 doxA, CYP129A; 13-deoxydaunorubicin hydroxylase [EC:1.14.13.181] +K15956 dnrU; daunorubicin C-13 ketoreductase +K15957 rdmC; aclacinomycin methylesterase [EC:3.1.1.95] +K15958 rdmB; SAM-dependent hydroxylase +K15959 mtmMI; O-methyltransferase [EC:2.1.1.-] +K15960 mtmGIV; glycosyltransferase [EC:2.4.1.-] +K15961 mtmGIII; glycosyltransferase [EC:2.4.1.-] +K15962 mtmC; D-mycarose 3-C-methyltransferase +K15963 mtmMII; C-methyltransferase [EC:2.1.1.-] +K15964 mtmGI; glycosyltransferase [EC:2.4.1.-] +K15965 mtmGII; glycosyltransferase [EC:2.4.1.-] +K15966 mtmOIV; monooxygenase [EC:1.14.13.-] +K15967 mtmW; ketoreductase +K15968 tcmI; tetracenomycin F2 cyclase [EC:4.2.1.154] +K15969 tcmH; tetracenomycin F1 monooxygenase [EC:1.13.12.21] +K15970 tcmO; 8-O-methyltransferase +K15971 tcmP, elmP; O-methyltransferase [EC:2.1.1.-] +K15972 tcmG, elmG; tetracenomycin A2 monooxygenase-dioxygenase [EC:1.14.13.200] +K15973 mhqR; MarR family transcriptional regulator, 2-MHQ and catechol-resistance regulon repressor +K15974 emrR, mprA; MarR family transcriptional regulator, negative regulator of the multidrug operon emrRAB +K15975 K15975; glyoxalase family protein +K15976 K15976; putative NAD(P)H nitroreductase [EC:1.-.-.-] +K15977 K15977; putative oxidoreductase +K15978 AKAP8L, HA95; A-kinase anchor protein 8-like protein +K15979 SND1; staphylococcal nuclease domain-containing protein 1 +K15980 ACAD9; acyl-CoA dehydrogenase family member 9 [EC:1.3.99.-] +K15981 CYP125A; cholest-4-en-3-one 26-monooxygenase [EC:1.14.15.29] +K15982 kshA; 3-ketosteroid 9alpha-monooxygenase subunit A [EC:1.14.15.30] +K15983 kshB; 3-ketosteroid 9alpha-monooxygenase subunit B [EC:1.14.15.30] +K15984 rsmJ; 16S rRNA (guanine1516-N2)-methyltransferase [EC:2.1.1.242] +K15985 PKIA; cAMP-dependent protein kinase inhibitor alpha +K15986 ppaC; manganese-dependent inorganic pyrophosphatase [EC:3.6.1.1] +K15987 hppA; K(+)-stimulated pyrophosphate-energized sodium pump [EC:7.2.3.1] +K15988 tylG1; tylactone synthase 1 +K15989 tylMII; tylactone mycaminosyltransferase [EC:2.4.1.316] +K15990 tylMIII; tylactone mycaminosyltransferase auxiliary protein +K15991 tylHI, CYP105L1; 20-oxo-5-O-mycaminosyltylactone 23-monooxygenase [EC:1.14.15.34] +K15992 tylI, CYP113B; cytochrome P450 TylI +K15993 tylN; O-mycaminosyltylonolide 6-deoxyallosyltransferase [EC:2.4.1.317] +K15994 tylCV; demethyllactenocin mycarosyltransferase [EC:2.4.1.318] +K15995 tylE; demethylmacrocin O-methyltransferase [EC:2.1.1.102] +K15996 tylF; macrocin O-methyltransferase [EC:2.1.1.101] +K15997 eryCII; 3-alpha-mycarosylerythronolide B desosaminyl transferase auxiliary protein +K15998 megDI; TDP-megosamine glycosyltransferase +K15999 megY; mycarose O-acyltransferase +K16000 pikAI; narbonolide/10-deoxymethynolide synthase [EC:2.3.1.240 2.3.1.239] +K16001 pikAII; narbonolide/10-deoxymethynolide synthase [EC:2.3.1.240 2.3.1.239] +K16002 pikAIII; narbonolide/10-deoxymethynolide synthase [EC:2.3.1.240 2.3.1.239] +K16003 pikAIV; narbonolide synthase [EC:2.3.1.240] +K16004 desVII; narbonolide/10-deoxymethynolide desosaminyltransferase [EC:2.4.1.277] +K16005 desVIII; narbonolide/10-deoxymethynolide desosaminyltransferase auxiliary protein +K16006 pikC, CYP107L; pikromycin synthase [EC:1.14.15.33] +K16007 oleAI; 8,8a-deoxyoleandolide synthase 1 +K16008 oleP, CYP107D; cytochrome P450 monooxygenase OleP +K16009 oleGII; glycosyltransferase OleGII +K16010 oleGI; desosaminyltransferase OleGI +K16011 algA, xanB, rfbA, wbpW, pslB; mannose-1-phosphate guanylyltransferase / mannose-6-phosphate isomerase [EC:2.7.7.13 5.3.1.8] +K16012 cydC; ATP-binding cassette, subfamily C, bacterial CydC +K16013 cydD; ATP-binding cassette, subfamily C, bacterial CydD +K16014 cydCD; ATP-binding cassette, subfamily C, bacterial CydCD +K16015 rifL, asm44; oxidoreductase [EC:1.1.1.-] +K16016 rifK, asm24, asm43; 3-amino-5-hydroxybenzoate synthase [EC:4.2.1.144 2.6.1.-] +K16017 rifM, asm45; AHBA synthesis associated protein +K16018 rifN, asm22; kanosamine 6-kinase [EC:2.7.1.179] +K16019 rifH; 3,4-Dideoxy-4-amino-D-arabino-heptulosonate 7-phosphate synthase +K16020 rifG, asm47; 5-deoxy-5-amino-3-dehydroquinate synthase +K16021 rifJ, asm23; 5-deoxy-5-amino-3-dehydroquinate dehydratase +K16022 rif19; flavoprotein hydroxylase +K16023 rif20; acetyltransferase +K16024 asm13; methoxymalonate biosynthesis protein +K16025 asm14; methoxymalonate biosynthesis acyl carrier protein +K16026 asm15; methoxymalonate biosynthesis protein +K16027 asm16; methoxymalonate biosynthesis protein +K16028 asm17; O-methyltransferase +K16029 asmA; ansamitocin polyketide synthase A +K16030 asmB; ansamitocin polyketide synthase B +K16031 asmC; ansamitocin polyketide synthase C +K16032 asmD; ansamitocin polyketide synthase D +K16033 asm12; FADH2-dependent halogenase +K16034 asm7; 20-O-methyltransferase +K16035 asm21; 7-O-carbamoyltransferase [EC:2.1.3.-] +K16036 asm19; 3-O-acyltransferase +K16037 asm11; 4,5-epoxidase +K16038 asm10; N-methyltransferase [EC:2.1.1.-] +K16039 asm25; N-glycosyltransferase [EC:2.4.1.-] +K16040 ROMT; trans-resveratrol di-O-methyltransferase [EC:2.1.1.240] +K16041 nleA; non-LEE-encoded effector NleA +K16042 nleH; non-LEE-encoded effector NleH +K16043 iolX; scyllo-inositol 2-dehydrogenase (NAD+) [EC:1.1.1.370] +K16044 iolW; scyllo-inositol 2-dehydrogenase (NADP+) [EC:1.1.1.371] +K16045 hsd; 3beta-hydroxy-Delta5-steroid dehydrogenase / steroid Delta-isomerase [EC:1.1.1.145 5.3.3.1] +K16046 CYP142; cholest-4-en-3-one 26-monooxygenase [EC:1.14.15.28] +K16047 hsaA; 3-hydroxy-9,10-secoandrosta-1,3,5(10)-triene-9,17-dione monooxygenase [EC:1.14.14.12] +K16048 hsaB; 3-hydroxy-9,10-secoandrosta-1,3,5(10)-triene-9,17-dione monooxygenase reductase component [EC:1.5.1.-] +K16049 hsaC; 3,4-dihydroxy-9,10-secoandrosta-1,3,5(10)-triene-9,17-dione 4,5-dioxygenase [EC:1.13.11.25] +K16050 hsaD; 4,5:9,10-diseco-3-hydroxy-5,9,17-trioxoandrosta-1(10),2-diene-4-oate hydrolase [EC:3.7.1.17] +K16051 tesI; 3-oxo-5alpha-steroid 4-dehydrogenase [EC:1.3.99.5] +K16052 ynaI, mscMJ; MscS family membrane protein +K16053 ybdG, mscM; miniconductance mechanosensitive channel +K16054 DEP1; methylthioribulose 1-phosphate dehydratase / enolase-phosphatase E1 [EC:4.2.1.109 3.1.3.77] +K16055 TPS; trehalose 6-phosphate synthase/phosphatase [EC:2.4.1.15 3.1.3.12] +K16056 ORAI1; calcium release-activated calcium channel protein 1 +K16057 ORAI2; calcium release-activated calcium channel protein 2 +K16058 ORAI3; calcium release-activated calcium channel protein 3 +K16059 STIM1; stromal interaction molecule 1 +K16060 BIRC2_3; baculoviral IAP repeat-containing protein 2/3 +K16061 BIRC7_8; baculoviral IAP repeat-containing protein 7/8 +K16062 CCL21, SLC; C-C motif chemokine 21 +K16063 PIAS2; E3 SUMO-protein ligase PIAS2 [EC:2.3.2.-] +K16064 PIAS3; E3 SUMO-protein ligase PIAS3 [EC:2.3.2.-] +K16065 PIAS4; E3 SUMO-protein ligase PIAS4 [EC:2.3.2.27] +K16066 ydfG; 3-hydroxy acid dehydrogenase / malonic semialdehyde reductase [EC:1.1.1.381 1.1.1.-] +K16067 ADAM11; disintegrin and metalloproteinase domain-containing protein 11 [EC:3.4.24.-] +K16068 ADAM22; disintegrin and metalloproteinase domain-containing protein 22 [EC:3.4.24.-] +K16069 ADAM29; disintegrin and metalloproteinase domain-containing protein 29 [EC:3.4.24.-] +K16070 ADAM32; disintegrin and metalloproteinase domain-containing protein 32 [EC:3.4.24.-] +K16071 ADAM7; disintegrin and metalloproteinase domain-containing protein 7 [EC:3.4.24.-] +K16072 ERC1, CAST2, ELKS; ELKS/RAB6-interacting/CAST family member 1 +K16073 ALR, MNR; magnesium transporter +K16074 zntB; zinc transporter +K16075 MRS2, MFM1; magnesium transporter +K16076 nmpC, ompD; outer membrane porin protein LC +K16077 scrY; sucrose porin +K16078 ail; attachment invasion locus protein +K16079 omp31; outer membrane immunogenic protein +K16080 mnoP; high affinity Mn2+ porin +K16081 algE; alginate production protein +K16082 KSL6; ent-isokaurene synthase [EC:4.2.3.103] +K16083 CYP71Z6; ent-isokaurene hydroxylase [EC:1.14.14.76] +K16084 CYP76M7_8; ent-cassa-12,15-diene 11-hydroxylase / oryzalexin D synthase [EC:1.14.14.112 1.14.14.123] +K16085 CYP99A2_3; 9beta-pimara-7,15-diene oxidase [EC:1.14.14.111] +K16086 E3.1.7.10; (13E)-labda-7,13-dien-15-ol synthase [EC:3.1.7.10] +K16087 TC.FEV.OM3, tbpA, hemR, lbpA, hpuB, bhuR, hugA, hmbR; hemoglobin/transferrin/lactoferrin receptor protein +K16088 TC.FEV.OM1, fhuE, fpvA, fptA; outer-membrane receptor for ferric coprogen and ferric-rhodotorulic acid +K16089 TC.FEV.OM2, cirA, cfrA, hmuR; outer membrane receptor for ferrienterochelin and colicins +K16090 fiu; catecholate siderophore receptor +K16091 fecA; Fe(3+) dicitrate transport protein +K16092 btuB; vitamin B12 transporter +K16093 bacA; bacitracin synthase 1 +K16094 bacB; bacitracin synthase 2 +K16095 bacC; bacitracin synthase 3 +K16096 grsA; gramicidin S synthase 1 +K16097 grsB; gramicidin S synthase 2 +K16098 vioF; nonribosomal peptide synthetase protein VioF +K16099 vioA; nonribosomal peptide synthetase protein VioA +K16100 vioI; nonribosomal peptide synthetase protein VioI +K16101 vioG; nonribosomal peptide synthetase protein VioG +K16102 vioO; nonribosomal peptide synthetase protein VioO +K16103 vioM; nonribosomal peptide synthetase protein VioM +K16104 vioJ; 2,3-diaminopropionyl alpha,beta-desaturase +K16105 vioL; carbamoyltransferase +K16106 blmVI; nonribosomal peptide synthetase protein BlmVI +K16107 blmV; nonribosomal peptide synthetase protein BlmV +K16108 blmX; nonribosomal peptide synthetase protein BlmX +K16109 blmIX; nonribosomal peptide synthetase protein BlmIX +K16110 blmVIII; nonribosomal peptide synthetase protein BlmVIII +K16111 blmVII; nonribosomal peptide synthetase protein BlmVII +K16112 blmIV; nonribosomal peptide synthetase protein BlmIV +K16113 blmIII; nonribosomal peptide synthetase protein BlmIII +K16114 blmE; glycosyl transferase protein BlmE +K16115 blmF; glycosyl transferase / beta-hydroxylase protein BlmF +K16116 snbA; pristinamycin I synthetase 1 +K16117 snbC; pristinamycin I synthase 2 +K16118 snbDE; pristinamycin I synthase 3 and 4 +K16122 tycA; tyrocidine synthetase I +K16123 tycB; tyrocidine synthetase II +K16124 tycC; tyrocidine synthetase III +K16125 syrE; syringomycin synthetase protein SyrE +K16126 syrB1; L-threonine---[L-threonyl-carrier protein] ligase [EC:6.2.1.70] +K16127 mcyG; microcystin synthetase protein McyG +K16128 mcyD; microcystin synthetase protein McyD +K16129 mcyE; microcystin synthetase protein McyE +K16130 mcyA; microcystin synthetase protein McyA +K16131 mcyB; microcystin synthetase protein McyB +K16132 mcyC; microcystin synthetase protein McyC +K16133 mcyI; microcystin synthetase protein McyI +K16134 mcyJ; microcystin synthetase protein McyJ +K16135 dmlR; LysR family transcriptional regulator, transcriptional activator for dmlA +K16136 malI; LacI family transcriptional regulator, maltose regulon regulatory protein +K16137 nemR; TetR/AcrR family transcriptional regulator, transcriptional repressor for nem operon +K16138 uidR; TetR/AcrR family transcriptional regulator, repressor for uid operon +K16139 uidB, gusB; glucuronide carrier protein +K16140 uidC, gusC; putative glucuronide porin +K16141 ALB; serum albumin +K16142 HP; haptoglobin +K16143 CRP; C-reactive protein +K16144 AFP; alpha-fetoprotein +K16145 MUC16, CA125; mucin-16 +K16146 pep2; maltokinase [EC:2.7.1.175] +K16147 glgE; starch synthase (maltosyl-transferring) [EC:2.4.99.16] +K16148 glgM; alpha-maltose-1-phosphate synthase [EC:2.4.1.342] +K16149 K16149; 1,4-alpha-glucan branching enzyme [EC:2.4.1.18] +K16150 K16150; glycogen synthase [EC:2.4.1.11] +K16151 HBD; hemoglobin subunit delta +K16152 hasR; heme acquisition protein HasR +K16153 K16153; glycogen phosphorylase/synthase [EC:2.4.1.1 2.4.1.11] +K16157 mmoX; methane monooxygenase component A alpha chain [EC:1.14.13.25] +K16158 mmoY; methane monooxygenase component A beta chain [EC:1.14.13.25] +K16159 mmoZ; methane monooxygenase component A gamma chain [EC:1.14.13.25] +K16160 mmoB; methane monooxygenase regulatory protein B +K16161 mmoC; methane monooxygenase component C [EC:1.14.13.25] +K16162 mmoD; methane monooxygenase component D +K16163 K16163; maleylpyruvate isomerase [EC:5.2.1.4] +K16164 K16164; acylpyruvate hydrolase [EC:3.7.1.5] +K16165 nagK; fumarylpyruvate hydrolase [EC:3.7.1.20] +K16166 PAP1, MYB75; transcription factor MYB75 +K16167 bpsA, srsA, pks11, pks10; alkylresorcinol/alkylpyrone synthase +K16168 bpsB, srsB; methyltransferase +K16169 pbuX; xanthine permease +K16170 pucJ, pucK; uric acid permease +K16171 faaH; fumarylacetoacetate (FAA) hydrolase [EC:3.7.1.2] +K16172 IRS1; insulin receptor substrate 1 +K16173 acd; glutaryl-CoA dehydrogenase (non-decarboxylating) [EC:1.3.99.32] +K16174 MRPS18B, MRPS18-2; small subunit ribosomal protein S18b, mitochondrial +K16175 SCRIB; protein scribble +K16176 mtmB; methylamine---corrinoid protein Co-methyltransferase [EC:2.1.1.248] +K16177 mtmC; monomethylamine corrinoid protein +K16178 mtbB; dimethylamine---corrinoid protein Co-methyltransferase [EC:2.1.1.249] +K16179 mtbC; dimethylamine corrinoid protein +K16180 pylB; methylornithine synthase [EC:5.4.99.58] +K16181 pylC; 3-methylornithine--L-lysine ligase [EC:6.3.2.59] +K16182 pylD; 3-methylornithyl-N6-L-lysine dehydrogenase [EC:1.4.1.-] +K16183 ramA; [Co(II) methylated amine-specific corrinoid protein] reductase [EC:1.16.99.1] +K16184 AKT1S1, PRAS40; proline-rich AKT1 substrate 1 +K16185 RRAGA_B; Ras-related GTP-binding protein A/B +K16186 RRAGC_D; Ras-related GTP-binding protein C/D +K16188 ytpB; tetraprenyl-beta-curcumene synthase [EC:4.2.3.130] +K16189 PIF4; phytochrome-interacting factor 4 +K16190 GLCAK; glucuronokinase [EC:2.7.1.43] +K16191 K16191, arfA; peptidoglycan-binding protein ArfA +K16192 K16192, arfB; uncharacterized membrane protein ArfB +K16193 arfC; uncharacterized membrane protein ArfC +K16194 EIF2AK1; eukaryotic translation initiation factor 2-alpha kinase 1 [EC:2.7.11.1] +K16195 EIF2AK2; eukaryotic translation initiation factor 2-alpha kinase 2 [EC:2.7.11.1] +K16196 EIF2AK4; eukaryotic translation initiation factor 2-alpha kinase 4 [EC:2.7.11.1] +K16197 YWHAB_Q_Z; 14-3-3 protein beta/theta/zeta +K16198 YWHAG_H; 14-3-3 protein gamma/eta +K16199 dppE; dipeptide transport system substrate-binding protein +K16200 dppB1; dipeptide transport system permease protein +K16201 dppC; dipeptide transport system permease protein +K16202 dppD; dipeptide transport system ATP-binding protein +K16203 dppA1; D-amino peptidase [EC:3.4.11.-] +K16204 PEN6; seco-amyrin synthase [EC:5.4.99.52 5.4.99.54] +K16205 PEN3; tirucalladienol synthase [EC:5.4.99.56] +K16206 BARS1; baruol synthase [EC:5.4.99.57] +K16207 MRN1; marneral synthase [EC:5.4.99.53] +K16208 LUP5; lupeol synthase 5 [EC:5.4.99.-] +K16209 lacS, galP, rafP; lactose/raffinose/galactose permease +K16210 togT, rhiT; oligogalacturonide transporter +K16211 malY, malT; maltose/moltooligosaccharide transporter +K16212 mgp; 4-O-beta-D-mannosyl-D-glucose phosphorylase [EC:2.4.1.281] +K16213 cbe, mbe; cellobiose epimerase [EC:5.1.3.11] +K16214 pezT; UDP-N-acetylglucosamine kinase [EC:2.7.1.176] +K16215 mrsA; 2-ketoarginine methyltransferase [EC:2.1.1.243] +K16216 yueD; benzil reductase ((S)-benzoin forming) [EC:1.1.1.320] +K16217 gppmt; geranyl diphosphate 2-C-methyltransferase [EC:2.1.1.255] +K16218 mibs; 2-methylisoborneol synthase [EC:4.2.3.118] +K16219 NTMT1, METTL11A, NTM1; protein N-terminal methyltransferase [EC:2.1.1.244] +K16220 HAX1; HCLS1-associated protein X-1 +K16221 TCP21, CHE; transcription factor TCP21 (protein CCA1 HIKING EXPEDITION) +K16222 CDF1; Dof zinc finger protein DOF5.5 +K16223 FT; protein FLOWERING LOCUS T +K16224 FRK1; senescence-induced receptor-like serine/threonine-protein kinase +K16225 WRKY52, RRS1; probable WRKY transcription factor 52 +K16226 RPS4; disease resistance protein RPS4 +K16227 gplH; glycopeptidolipid biosynthesis protein +K16228 mps1; glycopeptidolipid biosynthesis protein +K16229 mps2; glycopeptidolipid biosynthesis protein +K16230 HAC1; transcriptional activator HAC1 +K16231 csyA; fungal type III polyketide synthase +K16232 gcs; germicidin synthase +K16233 pks18; alpha-pyrone synthase +K16234 hutT; histidine transporter +K16235 mmuP; S-methylmethionine transporter +K16236 hutM; histidine permease +K16237 aroP; aromatic amino acid permease +K16238 eat, eutP; ethanolamine permease +K16239 bsdC; 4-hydroxybenzoate decarboxylase subunit C [EC:4.1.1.61] +K16240 SPA1_2; protein suppressor of PHYA-105 1 and protein SPA1-related 2 +K16241 HY5; transcription factor HY5 +K16242 dmpN, poxD, tomA3; phenol/toluene 2-monooxygenase (NADH) P3/A3 [EC:1.14.13.244 1.14.13.243] +K16243 dmpL, poxB, tomA1; phenol/toluene 2-monooxygenase (NADH) P1/A1 [EC:1.14.13.244 1.14.13.243] +K16244 dmpM, poxC, tomA2; phenol/toluene 2-monooxygenase (NADH) P2/A2 [EC:1.14.13.244 1.14.13.243] +K16245 dmpO, poxE, tomA4; phenol/toluene 2-monooxygenase (NADH) P4/A4 [EC:1.14.13.244 1.14.13.243] +K16246 dmpP, poxF, tomA5; phenol/toluene 2-monooxygenase (NADH) P5/A5 [EC:1.14.13.244 1.14.13.243] +K16247 gutR; LuxR family transcriptional regulator, glucitol operon activator +K16248 gutA, gutP; probable glucitol transport protein GutA +K16249 dmpK, poxA, tomA0; phenol/toluene 2-monooxygenase (NADH) P0/A0 +K16250 NRPD1; DNA-directed RNA polymerase IV subunit 1 [EC:2.7.7.6] +K16251 NRPE1; DNA-directed RNA polymerase V subunit 1 [EC:2.7.7.6] +K16252 NRPD2, NRPE2; DNA-directed RNA polymerase IV and V subunit 2 [EC:2.7.7.6] +K16253 NRPD7, NRPE7; DNA-directed RNA polymerase IV and V subunit 7 +K16254 mxaJ; mxaJ protein +K16255 mxaG; cytochrome c-L +K16256 mxaA; mxaA protein +K16257 mxaC; mxaC protein +K16258 mxaK; mxaK protein +K16259 mxaL; mxaL protein +K16260 mxaD; mxaD protein +K16261 YAT; yeast amino acid transporter +K16262 PHS, POT1; polyamine:H+ symporter +K16263 yjeH; amino acid efflux transporter +K16264 czcD, zitB; cobalt-zinc-cadmium efflux system protein +K16265 CYP71E7; (E)-2-methylbutanal oxime monooxygenase [EC:1.14.14.41] +K16266 UGT85K; cyanohydrin UDP-glucosyltransferase [EC:2.4.1.-] +K16267 zipB; zinc and cadmium transporter +K16268 todC2, bedC2, tcbAb; benzene/toluene/chlorobenzene dioxygenase subunit beta [EC:1.14.12.3 1.14.12.11 1.14.12.26] +K16269 todD, tcbB; cis-1,2-dihydrobenzene-1,2-diol/chlorobenzene dihydrodiol dehydrogenase [EC:1.3.1.19 1.3.1.119] +K16270 todE; 3-methylcatechol 2,3-dioxygenase [EC:1.13.11.-] +K16271 RLIM, RNF12; E3 ubiquitin-protein ligase RLIM [EC:2.3.2.27] +K16272 RNF135; E3 ubiquitin-protein ligase RNF135 [EC:2.3.2.27] +K16273 ZNRF3; E3 ubiquitin-protein ligase ZNRF3 [EC:2.3.2.27] +K16274 AIP2; E3 ubiquitin-protein ligase AIP2 [EC:2.3.2.27] +K16275 BAH, NLA; E3 ubiquitin-protein ligase BAH [EC:2.3.2.27] +K16276 K16276, BTS; zinc finger protein-like protein +K16277 DRIP; E3 ubiquitin-protein ligase DRIP [EC:2.3.2.27] +K16278 HOS1; E3 ubiquitin-protein ligase HOS1 [EC:2.3.2.27] +K16279 KEG; E3 ubiquitin-protein ligase KEG [EC:2.7.11.1 2.3.2.27] +K16280 RGLG; E3 ubiquitin-protein ligase RGLG [EC:2.3.2.27] +K16281 RHA1; RING-H2 zinc finger protein RHA1 +K16282 RHA2; E3 ubiquitin-protein ligase RHA2 [EC:2.3.2.27] +K16283 SDIR1; E3 ubiquitin-protein ligase SDIR1 [EC:2.3.2.27] +K16284 SIS3; E3 ubiquitin-protein ligase SIS3 [EC:2.3.2.27] +K16285 XERICO; RING/U-box domain-containing protein [EC:2.3.2.27] +K16286 EL5; E3 ubiquitin-protein ligase EL5 [EC:2.3.2.27] +K16287 ULP1C_D; ubiquitin-like-specific protease 1C/D [EC:3.4.22.68] +K16288 DSTYK, RIPK5; dual serine/threonine and tyrosine protein kinase [EC:2.7.12.1] +K16289 ANKK1; ankyrin repeat and protein kinase domain-containing protein 1 [EC:2.7.11.1] +K16290 XCP; xylem cysteine proteinase [EC:3.4.22.-] +K16291 erfK; L,D-transpeptidase ErfK/SrfK +K16292 CEP, CYSEP; KDEL-tailed cysteine endopeptidase [EC:3.4.22.-] +K16293 psrB; polysulfide reductase chain B +K16294 psrC; polysulfide reductase chain C +K16295 CYB561A3, CYBASC3; lysosomal membrane ascorbate-dependent ferrireductase [EC:7.2.1.3] +K16296 SCPL-I; serine carboxypeptidase-like clade I [EC:3.4.16.-] +K16297 SCPL-II; serine carboxypeptidase-like clade II [EC:3.4.16.-] +K16298 SCPL-IV; serine carboxypeptidase-like clade IV [EC:3.4.16.-] +K16301 efeB; deferrochelatase/peroxidase EfeB [EC:1.11.1.-] +K16302 CNNM; metal transporter CNNM +K16303 cmtAc; p-cumate 2,3-dioxygenase subunit beta [EC:1.14.12.25] +K16304 cmtAd; p-cumate 2,3-dioxygenase ferredoxin component +K16305 K16305; fructose-bisphosphate aldolase / 6-deoxy-5-ketofructose 1-phosphate synthase [EC:4.1.2.13 2.2.1.11] +K16306 K16306; fructose-bisphosphate aldolase / 2-amino-3,7-dideoxy-D-threo-hept-6-ulosonate synthase [EC:4.1.2.13 2.2.1.10] +K16307 CDC42BP; serine/threonine-protein kinase MRCK [EC:2.7.11.1] +K16308 CIT; citron Rho-interacting kinase [EC:2.7.11.35] +K16309 MASTL, GW; serine/threonine-protein kinase greatwall [EC:2.7.11.36] +K16310 NIM1; serine/threonine-protein kinase NIM1 [EC:2.7.11.1] +K16311 SIK2; serine/threonine-protein kinase SIK2 [EC:2.7.11.1] +K16312 STK40, SHIK; serine/threonine-protein kinase 40 [EC:2.7.11.1] +K16313 NRK; Nik-related protein kinase [EC:2.7.11.1] +K16314 ELM1; serine/threonine-protein kinase ELM1 [EC:2.7.11.1] +K16315 GSG2; serine/threonine-protein kinase haspin [EC:2.7.11.1] +K16316 STK31, TDRD8; serine/threonine-protein kinase 31 [EC:2.7.11.1] +K16317 trmY; tRNA (pseudouridine54-N1)-methyltransferase [EC:2.1.1.257] +K16318 trm14; tRNA (guanine6-N2)-methyltransferase [EC:2.1.1.256] +K16319 andAc; anthranilate 1,2-dioxygenase large subunit [EC:1.14.12.1] +K16320 andAd; anthranilate 1,2-dioxygenase small subunit [EC:1.14.12.1] +K16321 gntP; high-affinity gluconate transporter +K16322 pit; low-affinity inorganic phosphate transporter +K16323 yxjA, nupG; purine nucleoside transport protein +K16324 psuT; putative pseudouridine transporter +K16325 nupX; nucleoside permease +K16326 yeiL; CRP/FNR family transcriptional regulator, putaive post-exponential-phase nitrogen-starvation regulator +K16327 K16327; putative LysE/RhtB family amino acid efflux pump +K16328 psuK; pseudouridine kinase [EC:2.7.1.83] +K16329 psuG; pseudouridylate synthase [EC:4.2.1.70] +K16330 K16330; pseudouridylate synthase / pseudouridine kinase [EC:4.2.1.70 2.7.1.83] +K16331 ylnA, cysP; sulfate permease +K16332 RBL2; retinoblastoma-like protein 2 +K16333 CRTC2, TORC2; CREB-regulated transcription coactivator 2 +K16334 CRTC3, TORC3; CREB-regulated transcription coactivator 3 +K16335 TORC; CREB-regulated transcription coactivator +K16336 SDC2, CD362; syndecan 2 +K16337 SDC3; syndecan 3 +K16338 SDC4; syndecan 4 +K16339 THEM4, CTMP; acyl-coenzyme A thioesterase THEM4 [EC:3.1.2.2] +K16340 PHLPP; PH domain and leucine-rich repeat-containing protein phosphatase [EC:3.1.3.16] +K16341 BCL2L11, BIM; Bcl-2-like protein 11 +K16342 PLA2G4, CPLA2; cytosolic phospholipase A2 [EC:3.1.1.4] +K16343 PLA2G6, IPLA2; calcium-independent phospholipase A2 [EC:3.1.1.4] +K16344 LAMTOR5, HBXIP; ragulator complex protein LAMTOR5 +K16345 xanP; xanthine permease XanP +K16346 xanQ; xanthine permease XanQ +K16347 ecnA; entericidin A +K16348 ecnB; entericidin B +K16349 NCR3LG1, B7H6; natural cytotoxicity triggering receptor 3 ligand 1 +K16350 TIGIT; T-cell immunoreceptor with Ig and ITIM domains +K16351 LRRC4, NGL2; netrin-G2 ligand +K16352 SIGLEC15; sialic acid binding Ig-like lectin 15 +K16353 SDK; protein sidekick +K16354 LRFN1, SALM2; leucine-rich repeat and fibronectin type-III domain-containing protein 1 +K16355 LRFN2, SALM1; leucine-rich repeat and fibronectin type-III domain-containing protein 2 +K16356 LRFN3, SALM4; leucine-rich repeat and fibronectin type-III domain-containing protein 3 +K16357 LRFN4, SALM3; leucine-rich repeat and fibronectin type-III domain-containing protein 4 +K16358 LRFN5, SALM5; leucine-rich repeat and fibronectin type-III domain-containing protein 5 +K16359 NTNG2; netrin-G2 +K16360 LRRC4B, NGL3; netrin-G3 ligand +K16361 CRTAM, CD355; cytotoxic and regulatory T-cell molecule +K16362 FLRT; leucine-rich repeat transmembrane protein FLRT +K16363 lpxC-fabZ; UDP-3-O-[3-hydroxymyristoyl] N-acetylglucosamine deacetylase / 3-hydroxyacyl-[acyl-carrier-protein] dehydratase [EC:3.5.1.108 4.2.1.59] +K16364 GLDN; gliomedin +K16365 SGTA; small glutamine-rich tetratricopeptide repeat-containing protein alpha +K16366 EDN1; endothelin-1 +K16367 EDN2; endothelin-2 +K16368 DGK1; diacylglycerol kinase (CTP) [EC:2.7.1.174] +K16369 CHO2; phosphatidylethanolamine N-methyltransferase [EC:2.1.1.17] +K16370 pfkB; 6-phosphofructokinase 2 [EC:2.7.1.11] +K16371 gatZ-kbaZ; D-tagatose-1,6-bisphosphate aldolase subunit GatZ/KbaZ +K16372 nidA1; niddamycin polyketide synthase 1 +K16373 nidA3; niddamycin polyketide synthase 3 +K16374 nidA4_5; niddamycin polyketide synthase 4/5 +K16375 fkbB; polyketide synthase FkbB +K16376 fkbC; polyketide synthase FkbC +K16377 fkbA; polyketide synthase FkbA +K16378 rapP, fkbP; pipecolate-incorporating enzyme +K16379 fkbD, rapJ; cytochrome P450 C-9 hydroxylase +K16380 rapN; cytochrome P450 RapN +K16381 fkbM; 31-O-methyltransferase +K16382 amphA, nysA; polyene macrolide polyketide synthase, loading module +K16383 amphB, nysB; polyene macrolide polyketide synthase, A-type KR domains +K16384 amphC, nysC; polyene macrolide polyketide synthase +K16385 amphI, nysI; polyene macrolide polyketide synthase, KS-AT-KR-ACP domains +K16386 amphJ, nysJ; polyene macrolide polyketide synthase +K16387 amphK, nysK; polyene macrolide polyketide synthase +K16388 amphDI, nysDI, fscMI, pimK; polyene glycosyltransferase +K16389 amphN, nysN, fscP, pimG; cytochrome P450 monooxygenase +K16390 amphL, nysL, pimD; cytochrome P450 monooxygenase +K16391 pimS0; pimaricinolide synthase, loading module +K16392 fscA; candicidin polyketide synthase FscA +K16393 fscB; candicidin polyketide synthase FscB +K16394 epoA; epothilone polyketide synthase A +K16395 epoB; epothilone synthetase B +K16396 epoC; epothilone polyketide synthase C +K16397 epoD; epothilone polyketide synthase D +K16398 epoE; epothilone polyketide synthase E +K16399 epoF; epothilone polyketide synthase F +K16400 epoK; cytochrome P450 enzyme +K16401 sorA; soraphen polyketide synthase A +K16402 sorB; soraphen polyketide synthase B +K16403 sorM; O-methyltransferase +K16404 sorR; reductase +K16405 stiA; stigmatellin polyketide synthase StiA +K16406 stiB; stigmatellin polyketide synthase StiB +K16407 stiC; stigmatellin polyketide synthase StiC +K16408 stiD; stigmatellin polyketide synthase StiD +K16409 stiE; stigmatellin polyketide synthase StiE +K16410 stiF; stigmatellin polyketide synthase StiF +K16411 stiG; stigmatellin polyketide synthase StiG +K16412 stiH; stigmatellin polyketide synthase StiH +K16413 stiJ; stigmatellin polyketide synthase StiJ +K16414 stiK; methyltransferase +K16415 stiL; cytochrome P450 dependent monooxygenase +K16416 mxaA; myxalamid-type nonribosomal peptide synthetase MxaA +K16417 mxaC; myxalamid-type polyketide synthase MxaC +K16418 mlsA1; mycolactone core lactone polyketide synthase MlsA1 +K16419 mlsB; mycolactone side chain polyketide synthase +K16420 rapA_B_C; rapamycin polyketide synthase A/B/C +K16421 hmaS, nocF; 4-hydroxymandelate synthase [EC:1.13.11.46] +K16422 hmo, nocN; 4-hydroxymandelate oxidase [EC:1.1.3.46] +K16423 hpgT, nocG; (S)-3,5-dihydroxyphenylglycine transaminase [EC:2.6.1.103] +K16424 dpgA; 3,5-dihydroxyphenylacetyl-CoA synthase [EC:2.3.1.246] +K16425 dpgB; isomerase DpgB +K16426 dpgD; dehydration protein DpgD +K16427 dpgC; (3,5-dihydroxyphenyl)acetyl-CoA 1,2-dioxygenase [EC:1.13.11.80] +K16428 cepA; nonribosomal peptide synthetase CepA +K16429 cepB; nonribosomal peptide synthetase CepB +K16430 cepC; nonribosomal peptide synthetase CepC +K16431 cepH, sgcC3, mdpC3, kedY3; FAD-dependent halogenase [EC:1.14.19.-] +K16432 cepK; nonribosomal peptide synthetase CepK +K16433 cepL; hydroxylation protein CepL +K16434 cepJ; thioesterase CepJ +K16435 evaA, eryBVI, tylCVI, tylX3, staJ; dTDP-4-dehydro-6-deoxy-alpha-D-glucopyranose 2,3-dehydratase [EC:4.2.1.159] +K16436 evaB, megDII, angB, staI; dTDP-3-amino-2,3,6-trideoxy-4-keto-D-glucose/dTDP-3-amino-3,4,6-trideoxy-alpha-D-glucose/dTDP-2,6-dideoxy-D-kanosamine transaminase [EC:2.6.1.- 2.6.1.106] +K16437 evaC; methylation protein EvaC +K16438 evaD, eryBVII, aveBV, megDIV, staE; 5-epimerase [EC:5.1.3.-] +K16439 evaE; reductase EvaE +K16440 gtfA; chloroorienticin B synthase [EC:2.4.1.311] +K16442 gtfC; glycosyltransferase GtfC +K16443 gtfD; desvancosaminyl-vancomycin vancosaminetransferase [EC:2.4.1.322] +K16444 gtfB, gtfE; vancomycin aglycone glucosyltransferase [EC:2.4.1.310] +K16445 cepE, oxyA, CYP165A3; oxidation protein CepE +K16446 cepF, oxyB, CYP165B3; oxidation protein CepF +K16447 cepG, oxyC, CYP165C4; oxidation protein CepG +K16448 mtfA; methylation protein MtfA +K16449 RGS; regulator of G-protein signaling +K16450 mlsA2; mycolactone core lactone polyketide synthase MlsA2 +K16451 TIMP1; metalloproteinase inhibitor 1 +K16452 CCDC92; coiled-coil domain-containing protein 92 +K16453 CCP110, CEP110; centrosomal protein CEP110 +K16454 CCSAP; centriole, cilia and spindle-associated protein +K16455 CEP41, TSGA14; centrosomal protein CEP41 +K16456 CEP55; centrosomal protein CEP55 +K16457 CEP76; centrosomal protein CEP76 +K16458 CEP104; centrosomal protein CEP104 +K16459 CEP120; centrosomal protein CEP120 +K16460 CEP128; centrosomal protein CEP128 +K16461 CEP135, CEP4; centrosomal protein CEP135 +K16462 CEP164; centrosomal protein CEP164 +K16463 CEP170; centrosomal protein CEP170 +K16464 CEP250, CNAP1; centrosomal protein CEP250 +K16465 CETN1; centrin-1 +K16466 CETN3, CDC31; centrin-3 +K16467 CNTLN; centlein +K16468 CNTROB; centrobin +K16469 CROCC; rootletin +K16470 DZIP1; zinc finger protein DZIP1 +K16471 FBF1, ALB; Fas-binding factor 1 +K16472 HYLS1; hydrolethalus syndrome protein 1 +K16473 IFT20; intraflagellar transport protein 20 +K16474 IFT88; intraflagellar transport protein 88 +K16475 LRRCC1, CLERC; leucine-rich repeat and coiled-coil domain-containing protein 1 +K16476 NIN; ninein +K16477 NINL, NLP; ninein-like protein +K16478 NPHP4; nephrocystin-4 +K16479 ODF2; outer dense fiber protein 2 +K16480 OFD1; oral-facial-digital syndrome 1 protein +K16481 PCNT; pericentrin +K16482 POC1; centriolar protein POC1 +K16483 POC5; centrosomal protein POC5 +K16484 RTTN; rotatin +K16485 SAS-4; spindle assembly abnormal protein 4 +K16486 SAS-5; spindle assembly abnormal protein 5 +K16487 SAS-6, SASS6; spindle assembly abnormal protein 6 +K16488 SDCCAG8; serologically defined colon cancer antigen 8 +K16489 SFI1; protein SFI1 +K16490 SPICE1; spindle and centriole-associated protein 1 +K16491 STARD9, KIF16A; StAR-related lipid transfer protein 9 +K16492 TSKS; testis-specific serine kinase substrate +K16493 PCDHA; protocadherin alpha +K16494 PCDHB; protocadherin beta +K16495 PCDHGA; protocadherin gamma subfamily A +K16496 PCDHGB; protocadherin gamma subfamily B +K16497 PCDHGC; protocadherin gamma subfamily C +K16498 PCDHD1; protocadherin delta 1 +K16499 PCDHD2; protocadherin delta 2 +K16500 PCDH15, USH1F; protocadherin-15 +K16501 CDHR1, PCDH21; cadherin-related family member 1 +K16502 CDHR2, PCDH24, PCLKC; cadherin-related family member 2 +K16503 CDHR3, CDH28; cadherin-related family member 3 +K16504 CDHR4, CDH29; cadherin-related family member 4 +K16505 CDHR5, MUCDHL; cadherin-related family member 5 +K16506 FAT1_2_3; protocadherin Fat 1/2/3 +K16507 DCHS1_2, PCDH16_23; protocadherin-16/23 +K16509 spxA; regulatory protein spx +K16510 RPS6KA4, MSK2; ribosomal protein S6 kinase alpha-4 [EC:2.7.11.1] +K16511 mecA1_2; adapter protein MecA 1/2 +K16512 RPGRIP1; X-linked retinitis pigmentosa GTPase regulator-interacting protein 1 +K16513 NOS1AP, CAPON; carboxyl-terminal PDZ ligand of neuronal nitric oxide synthase protein +K16514 galD; 4-oxalomesaconate tautomerase [EC:5.3.2.8] +K16515 galB; 4-oxalomesaconate hydratase [EC:4.2.1.83] +K16516 galR; LysR family transcriptional regulator, regulator for genes of the gallate degradation pathway +K16517 galP; porin-like protein GalP +K16518 AKAP1; A-kinase anchor protein 1, mitochondrial +K16519 AKAP2; A-kinase anchor protein 2 +K16520 AKAP3; A-kinase anchor protein 3 +K16521 AKAP4; A-kinase anchor protein 4 +K16522 AKAP5; A-kinase anchor protein 5 +K16523 AKAP6; A-kinase anchor protein 6 +K16524 AKAP7; A-kinase anchor protein 7 +K16525 AKAP8; A-kinase anchor protein 8 +K16526 AKAP10; A-kinase anchor protein 10 +K16527 AKAP11; A-kinase anchor protein 11 +K16528 AKAP12; A-kinase anchor protein 12 +K16529 ARHGEF13; A-kinase anchor protein 13 +K16530 AKAP14; A-kinase anchor protein 14 +K16531 BBS4; Bardet-Biedl syndrome 4 protein +K16532 CEP72; centrosomal protein CEP72 +K16533 CEP290, NPHP6; centrosomal protein CEP290 +K16534 DISC1; disrupted in schizophrenia 1 protein +K16535 FOPNL, FOR20; lisH domain-containing protein FOPNL +K16536 HOOK3; protein HOOK3 +K16537 PCM1; pericentriolar material 1 protein +K16538 PIBF1, CEP90; progesterone-induced-blocking factor 1 +K16539 PLK1S1; centrosomal protein kizuna +K16540 AZI1, CEP131; 5-azacytidine-induced protein 1 +K16541 CCDC14; coiled-coil domain-containing protein 14 +K16542 CDK5RAP2; CDK5 regulatory subunit-associated protein 2 +K16543 CEP89; centrosomal protein CEP89 +K16544 CEP95; centrosomal protein CEP95 +K16545 DDHD2; phospholipase DDHD2 [EC:3.1.1.-] +K16546 FGFR10P; FGFR1 oncogene partner +K16547 NEDD1; protein NEDD1 +K16548 OAZ1; ornithine decarboxylase antizyme 1 +K16549 PDE4DIP; myomegalin +K16550 RPGRIP1L; protein fantom +K16551 AKAP9, AKAP350; A-kinase anchor protein 9 +K16552 exoF; polysaccharide biosynthesis/export protein ExoF +K16553 exoT; succinoglycan exporter +K16554 exoP, vpsO; polysaccharide biosynthesis transport protein [EC:2.7.10.3] +K16555 exoO; succinoglycan biosynthesis protein ExoO [EC:2.4.-.-] +K16556 exoM; succinoglycan biosynthesis protein ExoM [EC:2.4.-.-] +K16557 exoA; succinoglycan biosynthesis protein ExoA [EC:2.4.-.-] +K16558 exoL; succinoglycan biosynthesis protein ExoL [EC:2.-.-.-] +K16559 exoK; endo-1,3-1,4-beta-glycanase ExoK [EC:3.2.1.-] +K16560 exoH; succinoglycan biosynthesis protein ExoH +K16561 exoI; succinoglycan biosynthesis protein ExoI +K16562 exoW; succinoglycan biosynthesis protein ExoW [EC:2.4.-.-] +K16563 exoV; succinoglycan biosynthesis protein ExoV +K16564 exoU; succinoglycan biosynthesis protein ExoU [EC:2.4.-.-] +K16565 exoX, syrA; exopolysaccharide production regulatory protein +K16566 exoY; exopolysaccharide production protein ExoY +K16567 exoQ; exopolysaccharide production protein ExoQ +K16568 exoZ; exopolysaccharide production protein ExoZ +K16569 TUBGCP2, GCP2; gamma-tubulin complex component 2 +K16570 TUBGCP3, GCP3; gamma-tubulin complex component 3 +K16571 TUBGCP4, GCP4; gamma-tubulin complex component 4 +K16572 TUBGCP5, GCP5; gamma-tubulin complex component 5 +K16573 TUBGCP6, GCP6; gamma-tubulin complex component 6 +K16574 MZT2A_B; mitotic-spindle organizing protein 2A/2B +K16575 ACTR1, ARP1; centractin +K16576 ACTR10, ARP11; actin-related protein 10 +K16578 CLASP1_2; CLIP-associating protein 1/2 +K16579 DCX; neuronal migration protein doublecortin +K16580 SLAIN1_2; SLAIN motif-containing protein 1/2 +K16581 TPGS1; tubulin polyglutamylase complex subunit 1 +K16582 TTLL6_13; tubulin polyglutamylase TTLL6/13 [EC:6.3.2.61] +K16583 TTLL7; tubulin polyglutamylase TTLL7 [EC:6.3.2.62] +K16584 HAUS1, AUG1; HAUS augmin-like complex subunit 1 +K16585 HAUS2, AUG2; HAUS augmin-like complex subunit 2 +K16586 HAUS3, AUG3; HAUS augmin-like complex subunit 3 +K16587 HAUS4, AUG4; HAUS augmin-like complex subunit 4 +K16588 HAUS5, AUG5; HAUS augmin-like complex subunit 5 +K16589 HAUS6, AUG6; HAUS augmin-like complex subunit 6 +K16590 HAUS7, AUG7, UIP1; HAUS augmin-like complex subunit 7 +K16591 HAUS8; HAUS augmin-like complex subunit 8 +K16593 bioI, CYP107H; pimeloyl-[acyl-carrier protein] synthase [EC:1.14.14.46] +K16594 LRRC36; leucine-rich repeat-containing protein 36 +K16595 CCL13; C-C motif chemokine 13 +K16596 CCL8; C-C motif chemokine 8 +K16597 CCL11; C-C motif chemokine 11 +K16598 CCL27; C-C motif chemokine 27 +K16599 TTLL1; tubulin polyglutamylase TTLL1 [EC:6.3.2.61] +K16600 TTLL2; tubulin polyglutamylase TTLL2 [EC:6.3.2.-] +K16601 TTLL4; tubulin polyglutamylase TTLL4 [EC:6.3.2.62] +K16602 TTLL5; tubulin polyglutamylase TTLL5 [EC:6.3.2.61] +K16603 TTLL9; tubulin polyglutamylase TTLL9 [EC:6.3.2.61] +K16604 TTLL11; tubulin polyglutamylase TTLL11 [EC:6.3.2.-] +K16605 TPGS2; tubulin polyglutamylase complex subunit 2 +K16606 LRRC49; leucine-rich repeat-containing protein 49 +K16607 NICN1; nicolin-1 +K16608 TTLL3_8; tubulin monoglycylase TTLL3/8 [EC:6.3.2.-] +K16609 TTLL12; tubulin--tyrosine ligase-like protein 12 +K16610 TTLL15; tubulin polyglutamylase TTLL15 [EC:6.3.2.-] +K16611 HOOK2; protein HOOK2 +K16612 HOOK1; protein HOOK1 +K16613 OAZ2; ornithine decarboxylase antizyme 2 +K16614 OAZ3; ornithine decarboxylase antizyme 3 +K16615 PARP7; actin-related protein 7, plant +K16616 PARP8; actin-related protein 8, plant +K16617 COL13A; collagen type XIII alpha +K16618 POLN; DNA polymerase nu [EC:2.7.7.7] +K16619 plc, cpa; phospholipase C / alpha-toxin [EC:3.1.4.3] +K16620 BMP6; bone morphogenetic protein 6 +K16621 BMP7; bone morphogenetic protein 7 +K16622 BMP8; bone morphogenetic protein 8 +K16623 ntnH; botulinum neurotoxin type non-toxic component +K16624 ha-33; main hemagglutinin component +K16625 ha-17; hemagglutinin component HA-17 +K16626 ha-70; hemagglutinin components HA-22/23/53 +K16627 SOD3; superoxide dismutase, Cu-Zn family [EC:1.15.1.1] +K16628 COL7A; collagen type VII alpha +K16629 COL21A; collagen type XXI alpha +K16630 COL22A; collagen type XXII alpha +K16631 ANG, RNASE5; angiogenin [EC:3.1.27.-] +K16632 RNASE4; ribonuclease 4 [EC:3.1.27.-] +K16633 RNASE11; ribonuclease 11 [EC:3.1.27.-] +K16634 RNH1; ribonuclease inhibitor +K16635 exoS; exoenzyme S +K16636 exoT; exoenzyme T +K16637 K16637, exoY; adenylate cyclase ExoY +K16638 exoU; exoenzyme U +K16639 LACTB2; endoribonuclease LACTB2 [EC:3.1.27.-] +K16640 ssh7; DNA-binding protein 7 [EC:3.1.27.-] +K16641 HDGF; hepatoma-derived growth factor +K16642 PTN; pleiotrophin +K16643 SERPINE2; glia-derived nexin +K16644 actA; actin-assembly inducing protein +K16645 hbhA; heparin binding hemagglutinin HbhA +K16646 ANXA5; annexin A5 +K16647 aftC; arabinofuranan 3-O-arabinosyltransferase [EC:2.4.2.47] +K16648 aftD; arabinofuranan 3-O-arabinosyltransferase [EC:2.4.2.-] +K16649 glft1; rhamnopyranosyl-N-acetylglucosaminyl-diphospho-decaprenol beta-1,3/1,4-galactofuranosyltransferase [EC:2.4.1.287] +K16650 glft2; galactofuranosylgalactofuranosylrhamnosyl-N-acetylglucosaminyl-diphospho-decaprenol beta-1,5/1,6-galactofuranosyltransferase [EC:2.4.1.288] +K16651 pduX; L-threonine kinase [EC:2.7.1.177] +K16652 dprE2; decaprenylphospho-beta-D-erythro-pentofuranosid-2-ulose 2-reductase [EC:1.1.1.333] +K16653 dprE1; decaprenylphospho-beta-D-ribofuranose 2-oxidase [EC:1.1.98.3] +K16654 K16654; spore-specific protein +K16655 MIA; melanoma inhibitory activity protein +K16656 NXPH1; neurexophilin-1 +K16657 NXPH2; neurexophilin-2 +K16658 NXPH3; neurexophilin-3 +K16659 RTN4R, NGR; reticulon-4 receptor +K16660 RTN4RL1, NGR3; reticulon-4 receptor-like 1 +K16661 RTN4RL2, NGR2; reticulon-4 receptor-like 2 +K16662 PTPRU; receptor-type tyrosine-protein phosphatase U [EC:3.1.3.48] +K16663 CD300LG, NEPMUCIN; CMRF35-like molecule 9 +K16664 EMCN; endomucin +K16665 LRRTM1_2; leucine-rich repeat transmembrane neuronal protein 1/2 +K16666 OMG; oligodendrocyte myelin glycoprotein +K16667 PTPRG; receptor-type tyrosine-protein phosphatase gamma [EC:3.1.3.48] +K16668 TMIGD2, IGPR1; transmembrane and immunoglobulin domain-containing protein 2 +K16669 FAT4; protocadherin Fat 4 +K16670 MEIS2; homeobox protein Meis2 +K16671 MEIS3; homeobox protein Meis3 +K16672 HTH; homeobox protein homothorax +K16673 LIX1L; LIX1-like protein +K16674 FJX1; four-jointed box protein 1 +K16675 ZDHHC14_18; palmitoyltransferase ZDHHC14/18 [EC:2.3.1.225] +K16676 LPP; lipoma-prefererred partner +K16677 DACHS; dachs +K16678 EGR; eiger +K16679 WGN; wengen +K16680 ED; echinoid +K16681 CRB; protein crumbs +K16682 AJUBA, LIMD1, WTIP; LIM domain-containing protein +K16683 EX; protein expanded +K16684 NF2; merlin +K16685 WWC1; protein KIBRA +K16686 SAV1, Sav; scaffold protein salvador +K16687 YAP1, Yki; transcriptional coactivator YAP1 +K16688 DIA; diaphanous +K16689 UPD; unpaired +K16690 VN; protein vein +K16691 KRN; keren +K16692 etk-wzc; tyrosine-protein kinase Etk/Wzc [EC:2.7.10.3] +K16693 wzxE; enterobacterial common antigen flippase +K16694 tuaB; teichuronic acid exporter +K16695 wzxC; lipopolysaccharide exporter +K16696 amsL; exopolysaccharide (amylovoran) exporter +K16697 tuaC; teichuronic acid biosynthesis glycosyltransferase TuaC [EC:2.4.-.-] +K16698 tuaG; teichuronic acid biosynthesis glycosyltransferase TuaG [EC:2.4.-.-] +K16699 tuaH; teichuronic acid biosynthesis glycosyltransferase TuaH [EC:2.4.-.-] +K16700 amsB, cpsE; amylovoran/stewartan biosynthesis glycosyltransferase AmsB/CpsE [EC:2.4.-.-] +K16701 amsD; amylovoran biosynthesis glycosyltransferase AmsD [EC:2.4.-.-] +K16702 amsE; amylovoran biosynthesis glycosyltransferase AmsE [EC:2.4.-.-] +K16703 wcaL, amsK, cpsK; colanic acid/amylovoran/stewartan biosynthesis glycosyltransferase WcaL/AmsK/CpsK [EC:2.4.-.-] +K16704 rffC, wecD; dTDP-4-amino-4,6-dideoxy-D-galactose acyltransferase [EC:2.3.1.210] +K16705 tuaE; teichuronic acid biosynthesis protein TuaE +K16706 tuaF; teichuronic acid biosynthesis protein TuaF +K16707 amsG, cpsA; UDP-galactose-lipid carrier transferase +K16708 amsC; amylovoran biosynthesis protein AmsC +K16709 amsF; amylovoran biosynthesis protein AmsF +K16710 wcaK, amsJ; colanic acid/amylovoran biosynthesis protein WcaK/AmsJ +K16711 wcaM; colanic acid biosynthesis protein WcaM +K16712 epsE; EPS I polysaccharide export inner membrane protein EpsE +K16713 epsF; EPS I polysaccharide export inner membrane protein EpsF +K16714 ANA1; anastral spindle 1 +K16715 ANA2; anastral spindle 2 +K16717 CEP97; centrosomal protein CEP97 +K16718 CNN; centrosomin +K16719 KANSL3, RCD1; regulatory NSL complex subunit 3 +K16720 RCD2; reduction in cnn dots 2 +K16721 RCD4; reduction in cnn dots 4 +K16722 SPD2; spindle-defective protein 2 +K16724 STIL; SCL-interrupting locus protein +K16725 CEP192; centrosomal protein CEP192 +K16726 ANKRD17, MASK; ankyrin repeat domain-containing protein 17 +K16727 ARHGEF10; Rho guanine nucleotide exchange factor 10 +K16728 CEP152, ASL; centrosomal protein CEP152 +K16729 CHORDC1, CHP1; cysteine and histidine-rich domain-containing protein +K16731 GOLGA1; golgin subfamily A member 1 +K16732 PRC1, ASE1, MAP65; Ase1/PRC1/MAP65 family protein +K16733 RACGAP1, Tum; Rac GTPase-activating protein 1 +K16734 SAC3D1, SHD1; SAC3 domain-containing protein 1 +K16735 ITGB1BP2; integrin beta-1-binding protein 2 +K16736 BAN; bantam +K16737 ZNF365, Su48; protein ZNF365 +K16738 NDE1, NUDE; nuclear distribution protein NudE +K16739 NDEL1; nuclear distribution protein NudE-like 1 +K16740 AHI1; jouberin +K16741 ALMS1; alstrom syndrome protein 1 +K16742 ARL2BP, BART; ADP-ribosylation factor-like protein 2-binding protein +K16743 ASPM, ASP; abnormal spindle-like microcephaly-associated protein +K16744 B9D1; B9 domain-containing protein 1 +K16745 B9D2; B9 domain-containing protein 2 +K16746 BBS1; Bardet-Biedl syndrome 1 protein +K16747 BBS2; Bardet-Biedl syndrome 2 protein +K16748 BBS5; Bardet-Biedl syndrome 5 protein +K16749 BBS7; Bardet-Biedl syndrome 7 protein +K16750 BLOC1S2; biogenesis of lysosome-related organelles complex 1 subunit 2 +K16751 C2CD3; C2 domain-containing protein 3 +K16752 CCDC15; coiled-coil domain-containing protein 15 +K16753 CCDC34; coiled-coil domain-containing protein 34 +K16754 CEP83, CCDC41; centrosomal protein CEP83 +K16755 CCDC61; coiled-coil domain-containing protein 61 +K16756 BICDL, CCDC64; BICD family-like cargo adapter +K16757 CCDC77; coiled-coil domain-containing protein 77 +K16758 CCDC85B; coiled-coil domain-containing protein 85B +K16759 CCDC102; coiled-coil domain-containing protein 102 +K16760 CCHCR1; coiled-coil alpha-helical rod protein 1 +K16761 CEP44; centrosomal protein CEP44 +K16762 CEP57; centrosomal protein CEP57 +K16763 CEP63; centrosomal protein CEP63 +K16764 CEP68; centrosomal protein CEP68 +K16765 CEP78; centrosomal protein CEP78 +K16766 CEP85; centrosomal protein CEP85 +K16767 CEP112; centrosomal protein CEP112 +K16768 CEP350; centrosomal protein CEP350 +K16769 CKAP2; cytoskeleton-associated protein 2 +K16770 CNTRL; centriolin +K16771 CSPP1; centrosome and spindle pole-associated protein 1 +K16772 FAM161A; protein FAM161A +K16773 FATS; fragile-site associated tumor suppressor +K16774 IQCB1, NPHP5; IQ calmodulin-binding motif-containing protein 1 +K16775 MPHOSPH9, MPP9; M-phase phosphoprotein 9 +K16776 NAV1; neuron navigator 1 +K16777 NEURL4; neuralized-like protein 4 +K16778 PDPN; podoplanin +K16779 RAB3IP, RABIN8; Rab-3A-interacting protein +K16780 SSNA1; sjoegren syndrome nuclear autoantigen 1 +K16781 TTC8, BBS8; tetratricopeptide repeat protein 8 +K16782 NEURL2; neuralized-like protein 2 +K16783 bioN; biotin transport system permease protein +K16784 bioM; biotin transport system ATP-binding protein [EC:7.6.2.-] +K16785 ecfT; energy-coupling factor transport system permease protein +K16786 ecfA1; energy-coupling factor transport system ATP-binding protein [EC:7.-.-.-] +K16787 ecfA2; energy-coupling factor transport system ATP-binding protein [EC:7.-.-.-] +K16788 niaX; niacin transporter +K16789 thiT; thiamine transporter +K16790 SMAD5; mothers against decapentaplegic homolog 5 +K16791 SMAD9, SMAD8; mothers against decapentaplegic homolog 9 +K16792 aksD; methanogen homoaconitase large subunit [EC:4.2.1.114] +K16793 aksE; methanogen homoaconitase small subunit [EC:4.2.1.114] +K16794 PAFAH1B1, LIS1; platelet-activating factor acetylhydrolase IB subunit alpha +K16795 PAFAH1B2_3; platelet-activating factor acetylhydrolase IB subunit beta/gamma [EC:3.1.1.47] +K16796 SOX2; transcription factor SOX2 (SOX group B) +K16797 GLI1; zinc finger protein GLI1 +K16798 GLI2; zinc finger protein GLI2 +K16799 CI; transcriptional activator cubitus interruptus +K16800 AUNIP, AIBP; aurora kinase A and ninein-interacting protein +K16801 CEP19; centrosomal protein CEP19 +K16802 CEP70; centrosomal protein CEP70 +K16803 CKAP5; cytoskeleton-associated protein 5 +K16804 DLGAP5, DLG7; disks large-associated protein 5 +K16805 FAM83D, CHICA; protein FAM83D +K16806 MAP7D1; MAP7 domain-containing protein 1 +K16807 MAP7D3; MAP7 domain-containing protein 3 +K16808 NUMA1; nuclear mitotic apparatus protein 1 +K16809 CEP162; centrosomal protein CEP162 +K16810 TBCCD1; TBCC domain-containing protein 1 +K16811 TCHP; trichoplein keratin filament-binding protein +K16812 TPX2; targeting protein for Xklp2 +K16813 PNPLA1; omega-hydroxyceramide transacylase [EC:2.3.1.296] +K16814 PNPLA5; patatin-like phospholipase domain-containing protein 5 [EC:3.1.1.-] +K16815 PNPLA8; calcium-independent phospholipase A2-gamma +K16816 PNPLA2, ATGL; patatin-like phospholipase domain-containing protein 2 [EC:3.1.1.3] +K16817 PLA2G16; HRAS-like suppressor 3 [EC:3.1.1.32 3.1.1.4] +K16818 DAD1; phospholipase A1 [EC:3.1.1.32] +K16819 AMOT; angiomotin +K16820 WWTR1, TAZ; WW domain-containing transcription regulator protein 1 +K16821 FRMD1; FERM domain-containing protein 1 +K16822 FRMD6; FERM domain-containing protein 6 +K16823 TP53BP2, ASPP2; apoptosis-stimulating of p53 protein 2 +K16824 FCGR2C, CD32; low affinity immunoglobulin gamma Fc receptor II-c +K16825 CEACAM19, CEAL1; carcinoembryonic antigen-related cell adhesion molecule 19 +K16826 SIRPB2; signal-regulatory protein beta 2 +K16827 SIRPD; signal-regulatory protein delta +K16828 PIM; pimples +K16829 THR; protein three rows +K16830 AURKAIP1; aurora kinase A-interacting protein +K16831 BORA; protein aurora borealis +K16832 NEDD9, HEF1, CASL; enhancer of filamentation 1 +K16833 PPP1R2, IPP2; protein phosphatase inhibitor 2 +K16834 SOST; sclerostin +K16835 CETP; cholesteryl ester transfer protein +K16836 TCL1B; T-cell leukemia/lymphoma 1B +K16837 MTCP1; mature T-cell proliferation-1 type B1 +K16838 pucL; urate oxidase / 2-oxo-4-hydroxy-4-carboxy-5-ureidoimidazoline decarboxylase [EC:1.7.3.3 4.1.1.97] +K16839 hpxO; FAD-dependent urate hydroxylase [EC:1.14.13.113] +K16840 hpxQ; 2-oxo-4-hydroxy-4-carboxy-5-ureidoimidazoline decarboxylase [EC:4.1.1.97] +K16841 hpxA; allantoin racemase [EC:5.1.99.3] +K16842 hpxB; allantoinase [EC:3.5.2.5] +K16843 slcC; (S)-sulfolactate dehydrogenase [EC:1.1.1.310] +K16844 comC; (2R)-3-sulfolactate dehydrogenase (NADP+) [EC:1.1.1.338] +K16845 suyA; (2R)-sulfolactate sulfo-lyase subunit alpha [EC:4.4.1.24] +K16846 suyB; (2R)-sulfolactate sulfo-lyase subunit beta [EC:4.4.1.24] +K16847 TIAM2; T-lymphoma invasion and metastasis-inducing protein 2 +K16848 IQGAP1; Ras GTPase-activating-like protein IQGAP1 +K16849 uxaA1; altronate dehydratase small subunit [EC:4.2.1.7] +K16850 uxaA2; altronate dehydratase large subunit [EC:4.2.1.7] +K16851 FCAMR, CD351; high affinity immunoglobulin alpha and immunoglobulin mu Fc receptor +K16852 SLAMF6, CD352; SLAM family member 6 +K16853 SLAMF8, CD353; SLAM family member 8 +K16854 EVI2B, CD361; ecotropic viral integration site 2B protein +K16855 NUDT16; U8 snoRNA-decapping enzyme [EC:3.6.1.62 3.6.1.64] +K16856 ugl; ureidoglycolate lyase [EC:4.3.2.3] +K16857 THBS1; thrombospondin 1 +K16858 VEGFB; vascular endothelial growth factor B +K16859 PGF; placenta growth factor +K16860 PLD3_4; phospholipase D3/4 [EC:3.1.4.4] +K16861 PLD5; inactive phospholipase D5 +K16862 PLD6; mitochondrial cardiolipin hydrolase [EC:3.1.4.-] +K16863 MIR21; microRNA 21 +K16864 MIR10A; microRNA 10a +K16865 PDCD4; programmed cell death protein 4 +K16866 TIMP3; metalloproteinase inhibitor 3 +K16867 NUDT16L1, SDOS; NUDT16-like protein 1 +K16868 tehB; tellurite methyltransferase [EC:2.1.1.265] +K16869 lipL; octanoyl-[GcvH]:protein N-octanoyltransferase [EC:2.3.1.204] +K16870 wbbL; N-acetylglucosaminyl-diphospho-decaprenol L-rhamnosyltransferase [EC:2.4.1.289] +K16871 POP2; 4-aminobutyrate---pyruvate transaminase [EC:2.6.1.96] +K16872 E2.3.1.207; beta-ketodecanoyl-[acyl-carrier-protein] synthase [EC:2.3.1.207] +K16873 hmfH; 5-(hydroxymethyl)furfural/furfural oxidase [EC:1.1.3.47 1.1.3.-] +K16874 hmfF; 2,5-furandicarboxylate decarboxylase 1 +K16875 hmfG; 2,5-furandicarboxylate decarboxylase 2 +K16876 hmfD; 2-furoate---CoA ligase [EC:6.2.1.31] +K16877 hmfA; 2-furoyl-CoA dehydrogenase large subunit [EC:1.3.99.8] +K16878 hmfB; 2-furoyl-CoA dehydrogenase FAD binding subunit [EC:1.3.99.8] +K16879 hmfC; 2-furoyl-CoA dehydrogenase 2Fe-2S iron sulfur subunit [EC:1.3.99.8] +K16880 hmfE; 2-oxoglutaroyl-CoA hydrolase +K16881 K16881; mannose-1-phosphate guanylyltransferase / phosphomannomutase [EC:2.7.7.13 5.4.2.8] +K16882 PCLO; protein piccolo +K16883 sta; heat-stable enterotoxin STa/STI +K16884 stb; heat-stable enterotoxin STb/STII +K16885 qmoA; quinone-modifying oxidoreductase, subunit QmoA +K16886 qmoB; quinone-modifying oxidoreductase, subunit QmoB +K16887 qmoC; quinone-modifying oxidoreductase, subunit QmoC +K16888 ZACN; zinc-activated ligand-gated ion channel +K16889 CATSPER1; cation channel sperm-associated protein 1 +K16890 CATSPER2; cation channel sperm-associated protein 2 +K16891 CATSPER3; cation channel sperm-associated protein 3 +K16892 CATSPER4; cation channel sperm-associated protein 4 +K16893 CATSPERB; cation channel sperm-associated protein subunit beta +K16894 CATSPERG; cation channel sperm-associated protein subunit gamma +K16895 CATSPERD; cation channel sperm-associated protein subunit delta +K16896 TPCN1; two pore calcium channel protein 1 +K16897 TPCN3; two pore calcium channel protein 3 +K16898 addA; ATP-dependent helicase/nuclease subunit A [EC:5.6.2.4 3.1.-.-] +K16899 addB; ATP-dependent helicase/nuclease subunit B [EC:5.6.2.4 3.1.-.-] +K16900 TPC1, CCH1; two pore calcium channel protein, plant +K16901 K16901; anthranilate 3-monooxygenase (FAD) / 4-hydroxyphenylacetate 3-monooxygenase [EC:1.14.14.8 1.14.14.9] +K16902 E1.5.1.45; FAD reductase [NAD(P)H] [EC:1.5.1.45] +K16903 TAA1; L-tryptophan---pyruvate aminotransferase [EC:2.6.1.99] +K16904 DCTPP1; dCTP diphosphatase [EC:3.6.1.12] +K16905 K16905; fluoroquinolone transport system permease protein +K16906 K16906; fluoroquinolone transport system permease protein +K16907 K16907; fluoroquinolone transport system ATP-binding protein [EC:7.6.2.-] +K16908 CRR1; chloroplast NAD(P)H dehydrogenase [EC:1.6.99.-] +K16909 ADAM18; disintegrin and metalloproteinase domain-containing protein 18 [EC:3.4.24.-] +K16910 PTPRQ; receptor-type tyrosine-protein phosphatase Q [EC:3.1.3.48] +K16911 DDX21; ATP-dependent RNA helicase DDX21 [EC:5.6.2.7] +K16912 LAS1; ribosomal biogenesis protein LAS1 +K16913 PELP1, MNAR; proline-, glutamic acid- and leucine-rich protein 1 +K16914 RIOX1, NO66; protein-L-histidine (3S)-3-hydroxylase / [histone H3]-trimethyl-L-lysine4/36 demethylase [EC:1.14.11.79 1.14.11.67 1.14.11.69] +K16915 cbiL; nickel transport protein +K16916 yydJ; putative peptide transport system permease protein +K16917 yydI; putative peptide transport system ATP-binding protein +K16918 ytrF; acetoin utilization transport system permease protein +K16919 ytrC_D; acetoin utilization transport system permease protein +K16920 ytrE; acetoin utilization transport system ATP-binding protein +K16921 ytrB; acetoin utilization transport system ATP-binding protein +K16922 yydH; putative peptide zinc metalloprotease protein +K16923 qrtT; energy-coupling factor transport system substrate-specific component +K16924 mtsT; energy-coupling factor transport system substrate-specific component +K16925 ykoE; energy-coupling factor transport system permease protein +K16926 htsT; energy-coupling factor transport system substrate-specific component +K16927 cbrT; energy-coupling factor transport system substrate-specific component +K16928 mtaT; energy-coupling factor transport system substrate-specific component +K16929 K16929; energy-coupling factor transport system substrate-specific component +K16930 cdat8; tRNA(cytosine8) deaminase [EC:3.5.4.35] +K16931 STAR; steroidogenic acute regulatory protein, mitochondrial +K16932 APOBEC1; C->U-editing enzyme APOBEC1 [EC:3.5.4.36] +K16933 doxB; heme bearing subunit I of the terminal oxidase +K16934 doxC; terminal oxidase subunit +K16935 doxE; terminal oxidase small hydrophobic subunit +K16936 doxA; thiosulfate dehydrogenase (quinone) small subunit [EC:1.8.5.2] +K16937 doxD; thiosulfate dehydrogenase (quinone) large subunit [EC:1.8.5.2] +K16938 SEPT3_9_12; septin 3/9/12 +K16939 SEPT6_8_11; septin 6/8/11 +K16940 SEPT10; septin 10 +K16941 SEPT14; septin 14 +K16942 SEPT2; septin 2 +K16943 SEPT4; septin 4 +K16944 SEPT7, CDC3; septin 7 +K16945 CDC11; cell division control protein 11 +K16946 SHS1; seventh homolog of septin 1 +K16947 SPR28; sporulation-regulated protein 28 +K16948 CDC12; cell division control protein 12 +K16949 SULT3A; amine sulfotransferase [EC:2.8.2.3] +K16950 asrA; anaerobic sulfite reductase subunit A +K16951 asrB; anaerobic sulfite reductase subunit B +K16952 sor; sulfur oxygenase/reductase [EC:1.13.11.55] +K16953 dddL; dimethylpropiothetin dethiomethylase [EC:4.4.1.3] +K16954 mtsA; methylthiol:coenzyme M methyltransferase [EC:2.1.1.251] +K16955 mtsB; methylated-thiol--corrinoid protein +K16956 tcyJ; L-cystine transport system substrate-binding protein +K16957 tcyK; L-cystine transport system substrate-binding protein +K16958 tcyL; L-cystine transport system permease protein +K16959 tcyM; L-cystine transport system permease protein +K16960 tcyN; L-cystine transport system ATP-binding protein [EC:7.4.2.1] +K16961 yxeM; putative S-methylcysteine transport system substrate-binding protein +K16962 yxeN; putative S-methylcysteine transport system permease protein +K16963 yxeO; putative S-methylcysteine transport system ATP-binding protein +K16964 ddhA; dimethylsulfide dehydrogenase subunit alpha [EC:1.8.2.4] +K16965 ddhB; dimethylsulfide dehydrogenase subunit beta +K16966 ddhC; dimethylsulfide dehydrogenase subunit gamma +K16967 dmoA; dimethyl-sulfide monooxygenase [EC:1.14.13.131] +K16968 msmA; methanesulfonate monooxygenase subunit alpha [EC:1.14.13.111] +K16969 msmB; methanesulfonate monooxygenase subunit beta [EC:1.14.13.111] +K16970 MIR133A; microRNA 133a +K16971 MIR133B; microRNA 133b +K16972 MIR1; microRNA 1 +K16973 MIR206; microRNA 206 +K16974 MIR145; microRNA 145 +K16975 MIR203; microRNA 203 +K16976 MIR375; microRNA 375 +K16977 MIR9; microRNA 9 +K16978 MIR126; microRNA 126 +K16979 MIR218; microRNA 218 +K16980 MIRLET7; microRNA let-7 +K16981 MIR98; microRNA 98 +K16982 MIR34A; microRNA 34a +K16983 MIR34B; microRNA 34b +K16984 MIR26A; microRNA 26a +K16985 MIR26B; microRNA 26b +K16986 MIR15A; microRNA 15a +K16987 MIR15B; microRNA 15b +K16988 MIR16; microRNA 16 +K16989 MIR103; microRNA 103 +K16990 MIR497; microRNA 497 +K16991 MIR503; microRNA 503 +K16992 MIR424; microRNA 424 +K16993 MIR125A; microRNA 125a +K16994 MIR125B; microRNA 125b +K16995 MIR29A; microRNA 29a +K16996 MIR29B; microRNA 29b +K16997 MIR29C; microRNA 29c +K16998 MIR371; microRNA 371 +K16999 MIR372; microRNA 372 +K17000 MIR373; microRNA 373 +K17001 MIR223; microRNA 223 +K17002 MIR17; microRNA 17 +K17003 MIR18A; microRNA 18a +K17004 MIR18B; microRNA 18b +K17005 MIR19A; microRNA 19a +K17006 MIR20A; microRNA 20a +K17007 MIR20B; microRNA 20b +K17008 MIR92A; microRNA 92a +K17009 MIR155; microRNA 155 +K17010 MIR221; microRNA 221 +K17011 MIR222; microRNA 222 +K17012 MIR146A; microRNA 146a +K17013 MIR146B; microRNA 146b +K17014 MIR182; microRNA 182 +K17015 MIR200A; microRNA 200a +K17016 MIR200B; microRNA 200b +K17017 MIR200C; microRNA 200c +K17018 MIR141; microRNA 141 +K17019 MIR429; microRNA 429 +K17020 MIR122; microRNA 122 +K17021 MIR130A; microRNA 130a +K17022 MIR142; microRNA 142 +K17023 MIR143; microRNA 143 +K17024 MIR150; microRNA 150 +K17025 MIR181A; microRNA 181a +K17026 MIR181B; microRNA 181b +K17027 MIR181C; microRNA 181c +K17028 MIR181D; microRNA 181d +K17029 MIR195; microRNA 195 +K17030 MIR196A; microRNA 196a +K17031 MIR196B; microRNA 196b +K17032 MIR196C; microRNA 196c +K17033 MIR335; microRNA 335 +K17034 MIR106A; microRNA 106a +K17035 MIR106B; microRNA 106b +K17036 MIR363; microRNA 363 +K17037 MIR93; microRNA 93 +K17038 MIR25; microRNA 25 +K17039 MIR32; microRNA 32 +K17040 MIR30C; microRNA 30c +K17041 MIR100; microRNA 100 +K17042 MIR224; microRNA 224 +K17043 DDX43; ATP-dependent RNA helicase DDX43 [EC:5.6.2.7] +K17044 RNF166; E3 ubiquitin-protein ligase RNF166 [EC:2.3.2.27] +K17045 HMGN5; high-mobility group nucleosome-binding domain-containing protein 5 +K17046 DEK; protein DEK +K17047 RAB19; Ras-related protein Rab-19 +K17048 ebdB; ethylbenzene hydroxylase subunit beta +K17049 ebdC; ethylbenzene hydroxylase subunit gamma +K17050 serA, clrA; selenate/chlorate reductase subunit alpha [EC:1.97.1.9 1.97.1.1] +K17051 serB, clrB; selenate/chlorate reductase subunit beta [EC:1.97.1.9 1.97.1.1] +K17052 serC, clrC; selenate/chlorate reductase subunit gamma [EC:1.97.1.9 1.97.1.1] +K17053 ABP140; tRNAThr (cytosine32-N3)-methyltransferase [EC:2.1.1.268] +K17054 CFAT; coniferyl alcohol acyltransferase [EC:2.3.1.-] +K17055 EGS1; eugenol synthase [EC:1.1.1.318] +K17056 IGS1; isoeugenol synthase [EC:1.1.1.319] +K17057 IEMT1; (iso)eugenol O-methyltransferase [EC:2.1.1.146] +K17058 EOMT1, CVOMT1; eugenol/chavicol O-methyltransferase [EC:2.1.1.146] +K17059 AIMT1; trans-anol O-methyltransferase [EC:2.1.1.279] +K17060 aauS; two-component system, sensor histidine kinase AauS [EC:2.7.13.3] +K17061 aauR; two-component system, response regulator AauR +K17062 bgtB; arginine/lysine/histidine/glutamine transport system substrate-binding and permease protein +K17063 bgtA; arginine/lysine/histidine/glutamine transport system ATP-binding protein [EC:7.4.2.1] +K17064 ddh; D-2-hydroxyacid dehydrogenase (NADP+) [EC:1.1.1.272] +K17065 DNM1L; dynamin 1-like protein [EC:3.6.5.5] +K17066 MOX; alcohol oxidase [EC:1.1.3.13] +K17067 mdo; formaldehyde dismutase / methanol dehydrogenase [EC:1.2.98.1 1.1.99.37] +K17068 fdm; formaldehyde dismutase [EC:1.2.98.1] +K17069 MET17; O-acetylhomoserine/O-acetylserine sulfhydrylase [EC:2.5.1.49 2.5.1.47] +K17070 dcmA; dichloromethane dehalogenase [EC:4.5.1.3] +K17071 dcmR; transcriptional repressor of dcmA and dcmR +K17072 IFI47; interferon gamma inducible protein 47 +K17073 lysX1; putative lysine transport system substrate-binding protein +K17074 lysX2; putative lysine transport system permease protein +K17076 lysY; putative lysine transport system ATP-binding protein +K17077 artQ; arginine/lysine/histidine transport system permease protein +K17078 neoL; 2'-N-acetylparomamine deacetylase / 2'''-acetyl-6'''-hydroxyneomycin deacetylase [EC:3.5.1.112 3.5.1.113] +K17079 OPA1; optic atrophy protein 1 [EC:3.6.5.5] +K17080 PHB1; prohibitin 1 +K17081 PHB2; prohibitin 2 +K17082 FERMT1, KIND1; kindlin 1 +K17083 FERMT2, KIND2; kindlin 2 +K17084 FERMT3, KIND3; kindlin 3 +K17085 TM9SF1; transmembrane 9 superfamily member 1 +K17086 TM9SF2_4; transmembrane 9 superfamily member 2/4 +K17087 TM9SF3; transmembrane 9 superfamily member 3 +K17088 CYP10; cytochrome P450 family 10 +K17089 ANXA3; annexin A3 +K17090 ANXA9; annexin A9 +K17091 ANXA1; annexin A1 +K17092 ANXA2; annexin A2 +K17093 ANXA4; annexin A4 +K17094 ANXA6; annexin A6 +K17095 ANXA7_11; annexin A7/11 +K17096 ANXA8; annexin A8 +K17097 ANXA10; annexin A10 +K17098 ANNAT; annexin D +K17099 ANXA13; annexin A13 +K17100 DAS; dihydroxyacetone synthase [EC:2.2.1.3] +K17101 ELF5; E74-like factor 5 +K17102 EHF; ETS homologous factor +K17103 CHO1, pssA; CDP-diacylglycerol---serine O-phosphatidyltransferase [EC:2.7.8.8] +K17104 E2.5.1.41; phosphoglycerol geranylgeranyltransferase [EC:2.5.1.41] +K17105 E2.5.1.42; geranylgeranylglycerol-phosphate geranylgeranyltransferase [EC:2.5.1.42] +K17106 WAP; whey acidic protein +K17107 CSN2; beta-casein +K17108 GBA2; non-lysosomal glucosylceramidase [EC:3.2.1.45] +K17109 MIR130B; microRNA 130b +K17110 MIR30A_D_E; microRNA 30a/d/e +K17111 MIR30B; microRNA 30b +K17112 MIR27A; microRNA 27a +K17113 MIR27B; microRNA 27b +K17114 MIR96; microRNA 96 +K17115 MIR151; microRNA 151 +K17116 MIR183; microRNA 183 +K17117 MIR197; microRNA 197 +K17118 MIR199A; microRNA 199a +K17119 MIR199B; microRNA 199b +K17120 MIR320; microRNA 320 +K17121 MIR328; microRNA 328 +K17122 MIR486; microRNA 486 +K17123 MIR574; microRNA 574 +K17124 MIR216; microRNA 216 +K17125 MIR217; microRNA 217 +K17126 MIR124; microRNA 124 +K17127 MIR22; microRNA 22 +K17128 MIR24; microRNA 24 +K17129 MIR101; microRNA 101 +K17130 MIR128; microRNA 128 +K17131 MIR192; microRNA 192 +K17132 MIR342; microRNA 342 +K17133 MIR212; microRNA 212 +K17134 MIR379; microRNA 379 +K17135 MIR433; microRNA 433 +K17136 MIR454; microRNA 454 +K17137 MIR483; microRNA 483 +K17138 MIR584; microRNA 584 +K17139 MIR621; microRNA 621 +K17140 MIR652; microRNA 652 +K17141 MIR760; microRNA 760 +K17142 MIR888; microRNA 888 +K17143 MIR1908; microRNA 1908 +K17144 MIR135; microRNA 135 +K17145 MIR140; microRNA 140 +K17146 MIR147; microRNA 147 +K17147 MIR149; microRNA 149 +K17148 MIR193B; microRNA 193b +K17149 MIR202; microRNA 202 +K17150 MIR205; microRNA 205 +K17151 MIR214; microRNA 214 +K17152 MIR324; microRNA 324 +K17153 MIR370; microRNA 370 +K17154 MIR485; microRNA 485 +K17155 MIR527; microRNA 527 +K17156 MIR557; microRNA 557 +K17157 MIR593; microRNA 593 +K17158 MIR595; microRNA 595 +K17159 MIR603; microRNA 603 +K17160 MIR608; microRNA 608 +K17161 MIR612; microRNA 612 +K17162 MIR634; microRNA 634 +K17163 MIR642; microRNA 642 +K17164 MIR649; microRNA 649 +K17165 MIR23A; microRNA 23a +K17166 MIR204; microRNA 204 +K17167 MIR215; microRNA 215 +K17168 MIR219; microRNA 219 +K17169 MIR367; microRNA 367 +K17170 MIR376; microRNA 376 +K17171 MIR378; microRNA 378 +K17172 MIR451; microRNA 451 +K17173 MIR517; microRNA 517 +K17174 MIR518; microRNA 518 +K17175 MIR520; microRNA 520 +K17176 MIR646; microRNA 646 +K17177 MIR184; microRNA 184 +K17178 MIR210; microRNA 210 +K17179 MIR449B; microRNA 449b +K17180 MIR650; microRNA 650 +K17181 MIR301; microRNA 301 +K17182 MIR186; microRNA 186 +K17183 MIR31; microRNA 31 +K17184 MIR185; microRNA 185 +K17185 MIR191; microRNA 191 +K17186 MIR302C; microRNA 302c +K17187 MIR452; microRNA 452 +K17188 MIR488; microRNA 488 +K17189 MIR579; microRNA 579 +K17190 MIR515; microRNA 515 +K17191 MIR500; microRNA 500 +K17192 AA7GT; cyanidin 3-O-glucoside 7-O-glucosyltransferase (acyl-glucose) [EC:2.4.1.300] +K17193 UGT79B1; anthocyanidin 3-O-glucoside 2'''-O-xylosyltransferase [EC:2.4.2.51] +K17194 AA5GT; cyanidin 3-O-glucoside 5-O-glucosyltransferase (acyl-glucose) [EC:2.4.1.299] +K17195 alsE; D-allulose-6-phosphate 3-epimerase [EC:5.1.3.-] +K17196 ERAS; GTPase Eras +K17197 NKIRAS; NF-kappa-B inhibitor-interacting Ras-like protein +K17198 RERGL; Ras-related and estrogen-regulated growth inhibitor-like protein +K17199 RASEF, RAB45; Ras and EF-hand domain-containing protein +K17200 ARL14, ARF7; ADP-ribosylation factor-like protein 14 +K17201 ARL15; ADP-ribosylation factor-like protein 15 +K17202 eryG; erythritol transport system substrate-binding protein +K17203 eryF; erythritol transport system permease protein +K17204 eryE; erythritol transport system ATP-binding protein +K17205 xltC; putative xylitol transport system substrate-binding protein +K17206 xltB; putative xylitol transport system permease protein +K17207 xltA; putative xylitol transport system ATP-binding protein +K17208 ibpA; inositol transport system substrate-binding protein +K17209 iatP; inositol transport system permease protein +K17210 iatA; inositol transport system ATP-binding protein +K17211 CURS3; curcumin/demethoxycurcumin synthase [EC:2.3.1.217 2.3.1.219] +K17212 CUS; bisdemethoxycurcumin synthase [EC:2.3.1.211] +K17213 K17213; inositol transport system substrate-binding protein +K17214 K17214; inositol transport system permease protein +K17215 K17215; inositol transport system ATP-binding protein +K17216 mccA; cystathionine beta-synthase (O-acetyl-L-serine) [EC:2.5.1.134] +K17217 mccB; cystathionine gamma-lyase / homocysteine desulfhydrase [EC:4.4.1.1 4.4.1.2] +K17218 sqr; sulfide:quinone oxidoreductase [EC:1.8.5.4] +K17219 sreA; sulfur reductase molybdopterin subunit +K17220 sreB; sulfur reductase FeS subunit +K17221 sreC; sulfur reductase membrane anchor +K17222 soxA; L-cysteine S-thiosulfotransferase [EC:2.8.5.2] +K17223 soxX; L-cysteine S-thiosulfotransferase [EC:2.8.5.2] +K17224 soxB; S-sulfosulfanyl-L-cysteine sulfohydrolase [EC:3.1.6.20] +K17225 soxC; sulfane dehydrogenase subunit SoxC +K17226 soxY; sulfur-oxidizing protein SoxY +K17227 soxZ; sulfur-oxidizing protein SoxZ +K17228 sfnG; dimethylsulfone monooxygenase [EC:1.14.14.35] +K17229 fccB; sulfide dehydrogenase [flavocytochrome c] flavoprotein chain [EC:1.8.2.3] +K17230 fccA; cytochrome subunit of sulfide dehydrogenase +K17231 IYD, DEHAL1; iodotyrosine deiodinase [EC:1.21.1.1] +K17232 DUOXA2; dual oxidase maturation factor 2 +K17233 DUOXA1; dual oxidase maturation factor 1 +K17234 araN; arabinooligosaccharide transport system substrate-binding protein +K17235 araP; arabinooligosaccharide transport system permease protein +K17236 araQ; arabinooligosaccharide transport system permease protein +K17237 inoE; inositol-phosphate transport system substrate-binding protein +K17238 inoF; inositol-phosphate transport system permease protein +K17239 inoG; inositol-phosphate transport system permease protein +K17240 inoK; inositol-phosphate transport system ATP-binding protein +K17241 aguE; alpha-1,4-digalacturonate transport system substrate-binding protein +K17242 aguF; alpha-1,4-digalacturonate transport system permease protein +K17243 aguG; alpha-1,4-digalacturonate transport system permease protein +K17244 chiE; putative chitobiose transport system substrate-binding protein +K17245 chiF; putative chitobiose transport system permease protein +K17246 chiG; putative chitobiose transport system permease protein +K17247 msrQ; methionine sulfoxide reductase heme-binding subunit +K17248 pglJ; N-acetylgalactosamine-N,N'-diacetylbacillosaminyl-diphospho-undecaprenol 4-alpha-N-acetylgalactosaminyltransferase [EC:2.4.1.291] +K17249 pglH; GalNAc-alpha-(1->4)-GalNAc-alpha-(1->3)-diNAcBac-PP-undecaprenol alpha-1,4-N-acetyl-D-galactosaminyltransferase [EC:2.4.1.292] +K17250 pglI; GalNAc5-diNAcBac-PP-undecaprenol beta-1,3-glucosyltransferase [EC:2.4.1.293] +K17251 pglB; undecaprenyl-diphosphooligosaccharide---protein glycotransferase [EC:2.4.99.19] +K17252 CLU; clusterin +K17253 MFGE8; lactadherin +K17254 SDCBP; syntenin-1 +K17255 GDI1_2; Rab GDP dissociation inhibitor +K17256 IGFALS, ALS; insulin-like growth factor-binding protein complex acid labile subunit +K17257 ITFG1; integrin alpha FG-GAP repeat containing protein 1 +K17258 ITFG3; integrin alpha FG-GAP repeat containing protein 3 +K17259 CIB1; calcium and integrin-binding protein 1 +K17260 ACTR2, ARP2; actin-related protein 2 +K17261 CAP1_2, SRV2; adenylyl cyclase-associated protein +K17262 TBCB, CKAP1, ALF1; tubulin-specific chaperone B +K17263 CAND1, TIP120A; cullin-associated NEDD8-dissociated protein 1 +K17264 ERP44, TXNDC4; endoplasmic reticulum resident protein 44 +K17265 G3BP1; Ras GTPase-activating protein-binding protein 1 [EC:5.6.2.5 5.6.2.3] +K17266 MVP; major vault protein +K17267 COPG; coatomer subunit gamma +K17268 COPE; coatomer subunit epsilon +K17269 MBP; myelin basic protein +K17270 MOG; myelin-oligodendrocyte glycoprotein +K17271 PLP1; myelin proteolipid protein +K17272 BASP1; brain acid soluble protein 1 +K17273 FCRL6; Fc receptor-like protein 6 +K17274 S100A10; protein S100-A10 +K17275 PLS1; plastin-1 +K17276 LCP1, PLS2; plastin-2 +K17277 EPS8; epidermal growth factor receptor kinase substrate 8 +K17278 PGRMC1_2; membrane-associated progesterone receptor component +K17279 REEP5_6; receptor expression-enhancing protein 5/6 +K17280 CHRDL2; chordin-like protein 2 +K17281 CSN1S1; alpha-S1-casein +K17282 CSN3; kappa-casein +K17283 LTF; lactotransferrin [EC:3.4.21.-] +K17284 PLIN2, ADRP; perilipin-2 +K17285 SELENBP1; methanethiol oxidase [EC:1.8.3.4] +K17286 STOM; stomatin +K17287 TC2N; tandem C2 domains nuclear protein +K17288 TACSTD2; tumor-associated calcium signal transducer 2 +K17289 CRABP2; cellular retinoic acid-binding protein 2 +K17290 HTATIP2; oxidoreductase [EC:1.1.1.-] +K17291 MARVELD2; MARVEL domain-containing protein 2 +K17292 TBCA; tubulin-specific chaperone A +K17293 TSPAN3; tetraspanin-3 +K17294 TSPAN4; tetraspanin-4 +K17295 TSPAN6; tetraspanin-6 +K17296 TSPAN14; tetraspanin-14 +K17297 TSPAN15; tetraspanin-15 +K17298 MUC13; mucin-13 +K17299 POTE; POTE ankyrin domain family protein +K17300 LGALS3BP; galectin-3-binding protein +K17301 COPB1, SEC26; coatomer subunit beta +K17302 COPB2, SEC27; coatomer subunit beta' +K17303 MLANA, MART1; melanoma antigen recognized by T-cells 1 +K17304 PMEL, SILV; melanocyte protein PMEL +K17305 APOH, B2G1; beta-2-glycoprotein 1 +K17306 ARMC1; armadillo repeat-containing protein 1 +K17307 FBLN1_2; fibulin 1/2 +K17308 ORM, AGP; alpha-1-acid glycoprotein +K17309 PLVAP; plasmalemma vesicle-associated protein +K17310 SAA; serum amyloid A protein +K17311 treS; trehalose transport system substrate-binding protein +K17312 treT; trehalose transport system permease protein +K17313 treU; trehalose transport system permease protein +K17314 treV; trehalose transport system ATP-binding protein +K17315 gtsA, glcE; glucose/mannose transport system substrate-binding protein +K17316 gtsB, glcF; glucose/mannose transport system permease protein +K17317 gtsC, glcG; glucose/mannose transport system permease protein +K17318 lplA; putative aldouronate transport system substrate-binding protein +K17319 lplB; putative aldouronate transport system permease protein +K17320 lplC; putative aldouronate transport system permease protein +K17321 glpV; glycerol transport system substrate-binding protein +K17322 glpP; glycerol transport system permease protein +K17323 glpQ; glycerol transport system permease protein +K17324 glpS; glycerol transport system ATP-binding protein +K17325 glpT; glycerol transport system ATP-binding protein +K17326 bxlE; xylobiose transport system substrate-binding protein +K17327 bxlF; xylobiose transport system permease protein +K17328 bxlG; xylobiose transport system permease protein +K17329 dasA; N,N'-diacetylchitobiose transport system substrate-binding protein +K17330 dasB; N,N'-diacetylchitobiose transport system permease protein +K17331 dasC; N,N'-diacetylchitobiose transport system permease protein +K17332 NFATC2, NFAT1, NFATP; nuclear factor of activated T-cells, cytoplasmic 2 +K17333 NFATC3, NFAT4; nuclear factor of activated T-cells, cytoplasmic 3 +K17334 NFATC4, NFAT3; nuclear factor of activated T-cells, cytoplasmic 4 +K17335 NFAT5; nuclear factor of activated T-cells 5 +K17336 PLS3; plastin-3 +K17337 CRABP1; cellular retinoic acid-binding protein 1 +K17338 REEP1_2_3_4; receptor expression-enhancing protein 1/2/3/4 +K17339 ATL; atlastin [EC:3.6.5.-] +K17340 FBLN5; fibulin 5 +K17341 HMCN; hemicentin +K17342 FBLN7; fibulin 7 +K17343 PRPH2, TSPAN22; peripherin-2 +K17344 ROM1, TSPAN23; rod outer segment membrane protein 1 +K17345 TSPAN5; tetraspanin-5 +K17346 TSPAN33; tetraspanin-33 +K17347 UPK1; uroplakin-1 +K17348 TSPAN1; tetraspanin-1 +K17349 TSPAN8; tetraspanin-8 +K17350 TSPAN9; tetraspanin-9 +K17351 TSPAN10; tetraspanin-10 +K17352 TSPAN11; tetraspanin-11 +K17353 TSPAN18; tetraspanin-18 +K17354 TSPAN2; tetraspanin-2 +K17355 TSPAN12; tetraspanin-12 +K17356 TSPAN13_31; tetraspanin-13/31 +K17357 TSPAN16; tetraspanin-16 +K17358 TSPAN19; tetraspanin-19 +K17359 TSPAN32; tetraspanin-32 +K17360 ACOT7; acyl-coenzyme A thioesterase 7 [EC:3.1.2.2] +K17361 ACOT9; acyl-coenzyme A thioesterase 9 [EC:3.1.2.-] +K17362 ACOT13; acyl-coenzyme A thioesterase 13 [EC:3.1.2.-] +K17363 urdA; urocanate reductase [EC:1.3.99.33] +K17364 dmrA; dihydromethanopterin reductase [EC:1.5.1.47] +K17365 MIR7; microRNA 7 +K17366 MIR28; microRNA 28 +K17367 MIR99A; microRNA 99a +K17368 MIR129; microRNA 129 +K17369 MIR137; microRNA 137 +K17370 MIR152; microRNA 152 +K17371 MIR194; microRNA 194 +K17372 MIR326; microRNA 326 +K17373 MIR330; microRNA 330 +K17374 MIR331; microRNA 331 +K17375 MIR345; microRNA 345 +K17376 MIR423; microRNA 423 +K17377 MIR449A; microRNA 449a +K17378 MIR494; microRNA 494 +K17379 MIR602; microRNA 602 +K17380 MIR615; microRNA 615 +K17381 MIR625; microRNA 625 +K17382 LACTB; serine beta-lactamase-like protein LACTB, mitochondrial +K17383 SPRY2; protein sprouty homolog 2 +K17384 SPRY3; protein sprouty homolog 3 +K17385 SPRY4; protein sprouty homolog 4 +K17386 PDGFB; platelet-derived growth factor subunit B +K17387 KIF23; kinesin family member 23 +K17388 ROCK2; Rho-associated protein kinase 2 [EC:2.7.11.1] +K17389 MIR520C; microRNA 520c +K17390 CDCA5; sororin +K17391 IGF2BP1; insulin-like growth factor 2 mRNA-binding protein 1 +K17392 IGF2BP2; insulin-like growth factor 2 mRNA-binding protein 2 +K17393 MIR10B; microRNA 10b +K17394 MIR23B; microRNA 23b +K17395 MIR23C; microRNA 23c +K17396 MIR107; microRNA 107 +K17397 MIRLET7C; microRNA let-7c +K17398 DNMT3A; DNA (cytosine-5)-methyltransferase 3A [EC:2.1.1.37] +K17399 DNMT3B; DNA (cytosine-5)-methyltransferase 3B [EC:2.1.1.37] +K17400 DNMT3L; DNA (cytosine-5)-methyltransferase 3-like +K17401 MRPS22; small subunit ribosomal protein S22 +K17402 MRPS23; small subunit ribosomal protein S23 +K17403 MRPS24; small subunit ribosomal protein S24 +K17404 MRPS25; small subunit ribosomal protein S25 +K17405 MRPS26; small subunit ribosomal protein S26 +K17406 MRPS27; small subunit ribosomal protein S27 +K17407 MRPS28; small subunit ribosomal protein S28 +K17408 DAP3, MRPS29; small subunit ribosomal protein S29 +K17409 MRPS30; small subunit ribosomal protein S30 +K17410 MRPS31; small subunit ribosomal protein S31 +K17411 MRPS33; small subunit ribosomal protein S33 +K17412 MRPS34; small subunit ribosomal protein S34 +K17413 MRPS35; small subunit ribosomal protein S35 +K17414 MRPS36; small subunit ribosomal protein S36 +K17415 MRP21; small subunit ribosomal protein MRP21 +K17417 YMR31; small subunit ribosomal protein YMR-31 +K17418 MRPL37; large subunit ribosomal protein L37 +K17419 MRPL38; large subunit ribosomal protein L38 +K17420 MRPL39; large subunit ribosomal protein L39 +K17421 MRPL40; large subunit ribosomal protein L40 +K17422 MRPL41; large subunit ribosomal protein L41 +K17423 MRPL42; large subunit ribosomal protein L42 +K17424 MRPL43; large subunit ribosomal protein L43 +K17425 MRPL44; large subunit ribosomal protein L44 [EC:3.1.26.-] +K17426 MRPL45; large subunit ribosomal protein L45 +K17427 MRPL46; large subunit ribosomal protein L46 +K17428 MRPL47, NCM1; large subunit ribosomal protein L47 +K17429 MRPL48; large subunit ribosomal protein L48 +K17430 MRPL49, NOF1; large subunit ribosomal protein L49 +K17431 MRPL50; large subunit ribosomal protein L50 +K17432 MRPL51; large subunit ribosomal protein L51 +K17433 MRPL52; large subunit ribosomal protein L52 +K17434 MRPL53; large subunit ribosomal protein L53 +K17435 MRPL54; large subunit ribosomal protein L54 +K17436 MRPL55; large subunit ribosomal protein L55 +K17437 MRPL15; large subunit ribosomal protein L15 +K17438 MRPL25; large subunit ribosomal protein L25 +K17439 MRPL35; large subunit ribosomal protein L35 +K17440 MRP49; large subunit ribosomal protein MRP49 +K17441 ZFPM1, FOG1; zinc finger protein ZFPM1 +K17442 ZFPM2, FOG2; zinc finger protein ZFPM2 +K17443 HOXA10; homrobox protein Hox-A10 +K17444 HOXC10; homrobox protein Hox-C10 +K17445 IRS3; insulin receptor substrate 3 +K17446 IRS4; insulin receptor substrate 4 +K17447 SHC2; SHC-transforming protein 2 +K17448 SHC3; SHC-transforming protein 3 +K17449 SHC4; SHC-transforming protein 4 +K17450 ACO2; homoaconitase [EC:4.2.1.-] +K17451 EZH1; [histone H3]-lysine27 N-trimethyltransferase EZH1 [EC:2.1.1.356] +K17452 AEBP2; zinc finger protein AEBP2 +K17453 PPP1R3F, R3F; protein phosphatase 1 regulatory subunit 3F +K17454 E2F1; transcription factor E2F1 +K17455 FSCN2; fascin2 +K17456 FSCN3; fascin 3 +K17457 PPP1R12C, MBS85; protein phosphatase 1 regulatory subunit 12C +K17458 PPP1R16A, MYPT3; protein phosphatase 1 regulatory subunit 16A +K17459 PPP1R16B, TIMAP; protein phosphatase 1 regulatory inhibitor subunit 16B +K17460 BMF; Bcl-2-modifying factor +K17461 RECK, ST15; reversion-inducing-cysteine-rich protein with kazal motifs +K17462 yrrT; putative AdoMet-dependent methyltransferase [EC:2.1.1.-] +K17463 dgaF; 2-dehydro-3-deoxy-phosphogluconate aldolase [EC:4.1.2.14] +K17464 dgaA; D-glucosaminate PTS system EIIA component [EC:2.7.1.203] +K17465 dgaB; D-glucosaminate PTS system EIIB component [EC:2.7.1.203] +K17466 dgaC; D-glucosaminate PTS system EIIC component +K17467 dgaD; D-glucosaminate PTS system EIID component +K17468 dgaE; D-glucosaminate-6-phosphate ammonia-lyase [EC:4.3.1.29] +K17469 SULTR2; sulfate transporter 2, low-affinity +K17470 SULTR1; sulfate transporter 1, high-affinity +K17471 SULTR3; sulfate transporter 3 +K17472 cymR; Rrf2 family transcriptional regulator, cysteine metabolism repressor +K17473 dgaR; sigma-54 dependent transcriptional regulator, dga operon transcriptional activator +K17474 CYP134A, cypX; pulcherriminic acid synthase [EC:1.14.15.13] +K17475 FTMC, CYP5076C; tryprostatin B 6-hydroxylase [EC:1.14.14.118] +K17476 penM, pntM, CYP161C; pentalenolactone synthase [EC:1.14.19.8] +K17477 FARP1; FERM, RhoGEF and pleckstrin domain-containing protein 1 +K17478 FKBP15, WAFL; FK506-binding protein 15 +K17479 GRXCR1; glutaredoxin domain-containing cysteine-rich protein 1 +K17480 AATK, LMTK1; lemur tyrosine kinase 1 [EC:2.7.10.1] +K17481 MYO16; myosin XVI +K17482 SPZ1; spermatogenic leucine zipper protein 1 +K17483 cyp121, CYP121A; mycocyclosin synthase [EC:1.14.19.70] +K17484 E2.3.2.21; cyclo(L-tyrosyl-L-tyrosyl) synthase [EC:2.3.2.21] +K17485 yvmC; cyclo(L-leucyl-L-leucyl) synthase [EC:2.3.2.22] +K17486 dmdA; dimethylsulfoniopropionate demethylase [EC:2.1.1.269] +K17487 mptB; 7,8-dihydroneopterin 2',3'-cyclic phosphate phosphodiesterase [EC:3.1.4.56] +K17488 mptA; GTP cyclohydrolase IV [EC:3.5.4.39] +K17489 E2.1.3.1-12S; methylmalonyl-CoA carboxyltransferase 12S subunit [EC:2.1.3.1] +K17490 E2.1.3.1-1.3S; methylmalonyl-CoA carboxyltransferase 1.3S subunit [EC:2.1.3.1] +K17491 SMEK, PPP4R3; protein phosphatase 4 regulatory subunit 3 +K17492 UBN; ubinuclein +K17493 CAMSAP; calmodulin-regulated spectrin-associated protein +K17494 CSRNP; cysteine/serine-rich nuclear protein +K17495 CSMD; CUB and sushi domain-containing protein +K17496 TIM50; mitochondrial import inner membrane translocase subunit TIM50 +K17497 PMM; phosphomannomutase [EC:5.4.2.8] +K17498 SPN1, IWS1; transcription factor SPN1 +K17499 PPM1G, PP2CG; protein phosphatase 1G [EC:3.1.3.16] +K17500 ILKAP; integrin-linked kinase-associated serine/threonine phosphatase 2C [EC:3.1.3.16] +K17501 PPM1E, POPX1; protein phosphatase 1E [EC:3.1.3.16] +K17502 PPM1F, POPX2; protein phosphatase 1F [EC:3.1.3.16] +K17503 PPM1H, ARHCL1; protein phosphatase 1H [EC:3.1.3.16] +K17504 PPM1J, PP2CZ; protein phosphatase 1J [EC:3.1.3.16] +K17505 PPM1K, PP2CM; protein phosphatase 1K [EC:3.1.3.16] +K17506 PPM1L, PP2CE; protein phosphatase 1L [EC:3.1.3.16] +K17507 PPM1M, PP2CE; protein phosphatase 1M [EC:3.1.3.16] +K17508 PTC7, PPTC7; protein phosphatase PTC7 [EC:3.1.3.16] +K17509 PDPR; pyruvate dehydrogenase phosphatase regulatory subunit +K17510 STYK1; tyrosine-protein kinase STYK1 [EC:2.7.10.2] +K17511 YRK; proto-oncogene tyrosine-protein kinase YRK [EC:2.7.10.2] +K17512 SHARK; tyrosine-protein kinase shark [EC:2.7.10.2] +K17513 CLEC17A; C-type lectin superfamily 17 member A +K17514 CLEC6A, DECTIN2; C-type lectin domain family 6 member A +K17515 CLEC9A, CD370; C-type lectin domain family 9 member A +K17516 CLEC12A, CD371; C-type lectin domain family 12 member A +K17517 CLEC12B; C-type lectin domain family 12 member B +K17518 CLECL1; C-type lectin-like domain family 1 +K17519 CLEC3A; C-type lectin domain family 3 member A +K17520 CLEC3B; C-type lectin domain family 3 member B +K17521 CLEC11A; C-type lectin domain family 11 member A +K17522 LGALS5; galectin-5 +K17523 CHI3L1_2; chitinase-3-like protein 1/2 +K17524 CHI3L3_4; chitinase 3-like 3/4 +K17525 CHID1; chitinase domain-containing protein 1 +K17526 OVGP1; oviduct-specific glycoprotein +K17527 ITLN; intelectin +K17528 CLEC14A; C-type lectin domain family 14 member A +K17529 SGK494; uncharacterized serine/threonine-protein kinase SgK494 [EC:2.7.11.1] +K17530 DCLK3; doublecortin-like kinase 3 [EC:2.7.11.1] +K17531 OBSCN, ARHGEF30; obscurin-RhoGEF [EC:2.7.11.1] +K17532 STRADB; STE20-related kinase adapter protein beta +K17533 MAP3K19, YSK4; mitogen-activated protein kinase kinase kinase 19 [EC:2.7.11.25] +K17534 MLK4, KIAA1804; mitogen-activated protein kinase kinase kinase MLK4 [EC:2.7.11.25] +K17535 TNNI3K; serine/threonine-protein kinase TNNI3K [EC:2.7.11.1] +K17536 CNKSR2, CNK2, KSR2; connector enhancer of kinase suppressor of Ras 2 +K17537 SGK223; tyrosine-protein kinase SgK223 [EC:2.7.10.2] +K17538 PEAK1, SGK269; pseudopodium-enriched atypical kinase 1 [EC:2.7.10.2] +K17539 PDIK1L, CLIK1L; serine/threonine-protein kinase PDIK1L [EC:2.7.11.1] +K17540 TEX14, SGK307; inactive serine/threonine-protein kinase TEX14 +K17541 SCYL2; SCY1-like protein 2 +K17542 SCYL3; SCY1-like protein 3 +K17543 PXK; PX domain-containing protein kinase-like protein +K17544 TBCK; TBC domain-containing protein kinase-like protein +K17545 ULK4; serine/threonine-protein kinase ULK4 [EC:2.7.11.1] +K17546 STKLD1; serine/threonine kinase-like domain-containing protein STKLD1 +K17547 SGK196; glycoprotein-mannosyl O6-kinase [EC:2.7.1.183] +K17548 PKDCC; extracellular tyrosine-protein kinase PKDCC  [EC:2.7.10.2] +K17549 PPP1R1C; protein phosphatase 1 regulatory subunit 1C +K17550 PPP1R7, SDS22; protein phosphatase 1 regulatory subunit 7 +K17551 PPP1R9; neurabin +K17552 PPP1R10; protein phosphatase 1 regulatory subunit 10 +K17553 PPP1R11; protein phosphatase 1 regulatory subunit 11 +K17554 PPP1R13B, ASPP1; apoptosis-stimulating of p53 protein 1 +K17555 PPP1R14B; protein phosphatase 1 regulatory subunit 14B +K17556 PPP1R14C, KEPI; protein phosphatase 1 regulatory subunit 14C +K17557 PPP1R14D, GBPI; protein phosphatase 1 regulatory subunit 14D +K17558 PPP1R15B, CREP; protein phosphatase 1 regulatory subunit 15B +K17559 PPP1R18; phostensin +K17560 URI1; unconventional prefoldin RPB5 interactor 1 +K17561 CCDC8; coiled-coil domain-containing protein 8 +K17562 PPP1R21, CCDC128, KLRAQ1; protein phosphatase 1 regulatory subunit 21 +K17563 CHCHD3; MICOS complex subunit MIC19 +K17564 CHCHD6; MICOS complex subunit MIC25 +K17565 PPP1R26; protein phosphatase 1 regulatory subunit 26 +K17566 PPP1R27; protein phosphatase 1 regulatory subunit 27 +K17567 ELFN1; protein phosphatase 1 regulatory subunit 28 +K17568 ELFN2; protein phosphatase 1 regulatory subunit 29 +K17569 GPATCH2; G patch domain-containing protein 2 +K17570 HYDIN; hydrocephalus-inducing protein +K17571 PPP1R32; protein phosphatase 1 regulatory subunit 32 +K17572 ARFGEF3, KEPI; brefeldin A-inhibited guanine nucleotide-exchange protein 3 +K17573 LKAP, MARF1; meiosis arrest female protein 1 +K17574 PPP1R35; protein phosphatase 1 regulatory subunit 35 +K17575 PPP1R36; protein phosphatase 1 regulatory subunit 36 +K17576 PPP1R37, LRRC68; protein phosphatase 1 regulatory subunit 37 +K17577 SH2D4A; SH2 domain-containing protein 4A +K17578 ZCCHC9; zinc finger CCHC domain-containing protein 9 +K17579 PPP1R42, LRRC67; protein phosphatase 1 regulatory subunit 42 +K17580 CASC1; cancer susceptibility candidate protein 1 +K17581 CNST; consortin +K17582 MKI67; antigen KI-67 +K17583 NOM1; nucleolar MIF4G domain-containing protein 1 +K17584 PCIF1; phosphorylated CTD-interacting factor 1 +K17586 PHRF1; PHD and RING finger domain-containing protein 1 +K17587 TMEM225; transmembrane protein 225 +K17588 PREX2; phosphatidylinositol 3,4,5-trisphosphate-dependent Rac exchanger 2 protein +K17589 RB1CC1; RB1-inducible coiled-coil protein 1 +K17590 CDCA2; cell division cycle-associated protein 2 +K17591 RIMBP2; RIMS-binding protein 2 +K17592 SACS; sacsin +K17593 ANKRD42, SARP; ankyrin repeat domain-containing protein 42 +K17594 PHACTR; phosphatase and actin regulator +K17595 SPATA2; spermatogenesis-associated protein 2 +K17596 SPOCD1; SPOC domain-containing protein 1 +K17597 STAU; double-stranded RNA-binding protein Staufen +K17598 SYTL; synaptotagmin-like protein +K17599 TMEM132; transmembrane protein 132 +K17600 VPS54; vacuolar protein sorting-associated protein 54 +K17601 WDR81; WD repeat-containing protein 81 +K17602 YLPM1; YLP motif-containing protein 1 +K17603 ZFYVE1; zinc finger FYVE domain-containing protein 1 +K17604 ZSWIM3; zinc finger SWIM domain-containing protein 3 +K17605 PPP2R4, PTPA; serine/threonine-protein phosphatase 2A activator +K17606 IGBP1, TAP42; immunoglobulin-binding protein 1 +K17607 TIPRL, TIP41; type 2A phosphatase activator TIP41 +K17608 STRN1_3_4; striatin 1/3/4 +K17609 NXN; nucleoredoxin [EC:1.8.1.8] +K17610 CHP, CHP1; calcineurin B homologous protein 1 +K17611 CHP2; calcineurin B homologous protein 2 +K17612 TESC, CHP3; calcineurin B homologous protein 3 +K17613 CABIN1; calcineurin-binding protein cabin-1 +K17614 DUSP3, VHR; dual specificity phosphatase 3 [EC:3.1.3.16 3.1.3.48] +K17615 PPG1; serine/threonine-protein phosphatase PPG1 [EC:3.1.3.16] +K17616 CTDSPL2; CTD small phosphatase-like protein 2 [EC:3.1.3.-] +K17617 CTDNEP1, DULLARD, NEM1; CTD nuclear envelope phosphatase 1 [EC:3.1.3.16] +K17618 UBLCP1; ubiquitin-like domain-containing CTD phosphatase 1 [EC:3.1.3.16] +K17619 MDP1; magnesium-dependent phosphatase 1 [EC:3.1.3.48 3.1.3.-] +K17620 EYA2; eyes absent homolog 2 [EC:3.1.3.48] +K17621 EYA3; eyes absent homolog 3 [EC:3.1.3.48] +K17622 EYA4; eyes absent homolog 4 [EC:3.1.3.48] +K17623 PUDP, HDHD1; pseudouridine 5'-phosphatase [EC:3.1.3.96] +K17624 engCP, engBF, endoEF; endo-alpha-N-acetylgalactosaminidase [EC:3.2.1.97] +K17625 novS; dTDP-4-keto-6-deoxyhexose reductase [EC:1.1.1.-] +K17626 cloN1; clorobiocin biosynthesis protein CloN1 +K17630 RASA4, CAPRI; Ras GTPase-activating protein 4 +K17631 SYNGAP, RASA5; Ras/Rap GTPase-activating protein SynGAP +K17632 RASAL1; RAS protein activator-like 1 +K17633 RASAL2; RAS protein activator-like 2 +K17634 RASAL3; RAS protein activator-like 3 +K17635 RGL1, RGL; ral guanine nucleotide dissociation stimulator-like 1 +K17636 RGL2; ral guanine nucleotide dissociation stimulator-like 2 +K17637 EXOC2, SEC5; exocyst complex component 2 +K17638 RIN1; Ras and Rab interactor 1 +K17639 RGL3; ral guanine nucleotide dissociation stimulator-like 3 +K17640 bxlR; LacI family transcriptional regulator, xylobiose transport system transcriptional regulator +K17641 bxlA; beta-xylosidase +K17642 DDX3Y; ATP-dependent RNA helicase DDX3Y [EC:5.6.2.7] +K17643 HYPC; noranthrone monooxygenase [EC:1.13.12.20] +K17644 AFLD, NOR-1; norsolorinic acid ketoreductase [EC:1.1.1.349] +K17645 AVNA, CYP60A1; averantin hydroxylase [EC:1.14.14.116] +K17646 VBS; 5'-oxoaverantin cyclase / versicolorin B synthase [EC:4.2.1.142 4.2.1.143] +K17647 VRDA; versiconal hemiacetal acetate reductase [EC:1.1.1.353] +K17648 ESTA; versiconal hemiacetal acetate esterase [EC:3.1.1.94] +K17649 OMTB, dmtA; demethylsterigmatocystin 6-O-methyltransferase [EC:2.1.1.109] +K17650 OMTA; sterigmatocystin 8-O-methyltransferase [EC:2.1.1.110] +K17651 ORDA, CYP64A; aflatoxin B synthase [EC:1.14.14.117] +K17652 ADHA; 5'-hydroxyaverantin dehydrogenase [EC:1.1.1.352] +K17653 TFB2M; dimethyladenosine transferase 2, mitochondrial [EC:2.1.1.-] +K17654 TRMT10C, MRPP1; mitochondrial ribonuclease P protein 1 [EC:2.1.1.-] +K17655 MRPP3; mitochondrial ribonuclease P protein 3 +K17656 MSS51; mitochondrial splicing suppressor protein 51 +K17657 MRS1; mitochondrial RNA-splicing protein MRS1 +K17658 TEFM; transcription elongation factor, mitochondrial +K17659 PTCD3; pentatricopeptide repeat domain-containing protein 3 +K17660 CBP1; cytochrome b pre-mRNA-processing protein 1 +K17661 CBP2; cytochrome b pre-mRNA-processing protein 2 +K17662 CBP3, UQCC; cytochrome b pre-mRNA-processing protein 3 +K17663 CBP6; cytochrome b pre-mRNA-processing protein 6 +K17664 CBS1; cytochrome b translational activator protein CBS1, mitochondrial +K17665 CBS2; cytochrome b translational activator protein CBS2, mitochondrial +K17666 PET54; protein PET54, mitochondrial +K17667 PET111; protein PET111, mitochondrial +K17668 PET122; protein PET122, mitochondrial +K17669 PET309; pentatricopeptide repeat-containing protein PET309 +K17670 PET494; COX3 mRNA-specific translational activator PET494 +K17671 AEP1; ATPase expression protein 1, mitochondrial +K17672 AEP2; ATPase expression protein 2, mitochondrial +K17673 ATP22; mitochondrial translation factor ATP22 +K17674 SOV1; protein SOV1, mitochondrial +K17675 SUPV3L1, SUV3; ATP-dependent RNA helicase SUPV3L1/SUV3 [EC:5.6.2.6] +K17676 CCE1; cruciform cutting endonuclease 1 [EC:3.1.21.10] +K17677 IRC3; ATP-dependent helicase IRC3 [EC:5.6.2.-] +K17678 MRH4; ATP-dependent RNA helicase MRH4, mitochondrial [EC:5.6.2.7] +K17679 MSS116; ATP-dependent RNA helicase MSS116, mitochondrial [EC:5.6.2.7] +K17680 PEO1; twinkle protein [EC:5.6.2.3] +K17681 ATAD3A_B; ATPase family AAA domain-containing protein 3A/B +K17682 MNF1; mitochondrial nucleoid factor 1 +K17683 CYP2A6; cytochrome P450 family 2 subfamily A6 [EC:1.14.14.-] +K17685 CYP2A13; cytochrome P450 family 2 subfamily A13 [EC:1.14.14.1] +K17686 copA, ctpA, ATP7; P-type Cu+ transporter [EC:7.2.2.8] +K17687 CYP4A11; cytochrome P450 family 4 subfamily A11 [EC:1.14.14.1] +K17689 CYP3A4; cytochrome P450 family 3 subfamily A4 [EC:1.14.13.32 1.14.14.55 1.14.14.56 1.14.14.57 1.14.14.73 1.14.14.-] +K17690 CYP3A5; cytochrome P450 family 3 subfamily A5 [EC:1.14.14.1] +K17691 CYP3A7; cytochrome P450 family 3 subfamily A7 [EC:1.14.14.1] +K17692 CYP3A43; cytochrome P450 family 3 subfamily A43 [EC:1.14.14.1] +K17693 ID2; DNA-binding protein inhibitor ID2 +K17694 ID3; DNA-binding protein inhibitor ID3 +K17695 ID4; DNA-binding protein inhibitor ID4 +K17696 EMC; DNA-binding protein inhibitor ID, other +K17697 DOCK4; dedicator of cytokinesis protein 4 +K17698 FYB, ADAP; FYN binding protein +K17699 SKAP1, SKAP55; src kinase associated phosphoprotein 1 +K17700 RAP1GAP, RAPGAP; RAP1 GTPase activating protein 1 +K17701 SIPA1L1, E6TP1; signal-induced proliferation-associated 1 like protein 1 +K17702 SIPA1L2, SPAL2; signal-induced proliferation-associated 1 like protein 2 +K17703 SIPA1L3, SPAL3; signal-induced proliferation-associated 1 like protein 3 +K17704 APBB1IP, RIAM; amyloid beta A4 precursor protein-binding family B member 1-interacting protein +K17705 KRIT1, CCM1; Krev interaction trapped protein 1 +K17706 RGS14; regulator of G-protein signaling 14 +K17707 DOCK5; dedicator of cytokinesis protein 5 +K17708 RAP1GAP2; RAP1 GTPase activating protein 2 +K17709 CYP2B6; cytochrome P450 family 2 subfamily B6 [EC:1.14.14.-] +K17710 PTCD1; pentatricopeptide repeat domain-containing protein 1 +K17711 PTCD2; pentatricopeptide repeat domain-containing protein 2 +K17712 CYP2D6; cytochrome P450 family 2 subfamily D6 [EC:1.14.14.1] +K17713 bamB; outer membrane protein assembly factor BamB +K17714 SAM37, TOM37; sorting and assembly machinery component 37 +K17715 SAM35, TOM38; sorting and assembly machinery component 35 +K17716 capD; UDP-glucose 4-epimerase [EC:5.1.3.2] +K17717 pld; phospholipase D [EC:3.1.4.4] +K17718 CYP2C8; cytochrome P450 family 2 subfamily C8 [EC:1.14.14.1] +K17719 CYP2C9; cytochrome P450 family 2 subfamily C9 [EC:1.14.14.51 1.14.14.52 1.14.14.53 1.14.14.-] +K17720 CYP2C18; cytochrome P450 family 2 subfamily C18 [EC:1.14.14.1] +K17721 CYP2C19; cytochrome P450 family 2 subfamily C19 [EC:1.14.14.51 1.14.14.52 1.14.14.53 1.14.14.75 1.14.14.-] +K17722 preT; dihydropyrimidine dehydrogenase (NAD+) subunit PreT [EC:1.3.1.1] +K17723 preA; dihydropyrimidine dehydrogenase (NAD+) subunit PreA [EC:1.3.1.1] +K17724 IRG1; aconitate decarboxylase [EC:4.1.1.6] +K17725 ETHE1; sulfur dioxygenase [EC:1.13.11.18] +K17726 CYP4F2_3; phylloquinone omega-hydroxylase / docosahexaenoic acid omega-hydroxylase / leukotriene-B4 20-monooxygenase [EC:1.14.14.78 1.14.14.79 1.14.14.94] +K17728 CYP4F8; cytochrome P450 family 4 subfamily F8 [EC:1.14.14.1] +K17729 CYP4F11; cytochrome P450 family 4 subfamily F11 [EC:1.14.14.1 1.14.14.78] +K17730 CYP4F12; cytochrome P450 family 4 subfamily F12 [EC:1.14.14.1] +K17731 CYP4F22; ultra-long-chain fatty acid omega-hydroxylase [EC:1.14.14.177] +K17732 PMPCB, MAS1; mitochondrial-processing peptidase subunit beta [EC:3.4.24.64] +K17733 cwlK; peptidoglycan LD-endopeptidase CwlK [EC:3.4.-.-] +K17734 aprX; serine protease AprX [EC:3.4.21.-] +K17735 lcdH, cdhA; carnitine 3-dehydrogenase [EC:1.1.1.108] +K17736 cdhR; AraC family transcriptional regulator, carnitine catabolism transcriptional activator +K17737 dhcR; LysR family transcriptional regulator, carnitine catabolism transcriptional activator +K17738 ARD; D-arabinitol 2-dehydrogenase [EC:1.1.1.250] +K17739 THNR; tetrahydroxynaphthalene reductase [EC:1.1.1.252] +K17740 SCD1; scytalone dehydratase [EC:4.2.1.94] +K17741 GRE2; NADPH-dependent methylglyoxal reductase [EC:1.1.1.283] +K17742 SOU1; sorbose reductase [EC:1.1.1.289] +K17743 XYL1, XYRA; D-xylose reductase [EC:1.1.1.307 1.1.1.430 1.1.1.431] +K17744 GalDH; L-galactose dehydrogenase [EC:1.1.1.316] +K17745 spr1; sepiapterin reductase [EC:1.1.1.325] +K17746 ChaDH; chanoclavine-I dehydrogenase [EC:1.1.1.332] +K17747 ptlF; 1-deoxy-11beta-hydroxypentalenate dehydrogenase [EC:1.1.1.340] +K17748 hphA; benzylmalate synthase [EC:2.3.3.-] +K17749 hphCD; 3-benzylmalate isomerase [EC:4.2.1.-] +K17750 hphB; 3-benzylmalate dehydrogenase [EC:1.1.1.-] +K17751 MYH6_7; myosin heavy chain 6/7 +K17752 rsbT; serine/threonine-protein kinase RsbT [EC:2.7.11.1] +K17753 HICDH; isocitrate--homoisocitrate dehydrogenase [EC:1.1.1.286] +K17754 cpnA; cyclopentanol dehydrogenase [EC:1.1.1.163] +K17755 codA; choline oxidase [EC:1.1.3.17] +K17756 FAO3; long-chain-alcohol oxidase [EC:1.1.3.20] +K17757 CARKD; ATP-dependent NAD(P)H-hydrate dehydratase [EC:4.2.1.93] +K17758 nnrD; ADP-dependent NAD(P)H-hydrate dehydratase [EC:4.2.1.136] +K17759 NAXE, nnrE; NAD(P)H-hydrate epimerase [EC:5.1.99.6] +K17760 qheDH, qbdA; quinohemoprotein ethanol dehydrogenase [EC:1.1.9.1] +K17761 SSADH; succinate-semialdehyde dehydrogenase, mitochondrial [EC:1.2.1.24] +K17762 rsbS; rsbT antagonist protein RsbS +K17763 rsbR; rsbT co-antagonist protein RsbR +K17764 MMM1; maintenance of mitochondrial morphology protein 1 +K17765 MDM12; mitochondrial distribution and morphology protein 12 +K17766 TOM34; mitochondrial import receptor subunit TOM34 +K17767 AIP, XAP2; AH receptor-interacting protein +K17768 TOM70; mitochondrial import receptor subunit TOM70 +K17769 TOM22; mitochondrial import receptor subunit TOM22 +K17770 TOM20; mitochondrial import receptor subunit TOM20 +K17771 TOM7; mitochondrial import receptor subunit TOM7 +K17772 TOM6; mitochondrial import receptor subunit TOM6 +K17773 TOM5; mitochondrial import receptor subunit TOM5 +K17774 MDM10; mitochondrial distribution and morphology protein 10 +K17775 MDM34, MMM2; mitochondrial distribution and morphology protein 34 +K17776 MTX; metaxin +K17777 TIM9; mitochondrial import inner membrane translocase subunit TIM9 +K17778 TIM10; mitochondrial import inner membrane translocase subunit TIM10 +K17779 TIM10B; mitochondrial import inner membrane translocase subunit TIM10B +K17780 TIM8; mitochondrial import inner membrane translocase subunit TIM8 +K17781 TIM13; mitochondrial import inner membrane translocase subunit TIM13 +K17782 MIA40, CHCHD4; mitochondrial intermembrane space import and assembly protein 40 +K17783 ERV1, GFER, ALR; mitochondrial FAD-linked sulfhydryl oxidase [EC:1.8.3.2] +K17784 MICOS10, MINOS1, MIC10; MICOS complex subunit MIC10 +K17785 IMMT, MIC60; MICOS complex subunit MIC60 +K17786 MIC26; MICOS complex subunit MIC26 +K17787 MIC12; MICOS complex subunit MIC12 +K17788 MIC19; MICOS complex subunit MIC19 +K17789 MIC27; MICOS complex subunit MIC27 +K17790 TIM22; mitochondrial import inner membrane translocase subunit TIM22 +K17791 TIM18; mitochondrial import inner membrane translocase subunit TIM18 +K17792 TIM54; mitochondrial import inner membrane translocase subunit TIM54 +K17793 TIM12; mitochondrial import inner membrane translocase subunit TIM12 +K17794 TIM23; mitochondrial import inner membrane translocase subunit TIM23 +K17795 TIM17; mitochondrial import inner membrane translocase subunit TIM17 +K17796 TIM21; mitochondrial import inner membrane translocase subunit TIM21 +K17797 COX18; mitochondrial inner membrane protein COX18 +K17798 MSS2; mitochondrial protein MSS2 +K17799 PNT1; pentamidine resistance factor, mitochondrial +K17800 LETM1, MDM38; LETM1 and EF-hand domain-containing protein 1, mitochondrial +K17801 MBA1; mitochondrial protein MBA1 +K17802 SOM1; mitochondrial inner membrane protease subunit SOM1 +K17803 OMS1; methyltransferase OMS1, mitochondrial [EC:2.1.1.-] +K17804 TIM44; mitochondrial import inner membrane translocase subunit TIM44 +K17805 PAM16, TIM16; mitochondrial import inner membrane translocase subunit TIM16 +K17806 PAM17, TIM23; mitochondrial import inner membrane translocase subunit TIM23 +K17807 TAM41, MMP37; mitochondrial translocator assembly and maintenance protein 41 +K17808 ZIM17, DNLZ, Tim15; mitochondrial protein import protein ZIM17 +K17809 POLDIP2; polymerase delta-interacting protein 2 +K17810 asl; D-aspartate ligase [EC:6.3.1.12] +K17811 K17811; halimadienyl-diphosphate synthase [EC:5.5.1.16] +K17812 CYP1C; cytochrome P450 family 1 subfamily C +K17813 CYP1D; cytochrome P450 family 1 subfamily D +K17814 CYP1; cytochrome P450 family 1, invertebrate +K17815 EXO5; exonuclease V [EC:3.1.-.-] +K17816 NUDT1, MTH1; 8-oxo-dGTP diphosphatase / 2-hydroxy-dATP diphosphatase [EC:3.6.1.55 3.6.1.56] +K17817 NUDT18, MTH3; 8-oxo-dGDP phosphatase [EC:3.6.1.58] +K17818 ARD1; D-arabinitol dehydrogenase (NADP+) [EC:1.1.1.287] +K17819 carD; beta-apo-4'-carotenal oxygenase [EC:1.2.1.82] +K17820 DHX33; ATP-dependent RNA helicase DHX33 [EC:5.6.2.6] +K17821 RNF165; E3 ubiquitin-protein ligase RNF165 [EC:2.3.2.27] +K17822 DCUN1D1_2; DCN1-like protein 1/2 +K17823 DCUN1D3; DCN1-like protein 3 +K17824 DCUN1D4_5; DCN1-like protein 4/5 +K17825 FTMF; verruculogen synthase [EC:1.14.11.38] +K17826 FTMG, CYP5067A; fumitremorgin C monooxygenase [EC:1.14.14.119] +K17827 FTME, CYP5066A; fumitremorgin C synthase [EC:1.14.19.71] +K17828 pyrDI; dihydroorotate dehydrogenase (NAD+) catalytic subunit [EC:1.3.1.14] +K17829 ccrA; crotonyl-CoA reductase [EC:1.3.1.86] +K17830 GGR; digeranylgeranylglycerophospholipid reductase [EC:1.3.1.101 1.3.7.11] +K17831 lodA; L-lysine 6-oxidase [EC:1.4.3.20] +K17832 geoB; geranial dehydrogenase [EC:1.2.1.86] +K17833 FAP2; L-saccharopine oxidase [EC:1.5.3.18] +K17834 CGAS, MB21D1; cyclic GMP-AMP synthase [EC:2.7.7.86] +K17835 griH; 3-amino-4-hydroxybenzoic acid synthase [EC:4.1.99.20] +K17836 penP; beta-lactamase class A [EC:3.5.2.6] +K17837 bla2, blm, ccrA, blaB; metallo-beta-lactamase class B [EC:3.5.2.6] +K17838 oxa; beta-lactamase class D [EC:3.5.2.6] +K17839 PAO4, PAO3, PAO2; polyamine oxidase [EC:1.5.3.17 1.5.3.-] +K17840 aac2-I; aminoglycoside 2'-N-acetyltransferase I [EC:2.3.1.59] +K17841 AL2; 15-cis-phytoene synthase / lycopene beta-cyclase [EC:2.5.1.32 5.5.1.19] +K17842 carT, CAO-2; torulene dioxygenase [EC:1.13.11.59] +K17843 KHDRBS2, SLM1; KH domain-containing, RNA-binding, signal transduction-associated protein 2 +K17844 PTBP3, ROD1; polypyrimidine tract-binding protein 3 +K17845 KLF2; krueppel-like factor 2 +K17846 KLF4; krueppel-like factor 4 +K17847 FOXO6; forkhead box protein O6 +K17848 AGAP2; Arf-GAP with GTPase, ANK repeat and PH domain-containing protein 2 +K17849 HECTD4; E3 ubiquitin-protein ligase HECTD4 [EC:2.3.2.26] +K17850 ampR; LysR family transcriptional regulator, regulator of gene expression of beta-lactamase +K17851 dpd; D-proline dehydrogenase [EC:1.5.99.13] +K17852 CYP2AA; cytochrome P450 family 2 subfamily AA +K17853 CYP2H; cytochrome P450 family 2 subfamily H +K17854 CYP2K; cytochrome P450 family 2 subfamily K [EC:1.14.-.-] +K17861 CYP13; cytochrome P450 family 13 +K17862 PPOC; linoleate 10R-lipoxygenase [EC:1.13.11.62] +K17863 PPOA; linoleate 8R-lipoxygenase / 9,12-octadecadienoate 8-hydroperoxide 8R-isomerase [EC:1.13.11.60 5.4.4.5] +K17864 LDS; linoleate 8R-lipoxygenase / 9,12-octadecadienoate 8-hydroperoxide 8S-isomerase [EC:1.13.11.60 5.4.4.6] +K17865 croR; 3-hydroxybutyryl-CoA dehydratase [EC:4.2.1.55] +K17866 DPH2; diphthamide biosynthesis protein 2 +K17867 DPH4, DNAJC24; diphthamide biosynthesis protein 4 +K17868 DPH7, RRT2; diphthine methyl ester acylhydrolase [EC:3.1.1.97] +K17869 nox2; NADH oxidase (H2O-forming) [EC:1.6.3.4] +K17870 nox1; NADH oxidase (H2O2-forming) [EC:1.6.3.3] +K17872 NDC1, ndbB; demethylphylloquinone reductase [EC:1.6.5.12] +K17873 CYP72A; 11-oxo-beta-amyrin 30-oxidase [EC:1.14.14.115] +K17874 CYP74D, DES; 9-divinyl ether synthase [EC:4.2.1.121] +K17875 CYP88D6; beta-amyrin 11-oxidase [EC:1.14.14.152] +K17876 CYP105D; pentalenic acid synthase [EC:1.14.15.11] +K17877 NIT-6; nitrite reductase (NAD(P)H) [EC:1.7.1.4] +K17878 NNT1; EEF1A N-terminal glycine/lysine methyltransferase [EC:2.1.1.-] +K17879 NUDT7; peroxisomal coenzyme A diphosphatase NUDT7 [EC:3.6.1.77] +K17880 hyg; hygromycin-B 7''-O-kinase [EC:2.7.1.119] +K17881 aadB; aminoglycoside 2''-adenylyltransferase [EC:2.7.7.46] +K17882 aadD, knt; kanamycin nucleotidyltransferase [EC:2.7.7.-] +K17883 mtr; mycothione reductase [EC:1.8.1.15] +K17884 E2.7.8.39; archaetidylinositol phosphate synthase [EC:2.7.8.39] +K17885 MTCH; mitochondrial carrier +K17886 MDM1; nuclear protein MDM1 +K17887 SNX25, MDM1; sorting nexin-25 +K17888 ATG10L, ATG10; ubiquitin-like-conjugating enzyme ATG10 +K17889 ATG14L, ATG14; beclin 1-associated autophagy-related key regulator +K17890 ATG16L1; autophagy-related protein 16-1 +K17891 ERV2; FAD-linked sulfhydryl oxidase [EC:1.8.3.2] +K17892 FTRC; ferredoxin-thioredoxin reductase catalytic chain [EC:1.8.7.2] +K17893 AOX1, AOX2; ubiquinol oxidase [EC:1.10.3.11] +K17894 GATA2; GATA-binding protein 2 +K17895 GATA3; GATA-binding protein 3 +K17896 GATA5; GATA-binding protein 5 +K17897 GATA6; GATA-binding protein 6 +K17898 oraE; D-ornithine 4,5-aminomutase subunit beta [EC:5.4.3.5] +K17899 oraS; D-ornithine 4,5-aminomutase subunit alpha [EC:5.4.3.5] +K17900 ATG15, AUT5; lipase ATG15 [EC:3.1.1.3] +K17901 RCAN1, MCIP1; calcipressin-1 +K17902 TBC1D4, AS160; TBC1 domain family member 4 +K17903 RCAN2, ZAKI4; calcipressin-2 +K17904 DIO2; type II thyroxine 5'-deiodinase [EC:1.21.99.4] +K17905 RCAN3; calcipression-3 +K17906 ATG2; autophagy-related protein 2 +K17907 ATG9; autophagy-related protein 9 +K17908 WIPI1_2, ATG18; autophagy-related protein 18 +K17909 ATG23; autophagy-related protein 23 +K17910 aphD; aminoglycoside 2''-phosphotransferase [EC:2.7.1.190] +K17911 DWARF27; beta-carotene isomerase [EC:5.2.1.14] +K17912 CCD7; 9-cis-beta-carotene 9',10'-cleaving dioxygenase [EC:1.13.11.68] +K17913 CCD8; carlactone synthase / all-trans-10'-apo-beta-carotenal 13,14-cleaving dioxygenase [EC:1.13.11.69 1.13.11.70] +K17914 KIF13; kinesin family member 13 +K17915 KIF14; kinesin family member 14 +K17916 KIF16B, SNX23; kinesin family member 16B +K17917 SNX1_2; sorting nexin-1/2 +K17918 SNX3_12; sorting nexin-3/12 +K17919 SNX4; sorting nexin-4 +K17920 SNX5_6_32; sorting nexin-5/6/32 +K17921 SNX7_30; sorting nexin-7/30 +K17922 SNX8, MVP1; sorting nexin-8 +K17923 SNX9_18_33; sorting nexin-9/18/33 +K17924 SNX10_11; sorting nexin-10/11 +K17925 SNX13; sorting nexin-13 +K17926 SNX14; sorting nexin-14 +K17927 SNX15; sorting nexin-15 +K17928 SNX16; sorting nexin-16 +K17929 SNX17; sorting nexin-17 +K17930 SNX19; sorting nexin-19 +K17931 SNX20; sorting nexin-20 +K17932 SNX21; sorting nexin-21 +K17933 ARHGAP33, SNX26; Rho GTPase-activating protein 33 +K17934 NOXO1, SNX28; NADPH oxidase organizer 1 +K17935 SNX29; sorting nexin-29 +K17936 SNX27; sorting nexin-27 +K17937 SNX31; sorting nexin-31 +K17938 sbmA, bacA; peptide/bleomycin uptake transporter +K17939 perB, wbdR; GDP-perosamine N-acetyltransferase [EC:2.3.1.227] +K17940 pqsH; 2-heptyl-3-hydroxy-4(1H)-quinolone synthase [EC:1.14.13.182] +K17941 SNX22_24; sorting nexin-22/24 +K17942 pmd; phosphomevalonate decarboxylase [EC:4.1.1.99] +K17943 PUM; pumilio RNA-binding family +K17944 PUF3; mRNA-binding protein PUF3 +K17945 TPM1_2; tropomyosin, fungi type +K17946 CYP23A; cytochrome P450 family 23 subfamily A +K17947 wbiB; dTDP-L-rhamnose 4-epimerase [EC:5.1.3.25] +K17948 nanM; N-acetylneuraminate epimerase [EC:5.1.3.24] +K17949 HDP; heme ligase [EC:4.99.1.8] +K17950 cuyA; L-cysteate sulfo-lyase [EC:4.4.1.25] +K17951 CYP27C1; all-trans-retinol 3,4-desaturase [EC:1.14.19.53] +K17952 CYP29A; cytochrome P450 family 29 subfamily A +K17953 CYP31A; cytochrome P450 family 31 subfamily A [EC:1.14.-.-] +K17958 CYP36A1; cytochrome P450 family 36 subfamily A1 +K17960 CYP49A; cytochrome P450 family 49 subfamily A +K17961 CYP82G1; trimethyltridecatetraene/dimethylnonatriene synthase [EC:1.14.14.58 1.14.14.59] +K17962 PPARGC1B, PGC1B; peroxisome proliferator-activated receptor gamma coactivator 1-beta +K17963 PPRC1, PRC; peroxisome proliferator-activated receptor gamma coactivator-related protein 1 +K17964 LRPPRC; leucine-rich PPR motif-containing protein, mitochondrial +K17965 NRIP1; nuclear receptor-interacting protein 1 +K17966 TMEM70; transmembrane protein 70, mitochondrial +K17967 UGO1; mitochondrial fusion and transport protein UGO1 +K17968 TRIAP1, MDM35; TRIAP1/MDM35 family protein +K17969 FIS1, TTC11, MDV2; mitochondrial fission 1 protein +K17970 MDV1, FIS2; mitochondrial division protein 1 +K17971 BNR1; BNI1-related protein 1 +K17972 NAA20, NAT3; N-terminal acetyltransferase B complex catalytic subunit [EC:2.3.1.254] +K17973 NAA25, MDM20; N-terminal acetyltransferase B complex non-catalytic subunit +K17974 JSN1, PUF1; protein JSN1 +K17975 KTN1; kinectin +K17976 MMR1; mitochondrial MYO2 receptor-related protein 1 +K17977 YPT11; GTP-binding protein YPT11 +K17978 NUM1; nuclear migration protein NUM1 +K17979 MDM31; mitochondrial distribution and morphology protein 31 +K17980 MDM32; mitochondrial distribution and morphology protein 32 +K17981 MTFP1, MTP18; mitochondrial fission process protein 1 +K17982 TPS04, GES; geranyllinalool synthase [EC:4.2.3.144] +K17983 SHE9; sensitive to high expression protein 9, mitochondrial +K17984 ATG32; autophagy-related protein 32 +K17985 AMBRA1; activating molecule in BECN1-regulated autophagy protein 1 +K17986 FUNDC1; FUN14 domain-containing protein 1 +K17987 NBR1; next to BRCA1 gene 1 protein +K17988 TECPR1; tectonin beta-propeller repeat-containing protein 1 +K17989 SDS, SDH, CHA1; L-serine/L-threonine ammonia-lyase [EC:4.3.1.17 4.3.1.19] +K17990 VCPO; vanadium chloroperoxidase [EC:1.11.1.10] +K17991 PXG; peroxygenase [EC:1.11.2.3] +K17992 hndB; NADP-reducing hydrogenase subunit HndB [EC:1.12.1.3] +K17993 hydA; sulfhydrogenase subunit alpha [EC:1.12.1.3 1.12.1.5] +K17994 hydD; sulfhydrogenase subunit delta [EC:1.12.1.3 1.12.1.5] +K17995 hydG; sulfhydrogenase subunit gamma (sulfur reductase) [EC:1.12.98.4] +K17996 hydB; sulfhydrogenase subunit beta (sulfur reductase) [EC:1.12.98.4] +K17997 hydA; iron-hydrogenase subunit alpha [EC:1.12.1.4] +K17998 hydB; iron-hydrogenase subunit beta [EC:1.12.1.4] +K17999 hydC; iron-hydrogenase subunit gamma [EC:1.12.1.4] +K18000 pqsA; anthranilate-CoA ligase [EC:6.2.1.32] +K18001 pqsB; 2-heptyl-4(1H)-quinolone synthase subunit PqsB [EC:2.3.1.230] +K18002 pqsC; 2-heptyl-4(1H)-quinolone synthase subunit PqsC [EC:2.3.1.230] +K18003 pqsD; anthraniloyl-CoA anthraniloyltransferase [EC:2.3.1.262] +K18004 pqsL; HQNO biosynthesis monooxygenase PqsL +K18005 hoxF; [NiFe] hydrogenase diaphorase moiety large subunit [EC:1.12.1.2] +K18006 hoxU; [NiFe] hydrogenase diaphorase moiety small subunit [EC:1.12.1.2] +K18007 hoxY; NAD-reducing hydrogenase small subunit [EC:1.12.1.2] +K18008 hydA; [NiFe] hydrogenase small subunit [EC:1.12.2.1] +K18009 budC; meso-butanediol dehydrogenase / (S,S)-butanediol dehydrogenase / diacetyl reductase [EC:1.1.1.- 1.1.1.76 1.1.1.304] +K18010 HCAR; 7-hydroxymethyl chlorophyll a reductase [EC:1.17.7.2] +K18011 kamE; beta-lysine 5,6-aminomutase beta subunit [EC:5.4.3.3] +K18012 kdd; L-erythro-3,5-diaminohexanoate dehydrogenase [EC:1.4.1.11] +K18013 kce; 3-keto-5-aminohexanoate cleavage enzyme [EC:2.3.1.247] +K18014 kal; 3-aminobutyryl-CoA ammonia-lyase [EC:4.3.1.14] +K18015 elaD, sseL; deubiquitinase [EC:3.4.22.-] +K18016 mbhL; membrane-bound hydrogenase subunit alpha [EC:1.12.7.2] +K18017 mbhK; membrane-bound hydrogenase subunit beta [EC:1.12.7.2] +K18018 PTPN5; tyrosine-protein phosphatase non-receptor type 5 [EC:3.1.3.48] +K18019 PTPN7; tyrosine-protein phosphatase non-receptor type 7 [EC:3.1.3.48] +K18020 cutA; glyceraldehyde dehydrogenase large subunit [EC:1.2.99.8] +K18021 cutB; glyceraldehyde dehydrogenase medium subunit [EC:1.2.99.8] +K18022 cutC; glyceraldehyde dehydrogenase small subunit [EC:1.2.99.8] +K18023 mbhJ; membrane-bound hydrogenase subunit mbhJ [EC:1.12.7.2] +K18024 PTPN12_18_22; tyrosine-protein phosphatase non-receptor type 12/18/22 [EC:3.1.3.48] +K18025 PTPN14_21; tyrosine-protein phosphatase non-receptor type 14/21 [EC:3.1.3.48] +K18026 PTPN2, PTPT; tyrosine-protein phosphatase non-receptor type 2 [EC:3.1.3.48] +K18027 PTPN3, PTPH1; tyrosine-protein phosphatase non-receptor type 3 [EC:3.1.3.48] +K18028 nicX; 2,5-dihydroxypyridine 5,6-dioxygenase [EC:1.13.11.9] +K18029 nicA; nicotinate dehydrogenase subunit A [EC:1.17.2.1] +K18030 nicB; nicotinate dehydrogenase subunit B [EC:1.17.2.1] +K18031 nspLOX; linolenate 9R-lipoxygenase [EC:1.13.11.61] +K18032 PTPRA; receptor-type tyrosine-protein phosphatase A [EC:3.1.3.48] +K18033 PTPRE; receptor-type tyrosine-protein phosphatase epsilon [EC:3.1.3.48] +K18034 PTPRH, SAP1; receptor-type tyrosine-protein phosphatase H [EC:3.1.3.48] +K18035 PTPRO; receptor-type tyrosine-protein phosphatase O [EC:3.1.3.48] +K18036 PTPRV, ESP; receptor-type tyrosine-protein phosphatase V [EC:3.1.3.48] +K18037 PTPN4, MEG; tyrosine-protein phosphatase non-receptor type 4 [EC:3.1.3.48] +K18038 PTPN9, MEG2; tyrosine-protein phosphatase non-receptor type 9 [EC:3.1.3.48] +K18039 PTPN20; tyrosine-protein phosphatase non-receptor type 20 [EC:3.1.3.48] +K18040 PTPN23; tyrosine-protein phosphatase non-receptor type 23 [EC:3.1.3.48] +K18041 PTP4A; protein tyrosine phosphatase type IVA [EC:3.1.3.48] +K18042 STYX; serine/threonine/tyrosine-interacting protein +K18043 OCA1; tyrosine-protein phosphatase OCA1 [EC:3.1.3.48] +K18044 OCA2; tyrosine-protein phosphatase-like protein OCA2 +K18045 SIW14, OCA3; tyrosine-protein phosphatase SIW14 [EC:3.1.3.48] +K18046 OCA6; tyrosine-protein phosphatase OCA6 [EC:3.1.3.48] +K18047 STYXL1, DUSP24, MKSTYX; serine/threonine/tyrosine-interacting-like protein 1 +K18048 ninaB; carotenoid isomerooxygenase [EC:1.13.11.65] +K18049 mpnS; methylphosphonate synthase [EC:1.13.11.73] +K18050 PRKCE; novel protein kinase C epsilon type [EC:2.7.11.13] +K18051 PRKCH; novel protein kinase C eta type [EC:2.7.11.13] +K18052 PRKCQ; novel protein kinase C theta type [EC:2.7.11.13] +K18053 luci; renilla-luciferin 2-monooxygenase [EC:1.13.12.5] +K18054 IDS3_2; 2'-deoxymugineic-acid 2'-dioxygenase / mugineic-acid 3-dioxygenase [EC:1.14.11.24 1.14.11.25] +K18055 HIF1AN; hypoxia-inducible factor 1-alpha inhibitor (HIF hydroxylase) [EC:1.14.11.30] +K18056 pntH, ptlH; 1-deoxypentalenic acid 11beta-hydroxylase [EC:1.14.11.35] +K18057 pntD, penD, ptlD; pentalenolactone F synthase [EC:1.14.11.36] +K18058 asnO; L-asparagine oxygenase [EC:1.14.11.39] +K18059 SULTR4; sulfate transporter 4 +K18060 MTPAP; poly(A) RNA polymerase, mitochondrial [EC:2.7.7.19] +K18061 SBF1_2, MTMR5_13; myotubularin-related protein 5/13 +K18062 cmcI; cephamycin C biosynthesis protein +K18063 cmcJ; cephamycin C biosynthesis protein +K18064 ACR2; arsenical-resistance protein 2 +K18065 CDC25; Cdc25 family phosphatase [EC:3.1.3.48 1.20.4.1] +K18066 TYW5; tRNA wybutosine-synthesizing protein 5 [EC:1.14.11.42] +K18067 pht4; phthalate 4,5-cis-dihydrodiol dehydrogenase [EC:1.3.1.64] +K18068 pht3; phthalate 4,5-dioxygenase [EC:1.14.12.7] +K18069 pht2; phthalate 4,5-dioxygenase reductase component [EC:1.18.1.-] +K18070 pht1, ophD; MFS transporter, ACS family, phthalate transporter +K18071 mhpco; 2-methyl-3-hydroxypyridine 5-carboxylic acid dioxygenase [EC:1.14.13.242] +K18072 parS; two-component system, OmpR family, sensor kinase ParS [EC:2.7.13.3] +K18073 parR; two-component system, OmpR family, response regulator ParR +K18074 tphA2; terephthalate 1,2-dioxygenase oxygenase component alpha subunit [EC:1.14.12.15] +K18075 tphA3; terephthalate 1,2-dioxygenase oxygenase component beta subunit [EC:1.14.12.15] +K18076 tphB; 1,2-dihydroxy-3,5-cyclohexadiene-1,4-dicarboxylate dehydrogenase [EC:1.3.1.53] +K18077 tphA1; terephthalate 1,2-dioxygenase reductase component [EC:1.18.1.-] +K18078 PTPDC1; protein tyrosine phosphatase domain-containing protein 1 [EC:3.1.3.-] +K18079 TPTE, TPIP; PTEN homologous phosphatase +K18080 TNS; tensin +K18081 MTMR1_2; myotubularin-related protein 1/2 [EC:3.1.3.64 3.1.3.95] +K18082 MTMR3_4, ZFYVE10_11; myotubularin-related protein 3/4 [EC:3.1.3.48 3.1.3.64 3.1.3.95] +K18083 MTMR6_7_8; myotubularin-related protein 6/7/8 [EC:3.1.3.64 3.1.3.95] +K18084 MTMR9; myotubularin-related protein 9 +K18085 MTMR10_11_12; myotubularin-related protein 10/11/12 +K18086 MTMR14; myotubularin-related protein 14 [EC:3.1.3.64 3.1.3.95] +K18087 bphAc, bphA3, bphF; biphenyl 2,3-dioxygenase ferredoxin component +K18088 bphAd, bphA4, bphG; biphenyl 2,3-dioxygenase ferredoxin reductase component [EC:1.18.1.3] +K18089 todB, tcbAc; benzene/toluene/chlorobenzene dioxygenase ferredoxin component +K18090 todA, tcbAd; benzene/toluene/chlorobenzene dioxygenase ferredoxin reductase component [EC:1.18.1.3 1.18.1.-] +K18091 pntE, penE, ptlE; pentalenolactone D synthase [EC:1.14.13.170 1.14.13.171] +K18092 etbD; 2-hydroxy-6-oxo-octa-2,4-dienoate hydrolase [EC:3.7.1.-] +K18093 oprD; imipenem/basic amino acid-specific outer membrane pore [EC:3.4.21.-] +K18094 mexX, amrA; membrane fusion protein, multidrug efflux system +K18095 mexY, amrB; multidrug efflux pump +K18096 bjaI, rpaI, braI, rhiI; acyl-homoserine lactone synthase [EC:2.3.1.228 2.3.1.229 2.3.1.-] +K18097 GCY1; glycerol 2-dehydrogenase (NADP+) [EC:1.1.1.156] +K18098 bjaR1, rpaR, rhiR; LuxR family transcriptional regulator, quorum-sensing system regulator BjaR1 +K18099 rhlR, phzR; LuxR family transcriptional regulator, quorum-sensing system regulator RhlR +K18100 rhlA; rhamnosyltransferase subunit A [EC:2.4.1.-] +K18101 rhlB; rhamnosyltransferase subunit B [EC:2.4.1.-] +K18102 GAAB, LGD1; L-galactonate dehydratase [EC:4.2.1.146] +K18103 GAAC, LGA1; L-threo-3-deoxy-hexylosonate aldolase [EC:4.1.2.54] +K18104 abcA, bmrA; ATP-binding cassette, subfamily B, bacterial AbcA/BmrA [EC:7.6.2.2] +K18105 rtcA; RNA 3'-terminal phosphate cyclase (GTP) [EC:6.5.1.5] +K18106 GAAA; D-galacturonate reductase [EC:1.1.1.-] +K18107 GAAD; L-glyceraldehyde reductase [EC:1.1.1.372] +K18108 E4.2.3.111; (-)-alpha-terpineol synthase [EC:4.2.3.111] +K18109 np1; 5-epi-alpha-selinene synthase [EC:4.2.3.90] +K18110 tpc1; avermitilol synthase [EC:4.2.3.96] +K18111 gcoA; (+)-beta-caryophyllene/(+)-caryolan-1-ol synthase [EC:4.2.3.89 4.2.1.138] +K18112 MTPSL26; (E)-2-epi-beta-caryophyllene synthase [EC:4.2.3.137] +K18113 MDS; miltiradiene synthase / copalyl diphosphate synthase [EC:4.2.3.131 5.5.1.12] +K18114 NDPS1; dimethylallylcistransferase [EC:2.5.1.28] +K18115 sqhC; sporulenol synthase [EC:4.2.1.137] +K18116 E4.2.3.51, PHS1; beta-phellandrene synthase (neryl-diphosphate-cyclizing) [EC:4.2.3.51] +K18117 TPS31; viridiflorene synthase [EC:4.2.3.88] +K18118 aarC, cat1; succinyl-CoA:acetate CoA-transferase [EC:2.8.3.18] +K18119 sucD; succinate-semialdehyde dehydrogenase [EC:1.2.1.76] +K18120 4hbD, abfH; 4-hydroxybutyrate dehydrogenase [EC:1.1.1.61] +K18121 GLYR; glyoxylate/succinic semialdehyde reductase [EC:1.1.1.79 1.1.1.-] +K18122 cat2, abfT; 4-hydroxybutyrate CoA-transferase [EC:2.8.3.-] +K18123 HOGA1; 4-hydroxy-2-oxoglutarate aldolase [EC:4.1.3.16] +K18124 gdh2, gdhA; glucose/galactose 1-dehydrogenase (NADP+) [EC:1.1.1.360] +K18125 ssgdh; aldose 1-dehydrogenase [NAD(P)+] [EC:1.1.1.359] +K18126 sskdgK; 2-dehydro-3-deoxygluconokinase / 2-dehydro-3-deoxygalactonokinase [EC:2.7.1.178] +K18127 kdgA; 2-dehydro-3-deoxy-D-gluconate aldolase [EC:4.1.2.51] +K18128 gadh; D-glyceraldehyde dehydrogenase (NADP+) [EC:1.2.1.89] +K18129 mexZ; TetR/AcrR family transcriptional regulator, mexXY operon repressor +K18130 nalC; TetR/AcrR family transcriptional regulator, transcriptional repressor NalC +K18131 mexR; MarR family transcriptional regulator, repressor of the mexAB-oprM multidrug resistance operon +K18132 K18132, porA; major outer membrane protein P.IA +K18133 K18133, porB; major outer membrane protein P.IB +K18134 EOGT; EGF domain-specific O-GlcNAc transferase [EC:2.4.1.255] +K18135 nalD; TetR/AcrR family transcriptional regulator, repressor of the mexAB-oprM multidrug resistance operon +K18136 acrR; TetR/AcrR family transcriptional regulator, multidrug resistance operon repressor +K18137 adeN; TetR/AcrR family transcriptional regulator, repressor of the adeIJK operon +K18138 acrB, mexB, adeJ, smeE, mtrD, cmeB; multidrug efflux pump +K18139 oprM, emhC, ttgC, cusC, adeK, smeF, mtrE, cmeC, gesC; outer membrane protein, multidrug efflux system +K18140 envR, acrS; TetR/AcrR family transcriptional regulator, acrEF/envCD operon repressor +K18141 acrE; membrane fusion protein, multidrug efflux system +K18142 acrF; multidrug efflux pump +K18143 adeS; two-component system, OmpR family, sensor histidine kinase AdeS [EC:2.7.13.3] +K18144 adeR; two-component system, OmpR family, response regulator AdeR +K18145 adeA; membrane fusion protein, multidrug efflux system +K18146 adeB; multidrug efflux pump +K18147 adeC; outer membrane protein, multidrug efflux system +K18148 rtcB; release factor H-coupled RctB family protein +K18149 pbp5, pbp4, pbp3; penicillin-binding protein +K18150 armR; antirepressor for MexR +K18151 UAH; ureidoglycolate amidohydrolase [EC:3.5.1.116] +K18152 BST1, CD157; ADP-ribosyl cyclase 2 [EC:3.2.2.6 2.4.99.20] +K18153 nga; NAD+ glycohydrolase [EC:3.2.2.5] +K18154 RGS2; regulator of G-protein signaling 2 +K18155 AEP3; ATPase expression protein 3, mitochondrial +K18156 ATP23, XRCC6BP1; mitochondrial inner membrane protease ATP23 [EC:3.4.24.-] +K18157 TMEM126A; transmembrane protein 126A +K18158 NCA2; nuclear control of ATPase protein 2 +K18159 NDUFAF1, CIA30; NADH dehydrogenase [ubiquinone] 1 alpha subcomplex assembly factor 1 +K18160 NDUFAF2; NADH dehydrogenase [ubiquinone] 1 alpha subcomplex assembly factor 2 +K18161 NDUFAF4; NADH dehydrogenase [ubiquinone] 1 alpha subcomplex assembly factor 4 +K18162 NDUFAF5; NADH dehydrogenase [ubiquinone] 1 alpha subcomplex assembly factor 5 [EC:2.1.1.-] +K18163 NDUFAF6; NADH dehydrogenase [ubiquinone] 1 alpha subcomplex assembly factor 6 +K18164 NDUFAF7; NADH dehydrogenase [ubiquinone] 1 alpha subcomplex assembly factor 7 +K18165 TMEM126B; complex I assembly factor TMEM126B +K18166 FOXRED1; FAD-dependent oxidoreductase domain-containing protein 1 +K18167 SDHAF1; succinate dehydrogenase assembly factor 1 +K18168 SDHAF2, SDH5; succinate dehydrogenase assembly factor 2 +K18169 TTC19; tetratricopeptide repeat protein 19, mitochondrial +K18170 LYRM7, MZM1; complex III assembly factor LYRM7 +K18171 CMC1; COX assembly mitochondrial protein 1 +K18172 CMC2; COX assembly mitochondrial protein 2 +K18173 COA1; cytochrome c oxidase assembly factor 1 +K18174 COA2; cytochrome c oxidase assembly factor 2 +K18175 CCDC56, COA3; cytochrome c oxidase assembly factor 3, animal type +K18176 COA3; cytochrome c oxidase assembly factor 3, fungi type +K18177 COA4; cytochrome c oxidase assembly factor 4 +K18178 COA5, PET191; cytochrome c oxidase assembly factor 5 +K18179 COA6; cytochrome c oxidase assembly factor 6 +K18180 COA7, SELRC1, RESA1; cytochrome c oxidase assembly factor 7 +K18181 COX14; cytochrome c oxidase assembly factor 14 +K18182 COX16; cytochrome c oxidase assembly protein subunit 16 +K18183 COX19; cytochrome c oxidase assembly protein subunit 19 +K18184 COX20; cytochrome c oxidase assembly protein subunit 20 +K18185 COX23; cytochrome c oxidase assembly protein subunit 23 +K18186 PET100; protein PET100, animal type +K18187 PET100F; protein PET100, fungi type +K18188 PET117; protein PET117 +K18189 TACO1; translational activator of cytochrome c oxidase 1 +K18190 FASTKD2; FAST kinase domain-containing protein 2 +K18191 FMC1; ATP synthase assembly factor FMC1, mitochondrial +K18192 ATP10; mitochondrial ATPase complex subunit ATP10 +K18193 MP68, MLQ; 6.8 kDa mitochondrial proteolipid +K18194 USMG5, DAPIT; up-regulated during skeletal muscle growth protein 5 +K18195 RGL4, rhiE; rhamnogalacturonan endolyase [EC:4.2.2.23] +K18196 STIM2; stromal interaction molecule 2 +K18197 yesW; rhamnogalacturonan endolyase [EC:4.2.2.23] +K18198 yesX; rhamnogalacturonan exolyase [EC:4.2.2.24] +K18199 inhA; cyclohexyl-isocyanide hydratase [EC:4.2.1.103] +K18200 PAL; peptidylamidoglycolate lyase [EC:4.3.2.5] +K18201 AGPHD1; hydroxylysine kinase [EC:2.7.1.81] +K18202 AGXT2L2; 5-phosphonooxy-L-lysine phospho-lyase [EC:4.2.3.134] +K18203 LCMT1; [phosphatase 2A protein]-leucine-carboxy methyltransferase [EC:2.1.1.233] +K18204 D2HGDH; D-2-hydroxyglutarate dehydrogenase [EC:1.1.99.39] +K18205 hypBA1; non-reducing end beta-L-arabinofuranosidase [EC:3.2.1.185] +K18206 hypBA2; beta-L-arabinobiosidase [EC:3.2.1.187] +K18207 POMGNT2, GTDC2; protein O-mannose beta-1,4-N-acetylglucosaminyltransferase [EC:2.4.1.312] +K18208 RNLS; renalase [EC:1.6.3.5] +K18209 tfrA; fumarate reductase (CoM/CoB) subunit A [EC:1.3.4.1] +K18210 tfrB; fumarate reductase (CoM/CoB) subunit B [EC:1.3.4.1] +K18211 SNAP25; synaptosomal-associated protein 25 +K18212 SNAP47; synaptosomal-associated protein 47 +K18213 PRORP; proteinaceous RNase P [EC:3.1.26.5] +K18214 tetP_A, tet40; MFS transporter, DHA3 family, tetracycline resistance protein +K18215 tetV; MFS transporter, DHA3 family, tetracycline resistance protein +K18216 steA, tetA46; ATP-binding cassette, subfamily B, tetracycline resistant protein +K18217 steB, tetB46; ATP-binding cassette, subfamily B, tetracycline resistant protein +K18218 tet35; tetracycline resistance efflux pump +K18219 txr; sigma-54 dependent transcriptional regulator, tetracycline resistant transcriptional regulator +K18220 tetM, tetO; ribosomal protection tetracycline resistance protein +K18221 tetX; tetracycline 11a-monooxygenase, tetracycline resistance protein [EC:1.14.13.231] +K18222 ARSE; arylsulfatase E [EC:3.1.6.-] +K18223 prmA; propane 2-monooxygenase large subunit [EC:1.14.13.227] +K18224 prmC; propane 2-monooxygenase small subunit [EC:1.14.13.227] +K18225 prmB; propane monooxygenase reductase component [EC:1.18.1.-] +K18226 prmD; propane monooxygenase coupling protein +K18227 cmtAa; p-cumate 2,3-dioxygenase ferredoxin reductase component [EC:1.18.1.3] +K18228 CYP4A21; taurochenodeoxycholate 6alpha-hydroxylase [EC:1.14.14.57] +K18229 PAMO; phenylacetone monooxygenase [EC:1.14.13.92] +K18230 tylC, oleB, carA, srmB; macrolide transport system ATP-binding/permease protein +K18231 msr, vmlR; macrolide transport system ATP-binding/permease protein +K18232 oleC4; oleandomycin transport system ATP-binding protein +K18233 oleC5; oleandomycin transport system permease protein +K18234 vat; virginiamycin A acetyltransferase [EC:2.3.1.-] +K18235 vgb; virginiamycin B lyase [EC:4.2.99.-] +K18236 lnuB_F, lin; lincosamide nucleotidyltransferase B/F +K18237 K18237; ribose 1,5-bisphosphate isomerase [EC:5.3.1.29] +K18239 fkbO, rapK; chorismatase [EC:3.3.2.13] +K18240 xanB2; chorismate lyase / 3-hydroxybenzoate synthase [EC:4.1.3.40 4.1.3.45] +K18241 ITM2A; integral membrane protein 2A +K18242 nagG; salicylate 5-hydroxylase large subunit [EC:1.14.13.172] +K18243 nagH; salicylate 5-hydroxylase small subunit [EC:1.14.13.172] +K18244 mmgC; acyl-CoA dehydrogenase [EC:1.3.99.-] +K18245 CA2; carbonic anhydrase 2 [EC:4.2.1.1] +K18246 CA4; carbonic anhydrase 4 [EC:4.2.1.1] +K18247 DESN; Delta11-fatty-acid desaturase [EC:1.14.19.5] +K18248 andAb; anthranilate 1,2-dioxygenase ferredoxin component +K18249 andAa; anthranilate 1,2-dioxygenase ferredoxin reductase component [EC:1.18.1.-] +K18250 naaB; 5-nitrosalicylate dioxygenase [EC:1.13.11.64] +K18251 phtAa; phthalate 3,4-dioxygenase subunit alpha [EC:1.14.12.-] +K18252 phtAb; phthalate 3,4-dioxygenase subunit beta [EC:1.14.12.-] +K18253 phtAc; phthalate 3,4-dioxygenase ferredoxin component +K18254 phtAd; phthalate 3,4-dioxygenase ferredoxin reductase component [EC:1.18.1.3] +K18255 phtB; phthalate 3,4-cis-dihydrodiol dehydrogenase [EC:1.3.1.-] +K18256 phtC; 3,4-dihydroxyphthalate decarboxylase [EC:4.1.1.69] +K18257 phdE; cis-3,4-dihydrophenanthrene-3,4-diol dehydrogenase [EC:1.3.1.49] +K18258 CRYM; thiomorpholine-carboxylate dehydrogenase [EC:1.5.1.25] +K18259 AMN; protein amnionless +K18260 CC2D1; coiled-coil and C2 domain-containing protein 1 +K18261 DYSF; dysferlin +K18262 EFEMP1, FBLN3; EGF-containing fibulin-like extracellular matrix protein 1 +K18263 ADGRV1, GPR98, USH2C; adhesion G-protein coupled receptor V1 +K18264 ITM2B; integral membrane protein 2B +K18265 ITM2C, BRI3; integral membrane protein 2C +K18266 NDRG1; protein NDRG1 +K18267 NEB; nebulin +K18268 NPHS2; podocin +K18269 PDCD10, CCM3; programmed cell death protein 10 +K18270 RAB3GAP1; Rab3 GTPase-activating protein catalytic subunit +K18271 RBP4; retinol-binding protein 4 +K18272 RP2; protein XRP2 +K18273 TECTA; alpha-tectorin +K18274 UMOD; uromodulin +K18275 phdK; 2-formylbenzoate dehydrogenase [EC:1.2.1.78] +K18276 hspB; 6-hydroxy-3-succinoylpyridine 3-monooxygenase [EC:1.14.13.163] +K18277 tmm; trimethylamine monooxygenase [EC:1.14.13.148] +K18278 THI5; pyrimidine precursor biosynthesis enzyme +K18279 FTMPT3; verruculogen prenyltransferase [EC:2.5.1.107] +K18280 FTMD; 6-hydroxytryprostatin B O-methyltransferase [EC:2.1.1.293] +K18281 FTMA; brevianamide F synthase [EC:6.3.2.-] +K18282 cynD; cyanide dihydratase [EC:3.5.5.-] +K18283 PDE2A; cGMP-dependent 3',5'-cyclic phosphodiesterase [EC:3.1.4.17] +K18284 K18284; adenosylhomocysteine/aminodeoxyfutalosine nucleosidase [EC:3.2.2.9 3.2.2.30] +K18285 mqnE; aminodeoxyfutalosine synthase [EC:2.5.1.120] +K18286 add; aminodeoxyfutalosine deaminase [EC:3.5.4.40] +K18287 griI; 2-amino-4,5-dihydroxy-6-oxo-7-(phosphooxy)heptanoate synthase [EC:4.1.2.56] +K18288 ict-Y; itaconate CoA-transferase [EC:2.8.3.-] +K18289 ict-P; itaconate CoA-transferase [EC:2.8.3.- 2.8.3.22] +K18290 ich-Y; itaconyl-CoA hydratase [EC:4.2.1.56] +K18291 ich-P; itaconyl-CoA hydratase / mesaconyl-C4 CoA hydratase [EC:4.2.1.56 4.2.1.-] +K18292 E4.1.3.25; (S)-citramalyl-CoA lyase [EC:4.1.3.25] +K18293 cymAb; p-cymene methyl-monooxygenase electron transfer component [EC:1.18.1.3] +K18294 nfxB; TetR/AcrR family transcriptional regulator, mexCD-oprJ operon repressor +K18295 mexC; membrane fusion protein, multidrug efflux system +K18296 mexD; multidrug efflux pump +K18297 mexT; LysR family transcriptional regulator, mexEF-oprN operon transcriptional activator +K18298 mexE; membrane fusion protein, multidrug efflux system +K18299 mexF; multidrug efflux pump +K18300 oprN; outer membrane protein, multidrug efflux system +K18301 mexL; TetR/AcrR family transcriptional regulator, mexJK operon transcriptional repressor +K18302 mexJ; membrane fusion protein, multidrug efflux system +K18303 mexK; multidrug efflux pump +K18304 lasR; LuxR family transcriptional regulator, quorum-sensing system regulator LasR +K18305 mexG; transmembrane protein +K18306 mexH; membrane fusion protein, multidrug efflux system +K18307 mexI; multidrug efflux pump +K18308 opmD; outer membrane protein, multidrug efflux system +K18309 NAT8L; aspartate N-acetyltransferase [EC:2.3.1.17] +K18310 RIMKLB, NAAGS-I; beta-citrylglutamate/N-acetylaspartylglutamate synthase [EC:6.3.1.17 6.3.2.41] +K18311 RIMKLA, NAAGS-II; N-acetylaspartylglutamate/N-acetylaspartylglutamylglutamate synthase [EC:6.3.2.41 6.3.2.42] +K18312 styC; styrene-oxide isomerase [EC:5.3.99.7] +K18313 sct; succinyl-CoA---D-citramalate CoA-transferase [EC:2.8.3.20] +K18314 E4.1.3.46, ccl; (R)-citramalyl-CoA lyase [EC:4.1.3.46] +K18315 cpmC, carC; (5R)-carbapenem-3-carboxylate synthase [EC:1.14.20.3] +K18316 cpmA, carA; carbapenam-3-carboxylate synthase [EC:6.3.3.6] +K18317 cpmB, carB; carboxymethylproline synthase [EC:2.3.1.226] +K18318 cpmD, carD; carbapenem biosynthesis protein, putative proline dehydrogenase [EC:1.5.-.-] +K18319 cpmE, carE; carbapenem biosynthesis protein CpmE +K18320 IS15, IS26; transposase, IS6 family +K18321 smeA; membrane fusion protein, multidrug efflux system +K18322 smeB; multidrug efflux pump +K18323 smeC; outer membrane protein, multidrug efflux system +K18324 acrD; multidrug efflux pump +K18325 ramA; AraC family of transcriptional regulator, multidrug resistance transcriptional activator +K18326 mdtD; MFS transporter, DHA2 family, multidrug resistance protein +K18327 REXO4, REX4; RNA exonuclease 4 [EC:3.1.-.-] +K18328 DBR1; lariat debranching enzyme [EC:3.1.-.-] +K18329 ISG20L2; interferon-stimulated 20 kDa exonuclease-like 2 [EC:3.1.-.-] +K18330 hndA; NADP-reducing hydrogenase subunit HndA [EC:1.12.1.3] +K18331 hndC; NADP-reducing hydrogenase subunit HndC [EC:1.12.1.3] +K18332 hndD; NADP-reducing hydrogenase subunit HndD [EC:1.12.1.3] +K18333 E1.1.1.435; L-fucose dehydrogenase [EC:1.1.1.435] +K18334 fucD; L-fuconate dehydratase [EC:4.2.1.68] +K18335 E1.1.1.434; 2-dehydro-3-deoxy-L-fuconate 4-dehydrogenase [EC:1.1.1.434] +K18336 lra6; 2,4-didehydro-3-deoxy-L-rhamnonate hydrolase [EC:3.7.1.26] +K18337 LRA1; L-rhamnose 1-dehydrogenase [EC:1.1.1.378 1.1.1.377 1.1.1.173] +K18338 LRA2; L-rhamnono-1,4-lactonase [EC:3.1.1.65] +K18339 LRA4; 2-keto-3-deoxy-L-rhamnonate aldolase [EC:4.1.2.53] +K18340 AEN, ISG20L1; apoptosis-enhancing nuclease [EC:3.1.-.-] +K18341 TBC1D1; TBC1 domain family member 1 +K18342 OTUD6; OTU domain-containing protein 6 [EC:3.4.19.12] +K18343 OTULIN; ubiquitin thioesterase otulin [EC:3.4.19.12] +K18344 vanRB, vanR, vanRD; two-component system, OmpR family, response regulator VanR +K18345 vanSB, vanS, vanSD; two-component system, OmpR family, sensor histidine kinase VanS [EC:2.7.13.3] +K18346 vanW; vancomycin resistance protein VanW +K18347 vanH; D-specific alpha-keto acid dehydrogenase [EC:1.1.1.-] +K18348 vanT; serine/alanine racemase [EC:5.1.1.18 5.1.1.1] +K18349 vanRC, vanRE, vanRG; two-component system, OmpR family, response regulator VanR +K18350 vanSC, vanSE, vanSG; two-component system, OmpR family, sensor histidine kinase VanS [EC:2.7.13.3] +K18351 vanSAc; two-component system, OmpR family, sensor histidine kinase VanS [EC:2.7.13.3] +K18352 vanRAc; two-component system, OmpR family, response regulator VanR +K18353 vanJ; vancomycin resistance protein VanJ +K18354 vanK; vancomycin resistance protein VanK +K18355 padG; phenylglyoxylate dehydrogenase alpha subunit [EC:1.2.1.58] +K18356 padI; phenylglyoxylate dehydrogenase beta subunit [EC:1.2.1.58] +K18357 padE; phenylglyoxylate dehydrogenase gamma subunit [EC:1.2.1.58] +K18358 padF; phenylglyoxylate dehydrogenase delta subunit [EC:1.2.1.58] +K18359 padH; phenylglyoxylate dehydrogenase epsilon subunit [EC:1.2.1.58] +K18360 padA; phenylacetyl-CoA:acceptor oxidoreductase accessory protein +K18361 padB; phenylacetyl-CoA:acceptor oxidoreductase [EC:1.17.5.1 3.1.2.25] +K18362 padC; phenylacetyl-CoA:acceptor oxidoreductase 27-kDa subunit +K18363 padD; phenylacetyl-CoA:acceptor oxidoreductase 26-kDa subunit +K18364 bphH, xylJ, tesE; 2-oxopent-4-enoate/cis-2-oxohex-4-enoate hydratase [EC:4.2.1.80 4.2.1.132] +K18365 bphI, xylK, nahM, tesG; 4-hydroxy-2-oxovalerate/4-hydroxy-2-oxohexanoate aldolase [EC:4.1.3.39 4.1.3.43] +K18366 bphJ, xylQ, nahO, tesF; acetaldehyde/propanal dehydrogenase [EC:1.2.1.10 1.2.1.87] +K18367 CoADR; CoA-dependent NAD(P)H sulfur oxidoreductase [EC:1.8.1.18] +K18368 CSE; caffeoylshikimate esterase [EC:3.1.1.-] +K18369 adh2; alcohol dehydrogenase [EC:1.1.1.-] +K18370 adh3; alcohol dehydrogenase [EC:1.1.1.-] +K18371 acmA; acetone monooxygenase (methyl acetate-forming) [EC:1.14.13.226] +K18372 acmB; methyl acetate hydrolase [EC:3.1.1.114] +K18373 hrpB1; type III secretion protein HrpB1 +K18374 hrpB2; type III secretion inner rod protein HrpB2 +K18375 hrpE; type III secretion hrp pilus HrpE +K18376 hrpF; type III secretion translocon protein HrpF +K18377 hpa2; lysozyme-related protein Hpa2 +K18378 hpa1; type III secretion harpin protein Hpa1 +K18379 hpaA; type III secretion regulatory protein HpaA +K18380 hpaB; type III secretion control protein HpaB +K18381 hpaC; type III secretion control protein HpaP +K18382 adh1; NAD+-dependent secondary alcohol dehydrogenase Adh1 [EC:1.1.1.-] +K18383 ferB; feruloyl-CoA hydratase/lyase [EC:4.1.2.61] +K18384 L3HYPDH; trans-L-3-hydroxyproline dehydratase [EC:4.2.1.77] +K18385 PAXC, ATMC, LTMC; geranylgeranyldiphosphate transferase +K18386 PAXM, ATMM, LTMM; FAD dependent monooxygenase [EC:1.14.13.-] +K18387 PAXB, ATMB, LTMB; paspaline synthase +K18388 PAXP, ATMP, CYP653C; cytochrome P450 monooxygenase [EC:1.14.13.-] +K18389 PAXQ, ATMQ, CYP698A; cytochrome P450 monooxygenase [EC:1.14.13.-] +K18390 PAXD; dimethylallyldiphosphate transferase +K18391 ATMD; dimethylallyldiphosphate transferase [EC:2.5.1.-] +K18392 LTMP, TERP; cytochrome P450 monooxygenase [EC:1.14.13.-] +K18393 LTMQ, TERQ; cytochrome P450 monooxygenase [EC:1.14.13.-] +K18394 LTME; dimethylallyldiphosphate transferase +K18395 LTMJ; cytochrome P450 monooxygenase [EC:1.14.13.-] +K18396 LTMF; dimethylallyldiphosphate transferase [EC:2.5.1.-] +K18397 LTMK; cytochrome P450 monooxygenase [EC:1.14.21.-] +K18398 ENPP5; ectonucleotide pyrophosphatase/phosphodiesterase family member 5 [EC:3.1.-.-] +K18399 BPHL; valacyclovir hydrolase [EC:3.1.-.-] +K18400 KANSL1; KAT8 regulatory NSL complex subunit 1 +K18401 KANSL2; KAT8 regulatory NSL complex subunit 2 +K18402 PHF20; PHD finger protein 20 +K18403 MSL3; male-specific lethal 3 +K18404 TDRD3; tudor domain-containing protein 3 +K18405 TDRD1_4_6_7; tudor domain-containing protein 1/4/6/7 +K18406 TDRKH, TDRD2; tudor domain-containing protein 2 +K18407 TDRD5; tudor domain-containing protein 5 +K18408 TDRD9; ATP-dependent RNA helicase TDRD9 [EC:5.6.2.5] +K18409 TDRD12; ATP-dependent RNA helicase TDRD12 [EC:5.6.2.5] +K18410 ASZ1, GASZ; ankyrin repeat, SAM and basic leucine zipper domain-containing protein 1 +K18411 MAEL; protein maelstrom +K18412 TNRC6, GW182; trinucleotide repeat-containing gene 6 protein +K18413 KRIMP; krimper +K18414 SQU; squash +K18415 VRET; vreteno +K18416 THEX1, ERI1; 3'-5' exoribonuclease 1 [EC:3.1.-.-] +K18417 ERI2; ERI1 exoribonuclease 2 [EC:3.1.-.-] +K18418 ERI3, PINT1; ERI1 exoribonuclease 3 [EC:3.1.-.-] +K18419 DCGR8; microprocessor complex subunit DGCR8 +K18420 TARBP2; RISC-loading complex subunit TARBP2 +K18421 R2D2; R2D2 +K18422 MOV10; helicase MOV-10 [EC:5.6.2.5] +K18423 CSE1, CAS, XPO2; exportin-2 (importin alpha re-exporter) +K18424 ENPP4; ectonucleotide pyrophosphatase/phosphodiesterase family member 4 [EC:3.6.1.29] +K18425 dhaa; 3-hydroxy-D-aspartate aldolase [EC:4.1.3.41] +K18426 ECHDC1; ethylmalonyl-CoA/methylmalonyl-CoA decarboxylase [EC:4.1.1.94 4.1.1.-] +K18427 hpdB; 4-hydroxyphenylacetate decarboxylase large subunit [EC:4.1.1.83] +K18428 hpdC; 4-hydroxyphenylacetate decarboxylase small subunit [EC:4.1.1.83] +K18429 legG, neuC2; GDP/UDP-N,N'-diacetylbacillosamine 2-epimerase (hydrolysing) [EC:3.2.1.184] +K18430 legI, neuB2; N,N'-diacetyllegionaminate synthase [EC:2.5.1.101] +K18431 legF, ptmB; CMP-N,N'-diacetyllegionaminic acid synthase [EC:2.7.7.82] +K18433 virD1; type IV secretion system T-DNA border endonuclease VirD1 +K18434 virD2; type IV secretion system T-DNA border endonuclease VirD2 +K18435 SOX9; transcription factor SOX9 (SOX group E) +K18436 PDE7; high affinity cAMP-specific 3',5'-cyclic phosphodiesterase 7 [EC:3.1.4.53] +K18437 PDE8; high affinity cAMP-specific and IBMX-insensitive 3',5'-cyclic phosphodiesterase 8 [EC:3.1.4.53] +K18438 PDE10; cAMP and cAMP-inhibited cGMP 3',5'-cyclic phosphodiesterase 10 [EC:3.1.4.17 3.1.4.35] +K18439 ARAP1; Arf-GAP with Rho-GAP domain, ANK repeat and PH domain-containing protein 1 +K18440 ARAP2; Arf-GAP with Rho-GAP domain, ANK repeat and PH domain-containing protein 2 +K18441 CYTH; cytohesin +K18442 ARFGEF, BIG; brefeldin A-inhibited guanine nucleotide-exchange protein +K18443 GBF1; golgi-specific brefeldin A-resistance guanine nucleotide exchange factor 1 +K18444 rrp1; two-component system, glycerol uptake and utilization response regulator +K18445 ndx1; diadenosine hexaphosphate hydrolase (ATP-forming) [EC:3.6.1.61] +K18446 ygiF; triphosphatase [EC:3.6.1.25] +K18447 NUDX14; ADP-sugar diphosphatase [EC:3.6.1.21] +K18448 BNIP2; BCL2/adenovirus E1B 19 kDa protein-interacting protein 2 +K18449 PRUNE2, BMCC1; prune homolog 2 +K18450 ATCAY; caytaxin +K18451 BCL2L10; Bcl-2-like protein 10 +K18452 BIK; Bcl-2-interacting killer +K18453 NUDT23; ADP-ribose/FAD diphosphatase [EC:3.6.1.13 3.6.1.18] +K18454 deaA; chitin disaccharide deacetylase [EC:3.5.1.105] +K18455 mca; mycothiol S-conjugate amidase [EC:3.5.1.115] +K18456 E3.5.4.32; 8-oxoguanine deaminase [EC:3.5.4.32] +K18457 laaA; L-proline amide hydrolase [EC:3.5.1.101] +K18458 ACY3; N-acyl-aromatic-L-amino acid amidohydrolase [EC:3.5.1.114] +K18459 gpuA; guanidinopropionase [EC:3.5.3.17] +K18460 XPO7, EXP7; exportin-7 +K18461 WASH1; WAS protein family homolog 1 +K18462 FAM21; WASH complex subunit FAM21 +K18463 CCDC53; WASH complex subunit CCDC53 +K18464 RTSC, SPG8; WASH complex subunit strumpellin +K18465 MRT43, SWIP; WASH complex subunit 7 +K18466 VPS26A_B; vacuolar protein sorting-associated protein 26A/B +K18467 VPS29; vacuolar protein sorting-associated protein 29 +K18468 VPS35; vacuolar protein sorting-associated protein 35 +K18469 TBC1D5; TBC1 domain family member 5 +K18470 ARHGAP1, CDC42GAP; Rho GTPase-activating protein 1 +K18471 ydjG; methylglyoxal reductase [EC:1.1.1.-] +K18472 accD6; acetyl-CoA/propionyl-CoA carboxylase carboxyl transferase subunit [EC:6.4.1.2 6.4.1.3 2.1.3.15] +K18473 fabY; acetoacetyl-[acyl-carrier protein] synthase [EC:2.3.1.180] +K18474 fabM; trans-2-decenoyl-[acyl-carrier protein] isomerase [EC:5.3.3.14] +K18475 fliB; lysine-N-methylase [EC:2.1.1.-] +K18476 tetR; TetR/AcrR family transcriptional regulator, tetracycline repressor protein +K18477 RMT2; type IV protein arginine methyltransferase [EC:2.1.1.322] +K18478 yihV; sulfofructose kinase [EC:2.7.1.184] +K18479 yihS; sulfoquinovose isomerase [EC:5.3.1.31] +K18480 linN; cholesterol transport system auxiliary component +K18481 mas; Mce-associated membrane protein +K18482 ADCL; 4-amino-4-deoxychorismate lyase [EC:4.1.3.38] +K18483 MYF4, MYOG; myogenic factor 4 (myogenin) +K18484 MYF5; myogenic factor 5 +K18485 MYF6, MRF4; myogenic factor 6 +K18486 HAND2; heart-and neural crest derivatives-expressed protein 2 +K18487 ZIC3; zinc finger protein ZIC 3 +K18488 DLX2; homeobox protein DLX2 +K18489 DLX5; homeobox protein DLX5 +K18490 OTX2; homeobox protein OTX2 +K18491 ESX1; homeobox protein ESX1 +K18492 ISL2; insulin gene enhancer protein ISL-2 +K18493 LHX5; LIM homeobox protein 5 +K18494 SETDB2; [histone H3]-lysine9 N-trimethyltransferase SETDB2 [EC:2.1.1.355] +K18495 FTMT; ferritin, mitochondrial [EC:1.16.3.1] +K18496 FGF1; fibroblast growth factor 1 +K18497 FGF2; fibroblast growth factor 2 +K18498 DUSP9, MKP4; dual specificity phosphatase 9 [EC:3.1.3.16 3.1.3.48] +K18499 SKIL; Ski-like protein +K18502 dsrA; small regulatory RNA DsrA +K18503 chiX, sroB; small regulatory RNA ChiX +K18504 arcZ; small regulatory RNA ArcZ +K18505 glmZ; small regulatory RNA GlmZ +K18506 sgrS; small regulatory RNA SgrS +K18507 ryhB; small regulatory RNA RyhB +K18508 rybB; small regulatory RNA RybB +K18509 rydC; small regulatory RNA RydC +K18510 fnrS; small regulatory RNA FnrS +K18511 micA; small regulatory RNA MicA +K18512 micC; small regulatory RNA MicC +K18513 micF; small regulatory RNA MicF +K18514 mgrR; small regulatory RNA MgrR +K18515 csrB; small regulatory RNA CsrB +K18516 csrC; small regulatory RNA CsrC +K18517 dicF; small regulatory RNA DicF +K18518 rprA; small regulatory RNA RprA +K18519 rseX; small regulatory RNA RseX +K18520 cyaR, ryeE; small regulatory RNA CyaR +K18521 gcvB; small regulatory RNA GcvB +K18522 omrA, rygA; small regulatory RNA OmrA +K18523 omrB, rygB; small regulatory RNA OmrB +K18524 symR; sRNA antisense regulator of SymE protein +K18525 gadY; small regulatory RNA GadY +K18526 istR; sRNA antisense regulator of TisB protein +K18527 spf; small regulatory RNA Spot 42 +K18528 oxyS; small regulatory RNA OxyS +K18529 KSR2; kinase suppressor of Ras 2 [EC:2.7.11.1] +K18530 frvX; putative aminopeptidase FrvX [EC:3.4.11.-] +K18531 frvR; putative frv operon regulatory protein +K18532 AK6, FAP7; adenylate kinase [EC:2.7.4.3] +K18533 AK9; adenylate/nucleoside-diphosphate kinase [EC:2.7.4.3 2.7.4.6] +K18534 K18534; MPBQ/MSBQ methyltransferase [EC:2.1.1.295] +K18535 thnA; putative oxidoreductase +K18536 thnD; putative oxidoreductase +K18537 thnK; putative methyltransferase +K18538 thnN; thienamycin biosynthesis protein ThnN +K18539 thnO; thienamycin biosynthesis protein ThnO +K18540 ramA; (R)-amidase [EC:3.5.1.100] +K18541 mdlY; mandelamide amidase [EC:3.5.1.86] +K18542 LCE; choriolysin L [EC:3.4.24.66] +K18543 HCE; choriolysin H [EC:3.4.24.67] +K18544 sprA; streptogrisin A [EC:3.4.21.80] +K18545 sprB; streptogrisin B [EC:3.4.21.81] +K18546 sprC; streptogrisin C [EC:3.4.21.-] +K18547 sprD; streptogrisin D [EC:3.4.21.-] +K18548 sprE; glutamyl endopeptidase II [EC:3.4.21.82] +K18549 ALP; oryzin [EC:3.4.21.63] +K18550 ISN1; IMP and pyridine-specific 5'-nucleotidase [EC:3.1.3.99 3.1.3.-] +K18551 SDT1; pyrimidine and pyridine-specific 5'-nucleotidase [EC:3.1.3.-] +K18552 cmlA, cmlB, floR; MFS transporter, DHA1 family, chloramphenicol/florfenicol resistance protein +K18553 cmlR, cmx; MFS transporter, DHA1 family, chloramphenicol resistance protein +K18554 cpt; chloramphenicol 3-O phosphotransferase [EC:2.7.1.-] +K18555 qnr, mcbG; fluoroquinolone resistance protein +K18556 frdA; NADH-dependent fumarate reductase subunit A [EC:1.3.1.6] +K18557 frdB; NADH-dependent fumarate reductase subunit B [EC:1.3.1.6] +K18558 frdC; NADH-dependent fumarate reductase subunit C +K18559 frdD; NADH-dependent fumarate reductase subunit D +K18560 frdE; NADH-dependent fumarate reductase subunit E +K18561 FRD; FAD-dependent fumarate reductase [EC:1.3.8.-] +K18562 thnQ, cmmQ; 2-oxoglutarate-dependent dioxygenase [EC:1.14.20.-] +K18563 thnL; methyltransferase [EC:2.1.1.-] +K18564 thnP; methyltransferase [EC:2.1.1.-] +K18565 thnG, cmmG; 2-oxoglutarate-dependent dioxygenase [EC:1.14.20.-] +K18566 thnF, cmmF; N-acetyltransferase [EC:2.3.1.-] +K18567 pbuE; MFS transporter, DHA1 family, purine base/nucleoside efflux pump +K18568 thnR; coenzyme A diphosphatase [EC:3.6.1.77] +K18569 thnH; 4'-phosphopantetheine phosphatase [EC:3.1.3.110] +K18570 cmm17; putative hydratase +K18571 cmmSu; putative sulfotransferase [EC:2.8.2.-] +K18572 cmmT, thnT; putative pantetheine hydrolase [EC:3.5.1.-] +K18573 ICP55; intermediate cleaving peptidase 55 [EC:3.4.11.26] +K18574 ptpA; Xaa-Xaa-Pro tripeptidyl-peptidase [EC:3.4.14.12] +K18575 TMEM86B; alkenylglycerophosphocholine hydrolase [EC:3.3.2.2] +K18576 XEG; xyloglucan-specific endo-beta-1,4-glucanase [EC:3.2.1.151] +K18577 EBM; mannosylglycoprotein endo-beta-mannosidase [EC:3.2.1.152] +K18578 CEL74A; xyloglucan-specific exo-beta-1,4-glucanase [EC:3.2.1.155] +K18579 6GAL; galactan endo-1,6-beta-galactosidase [EC:3.2.1.164] +K18580 RHGA; rhamnogalacturonan hydrolase [EC:3.2.1.171] +K18581 ugl; unsaturated chondroitin disaccharide hydrolase [EC:3.2.1.180] +K18582 thnM; carbapenam-3-carboxylate synthase [EC:6.3.3.6] +K18583 thnE; carboxymethylproline synthase [EC:2.3.1.226] +K18584 ACTR3, ARP3; actin-related protein 3 +K18585 IF; intermediate filament protein if +K18586 COQ4; ubiquinone biosynthesis protein COQ4 +K18587 COQ9; ubiquinone biosynthesis protein COQ9 +K18588 COQ10; coenzyme Q-binding protein COQ10 +K18589 dfrA1, dhfr; dihydrofolate reductase (trimethoprim resistance protein) [EC:1.5.1.3] +K18590 dfrA12, dhfr; dihydrofolate reductase (trimethoprim resistance protein) [EC:1.5.1.3] +K18591 dfrD, dhfr; dihydrofolate reductase (trimethoprim resistance protein) [EC:1.5.1.3] +K18592 GGT1_5, CD224; gamma-glutamyltranspeptidase / glutathione hydrolase / leukotriene-C4 hydrolase [EC:2.3.2.2 3.4.19.13 3.4.19.14] +K18593 E6.2.1.56; 4-hydroxybutyrate---CoA ligase (ADP-forming) [EC:6.2.1.56] +K18594 K18594; 3-hydroxypropionyl-CoA synthetase (ADP-forming) [EC:6.2.1.-] +K18595 EML1_2; echinoderm microtubule-associated protein-like 1/2 +K18596 EML3; echinoderm microtubule-associated protein-like 3 +K18597 EML5; echinoderm microtubule-associated protein-like 5 +K18598 EML6; echinoderm microtubule-associated protein-like 6 +K18599 JNM1; nuclear migration protein JNM1 +K18600 LDB18; potein LDB18 +K18601 K18601; aldehyde dehydrogenase [EC:1.2.1.-] +K18602 K18602; malonic semialdehyde reductase [EC:1.1.1.-] +K18603 K18603; acetyl-CoA/propionyl-CoA carboxylase [EC:6.4.1.2 6.4.1.3] +K18604 K18604; acetyl-CoA/propionyl-CoA carboxylase [EC:6.4.1.2 6.4.1.3 2.1.3.15] +K18605 K18605; biotin carboxyl carrier protein +K18606 HPPR; hydroxyphenylpyruvate reductase [EC:1.1.1.237] +K18607 pno; pyridoxine 4-oxidase [EC:1.1.3.12] +K18608 ppaT; pyridoxamine---pyruvate transaminase [EC:2.6.1.30] +K18609 pldh; pyridoxal 4-dehydrogenase [EC:1.1.1.107] +K18610 pdla; 4-pyridoxolactonase [EC:3.1.1.27] +K18611 K18611; 4-pyridoxate dehydrogenase [EC:1.1.99.42] +K18612 E1.2.1.100; 5-formyl-3-hydroxy-2-methylpyridine 4-carboxylic acid 5-dehydrogenase [EC:1.2.1.100] +K18613 K18613; 3-hydroxy-2-methylpyridine-4,5-dicarboxylate 4-decarboxylase [EC:4.1.1.51] +K18614 K18614; 2-(acetamidomethylene)succinate hydrolase [EC:3.5.1.29] +K18615 RCSD1, CAPZIP; CapZ-interacting protein +K18616 AFAP1; actin filament associated protein 1 +K18617 AIF1; allograft inflammatory factor 1 +K18618 GAS7; growth arrest-specific protein 7 +K18619 CORO7; coronin-7 +K18620 CTXA_B; cortexillin 1/2 +K18621 ANLN; actin-binding protein anillin +K18622 ADD; adducin +K18623 COBL; protein cordon-bleu +K18624 MAEA, EMP; macrophage erythroblast attacher +K18625 SHROOM; protein Shroom +K18626 TCHH; trichohyalin +K18627 KIF25; kinesin family member 25 +K18628 TEKT1; tektin-1 +K18629 TEKT2; tektin-2 +K18630 TEKT3; tektin-3 +K18631 TEKT4; tektin-4 +K18632 TEKT5; tektin-5 +K18633 MZT1, GIP1, GIP2; mitotic-spindle organizing protein 1 +K18634 SMRP1; spermatid-specific manchette-related protein 1 +K18635 SPR1; protein SPIRAL1 and related proteins +K18636 TAN1; microtubule-binding protein TANGLED1 +K18637 AXL2; axial budding pattern protein 2 +K18638 BNI4; protein BNI4 +K18639 KCC4; serine/threonine-protein kinase KCC4 [EC:2.7.11.1] +K18640 parM, stbA; plasmid segregation protein ParM +K18641 K18641; crenactin +K18642 creS; crescentin +K18643 KATNB1; katanin p80 WD40 repeat-containing subunit B1 +K18644 EIF4EBP2; eukaryotic translation initiation factor 4E binding protein 2 +K18645 EIF4EBP3; eukaryotic translation initiation factor 4E binding protein 3 +K18646 ANP32A_C_D; acidic leucine-rich nuclear phosphoprotein 32 family member A/C/D +K18647 ANP32B; acidic leucine-rich nuclear phosphoprotein 32 family member B +K18648 ANP32E; acidic leucine-rich nuclear phosphoprotein 32 family member E +K18649 IMPL2; inositol-phosphate phosphatase / L-galactose 1-phosphate phosphatase / histidinol-phosphatase [EC:3.1.3.25 3.1.3.93 3.1.3.15] +K18650 pehX; exo-poly-alpha-galacturonosidase [EC:3.2.1.82] +K18651 XGCA; oligoxyloglucan reducing-end-specific cellobiohydrolase [EC:3.2.1.150] +K18652 ntdC; glucose-6-phosphate 3-dehydrogenase [EC:1.1.1.361] +K18653 ntdA; 3-dehydro-glucose-6-phosphate---glutamate transaminase [EC:2.6.1.104] +K18654 ntdB; kanosamine-6-phosphate phosphatase [EC:3.1.3.92] +K18655 DDX19, DBP5; ATP-dependent RNA helicase DDX19/DBP5 [EC:5.6.2.7] +K18656 DDX25, GRTH; ATP-dependent RNA helicase DDX25 [EC:5.6.2.7] +K18657 zapC; cell division protein ZapC +K18658 ASH1; transcriptional regulatory protein ASH1 +K18659 BCD; homeotic protein bicoid +K18660 ACSF3; malonyl-CoA/methylmalonyl-CoA synthetase [EC:6.2.1.76 6.2.1.-] +K18661 matB; malonyl-CoA/methylmalonyl-CoA synthetase [EC:6.2.1.76 6.2.1.-] +K18663 ASCC3; activating signal cointegrator complex subunit 3 [EC:5.6.2.4] +K18664 SLH1; antiviral helicase SLH1 [EC:5.6.2.6] +K18665 NUDT8; nudix motif 8 [EC:3.6.1.-] +K18666 ASCC1; activating signal cointegrator complex subunit 1 +K18667 ASCC2; activating signal cointegrator complex subunit 2 +K18668 ZC3H12, MCPIP; ribonuclease ZC3H12 [EC:3.1.-.-] +K18669 DYRK2_3_4; dual specificity tyrosine-phosphorylation-regulated kinase 2/3/4 [EC:2.7.12.1] +K18670 YAK1; dual specificity protein kinase YAK1 [EC:2.7.12.1] +K18671 HDAC10; histone deacetylase 10 [EC:3.5.1.98] +K18672 dacA; diadenylate cyclase [EC:2.7.7.85] +K18673 bglK; beta-glucoside kinase [EC:2.7.1.85] +K18674 GALK2; N-acetylgalactosamine kinase [EC:2.7.1.157] +K18675 chbP; N,N'-diacetylchitobiose phosphorylase [EC:2.4.1.280] +K18676 gspK; glucosamine kinase [EC:2.7.1.8] +K18677 GALAK; galacturonokinase [EC:2.7.1.44] +K18678 VTE5; phytol kinase [EC:2.7.1.182] +K18679 CDR2; mitosis inducer protein kinase Cdr2 [EC:2.7.11.1] +K18680 CDR1; mitosis inducer protein kinase Cdr1 [EC:2.7.11.1] +K18681 DIS3L; DIS3-like exonuclease 1 [EC:3.1.13.-] +K18682 rny; ribonucrease Y [EC:3.1.-.-] +K18683 rus; rusticyanin +K18684 ALOXE3; hydroperoxy icosatetraenoate dehydratase/isomerase [EC:4.2.1.152 5.4.4.7] +K18685 ACOS; ophiobolin F synthase [EC:4.2.3.145] +K18686 cotB2; cyclooctat-9-en-7-ol synthase [EC:4.2.3.146] +K18687 fadD3; HIP---CoA ligase [EC:6.2.1.41] +K18688 fadD19; 3-oxocholest-4-en-26-oate---CoA ligase [EC:6.2.1.42] +K18689 E2.7.1.185; mevalonate-3-kinase [EC:2.7.1.185] +K18690 E2.7.1.186; mevalonate-3-phosphate-5-kinase [EC:2.7.1.186] +K18691 mltF; peptidoglycan lytic transglycosylase F [EC:4.2.2.29] +K18692 cshB; ATP-dependent RNA helicase CshB [EC:5.6.2.7] +K18693 DPP1, DPPL, PLPP4_5; diacylglycerol diphosphate phosphatase / phosphatidate phosphatase [EC:3.6.1.75 3.1.3.4] +K18694 PGC1; phosphatidylglycerol phospholipase C [EC:3.1.4.-] +K18695 GPCPD1; glycerophosphocholine phosphodiesterase GPCPD1 [EC:3.1.4.2] +K18696 GDE1; glycerophosphodiester phosphodiesterase [EC:3.1.4.46] +K18697 pgpC; phosphatidylglycerophosphatase C [EC:3.1.3.27] +K18698 blaTEM; beta-lactamase class A TEM [EC:3.5.2.6] +K18699 blaSHV; beta-lactamase class A SHV [EC:3.5.2.6] +K18700 flK; fluoroacetyl-CoA thioesterase [EC:3.1.2.29] +K18701 arsC; arsenate-mycothiol transferase [EC:2.8.4.2] +K18702 uctC; CoA:oxalate CoA-transferase [EC:2.8.3.19] +K18703 SUGCT; succinate---hydroxymethylglutarate CoA-transferase [EC:2.8.3.13] +K18704 tarL; CDP-ribitol ribitolphosphotransferase / teichoic acid ribitol-phosphate polymerase [EC:2.7.8.14 2.7.8.47] +K18705 B3GNT9; beta-1,3-N-acetylglucosaminyltransferase 9 [EC:2.4.1.-] +K18706 XPT1; 3-O-alpha-D-mannopyranosyl-alpha-D-mannopyranose xylosylphosphotransferase [EC:2.7.8.32] +K18707 mtaB; threonylcarbamoyladenosine tRNA methylthiotransferase MtaB [EC:2.8.4.5] +K18708 FAM103A1; RNMT-activating mini protein +K18709 TUT1; speckle targeted PIP5K1A-regulated poly(A) polymerase [EC:2.7.7.19 2.7.7.52] +K18710 SLBP; histone RNA hairpin-binding protein +K18711 DHX40; ATP-dependent RNA helicase DHX40 [EC:5.6.2.6] +K18712 HPR1; THO complex subunit HPR1 +K18713 THP2; THO complex subunit THP2 +K18714 MFT1; THO complex subunit MFT1 +K18715 NUP159; nucleoporin NUP159 +K18716 NUP42, RIP1; nucleoporin NUP42 +K18717 ASM4, NUP59; nucleoporin ASM4 +K18718 NUP60; nucleoporin NUP60 +K18719 NUP82; nucleoporin NUP82 +K18720 NUP145; nucleoporin NUP145 +K18721 NUP1; nucleoporin NUP1 +K18722 NUP2; nucleoporin NUP2 +K18723 GLE1; nucleoporin GLE1 +K18724 POM34; nucleoporin POM34 +K18725 POM152; nucleoporin POM152 +K18726 FAF2, UBXD8; FAS-associated factor 2 +K18727 TNPO2, IPO3, KPNB2B; transportin-2 +K18728 EIF4ENIF1; eukaryotic translation initiation factor 4E transporter +K18729 ANGEL; protein angel +K18730 GIGYF; PERQ amino acid-rich with GYF domain-containing protein +K18731 GFD1; mRNA transport factor GFD1 +K18732 SARNP, CIP29, THO1; SAP domain-containing ribonucleoprotein +K18733 LARP6; la-related protein 6 +K18734 SMG8; protein SMG8 +K18735 SMG9; protein SMG9 +K18736 SHE2; SWI5-dependent HO expression protein 2 +K18737 SHE3; SWI5-dependent HO expression protein 3 +K18738 HEK; heterogeneous nuclear rnp K-like protein +K18739 BICD; protein bicaudal D +K18740 EXD1, EGL; exonuclease 3'-5' domain-containing protein 1 +K18741 NANOS1, NOS1; protein nanos 1 +K18742 OSK; maternal effect protein oskar +K18743 CAPRIN1, GPIAP1; caprin-1 +K18744 CAPRIN2, EEG1; caprin-2 +K18745 EXU; maternal protein exuperantia +K18746 CUP; protein cup +K18747 SXL; protein sex-lethal +K18748 SSD1; protein SSD1 +K18749 LSM14, RAP55, SCD6; protein LSM14 +K18750 APOBEC3; C->U-editing enzyme APOBEC3 [EC:3.5.4.-] +K18751 PNRC2; proline-rich nuclear receptor coactivator 2 +K18752 TNPO1, IPO2, KPNB2; transportin-1 +K18753 ZFP36L; butyrate response factor +K18754 LIN28; protein lin-28 +K18755 IPO8, RANBP8; importin-8 +K18756 BICC1, BICC; protein bicaudal C +K18757 LARP1; la-related protein 1 +K18758 DIS3L2; DIS3-like exonuclease 2 [EC:3.1.13.-] +K18759 EDC1_2; enhancer of mRNA-decapping protein 1/2 +K18760 NANOS2, NOS2; protein nanos 2 +K18761 NANOS3, NOS3; protein nanos 3 +K18762 ZAR1; zygote arrest protein 1 +K18763 LARP4; la-related protein 4 +K18764 NOCT, CCRN4L; nocturnin [EC:3.1.3.108] +K18765 csrD; RNase E specificity factor CsrD +K18766 blaZ; beta-lactamase class A BlaZ [EC:3.5.2.6] +K18767 blaCTX-M; beta-lactamase class A CTX-M [EC:3.5.2.6] +K18768 blaKPC; beta-lactamase class A KPC [EC:3.5.2.6] +K18769 TMPRSS11G; transmembrane protease serine 11G [EC:3.4.21.-] +K18770 pbpD; penicillin-binding protein 4 [EC:2.4.99.28 3.4.16.4] +K18772 APOBEC2; C->U-editing enzyme APOBEC2 [EC:3.5.4.-] +K18773 APOBEC4; C->U-editing enzyme APOBEC4 [EC:3.5.4.-] +K18774 PNRC1; proline-rich nuclear receptor coactivator 1 +K18775 lf2; levanbiose-producing levanase [EC:3.2.1.64] +K18776 MTR2, MT48; cap2 methyltransferase [EC:2.1.1.296] +K18777 MTR3, MT57; cap3/cap4 methyltransferase [EC:2.1.1.-] +K18778 zapD; cell division protein ZapD +K18779 tgtA; 7-cyano-7-deazaguanine tRNA-ribosyltransferase [EC:2.4.2.48] +K18780 blaNDM; metallo-beta-lactamase class B NDM [EC:3.5.2.6] +K18781 blaVIM; metallo-beta-lactamase class B VIM [EC:3.5.2.6] +K18782 blaIMP; metallo-beta-lactamase class B IMP [EC:3.5.2.6] +K18783 E2.4.1.279; nigerose phosphorylase [EC:2.4.1.279] +K18784 E2.4.1.282; 3-O-alpha-D-glucosyl-L-rhamnose phosphorylase [EC:2.4.1.282] +K18785 mp2; beta-1,4-mannooligosaccharide/beta-1,4-mannosyl-N-acetylglucosamine phosphorylase [EC:2.4.1.319 2.4.1.320] +K18786 E2.4.1.321; cellobionic acid phosphorylase [EC:2.4.1.321] +K18787 ACL5; thermospermine synthase [EC:2.5.1.79] +K18788 wbbD; UDP-Gal:alpha-D-GlcNAc-diphosphoundecaprenol beta-1,3-galactosyltransferase [EC:2.4.1.303] +K18789 XGD1; xylogalacturonan beta-1,3-xylosyltransferase [EC:2.4.2.41] +K18790 blaOXA-1; beta-lactamase class D OXA-1 [EC:3.5.2.6] +K18791 blaOXA-2; beta-lactamase class D OXA-2 [EC:3.5.2.6] +K18792 blaOXA-10; beta-lactamase class D OXA-10 [EC:3.5.2.6] +K18793 blaOXA-23; beta-lactamase class D OXA-23 [EC:3.5.2.6] +K18794 blaOXA-51; beta-lactamase class D OXA-51 [EC:3.5.2.6] +K18795 blaCARB-1; beta-lactamase class A CARB-1, PSE family [EC:3.5.2.6] +K18796 blaLEN; beta-lactamase class A LEN [EC:3.5.2.6] +K18797 blaPER; beta-lactamase class A PER [EC:3.5.2.6] +K18798 AFG1, LACE1; peroxisome-assembly ATPase [EC:3.6.4.7] +K18799 wzxB, rfbX; O-antigen flippase +K18800 ubiI; 2-polyprenylphenol 6-hydroxylase [EC:1.14.13.240] +K18801 GXM; glucuronoxylan 4-O-methyltransferase [EC:2.1.1.112] +K18802 DUG3; glutamine amidotransferase +K18803 HPM1; protein-histidine N-methyltransferase [EC:2.1.1.85] +K18804 CTM1; [cytochrome c]-lysine N-methyltransferase [EC:2.1.1.59] +K18806 KIF7; kinesin family member 7 +K18807 TLR12; toll-like receptor 12 +K18808 TLR13; toll-like receptor 13 +K18809 TL; protein toll +K18810 CYCD1_2_4; cyclin D1/2/4, plant +K18811 CYCD5; cyclin D5, plant +K18812 CYCD6; cyclin D6, plant +K18813 CYCD7; cyclin D7, plant +K18814 ictB; putative inorganic carbon (hco3(-)) transporter +K18815 aac6-I; aminoglycoside 6'-N-acetyltransferase I [EC:2.3.1.82] +K18816 aac6-I, aacA7; aminoglycoside 6'-N-acetyltransferase I [EC:2.3.1.82] +K18817 hph; hygromycin-B 4-O-kinase [EC:2.7.1.163] +K18818 mgs; mannosylglycerate synthase [EC:2.4.1.269] +K18819 GOLS; inositol 3-alpha-galactosyltransferase [EC:2.4.1.123] +K18820 agd31B; oligosaccharide 4-alpha-D-glucosyltransferase [EC:2.4.1.161] +K18821 lipL; lipoyl amidotransferase [EC:2.3.1.200] +K18822 UGT73P2; soyasapogenol B glucuronide galactosyltransferase [EC:2.4.1.272] +K18823 UGT91H4; soyasaponin III rhamnosyltransferase [EC:2.4.1.273] +K18824 sul2; dihydropteroate synthase type 2 [EC:2.5.1.15] +K18825 sul3; dihydropteroate synthase type 3 [EC:2.5.1.15] +K18826 CAMKMT; calmodulin-lysine N-methyltransferase [EC:2.1.1.60] +K18827 wbdD; O-antigen chain-terminating bifunctional methyltransferase/kinase [EC:2.1.1.- 2.1.1.294 2.7.1.181] +K18828 mvpA, vapC; tRNA(fMet)-specific endonuclease VapC [EC:3.1.-.-] +K18829 mvpT, vapB; antitoxin VapB +K18830 pezA; HTH-type transcriptional regulator / antitoxin PezA +K18831 higA; HTH-type transcriptional regulator / antitoxin HigA +K18832 PENK; proenkephalin A +K18833 cmr; MFS transporter, DHA3 family, multidrug efflux protein +K18834 WRKY1; WRKY transcription factor 1 +K18835 WRKY2; WRKY transcription factor 2 +K18836 vcaE; reductase VcaE +K18837 cbtA; cytoskeleton-binding toxin CbtA and related proteins +K18838 cbeA; cytoskeleton bundling-enhancing protein CbeA and related proteins +K18839 ghoT; toxin GhoT +K18840 ghoS; antitoxin GhoS +K18841 chpB, chpBK; mRNA interferase ChpB [EC:3.1.-.-] +K18842 chpS, chpBI; antitoxin ChpS +K18843 hicB; antitoxin HicB +K18844 aph, spcN; spectinomycin phosphotransferase +K18845 rmt, armA; 16S rRNA (guanine(1405)-N(7))-methyltransferase [EC:2.1.1.179] +K18846 npmA; 16S rRNA (adenine(1408)-N(1))-methyltransferase [EC:2.1.1.180] +K18847 E2.2.1.8; fluorothreonine transaldolase [EC:2.2.1.8] +K18848 IAMT1; indole-3-acetate O-methyltransferase [EC:2.1.1.278] +K18849 BMT2; 25S rRNA (adenine2142-N1)-methyltransferase [EC:2.1.1.286] +K18850 ycfD; 50S ribosomal protein L16 3-hydroxylase [EC:1.14.11.47] +K18851 fbp; diacylglycerol O-acyltransferase / trehalose O-mycolyltransferase / mycolyltransferase Ag85 [EC:2.3.1.20 2.3.1.122 2.3.1.-] +K18852 HPA3; D-amino-acid N-acetyltransferase [EC:2.3.1.36] +K18853 dmrX; dihydromethanopterin reductase (acceptor) [EC:1.5.99.15] +K18854 LYC1; acetyl-CoA:lysine N6-acetyltransferase [EC:2.3.1.306] +K18855 E1.1.1.374; UDP-N-acetylglucosamine 3-dehydrogenase [EC:1.1.1.374] +K18856 vanC, vanE, vanG; D-alanine---D-serine ligase [EC:6.3.2.35] +K18857 ADH1; alcohol dehydrogenase class-P [EC:1.1.1.1] +K18858 CHAT; (Z)-3-hexen-1-ol acetyltransferase [EC:2.3.1.195] +K18859 sdhD, frdD; succinate dehydrogenase subunit D +K18860 sdhD, frdD; succinate dehydrogenase subunit D +K18861 K18861; 4-hydroxybutyrate---CoA ligase (AMP-forming) [EC:6.2.1.40] +K18862 ldrA_B_C_D; small toxic polypeptide LdrA/B/C/D +K18863 rdlA_B_C_D; sRNA antisense regulator of LdrA/B/C/D protein +K18864 sibA; sRNA antisense regulator of IbsA protein +K18865 sibB; sRNA antisense regulator of IbsB protein +K18866 vanXY; zinc D-Ala-D-Ala dipeptidase/carboxypeptidase [EC:3.4.13.22 3.4.17.14] +K18867 sibC; sRNA antisense regulator of IbsC protein +K18868 sibD; sRNA antisense regulator of IbsD protein +K18869 sibE; sRNA antisense regulator of IbsE protein +K18870 sokB; sRNA antisense regulator of MokB and HokB protein +K18871 sokC; sRNA antisense regulator of MokC and HokC protein +K18872 ohsC; sRNA antisense regulator of ShoB protein +K18873 PIK1; pathogen-induced protein kinase +K18874 avrRps4; type III effector protein AvrRps4 +K18875 EDS1; enhanced disease susceptibility 1 protein +K18876 avrBs3; type III effector protein AvrBs3 +K18877 BS3; disease resistance protein +K18878 UPA20; BHLH transcription factor Upa20 +K18879 xopD; type III effector protein XopD +K18880 ECI3, HCD1; Delta3-Delta2-enoyl-CoA isomerase [EC:5.3.3.8] +K18881 DJ1D; D-lactate dehydratase [EC:4.2.1.130] +K18882 priL, pri2, priB; DNA primase large subunit +K18883 ROMT; tricin synthase [EC:2.1.1.175] +K18884 FGAMT; 4-dimethylallyltryptophan N-methyltransferase [EC:2.1.1.261] +K18885 GAMT1; gibberellin A9 O-methyltransferase [EC:2.1.1.275] +K18886 GAMT2; gibberellin A4 carboxyl methyltransferase [EC:2.1.1.276] +K18887 efrA, efrE; ATP-binding cassette, subfamily B, multidrug efflux pump +K18888 efrB, efrF; ATP-binding cassette, subfamily B, multidrug efflux pump +K18889 mdlA, smdA; ATP-binding cassette, subfamily B, multidrug efflux pump +K18890 mdlB, smdB; ATP-binding cassette, subfamily B, multidrug efflux pump +K18891 patA, rscA, lmrC, satA; ATP-binding cassette, subfamily B, multidrug efflux pump +K18892 patB, rscB, lmrC, satB; ATP-binding cassette, subfamily B, multidrug efflux pump +K18893 vcaM; ATP-binding cassette, subfamily B, multidrug efflux pump +K18894 K18894; ATP-binding cassette, subfamily B, multidrug efflux pump +K18895 iroC; ATP-binding cassette, subfamily B, salmochelin/enterobactin exporter +K18896 gsmt; glycine/sarcosine N-methyltransferase [EC:2.1.1.156] +K18897 sdmt; sarcosine/dimethylglycine N-methyltransferase [EC:2.1.1.157] +K18898 mdtE; membrane fusion protein, multidrug efflux system +K18899 mdtF; multidrug efflux pump +K18900 bpeT; LysR family transcriptional regulator, regulator for bpeEF and oprC +K18901 bpeE; membrane fusion protein, multidrug efflux system +K18902 bpeF; multidrug efflux pump +K18903 oprC, opcM; outer membrane protein, multidrug efflux system +K18904 nodT, ameC; outer membrane protein, multidrug efflux system +K18905 ameR, rmiR; TetR/AcrR family transcriptional regulator, repressor of the ameABC operon +K18906 mgrA; MarR family transcriptional regulator, multiple gene regulator MgrA +K18907 norG; GntR family transcriptional regulator, regulator for abcA and norABC +K18908 mepA; MATE family, multidrug efflux pump +K18909 mepR; MarR family transcriptional regulator, repressor for mepA +K18910 dpe, lre; D-psicose/D-tagatose/L-ribulose 3-epimerase [EC:5.1.3.30 5.1.3.31] +K18911 egtD; L-histidine Nalpha-methyltransferase [EC:2.1.1.44] +K18912 egtB; gamma-glutamyl hercynylcysteine S-oxide synthase [EC:1.14.99.50] +K18913 egtE; hercynylcysteine S-oxide lyase [EC:4.4.1.36] +K18914 FDXR; adrenodoxin-NADP+ reductase [EC:1.18.1.6] +K18915 feR; ferric-chelate reductase [NAD(P)H] [EC:1.16.1.10] +K18916 ptxD; phosphonate dehydrogenase [EC:1.20.1.1] +K18917 mrx1; mycoredoxin [EC:1.20.4.3] +K18918 relB; RHH-type transcriptional regulator, rel operon repressor / antitoxin RelB +K18919 hokC_D; protein HokC/D +K18920 hokA; protein HokA +K18921 hokB; protein HokB +K18922 hokE; protein HokE +K18923 stbD; antitoxin StbD +K18924 ykkC; paired small multidrug resistance pump +K18925 ykkD; paired small multidrug resistance pump +K18926 lmrB; MFS transporter, DHA2 family, lincomycin resistance protein +K18927 lldR; LysR family transcriptional regulator, L-lactate utilization regulator +K18928 lldE; L-lactate dehydrogenase complex protein LldE +K18929 lldF; L-lactate dehydrogenase complex protein LldF +K18930 dld; D-lactate dehydrogenase +K18931 deoA; AMP phosphorylase [EC:2.4.2.57] +K18932 ZDHHC; palmitoyltransferase [EC:2.3.1.225] +K18933 mfnA, adc; tyrosine decarboxylase / aspartate 1-decarboxylase [EC:4.1.1.25 4.1.1.11] +K18934 lmrS; MFS transporter, DHA2 family, multidrug resistance protein +K18935 sdrM; MFS transporter, DHA2 family, multidrug resistance protein +K18936 mdeA; MFS transporter, DHA2 family, multidrug resistance protein +K18937 lfrR; TetR/AcrR family transcriptional regulator, repressor for lfrA +K18938 qacR; TetR/AcrR family transcriptional regulator, repressor for qacA +K18939 lmrA, yxaF; TetR/AcrR family transcriptional regulator, lmrAB and yxaGH operons repressor +K18940 arlS; two-component system, OmpR family, sensor histidine kinase ArlS [EC:2.7.13.3] +K18941 arlR; two-component system, OmpR family, response regulator ArlR +K18942 gp43; Straboviridae DNA polymerase [EC:2.7.7.7] +K18943 gp45; Straboviridae DNA polymerase processivity component +K18944 gp44; Straboviridae sliding clamp loader +K18945 gp62; Straboviridae sliding clamp loader +K18946 gp32, ssb; Straboviridae single-stranded DNA-binding protein +K18947 gp41; Straboviridae DNA replication helicase [EC:5.6.2.3] +K18948 gp61; Straboviridae DNA primase [EC:2.7.7.-] +K18949 gp59; Straboviridae DNA helicase loader +K18950 rnh; Straboviridae ribonuclease H [EC:3.1.26.4] +K18951 gp30; Straboviridae DNA ligase [EC:6.5.1.1] +K18952 PRKCZ; atypical protein kinase C zeta type [EC:2.7.11.13] +K18953 NSMAF, FAN; factor associated with neutral sphingomyelinase activation +K18954 pobR; AraC family transcriptional regulator, transcriptional activator of pobA +K18955 whiB1_2_3_4; WhiB family transcriptional regulator, redox-sensing transcriptional regulator +K18956 whiB5; WhiB family transcriptional regulator, redox-sensing transcriptional regulator +K18957 whiB6; WhiB family transcriptional regulator, redox-sensing transcriptional regulator +K18958 whiB7; WhiB family transcriptional regulator, redox-sensing transcriptional regulator +K18959 uvsW; Straboviridae ATP-dependent DNA helicase UvsW [EC:5.6.2.4] +K18960 gp49; Straboviridae recombination endonuclease VII +K18961 rnlA; Straboviridae RNA ligase 1 [EC:6.5.1.3] +K18962 rnlB; Straboviridae RNA ligase 2 [EC:6.5.1.3] +K18963 pol; Baculoviridae DNA polymerase [EC:2.7.7.7] +K18964 UL30, UL54, BALF5, U38; Herpesviridae DNA polymerase catalytic subunit [EC:2.7.7.7] +K18966 GADL1, CSAD; sulfinoalanine decarboxylase / aspartate 1-decarboxylase [EC:4.1.1.29 4.1.1.11] +K18967 dge1; diguanylate cyclase [EC:2.7.7.65] +K18968 adrA; diguanylate cyclase [EC:2.7.7.65] +K18969 CURLY_70; Bacillus phage DNA polymerase III epsilon subunit +K18970 blaGES; beta-lactamase class A GES [EC:3.5.2.6] +K18971 blaOXA-24; beta-lactamase class D OXA-24 [EC:3.5.2.6] +K18972 blaOXA-58; beta-lactamase class D OXA-58 [EC:3.5.2.6] +K18973 blaOXA-50; beta-lactamase class D OXA-50 [EC:3.5.2.6] +K18974 sul1; dihydropteroate synthase type 1 [EC:2.5.1.15] +K18975 ebr, qacEdelta1; small multidrug resistance pump +K18976 blaOXA-48; beta-lactamase class D OXA-48 [EC:3.5.2.6] +K18977 HPX; hemopexin +K18978 gapN; glyceraldehyde-3-phosphate dehydrogenase [NAD(P)+] [EC:1.2.1.90] +K18979 queG; epoxyqueuosine reductase [EC:1.17.99.6] +K18980 EO, FaQR; 2-methylene-furan-3-one reductase [EC:1.3.1.105] +K18981 udh; uronate dehydrogenase [EC:1.1.1.203] +K18982 gli; D-galactarolactone isomerase [EC:5.4.1.4] +K18983 gci; D-galactarolactone cycloisomerase [EC:5.5.1.27] +K18984 ssaE; secretion system chaperone SsaE +K18985 ELMO2, CED12A; engulfment and cell motility protein 2 +K18986 ihk; two-component system, OmpR family, sensor kinase Ihk [EC:2.7.13.3] +K18987 irr; two-component system, OmpR family, response regulator Irr +K18988 ampH; serine-type D-Ala-D-Ala carboxypeptidase/endopeptidase [EC:3.4.16.4 3.4.21.-] +K18989 vexF; multidrug efflux pump +K18990 vexE; membrane fusion protein, multidrug efflux system +K18991 mtrA; AraC family transcriptional regulator, activator of mtrCDE +K18992 cmeR; TetR/AcrR family transcriptional regulator, cmeABC operon repressor +K18993 UBASH3, STS; ubiquitin-associated and SH3 domain-containing protein [EC:3.1.3.48] +K18994 DHX32; pre-mRNA-splicing factor ATP-dependent RNA helicase DHX32 [EC:5.6.2.6] +K18995 DHX29; ATP-dependent RNA helicase DHX29 [EC:5.6.2.6] +K18996 repC; replication initiation protein RepC +K18997 cbpM; chaperone modulatory protein CbpM +K18998 CPL1_2; RNA polymerase II C-terminal domain phosphatase-like 1/2 [EC:3.1.3.16] +K18999 CPL3_4; RNA polymerase II C-terminal domain phosphatase-like 3/4 [EC:3.1.3.16] +K19000 rof; Rho-binding antiterminator +K19001 HELLS, DDM1; ATP-dependent DNA helicase +K19002 mgs, bgsB; 1,2-diacylglycerol 3-alpha-glucosyltransferase [EC:2.4.1.337] +K19003 mgdA; 1,2-diacylglycerol 3-beta-glucosyltransferase [EC:2.4.1.336] +K19004 K19004; processive 1,2-diacylglycerol beta-glycosyltransferase [EC:2.4.1.315 2.4.1.-] +K19005 ltaS; lipoteichoic acid synthase [EC:2.7.8.20] +K19006 PLCH; phosphatidylinositol phospholipase C, eta [EC:3.1.4.11] +K19007 AGPAT5; lysophosphatidiate acyltransferase [EC:2.3.1.51] +K19008 SIK1; serine/threonine-protein kinase SIK1 [EC:2.7.11.1] +K19009 SIK3; serine/threonine-protein kinase SIK3 [EC:2.7.11.1] +K19010 OSC2; parkeol synthase [EC:5.4.99.47] +K19011 OSC6; achilleol B synthase [EC:5.4.99.48] +K19012 LYVE1; lymphatic vessel endothelial hyaluronan receptor 1 +K19013 STAB2, HARE; stabilin-2 +K19014 ITIH1, SHAP; inter-alpha-trypsin inhibitor heavy chain H1 +K19015 ITIH2, SHAP; inter-alpha-trypsin inhibitor heavy chain H2 +K19016 IMPG1, SPACR; interphotoreceptor matrix proteoglycan 1 +K19017 IMPG2, SPACRCAN; interphotoreceptor matrix proteoglycan 2 +K19018 TNFAIP6, TSG6; tumor necrosis factor-inducible gene 6 protein +K19019 HABP4; intracellular hyaluronan-binding protein 4 +K19020 STAB1; stabilin-1 +K19021 PDE3A; cGMP-inhibited 3',5'-cyclic phosphodiesterase A [EC:3.1.4.17] +K19022 AP5B1; AP-5 complex subunit beta-1 +K19023 AP5M1, MUDENG; AP-5 complex subunit mu-1 +K19024 AP5S1; AP-5 complex subunit sigma-1 +K19025 AP5Z1, SPG48; AP-5 complex subunit zeta-1 +K19026 SPG11; spatacsin +K19027 ZFYVE26; zinc finger FYVE domain-containing protein 26 +K19028 PFKFB1; 6-phosphofructo-2-kinase / fructose-2,6-biphosphatase 1 [EC:2.7.1.105 3.1.3.46] +K19029 PFKFB2; 6-phosphofructo-2-kinase / fructose-2,6-biphosphatase 2 [EC:2.7.1.105 3.1.3.46] +K19030 PFKFB4; 6-phosphofructo-2-kinase / fructose-2,6-biphosphatase 4 [EC:2.7.1.105 3.1.3.46] +K19031 CEMIP, KIAA1199; cell migration-inducing and hyaluronan-binding protein [EC:3.2.1.35] +K19032 PSRP3; 30S ribosomal protein 3 +K19033 PSRP4, RPS31; 30S ribosomal protein S31 +K19034 PSRP5; 50S ribosomal protein 5 +K19035 PSRP6; 50S ribosomal protein 6 +K19036 IGHMBP2; ATP-dependent RNA/DNA helicase IGHMBP2 [EC:5.6.2.5 5.6.2.3] +K19037 ATL23; E3 ubiquitin-protein ligase ATL23 [EC:2.3.2.27] +K19038 ATL41; E3 ubiquitin-protein ligase ATL41 [EC:2.3.2.27] +K19039 ATL7_58_59; E3 ubiquitin-protein ligase ATL7/58/59 [EC:2.3.2.27] +K19040 ATL76S; E3 ubiquitin-protein ligase ATL10/75/76/77/78 [EC:2.3.2.27] +K19041 RNF38_44; E3 ubiquitin-protein ligase RNF38/44 [EC:2.3.2.27] +K19042 BOI; E3 ubiquitin-protein ligase BOI and related proteins [EC:2.3.2.27] +K19043 RHF; E3 ubiquitin-protein ligase RHF [EC:2.3.2.27] +K19044 XBAT32_33; E3 ubiquitin-protein ligase XBAT32/33 [EC:2.3.2.27] +K19045 BB; E3 ubiquitin-protein ligase BIG BROTHER and related proteins [EC:2.3.2.27] +K19046 casB, cse2; CRISPR system Cascade subunit CasB +K19047 tetC; TetR/AcrR family transcriptional regulator, repressor of tetCD +K19048 symE; toxic protein SymE +K19049 cslA; chondroitin AC lyase [EC:4.2.2.5] +K19050 hepA; heparin lyase [EC:4.2.2.7] +K19051 hepB; heparin/heparan-sulfate lyase [EC:4.2.2.7 4.2.2.8] +K19052 hepC; heparan-sulfate lyase [EC:4.2.2.8] +K19053 cslB; chondroitin B lyase [EC:4.2.2.19] +K19054 FXN; frataxin [EC:1.16.3.1] +K19055 prdX, proX; Ala-tRNA(Pro) deacylase [EC:3.1.1.-] +K19056 tetD; AraC family transcriptional regulator, transposon Tn10 TetD protein +K19057 merD; MerR family transcriptional regulator, mercuric resistance operon regulatory protein +K19058 merC; mercuric ion transport protein +K19059 merE; mercuric ion transport protein +K19060 mphR; TetR/AcrR family transcriptional regulator, macrolide resistance operon repressor +K19061 mrx; macrolide resistance protein +K19062 arr; rifampin ADP-ribosylating transferase +K19063 sat2; streptothricin acetyltransferase [EC:2.3.-.-] +K19064 lysDH; lysine 6-dehydrogenase [EC:1.4.1.18] +K19065 mobA; 3-hydroxybenzoate 4-monooxygenase [EC:1.14.13.23] +K19066 E1.3.8.10; cyclohex-1-ene-1-carbonyl-CoA dehydrogenase [EC:1.3.8.10] +K19067 E1.3.8.11; cyclohexane-1-carbonyl-CoA dehydrogenase [EC:1.3.8.11] +K19068 wbjC; UDP-2-acetamido-2,6-beta-L-arabino-hexul-4-ose reductase [EC:1.1.1.367] +K19069 CDH; cellobiose dehydrogenase (acceptor) [EC:1.1.99.18] +K19070 oorA; oxalate oxidoreductase subunit alpha [EC:1.2.7.10] +K19071 oorB; oxalate oxidoreductase subunit beta [EC:1.2.7.10] +K19072 oorD; oxalate oxidoreductase subunit delta [EC:1.2.7.10] +K19073 DVR; divinyl chlorophyllide a 8-vinyl-reductase [EC:1.3.1.75] +K19074 csa2; CRISPR-associated protein Csa2 +K19075 cst2, cas7; CRISPR-associated protein Cst2 +K19076 cmr2, cas10; CRISPR-associated protein Cmr2 +K19077 graS; two-component system, OmpR family, sensor histidine kinase GraS [EC:2.7.13.3] +K19078 graR; two-component system, OmpR family, response regulator protein GraR +K19079 vraF; cationic antimicrobial peptide transport system ATP-binding protein +K19080 vraG; cationic antimicrobial peptide transport system permease protein +K19081 braS, bceS; two-component system, OmpR family, sensor histidine kinase BraS/BceS [EC:2.7.13.3] +K19082 braR, bceR; two-component system, OmpR family, response regulator protein BraR/BceR +K19083 braD, bceA; bacitracin transport system ATP-binding protein +K19084 braE, bceB; bacitracin transport system permease protein +K19085 csa1; CRISPR-associated protein Csa1 +K19086 csa4, cas8a2; CRISPR-associated protein Csa4 +K19087 csa5; CRISPR-associated protein Csa5 +K19088 cst1, cas8a; CRISPR-associated protein Cst1 +K19089 cas5a_b_c; CRISPR-associated protein Cas5a/b/c +K19090 cas5t; CRISPR-associated protein Cas5t +K19091 cas6; CRISPR-associated endoribonuclease Cas6 [EC:3.1.-.-] +K19092 parE1_3_4; toxin ParE1/3/4 +K19093 parE2; toxin ParE2 +K19094 parD2; antitoxin ParD2 +K19095 blaCMY-1; beta-lactamase class C CMY-1 [EC:3.5.2.6] +K19096 blaCMY-2; beta-lactamase class C CMY-2 [EC:3.5.2.6] +K19097 blaVEB; beta-lactamase class A VEB [EC:3.5.2.6] +K19098 blaOXA-9; beta-lactamase class D OXA-9 [EC:3.5.2.6] +K19099 blaGIM; metallo-beta-lactamase class B GIM [EC:3.5.2.6] +K19100 blaDHA; beta-lactamase class C DHA [EC:3.5.2.6] +K19101 blaFOX; beta-lactamase class C FOX [EC:3.5.2.6] +K19102 nocA; nocardicin nonribosomal peptide synthetase NocA +K19103 nocB; nocardicin nonribosomal peptide synthetase NocB +K19104 nat; isonocardicin synthase [EC:2.5.1.38] +K19105 nocJ; nocardicin-A epimerase [EC:5.1.1.14] +K19106 nocL; nocardicin N-oxygenase [EC:1.14.13.-] +K19107 tabB; putative acetyltransferase [EC:2.3.1.-] +K19108 tabA; decarboxylase [EC:4.1.1.-] +K19109 tblS; putative beta-lactam synthetase +K19110 tblC; putative 2-oxoglutarate oxygenase +K19111 tabP; putative tabtoxin peptidase [EC:3.4.-.-] +K19112 tblF, tabS; L-Amino acid ligase [EC:6.3.2.-] +K19113 ttr; acetyltransferase [EC:2.3.1.-] +K19114 csh1; CRISPR-associated protein Csh1 +K19115 csh2; CRISPR-associated protein Csh2 +K19116 cas5h; CRISPR-associated protein Cas5h +K19117 csd1, cas8c; CRISPR-associated protein Csd1 +K19118 csd2, cas7; CRISPR-associated protein Csd2 +K19119 cas5d; CRISPR-associated protein Cas5d +K19120 csc1; CRISPR-associated protein Csc1 +K19121 csc2; CRISPR-associated protein Csc2 +K19122 csc3; CRISPR-associated protein Csc3 +K19123 casA, cse1; CRISPR system Cascade subunit CasA +K19124 casC, cse4; CRISPR system Cascade subunit CasC +K19125 casD, cse5; CRISPR system Cascade subunit CasD +K19126 casE, cse3; CRISPR system Cascade subunit CasE +K19127 csy1; CRISPR-associated protein Csy1 +K19128 csy2; CRISPR-associated protein Csy2 +K19129 csy3; CRISPR-associated protein Csy3 +K19130 csy4, cas6f; CRISPR-associated endonuclease Csy4 [EC:3.1.-.-] +K19131 csb1; CRISPR-associated protein Csb1 +K19132 csb2; CRISPR-associated protein Csb2 +K19133 csb3; CRISPR-associated protein Csb3 +K19134 csx10; CRISPR-associated protein Csx10 +K19135 csx14; CRISPR-associated protein Csx14 +K19136 csx17; CRISPR-associated protein Csx17 +K19137 csn2; CRISPR-associated protein Csn2 +K19138 csm2; CRISPR-associated protein Csm2 +K19139 csm4; CRISPR-associated protein Csm4 +K19140 csm5; CRISPR-associated protein Csm5 +K19141 cmr5; CRISPR-associated protein Cmr5 +K19142 cmr6; CRISPR-associated protein Cmr6 +K19143 csx1; CRISPR-associated protein Csx1 +K19144 csx3; CRISPR-associated protein Csx3 +K19145 csx16; CRISPR-associated protein Csx16 +K19146 csaX; CRISPR-associated protein CsaX +K19147 mcrC; 5-methylcytosine-specific restriction enzyme subunit McrC +K19148 tisB; small toxic protein TisB +K19149 ibsA; small toxic protein IbsA +K19150 ibsB; small toxic protein IbsB +K19151 ibsC; small toxic protein IbsC +K19152 ibsD; small toxic protein IbsD +K19153 ibsE; small toxic protein IbsE +K19154 shoB; small toxic protein ShoB +K19155 yhaV; toxin YhaV [EC:3.1.-.-] +K19156 prlF, sohA; antitoxin PrlF +K19157 yafQ; mRNA interferase YafQ [EC:3.1.-.-] +K19158 yoeB; toxin YoeB [EC:3.1.-.-] +K19159 yefM; antitoxin YefM +K19160 yafO; mRNA interferase YafO [EC:3.1.-.-] +K19161 yafN; antitoxin YafN +K19162 tomB; hha toxicity modulator TomB +K19163 ccdB; toxin CcdB +K19164 ccdA; antitoxin CcdA +K19165 phd; antitoxin Phd +K19166 higB; mRNA interferase HigB [EC:3.1.-.-] +K19167 abiQ; protein AbiQ +K19168 cptA; toxin CptA +K19169 dndB; DNA sulfur modification protein DndB +K19170 dndC; DNA sulfur modification protein DndC +K19171 dndD; DNA sulfur modification protein DndD +K19172 dndE; DNA sulfur modification protein DndE +K19173 dptF; DNA phosphorothioation-dependent restriction protein DptF +K19174 dptG; DNA phosphorothioation-dependent restriction protein DptG +K19175 dptH; DNA phosphorothioation-dependent restriction protein DptH +K19176 FAAH2; fatty acid amide hydrolase 2 [EC:3.5.1.99] +K19177 NUS1; dehydrodolichyl diphosphate syntase complex subunit NUS1 [EC:2.5.1.87] +K19178 HELQ; POLQ-like helicase [EC:5.6.2.4] +K19179 GDE1; glycerophosphoinositol glycerophosphodiesterase [EC:3.1.4.44] +K19180 tll; dTDP-6-deoxy-L-talose 4-dehydrogenase (NAD+) [EC:1.1.1.339] +K19181 afr; 1,5-anhydro-D-fructose reductase (1,5-anhydro-D-mannitol-forming) [EC:1.1.1.292] +K19182 FGAOX3; chanoclavine-I aldehyde reductase [EC:1.3.1.100] +K19183 FGAFS; festuclavine dehydrogenase [EC:1.5.1.44] +K19184 FGAAT; fumigaclavine B O-acetyltransferase [EC:2.3.1.205] +K19185 kdhA; 6-hydroxypseudooxynicotine dehydrogenase subunit alpha [EC:1.5.99.14] +K19186 kdhB; 6-hydroxypseudooxynicotine dehydrogenase subunit beta [EC:1.5.99.14] +K19187 kdhL; 6-hydroxypseudooxynicotine dehydrogenase subunit gamma [EC:1.5.99.14] +K19188 dhponh; 2,6-dihydroxypseudooxynicotine hydrolase [EC:3.7.1.19] +K19189 dhpH; 2,6-dihydroxypyridine 3-monooxygenase [EC:1.14.13.10] +K19190 nboR; nicotine blue oxidoreductase [EC:1.1.1.328] +K19191 mabO; 4-methylaminobutanoate oxidase (formaldehyde-forming) [EC:1.5.3.19] +K19192 SAP130; histone deacetylase complex subunit SAP130 +K19193 SAP25; histone deacetylase complex subunit SAP25 +K19194 ARID4A, RBP1; AT-rich interactive domain-containing protein 4A +K19195 ARID4B; AT-rich interactive domain-containing protein 4B +K19196 BRMS1; breast cancer metastasis-suppressor 1 and related proteins +K19197 ING1; inhibitor of growth protein 1 +K19198 ING2; inhibitor of growth protein 2 +K19199 SETD3; protein-histidine N-methyltransferase [EC:2.1.1.85] +K19200 IAL; isopenicillin-N N-acyltransferase like protein +K19201 SUDS3, SAP45; Sin3 histone deacetylase corepressor complex component SDS3 +K19202 SAP30; histone deacetylase complex subunit SAP30 +K19203 pimS1; pimaricinolide synthase PimS1 +K19204 pimS2; pimaricinolide synthase PimS2 +K19205 pimS3; pimaricinolide synthase PimS3 +K19206 pimS4; pimaricinolide synthase PimS4 +K19207 fscD; candicidin polyketide synthase FscD +K19208 fscE; candicidin polyketide synthase FscE +K19209 blaOXA-42; beta-lactamase class D OXA-42 [EC:3.5.2.6] +K19210 blaOXA-61; beta-lactamase class D OXA-61 [EC:3.5.2.6] +K19211 blaOXA-62; beta-lactamase class D OXA-62 [EC:3.5.2.6] +K19212 blaOXA-63; beta-lactamase class D OXA-63 [EC:3.5.2.6] +K19213 blaOXA-12; beta-lactamase class D OXA-12 [EC:3.5.2.6] +K19214 blaACC; beta-lactamase class C ACC [EC:3.5.2.6] +K19215 blaACT_MIR; beta-lactamase class C ACT/MIR [EC:3.5.2.6] +K19216 blaIND; metallo-beta-lactamase class B IND [EC:3.5.2.6] +K19217 blaCARB-17; beta-lactamase class A CARB-17 [EC:3.5.2.6] +K19218 blaCARB-5; beta-lactamase class A CARB-5, RTG family [EC:3.5.2.6] +K19219 JMJD7; peptidyl-lysine (3S)-dioxygenase / protease [EC:1.14.11.63 3.4.-.-] +K19220 cwlS; peptidoglycan DL-endopeptidase CwlS [EC:3.4.-.-] +K19221 cobA, btuR; cob(I)alamin adenosyltransferase [EC:2.5.1.17] +K19222 menI, DHNAT; 1,4-dihydroxy-2-naphthoyl-CoA hydrolase [EC:3.1.2.28] +K19223 lytF, cwlE; peptidoglycan DL-endopeptidase LytF [EC:3.4.-.-] +K19224 lytE, cwlF; peptidoglycan DL-endopeptidase LytE [EC:3.4.-.-] +K19225 gluP; rhomboid protease GluP [EC:3.4.21.105] +K19226 sapA; cationic peptide transport system substrate-binding protein +K19227 sapB; cationic peptide transport system permease protein +K19228 sapC; cationic peptide transport system permease protein +K19229 sapD; cationic peptide transport system ATP-binding protein +K19230 sapF; cationic peptide transport system ATP-binding protein +K19231 bmaC; fibronectin-binding autotransporter adhesin +K19232 btaE; hyaluronate-binding autotransporter adhesin +K19233 btaF; ECM component-binding autotransporter adhesin +K19234 ynhG; L,D-transpeptidase YnhG +K19235 ybiS; L,D-transpeptidase YbiS +K19236 ycfS; L,D-transpeptidase YcfS +K19237 kgp; gingipain K [EC:3.4.22.47] +K19238 pmrD; signal transduction protein PmrD +K19239 sapZ; predicted membrane protein +K19240 sic; inhibitor of complement-mediated lysis +K19241 ELMO3; engulfment and cell motility protein 3 +K19242 citR; LysR family transcriptional regulator, repressor for citA +K19243 azf; NAD+ dependent glucose-6-phosphate dehydrogenase [EC:1.1.1.388] +K19244 ala; alanine dehydrogenase [EC:1.4.1.1] +K19245 JLP1; sulfonate dioxygenase [EC:1.14.11.-] +K19246 loxA; arachidonate 15-lipoxygenase [EC:1.13.11.33] +K19247 HN; Respirovirus hemagglutinin-neuraminidase [EC:3.2.1.18] +K19248 VP1; Polyomaviridae major capsid protein VP1 +K19249 VP4; Rotavirus outer capsid protein VP4 +K19251 HA; Influenza A virus hemagglutinin +K19252 VP1; Dependoparvovirus capsid protein VP1/VP2/VP3 +K19253 HE, HEF; Influenza C virus hemagglutinin-esterase-fusion glycoprotein [EC:3.1.1.53] +K19254 S; Coronaviridae (excluding betacoronavirus) spike glycoprotein +K19255 gB; Herpesviridae envelope glycoprotein B +K19256 gC; Simplexvirus envelope glycoprotein C +K19257 gM, UL10; Herpesviridae envelope glycoprotein M +K19258 tat; HIV protein Tat +K19259 env; Deltaretrovirus envelope glycoprotein gp62 +K19260 L1; Papillomaviridae major capsid protein L1 +K19261 F; Pneumoviridae fusion glycoprotein F0 +K19262 L5; Mastadenovirus fiber protein +K19263 A27L; Orthopoxvirus protein A27 +K19264 gD; Simplexvirus envelope glycoprotein D +K19265 gpr; L-glyceraldehyde 3-phosphate reductase [EC:1.1.1.-] +K19266 E1.2.1.22; lactaldehyde dehydrogenase [EC:1.2.1.22] +K19267 qorB; NAD(P)H dehydrogenase (quinone) [EC:1.6.5.2] +K19268 glmE, mutE, mamB; methylaspartate mutase epsilon subunit [EC:5.4.99.1] +K19269 PGP, PGLP; phosphoglycolate phosphatase [EC:3.1.3.18 3.1.3.48] +K19270 hxpA; mannitol-1-/sugar-/sorbitol-6-phosphatase [EC:3.1.3.22 3.1.3.23 3.1.3.50] +K19271 catA; chloramphenicol O-acetyltransferase type A [EC:2.3.1.28] +K19272 aph3-I; aminoglycoside 3'-phosphotransferase I [EC:2.7.1.95] +K19273 sat4; streptothricin acetyltransferase [EC:2.3.-.-] +K19274 aph3-VI; aminoglycoside 3'-phosphotransferase VI [EC:2.7.1.95] +K19275 aac3-II; aminoglycoside 3-N-acetyltransferase II [EC:2.3.1.81] +K19276 aac3-IV; aminoglycoside 3-N-acetyltransferase IV [EC:2.3.1.81] +K19277 aac3-VI; aminoglycoside 3-N-acetyltransferase VI [EC:2.3.1.81] +K19278 aac6-Ib; aminoglycoside 6'-N-acetyltransferase Ib [EC:2.3.1.82] +K19279 ant9; aminoglycoside 9-adenylyltransferase [EC:2.7.7.-] +K19280 mct; succinyl-CoA:mesaconate CoA transferase [EC:2.8.3.26] +K19281 mcl; beta-methylmalyl-CoA/(S)-malyl-CoA lyase [EC:4.1.3.24] +K19282 aceB; bifunctional (S)-malyl-CoA lyase/thioesterase [EC:4.1.3.24 3.1.2.30] +K19283 ACPP; prostatic acid phosphatase [EC:3.1.3.2 3.1.3.5] +K19284 ACPT; testicular acid phosphatase [EC:3.1.3.2] +K19285 nfrA1; FMN reductase (NADPH) [EC:1.5.1.38] +K19286 nfrA2; FMN reductase [NAD(P)H] [EC:1.5.1.39] +K19287 env, gp160; HIV envelope glycoprotein gp160 +K19288 p130; Alphavirus structral polyprotein +K19289 PMP22; peripheral myelin protein 22 +K19290 alg8; mannuronan synthase [EC:2.4.1.33] +K19291 alg44; mannuronan synthase [EC:2.4.1.33] +K19292 algK; alginate biosynthesis protein AlgK +K19293 algX; alginate biosynthesis protein AlgX +K19294 algI; alginate O-acetyltransferase complex protein AlgI +K19295 algJ; alginate O-acetyltransferase complex protein AlgJ +K19296 algF; alginate O-acetyltransferase complex protein AlgF +K19297 subA; subtilase cytotoxin, subunit A +K19298 subB, artB, pltB; subtilase cytotoxin, subunit B +K19299 aph3-III; aminoglycoside 3'-phosphotransferase III [EC:2.7.1.95] +K19300 aph3-II; aminoglycoside 3'-phosphotransferase II [EC:2.7.1.95] +K19301 aac6-II; aminoglycoside 6'-N-acetyltransferase II [EC:2.3.1.82] +K19302 bcrC; undecaprenyl-diphosphatase [EC:3.6.1.27] +K19303 mepH; murein DD-endopeptidase [EC:3.4.-.-] +K19304 mepM; murein DD-endopeptidase [EC:3.4.24.-] +K19305 NPII; deuterolysin [EC:3.4.24.39] +K19306 BUD23; 18S rRNA (guanine1575-N7)-methyltransferase [EC:2.1.1.309] +K19307 BMT5; 25S rRNA (uracil2634-N3)-methyltransferase [EC:2.1.1.313] +K19308 BMT6; 25S rRNA (uracil2843-N3)-methyltransferase [EC:2.1.1.312] +K19309 bcrA; bacitracin transport system ATP-binding protein +K19310 bcrB; bacitracin transport system permease protein +K19311 lipV; lipase [EC:3.1.1.-] +K19312 pccB; acetyl-CoA/propionyl-CoA carboxylase carboxyl transferase subunit [EC:6.4.1.2 6.4.1.3 2.1.3.15] +K19313 apmA; aminocyclitol acetyltransferase [EC:2.3.-.-] +K19314 sat3; streptothricin acetyltransferase [EC:2.3.-.-] +K19315 aph3-XV; aminoglycoside 3'-phosphotransferase XV [EC:2.7.1.95] +K19316 blaIMI; beta-lactamase class A IMI [EC:3.5.2.6] +K19317 blaBEL; beta-lactamase class A BEL [EC:3.5.2.6] +K19318 blaOXA-213; beta-lactamase class D OXA-213 [EC:3.5.2.6] +K19319 blaOXA-134; beta-lactamase class D OXA-134 [EC:3.5.2.6] +K19320 blaOXA-211; beta-lactamase class D OXA-211 [EC:3.5.2.6] +K19321 blaOXA-214; beta-lactamase class D OXA-214 [EC:3.5.2.6] +K19322 blaOXA-229; beta-lactamase class D OXA-229 [EC:3.5.2.6] +K19323 ATXN10; ataxin-10 +K19324 BEAN1; protein BEAN1 +K19325 ZNF592; zinc finger protein 592 +K19326 SYNE1; nesprin-1 +K19327 ANO10, TMEM16K; anoctamin-10 +K19328 SYT14_16; synaptotagmin-14/16 +K19329 WWOX; WW domain-containing oxidoreductase +K19330 RUBCN; run domain Beclin-1 interacting and cysteine-rich containing protein +K19331 BSND; barttin (chloride channel Ka/b beta subunit) +K19332 MKS1; Meckel syndrome type 1 protein +K19333 kdgR; IclR family transcriptional regulator, KDG regulon repressor +K19334 tabA; biofilm protein TabA +K19335 bdcR; TetR/AcrR family transcriptional regulator, repressor for divergent bdcA +K19336 bdcA; cyclic-di-GMP-binding biofilm dispersal mediator protein +K19337 hexR; RpiR family transcriptional regulator, carbohydrate utilization regulator +K19338 nac; LysR family transcriptional regulator, nitrogen assimilation regulatory protein +K19339 nosR; NosR/NirI family transcriptional regulator, nitrous oxide reductase regulator +K19340 nosF; Cu-processing system ATP-binding protein +K19341 nosY; Cu-processing system permease protein +K19342 nosL; copper chaperone NosL +K19343 nirI; NosR/NirI family transcriptional regulator, nitrite reductase regulator +K19344 nirC; cytochrome c55X +K19345 nirF; protein NirF +K19346 SYNE2; nesprin-2 +K19347 SUN1_2; SUN domain-containing protein 1/2 +K19348 TMEM67, MKS3; meckelin +K19349 vga; pleuromutilin/lincosamide/streptogramin A transport system ATP-binding/permease protein +K19350 lsa; lincosamide and streptogramin A transport system ATP-binding/permease protein +K19351 mpl; zinc metalloproteinase [EC:3.4.24.-] +K19352 CC2D2A; coiled-coil and C2 domain-containing protein 2A +K19353 eptC; heptose-I-phosphate ethanolaminephosphotransferase [EC:2.7.8.-] +K19354 waaH; heptose III glucuronosyltransferase [EC:2.4.1.-] +K19355 MAN; mannan endo-1,4-beta-mannosidase [EC:3.2.1.78] +K19356 E1.14.99.54; lytic cellulose monooxygenase (C1-hydroxylating) [EC:1.14.99.54] +K19357 CELB; cellulase [EC:3.2.1.4] +K19358 HCVgp1; Hepatitis C virus polyprotein +K19360 NPHP3; nephrocystin-3 +K19361 TCTN2; tectonic-2 +K19362 TMEM231; transmembrane protein 231 +K19363 LITAF; lipopolysaccharide-induced tumor necrosis factor-alpha factor +K19364 NIPA1, SLC57A1; magnesium transporter NIPA1 +K19365 BSCL2; seipin +K19366 SPG20; spartin +K19367 SPG21; maspardin +K19368 ZFYVE27; protrudin +K19369 HSPB11; heat shock protein beta-11 +K19370 DNAJC22; DnaJ homolog subfamily C member 22 +K19371 DNAJC25; DnaJ homolog subfamily C member 25 +K19372 DNAJC27; DnaJ homolog subfamily C member 27 +K19373 DNAJC28; DnaJ homolog subfamily C member 28 +K19374 DNAJC30; DnaJ homolog subfamily C member 30 +K19375 HSPBAP1; HSPB1-associated protein 1 +K19376 L; Morbillivirus RNA-directed RNA polymerase L [EC:2.7.7.48 3.6.1.- 2.7.7.88 2.1.1.375] +K19377 P, P/V/C; Morbillivirus phosphoprotein +K19378 H; Morbillivirus hemagglutinin glycoprotein +K19379 F; Morbillivirus fusion glycoprotein F0 +K19380 N; Morbillivirus nucleoprotein +K19381 M; Morbillivirus matrix protein +K19382 TCTN1_3; tectonic-1/3 +K19383 TGIF1; homeobox protein TGIF1 +K19384 TMEM17; transmembrane protein 17 +K19385 TMEM216; transmembrane protein 216 +K19386 POS5; NADH kinase [EC:2.7.1.86] +K19387 PTRF; polymerase I and transcript release factor +K19388 PB2; Influenza virus polymerase basic protein 2 +K19389 PB1; Influenza virus RNA-directed RNA polymerase catalytic subunit [EC:2.7.7.48] +K19390 PA; Influenza virus polymerase acidic protein +K19391 NP; Influenza virus nucleoprotein +K19392 NA; Influenza A/B virus neuraminidase [EC:3.2.1.18] +K19393 M1; Influenza A/B virus matrix protein 1 +K19394 M2; Influenza A virus matrix protein 2 +K19395 NEP, NS2; Influenza A virus nuclear export protein +K19396 NS1; Influenza A virus non-structural protein 1 +K19397 PB1F2; Influenza A virus protein PB1-F2 +K19398 BBS9; Bardet-Biedl syndrome 9 protein +K19399 BBIP1; BBSome-interacting protein 1 +K19400 LZTFL1; leucine zipper transcription factor-like protein 1 +K19401 BBS10; Bardet-Biedl syndrome 10 protein +K19402 BBS12; Bardet-Biedl syndrome 12 protein +K19403 MCPH1; microcephalin +K19404 LIPH_I; phosphatidic acid-selective phospholipase A1 [EC:3.1.1.-] +K19405 mcsB; protein arginine kinase [EC:2.7.14.1] +K19406 LIPM; lipase-like abhydrolase domain-containing protein 3 [EC:3.1.1.-] +K19407 AMER1; APC membrane recruitment protein 1 +K19408 SRPX2; sushi repeat-containing protein SRPX2 +K19409 NLRP2; NACHT, LRR and PYD domains-containing protein 2 +K19410 LEMD3; inner nuclear membrane protein Man1 +K19411 mcsA; protein arginine kinase activator +K19412 argX; glutamate---[amino group carrier protein] ligase [EC:6.3.2.60] +K19413 KDM1B, AOF1, LSD2; lysine-specific histone demethylase 1B [EC:1.-.-.-] +K19414 PHF2, JHDM1E; lysine-specific demethylase PHF2 [EC:1.14.11.-] +K19415 PHF8, JHDM1F; [histone H3]-dimethyl-L-lysine9 demethylase [EC:1.14.11.65 1.14.11.-] +K19416 yccA; modulator of FtsH protease +K19417 slrR; XRE family transcriptional regulator, biofilm formation regulator +K19418 epsK; membrane protein EpsK +K19419 epsG; transmembrane protein EpsG +K19420 epsA, capA; protein tyrosine kinase modulator +K19421 epsC; polysaccharide biosynthesis protein EpsC +K19422 epsD; glycosyltransferase EpsD [EC:2.4.-.-] +K19423 epsE; glycosyltransferase EpsE [EC:2.4.-.-] +K19424 epsF; glycosyltransferase EpsF [EC:2.4.-.-] +K19425 epsH; glycosyltransferase EpsH [EC:2.4.-.-] +K19426 epsI; pyruvyl transferase EpsI [EC:2.-.-.-] +K19427 epsJ; glycosyltransferase EpsJ [EC:2.4.-.-] +K19428 epsL; sugar transferase EpsL [EC:2.-.-.-] +K19429 epsM; acetyltransferase EpsM [EC:2.3.1.-] +K19430 epsN; pyridoxal phosphate-dependent aminotransferase EpsN [EC:2.6.1.-] +K19431 epsO; pyruvyl transferase EpsO [EC:2.-.-.-] +K19432 slrA; anti-repressor of SlrR +K19433 tapA; TasA anchoring/assembly protein +K19434 gH, UL22; Simplexvirus envelope glycoprotein H +K19435 gL, UL1; Simplexvirus envelope glycoprotein L +K19436 ICP0, RL2; Simplexvirus E3 ubiquitin-protein ligase ICP0 +K19437 RL1; Simplexvirus neurovirulence factor ICP34.5 +K19438 US11; Simplexvirus RNA-binding protein +K19439 US3; Simplexvirus serine/threonine-protein kinase US3 [EC:2.7.11.1] +K19440 UL13; Simplexvirus serine/threonine-protein kinase UL13 [EC:2.7.11.1] +K19441 US1; Simplexvirus transcriptional regulator ICP22 +K19442 ICP8, DBP, UL29; Simplexvirus major DNA-binding protein +K19443 UL54; Simplexvirus mRNA export factor +K19444 UL48; Simplexvirus tegument protein VP16 +K19445 ICP4, RS1; Simplexvirus major viral transcription factor ICP4 +K19446 US12; Simplexvirus ICP47 protein +K19447 UL41; Simplexvirus virion host shutoff protein [EC:3.1.27.-] +K19448 UL39; Simplexvirus ribonucleoside-diphosphate reductase large subunit [EC:1.17.4.1] +K19449 sinR; XRE family transcriptional regulator, master regulator for biofilm formation +K19450 BLLF1; Lymphocryptovirus envelope glycoprotein GP350 +K19451 gH; Lymphocryptovirus envelope glycoprotein H +K19452 gL; Lymphocryptovirus envelope glycoprotein L +K19453 BBRF2; Lymphocryptovirus virion egress protein UL7 +K19454 BMLF1; Lymphocryptovirus mRNA export factor ICP27 +K19455 BGLF4; Lymphocryptovirus serine/threonine-protein kinase BGLF4 [EC:2.7.11.1] +K19456 EBNALP; Lymphocryptovirus nuclear antigen leader protein +K19457 EBNA2; Lymphocryptovirus nuclear antigen 2 +K19458 EBNA6, EBNA3C; Lymphocryptovirus nuclear antigen 6 +K19459 LMP1; Lymphocryptovirus latent membrane protein 1 +K19460 LMP2A; Lymphocryptovirus latent membrane protein 2A +K19461 EBNA1, BKRF1; Lymphocryptovirus nuclear antigen 1 +K19462 BZLF1; Lymphocryptovirus trans-activator protein BZLF1 +K19463 BHRF1; Lymphocryptovirus apoptosis regulator BHRF1 +K19464 PLEKHG5; pleckstrin homology domain-containing family G member 5 +K19465 MGME1, DDK1; mitochondrial genome maintenance exonuclease 1 [EC:3.1.-.-] +K19466 DDX59; ATP-dependent RNA helicase DDX59 [EC:5.6.2.7] +K19467 MATN; matrilin +K19469 FTO; mRNA N6-methyladenine demethylase [EC:1.14.11.53] +K19470 C1QTNF1_6_8; complement C1q tumor necrosis factor-related protein 1/6/8 +K19471 RSPO1; R-spondin 1 +K19472 SIX2; homeobox protein SIX2 +K19473 SIX3_6, OPTIX; homeobox protein SIX3/6 +K19474 SIX5; homeobox protein SIX5 +K19475 WIPF; WAS/WASL-interacting protein +K19476 IST1; vacuolar protein sorting-associated protein IST1 +K19477 PRKG2; cGMP-dependent protein kinase 2 [EC:2.7.11.12] +K19478 MAGT1, TUSC3; dolichyl-diphosphooligosaccharide---protein glycosyltransferase subunit MAGT1/TUSC3 +K19479 COL10A; collagen type X alpha +K19480 ANO5, GDD1, TMEM16E; anoctamin-5 +K19481 MGP; matrix Gla protein +K19482 NDN; necdin +K19483 NAV2; neuron navigator 2 [EC:5.6.2.4] +K19484 PLAG1; zinc finger protein PLAG1 +K19485 PLAGL1; zinc finger protein PLAGL1 +K19486 PLAGL2; zinc finger protein PLAGL2 +K19487 SFP1; transcription factor SFP1 +K19488 DMRT1; doublesex- and mab-3-related transcription factor 1 +K19489 DMRT2; doublesex- and mab-3-related transcription factor 2 +K19490 DMRT3; doublesex- and mab-3-related transcription factor 3 +K19491 DMRT4_5, DMRTA; doublesex- and mab-3-related transcription factor 4/5 +K19492 DMRT6, DMRTB; doublesex- and mab-3-related transcription factor 6 +K19493 DMRT7, DMRTC2; doublesex- and mab-3-related transcription factor 7 +K19494 DMRT8, DMRTC1; doublesex- and mab-3-related transcription factor 8 +K19495 JAZF1; juxtaposed with another zinc finger protein 1 +K19496 ANO1, DOG1, TMEM16A; anoctamin-1 +K19497 ANO2, TMEM16B; anoctamin-2 +K19498 ANO3, TMEM16C; anoctamin-3 +K19499 ANO4, TMEM16D; anoctamin-4 +K19500 ANO6, TMEM16F; anoctamin-6 +K19501 ANO7, NGEP, TMEM16G; anoctamin-7 +K19502 ANO8, TMEM16H; anoctamin-8 +K19503 ANO9, TMEM16J; anoctamin-9 +K19504 gfrE; glucoselysine-6-phosphate deglycase +K19505 gfrR; sigma-54 dependent transcriptional regulator, gfr operon transcriptional activator +K19506 gfrA; fructoselysine/glucoselysine PTS system EIIA component [EC:2.7.1.-] +K19507 gfrB; fructoselysine/glucoselysine PTS system EIIB component [EC:2.7.1.-] +K19508 gfrC; fructoselysine/glucoselysine PTS system EIIC component +K19509 gfrD; fructoselysine/glucoselysine PTS system EIID component +K19510 gfrF; fructoselysine-6-phosphate deglycase +K19511 PXDN, VPO1; peroxidase [EC:1.11.1.7] +K19512 MAMLD1; mastermind-like domain-containing protein 1 +K19513 CLEC16A; protein CLEC16A +K19514 ATP6AP2, PRR; renin receptor +K19515 bamB; benzoyl-CoA reductase subunit BamB [EC:1.3.-.-] +K19516 bamC; benzoyl-CoA reductase subunit BamC [EC:1.3.-.-] +K19517 MIK; 1D-myo-inositol 3-kinase [EC:2.7.1.64] +K19518 TRIB3; tribbles homolog 3 +K19519 TGFBI, BIGH3; transforming growth factor-beta-induced protein +K19520 UPK3A, UPIII; uroplakin-3a +K19521 RFX6; regulatory factor X 6 +K19522 XK; membrane transport protein XK +K19523 CPT1B; carnitine O-palmitoyltransferase 1, muscle isoform [EC:2.3.1.21] +K19524 CPT1C; carnitine O-palmitoyltransferase 1, brain isoform [EC:2.3.1.21] +K19525 VPS13A_C; vacuolar protein sorting-associated protein 13A/C +K19526 VPS13B; vacuolar protein sorting-associated protein 13B +K19527 VPS13D; vacuolar protein sorting-associated protein 13D +K19528 SYCP3; synaptonemal complex protein 3 +K19529 SYCP2; synaptonemal complex protein 2 +K19530 JPH; junctophilin +K19531 CDAN1; codanin-1 +K19532 LBR; Delta14-sterol reductase (lamin-B receptor) [EC:1.3.1.70] +K19533 SYCP1; synaptonemal complex protein 1 +K19534 SYCE1; synaptonemal complex central element protein 1 +K19535 SYCE2; synaptonemal complex central element protein 2 +K19536 SYCE3; synaptonemal complex central element protein 3 +K19537 TEX12; testis-expressed protein 12 +K19538 RP1; retinitis pigmentosa 1 +K19539 SECISBP2, SBP2; selenocysteine insertion sequence-binding protein 2 +K19540 frlA; fructoselysine transporter +K19541 lmrA; MFS transporter, DHA2 family, lincomycin resistance protein +K19542 otrB, tcr; MFS transporter, DHA2 family, tetracycline/oxytetracycline resistance protein +K19543 aph3-VII; aminoglycoside 3'-phosphotransferase [EC:2.7.1.95] +K19544 ant4-II; aminoglycoside 4'-adenylyltransferase [EC:2.7.7.-] +K19545 lnuA_C_D_E, lin; lincosamide nucleotidyltransferase A/C/D/E +K19546 bacA; prephenate decarboxylase [EC:4.1.1.100] +K19547 bacB; 3-[(4R)-4-hydroxycyclohexa-1,5-dien-1-yl]-2-oxopropanoate isomerase [EC:5.3.3.19] +K19548 bacC; dihydroanticapsin dehydrogenase [EC:1.1.1.385] +K19549 bacF; bacilysin biosynthesis transaminase BacF [EC:2.6.1.-] +K19550 bacG; bacilysin biosynthesis oxidoreductase BacG [EC:1.3.1.-] +K19551 pelC; pectate lyase C [EC:4.2.2.2 4.2.2.10] +K19552 bacE; MFS transporter, DHA3 family, bacilysin exporter BacE +K19553 TGIF2; homeobox protein TGIF2 +K19554 TGIF2L, TGIFL; homeobox protein TGIF2L +K19555 spvR; LysR family transcriptional regulator, spv operon transcriptional activator +K19556 spvA; salmonella plasmid virulence protein A +K19557 spvD; salmonella plasmid virulence protein D +K19558 NBL1; neuroblastoma suppressor of tumorigenicity 1 +K19559 LTBP1; latent transforming growth factor beta binding protein 1 +K19560 bioK; pimeloyl-[acyl-carrier protein] methyl ester esterase [EC:3.1.1.85] +K19561 bioJ; pimeloyl-[acyl-carrier protein] methyl ester esterase [EC:3.1.1.85] +K19562 BIO3-BIO1; bifunctional dethiobiotin synthetase / adenosylmethionine---8-amino-7-oxononanoate aminotransferase [EC:6.3.3.3 2.6.1.62] +K19563 bioA, bioK; lysine---8-amino-7-oxononanoate aminotransferase [EC:2.6.1.105] +K19564 CTR, HNM1; choline transport protein +K19565 BIO5; 8-amino-7-oxononanoate transporter +K19566 elmGT; 8-demethyltetracenomycin C L-rhamnosyltransferase [EC:2.4.1.331] +K19567 elmMI; 8-demethyl-8-alpha-L-rhamnosyltetracenomycin-C 2'-O-methyltransferase [EC:2.1.1.305] +K19568 elmMII; 8-demethyl-8-(2-methoxy-alpha-L-rhamnosyl)tetracenomycin-C 3'-O-methyltransferase [EC:2.1.1.306] +K19569 elmMIII; 8-demethyl-8-(2,3-dimethoxy-alpha-L-rhamnosyl)tetracenomycin-C 4'-O-methyltransferase [EC:2.1.1.307] +K19570 elmD; 8-demethyl-8-(2,3,4-trimethoxy-alpha-L-rhamnosyl)tetracenomycin-C O-methyltransferase [EC:2.1.1.-] +K19571 LPS; levopimaradiene/neoabietadiene/copalyl diphosphate synthase [EC:4.2.3.32 4.2.3.132 5.5.1.12] +K19572 CECR1, ADA2; adenosine deaminase CECR1 [EC:3.5.4.4] +K19573 ATAT1, MEC17; alpha-tubulin N-acetyltransferase 1 [EC:2.3.1.108] +K19574 OBSL1; obscurin-like protein 1 +K19575 bmrR; MerR family transcriptional regulator, activator of bmr gene +K19576 norA; MFS transporter, DHA1 family, quinolone resistance protein +K19577 ydhP; MFS transporter, DHA1 family, inner membrane transport protein +K19578 bmr; MFS transporter, DHA1 family, multidrug resistance protein +K19579 NTM1B, METTL11B; protein N-terminal monomethyltransferase [EC:2.1.1.299] +K19580 rppA; 1,3,6,8-tetrahydroxynaphthalene synthase [EC:2.3.1.233] +K19581 LPPR1_2_5; lipid phosphate phosphatase-related protein type 1/2/5 +K19582 LPPR3_4; lipid phosphate phosphatase-related protein type 3/4 +K19583 GK5; putative glycerol kinase 5 [EC:2.7.1.30] +K19584 PRKX; protein kinase X [EC:2.7.11.11] +K19585 oqxB; multidrug efflux pump +K19586 oqxA; membrane fusion protein, multidrug efflux system +K19587 oqxR; Rrf2 family transcriptional regulator, repressor of oqxAB +K19588 dopDH; 2,5-dioxopentanoate dehydrogenase [EC:1.2.1.26] +K19589 N6AMT1; release factor glutamine methyltransferase [EC:2.1.1.297] +K19590 araDH; D-arabinose 1-dehydrogenase (NADP+) [EC:1.1.1.427] +K19591 cueR; MerR family transcriptional regulator, copper efflux regulator +K19592 golS; MerR family transcriptional regulator, gold-responsive activator of gol and ges genes +K19593 opmE; outer membrane protein, multidrug efflux system +K19594 gesB, mexQ; gold/copper resistance efflux pump +K19595 gesA, mexP; membrane fusion protein, gold/copper resistance efflux system +K19596 PLK5; inactive serine/threonine-protein kinase PLK5 +K19597 golT; Au+-exporting ATPase [EC:3.6.1.-] +K19598 IL27RA; interleukin 27 receptor alpha +K19599 DOME; cytokine receptor domeless +K19600 TUB, TULP; tubby and related proteins +K19601 EYS; protein eyes shut +K19602 CERKL; ceramide kinase-like protein +K19603 MAPK15; mitogen-activated protein kinase 15 [EC:2.7.11.24] +K19604 RP9, PAP-1; retinitis pigmentosa 9 protein +K19605 EVC1; ellis van creveld syndrome protein 1 +K19606 CRTAP; cartilage-associated protein +K19607 RPGR; X-linked retinitis pigmentosa GTPase regulator +K19608 EVC2; ellis van creveld syndrome protein 2 +K19609 pfeS, pirS; two-component system, OmpR family, sensor histidine kinase PfeS [EC:2.7.13.3] +K19610 pfeR, pirR; two-component system, OmpR family, response regulator PfeR +K19611 fepA, pfeA, iroN, pirA; ferric enterobactin receptor +K19612 PDE12; 2',5'-phosphodiesterase [EC:3.1.13.4 3.1.4.-] +K19613 SHOC2, SUR8; leucine-rich repeat protein SHOC2 +K19614 SERPINF1, PEDF; pigment epithelium-derived factor +K19615 fitD, mcf; insecticidal toxin +K19616 fitF; two-component system, sensor histidine kinase and response regulator FitF [EC:2.7.13.3] +K19617 fitH; two-component system, response regulator FitH +K19618 fitG; LysR family transcriptional regulator, activator of insecticidal toxin +K19619 TDP2; tyrosyl-DNA phosphodiesterase 2 [EC:3.1.4.-] +K19620 phcB; extracellular factor (EF) 3-hydroxypalmitic acid methyl ester biosynthesis protein +K19621 phcS; two-component system, sensor histidine kinase PhcS [EC:2.7.13.3] +K19622 phcR; two-component system, response regulator PhcR +K19623 phcQ; two-component system, probable response regulator PhcQ +K19624 phcA; LysR family transcriptional regulator, virulence genes transcriptional regulator +K19625 RLBP1; retinaldehyde-binding protein 1 +K19626 INVS; inversin +K19627 SAG; S-arrestin +K19628 CYP158A1; biflaviolin synthase [EC:1.14.19.69] +K19629 tsaD1; 4-(hydroxymethyl)benzenesulfonate dehydrogenase [EC:1.1.1.257] +K19630 tsaC1; 4-formylbenzenesulfonate dehydrogenase [EC:1.2.1.62] +K19631 SMAD7; mothers against decapentaplegic homolog 7 +K19632 rfbJ; CDP-abequose synthase [EC:1.1.1.341] +K19633 sr; sorbose reductase [EC:1.1.1.289] +K19634 gar1; D-galacturonate reductase [EC:1.1.1.365] +K19635 E1.1.1.366; L-idonate 5-dehydrogenase [EC:1.1.1.366] +K19636 USH2A; usherin +K19637 PRCD; progressive rod-cone degeneration protein +K19638 CCBE1; collagen and calcium-binding EGF domain-containing protein 1 +K19639 PR; perakine reductase [EC:1.1.1.317] +K19640 hypX, hoxX; putative two-component system protein, hydrogenase maturation factor HypX/HoxX +K19641 hupR, hoxA; two-component system, NtrC family, response regulator HupR/HoxA +K19642 GALUR; D-galacturonate reductase [EC:1.1.1.365] +K19643 dfrA10, dfr10; dihydrofolate reductase (trimethoprim resistance protein) [EC:1.5.1.3] +K19644 dfrA19, dfrA18; dihydrofolate reductase (trimethoprim resistance protein) [EC:1.5.1.3] +K19645 dfrB, dfr2; dihydrofolate reductase (trimethoprim resistance protein) [EC:1.5.1.3] +K19646 fexA_B; MFS transporter, DHA2 family, florfenicol/chloramphenicol resistance protein +K19647 hgd; 2-hydroxymethylglutarate dehydrogenase [EC:1.1.1.291] +K19648 apdH, APDH; D-arabitol-phosphate dehydrogenase [EC:1.1.1.301] +K19649 camD; 5-exo-hydroxycamphor dehydrogenase [EC:1.1.1.327] +K19650 SDH; secoisolariciresinol dehydrogenase [EC:1.1.1.331] +K19651 MecgoR; methylecgonone reductase [EC:1.1.1.334] +K19652 tal; dTDP-6-deoxy-L-talose 4-dehydrogenase [NAD(P)+] [EC:1.1.1.344] +K19653 geoA; geraniol dehydrogenase (NAD+) [EC:1.1.1.347] +K19654 CPR-C2; 2-dehydropantolactone reductase [EC:1.1.1.358] +K19655 SPATA7; spermatogenesis-associated protein 7 +K19656 IFT122; intraflagellar transport protein 122 +K19657 NPHP1; nephrocystin-1 +K19658 ECH2; peroxisomal enoyl-CoA hydratase 2 [EC:4.2.1.119] +K19659 phaJ; enoyl-CoA hydratase [EC:4.2.1.119] +K19660 araDH; L-arabinose 1-dehydrogenase [NAD(P)+] [EC:1.1.1.376] +K19661 hupT, hoxJ; two-component system, NtrC family, sensor histidine kinase HupT/HoxJ [EC:2.7.13.3] +K19662 PRKCB; classical protein kinase C beta type [EC:2.7.11.13] +K19663 PRKCG; classical protein kinase C gamma type [EC:2.7.11.13] +K19664 carS; CDP-2,3-bis-(O-geranylgeranyl)-sn-glycerol synthase [EC:2.7.7.67] +K19665 pssA; archaetidylserine synthase [EC:2.7.8.38] +K19666 solR, cepR, tofR; LuxR family transcriptional regulator, quorum-sensing system regulator SolR +K19667 xpsR; transcriptional activator of eps genes +K19668 CBH2, cbhA; cellulose 1,4-beta-cellobiosidase [EC:3.2.1.91] +K19669 pphA; phosphonopyruvate hydrolase [EC:3.11.1.3] +K19670 phnA; phosphonoacetate hydrolase [EC:3.11.1.2] +K19671 WDR19, IFT144; WD repeat-containing protein 19 +K19672 IFT140; intraflagellar transport protein 140 +K19673 TTC21B, IFT139B; tetratricopeptide repeat protein 21B +K19674 WDR35, IFT121; WD repeat-containing protein 35 +K19675 IFT43; intraflagellar transport protein 43 +K19676 IFT172; intraflagellar transport protein 172 +K19677 IFT81; intraflagellar transport protein 81 +K19678 IFT80; intraflagellar transport protein 80 +K19679 IFT74; intraflagellar transport protein 74 +K19680 TRAF3IP1, IFT54; TRAF3-interacting protein 1 +K19681 IFT52; intraflagellar transport protein 52 +K19682 IFT46; intraflagellar transport protein 46 +K19683 TTC30, DYF1; tetratricopeptide repeat protein 30 +K19684 CLUAP1, DYF3; clusterin-associated protein 1 +K19685 TTC26, IFT56, DYF13; intraflagellar transport protein 56 +K19686 vapC; ribonuclease VapC [EC:3.1.-.-] +K19687 vapB; antitoxin VapB +K19688 bssR; biofilm regulator BssR +K19689 ampS, pepS, ampT; aminopeptidase [EC:3.4.11.-] +K19690 CHK1; osomolarity two-component system, sensor histidine kinase CHK1 [EC:2.7.13.3] +K19691 NIK1, TCSC; osomolarity two-component system, sensor histidine kinase NIK1 [EC:2.7.13.3] +K19692 TCSA; osomolarity two-component system, sensor histidine kinase TcsA [EC:2.7.13.3] +K19693 tfoS; AraC family transcriptional regulator, chitin signaling transcriptional activator +K19694 chiS; two-component system, sensor histidine kinase ChiS +K19695 NCALD; neurocalcin delta +K19696 mtiP; 5'-methylthioinosine phosphorylase [EC:2.4.2.44] +K19697 pduW; propionate kinase [EC:2.7.2.15] +K19698 megDVI; TDP-megosamine glycosyltransferase auxiliary protein +K19699 safD; sulfoacetaldehyde dehydrogenase [EC:1.2.1.73] +K19700 sap; 3-succinoylsemialdehyde-pyridine dehydrogenase [EC:1.2.1.83] +K19701 ywaD; aminopeptidase YwaD [EC:3.4.11.6 3.4.11.10] +K19702 E3.4.11.24; aminopeptidase S [EC:3.4.11.24] +K19703 FA2H, SCS7; 4-hydroxysphinganine ceramide fatty acyl 2-hydroxylase [EC:1.14.18.6] +K19704 PTC1; protein phosphatase PTC1 [EC:3.1.3.16] +K19705 PTC4; protein phosphatase PTC4 [EC:3.1.3.16] +K19706 FAH; dihydroceramide fatty acyl 2-hydroxylase [EC:1.14.18.7] +K19707 rsbQ; sigma-B regulation protein RsbQ +K19708 PTC6, AUP1; protein phosphatase PTC6 [EC:3.1.3.16 3.1.3.43] +K19709 ydiF; acetate CoA-transferase [EC:2.8.3.8] +K19710 E2.7.7.53; ATP adenylyltransferase [EC:2.7.7.53] +K19711 E1.1.1.387; L-serine 3-dehydrogenase (NAD+) [EC:1.1.1.387] +K19712 cobY; adenosylcobinamide-phosphate guanylyltransferase [EC:2.7.7.62] +K19713 tsdA; thiosulfate dehydrogenase [EC:1.8.2.2] +K19714 kdnB; 3-deoxy-alpha-D-manno-octulosonate 8-oxidase [EC:1.1.3.48] +K19715 kdnA; 8-amino-3,8-dideoxy-alpha-D-manno-octulosonate transaminase [EC:2.6.1.109] +K19716 AUP1; ancient ubiquitous protein 1 +K19717 ATG33; autophagy-related protein 33 +K19718 BRE5; UBP3-associated protein BRE5 +K19719 COL2A; collagen type II alpha +K19720 COL3A; collagen type III alpha +K19721 COL5AS; collagen type V/XI/XXIV/XXVII, alpha +K19722 AGER, RAGE; receptor for advanced glycosylation end products +K19723 dcsB; Nomega-hydroxy-L-arginine amidinohydrolase [EC:3.5.3.25] +K19724 dcsC; O-ureido-serine racemase [EC:5.1.1.19] +K19725 dcsD; O-ureido-L-serine/cysteine synthase [EC:2.6.99.3 2.5.1.47] +K19726 dcsE; serine/homoserine O-acetyltransferase [EC:2.3.1.30 2.3.1.31] +K19727 dcsG; O-ureido-D-serine cyclo-ligase [EC:6.3.3.5] +K19728 UNC13D, MUNC13; protein unc-13 D +K19729 GNAT3; guanine nucleotide-binding protein G(t) subunit alpha 3 +K19730 ATG101; autophagy-related protein 101 +K19731 cciR; LuxR family transcriptional regulator, quorum-sensing system regulator CciR +K19732 traR; LuxR family transcriptional regulator, activator of conjugal transfer of Ti plasmids +K19733 sinR, avsR; LuxR family transcriptional regulator, quorum-sensing system regulator SinR +K19734 expR; LuxR family transcriptional regulator, quorum-sensing system regulator ExpR +K19735 mvfR, pqsR; LysR family transcriptional regulator, quorum-sensing system regulator MvfR +K19736 aefR; TetR/AcrR family transcriptional regulator, regulator of autoinduction and epiphytic fitness +K19737 PRMT9; type II protein arginine methyltransferase [EC:2.1.1.320] +K19738 CALHM1; calcium homeostasis modulator protein 1 +K19739 CALHM2; calcium homeostasis modulator protein 2 +K19740 CALHM3; calcium homeostasis modulator protein 3 +K19741 dcsA; Nomega-hydroxy-L-arginine synthase [EC:1.14.-.-] +K19742 lhpI; 1-pyrroline-2-carboxylate reductase [NAD(P)H] [EC:1.5.1.49] +K19743 lhpI; 1-piperideine-2-carboxylate/1-pyrroline-2-carboxylate reductase [NAD(P)H] [EC:1.5.1.1] +K19744 dauB; L-arginine dehydrogenase [EC:1.4.1.25] +K19745 acuI; acrylyl-CoA reductase (NADPH) [EC:1.3.1.-] +K19746 dauA; D-arginine dehydrogenase [EC:1.4.99.6] +K19747 DCR; BAHD acyltransferase [EC:2.3.1.-] +K19748 GORAB, SCYL1BP1; RAB6-interacting golgin +K19749 RAI1; retinoic acid-induced protein 1 +K19750 DNAAF1, LRRC50, ODA7; dynein axonemal assembly factor 1 +K19751 DNAAF2, KTU, PF13; dynein axonemal assembly factor 2 +K19752 DNAAF3, PF22; dynein axonemal assembly factor 3 +K19753 LRRC6, DNAAF11; dynein axonemal assembly factor 11 +K19754 DRC1; dynein regulatry complex protein 1 +K19755 RSPH1; radial spoke head protein 1 +K19756 RSPH4_6; radial spoke head protein 4/6 +K19757 RSPH9; radial spoke head protein 9 +K19758 DNAAF4, DYX1C1; dynein axonemal assembly factor 4 +K19759 DNAAF5; dynein axonemal assembly factor 5 +K19760 DAW1; dynein assembly factor with WDR repeat domains 1 +K19761 GGACT; gamma-glutamylaminecyclotransferase [EC:2.3.2.-] +K19762 HAF1; ATP-binding cassette, subfamily B, HAIF transporter +K19763 JKK1; dual specificity mitogen-activated protein kinase kinase JKK-1 [EC:2.7.12.2] +K19764 INS7; insulin-like neuropeptide +K19765 HSBP1; heat shock factor-binding protein 1 +K19766 HSP16.1; heat shock protein Hsp-16.1/Hsp-16.11 +K19767 HSP16.49; heat shock protein Hsp-16.48/Hsp-16.49 +K19768 HSP12.6; heat shock protein 12.6 +K19769 SIP1; stress-induced protein 1 +K19770 RNASEK; ribonuclease kappa [EC:3.1.-.-] +K19771 LIPL4; lipase +K19772 LIPS17; triacylglycerol lipase +K19773 NHR80; nuclear hormone receptor family member NHR-80 +K19774 DVE1; homeobox domain-containing protein +K19775 exuR; GntR family transcriptional regulator, hexuronate regulon transcriptional repressor +K19776 dgoR; GntR family transcriptional regulator, galactonate operon transcriptional repressor +K19777 hdeA; acid stress chaperone HdeA +K19778 hdeB; acid stress chaperone HdeB +K19779 ralR; endodeoxyribonuclease RalR [EC:3.1.-.-] +K19780 ralA, rcbA; antisense regulator of RalR protein +K19781 HMI1; ATP-dependent DNA helicase HMI1, mitochondrial [EC:5.6.2.4] +K19782 DSS1, MSU1; exoribonuclease II, mitochondrial [EC:3.1.13.1] +K19783 HCS1; DNA polymerase alpha-associated DNA helicase A [EC:5.6.2.3] +K19784 chrR, NQR; chromate reductase, NAD(P)H dehydrogenase (quinone) +K19785 POF1; nicotinamide-nucleotide adenylyltransferase [EC:2.7.7.1] +K19786 IPK1; inositol-pentakisphosphate 2-kinase [EC:2.7.1.158] +K19787 CARNMT1; carnosine N-methyltransferase [EC:2.1.1.22] +K19788 OLA1; obg-like ATPase 1 +K19789 radD; DNA repair protein RadD +K19790 PPM1N; protein phosphatase 1N [EC:3.1.3.16] +K19791 FET3_5; iron transport multicopper oxidase +K19792 FET4; low-affinity ferrous iron transport protein +K19793 mfnC; (5-formylfuran-3-yl)methyl phosphate transaminase [EC:2.6.1.108] +K19794 bar; barbiturase [EC:3.5.2.1] +K19795 E3.5.1.95; ureidomalonase [EC:3.5.1.95] +K19796 gp42; Straboviridae dCMP hydroxymethylase [EC:2.1.2.8] +K19797 gp1; Straboviridae T-even-induced deoxynucleotide kinase [EC:2.7.4.12] +K19798 GIS1; transcriptional activator/repressor GIS1 +K19799 RPH1; DNA damage-responsive transcriptional repressor / [histone H3]-trimethyl-L-lysine36 demethylase [EC:1.14.11.69] +K19800 SCH9; serine/threonine protein kinase SCH9 [EC:2.7.11.1] +K19801 PI4KB; phosphatidylinositol 4-kinase B [EC:2.7.1.67] +K19802 ycjG, ykfB, dgcA; L-Ala-D/L-Glu epimerase / N-acetyl-D-glutamate racemase [EC:5.1.1.20 5.1.1.25] +K19803 lpxT; Kdo2-lipid A phosphotransferase [EC:2.7.4.29] +K19804 lapB; lipopolysaccharide assembly protein B +K19805 ILP7; insulin-like peptide 7 +K19806 PTP2_3; tyrosine-protein phosphatase 2/3 [EC:3.1.3.48] +K19807 SMP1; transcription factor SMP1 +K19808 ARG80, ARGR1; arginine metabolism regulation protein I +K19809 RIR; 2-methyl-1-pyrroline reductase [EC:1.5.1.48] +K19810 epmB; L-lysine 2,3-aminomutase [EC:5.4.3.-] +K19811 hsdA; 3alpha-hydroxysteroid 3-dehydrogenase [EC:1.1.1.357] +K19812 SDP1; dual-specificity protein phosphatase SDP1 [EC:3.1.3.48] +K19813 gdh; glucose dehydrogenase [EC:1.1.5.9] +K19814 eam; glutamate 2,3-aminomutase [EC:5.4.3.9] +K19815 HOT1; high-osmolarity-induced transcription protein 1 +K19816 MSS11; transcription activator MSS11 +K19817 fprA; coenzyme F420H2 oxidase [EC:1.5.3.22] +K19818 ndhA; nicotine dehydrogenase subunit A [EC:1.5.99.4] +K19819 ndhB; nicotine dehydrogenase subunit B [EC:1.5.99.4] +K19820 ndhC; nicotine dehydrogenase subunit C [EC:1.5.99.4] +K19821 SERPINB2, PAI2; plasminogen activator inhibitor 2 +K19822 VSIG4, CRIg; V-set and immunoglobulin domain-containing protein 4 +K19823 NAO; nitroalkane oxidase [EC:1.7.3.1] +K19824 fprB; rubrerythrin +K19825 DBR; 2-alkenal reductase (NADP+) [EC:1.3.1.102] +K19826 nctB, 6-hlno; (S)-6-hydroxynicotine oxidase [EC:1.5.3.5] +K19827 MACF1; microtuble-actin crosslinking factor 1 +K19828 MTG1; mitochondrial GTPase 1 +K19829 GEP3, MTG3; genetic interactor of prohibitins 3, mitochondrial +K19830 YCK3; casein kinase I homolog 3 [EC:2.7.11.1] +K19831 IFITM1, CD225; interferon induced transmembrane protein 1 +K19832 NOA1; nitric oxide-associated protein 1 +K19833 CLA4; serine/threonine-protein kinase CLA4 [EC:2.7.11.1] +K19834 cyc2; terpentetriene synthase [EC:4.2.3.36] +K19835 cyc1; terpentedienyl-diphosphate synthase [EC:5.5.1.15] +K19836 HPT1; hypoxanthine phosphoribosyltransferase [EC:2.4.2.8] +K19837 atzE; 1-carboxybiuret hydrolase [EC:3.5.1.131] +K19838 SST2; GTPase-activating protein SST2 +K19839 RGA1_2; Rho-type GTPase-activating protein 1/2 +K19840 BEM3; Rho-type GTPase-activating protein +K19841 STE50; protein STE50 +K19842 ROM1_2; RHO1 GDP-GTP exchange protein 1/2 +K19843 TUS1; Rho1 guanine nucleotide exchange factor TUS1 +K19844 BEM2; GTPase-activating protein BEM2 +K19845 SAC7; GTPase-activating protein SAC7 +K19846 SPA2; protein SPA2 +K19847 MLP1, KDX1; MPK-like protein 1 +K19848 HKR1; signaling mucin HKR1 +K19849 MSB2; signaling mucin MSB2 +K19850 OPY2; protein OPY2 +K19851 FLO11; flocculation protein FLO11 +K19852 KIN1_2; serine/threonine protein kinase KIN1/2 [EC:2.7.11.1] +K19853 tyl1a; TDP-4-oxo-6-deoxy-alpha-D-glucose-3,4-oxoisomerase [EC:5.3.2.4] +K19854 tylB; dTDP-3-amino-3,6-dideoxy-alpha-D-glucopyranose transaminase [EC:2.6.1.89] +K19855 novW; dTDP-4-dehydro-6-deoxy-D-glucose 3-epimerase [EC:5.1.3.27] +K19856 aveBVII, avrH; 3-O-methyltransferase [EC:2.1.1.-] +K19857 aveBIV, avrE; dTDP-4-keto-6-deoxy-L-hexose 4-reductase +K19858 oleL; dTDP-4-oxo-2,6-dideoxy-D-glucose 3,5-epimerase [EC:5.1.3.-] +K19859 ang14; dTDP-4-keto-6-deoxyhexose reductase +K19860 GPA1; guanine nucleotide-binding protein alpha-1 subunit +K19861 BEBT, AMAT; benzyl alcohol O-benzoyltransferase [EC:2.3.1.196 2.3.1.232] +K19862 NCK2, GRB4; NCK adaptor protein 2 +K19863 ICA1; islet cell auto antigen 1 +K19864 ICA1L; islet cell autoantigen 1-like protein +K19865 PKHD1; fibrocystin +K19866 EFEMP2; EGF-containing fibulin-like extracellular matrix protein 2 +K19867 PDLIM5_6_7; PDZ and LIM domain protein 5/6/7 +K19868 NME8, TXNDC3; thioredoxin domain-containing protein 3 +K19869 NME9, TXNDC6; thioredoxin domain-containing protein 6 +K19870 SPAG1; sperm-associated antigen 1 +K19871 SALL; sal-like protein +K19872 FKTN; fukutin [EC:2.7.8.-] +K19873 FKRP; fukutin-related protein [EC:2.7.8.-] +K19874 SEPN1; selenoprotein N +K19875 MYOT; myotilin +K19876 STEAP4; metalloreductase STEAP4 [EC:1.16.1.-] +K19877 CHS5; chitin biosynthesis protein CHS5 +K19878 ERC2, CAST; ELKS/RAB6-interacting/CAST family member 2 +K19879 TCAP; telethonin +K19880 CHS6, BCH2; Chs5-Arf1p-binding protein CHS6/BCH2 +K19881 BUD7, BCH1; Chs5-Arf1p-binding protein BUD7/BCH1 +K19882 NOTUM; O-palmitoleoyl-L-serine hydrolase [EC:3.1.1.98] +K19883 aacA-aphD; bifunctional aminoglycoside 6'-N-acetyltransferase / aminoglycoside 2''-phosphotransferase [EC:2.3.1.82 2.7.1.190] +K19884 rebO; 7-chloro-L-tryptophan oxidase [EC:1.4.3.23] +K19885 rebD; dichlorochromopyrrolate synthase / catalase [EC:1.21.98.2 1.11.1.6] +K19886 rebC; flavin-dependent monooxygenase RebC [EC:1.13.12.17] +K19887 rebP; cytochrome P450 RebP [EC:1.13.12.17] +K19888 rebG; 4'-demethylrebeccamycin synthase [EC:4.3.3.5] +K19889 rebM; demethylrebeccamycin-D-glucose O-methyltransferase [EC:2.1.1.164] +K19890 6-hdno; (R)-6-hydroxynicotine oxidase [EC:1.5.3.6] +K19891 GN1_2_3; glucan endo-1,3-beta-glucosidase 1/2/3 [EC:3.2.1.39] +K19892 GN4; glucan endo-1,3-beta-glucosidase 4 [EC:3.2.1.39] +K19893 GN5_6; glucan endo-1,3-beta-glucosidase 5/6 [EC:3.2.1.39] +K19894 SPACA4, SAMP14; sperm acrosome membrane-associated protein 4 +K19895 GFRA; GDNF family receptor alpha +K19896 MUCII; mucin TcMUCII +K19897 FAS1; fasciclin 1 +K19898 SAG1, AGAL1; alpha-agglutinin +K19899 GP2; pancreatic secretory granule membrane major glycoprotein GP2 +K19900 HWP1, RBT1; hyphal wall protein +K19901 DAB2IP, AIP1; disabled homolog 2-interacting protein +K19902 SYT2; synaptotagmin-2 +K19903 SYT3; synaptotagmin-3 +K19904 SYT4; synaptotagmin-4 +K19905 SYT5; synaptotagmin-5 +K19906 SYT6; synaptotagmin-6 +K19907 SYT7; synaptotagmin-7 +K19908 SYT8; synaptotagmin-8 +K19909 SYT9; synaptotagmin-9 +K19910 SYT10; synaptotagmin-10 +K19911 SYT11; synaptotagmin-11 +K19912 SYT12; synaptotagmin-12 +K19913 SYT13; synaptotagmin-13 +K19914 SYT15; synaptotagmin-15 +K19915 SYT17; synaptotagmin-17 +K19916 DOC2A; double C2-like domain-containing protein alpha +K19917 DOC2B; double C2-like domain-containing protein beta +K19918 DOC2G; double C2-like domain-containing protein gamma +K19919 CRISP1_2_3; cysteine-rich secretory protein 1/2/3 +K19920 EQTN; equatorin +K19921 PKDREJ; polycystic kidney disease and receptor for egg jelly-related protein +K19922 TSPOAP1, BZRAP1, RIMBP1; peripheral-type benzodiazepine receptor-associated protein 1 +K19923 SPESP1; sperm equatorial segment protein 1 +K19924 SPINK13; serine protease inhibitor Kazal-type 13 +K19925 TNP2; nuclear transition protein 2 +K19926 ZP1; zona pellucida sperm-binding protein 1 +K19927 ZP2; zona pellucida sperm-binding protein 2 +K19928 ZP3; zona pellucida sperm-binding protein 3 +K19929 CDK5R2; cyclin-dependent kinase 5 activator 2 +K19930 SRCIN1, SNIP; SRC kinase signaling inhibitor 1 +K19931 LIN7; protein lin-7 +K19932 NCS1; neuronal calcium sensor +K19933 CADPS; calcium-dependent secretion activator +K19934 SDF4; calcium-binding protein +K19935 SYCN; syncollin +K19936 VSNL1; visinin-like protein 1 +K19937 RAB3GAP2; Rab3 GTPase-activating protein non-catalytic subunit +K19938 RPH3A; rabphilin-3A +K19939 RPH3AL; Rab effector Noc2 +K19940 SEC2; Rab guanine nucleotide exchange factor SEC2 +K19941 SYN; synapsin +K19942 GAS8, DRC4; dynein regulatory complex subunit 4 +K19943 ZWINT; ZW10 interactor +K19944 TBC1D10; TBC1 domain family member 10 +K19945 TBC1D17; TBC1 domain family member 17 +K19946 OPTN, FIP2; optineurin +K19947 MICAL; F-actin monooxygenase [EC:1.14.13.225] +K19948 MICALL1; MICAL-like protein 1 +K19949 OTOF; otoferlin +K19950 SEC9; protein transport protein SEC9 +K19951 TBC1D8_9; TBC1 domain family member 8/9 +K19952 RABIF, MSS4, DSS4; guanine nucleotide exchange factor +K19953 GRTP1, TBC1D6, MSB3_4; TBC1 domain family member 6 +K19954 adh1; alcohol dehydrogenase [EC:1.1.1.-] +K19955 adh2; alcohol dehydrogenase [EC:1.1.1.-] +K19956 sorE; L-sorbose 1-phosphate reductase [EC:1.1.1.-] +K19957 HE; envelysin [EC:3.4.24.12] +K19958 bnsD; naphthyl-2-hydroxymethylsuccinyl-CoA dehydrogenase BnsD subunit [EC:1.1.-.-] +K19959 bftP; fragilysin [EC:3.4.24.74] +K19960 chnA; cyclohexanol dehydrogenase [EC:1.1.1.245] +K19961 chnD; 6-hydroxyhexanoate dehydrogenase [EC:1.1.1.258] +K19962 chnE; 6-oxohexanoate dehydrogenase [EC:1.2.1.63] +K19963 nylC; 6-aminohexanoate-oligomer endohydrolase [EC:3.5.1.117] +K19964 HIUH; hydroxyisourate hydrolase [EC:3.5.2.17] +K19965 folQ; dihydroneopterin triphosphate pyrophosphohydrolase [EC:3.6.1.67] +K19966 acdDPN7; 3-sulfinopropanoyl-CoA desulfinase [EC:3.13.1.4] +K19967 dta; D-threonine aldolase [EC:4.1.2.42] +K19968 TPS03; (E)-beta-ocimene synthase [EC:4.2.3.106] +K19969 acbC, salQ, valA, cetA; 2-epi-5-epi-valiolone synthase [EC:4.2.3.152] +K19970 NT5E, CD73; 5'-nucleotidase [EC:3.1.3.5] +K19971 psaA, scaA, sloC; manganese/zinc transport system substrate-binding protein +K19972 psaC, scaB, sloB; manganese/zinc transport system permease protein +K19973 mntA; manganese transport system ATP-binding protein [EC:7.2.2.5] +K19974 acbO; 2-epi-5-epi-valiolone 7-phosphate 2-epimerase [EC:5.1.3.35] +K19975 mntC; manganese transport system substrate-binding protein +K19976 mntB; manganese transport system permease protein +K19977 ART5; ADP-ribosyltransferase 5 [EC:2.4.2.31] +K19978 acbK; acarbose 7IV-phosphotransferase [EC:2.7.1.187] +K19979 acbM; 2-epi-5-epi-valiolone 7-kinase [EC:2.7.1.188] +K19980 ART2, RT6; ADP-ribosyltransferase 2 / NAD+ glycohydrolase [EC:2.4.2.31 3.2.2.5] +K19981 prnB; monodechloroaminopyrrolnitrin synthase +K19982 prnD; aminopyrrolnitrin oxygenase [EC:1.14.13.-] +K19983 EXOC1, SEC3; exocyst complex component 1 +K19984 EXOC5, SEC10; exocyst complex component 5 +K19985 EXOC6, SEC15; exocyst complex component 6 +K19986 EXOC8, SEC84; exocyst complex component 8 +K19987 EXOC3L1; exocyst complex component 3-like protein +K19988 EXOC3L2; exocyst complex component 3-like protein 2 +K19989 TNFAIP2, EXOC3L3; tumor necrosis factor alpha-induced protein 2 +K19990 CHGA; chromogranin-A +K19991 CHGB; chromogranin-B +K19992 MSO1; protein MSO1 +K19993 PLEK; pleckstrin +K19994 PRAM1; PML-RARA-regulated adapter molecule 1 +K19995 SCAMP; secretory carrier-associated membrane protein +K19996 SFH5; phosphatidylinositol transfer protein SFH5 +K19997 gnu; GlcNAc-P-P-Und epimerase [EC:5.1.3.26] +K19998 SCFD1, SLY1; sec1 family domain-containing protein 1 +K19999 LGI3; leucine-rich repeat LGI family member 3 +K20000 MATK; maturase K +K20001 GPIHBP1; glycosylphosphatidylinositol-anchored high density lipoprotein-binding protein 1 +K20002 SNAPIN, BLOC1S7; SNARE-associated protein Snapin +K20003 ZDHHC4, SWF1; palmitoyltransferase ZDHHC4 [EC:2.3.1.225] +K20004 TMEM27; collectrin +K20005 LY6G5; lymphocyte antigen 6 complex locus protein G5 +K20006 LY6G6F; lymphocyte antigen 6 complex locus protein G6F +K20007 KCNK18, K2P18.1; potassium channel subfamily K member 18 +K20008 DCP1; death caspase-1 [EC:3.4.22.-] +K20009 DRONC; caspase Dronc [EC:3.4.22.-] +K20010 STRICA; Ser/Thr-rich caspase [EC:3.4.22.-] +K20011 PRDX3; peroxiredoxin 3 [EC:1.11.1.24 1.11.1.25] +K20012 GDF6; growth differentiation factor 6 +K20013 GDF7; growth differentiation factor 7 +K20014 RPR; cell death protein rpr +K20015 EIP93F; ecdysone-induced protein 93F, isoform B +K20016 HID; cell death protein hid +K20017 BUFFY; Bcl-2 family protein +K20018 GRIM; cell death protein Grim +K20019 SKL; IAP-inhibitory protein Sickle +K20020 BOC; brother of CDO +K20021 E4.4.1.28; L-cysteine desulfidase [EC:4.4.1.28] +K20022 galrD-II; galactarate dehydratase (D-threo-forming) [EC:4.2.1.158] +K20023 talrD-galrD; L-talarate/galactarate dehydratase [EC:4.2.1.156 4.2.1.42] +K20024 mgdE; monoglucosyldiacylglycerol epimerase [EC:5.1.3.34] +K20025 hadB; (R)-2-hydroxyisocaproyl-CoA dehydratase alpha subunit [EC:4.2.1.157] +K20026 hadC; (R)-2-hydroxyisocaproyl-CoA dehydratase beta subunit [EC:4.2.1.157] +K20027 ZDHHC1_11; palmitoyltransferase ZDHHC1/11 [EC:2.3.1.225] +K20028 ZDHHC2_15_20; palmitoyltransferase ZDHHC2/15/20 [EC:2.3.1.225] +K20029 ZDHHC3_7_25; palmitoyltransferase ZDHHC3/7/25 [EC:2.3.1.225] +K20030 ZDHHC5_8; palmitoyltransferase ZDHHC5/8 [EC:2.3.1.225] +K20031 ZDHHC6; palmitoyltransferase ZDHHC6 [EC:2.3.1.225] +K20032 ZDHHC13_17, HIP14; palmitoyltransferase ZDHHC13/17 [EC:2.3.1.225] +K20033 CDON, CDO; cell adhesion molecule-related/down-regulated by oncogenes +K20034 dmdB; 3-(methylthio)propionyl---CoA ligase [EC:6.2.1.44] +K20035 dmdC; 3-(methylsulfanyl)propanoyl-CoA dehydrogenase [EC:1.3.99.41] +K20036 dmdD; (methylthio)acryloyl-CoA hydratase [EC:4.2.1.155] +K20037 cutD; choline trimethylamine-lyase activating enzyme [EC:1.97.1.-] +K20038 cutC; choline trimethylamine-lyase [EC:4.3.99.4] +K20039 FDC1; phenacrylate decarboxylase [EC:4.1.1.102] +K20040 HIP1R, SLA2; huntingtin-interacting protein 1-related protein +K20041 GAP43; neuromodulin +K20042 FCHO; F-BAR domain only protein +K20043 SNAP91, AP180, CALM; clathrin coat assembly protein AP180 +K20044 PICALM; phosphatidylinositol-binding clathrin assembly protein +K20045 ITSN; intersectin +K20046 SLA1; actin cytoskeleton-regulatory complex protein SLA1 +K20047 PAN1; actin cytoskeleton-regulatory complex protein PAN1 +K20048 END3; actin cytoskeleton-regulatory complex protein END3 +K20049 LRP1B; low-density lipoprotein receptor-related protein 1B +K20050 LRP3_10_12; low-density lipoprotein receptor-related protein 3/10/12 +K20051 LRP4, MEGF7; low-density lipoprotein receptor-related protein 4 +K20052 LRP8, APOER2; low-density lipoprotein receptor-related protein 8 +K20053 VLDLR; very low-density lipoprotein receptor +K20054 DAB1; disabled homolog 1 +K20055 APBA2, X11L; amyloid beta A4 precursor protein-binding family A member 2 +K20056 GIPC, SEMCAP; PDZ domain-containing protein GIPC +K20057 SYNJ2BP, OMP25; synaptojanin-2-binding protein +K20058 ITGB1BP1; integrin beta-1-binding protein 1 +K20059 LDB19, ART1; arrestin-related trafficking adapter 1 +K20060 ECM21, CSR2, ART2_8; arrestin-related trafficking adapter 2/8 +K20061 ALY1_2, ART3_6; arrestin-related trafficking adapter 3/6 +K20062 ART4_5_7; arrestin-related trafficking adapter 4/5/7 +K20063 RIM8, ART9; arrestin-related trafficking adapter 9 +K20064 GRB10; growth factor receptor-bound protein 10 +K20065 SGIP1; SH3-containing GRB2-like protein 3-interacting protein 1 +K20066 SH3BP4; SH3 domain-binding protein 4 +K20067 STON1_2; stonin-1/2 +K20068 REPS; RalBP1-associated Eps domain-containing protein +K20069 NECAP1_2; adaptin ear-binding coat-associated protein 1/2 +K20070 MLC1; membrane protein MLC1 +K20071 ARHGAP26, GRAF; Rho GTPase-activating protein 26 +K20072 SWAP70; switch-associated protein 70 +K20073 mapZ, locZ; mid-cell-anchored protein Z +K20074 prpC, phpP; PPM family protein phosphatase [EC:3.1.3.16] +K20075 staO; tryptophan oxidase StaO [EC:1.4.3.-] +K20076 staD; chromopyrrolic acid synthase +K20077 staC; flavin-dependent monooxygenase StaC [EC:1.13.12.-] +K20078 staP; cytochrome P450 StaP [EC:1.13.12.-] +K20079 staG; N-glycosyltransferase StaG [EC:2.4.-.-] +K20080 staN; cytochrome P450 StaN [EC:1.14.-.-] +K20081 staMA; N-methyltransferase StaMA [EC:2.1.1.-] +K20082 staMB; O-methyltransferase StaMB [EC:2.1.1.139] +K20084 gnnB; UDP-N-acetyl-3-dehydro-alpha-D-glucosamine 3-aminotranferase [EC:2.6.1.122] +K20085 staK; dTDP-3-amino-4-oxo-2,3,6-trideoxy-L-allose reductase [EC:1.1.1.-] +K20086 vioA; tryptophan oxidase VioA [EC:1.4.3.-] +K20087 vioB; violacein biosynthesis protein VioB +K20088 vioE; violacein biosynthesis protein VioE +K20089 vioD; protodeoxyviolaceinate monooxygenase [EC:1.14.13.217] +K20090 vioC; violacein synthase [EC:1.14.13.224] +K20091 CHD2; chromodomain-helicase-DNA-binding protein 2 [EC:5.6.2.-] +K20092 CHD1L; chromodomain-helicase-DNA-binding protein 1-like [EC:5.6.2.-] +K20093 ERCC6L, PICH; DNA excision repair protein ERCC-6-like [EC:5.6.2.-] +K20094 CED-9; cell death protein 9 +K20095 RNMTL1; 16S rRNA (guanosine(1370)-2'-O)-methyltransferase [EC:2.1.1.-] +K20096 DDX28; ATP-dependent RNA helicase DDX28 [EC:5.6.2.7] +K20097 FKBPL; FK506-binding protein-like +K20098 ERCC6L2; DNA excision repair protein ERCC-6-like 2 [EC:5.6.2.-] +K20099 YTHDC2; ATP-dependent RNA helicase YTHDC2 [EC:5.6.2.6] +K20100 YTHDC1; YTH domain-containing protein 1 +K20101 DHX34; ATP-dependent RNA helicase DHX34 [EC:5.6.2.6] +K20102 YTHDF; YTH domain-containing family protein +K20103 DDX60; ATP-dependent RNA helicase DDX60 [EC:5.6.2.7] +K20104 EGL1; programmed cell death activator egl-1 EGL-1 +K20105 CED-4; cell death protein 4 +K20106 CED-3; cell death protein 3 +K20108 malT; maltose PTS system EIICB or EIICBA component [EC:2.7.1.208] +K20109 zmp1; Pro-Pro endopeptidase [EC:3.4.24.89] +K20110 JAMM1; desampylase [EC:3.4.19.15] +K20111 OVCH2; oviductin [EC:3.4.21.120] +K20112 gatA; galactose PTS system EIIA component [EC:2.7.1.204] +K20113 gatB; galactose PTS system EIIB component [EC:2.7.1.204] +K20114 gatC; galactose PTS system EIIC component +K20115 RP; [pyruvate, phosphate dikinase]-phosphate phosphotransferase / [pyruvate, phosphate dikinase] kinase [EC:2.7.4.27 2.7.11.32] +K20118 ptsG, glcA, glcB; glucose PTS system EIICBA or EIICB component [EC:2.7.1.199] +K20119 BIN2; bridging integrator 2 +K20120 BIN3; bridging integrator 3 +K20121 FNBP1; formin-binding protein 1 +K20122 ARHGAP4; Rho GTPase-activating protein 4 +K20123 PACSIN; protein kinase C and casein kinase substrate in neurons protein +K20124 PSTPIP2; proline-serine-threonine phosphatase interacting protein 2 +K20125 FCHSD; F-BAR and double SH3 domains protein +K20126 NOSTRIN; nostrin +K20127 BAIAP2L1, IRTKS; BAI1-associated protein 2-like protein 1 +K20128 MTSS1; metastasis suppressor protein 1 +K20129 ANKFY1; rabankyrin-5 +K20130 RABEP2; Rab GTPase-binding effector protein 2 +K20131 RABGEF1; Rab5 GDP/GTP exchange factor +K20132 APPL2, DIP13B; DCC-interacting protein 13 beta +K20133 USP6NL; USP6 N-terminal-like protein +K20134 TBC1D3; TBC1 domain family member 3 +K20135 F8A; factor VIII intron 22 protein +K20136 alpha-LP; alpha-lytic endopeptidase [EC:3.4.21.12] +K20137 BX; venombin A [EC:3.4.21.74] +K20138 P40; flavastacin [EC:3.4.24.76] +K20139 JG; jararhagin [EC:3.4.24.73] +K20140 cfiA; 2-oxoglutarate carboxylase large subunit [EC:6.4.1.7] +K20141 cfiB; 2-oxoglutarate carboxylase small subunit [EC:6.4.1.7] +K20142 IDOLDH; ipsdienol dehydrogenase [EC:1.1.1.386] +K20143 acrC; acrylyl-CoA reductase (NADH) [EC:1.3.1.95] +K20144 CrISY; (S)-8-oxocitronellyl enol synthase [EC:1.3.1.122] +K20145 SARED1; sanguinarine reductase [EC:1.3.1.107] +K20146 ntaB, nmoB; nitrilotriacetate monooxygenase reductase component [EC:1.5.1.42] +K20147 ntaA, nmoA; nitrilotriacetate monooxygenase [EC:1.14.14.10] +K20148 dke1; acetylacetone-cleaving enzyme [EC:1.13.11.50] +K20149 P3H; proline 3-hydroxylase [EC:1.14.11.28] +K20150 cyc2; iron:rusticyanin reductase [EC:1.16.9.1] +K20151 fucT; alpha(1,3/1,4) fucosyltransferase [EC:2.4.1.65 2.4.1.152] +K20152 kanK, kacC; 2'-dehydrokanamycin reductase [EC:1.1.1.355] +K20153 VAOA; vanillyl-alcohol oxidase [EC:1.1.3.38] +K20154 PDH; pyranose dehydrogenase [EC:1.1.99.29] +K20155 mao; 4-methylaminobutanoate oxidase (methylamine-forming) [EC:1.5.3.21] +K20156 sgcG; 2-amino-4-deoxychorismate dehydrogenase [EC:1.3.8.16] +K20157 mppO; enduracididine beta-hydroxylase [EC:1.14.11.40] +K20158 pao; pseudooxynicotine dehydrogenase [EC:1.4.2.3] +K20159 sgcD; 2-amino-4-deoxychorismate synthase [EC:2.6.1.86] +K20160 DENND1; DENN domain-containing protein 1 +K20161 DENND2; DENN domain-containing protein 2 +K20162 DENND3; DENN domain-containing protein 3 +K20163 DENND4; DENN domain-containing protein 4 +K20164 DENND5; DENN domain-containing protein 5 +K20165 TBC1D2; TBC1 domain family member 2A +K20166 TBC1D2B; TBC1 domain family member 2B +K20167 TBC1D14; TBC1 domain family member 14 +K20168 TBC1D15; TBC1 domain family member 15 +K20169 nox, nicA2; nicotine dehydrogenase [EC:1.4.2.2] +K20170 nicA1; nicotine oxidoreductase +K20171 spmA; 3-succinoylpyridine monooxygenase subunit A +K20172 spmC; 3-succinoylpyridine monooxygenase subunit C +K20173 RILPL1; RILP-like protein 1 +K20174 OSBPL1_2, ORP1_2; oxysterol-binding protein-related protein 1/2 +K20175 ANKRD27; ankyrin repeat domain-containing protein 27 +K20176 SGSM3, MAP; small G protein signaling modulator 3 +K20177 VPS3, TGFBRAP1; vacuolar protein sorting-associated protein 3 +K20178 VPS8; vacuolar protein sorting-associated protein 8 +K20179 VPS11, PEP5; vacuolar protein sorting-associated protein 11 +K20180 VPS16; vacuolar protein sorting-associated protein 16 +K20181 VPS18, PEP3; vacuolar protein sorting-associated protein 18 +K20182 VPS33A; vacuolar protein sorting-associated protein 33A +K20183 VPS39, VAM6; Vam6/Vps39-like protein vacuolar protein sorting-associated protein 39 +K20184 VPS41; vacuolar protein sorting-associated protein 41 +K20185 BLOC1S1; biogenesis of lysosome-related organelles complex 1 subunit 1 +K20186 BLOC1S3; biogenesis of lysosome-related organelles complex 1 subunit 3 +K20187 BLOC1S5; biogenesis of lysosome-related organelles complex 1 subunit 5 +K20188 BLOC1S6; biogenesis of lysosome-related organelles complex 1 subunit 6 +K20189 DTNBP1, BLOC1S8; dysbindin +K20190 HPS3; Hermansky-Pudlak syndrome 3 protein +K20191 HPS5; Hermansky-Pudlak syndrome 5 protein +K20192 HPS6; Hermansky-Pudlak syndrome 6 protein +K20193 HPS1; Hermansky-Pudlak syndrome 1 protein +K20194 HPS4; Hermansky-Pudlak syndrome 4 protein +K20195 MON1; vacuolar fusion protein MON1 +K20196 KIF3B; kinesin family member 3B +K20197 KIF3C; kinesin family member 3C +K20198 KIF17; kinesin family member 17 +K20199 pchA; 4-hydroxybenzaldehyde dehydrogenase (NADP+) [EC:1.2.1.96] +K20200 pchC; 4-cresol dehydrogenase (hydroxylating) cytochrome subunit +K20201 ywlE; protein arginine phosphatase [EC:3.9.1.2] +K20202 sudA; sulfide dehydrogenase subunit alpha [EC:1.8.1.19] +K20203 sudB; sulfide dehydrogenase subunit beta [EC:1.8.1.19] +K20204 griF; grixazone synthase / o-aminophenol oxidase [EC:1.10.3.15 1.10.3.4] +K20205 mpn; manganese peroxidase [EC:1.11.1.13] +K20206 VBPO; bromide peroxidase [EC:1.11.1.18] +K20207 gpx; hydroperoxy fatty acid reductase [EC:1.11.1.22] +K20208 sfmD; 3-methyl-L-tyrosine peroxygenase [EC:1.11.2.5] +K20209 qdo; 3-hydroxy-4-oxoquinoline 2,4-dioxygenase [EC:1.13.11.47] +K20210 RREB1; ras-responsive element-binding protein 1 +K20211 PROX1; prospero homeobox 1 +K20212 PROX2; prospero homeobox 2 +K20213 RUN; RUNX transcription factor Runt +K20214 LZ; RUNX transcription factor Lozenge +K20215 dph5; diphthine synthase [EC:2.1.1.98] +K20216 DUSP10; dual specificity phosphatase 10 [EC:3.1.3.16 3.1.3.48] +K20217 UBE2E; ubiquitin-conjugating enzyme E2 E [EC:2.3.2.23] +K20218 hipH; 4-hydroxyisophthalate hydroxylase +K20219 phsA; o-aminophenol oxidase [EC:1.10.3.4] +K20220 PTP-ER; tyrosine-protein phosphatase ERK [EC:3.1.3.48] +K20221 IPO4, RANBP4; importin-4 +K20222 IPO5, KPNB3, RANBP5; importin-5 +K20223 IPO7, RANBP7; importin-7 +K20224 IPO9, RANBP9; importin-9 +K20225 CIC; capicua transcriptional repressor +K20226 TRK; protein trunk +K20227 FS1M3; female sterile (1) M3, polehole +K20228 FS1N; female sterile (1) Nasrat +K20229 SPI; protein spitz +K20230 KEK1; kekkon-1 +K20231 DOS; protein daughter of sevenless +K20232 EDL; ETS-domain lacking +K20233 PHYL; phyllopod +K20234 DOK2; docking protein 2 +K20235 RAW; raw +K20236 K20236; Mats homologue +K20237 NUD1; protein NUD1 +K20238 E2.1.1.317; sphingolipid C9-methyltransferase [EC:2.1.1.317] +K20239 SDT; spermidine disinapoyl transferase [EC:2.3.1.248] +K20240 SCT; spermidine dicoumaroyl transferase [EC:2.3.1.249] +K20241 WDR44, RAB11BP; WD repeat-containing protein 44 +K20242 EVI5; ecotropic viral integration site 5 protein +K20243 REP15; Rab15 effector protein +K20244 IHOG; interference hedgohog +K20245 BOI; brother of ihog +K20246 EGT1; L-histidine Nalpha-methyltransferase / hercynylcysteine S-oxide synthase [EC:2.1.1.44 1.21.3.10] +K20247 EGT2; hercynylcysteine S-oxide lyase [EC:4.4.1.36] +K20248 cinI; acyl homoserine lactone synthase [EC:2.3.1.184] +K20249 raiI; acyl homoserine lactone synthase [EC:2.3.1.184] +K20250 cciI; acyl homoserine lactone synthase [EC:2.3.1.184] +K20251 GRIP; glutamate receptor-interacting protein +K20252 cinR; LuxR family transcriptional regulator, quorum-sensing system regulator CinR +K20253 bisR; LuxR family transcriptional regulator, quorum-sensing system regulator BisR +K20254 PLIN4; perilipin-4 +K20255 PLIN5; perilipin-5 +K20256 luxG; flavin reductase [EC:1.-.-.-] +K20257 pqsE; 2-aminobenzoylacetyl-CoA thioesterase [EC:3.1.2.32] +K20258 lecA; PA-I galactophilic lectin +K20259 lecB; PA-IIL fucose-binding lectin +K20260 phzA_B; phenazine biosynthesis protein +K20261 phzD; trans-2,3-dihydro-3-hydroxyanthranilic acid synthase [EC:3.3.2.15] +K20262 phzG; dihydrophenazinedicarboxylate synthase [EC:1.10.3.16] +K20263 fusK; two-component system, NarL family, sensor histidine kinase FusK [EC:2.7.13.3] +K20264 fusR; two-component system, NarL family, response regulator FusR +K20265 gadC; glutamate:GABA antiporter +K20266 trbJ; type IV secretion system protein TrbJ +K20267 trbH; type IV secretion system protein TrbH +K20268 rhiA; rhizosphere induced protein +K20269 rhiB; rhizosphere induced protein +K20270 rhiC; rhizosphere induced protein +K20271 accR; DeoR family transcriptional regulator, repressor of opine catabolism and conjugal transfer +K20272 traM; TraR antiactivator +K20273 zmpA; zinc metalloprotease ZmpA +K20274 zmpB; zinc metalloprotease ZmpB +K20275 aidA; nematocidal protein AidA +K20276 bapA; large repetitive protein +K20277 bcl; mannose-binding lectin +K20278 INPP5E; inositol polyphosphate 5-phosphatase INPP5E [EC:3.1.3.36] +K20279 SYNJ; synaptojanin [EC:3.1.3.36] +K20280 TRAPPC5, TRS31; trafficking protein particle complex subunit 5 +K20281 GCC1; GRIP and coiled-coil domain-containing protein 1 +K20282 GCC2; GRIP and coiled-coil domain-containing protein 2 +K20283 GOLGA4; golgin subfamily A member 4 +K20284 RABGAP1, GAPCENA; Rab GTPase-activating protein 1 +K20285 RABEPK; Rab9 effector protein with kelch motifs +K20286 TMF1; TATA element modulatory factor +K20287 PLIN3; perilipin-3 +K20288 COG1; conserved oligomeric Golgi complex subunit 1 +K20289 COG2; conserved oligomeric Golgi complex subunit 2 +K20290 COG3, SEC34; conserved oligomeric Golgi complex subunit 3 +K20291 COG4, COD1; conserved oligomeric Golgi complex subunit 4 +K20292 COG5; conserved oligomeric Golgi complex subunit 5 +K20293 COG6, COD2; conserved oligomeric Golgi complex subunit 6 +K20294 COG7; conserved oligomeric Golgi complex subunit 7 +K20295 COG8; conserved oligomeric Golgi complex subunit 8 +K20296 ANG2, VPS51; vacuolar protein sorting-associated protein 51 +K20297 VPS51; vacuolar protein sorting-associated protein 51 +K20298 VPS52; vacuolar protein sorting-associated protein 52 +K20299 VPS53; vacuolar protein sorting-associated protein 53 +K20300 TRAPPC1, BET5; trafficking protein particle complex subunit 1 +K20301 TRAPPC2, TRS20; trafficking protein particle complex subunit 2 +K20302 TRAPPC3, BET3; trafficking protein particle complex subunit 3 +K20303 TRAPPC4, TRS23; trafficking protein particle complex subunit 4 +K20304 TRAPPC6, TRS33; trafficking protein particle complex subunit 6 +K20305 TRAPPC8, TRS85; trafficking protein particle complex subunit 8 +K20306 TRAPPC9, TRS120; trafficking protein particle complex subunit 9 +K20307 TRAPPC10, TRS130; trafficking protein particle complex subunit 10 +K20308 TRAPPC11; trafficking protein particle complex subunit 11 +K20309 TRAPPC12; trafficking protein particle complex subunit 12 +K20310 TRAPPC13; trafficking protein particle complex subunit 13 +K20311 TRS65; trafficking protein particle complex II-specific subunit 65 +K20312 TCA17; TRAPP-associated protein TCA17 +K20313 PLEKHA3, FAPP1; pleckstrin homology domain-containing family A member 3 +K20314 ARFIP; arfaptin +K20315 ARHGAP21_23; Rho GTPase-activating protein 21/23 +K20316 SCOC; short coiled-coil protein +K20317 SPAG9, JIP4; c-Jun-amino-terminal kinase-interacting protein 4 +K20318 SYS1; protein SYS1 +K20319 blaADC; beta-lactamase class C ADC [EC:3.5.2.6] +K20320 blaPDC; beta-lactamase class C PDC [EC:3.5.2.6] +K20321 nlmA; mutacin IV +K20322 nlmB; mutacin IV +K20323 nlmC, cipB; mutacin V +K20324 nlmD; mutacin VI +K20325 fhrR; TetR/AcrR family transcriptional regulator, Clp-modulated transcription factor +K20326 xagA; protein XagA +K20327 xagB; glycosyltransferase XagB +K20328 xagC; membrane protein XagC +K20329 qsmR; IclR family transcriptional regulator, positive regulator for flagellar biogenesis +K20330 toxJ; LuxR family transcriptional regulator, activator of tox operons +K20331 toxA; toxoflavin synthase [EC:2.1.1.349] +K20332 toxC; toxoflavin biosynthesis protein ToxC +K20333 toxD; toxoflavin biosynthesis protein ToxD +K20334 cviR; LuxR family transcriptional regulator, quorum-sensing system regulator CviR +K20335 psmA1_2; phenol-soluble modulin alpha 1/2 +K20336 psmA3; phenol-soluble modulin alpha 3 +K20337 psmB; phenol-soluble modulin beta +K20338 rot; MarR family transcriptional regulator, global regulator for virulence +K20339 agrC2; two-component system, LytTR family, sensor histidine kinase AgrC2 [EC:2.7.13.3] +K20340 agrA2; two-component system, LytTR family, response regulator AgrA2 +K20341 blpL, cipI; immunity protein +K20342 comR; HTH-type transcriptional regulator, regulator for ComX +K20343 blpC; peptide pheromone BlpC +K20344 blpA, lagD; ATP-binding cassette, subfamily C, bacteriocin exporter +K20345 blpB; membrane fusion protein, peptide pheromone/bacteriocin exporter +K20346 TMED4_9_11; p24 family protein alpha +K20347 TMED2, EMP24; p24 family protein beta-1 +K20348 TMED1; p24 family protein gamma-1 +K20349 TMED7; p24 family protein gamma-3 +K20350 TMED3; p24 family protein gamma-4 +K20351 TMED6; p24 family protein gamma-5 +K20352 TMED10, ERV25; p24 family protein delta-1 +K20353 SEC16; COPII coat assembly protein SEC16 +K20354 PDILT; protein disulfide-isomerase-like protein of the testis +K20355 ERP27; endoplasmic reticulum protein 27 +K20356 AGR2; anterior gradient protein 2 +K20357 AGR3; anterior gradient protein 3 +K20358 GOLGA2; golgin subfamily A member 2 +K20359 RABAC1, PRAF1; PRA1 family protein 1 +K20360 TBC1D22, GYP1; TBC1 domain family member 2 +K20361 USO1; intracellular protein transport protein USO1 +K20362 YIF1; protein transport protein YIF1 +K20363 YIPF5_7, YIP1; protein YIPF5/7 +K20364 MCFD2; multiple coagulation factor deficiency protein 2 +K20365 ERGIC1; endoplasmic reticulum-Golgi intermediate compartment protein 1 +K20366 ERGIC2, ERV41; endoplasmic reticulum-Golgi intermediate compartment protein 2 +K20367 ERGIC3, ERV46; endoplasmic reticulum-Golgi intermediate compartment protein 3 +K20368 CNIH, ERV14; protein cornichon +K20369 ERV29, SURF4; ER-derived vesicles protein +K20370 PEPCK; phosphoenolpyruvate carboxykinase (diphosphate) [EC:4.1.1.38] +K20371 NUCB; nucleobindin +K20372 TBC1D20, GYP8; TBC1 domain family member 20 +K20373 rgg2; HTH-type transcriptional regulator, SHP2-responsive activator +K20374 rgg3; HTH-type transcriptional regulator, SHP3-responsive repressor +K20375 ropB, rgg1; HTH-type transcriptional regulator, pheromone-responsive regulator +K20376 prgQ; peptide inhibitor iCF10 +K20377 prgX; HTH-type transcriptional regulator, major conjugation operon repressor +K20378 iad1; sex pheromone inhibitor iAD1 +K20379 cad; sex pheromone cAD1 +K20380 traA; HTH-type transcriptional regulator, pheromone-responsive repressor +K20381 traE1; regulatory protein +K20382 asa1; aggregation substance +K20383 cylLL; CylL-L protein +K20384 cylLS; CylL-S protein +K20385 cylM; CylM protein +K20386 cylB; ATP-binding cassette, subfamily B, bacterial CylB +K20387 cylR1; regulatory protein CylR1 +K20388 cylR2; HTH-type transcriptional regulator, cytolysin regulator +K20389 phrH; phosphatase RapH regulator +K20390 papR; regulatory peptide PapR +K20391 plcR; HTH-type transcriptional regulator, pleiotropic regulator of extracellular virulence genes +K20392 PRAF2; PRA1 family protein 2 +K20393 ARL6IP5, PRAF3; PRA1 family protein 3 +K20394 SESN2; sestrin 2 +K20395 CD300B_D_F; CO300B/D/F antigen +K20396 TBC1D7; TBC1 domain family member 7 +K20397 LAMTOR1; ragulator complex protein LAMTOR1 +K20398 LAMTOR2; ragulator complex protein LAMTOR2 +K20399 LAMTOR4; ragulator complex protein LAMTOR4 +K20400 FNIP1; folliculin-interacting protein 1 +K20401 FNIP2; folliculin-interacting protein 2 +K20402 DEPTOR; DEP domain-containing mTOR-interacting protein +K20403 TTI1; TELO2-interacting protein 1 +K20404 DEPDC5, SEA1; SEA/GATOR complex protein SEA1/DEPDC5 +K20405 NPRL2, NPR2; nitrogen permease regulator 2 +K20406 NPRL3, NPR3; nitrogen permease regulator 3 +K20407 MIOS, MIO, SEA4; SEA/GATOR complex protein SEA4/MIOS +K20408 WDR24, SEA2; SEA/GATOR complex protein SEA2/WDR24 +K20409 WDR59, SEA3; SEA/GATOR complex protein SEA3/WDR59 +K20410 MAPKAP1, SIN1, AVO1; target of rapamycin complex 2 subunit MAPKAP1/AVO1 +K20411 PRR5, PROTOR; proline-rich protein 5 +K20412 PI16, CRISP9, CD364; peptidase inhibitor 16 +K20413 HAVCR1, CD365; hepatitis A virus cellular receptor 1 +K20414 HAVCR2, CD366; hepatitis A virus cellular receptor 2 +K20415 madH; ACP-SH:acetate ligase [EC:6.2.1.35] +K20416 FAD5; palmitoyl-[glycerolipid] 7-desaturase [EC:1.14.19.42] +K20417 FAD4; palmitoyl-[glycerolipid] 3-(E)-desaturase [EC:1.14.19.43] +K20418 ido; L-isoleucine 4-hydroxylase [EC:1.14.11.45] +K20419 atdA1; gamma-glutamylanilide synthase [EC:6.3.1.18] +K20420 ncsB3; 2-hydroxy-5-methyl-1-naphthoate 7-hydroxylase [EC:1.14.15.31] +K20421 ncsB1; 2,7-dihydroxy-5-methyl-1-naphthoate 7-O-methyltransferase [EC:2.1.1.303] +K20422 ncsB; neocarzinostatin naphthoate synthase [EC:2.3.1.237] +K20423 ncsB2; 2-hydroxy-7-methoxy-5-methyl-1-naphthoate---CoA ligase [EC:6.2.1.43] +K20424 acbL; 2-epi-valiolone-7-phosphate 1-reductase [EC:1.1.1.-] +K20425 acbN; cyclitol oxidoreductase +K20426 acbU; 1-epi-valienol-7-phosphate kinase [EC:2.7.-.-] +K20427 acbR, vldB; valienol-1-phosphate guanylyltransferase [EC:2.7.7.91] +K20428 acbV; dTDP-4-amino-4,6-dideoxy-D-glucose transaminase [EC:2.6.1.33] +K20429 vioA; dTDP-4-amino-4,6-dideoxy-D-glucose transaminase [EC:2.6.1.33] +K20430 acbS; glycosyltransferase AcbS [EC:2.4.-.-] +K20431 cetB, valD; 2-epi-5-epi-valiolone epimerase [EC:5.1.3.33] +K20432 valK; 5-epi-valiolone dehydratase [EC:4.2.1.-] +K20433 valC; C7-cyclitol 7-kinase [EC:2.7.1.214] +K20434 valN; cyclitol reductase +K20435 valM; validone 7-phosphate aminotransferase [EC:2.6.1.-] +K20436 valL, salC; validamine 7-phosphate valienyltransferase [EC:2.5.1.135] +K20437 vldH; validoxylamine A 7'-phosphate phosphatase [EC:3.1.3.101] +K20438 valG; validoxylamine A glucosyltransferase [EC:2.4.1.338] +K20439 salP; putative phosphohexomutase / phosphatase +K20440 salE; salbostatin 6'-phosphate phosphatase [EC:3.1.3.-] +K20441 cetL; 5-epi-valiolone oxidase [EC:1.1.3.-] +K20442 cetM; 2-keto-5-epi-valolone aminotransferase [EC:2.6.1.-] +K20443 cetD; cetoniacytone B acyltransferase [EC:2.3.1.-] +K20444 rfbC; O-antigen biosynthesis protein [EC:2.4.1.-] +K20445 ndhF; nicotinate dehydrogenase FAD-subunit [EC:1.17.1.5] +K20446 ndhS; nicotinate dehydrogenase small FeS subunit [EC:1.17.1.5] +K20447 ndhL; nicotinate dehydrogenase large molybdopterin subunit [EC:1.17.1.5] +K20448 ndhM; nicotinate dehydrogenase medium molybdopterin subunit [EC:1.17.1.5] +K20449 hnr; 6-hydroxynicotinate reductase [EC:1.3.7.1] +K20450 mgm; 2-methyleneglutarate mutase [EC:5.4.99.4] +K20451 mii; methylitaconate Delta-isomerase [EC:5.3.3.6] +K20452 dmdA; dimethylmaleate hydratase large subunit [EC:4.2.1.85] +K20453 dmdB; dimethylmaleate hydratase small subunit [EC:4.2.1.85] +K20454 dml; 2,3-dimethylmalate lyase [EC:4.1.3.32] +K20455 acnD; 2-methylcitrate dehydratase (2-methyl-trans-aconitate forming) [EC:4.2.1.117] +K20456 OSBP; oxysterol-binding protein 1 +K20457 DHFS; dihydrofolate synthase [EC:6.3.2.12] +K20458 hcl; 3-hydroxybenzoate/4-hydroxybenzoate---CoA ligase [EC:6.2.1.37 6.2.1.27] +K20459 nukF, mcdF, sboF; lantibiotic transport system ATP-binding protein +K20460 nukE, mcdE, sboE; lantibiotic transport system permease protein +K20461 nukG, mcdG, sboG; lantibiotic transport system permease protein +K20462 OSBP2, ORP4; oxysterol-binding protein 2 +K20463 OSBPL3_6_7, ORP3_6_7; oxysterol-binding protein-related protein 3/6/7 +K20464 OSBPL5, ORP5; oxysterol-binding protein-related protein 5 +K20465 OSBPL9_10_11, ORP9_10_11; oxysterol-binding protein-related protein 9/10/11 +K20466 mmpL11; heme transporter +K20467 K20467; heme-binding protein +K20468 K20468; putative heme transporter +K20469 K20469; putative heme transporter +K20470 mmpL3; trehalose monomycolate/heme transporter +K20471 COPD, ARCN1, RET2; coatomer subunit delta +K20472 COPZ, RET3; coatomer subunit zeta +K20473 NBAS; neuroblastoma-amplified sequence +K20474 RINT1, TIP20; RAD50-interacting protein 1 +K20475 SEC39, DSL3; protein transport protein SEC39 +K20476 RIC1; RAB6A-GEF complex partner protein 1 +K20477 RGP1; RAB6A-GEF complex partner protein 2 +K20478 GOLGB1; golgin subfamily B member 1 +K20479 WHAMM; WASP homolog-associated protein with actin, membranes and microtubules +K20480 nprR, nprA; HTH-type transcriptional regulator, quorum sensing regulator NprR +K20481 nprX, nprRB; regulatory peptide NprX +K20482 nisA, spaS, epiA; lantibiotic bacteriocin +K20483 nisB, spaB, epiB; lantibiotic biosynthesis protein +K20484 nisC, spaC, epiC; lantibiotic biosynthesis protein +K20485 nisT, spaT; ATP-binding cassette, subfamily B, bacterial NisT/SpaT +K20486 nisP, epiP; lantibiotic leader peptide-processing serine protease [EC:3.4.21.-] +K20487 nisK, spaK; two-component system, OmpR family, lantibiotic biosynthesis sensor histidine kinase NisK/SpaK [EC:2.7.13.3] +K20488 nisR, spaR; two-component system, OmpR family, lantibiotic biosynthesis response regulator NisR/SpaR +K20489 nisI; lantibiotic immunity protein +K20490 nisF, spaF, cprA, epiF; lantibiotic transport system ATP-binding protein +K20491 nisE, spaE, cprB, epiE; lantibiotic transport system permease protein +K20492 nisG, spaG, cprC; lantibiotic transport system permease protein +K20493 LRRC16, CARMIL; leucine-rich repeat-containing protein 16 +K20494 epiG; lantibiotic transport system permease protein +K20495 CYP704B1; long-chain fatty acid omega-monooxygenase [EC:1.14.14.80] +K20496 CYP703A2; laurate 7-monooxygenase [EC:1.14.14.130] +K20497 CYP124; methyl-branched lipid omega-hydroxylase [EC:1.14.15.14] +K20498 DSD1; D-serine ammonia-lyase [EC:4.3.1.18] +K20499 csh; carbon disulfide hydrolase [EC:3.13.1.5] +K20500 rapL; L-lysine cyclodeaminase [EC:4.3.1.28] +K20501 THCAS; tetrahydrocannabinolic acid synthase [EC:1.21.3.7] +K20502 CBDAS; cannabidiolic acid synthase [EC:1.21.3.8] +K20503 OLS; 3,5,7-trioxododecanoyl-CoA synthase [EC:2.3.1.206] +K20504 dtcycA; cembrene C/nephthenol synthase [EC:4.2.3.148 4.2.3.149] +K20505 dtcycB; nephthenol/cembrene A/pentamethylcyclopentadecatrienol synthase [EC:4.2.3.149 4.2.3.150 4.2.3.151] +K20506 TCEA; tuliposide A-converting enzyme [EC:4.2.99.22] +K20507 TCEB; tuliposide B-converting enzyme [EC:4.2.99.23] +K20508 OAC; olivetolic acid cyclase [EC:4.4.1.26] +K20509 madB, oadB, gcdB, mmdB; carboxybiotin decarboxylase [EC:7.2.4.1] +K20510 madC; malonyl-S-ACP:biotin-protein carboxyltransferase subunit MadC [EC:2.1.3.10] +K20511 madD; malonyl-S-ACP:biotin-protein carboxyltransferase subunit MadD [EC:2.1.3.10] +K20512 CYP725A3; taxoid 14beta-hydroxylase [EC:1.14.13.146] +K20513 CYP76AH1; ferruginol synthase [EC:1.14.14.175] +K20514 DC1; phyllocladan-16alpha-ol/copalyl diphosphate synthase [EC:4.2.3.45 5.5.1.12] +K20515 PIM1; pimaradiene synthase [EC:4.2.3.147] +K20516 CLS; copal-8-ol diphosphate hydratase [EC:4.2.1.133] +K20517 ABS; cis-abienol synthase [EC:4.2.3.140] +K20518 CAS; copal-8-ol diphosphate hydratase / cis-abienol synthase [EC:4.2.1.133 4.2.3.140] +K20519 SS; sclareol synthase [EC:4.2.3.141] +K20520 DBNL, ABP1; drebrin-like protein +K20521 BBC1, MTI1; myosin tail region-interacting protein MTI1 +K20522 LSB1_2; LAS seventeen-binding protein 1/2 +K20523 SH3YL1; SH3 domain-containing YSC84-like protein 1 +K20524 LSB5; LAS seventeen-binding protein 5 +K20525 alg17C; oligo-alginate lyase [EC:4.2.2.26] +K20526 TAGLN; transgelin +K20527 trbB; type IV secretion system protein TrbB [EC:7.4.2.8] +K20528 trbC; type IV secretion system protein TrbC +K20529 trbD; type IV secretion system protein TrbD +K20530 trbE; type IV secretion system protein TrbE [EC:7.4.2.8] +K20531 trbF; type IV secretion system protein TrbF +K20532 trbG; type IV secretion system protein TrbG +K20533 trbI; type IV secretion system protein TrbI +K20534 gtrB; polyisoprenyl-phosphate glycosyltransferase [EC:2.4.-.-] +K20535 MPK1_2; mitogen-activated protein kinase 1/2 [EC:2.7.11.24] +K20536 MPK3; mitogen-activated protein kinase 3 [EC:2.7.11.24] +K20537 MPK7_14; mitogen-activated protein kinase 7/14 [EC:2.7.11.24] +K20538 MPK8; mitogen-activated protein kinase 8 [EC:2.7.11.24] +K20539 blcR; IclR family transcriptional regulator, blcABC operon repressor +K20540 cepR2; LuxR family transcriptional regulator, quorum-sensing system regulator CepR2 +K20541 bcsB; cellulose synthase operon protein B +K20542 bcsZ; endoglucanase [EC:3.2.1.4] +K20543 bcsC; cellulose synthase operon protein C +K20544 CYP86A22; long-chain acyl-CoA omega-monooxygenase [EC:1.14.14.129] +K20545 CYP716A47, PPDS; dammarenediol 12-hydroxylase [EC:1.14.14.120] +K20546 CYP716A53; protopanaxadiol 6-hydroxylase [EC:1.14.14.121] +K20547 CHIB; basic endochitinase B [EC:3.2.1.14] +K20548 ahgd; 3,6-anhydro-alpha-L-galactose dehydrogenase [EC:1.2.1.92] +K20549 aci; 3,6-anhydro-L-galactonate cycloisomerase [EC:5.5.1.25] +K20550 SOL5; prosolanapyrone-II oxidase / prosolanapyrone-III cycloisomerase [EC:1.1.3.42 5.5.1.20] +K20551 MKP2; dual specificity protein phosphatase 1B [EC:3.1.3.16 3.1.3.48] +K20552 ler; transcriptional regulator of LEE operons +K20553 XRN4; 5'-3' exoribonuclease 4 [EC:3.1.13.-] +K20554 rnaIII; small regulatory RNA RNAIII +K20555 trbK; type IV secretion system protein TrbK +K20556 CYP76C; cytochrome P450 family 76 subfamily C +K20557 VIP1; transcription factor VIP1 +K20558 SPCH; transcription factor SPEECHLESS +K20559 CYP71B15; dihydrocamalexate/camalexin synthase [EC:1.14.19.52] +K20560 CYP71BJ1; tabersonine/lochnericine 19-hydroxylase +K20561 CYP71BL2; costunolide synthase [EC:1.14.14.150] +K20562 CYP736A; biphenyl-4-hydroxylase +K20563 CYP750B1; cytochrome P450 family 750 subfamily B1 +K20564 CYP76AA25; cytochrome P450 family 76 subfamily AA25 +K20565 neoG, neoQ; paromamine 6'-oxidase / 6'''-hydroxyneomycin C oxidase [EC:1.1.3.43 1.1.3.44] +K20566 kanI; paromamine 6'-oxidase / 2'-deamino-2'-hydroxyparomamine 6'-oxidase [EC:1.1.3.43 1.1.3.-] +K20567 neoN; neamine transaminase / neomycin C transaminase [EC:2.6.1.93 2.6.1.95] +K20568 kacL; neamine transaminase / 2'-deamino-2'-hydroxyneamine transaminase [EC:2.6.1.93 2.6.1.94] +K20569 btrE; NAD+-dependent dehydrogenase [EC:1.1.1.-] +K20570 btrF; NADPH-dependent reductase [EC:1.1.1.-] +K20571 kanC; dehydrogenase [EC:1.1.1.-] +K20572 kanD; aminotransferase [EC:2.6.1.-] +K20573 kanE, kanM2; 2'-deamino-2'-hydroxyneamine 1-alpha-D-kanosaminyltransferase [EC:2.4.1.301] +K20574 kanJ, kacB; kanamycin B dioxygenase [EC:1.14.11.37] +K20575 aprD4; radical SAM diol-dehydratase +K20576 aprD3; NADP-dependent dehydrogenase [EC:1.1.1.-] +K20577 aprQ; paromamine/lividamine 6'-oxidase [EC:1.1.3.43 1.1.3.-] +K20578 tobM2; glycosyltransferase [EC:2.4.1.-] +K20579 tobZ; nebramycin 5' synthase [EC:6.1.2.2] +K20580 livL, parL; phosphoribosyltransferase [EC:2.4.2.-] +K20581 livP, parP; phosphatase [EC:3.1.3.-] +K20582 livF, parF; N-acetylglucosaminyltransferase [EC:2.4.1.-] +K20583 livD, parD; deacetylase [EC:3.5.1.-] +K20584 livQ, parQ; 6'''-hydroxyparomomycin oxidase [EC:1.1.3.-] +K20585 livB, parB; paromomycin transaminase [EC:2.6.1.-] +K20586 livW; oxidoreductase +K20587 livY; dehydrogenase +K20588 livN, parN; 5'''-epimerase [EC:5.1.3.-] +K20589 genM2, gtmE, gntD; paromamine D-xylosyltransferase [EC:2.4.2.-] +K20590 genD2, gtmC, gntC; gentamicin A2 dehydrogenase [EC:1.1.1.-] +K20591 genS2, gtmD, gntF; pyridoxal phosphate-dependent aminotransferase [EC:2.6.1.-] +K20592 genN; SAM-dependent 3''-N-methyltransferase [EC:2.1.1.-] +K20593 genD1, gtmI, gntE; cobalamin-dependent radical SAM methyltransferase [EC:2.1.1.-] +K20594 genK, gacD, gntK; gentamicin X2 methyltransferase [EC:2.1.1.390] +K20595 genQ, gacJ, gntX; gentamicin-X2/G418 6'-oxidase +K20596 genB1, gacK, gntW; JI-20A/JI-20Ba transaminase [EC:2.6.1.-] +K20597 genB2; JI-20B transaminase / epimerase [EC:2.6.1.-] +K20598 genP, gntI; aminoglycoside phosphotransferase +K20599 SUMM2; NB-LRR protein SUMM2 +K20600 MPK4; mitogen-activated protein kinase 4 [EC:2.7.11.24] +K20602 MEK1, MKK1; mitogen-activated protein kinase kinase 1 [EC:2.7.12.2] +K20603 MKK2; mitogen-activated protein kinase kinase 2 [EC:2.7.12.2] +K20604 MKK9; mitogen-activated protein kinase kinase 9 [EC:2.7.12.2] +K20605 MEKK2; mitogen-activated protein kinase kinase kinase 2 [EC:2.7.11.25] +K20606 ANP1; mitogen-activated protein kinase kinase kinase ANP1 [EC:2.7.11.25] +K20607 MKK3; mitogen-activated protein kinase kinase 3 [EC:2.7.12.2] +K20608 tet; tetrahedral aminopeptidase [EC:3.4.11.-] +K20609 sgcX; putative aminopeptidase [EC:3.4.11.-] +K20610 E4.2.2.25; gellan lyase [EC:4.2.2.25] +K20611 crtD; 1-hydroxy-2-isopentenylcarotenoid 3,4-desaturase [EC:1.3.99.37] +K20612 vioC; L-arginine hydroxylase [EC:1.14.11.41] +K20613 KHS; kievitone hydratase [EC:4.2.1.95] +K20614 ldi; linalool dehydratase / geraniol isomerase [EC:4.2.1.127 5.4.4.4] +K20615 vioD; capreomycidine synthase [EC:4.2.1.145] +K20616 lyeJ; lycopene elongase/hydratase (dihydrobisanhydrobacterioruberin-forming) [EC:2.5.1.150] +K20617 CYP71A; cytochrome P450 family 71 subfamily A +K20618 CYP76A26; nepetalactol monooxygenase [EC:1.14.14.161] +K20619 CYP78A; cytochrome P450 family 78 subfamily A +K20620 CYP81B1; fatty acid hydroxylase +K20621 CYP82Y1; (S)-N-methylcanadine 1-hydroxylase [EC:1.14.14.166] +K20622 CYP87D16; beta-amyrin 16alpha-hydroxylase [EC:1.14.14.171] +K20623 CYP92A6; typhasterol/6-deoxotyphasterol 2alpha-hydroxylase +K20624 CYP94C1; 12-hydroxyjasmonoyl-L-amino acid 12-hydroxylase / fatty acid hydroxylase [EC:1.14.14.49] +K20625 ahy; acetylene hydratase [EC:4.2.1.112] +K20626 lcdA; lactoyl-CoA dehydratase subunit alpha [EC:4.2.1.54] +K20627 lcdB; lactoyl-CoA dehydratase subunit beta [EC:4.2.1.54] +K20628 exlX; expansin +K20629 ABR; active breakpoint cluster region-related protein +K20630 CHN1_2, ARHGAP2_3; chimaerin +K20631 ARHGAP6; Rho GTPase-activating protein 6 +K20632 DLC; deleted in liver cancer protein +K20633 ARHGAP8, BPGAP1; Rho GTPase-activating protein 8 +K20634 ARHGAP9; Rho GTPase-activating protein 9 +K20635 ARHGAP11; Rho GTPase-activating protein 11 +K20636 ARHGAP12_27; Rho GTPase-activating protein 12/27 +K20637 ARHGAP15; Rho GTPase-activating protein 15 +K20638 ARHGAP17, RICH1; Rho GTPase-activating protein 17 +K20639 ARHGAP18_28_40; Rho GTPase-activating protein 18/28/40 +K20640 ARHGAP19; Rho GTPase-activating protein 19 +K20641 ARHGAP20; Rho GTPase-activating protein 20 +K20642 ARHGAP22_24_25; Rho GTPase-activating protein 22/24/25 +K20643 RGD1; Rho GTPase-activating protein RGD1 +K20644 ARHGAP29; Rho GTPase-activating protein 29 +K20645 ARHGAP30; Rho GTPase-activating protein 30 +K20646 ARHGAP31, CDGAP; Rho GTPase-activating protein 31 +K20647 ARHGAP32; Rho GTPase-activating protein 32 +K20648 ARHGAP36; Rho GTPase-activating protein 36 +K20649 ARHGAP39; Rho GTPase-activating protein 39 +K20650 OPHN1, ARHGAP41; oligophrenin-1 +K20651 ARHGAP42, GRAF3; Rho GTPase-activating protein 42 +K20652 SH3BP1, ARHGAP43; SH3-domain binding protein 1 +K20653 GMIP, ARHGAP46; GEM interacting protein +K20654 TAGAP, ARHGAP47; T-cell activation Rho GTPase-activating protein +K20655 SYDE; Rho GTPase-activating protein SYDE +K20656 TMEM189; plasmanylethanolamine desaturase [EC:1.14.19.77] +K20657 CPS-KS; ent-copalyl diphosphate/ent-kaurene synthase [EC:5.5.1.13 4.2.3.19] +K20658 PSM; alpha/beta-amyrin synthase [EC:5.4.99.40 5.4.99.39] +K20659 LUS; lupeol synthase [EC:5.4.99.41] +K20660 CYP709; cytochrome P450 family 709 +K20661 CYP714A1; cytochrome P450 family 714 subfamily A1 +K20662 CYP714A2; gibberellin 13-/12alpha-oxidase [EC:1.14.-.-] +K20663 CYP714D1; gibberellin 16alpha,17-epoxidase [EC:1.14.-.-] +K20664 CYP716A14; cytochrome P450 family 716 subfamily A14 [EC:1.14.-.-] +K20665 CYP94B; jasmonoyl-L-amino acid 12-hydroxylase [EC:1.14.14.48] +K20666 CYP714B; gibberellin 13-oxidase [EC:1.14.-.-] +K20667 CYP716A; beta-amyrin 28-monooxygenase [EC:1.14.14.126] +K20668 DEF; defensin +K20669 DPT; diptericin +K20670 DRS; drosomycin +K20671 PSH; serine protease persephone [EC:3.4.21.-] +K20672 SPE; spatzle-processing enzyme [EC:3.4.21.-] +K20673 GRASS; gram-positive specific serine protease [EC:3.4.21.-] +K20674 MODSP; modular serine protease [EC:3.4.21.-] +K20675 SPIRIT; serine protease immune response integrator +K20676 SPHEROIDE; spheroide [EC:3.4.21.-] +K20677 HAYAN; serine protease Hayan [EC:3.4.21.-] +K20678 fcf2; dTDP-fucopyranose mutase [EC:5.4.99.59] +K20679 fdtA; TDP-4-oxo-6-deoxy-alpha-D-glucose-3,4-oxoisomerase [EC:5.3.2.3] +K20680 fdtB; dTDP-3-amino-3,6-dideoxy-alpha-D-galactopyranose transaminase [EC:2.6.1.90] +K20681 fdtC; dTDP-3-amino-3,6-dideoxy-alpha-D-galactopyranose 3-N-acetyltransferase [EC:2.3.1.197] +K20682 ravNMT; dTDP-3-amino-3,6-dideoxy-alpha-D-galactopyranose N,N-dimethyltransferase [EC:2.1.1.236] +K20683 ARHGEF3_8; Rho guanine nucleotide exchange factor 3/8 +K20684 ARHGEF5; Rho guanine nucleotide exchange factor 5 +K20685 MCF2, ARHGEF14_21_22; guanine nucleotide exchange factor MCF2 +K20686 ARHGEF9; Rho guanine nucleotide exchange factor 9 +K20687 ARHGEF15; Rho guanine nucleotide exchange factor 15 +K20688 ARHGEF16; Rho guanine nucleotide exchange factor 16 +K20689 ARHGEF17; Rho guanine nucleotide exchange factor 17 +K20690 ARHGEF25; Rho guanine nucleotide exchange factor 25 +K20691 ARHGEF19, WGEF; Rho guanine nucleotide exchange factor 19 +K20692 GNBP3; gram-negative bacteria-binding protein 3 +K20693 SPHINX; sphinx [EC:3.4.21.-] +K20694 SPZ; protein spaetzle +K20695 IM1_2_3; immune-induced peptide 1/2/3 +K20696 CEC; cecropin +K20697 GNBP1; gram-negative bacteria-binding protein 1 +K20698 NEC; necrotic +K20699 IMD; immune deficiency +K20700 KEY; NF-kappa-B essential modulator +K20701 PIRK; poor Imd response upon knock-in +K20702 IM4; immune-induced peptide 4 +K20703 FAF1; FAS-associated factor 1 +K20704 ECT2, ARHGEF31; protein ECT2 +K20705 DNMBP, ARHGEF36, TUBA; dynamin-binding protein +K20706 PFI; polyenoic fatty acid isomerase [EC:5.3.3.13] +K20707 E5.1.1.5; lysine racemase [EC:5.1.1.5] +K20708 E5.1.1.21; isoleucine 2-epimerase [EC:5.1.1.21] +K20709 PAM; phenylalanine aminomutase (L-beta-phenylalanine forming) [EC:5.4.3.10] +K20710 ARHGEF37; Rho guanine nucleotide exchange factor 37 +K20711 ARHGEF38; Rho guanine nucleotide exchange factor 38 +K20712 glnA; 3-(hydroxyamino)phenol mutase [EC:5.4.4.3] +K20713 rpcG; R-phycocyanin alpha-cysteine-84 phycourobilin lyase/isomerase [EC:4.4.1.33] +K20714 OXI1; serine/threonine-protein kinase OXI1 [EC:2.7.11.1] +K20715 PHOT; phototropin [EC:2.7.11.1] +K20716 MAPKKK17_18; mitogen-activated protein kinase kinase kinase 17/18 +K20717 YDA; mitogen-activated protein kinase kinase kinase YODA [EC:2.7.11.25] +K20718 ER; LRR receptor-like serine/threonine-protein kinase ERECTA [EC:2.7.11.1] +K20719 SIGMAR1; sigma non-opioid intracellular receptor +K20720 RTN4; reticulon-4 +K20721 RTN1; reticulon-1 +K20722 RTN2; reticulon-2 +K20723 RTN3; reticulon-3 +K20724 TMEM33; transmembrane protein 33 +K20725 MKS1; MAP kinase substrate 1 +K20726 TMEM222; transmembrane protein 222 +K20727 PDF1.2; defensin-like protein 16 +K20728 VSP2; vegetative storage protein 2 +K20729 EPF1_2; protein EPIDERMAL PATTERNING FACTOR 1/2 +K20730 FDL; beta-hexosaminidase Fdl [EC:3.2.1.52] +K20731 TTR; transthyretin +K20732 GPNMB; transmembrane glycoprotein NMB +K20733 MSLN; mesothelin +K20734 SERPINA7, TBG; thyroxine-binding globulin +K20735 ALOX5AP, FLAP; arachidonate 5-lipoxygenase-activating protein +K20736 A3GALT2; alpha-1,3-galactosyltransferase 2 [EC:2.4.1.87] +K20737 EAPA; endothiapepsin [EC:3.4.23.22] +K20738 E3.4.22.6; chymopapain [EC:3.4.22.6] +K20739 E3.4.22.30; caricain [EC:3.4.22.30] +K20740 PPIV; glycyl endopeptidase [EC:3.4.22.25] +K20741 VCATH; Baculoviridae V-cath endopeptidase [EC:3.4.22.50] +K20742 ykfC; gamma-D-glutamyl-L-lysine dipeptidyl-peptidase [EC:3.4.14.13] +K20743 SGP; scytalidopepsin B [EC:3.4.23.32 3.4.26.2] +K20744 npr; mycolysin [EC:3.4.24.31] +K20745 E3.4.24.49; bothropasin [EC:3.4.24.49] +K20746 E3.4.24.42; atrolysin C [EC:3.4.24.42] +K20747 E3.4.24.43; atroxase [EC:3.4.24.43] +K20748 E3.4.24.58; russellysin [EC:3.4.24.58] +K20749 E3.4.24.32; beta-lytic metalloendopeptidase [EC:3.4.24.32] +K20750 bapA; beta-peptidyl aminopeptidase [EC:3.4.11.25] +K20751 E3.4.21.99; spermosin [EC:3.4.21.99] +K20752 E3.4.21.49; hypodermin C [EC:3.4.21.49] +K20753 E3.4.21.86; limulus clotting enzyme [EC:3.4.21.86] +K20754 pstI; aqualysin 1 [EC:3.4.21.111] +K20755 E3.4.21.121; Lys-Lys/Arg-Xaa endopeptidase [EC:3.4.21.121] +K20756 E3.4.21.103; physarolisin [EC:3.4.21.103] +K20757 dthadh; threo-3-hydroxy-D-aspartate ammonia-lyase [EC:4.3.1.27] +K20758 hbzF; maleylpyruvate hydrolase [EC:3.7.1.23] +K20759 naaC; 2-oxo-3-(5-oxofuran-2-ylidene)propanoate lactonase [EC:3.1.1.91] +K20760 scnA; thiocyanate hydrolase subunit alpha [EC:3.5.5.8] +K20761 scnB; thiocyanate hydrolase subunit beta [EC:3.5.5.8] +K20762 scnC; thiocyanate hydrolase subunit gamma [EC:3.5.5.8] +K20763 naaA; 5-nitroanthranilic acid aminohydrolase [EC:3.5.99.8] +K20764 nnhA; 2-nitroimidazole nitrohydrolase [EC:3.5.99.9] +K20765 camK; 6-oxocamphor hydrolase [EC:3.7.1.18] +K20766 E3.5.5.5; arylacetonitrilase [EC:3.5.5.5] +K20767 CYP71BL1; germacrene A acid 8beta-hydroxylase [EC:1.14.14.168] +K20768 CYP94A2; cytochrome P450 family 94 subfamily A2 +K20769 CYP94A5; fatty acid omega-hydroxylase [EC:1.14.-.-] +K20770 CYP706B1; (+)-delta-cadinene 8-hydroxylase [EC:1.14.-.-] +K20771 CYP711A1; carlactone C-19 oxidase [EC:1.14.-.-] +K20772 ACS1_2_6; 1-aminocyclopropane-1-carboxylate synthase 1/2/6 [EC:4.4.1.14] +K20773 RBBP8, CTIP; DNA endonuclease RBBP8 [EC:3.1.-.-] +K20774 FAM175A, ABRA1; BRCA1-A complex subunit Abraxas +K20775 UIMC1, RAP80; BRCA1-A complex subunit RAP80 +K20776 BABAM, NBA1, MERIT40; BRISC and BRCA1-A complex member 1 +K20777 EXD2; exonuclease 3'-5' domain-containing protein 2 [EC:3.1.11.1] +K20778 RAD51AP1; RAD51-associated protein 1 +K20779 RNF168; E3 ubiquitin-protein ligase RNF168 [EC:2.3.2.31] +K20780 MDC1; mediator of DNA damage checkpoint protein 1 +K20781 SGT1; peptidyl serine alpha-galactosyltransferase [EC:2.4.1.-] +K20782 HPAT; hydroxyproline O-arabinosyltransferase [EC:2.4.2.58] +K20783 RRA; arabinosyltransferase [EC:2.4.2.-] +K20784 XEG113; arabinosyltransferase [EC:2.4.2.-] +K20785 CYP79E1_2; tyrosine N-monooxygenase [EC:1.14.14.36] +K20786 nidA2; niddamycin polyketide synthase 2 +K20787 fscC; candicidin polyketide synthase FscC +K20788 mxaE; myxalamid-type polyketide synthase MxaE +K20789 CYP140A7; cytochrome P450 hydroxylase [EC:1.14.-.-] +K20790 NME5; nucleoside diphosphate kinase homolog 5 +K20791 NAA10_11, ARD1_2; N-alpha-acetyltransferase 10/11 [EC:2.3.1.255] +K20792 NAA15_16; N-alpha-acetyltransferase 15/16, NatA auxiliary subunit +K20793 NAA50, NAT5; N-alpha-acetyltransferase 50 [EC:2.3.1.258 2.3.1.309] +K20794 NAA40, NAT4; N-alpha-acetyltransferase 40 [EC:2.3.1.257] +K20795 PRDM6; [histone H4]-lysine20 N-methyltransferase PRDM6 [EC:2.1.1.361] +K20796 PRDM7_9; [histone H3]-lysine4 N-trimethyltransferase PRDM7/9 [EC:2.1.1.354] +K20797 PRDM8; PR domain zinc finger protein 8 [EC:2.1.1.-] +K20798 HENMT1; small RNA 2'-O-methyltransferase [EC:2.1.1.386] +K20799 FAM175B, ABRO1; BRISC complex subunit Abro1 +K20800 DPCD; protein DPCD +K20801 ltaA; L-allo-threonine aldolase [EC:4.1.2.49] +K20802 HNL; (R)-mandelonitrile lyase [EC:4.1.2.10] +K20803 UBE3D; ubiquitin-protein ligase E3 D [EC:2.3.2.26] +K20804 RNF34; E3 ubiquitin-protein ligase RNF34 [EC:2.3.2.31] +K20805 RNF169; E3 ubiquitin-protein ligase RNF169 [EC:2.3.2.31] +K20806 bxn; bromoxynil nitrilase [EC:3.5.5.6] +K20807 nthB; nitrile hydratase subunit beta [EC:4.2.1.84] +K20808 cbdB; 2-halobenzoate 1,2-dioxygenase small subunit [EC:1.14.12.13] +K20809 cbdC; 2-halobenzoate 1,2-dioxygenase electron transfer component [EC:1.18.1.3] +K20810 mqnX; aminodeoxyfutalosine deaminase [EC:3.5.4.40] +K20811 inuJ; inulosucrase [EC:2.4.1.9] +K20812 glgA; glycogen synthase [EC:2.4.1.242] +K20813 TDG; thymine-DNA glycosylase [EC:3.2.2.29] +K20814 dop; Pup amidohydrolase [EC:3.5.1.119] +K20815 NAT2; N-terminal acetyltransferase 2 +K20816 sttH; streptothricin hydrolase [EC:3.5.2.19] +K20817 E3.5.1.83; N-acyl-D-aspartate deacylase [EC:3.5.1.83] +K20818 KXD1, BORCS4; KxDL motif-containing protein 1 +K20819 BORCS5, LOH12CR1; BLOC-1 related complex subunit 5 +K20820 BORCS6; BLOC-1 related complex subunit 6 +K20821 BORCS7; BLOC-1 related complex subunit 7 +K20822 MEF2BNB, BORCS8; BLOC-1 related complex subunit 8 +K20823 NAA35, MAK10; N-alpha-acetyltransferase 35, NatC auxiliary subunit +K20824 NAA38; N-alpha-acetyltransferase 38, NatC auxiliary subunit +K20825 FAM20B; glycosaminoglycan xylosylkinase [EC:2.7.1.-] +K20826 RPAP1; RNA polymerase II-associated protein 1 +K20827 RPAP2; RNA polymerase II-associated protein 2 [EC:3.1.3.16] +K20828 ZNF143_76, STAF; zinc finger protein 143/76 +K20829 celS; cellulose 1,4-beta-cellobiosidase [EC:3.2.1.176] +K20830 por; beta-porphyranase [EC:3.2.1.178] +K20831 ugl; gellan tetrasaccharide unsaturated glucuronyl hydrolase [EC:3.2.1.179] +K20832 EN3GAL; galactan endo-beta-1,3-galactanase [EC:3.2.1.181] +K20833 SGUS; baicalin-beta-D-glucuronidase [EC:3.2.1.167] +K20834 F26G; protodioscin 26-O-beta-D-glucosidase [EC:3.2.1.186] +K20835 P60; avenacosidase [EC:3.2.1.188] +K20836 bgpA; ginsenosidase type III [EC:3.2.1.191] +K20837 dnhA_B; 2,4-dinitroanisole O-demethylase [EC:3.3.2.14] +K20838 NAT8; N-acetyltransferase 8 [EC:2.3.1.80 2.3.1.-] +K20839 RSKL; ribosomal protein S6 kinase-like +K20840 SLC46A3; MFS transporter, PCFT/HCP family, solute carrier family 46, member 3 +K20841 denA; Straboviridae deoxyribonuclease II [EC:3.1.21.8] +K20842 denB; Straboviridae deoxyribonuclease IV [EC:3.1.21.9] +K20843 GALT2S; hydroxyproline O-galactosyltransferase 2/3/4/5/6 [EC:2.4.1.-] +K20844 abf1; non-reducing end alpha-L-arabinofuranosidase [EC:3.2.1.55] +K20845 txyA; endo-1,3-beta-xylanase [EC:3.2.1.32] +K20846 cgkA; kappa-carrageenase [EC:3.2.1.83] +K20847 g2d; glucan 1,6-alpha-isomaltosidase [EC:3.2.1.94] +K20848 1-FEH; fructan beta-(2,1)-fructosidase [EC:3.2.1.153] +K20849 6-FEH; fructan beta-(2,6)-fructosidase [EC:3.2.1.154] +K20850 cgiA; iota-carrageenase [EC:3.2.1.157] +K20851 agaA; alpha-agarase [EC:3.2.1.158] +K20852 E3.2.1.161; beta-apiosyl-beta-glucosidase [EC:3.2.1.161] +K20853 cglA; lambda-carrageenase [EC:3.2.1.162] +K20854 HPGT, B3GALT9_10_11; hydroxyproline O-galactosyltransferase HPGT [EC:2.4.1.-] +K20855 B3GALT1S; beta-1,3-galactosyltransferase 1/2/3/4/5/7/8 [EC:2.4.1.-] +K20856 GALT31A, B3GALT6; beta-1,6-galactosyltransferase [EC:2.4.1.-] +K20857 PANX2_3; pannexin 2/3 +K20858 MCU; calcium uniporter protein, mitochondrial +K20859 phnPP; phosphoribosyl 1,2-cyclic phosphate 1,2-diphosphodiesterase [EC:3.1.4.57] +K20860 FHY1; FMN hydrolase / 5-amino-6-(5-phospho-D-ribitylamino)uracil phosphatase [EC:3.1.3.102 3.1.3.104] +K20861 ybjI; FMN hydrolase / 5-amino-6-(5-phospho-D-ribitylamino)uracil phosphatase [EC:3.1.3.102 3.1.3.104] +K20862 yigB; FMN hydrolase / 5-amino-6-(5-phospho-D-ribitylamino)uracil phosphatase [EC:3.1.3.102 3.1.3.104] +K20863 NLRP6, NALP6; NACHT, LRR and PYD domains-containing protein 6 +K20864 NLRP7, NALP7; NACHT, LRR and PYD domains-containing protein 7 +K20865 NLRP12; NACHT, LRR and PYD domains-containing protein 12 +K20866 yihX; glucose-1-phosphatase [EC:3.1.3.10] +K20867 GAUT12S; galacturonosyltransferase 12/13/14/15 [EC:2.4.1.-] +K20868 ATG16L2; autophagy-related protein 16-2 +K20869 IRX9; putative beta-1,4-xylosyltransferase IRX9 [EC:2.4.2.-] +K20870 IRX10; putative beta-1,4-xylosyltransferase IRX10 [EC:2.4.2.-] +K20871 IRX14; putative beta-1,4-xylosyltransferase IRX14 [EC:2.4.2.-] +K20872 NEK2; serine/threonine-protein kinase Nek2 [EC:2.7.11.1] +K20873 NEK3; serine/threonine-protein kinase Nek3 [EC:2.7.11.1] +K20875 NEK6; serine/threonine-protein kinase Nek6 [EC:2.7.11.34] +K20876 NEK7; serine/threonine-protein kinase Nek7 [EC:2.7.11.34] +K20877 NEK8; serine/threonine-protein kinase Nek8 [EC:2.7.11.1] +K20878 NEK9, NERCC1; serine/threonine-protein kinase Nek9 [EC:2.7.11.1] +K20879 NEK10; serine/threonine-protein kinase Nek10 [EC:2.7.11.1] +K20880 NEK11; serine/threonine-protein kinase Nek11 [EC:2.7.11.1] +K20881 yrfG; GMP/IMP 5'-nucleotidase [EC:3.1.3.-] +K20882 hadA; (R)-2-hydroxy-4-methylpentanoate CoA-transferase [EC:2.8.3.24] +K20883 wbgN; O55-antigen biosynthesis alpha-1,2-colitosyltransferase [EC:2.4.1.341] +K20884 FHY; riboflavin kinase / FMN hydrolase [EC:2.7.1.26 3.1.3.102] +K20885 K20885; beta-1,2-mannobiose phosphorylase / 1,2-beta-oligomannan phosphorylase [EC:2.4.1.339 2.4.1.340] +K20886 GLT6D1; glycosyltransferase 6 domain-containing protein 1 [EC:2.4.1.-] +K20887 CSLC4; xyloglucan glycosyltransferase 4 [EC:2.4.1.-] +K20888 MUR3; xyloglucan galactosyltransferase MUR3 [EC:2.4.1.-] +K20889 IRX7, FRA8, F8H; probable glucuronoxylan glucuronosyltransferase IRX7 [EC:2.4.1.-] +K20890 GUX; xylan alpha-glucuronosyltransferase [EC:2.4.1.-] +K20891 GLCAT14; beta-glucuronosyltransferase [EC:2.4.1.-] +K20892 RAY1; beta-arabinofuranosyltransferase [EC:2.4.2.-] +K20893 PARVUS, GLZ1, GATL1; probable galacturonosyltransferase-like 1 [EC:2.4.1.-] +K20894 SHARPIN; shank-associated RH domain-interacting protein +K20895 ylmB; formylaminopyrimidine deformylase [EC:3.5.1.-] +K20896 TENA_E; formylaminopyrimidine deformylase / aminopyrimidine aminohydrolase [EC:3.5.1.- 3.5.99.-] +K20897 GBP2; guanylate-binding protein 2 +K20898 GBP5; guanylate-binding protein 5 +K20899 GBP1_3_4_7; guanylate-binding protein 1/3/4/7 +K20900 dthD; D-threitol dehydrogenase (NAD+) [EC:1.1.1.403] +K20901 lerK; L-erythrulose 1-kinase [EC:2.7.1.209] +K20902 derK; D-erythrulose 4-kinase [EC:2.7.1.210] +K20903 hgdA; (R)-2-hydroxyglutaryl-CoA dehydratase subunit alpha [EC:4.2.1.167] +K20904 hgdB; (R)-2-hydroxyglutaryl-CoA dehydratase subunit beta [EC:4.2.1.167] +K20906 hcmA; 2-hydroxyisobutanoyl-CoA mutase large subunit [EC:5.4.99.64] +K20907 hcmB; 2-hydroxyisobutanoyl-CoA mutase small subunit [EC:5.4.99.64] +K20908 GBP6; guanylate-binding protein 6 +K20909 ANTXR; anthrax toxin receptor +K20910 TXNIP; thioredoxin-interacting protein +K20911 PYDC2, POP2; pyrin domain-containing protein 2 +K20912 CARD10; caspase recruitment domain-containing protein 10 +K20913 CARD14; caspase recruitment domain-containing protein 14 +K20914 IFI16; gamma-interferon-inducible protein 16 +K20915 TP53BP1, P202; tumor suppressor p53-binding protein 1 +K20916 POP3; pyrin domain-only protein 3 +K20917 GSDMD; gasdermin-D +K20918 vpsT; LuxR family transcriptional regulator, positive regulator of biofilm formation +K20919 vpsR, cpsR; sigma-54 dependent transcriptional regulator, positive regulator of biofilm formation +K20920 vpsM; polysaccharide biosynthesis protein VpsM +K20921 vpsD, epsF; polysaccharide biosynthesis protein VpsD +K20922 vpsI; polysaccharide biosynthesis protein VpsI +K20923 CSLF; mixed-linked glucan synthase [EC:2.4.1.-] +K20924 CSLD; cellulose synthase-like protein [EC:2.4.1.-] +K20925 GYPB, CD235b; glycophorin B +K20926 cap3B; cellobiuronic acid synthase [EC:2.4.1.-] +K20927 mpdB; 2-methyl-1,2-propanediol dehydrogenase [EC:1.1.1.400] +K20928 mpdC; 2-hydroxy-2-methylpropanal dehydrogenase [EC:1.2.1.98] +K20929 GLX; glyoxal/methylglyoxal oxidase [EC:1.2.3.15] +K20930 pmi; phosphinomethylmalate isomerase [EC:4.2.1.166] +K20931 cnbZ; 2-aminomuconate deaminase (2-hydroxymuconate-forming) [EC:3.5.99.11] +K20932 K20932; hydrazine synthase subunit [EC:1.7.2.7] +K20933 K20933; hydrazine synthase subunit [EC:1.7.2.7] +K20934 K20934; hydrazine synthase subunit [EC:1.7.2.7] +K20935 hdh; hydrazine dehydrogenase [EC:1.7.2.8] +K20936 bdh; 1-butanol dehydrogenase (cytochrome c) [EC:1.1.2.9] +K20937 boh; 1-butanol dehydrogenase (quinone) [EC:1.1.5.11] +K20938 ladA; long-chain alkane monooxygenase [EC:1.14.14.28] +K20939 ind2; beta-methylindole-3-pyruvate reductase [EC:1.1.1.397] +K20940 phzS; 5-methylphenazine-1-carboxylate 1-monooxygenase [EC:1.14.13.218] +K20941 graF; gamma-resorcylate decarboxylase [EC:4.1.1.103] +K20942 graA; resorcinol 4-hydroxylase (FADH2) [EC:1.14.14.27] +K20943 E1.14.13.219; resorcinol 4-hydroxylase (NADPH) [EC:1.14.13.219] +K20944 tsdB; resorcinol 4-hydroxylase (NADH) [EC:1.14.13.220] +K20945 vpsU; tyrosine-protein phosphatase [EC:3.1.3.48] +K20946 vpsE; polysaccharide biosynthesis protein VpsE +K20947 vpsF; polysaccharide biosynthesis protein VpsF +K20948 vpsJ; polysaccharide biosynthesis protein VpsJ +K20949 vpsP; polysaccharide biosynthesis protein VpsP +K20950 vpsQ; polysaccharide biosynthesis protein VpsQ +K20951 bap1; extracellular matrix protein +K20952 rbmC; rugosity and biofilm structure modulator C +K20953 rbmA; rugosity and biofilm structure modulator A +K20954 acgB; diguanylate cyclase [EC:2.7.7.65] +K20955 cdgK; diguanylate cyclase [EC:2.7.7.65] +K20956 cdgA; diguanylate cyclase [EC:2.7.7.65] +K20957 cdgH; diguanylate cyclase [EC:2.7.7.65] +K20958 cdgL; diguanylate cyclase [EC:2.7.7.65] +K20959 cdgM; diguanylate cyclase [EC:2.7.7.65] +K20960 K20960; diguanylate cyclase [EC:2.7.7.65] +K20961 vpvC; diguanylate cyclase [EC:2.7.7.65] +K20962 cdgC; c-di-GMP phosphodiesterase [EC:3.1.4.52] +K20963 acgA; c-di-GMP phosphodiesterase [EC:3.1.4.52] +K20964 cdpA; c-di-GMP phosphodiesterase [EC:3.1.4.52] +K20965 rocS; c-di-GMP phosphodiesterase [EC:3.1.4.52] +K20966 mbaA; c-di-GMP phosphodiesterase [EC:3.1.4.52] +K20967 MOCS1; GTP 3',8-cyclase / cyclic pyranopterin monophosphate synthase [EC:4.1.99.22 4.6.1.17] +K20968 exsA; AraC family transcriptional regulator, exoenzyme S synthesis regulatory protein ExsA +K20969 rsmY; small regulatory RNA RsmY +K20970 rsmZ; small regulatory RNA RsmZ +K20971 ladS; two-component system, sensor histidine kinase LadS +K20972 retS; two-component system, sensor histidine kinase RetS +K20973 sagS; two-component system, sensor histidine kinase SagS [EC:2.7.13.3] +K20974 K20974; two-component system, sensor histidine kinase [EC:2.7.13.3] +K20975 K20975; two-component system, sensor histidine kinase [EC:2.7.13.3] +K20976 hptB; histidine phosphotransfer protein HptB +K20977 hsbR; two-component system, HptB-dependent secretion and biofilm response regulator +K20978 hsbA; HptB-dependent secretion and biofilm anti anti-sigma factor +K20979 GES; geranyl diphosphate diphosphatase [EC:3.1.7.11] +K20980 LOVA, CYP68R1; dihydromonacolin L/monacolin L hydroxylase [EC:1.14.14.124 1.14.14.125] +K20981 LOVB; lovastatin nonaketide synthase [EC:2.3.1.161] +K20982 LOVC; lovastatin enoyl reductase [EC:2.3.1.161] +K20983 LOVD; monacolin J acid methylbutanoate transferase [EC:2.3.1.238] +K20984 LOVF; 2-methylbutanoate polyketide synthase [EC:2.3.1.244] +K20985 LOVG; dihydromonacolin L-[lovastatin nonaketide synthase] thioesterase [EC:3.1.2.31] +K20986 NUDX1; geranyl diphosphate phosphohydrolase [EC:3.6.1.68] +K20987 pslD; polysaccharide biosynthesis/export protein PslD +K20988 vpsN; polysaccharide biosynthesis/export protein VpsN +K20989 DUR3; urea-proton symporter +K20990 E3.1.1.92; 4-sulfomuconolactone hydrolase [EC:3.1.1.92] +K20991 RPE65b; all-trans-retinyl ester 13-cis isomerohydrolase [EC:3.1.1.90] +K20992 pytH; pyrethroid hydrolase [EC:3.1.1.88] +K20993 estP; pyrethroid hydrolase [EC:3.1.1.88] +K20994 NOTCH2; Notch 2 +K20995 NOTCH3; Notch 3 +K20996 NOTCH4; Notch 4 +K20997 pslA; polysaccharide biosynthesis protein PslA +K20998 pslE; polysaccharide biosynthesis protein PslE +K20999 pslF; polysaccharide biosynthesis protein PslF +K21000 pslG; polysaccharide biosynthesis protein PslG +K21001 pslH; polysaccharide biosynthesis protein PslH +K21002 pslI; polysaccharide biosynthesis protein PslI +K21003 pslJ; polysaccharide biosynthesis protein PslJ +K21004 pslK; polysaccharide biosynthesis protein PslK +K21005 pslL; polysaccharide biosynthesis protein PslL +K21006 pelA; polysaccharide biosynthesis protein PelA +K21007 pelB; polysaccharide biosynthesis protein PelB +K21008 pelC; polysaccharide biosynthesis protein PelC +K21009 pelD; polysaccharide biosynthesis protein PelD +K21010 pelE; polysaccharide biosynthesis protein PelE +K21011 pelF; polysaccharide biosynthesis protein PelF +K21012 pelG; polysaccharide biosynthesis protein PelG +K21013 FPPP; farnesyl diphosphate phosphatase [EC:3.1.3.-] +K21014 stf0; trehalose 2-sulfotransferase [EC:2.8.2.37] +K21015 staL; desulfo-A47934 sulfotransferase [EC:2.8.2.36] +K21016 FAEA; feruloyl esterase [EC:3.1.1.73] +K21017 cocE; cocaine esterase [EC:3.1.1.84] +K21018 fumD; fumonisin B1 esterase [EC:3.1.1.87] +K21019 sadC; diguanylate cyclase [EC:2.7.7.65] +K21020 siaD; diguanylate cyclase [EC:2.7.7.65] +K21021 tpbB; diguanylate cyclase [EC:2.7.7.65] +K21022 roeA; diguanylate cyclase [EC:2.7.7.65] +K21023 mucR; diguanylate cyclase [EC:2.7.7.65] +K21024 bifA; c-di-GMP phosphodiesterase [EC:3.1.4.52] +K21025 fimX; multidomain signaling protein FimX +K21026 AAE; acetylajmaline esterase [EC:3.1.1.80] +K21027 TRMU, SLM3; tRNA-5-taurinomethyluridine 2-sulfurtransferase [EC:2.8.1.14] +K21028 ynjE; molybdopterin synthase sulfurtransferase [EC:2.8.1.11] +K21029 moeB; molybdopterin-synthase adenylyltransferase [EC:2.7.7.80] +K21030 tarI; D-ribitol-5-phosphate cytidylyltransferase [EC:2.7.7.40] +K21031 ISPD; D-ribitol-5-phosphate cytidylyltransferase [EC:2.7.7.40] +K21032 B4GAT1; beta-1,4-glucuronyltransferase 1 [EC:2.4.1.-] +K21033 virH1, CYP103; cytochrome P450 family 103 +K21034 virH2, CYP104; cytochrome P450 family 104 +K21035 fas1, CYP105E1; cytochrome P450 family 105 subfamily E polypeptide 1 +K21036 vldW; validamycin A dioxygenase [EC:1.14.11.52] +K21037 P; Hepadnaviridae DNA polymerase / reverse transcriptase / ribonuclease H [EC:2.7.7.7 2.7.7.49 3.1.26.4] +K21038 brt; Bordetella phage reverse transcriptase [EC:2.7.7.49] +K21039 int; Escherichia phage integrase [EC:2.7.7.- 3.1.-.-] +K21040 vCCL4b, U83; HHV6 CCR2 chemokine agonist +K21041 UL7_8; HCMV CEACAM1-like protein +K21042 UL11; HCMV protein UL11 +K21043 UL16; HCMV immunoevasion protein +K21044 UL40; HCMV protein UL40 +K21045 UL83; Cytomegalovirus tegument protein UL83 +K21046 UL146; HCMV chemokine vCXCL1 +K21047 UL144; HCMV TNF alpha-like receptor UL144 +K21048 UL142; HCMV membrane glycoprotein UL142 +K21049 UL141; Cytomegalovirus protein UL141 +K21050 US2; HCMV unique short US2 glycoprotein +K21051 US10; HCMV unique short US10 glycoprotein +K21052 TMEM5; alpha-dystroglycan beta1,4-xylosyltransferase [EC:2.4.2.61] +K21053 ade; adenine deaminase [EC:3.5.4.2] +K21054 eryB; D-erythritol 1-phosphate dehydrogenase [EC:1.1.1.402] +K21055 E3.1.3.103; 3-deoxy-D-glycero-D-galacto-nononate 9-phosphatase [EC:3.1.3.103] +K21056 E2.7.1.212; alpha-D-ribose-1-phosphate 5-kinase (ADP) [EC:2.7.1.212] +K21057 E2.7.1.213; cytidine kinase [EC:2.7.1.213] +K21058 bciC; chlorophyllide a hydrolase [EC:3.1.1.100] +K21059 fadD29; 4-hydroxyphenylalkanoate adenylyltransferase [EC:6.2.1.51] +K21060 lhpB; D-hydroxyproline dehydrogenase [EC:1.5.99.-] +K21061 lhpB; D-hydroxyproline dehydrogenase subunit beta [EC:1.5.99.-] +K21062 lhpC; 1-pyrroline-4-hydroxy-2-carboxylate deaminase [EC:3.5.4.22] +K21063 K21063; 5-amino-6-(5-phospho-D-ribitylamino)uracil phosphatase [EC:3.1.3.104] +K21064 ycsE, yitU, ywtE; 5-amino-6-(5-phospho-D-ribitylamino)uracil phosphatase [EC:3.1.3.104] +K21065 E3.2.1.197; beta-1,2-mannosidase [EC:3.2.1.197] +K21066 ARHGEF18; A-kinase anchor protein 18 +K21067 ARHGAP44, RICH2; Rho GTPase-activating protein 44 +K21068 MICALL2, JRAB; MICAL-like protein 2 +K21069 CYP9T2_3; ipsdienol synthase [EC:1.14.14.31] +K21070 CYP719A14; (S)-cheilanthifoline synthase [EC:1.14.19.65] +K21071 pfk, pfp; ATP-dependent phosphofructokinase / diphosphate-dependent phosphofructokinase [EC:2.7.1.11 2.7.1.90] +K21072 ARHGEF28; A-kinase anchor protein 28 +K21073 ACTN2_3; actinin alpha 2/3 +K21074 mrh; Straboviridae rpoH-modulating protein +K21075 UL36, UL48; Herpesviridae large tegument protein deneddylase [EC:3.4.19.12 3.4.22.-] +K21076 L3; Adenoviridae hexon protein +K21077 1a-1b; Closterovirus replicase polyprotein 1ab +K21078 UL80; Cytomegalovirus capsid scaffolding protein [EC:3.4.21.97] +K21079 gp23; Straboviridae major head protein +K21080 RAP94; Poxviridae RNA polymerase-associated transcription-specificity factor +K21081 RPO18; Poxviridae DNA-directed RNA polymerase 18 kDa subunit [EC:2.7.7.6] +K21082 A20R; Poxviridae DNA polymerase processivity factor component +K21083 CCL17; C-C motif chemokine 17 +K21084 yegE; diguanylate cyclase [EC:2.7.7.65] +K21085 yedQ; diguanylate cyclase [EC:2.7.7.65] +K21086 pdeH; c-di-GMP phosphodiesterase [EC:3.1.4.52] +K21087 ycgR; flagellar brake protein +K21088 ydaM; diguanylate cyclase [EC:2.7.7.65] +K21089 mlrA; MerR family transcriptional regulator, activator of the csg genes +K21090 adrB, pdeD; c-di-GMP phosphodiesterase [EC:3.1.4.52] +K21091 mcaS; small regulatory RNA McaS +K21092 CCL14; C-C motif chemokine 14 +K21093 CCL16; C-C motif chemokine 16 +K21094 CCL18; C-C motif chemokine 18 +K21095 CCL22; C-C motif chemokine 22 +K21096 CCL26; C-C motif chemokine 26 +K21097 CCL24; C-C motif chemokine 24 +K21098 DLG3; discs large protein 3 +K21099 MARVELD3; MARVEL domain-containing protein 3 +K21100 DEFB4; beta-defensin 4 +K21101 isoH; 2-glutathionyl-2-methylbut-3-en-1-ol dehydrogenase [EC:1.1.1.398] +K21102 ANR; anthocyanidin reductase [(2S)-flavan-3-ol-forming] [EC:1.3.1.112] +K21103 phzM; phenazine-1-carboxylate N-methyltransferase [EC:2.1.1.327] +K21104 E3.1.1.101; poly(ethylene terephthalate) hydrolase [EC:3.1.1.101] +K21105 E3.1.1.102; mono(ethylene terephthalate) hydrolase [EC:3.1.1.102] +K21106 isoI; isoprene-epoxide---glutathione S-transferase [EC:4.4.1.34] +K21107 jamA; medium-chain-fatty-acid---[acyl-carrier-protein] ligase [EC:6.2.1.47] +K21108 BVES, POPDC1; blood vessel epicardial substance +K21109 MPP4; MAGUK p55 subfamily member 4 +K21110 CGNL1; cingulin-like protein 1 +K21111 EPB41L4B, EHM2, LULU2; band 4.1-like protein 4B +K21112 SYNPO; synaptopodin +K21113 CYP106; cytochrome P450 family 106 +K21114 CYP106A2; steroid 15beta-monooxygenase [EC:1.14.15.8] +K21115 CYP107B1; cytochrome P450 family 107 subfamily B1 +K21116 CYP112A; cytochrome P450 family 112 subfamily A +K21117 CYP114; cytochrome P450 family 114 +K21118 CYP117A; cytochrome P450 family 117 subfamily A +K21119 CYP130; cytochrome P450 family 130 +K21120 P450cin, CYP176A1; 1,8-cineole 2-endo-monooxygenase [EC:1.14.14.133] +K21121 NAA60; N-alpha-acetyltransferase 60 [EC:2.3.1.259] +K21122 USP28; ubiquitin carboxyl-terminal hydrolase 28 [EC:3.4.19.12] +K21123 SRSF9, SFRS9; serine/arginine-rich splicing factor 9 +K21124 TRAF3IP2, ACT1; adaptor protein CIKS +K21126 S100A7; protein S100-A7 +K21127 S100A8; protein S100-A8 +K21128 S100A9; protein S100-A9 +K21129 LCN2; lipocalin 2 +K21130 colC; GDP-L-colitose synthase [EC:1.1.1.356] +K21131 colD; GDP-4-dehydro-6-deoxy-alpha-D-mannose 3-dehydratase [EC:4.2.1.168] +K21132 K21132; alpha-mannan endo-1,2-alpha-mannanase / glycoprotein endo-alpha-1,2-mannosidase [EC:3.2.1.198 3.2.1.130] +K21133 mexN; multidrug efflux pump +K21134 triC; multidrug efflux pump +K21135 mexM; membrane fusion protein, multidrug efflux system +K21136 triA; membrane fusion protein, multidrug efflux system +K21137 triB; membrane fusion protein, multidrug efflux system +K21138 HDDC3; guanosine-3',5'-bis(diphosphate) 3'-pyrophosphohydrolase [EC:3.1.7.2] +K21140 mec; [CysO sulfur-carrier protein]-S-L-cysteine hydrolase [EC:3.13.1.6] +K21141 ATG27; autophagy-related protein 27 +K21142 moaX; MoaE-MoaD fusion protein [EC:2.8.1.12] +K21143 ATG29; autophagy-related protein 29 +K21144 ATG31; autophagy-related protein 31 +K21145 ATG38; autophagy-related protein 38 +K21146 CYP105A1; vitamin D 1,25-hydroxylase [EC:1.14.15.22] +K21147 moeZR, moeBR; sulfur-carrier protein adenylyltransferase/sulfurtransferase [EC:2.7.7.80 2.7.7.- 2.8.1.11 2.8.1.-] +K21148 cysM; [CysO sulfur-carrier protein]-thiocarboxylate-dependent cysteine synthase [EC:2.5.1.113] +K21149 SSL-2; botryococcus squalene synthase [EC:1.3.1.96] +K21150 SSL-3; botryococcene synthase [EC:1.3.1.97] +K21151 SSL-1; presqualene diphosphate synthase [EC:2.5.1.103] +K21152 notF, brePT; brevianamide F prenyltransferase (deoxybrevianamide E-forming) [EC:2.5.1.109] +K21153 salL; adenosyl-chloride synthase [EC:2.5.1.94] +K21154 pssM; exopolysaccharide glucosyl ketal-pyruvate-transferase [EC:2.5.1.98] +K21155 VAM3; syntaxin VAM3 +K21156 CCZ1; vacuolar fusion protein CCZ1, fungi type +K21157 SAK1; SNF1-activating kinase 1 [EC:2.7.11.1] +K21158 TOS3; serine/threonine-protein kinase TOS3 [EC:2.7.11.1] +K21159 sgcF, ncsF2, kedF; epoxide hydrolase +K21160 sgcE2, ncsE2, kedE2; enediyne biosynthesis protein E2 +K21161 sgcE3, ncsE3, kedE3; enediyne biosynthesis protein E3 +K21162 sgcE4, ncsE4, kedE4; enediyne biosynthesis protein E4 +K21163 sgcE5, ncsE5, kedE5; enediyne biosynthesis protein E5 +K21164 sgcE7, ncsE7, kedE7; enediyne biosynthesis protein E7 +K21165 sgcE8, ncsE8, kedE8; enediyne biosynthesis protein E8 +K21166 sgcE9, ncsE9, kedE9; enediyne biosynthesis protein E9 +K21167 sgcE11, ncsE11, kedE11; enediyne biosynthesis protein E11 +K21168 calE1; enediyne biosynthesis protein CalE1 +K21169 calE2; enediyne biosynthesis protein CalE2 +K21170 calE3; enediyne biosynthesis protein CalE3 +K21171 calE4; enediyne biosynthesis protein CalE4 +K21172 calE5; enediyne biosynthesis protein CalE5 +K21173 calE6; methionine gamma-lyase +K21174 calE9; enediyne biosynthesis protein CalE9 +K21175 sgcD1; 2-amino-4-deoxychorismate synthase, glutamine amidotransferase component [EC:2.6.1.86] +K21176 sgcD5; benzoxazolinate moiety biosynthesis protein SgcD5 +K21177 sgcD3; cytochrome P450 hydroxylase [EC:1.14.-.-] +K21178 sgcD4; O-methyltransferase [EC:2.1.1.-] +K21179 sgcH; CoA-ligase +K21180 sgcD6; 3-O-acyltransferase +K21181 sgcC4, mdpC4; MIO-dependent L-tyrosine 2,3-aminomutase [EC:5.4.3.6] +K21182 sgcC1, mdpC1; (S)-beta-tyrosine adenylation enzyme [EC:6.2.1.-] +K21183 sgcC2, mdpC2, kedY2; peptidyl carrier protein +K21184 sgcC, mdpC; two-component FAD-dependent monooxygenase [EC:1.14.14.15 1.14.14.-] +K21185 sgcE6, mdpE6, kedE6; flavin reductase +K21186 sgcC5, mdpC5, kedY5; condensation enzyme +K21187 sgcA6; glycosyltransferase [EC:2.4.1.-] +K21188 mdpC7; PLP-dependent transaminase +K21189 mdpC6; O-methyltransferase [EC:2.1.1.-] +K21190 mdpC8; dehydrogenase +K21191 mdpB2; CoA ligase [EC:6.2.1.-] +K21192 mdpB1; methyltransferase [EC:2.1.1.-] +K21193 mdpB3; acetyltransferase/esterase +K21194 mdpA6; glycosyltransferase [EC:2.4.1.-] +K21195 phnY; 2-aminoethylphosphonate dioxygenase [EC:1.14.11.46] +K21196 phnZ; 2-amino-1-hydroxyethylphosphonate dioxygenase (glycine-forming) [EC:1.13.11.78] +K21197 PCL5, pas1; PHO85 cyclin-5 +K21198 NAPG, SNAPG; gamma-soluble NSF attachment protein +K21199 CYP128; beta-dihydromenaquinone-9 omega-hydroxylase [EC:1.14.15.27] +K21200 CYP144; cytochrome P450 family 144 +K21201 CYP119; cytochrome P450 family 119 [EC:1.11.1.7] +K21202 2-ODD; (-)-deoxypodophyllotoxin synthase [EC:1.14.20.8] +K21203 OMT3; (-)-pluviatolide 4-O-methyltransferase [EC:2.1.1.323] +K21204 OMT1; 5'-demethylyatein 5'-O-methyltransferase [EC:2.1.1.330] +K21205 CYP71CU1; bursehernin 5'-monooxygenase [EC:1.14.14.131] +K21206 CYP82D61; (-)-4'-demethyl-deoxypodophyllotoxin 4-hydroxylase [EC:1.14.14.132] +K21207 CYP719A23_24; (-)-pluviatolide synthase [EC:1.14.19.72] +K21208 CYP96T1; noroxomaritidine synthase [EC:1.14.19.50 1.14.19.-] +K21209 ncsB4; acyltransferase +K21210 ncsC; NDP-mannose synthase +K21211 ncsC1; NDP-hexose 4,6-dehydratase +K21212 ncsC2; NDP-hexose 2,3-dehydratase +K21213 ncsC3; aminotransferase +K21214 ncsC4; NDP-hexose 4-ketoreductase +K21215 ncsC5; N-methyltransferase [EC:2.1.1.-] +K21216 ncsC6; glycosyltransferase [EC:2.4.1.-] +K21217 motX; sodium-type polar flagellar protein MotX +K21218 motY; sodium-type flagellar protein MotY +K21219 thiDN; hydroxymethylpyrimidine kinase / phosphomethylpyrimidine kinase / thiamine-phosphate diphosphorylase [EC:2.7.1.49 2.7.4.7 2.5.1.3] +K21220 thiN; thiamine-phosphate diphosphorylase [EC:2.5.1.3] +K21221 kedU38; iterative type I polyketide synthase KedU38 +K21222 kedN3; cytochrome P450 monooxygenase [EC:1.14.-.-] +K21223 kedN1; O-methyltransferase [EC:2.1.1.-] +K21224 kedN5; radical SAM C-methyltransferase +K21225 kedN2; acyl-CoA synthetase +K21226 kedN4; acyl-CoA N-acyltransferase +K21227 kedY4; MIO-dependent 2-aza-L-tyrosine aminomutase [EC:5.4.3.-] +K21228 kedY1; (R)-2-aza-beta-tyrosine adenylation enzyme [EC:6.2.1.-] +K21229 kedS6; glycosyltransferase [EC:2.4.1.-] +K21230 kedS10; glycosyltransferase [EC:2.4.1.-] +K21231 bciB; 3,8-divinyl protochlorophyllide a 8-vinyl-reductase (ferredoxin) [EC:1.3.7.13] +K21232 MOCS2A, CNXG; molybdopterin synthase sulfur carrier subunit +K21233 AN; Alphabaculovirus alkaline nuclease +K21234 BC1; Begomovirus movement protein BC1 +K21235 BR1, BV1; Begomovirus nuclear shuttle protein +K21236 L230; Mimivirus procollagen lysyl hydroxylase and glycosyltransferase [EC:1.14.11.4 2.4.1.-] +K21237 gp2; Podoviridae DNA polymerase [EC:2.7.7.7] +K21238 gp5; Autographiviridae DNA-directed DNA polymerase [EC:2.7.7.7] +K21239 gp50; Schitoviridae virion DNA-directed RNA polymerase [EC:2.7.7.6] +K21240 Rep; Dependoparvovirus replication protein +K21241 LEF-1; Baculoviridae DNA primase [EC:2.7.7.-] +K21242 HELI; Baculoviridae DNA replication helicase [EC:5.6.2.-] +K21243 LEF-4; Baculoviridae DNA-dependent RNA polymerase subunit LEF-4 [EC:2.7.7.50] +K21244 LEF-2; Alphabaculovirus primase-associated factor LEF-2 +K21245 SUPT20H; transcription factor SPT20 homolog +K21246 NRBF2; nuclear receptor-binding factor 2 +K21247 TP53INP2; tumor protein p53-inducible nuclear protein 2 +K21248 VMP1; vacuole membrane protein 1 +K21249 UVRAG; UV radiation resistance-associated gene protein +K21250 PRAP1; proline-rich acidic protein 1 +K21251 mgt, oleD; macrolide glycosyltransferase +K21252 fosX; fosfomycin resistance protein FosX +K21253 fosA; glutathione S-transferase fosA [EC:2.5.1.18] +K21254 calO5; orsellinic acid synthase [EC:2.3.1.-] +K21255 calO6; orsellinic acid C2-O-methyltransferase [EC:2.1.1.-] +K21256 calO3; flavin-dependent halogenase +K21257 calO2; orsellenic acid P450 oxidase [EC:1.14.-.-] +K21258 calO1; orsellinic acid C3-O-methyltransferase [EC:2.1.1.-] +K21259 calG3; calicheamicinone 4-hydroxyamino-4,6-dideoxy-alpha-D-glucosyltransferase [EC:2.4.1.-] +K21260 calG2; calicheamicin 4-deoxy-4-thio-alpha-D-digitoxosyltransferase [EC:2.4.1.-] +K21261 calO4; acyltransferase +K21262 calG4; calicheamicin aminopentosyltransferase [EC:2.4.2.-] +K21263 calG1; calicheamicin 3'-O-methyl-rhamnosyltransferase [EC:2.4.1.-] +K21264 fosA2; glutathione S-transferase fosA2 [EC:2.5.1.18] +K21265 fosA5; glutathione S-transferase fosA5 [EC:2.5.1.18] +K21266 blaOXA-286; beta-lactamase class D OXA-286 [EC:3.5.2.6] +K21267 iri, rox; rifampicin monooxygenase [EC:1.14.13.211] +K21268 gdS-2; hexaprenyl diphosphate synthase [EC:2.5.1.82] +K21269 SH3GLB2; endophilin-B2 +K21270 ChuaMOX; (R)-mandelonitrile oxidase [EC:1.1.3.49] +K21271 auaH; aurachin B dehydrogenase [EC:1.1.1.394] +K21272 auaG; aurachin C monooxygenase/isomerase [EC:1.14.13.222] +K21273 E2.5.1.88; trans,polycis-polyprenyl diphosphate synthase [EC:2.5.1.88] +K21274 hexs-a; hexaprenyl diphosphate synthase small subunit [EC:2.5.1.83] +K21275 hexs-b; hexaprenyl diphosphate synthase large subunit [EC:2.5.1.83] +K21276 blaOXA-22; beta-lactamase class D OXA-22 [EC:3.5.2.6] +K21277 blaOXA-60; beta-lactamase class D OXA-60 [EC:3.5.2.6] +K21278 DUSP1; dual specificity protein phosphatase 1 [EC:3.1.3.16 3.1.3.48] +K21279 E2.5.1.132; 3-deoxy-D-glycero-D-galacto-nononate 9-phosphate synthase [EC:2.5.1.132] +K21280 sibG; 3-hydroxy-4-methylanthranilyl-[aryl-carrier protein] 5-monooxygenase [EC:1.14.13.223] +K21281 vlmH; isobutylamine N-monooxygenase [EC:1.14.14.30] +K21282 ind7; N-demethylindolmycin N-methyltransferase [EC:2.1.1.328] +K21283 BMP2; bone morphogenetic protein 2 +K21284 acmA, sibE; 3-hydroxy-4-methylanthranilate adenylyltransferase [EC:2.7.7.97] +K21285 tagB, tarB; teichoic acid glycerol-phosphate primase [EC:2.7.8.44] +K21286 NTAQ1; protein N-terminal glutamine amidohydrolase [EC:3.5.1.122] +K21287 atdA2; gamma-glutamylanilide hydrolase [EC:3.5.1.123] +K21288 arr2; rifampin ADP-ribosylating transferase +K21289 PIK3CG; phosphatidylinositol-4,5-bisphosphate 3-kinase catalytic subunit gamma [EC:2.7.1.153] +K21290 PIK3R5_6; phosphoinositide-3-kinase regulatory subunit 5/6 +K21291 CYP71Z7; ent-cassadiene hydroxylase [EC:1.14.14.69] +K21292 CYP503; ent-kaurene oxidase [EC:1.14.14.86] +K21293 CYP619; cytochrome P450 family 619 +K21294 GLIC, ACLC, ROQR; gliotoxin/aspirochlorine/mycotoxins biosynthesis cytochrome P450 monooxygenase [EC:1.-.-.-] +K21295 AF510; 5-dehydro-6-demethoxyfumagillol synthase [EC:1.14.14.184] +K21296 TENB; tenellin biosynthesis cytochrome P450 monooxygenase +K21297 ctcQ; flavin reductase (NADH) [EC:1.5.1.36] +K21298 E2.4.1.333; 1,2-beta-oligoglucan phosphorylase [EC:2.4.1.333] +K21299 arsAB; nicotinate D-ribonucleotide:phenol phospho-D-ribosyltransferase [EC:2.4.2.55] +K21300 HSS1; homospermidine synthase (spermidine-specific) [EC:2.5.1.45] +K21301 oxyR, ctcR; 5a,11a-dehydrotetracycline reductase [EC:1.3.98.4] +K21302 sapM; phosphatidylinositol-3-phosphatase [EC:3.1.3.64] +K21303 wecP; UDP-GalNAc:undecaprenyl-phosphate GalNAc-1-phosphate transferase [EC:2.7.8.40] +K21304 aglK; UDP-N-acetylglucosamine---dolichyl-phosphate N-acetylglucosaminyltransferase [EC:2.4.1.153] +K21305 aglC; dolichyl N-acetyl-alpha-D-glucosaminyl phosphate 3-beta-D-2,3-diacetamido-2,3-dideoxy-beta-D-glucuronosyltransferase [EC:2.4.1.335] +K21306 aglB; dolichyl-phosphooligosaccharide-protein glycotransferase [EC:2.4.99.21] +K21307 soeA; sulfite dehydrogenase (quinone) subunit SoeA [EC:1.8.5.6] +K21308 soeB; sulfite dehydrogenase (quinone) subunit SoeB +K21309 soeC; sulfite dehydrogenase (quinone) subunit SoeC +K21310 mddA; methanethiol S-methyltransferase [EC:2.1.1.334] +K21311 N4OMT; norbelladine O-methyltransferase [EC:2.1.1.336] +K21312 bciD; bacteriochlorophyllide c C-7(1)-hydroxylase [EC:1.17.98.2] +K21313 1; Autographiviridae RNA polymerase [EC:2.7.7.6] +K21314 pol; Demerecviridae DNA polymerase [EC:2.7.7.7] +K21315 PAPL; Poxviridae poly(A) polymerase catalytic subunit [EC:2.7.7.19] +K21316 L; Lyssavirus RNA-directed RNA polymerase L [EC:2.7.7.48 3.6.1.- 2.7.7.88 2.1.1.375] +K21317 bmoX; butane monooxygenase alpha subunit [EC:1.14.13.230] +K21318 bmoY; butane monooxygenase beta subunit [EC:1.14.13.230] +K21319 bmoZ; butane monooxygenase gamma subunit [EC:1.14.13.230] +K21320 bmoC; butane monooxygenase reductase +K21321 bmoB; butane monooxygenase regulatory protein +K21322 bmoD; butane monooxygenase hypothetical assembly protein +K21323 mdpJ; tert-butyl alcohol monooxygenase / tert-amyl alcohol desaturase [EC:1.14.13.229 1.14.19.48] +K21324 mdpK; tert-butyl alcohol monooxygenase/tert-amyl alcohol desaturase reductase +K21325 calS11; dTDP-rhamnose C3-O-methyltransferase [EC:2.1.1.-] +K21326 sgcA4; aminotransferase +K21327 sgcA5; N-methyltransferase [EC:2.1.1.-] +K21328 calS13, atmS13; dTDP-4-amino-4,6-dideoxy-D-glucose/dTDP-4-amino-2,4-dideoxy-beta-L-xylose transaminase [EC:2.6.1.33 2.6.1.-] +K21329 calE10; aminosugar N-oxygenase [EC:1.14.15.-] +K21330 calS4; C-S lyase +K21331 calS8, atmS8; dTDP-alpha-D-glucose dehydrogenase [EC:1.1.1.-] +K21332 calS9, atmS9; dTDP-alpha-D-glucuronic acid decarboxylase [EC:1.1.1.-] +K21333 calS14, atmS14; dTDP-4-oxo-alpha-D-xylose 2,3-dehydratase [EC:4.2.1.-] +K21335 calS10, atmS10; dTDP-4-amino-2,4-dideoxy-beta-L-xylose N-methyltransferase [EC:2.1.1.-] +K21336 mdpA4; C-methyltransferase [EC:2.1.1.-] +K21337 mdpA5; aminotransferase +K21338 ppzP; 5,10-dihydrophenazine-1-carboxylate 9-dimethylallyltransferase [EC:2.5.1.121] +K21339 SIRD; 4-O-dimethylallyl-L-tyrosine synthase [EC:2.5.1.122] +K21340 fnq26; flaviolin linalyltransferase [EC:2.5.1.123] +K21341 fur7; 6-linalyl-2-O,3-dimethylflaviolin/7-geranyloxy-5-hydroxy-2-methoxy-3-methylnaphthalene-1,4-dione synthase [EC:2.5.1.124 2.5.1.125] +K21342 nos2, anb2; demethyl-4-deoxygadusol synthase [EC:4.2.3.154] +K21343 USP15; ubiquitin carboxyl-terminal hydrolase 15 [EC:3.4.19.12] +K21344 rfaE1; D-glycero-beta-D-manno-heptose-7-phosphate kinase [EC:2.7.1.167] +K21345 rfaE2; D-glycero-beta-D-manno-heptose 1-phosphate adenylyltransferase [EC:2.7.7.70] +K21346 BCAT4; methionine transaminase [EC:2.6.1.88] +K21347 TAX1BP1; Tax1-binding protein 1 +K21348 CALCOCO2, NDP52; calcium-binding and coiled-coil domain-containing protein 2 +K21349 ggs; glucosylglycerate synthase [EC:2.4.1.268] +K21350 E2.4.1.329; sucrose 6(F)-phosphate phosphorylase [EC:2.4.1.329] +K21351 SST; sucrose:sucrose fructosyltransferase [EC:2.4.1.99] +K21352 FT1; 6(G)-fructosyltransferase [EC:2.4.1.243] +K21353 E2.4.1.248; cycloisomaltooligosaccharide glucanotransferase [EC:2.4.1.248] +K21354 UGT94E5; beta-D-glucosyl crocetin beta-1,6-glucosyltransferase [EC:2.4.1.330] +K21355 ggp; 1,2-alpha-glucosylglycerol phosphorylase [EC:2.4.1.332] +K21356 MFN1; mitofusin 1 [EC:3.6.5.-] +K21357 ULK1; serine/threonine-protein kinase ULK1 [EC:2.7.11.1] +K21358 ULK3; serine/threonine-protein kinase ULK3 [EC:2.7.11.1] +K21359 MAM-IS, IPMI2; 3-isopropylmalate/methylthioalkylmalate dehydratase small subunit [EC:4.2.1.33 4.2.1.170] +K21360 MAM-D, IMDH3; 3-isopropylmalate/methylthioalkylmalate dehydrogenase [EC:1.1.1.85 1.1.1.-] +K21361 CITED2; Cbp/p300-interacting transactivator 2 +K21362 SFR2; galactolipid galactosyltransferase [EC:2.4.1.184] +K21363 wfaP, wfgD; UDP-Glc:alpha-D-GlcNAc-glucosaminyl-diphosphoundecaprenol beta-1,3-glucosyltransferase [EC:2.4.1.305] +K21364 wfeD; UDP-Gal:alpha-D-GlcNAc-diphosphoundecaprenol beta-1,4-galactosyltransferase [EC:2.4.1.304] +K21365 wbnH, wbiN; O86/O127-antigen biosynthesis alpha-1,3-N-acetylgalactosaminyltransferase [EC:2.4.1.306] +K21366 wbnJ, wbiP; O86/O127-antigen biosynthesis beta-1,3-galactosyltransferase [EC:2.4.1.122 2.4.1.-] +K21367 wbnK, wbiQ; O86/O127-antigen biosynthesis alpha-1,2-fucosyltransferase [EC:2.4.1.308 2.4.1.-] +K21368 wbnI; O86-antigen biosynthesis alpha-1,3-galactosyltransferase [EC:2.4.1.309] +K21369 mggA; mannosylglucosyl-3-phosphoglycerate synthase [EC:2.4.1.270] +K21370 UBGAT; baicalein 7-O-glucuronosyltransferase [EC:2.4.1.253] +K21371 UGT75L6, UGTCs2; crocetin glucosyltransferase [EC:2.4.1.271] +K21372 E2.4.1.286; chalcone 4'-O-glucosyltransferase [EC:2.4.1.286] +K21373 UGT8, UGT709C2; 7-deoxyloganetic acid glucosyltransferase [EC:2.4.1.323] +K21374 UGT85A23_24; 7-deoxyloganetin glucosyltransferase [EC:2.4.1.324] +K21375 albA; albonoursin synthase [EC:1.3.3.13] +K21376 aziB1; 5-methyl-1-naphthoate 3-hydroxylase [EC:1.14.13.189] +K21377 aziB2; 3-hydroxy-5-methyl-1-naphthoate 3-O-methyltransferase [EC:2.1.1.302] +K21378 nphT7; acetoacetyl-CoA synthase [EC:2.3.1.194] +K21379 vioB; dTDP-4-amino-4,6-dideoxy-D-glucose acyltransferase [EC:2.3.1.209] +K21380 BEAT; acetyl-CoA-benzylalcohol acetyltransferase [EC:2.3.1.224] +K21381 aziB; 5-methylnaphthoic acid synthase [EC:2.3.1.236] +K21382 albC; cyclo(L-leucyl-L-phenylalanyl) synthase [EC:2.3.2.20] +K21383 3AT; anthocyanidin 3-O-glucoside 6''-O-acyltransferase [EC:2.3.1.215] +K21384 BIS; 3,5-dihydroxybiphenyl/4-hydroxycoumarin synthase [EC:2.3.1.177 2.3.1.208] +K21385 PCS; 5,7-dihydroxy-2-methylchromone synthase [EC:2.3.1.216] +K21386 BPS; 2,4,6-trihydroxybenzophenone synthase [EC:2.3.1.220] +K21387 AJAP1; adherens junction-associated protein 1 +K21388 AHR1; adhesion and hyphal regulator 1 +K21389 ADN1; adhesion defective protein 1 +K21390 ADN2; adhesion defective protein 2 +K21391 ADN3; adhesion defective protein 3 +K21392 AEBP1; adipocyte enhancer-binding protein 1 +K21393 yiaN; TRAP-type transport system large permease protein +K21394 yiaM; TRAP-type transport system small permease protein +K21395 yiaO; TRAP-type transport system periplasmic protein +K21396 WHT; ATP-binding cassette, subfamily G (WHITE), eye pigment precursor transporter +K21397 K21397; ABC transport system ATP-binding/permease protein +K21398 SLC11A2, DMT1, NRAMP2; natural resistance-associated macrophage protein 2 +K21399 ortA; 2-amino-4-ketopentanoate thiolase alpha subunit [EC:2.3.1.263] +K21400 ortB; 2-amino-4-ketopentanoate thiolase beta subunit [EC:2.3.1.263] +K21401 menJ; menaquinone-9 beta-reductase [EC:1.3.99.38] +K21402 noeI; 2-O-methyltransferase [EC:2.1.1.-] +K21403 PXYLP1; 2-phosphoxylose phosphatase [EC:3.1.3.-] +K21404 AKNA; AT-hook-containing transcription factor +K21405 acoR; sigma-54 dependent transcriptional regulator, acetoin dehydrogenase operon transcriptional activator AcoR +K21406 ATF3, A3-3; activating transcription factor 3 +K21407 APMAP; adipocyte plasma membrane-associated protein +K21408 ADIRF; adipogenesis regulatory factor +K21409 ADIG; adipogenin +K21410 C1QTNF12, FAM132A; adipolin +K21411 ANKLE1, LEM3; ankyrin repeat and LEM domain-containing protein 1 +K21412 ANKLE2, LEM4; ankyrin repeat and LEM domain-containing protein 2 +K21413 ANKS1; ankyrin repeat and SAM domain-containing protein 1 +K21414 ANKS4B, HARP; ankyrin repeat and SAM domain-containing protein 4B +K21415 ANKS6; ankyrin repeat and SAM domain-containing protein 6 +K21416 acoA; acetoin:2,6-dichlorophenolindophenol oxidoreductase subunit alpha [EC:1.1.1.-] +K21417 acoB; acetoin:2,6-dichlorophenolindophenol oxidoreductase subunit beta [EC:1.1.1.-] +K21418 HMOX2; heme oxygenase 2 [EC:1.14.14.18] +K21419 ATEL1; arginyl-tRNA---protein transferase [EC:2.3.2.8] +K21420 bpt; leucyl-tRNA---protein transferase [EC:2.3.2.29] +K21421 NOX2, GP91, CYBB; NADPH oxidase 2 [EC:1.-.-.-] +K21422 NOX3, MOX2; NADPH oxidase 3 [EC:1.6.3.-] +K21423 NOX4, RENOX; NADPH oxidase 4 [EC:1.6.3.-] +K21424 NOX5; NADPH oxidase 5 [EC:1.6.3.-] +K21425 RAS; rosmarinate synthase [EC:2.3.1.140] +K21426 CMT; [trehalose-6-phosphate synthase]-L-cysteine S-methyltransferase [EC:2.1.1.318] +K21427 mmcR; mitomycin 6-O-methyltransferase [EC:2.1.1.316] +K21428 pigD; 3-acetyloctanal synthase [EC:2.2.1.12] +K21429 impA; immunomodulating metalloprotease +K21430 yliI; aldose sugar dehydrogenase [EC:1.1.5.-] +K21431 kdc; alpha-keto-acid decarboxylase [EC:4.1.1.-] +K21432 NOXA1; NADPH oxidase activator 1 +K21433 ANKRD1; ankyrin repeat domain-containing protein 1 +K21434 ANKRD2; ankyrin repeat domain-containing protein 2 +K21435 ANKRD6; ankyrin repeat domain-containing protein 6 +K21436 ANKRD11_12; ankyrin repeat domain-containing protein 11/12 +K21437 ANKRD13; ankyrin repeat domain-containing protein 13 +K21438 ANKRD23; ankyrin repeat domain-containing protein 23 +K21439 ANKRD49; ankyrin repeat domain-containing protein 49 +K21440 ANKRD50; ankyrin repeat domain-containing protein 50 +K21441 ANKRD53; ankyrin repeat domain-containing protein 53 +K21442 ANKRD54; ankyrin repeat domain-containing protein 54 +K21443 PSRC1; proline/serine-rich coiled-coil protein 1 +K21444 PCBP3_4; poly(rC)-binding protein 3/4 +K21445 CYP5081A1, HELB1; helvolic acid biosynthesis cytochrome P450 monooxygenase +K21446 TENA; tenellin biosynthesis cytochrome P450 monooxygenase +K21447 AZAI; azaphilone biosynthesis cytochrome P450 monooxygenase +K21448 AFVE; aflavarin biosynthesis cytochrome P450 monooxygenase +K21449 ata, sadA, emaA; trimeric autotransporter adhesin +K21450 ARAR; arabinolytic transcriptional activator AraR +K21451 XLNR; xylanolytic transcriptional activator XlnR +K21452 MBZ1; bZIP-type transcription factor MBZ1 +K21453 icaR; TetR/AcrR family transcriptional regulator, biofilm operon repressor +K21454 tcaR; MarR family transcriptional regulator, teicoplanin-associated locus regulator +K21455 CON7; transcription factor CON7 +K21456 GSS; glutathione synthase [EC:6.3.2.3] +K21457 mppJ; phenylpyruvate C(3)-methyltransferase [EC:2.1.1.281] +K21458 E2.1.1.300; pavine N-methyltransferase [EC:2.1.1.300] +K21459 cypM; cypemycin N-terminal methyltransferase [EC:2.1.1.301] +K21460 sfmM2; L-tyrosine C(3)-methyltransferase [EC:2.1.1.304] +K21461 icaD; poly-beta-1,6-N-acetyl-D-glucosamine synthesis protein +K21462 icaC; probable poly-beta-1,6-N-acetyl-D-glucosamine export protein +K21463 tcaA; membrane-associated protein TcaA +K21464 pbpG; penicillin-binding protein 2D [EC:2.4.99.28 3.4.16.4] +K21465 pbpA; penicillin-binding protein A +K21466 pbpH; penicillin-binding protein H +K21467 pbpC; penicillin-binding protein 3 +K21468 pbpI; penicillin-binding protein 4B +K21469 pbp4b; serine-type D-Ala-D-Ala carboxypeptidase [EC:3.4.16.4] +K21470 ycbB; L,D-transpeptidase YcbB +K21471 cwlO; peptidoglycan DL-endopeptidase CwlO [EC:3.4.-.-] +K21472 lytH; peptidoglycan LD-endopeptidase LytH [EC:3.4.-.-] +K21473 ripA; peptidoglycan DL-endopeptidase RipA [EC:3.4.-.-] +K21474 ripB; peptidoglycan DL-endopeptidase RipB [EC:3.4.-.-] +K21475 CYP5136A3; alkylphenol/PAH-inducible cytochrome P450 monooxygenase +K21476 LEPD; leporin biosynthesis cytochrome P450 monooxygenase +K21477 DTPC; ditryptophenaline biosynthesis cytochrome P450 monooxygenase [EC:1.-.-.-] +K21478 icaB; poly-beta-1,6-N-acetyl-D-glucosamine N-deacetylase [EC:3.5.1.-] +K21479 cbiH60; cobalt-factor III methyltransferase [EC:2.1.1.272] +K21480 HO, pbsA1, hmuO; heme oxygenase (biliverdin-producing, ferredoxin) [EC:1.14.15.20] +K21481 mhuD; heme oxygenase (mycobilin-producing) [EC:1.14.99.57] +K21482 BAMT; benzoate O-methyltransferase [EC:2.1.1.273] +K21483 SAMT; salicylate 1-O-methyltransferase [EC:2.1.1.274] +K21484 BSMT1; benzoate/salicylate 1-O-methyltransferase [EC:2.1.1.273 2.1.1.274] +K21485 AAMT; anthranilate O-methyltransferase [EC:2.1.1.277] +K21486 ANKRA2; ankyrin repeat family A protein 2 +K21487 yobL; toxin YobL [EC:3.1.-.-] +K21488 yobK; antitoxin YobK +K21489 yokI; toxin YokI [EC:3.1.-.-] +K21490 yokJ; antitoxin YokJ +K21491 yqcG; toxin YqcG [EC:3.1.-.-] +K21492 yqcF; antitoxin YqcF +K21493 yxiD; toxin YxiD [EC:3.1.-.-] +K21494 yxxD; antitoxin YxxD +K21495 fitA; antitoxin FitA +K21496 BC_0920; toxin [EC:3.1.-.-] +K21497 BC_0921; antitoxin +K21498 higA-1; antitoxin HigA-1 +K21499 dda; Straboviridae ATP-dependent DNA helicase [EC:5.6.2.3] +K21500 dnk; Demerecviridae deoxynucleoside-5'-monophosphate kinase [EC:2.7.4.13] +K21501 UL9; Alphaherpesvirinae replication origin-binding protein +K21502 gp4; Autographiviridae DNA primase/helicase [EC:2.7.7.- 5.6.2.3] +K21503 56; Straboviridae dCTP pyrophosphatase [EC:3.6.1.12] +K21504 IAP3; Baculoviridae E3 ubiquitin-protein ligase [EC:2.3.2.27] +K21505 NPH2; Poxviridae RNA helicase NPH-II [EC:5.6.2.6] +K21506 VPK1; Poxviridae serine/threonine-protein kinase 1 [EC:2.7.11.1] +K21507 dmt; Escherichia phage methyltransferase [EC:2.1.1.-] +K21508 gp16; Autographiviridae peptidoglycan hydrolase [EC:4.2.2.-] +K21509 gp36; Pseudomonas phage peptidoglycan hydrolase [EC:3.2.1.17] +K21510 dmp; Demerecviridae 5'-deoxynucleotidase [EC:3.1.3.89] +K21511 C; Enterobacteria phage capsid assembly protease [EC:3.4.21.-] +K21512 A; Enterobacteria phage terminase large subunit [EC:3.1.21.4] +K21513 HMM; (+)-6a-hydroxymaackiain 3-O-methyltransferase [EC:2.1.1.270] +K21514 aviRb; 23S rRNA (uridine2479-2'-O)-methyltransferase [EC:2.1.1.208] +K21515 aviRa; 23S rRNA (guanine2535-N1)-methyltransferase [EC:2.1.1.209] +K21516 PAPS; Poxviridae cap-specific mRNA (nucleoside-2'-O-)-methyltransferase [EC:2.1.1.57] +K21517 NPH1; Poxviridae nucleoside triphosphatase I [EC:3.6.1.15] +K21518 VPK2; Poxviridae serine/threonine-protein kinase 2 [EC:2.7.11.1] +K21519 A18R; Poxviridae transcript termination protein [EC:5.6.2.4] +K21520 C1; Bean yellow dwarf virus replication-associated protein A [EC:3.1.21.-] +K21521 agt; Straboviridae DNA alpha-glucosyltransferase [EC:2.4.1.26] +K21522 denV; Straboviridae endonuclease V [EC:3.2.2.17] +K21523 gp17; Straboviridae terminase, large subunit [EC:3.1.-.-] +K21524 gp16; Straboviridae terminase, small subunit +K21525 gp3; Autographiviridae endonuclease I [EC:3.1.21.2] +K21526 gp6; Autographiviridae exonuclease [EC:3.1.11.3] +K21527 mom; Enterobacteriaceae phage adenine modification enzyme [EC:2.3.1.-] +K21528 gin; Enterobacteriaceae phage serine recombinase [EC:3.1.22.- 6.5.1.-] +K21529 A28L; Orthopoxvirus envelope protein A28 +K21530 gp25; Straboviridae baseplate wedge protein +K21531 gp18; Straboviridae tail sheath protein +K21532 BNRF1; Lymphocryptovirus major tegument protein +K21533 vIL10; Herpesviridae/Poxviridae viral interleukin 10 +K21534 SAMase; Enterobacteria phage S-adenosyl-L-methionine lyase [EC:4.4.1.42] +K21535 p22; Tombusvirus movement protein +K21536 VGF-1; Orthopoxvirus pro-vaccinia growth factor +K21537 SPI-2; Poxviridae serine proteinase inhibitor 2 +K21538 vTNFR2; Poxvirus tumor necrosis factor receptor II +K21539 mycF; mycinamicin III 3''-O-methyltransferase [EC:2.1.1.237] +K21540 mycE; mycinamicin VI 2''-O-methyltransferase [EC:2.1.1.238] +K21541 TMT-1_2; squalene methyltransferase [EC:2.1.1.262] +K21542 TMT-3; botryococcene C-methyltransferase [EC:2.1.1.263] +K21543 CRZ1, CRZA; transcription factor CRZ1 +K21544 NSF1, BCR1, DVRA; C2H2 transcription facotor +K21545 MNL1, SEB1, SEBA, COM2; C2H2 transcription facotor +K21546 GLIZ; C6 transcription factor GliZ +K21547 PRO1, NOSA; C6 transcription factor Pro1 +K21548 CREBZF; ATF/CREB family transcription factor +K21549 IMT1; inositol 4-methyltransferase [EC:2.1.1.129] +K21550 BMT; 5-hydroxyfuranocoumarin 5-O-methyltransferase [EC:2.1.1.69] +K21551 tsrM; tryptophan 2-C-methyltransferase [EC:2.1.1.106] +K21552 HOL; methyl halide transferase [EC:2.1.1.165] +K21553 CHMT; isoliquiritigenin 2'-O-methyltransferase [EC:2.1.1.154] +K21554 CREBRF, LRF; CREB3 regulatory factor +K21555 cooA; CRP/FNR family transcriptional regulator, carbon monoxide oxidation system transcription regulator +K21556 malR; CRP/FNR family transcriptional regulator, polysaccharide utilization system transcription regulator +K21557 susR; HTH-type transcriptional regulator, polysaccharide utilization system transcription regulator +K21558 cprK; CRP/FNR family transcriptional regulator, reductive dehalogenation system regulator +K21559 cprC; NosR/NirI family transcriptional regulator, putative reductive dehalogenation system regulator +K21560 prfA; CRP/FNR family transcriptional regulator, listeriolysin regulatory protein +K21561 ntcA; CRP/FNR family transcriptional regulator, global nitrogen regulator +K21562 flp; CRP/FNR family transcriptional regulator, anaerobic regulatory protein +K21563 dnr; CRP/FNR family transcriptional regulator, dissimilatory nitrate respiration regulator +K21564 nnrR; CRP/FNR family transcriptional regulator, nitrogen oxide reductase regulator +K21565 cprB; membrane ancheor protein +K21566 cprA; 3-chloro-4-hydroxyphenylacetate reductive dehalogenase [EC:3.8.1.-] +K21567 fnr; ferredoxin/flavodoxin---NADP+ reductase [EC:1.18.1.2 1.19.1.1] +K21568 PLR; pinoresinol/lariciresinol reductase [EC:1.23.1.1 1.23.1.2 1.23.1.3 1.23.1.4] +K21569 camC, CYP101A1; camphor 5-monooxygenase [EC:1.14.15.1] +K21570 camA; putidaredoxin---NAD+ reductase [EC:1.18.1.5] +K21571 susE_F; starch-binding outer membrane protein SusE/F +K21572 susD; starch-binding outer membrane protein, SusD/RagB family +K21573 susC; TonB-dependent starch-binding outer membrane protein SusC +K21574 susB; glucan 1,4-alpha-glucosidase [EC:3.2.1.3] +K21575 susA; neopullulanase [EC:3.2.1.135] +K21576 grdD; glycine/sarcosine/betaine reductase complex component C subunit alpha [EC:1.21.4.2 1.21.4.3 1.21.4.4] +K21577 grdC; glycine/sarcosine/betaine reductase complex component C subunit beta [EC:1.21.4.2 1.21.4.3 1.21.4.4] +K21578 grdI; betaine reductase complex component B subunit alpha [EC:1.21.4.4] +K21579 grdH; betaine reductase complex component B subunit beta [EC:1.21.4.4] +K21580 RNMT; reticuline N-methyltransferase [EC:2.1.1.337] +K21581 OMT1; desmethylxanthohumol 6'-O-methyltransferase [EC:2.1.1.338] +K21582 OMT2; xanthohumol 4'-O-methyltransferase [EC:2.1.1.339] +K21583 grdG; sarcosine reductase complex component B subunit alpha [EC:1.21.4.3] +K21584 grdF; sarcosine reductase complex component B subunit beta [EC:1.21.4.3] +K21585 kat; 3-aminobutanoyl-CoA transaminase [EC:2.6.1.111] +K21586 wbgM; O55-antigen biosynthesis alpha-1,3-galactosyltransferase +K21587 ClPT1; coumarin 8-geranyltransferase [EC:2.5.1.138] +K21588 PT; umbelliferone 6-dimethylallyltransferase [EC:2.5.1.139] +K21589 cadD; cAMP deaminase [EC:3.5.4.46] +K21590 PT1L; 2-acylphloroglucinol 4-prenyltransferase [EC:2.5.1.136] +K21591 tarF; teichoic acid glycerol-phosphate transferase [EC:2.7.8.45] +K21592 tarK; teichoic acid ribitol-phosphate primase [EC:2.7.8.46] +K21593 triA; melamine deaminase [EC:3.5.4.45] +K21594 GUF1; translation factor GUF1, mitochondrial [EC:3.6.5.-] +K21595 CARF; calcium-responsive transcription factor +K21596 CAMTA; calmodulin-binding transcription activator +K21597 CAS5; cell wall integrity transcriptional regulator CAS5 +K21598 GCM; chorion-specific transcription factor GCM +K21599 CIART, CHRONO, GM129; circadian-associated transcriptional repressor +K21600 csoR, ricR; CsoR family transcriptional regulator, copper-sensing transcriptional repressor +K21601 ycnK; DeoR family transcriptional regulator, copper-sensing transcriptional repressor +K21602 yiaJ; IclR family transcriptional regulator, carbohydrate utilization repressor +K21603 ftcR; two-component system, OmpR family, flagellar system response regulator FtcR +K21604 IAR3, ILL6; jasmonoyl-L-amino acid hydrolase [EC:3.5.1.127] +K21605 PT2; 2-acyl-4-prenylphloroglucinol 6-prenyltransferase [EC:2.5.1.137] +K21606 endo_I; endo-chitodextinase [EC:3.2.1.202] +K21607 pcpD; tetrachlorobenzoquinone reductase [EC:1.1.1.404] +K21608 lpqS; lipoprotein LpqS +K21609 mymT; metallothionein +K21610 cfbC; Ni-sirohydrochlorin a,c-diamide reductive cyclase subunit CfbC [EC:6.3.3.7] +K21611 cfbD; Ni-sirohydrochlorin a,c-diamide reductive cyclase subunit CfbD [EC:6.3.3.7] +K21612 cfbE; coenzyme F430 synthetase [EC:6.4.1.9] +K21613 scmP; N-acetylcysteine deacetylase [EC:3.5.1.-] +K21614 p4H; L-proline cis-4-hydroxylase [EC:1.14.11.56] +K21615 E1.14.11.57; L-proline 4-hydroxylase [EC:1.14.11.57] +K21616 znd; D-altritol 5-dehydrogenase [EC:1.1.1.407] +K21617 hpbD; 4-hydroxyproline betaine 2-epimerase [EC:5.1.1.22] +K21618 DLD3; (R)-2-hydroxyglutarate---pyruvate transhydrogenase [EC:1.1.99.40] +K21619 uxaE; tagaturonate epimerase [EC:5.1.2.7] +K21620 sorbD; galactitol 2-dehydrogenase [EC:1.1.1.16] +K21621 fk; tagatose kinase [EC:2.7.1.101] +K21622 tag6PK; D-tagatose 6-phosphate 4-epimerase [EC:5.1.3.40] +K21623 CORI3; L-cystine beta-lyase [EC:4.4.1.35] +K21624 c3lhypd; cis-L-3-hydroxyproline dehydratase [EC:4.2.1.171] +K21625 DMTF1, DMP1; cyclin-D-binding Myb-like transcription factor 1 +K21626 CCNDBP1, DIP1, GCIP; cyclin-D1-binding protein 1 +K21627 IFH1; protein IFH1 +K21628 MSA1; G1-specific transcription factors activator MSA1 +K21629 MSA2; G1-specific transcription factors activator MSA2 +K21630 ZGLP1; GATA-type zinc finger protein 1 +K21631 GTI1, PAC2, WOR1; Gti1/Pac2 family transcription factor +K21632 WOR2; white-opaque regulator 2 +K21633 CZF1; zinc cluster transcription factor CZF1 +K21634 USP21; ubiquitin carboxyl-terminal hydrolase 21 [EC:3.4.19.12] +K21635 JAG2; jagged-2 +K21636 nrdD; ribonucleoside-triphosphate reductase (formate) [EC:1.1.98.6] +K21637 iraD; anti-adapter protein IraD +K21638 iraM; anti-adapter protein IraM +K21639 E1.4.3.25; L-arginine oxidase [EC:1.4.3.25] +K21640 nrpRII; global nitrogen regulator NrpRII +K21641 RGT1; glucose transport transcription regulator RGT1 +K21642 OPI1; transcriptional repressor OPI1 +K21643 BBX, HBP2; HMG box transcription factor BBX +K21644 HBP1; HMG box transcription factor 1 +K21645 hypT, qseD; LysR family transcriptional regulator, hypochlorite-specific transcription factor HypT +K21646 GCR1; glycolytic genes transcriptional activator GCR1 +K21647 pceA; tetrachloroethene reductive dehalogenase [EC:1.21.99.5] +K21648 pceB; tetrachloroethene reductive dehalogenase membrane anchor +K21649 ORF4; KSHV complement control protein +K21650 KIE1, ORF50; KSHV transcription activator ORF50 +K21651 K15; KSHV signal transducing membrane protein +K21652 vIRF3; KSHV interferon regulatory factor-like protein 3 +K21653 vIRF1, K9; KSHV interferon regulatory factor-like protein 1 +K21654 vIRF2, K11; KSHV interferon regulatory factor-like protein 2 +K21655 K8; KSHV E3 SUMO-protein ligase K-bZIP +K21656 K12; KSHV protein K12 +K21657 K4; KSHV macrophage inflammatory protein 2 +K21658 K4.1; KSHV protein vCCL3 +K21659 K6; KSHV protein K6 +K21660 vBCL2, ORF16; KSHV apoptosis regulator BCL2 homolog +K21661 vIAP, K7; KSHV inhibitor of apoptosis protein +K21662 vFLIP, K13, ORF71; KSHV FLICE inhibitory protein +K21663 vCyclin, ORF72; KSHV cyclin homolog +K21664 vLANA, ORF73; KSHV latency-associated nuclear antigen +K21665 MIR1, K3; KSHV E3 ubiquitin-protein ligase MIR1 [EC:2.3.2.36] +K21666 MIR2, K5; KSHV E3 ubiquitin-protein ligase MIR2 [EC:2.3.2.36] +K21667 vGPCR; KSHV G-protein coupled receptor +K21668 CD200R; cell surface glycoprotein CD200 receptor +K21669 K1; KSHV protein K1 +K21670 vIL6, K2; KSHV interleukin 6 +K21671 GCR2; glycolytic genes transcriptional activator GCR2 +K21672 ord; 2,4-diaminopentanoate dehydrogenase [EC:1.4.1.12 1.4.1.26] +K21673 cdhA; caffeine dehydrogenase subunit alpha [EC:1.17.5.2] +K21674 cdhB; caffeine dehydrogenase subunit beta [EC:1.17.5.2] +K21675 cdhC; caffeine dehydrogenase subunit gamma [EC:1.17.5.2] +K21676 luh; lupanine 17-hydroxylase (cytochrome c) [EC:1.17.2.2] +K21677 hpnE; hydroxysqualene dehydroxylase [EC:1.17.8.1] +K21678 hpnD; presqualene diphosphate synthase [EC:2.5.1.103] +K21679 hpnC; hydroxysqualene synthase [EC:4.2.3.156] +K21680 E1.1.1.137; ribulose-5-phosphate 2-dehydrogenase [EC:1.1.1.137] +K21681 bcs1; ribitol-5-phosphate 2-dehydrogenase (NADP+) / D-ribitol-5-phosphate cytidylyltransferase [EC:1.1.1.405 2.7.7.40] +K21682 PNO; pyruvate dehydrogenase (NADP+) [EC:1.2.1.51] +K21683 dntB; 4-methyl-5-nitrocatechol 5-monooxygenase [EC:1.14.13.210] +K21684 sdgC; salicyloyl-CoA 5-hydroxylase [EC:1.14.13.209] +K21685 ramA; LuxR family transcriptional regulator, regulator of acetate metabolism +K21686 prpR; XRE family transcriptional regulator, fatty acid utilization regulator +K21687 rpfA; resuscitation-promoting factor RpfA +K21688 rpfB; resuscitation-promoting factor RpfB +K21689 rpfC; resuscitation-promoting factor RpfC +K21690 rpfD; resuscitation-promoting factor RpfD +K21691 rpfE; resuscitation-promoting factor RpfE +K21692 CYP82N4; methyltetrahydroprotoberberine 14-monooxygenase [EC:1.14.14.97] +K21693 CYP82N2_3; protopine 6-monooxygenase [EC:1.14.14.98] +K21694 cowN; N(2)-fixation sustaining protein CowN +K21695 aaeX; protein AaeX +K21696 rcoM; LytTR family transcriptional regulator, CO-responsive transcriptional regulator RcoM +K21697 vjbR; LuxR family transcriptional regulator, quorum-sensing system regulator VjbR +K21698 aaeR; LysR family transcriptional regulator, transcriptional activator for aaeXAB operon +K21699 bauR; LysR family transcriptional regulator, transcriptional activator for bauABCD operon +K21700 bauB; beta-alanine degradation protein BauB +K21701 btr; AraC family transcriptional regulator, transcriptional activator for feuABC-ybbA operon +K21702 gatDH; galactitol 2-dehydrogenase (L-tagatose-forming) [EC:1.1.1.406] +K21703 cbbR, cmpR, ndhR; LysR family transcriptional regulator, low CO2-responsive transcriptional regulator +K21704 FAH12; phosphatidylcholine 12-monooxygenase [EC:1.14.18.4] +K21705 E1.14.19.10; icosanoyl-CoA 5-desaturase [EC:1.14.19.10] +K21706 DES; acyl-lipid omega-(9-4) desaturase [EC:1.14.19.12] +K21707 DES3; acyl-CoA 15-desaturase [EC:1.14.19.13] +K21708 FADX; linoleoyl-lipid Delta9 conjugase [EC:1.14.19.14] +K21709 DESAT1; (11Z)-hexadec-11-enoyl-CoA conjugase [EC:1.14.19.15] +K21710 FAC; linoleoyl-lipid Delta12 conjugase (11E,13Z-forming) [EC:1.14.19.16] +K21711 pycR; LysR family transcriptional regulator, putative pyruvate carboxylase regulator +K21712 gbpA; N-acetylglucosamine-binding protein A +K21713 lpmo; lytic chitin monoxygenase [EC:1.14.99.53] +K21714 CYP71AJ1; psoralen synthase [EC:1.14.14.141] +K21715 CYP71AJ4; angelicin synthase [EC:1.14.14.148] +K21716 CYP71AV1; amorpha-4,11-diene 12-monooxygenase [EC:1.14.14.114] +K21717 CYP71BA1; alpha-humulene 10-hydroxylase [EC:1.14.14.113] +K21718 CYP76M6; oryzalexin E synthase [EC:1.14.14.122] +K21719 CYP701A8; ent-sandaracopimaradiene 3-hydroxylase / syn-pimaradiene 3-monooxygenase [EC:1.14.14.70 1.14.14.68] +K21720 T7H; taxoid 7beta-hydroxylase [EC:1.14.14.182] +K21721 sbnB; N-[(2S)-2-amino-2-carboxyethyl]-L-glutamate dehydrogenase [EC:1.5.1.51] +K21722 ndmA; methylxanthine N1-demethylase [EC:1.14.13.178] +K21723 ndmB; methylxanthine N3-demethylase [EC:1.14.13.179] +K21724 ndmC; 7-methylxanthine demethylase [EC:1.14.13.128] +K21725 pnpA; 4-nitrocatechol/4-nitrophenol 4-monooxygenase [EC:1.14.13.166 1.14.13.167] +K21726 npcA; 4-nitrophenol 2-monooxygenase / 4-nitrocatechol 4-monooxygenase, oxygenase component [EC:1.14.13.29 1.14.13.166] +K21727 npcB; 4-nitrophenol 2-monooxygenase / 4-nitrocatechol 4-monooxygenase, reductase component +K21728 sdpA; (S)-dichlorprop dioxygenase (2-oxoglutarate) [EC:1.14.11.43] +K21729 rdpA; (R)-dichlorprop dioxygenase (2-oxoglutarate) [EC:1.14.11.44] +K21730 otemo; (2,2,3-trimethyl-5-oxocyclopent-3-enyl)acetyl-CoA 1,5-monooxygenase [EC:1.14.13.160] +K21731 camP; 2,5-diketocamphane 1,2-monooxygenase [EC:1.14.14.108] +K21732 SLD; acyl-lipid (11-3)-desaturase [EC:1.14.19.4] +K21733 DESA; sphingolipid 10-desaturase [EC:1.14.19.19] +K21734 SLD; sphingolipid 8-(E/Z)-desaturase [EC:1.14.19.29] +K21735 DES5; acyl-lipid (8-3)-desaturase [EC:1.14.19.30] +K21736 FADX; Delta12 acyl-lipid conjugase (11E,13E-forming) / acyl-lipid (9+3)-(E)-desaturase [EC:1.14.19.33 1.14.19.34] +K21737 ACET6, DES6; acyl-lipid Delta6-acetylenase / acyl-lipid (9-3)-desaturase [EC:1.14.19.38 1.14.19.47] +K21738 alkT; rubredoxin---NAD+ reductase [EC:1.18.1.1] +K21739 rclA; probable pyridine nucleotide-disulfide oxidoreductase +K21740 rclB; reactive chlorine resistance protein B +K21741 rclC; reactive chlorine resistance protein C +K21742 ttdR; LysR family transcriptional regulator, transcriptional activator for ttdABT operon +K21743 mta; MerR family transcriptional regulator, multidrug-efflux activator +K21744 tipA; MerR family transcriptional regulator, thiopeptide resistance regulator +K21745 adhR; MerR family transcriptional regulator, aldehyde-responsive regulator +K21746 rclR; AraC family transcriptional regulator, reactive chlorine species (RCS)-specific activator of rcl operon +K21747 alkR; AraC family transcriptional regulator, alkane utilization regulator +K21748 alkS; LuxR family transcriptional regulator, alkane degradation pathway regulator +K21749 CMAS; N-acylneuraminate/3-deoxy-D-glycero-D-galacto-nononate cytidylyltransferase [EC:2.7.7.43 2.7.7.92] +K21750 E2.7.7.92; 3-deoxy-D-glycero-D-galacto-nononate cytidylyltransferase [EC:2.7.7.92] +K21751 DR1, NC2-beta; down-regulator of transcription 1 +K21752 DRAP1, NC2-alpha; Dr1-associated corepressor +K21753 PASD1; circadian clock protein PASD1 +K21754 KCTD1_15; BTB/POZ domain-containing protein KCTD1/15 +K21755 bsdA; LysR family transcriptional regulator, salicylic acid-responsive activator of bsdBCD +K21756 catM; LysR family transcriptional regulator, cis,cis-muconate-responsive activator of cat and ben genes +K21757 benM; LysR family transcriptional regulator, benzoate and cis,cis-muconate-responsive activator of ben and cat genes +K21758 benP; benzoate transport porin +K21759 bsdD; vanillate/4-hydroxybenzoate decarboxylase subunit D [EC:4.1.1.- 4.1.1.61] +K21760 RIOX2, MINA; protein-L-histidine (3S)-3-hydroxylase / [histone H3]-trimethyl-L-lysine9 demethylase [EC:1.14.11.79 1.14.11.66] +K21761 SYNE3; nesprin-3 +K21762 WDR62; WD repeat-containing protein 62 +K21763 MAPKBP1; mitogen-activated protein kinase binding protein 1 +K21764 SPAG5; sperm-associated antigen 5 +K21765 MNR; protein moonraker +K21766 TBCC; tubulin-specific chaperone C +K21767 TBCD; tubulin-specific chaperone D +K21768 TBCE; tubulin-specific chaperone E +K21769 MYBL2, B-MYB; myb-related protein B +K21770 CCNB2; G2/mitotic-specific cyclin-B2 +K21771 CCNB3; G2/mitotic-specific cyclin-B3 +K21772 PURA; transcriptional activator protein Pur-alpha +K21773 LIN9; protein lin-9 +K21774 LIN37; protein lin-37 +K21775 LIN52; protein lin-52 +K21776 LIN54; protein lin-54 +K21777 CCNB; G2/mitotic-specific cyclin-B, other +K21778 pigE; 3-acetyloctanal aminotransferase [EC:2.6.1.-] +K21779 pigB; 2-methyl-3-n-amyl-dihydropyrrolel dehydrogenase +K21780 pigI, redM, pltF; L-proline---[L-prolyl-carrier protein] ligase [EC:6.2.1.53] +K21781 pigG, redO; peptidyl carrier protein +K21782 pigA, redW, pltE; L-prolyl-PCP dehydrogenase [EC:1.3.8.14] +K21783 pigJ, redX; beta-ketoacyl ACP synthase [EC:2.3.1.-] +K21784 pigH, redN; 4-hydroxy-2,2'-bipyrrole-5-methanol synthase +K21785 pigM, redV; 4-hydroxy-2,2'-bipyrrole-5-methanol dehydrogenase +K21786 pigF; 4-hydroxy-2,2'-bipyrrole-5-carbaldehyde O-methyltransferase [EC:2.1.1.-] +K21787 pigC, redH; prodigiosin/undecylprodigiosin synthetase +K21788 redP; dodecanoy-ACP synthase +K21789 redR; dodecanoy-ACP synthase +K21790 redQ; acyl carrier protein +K21791 redJ; thioesterase +K21792 redL; polyketide synthase +K21793 redK; oxidoreductase +K21794 E1.13.11.45; linoleate 11-lipoxygenase [EC:1.13.11.45] +K21795 pao; phenylalanine 2-monooxygenase [EC:1.13.12.9] +K21796 pebS; Prochlorococcus phage phycoerythrobilin synthase [EC:1.3.7.6] +K21797 SAC1, SACM1L; phosphatidylinositol 4-phosphatase [EC:3.1.3.-] +K21798 SAC2, INPP5F; phosphatidylinositol 4-phosphatase [EC:3.1.3.-] +K21799 PURB; transcriptional activator protein Pur-beta +K21800 PURG; purine-rich element-binding protein gamma +K21801 iaaH; indoleacetamide hydrolase [EC:3.5.1.-] +K21802 vdh; vanillin dehydrogenase [EC:1.2.1.67] +K21803 METTL21B, EEF1AKMT3; EEF1A lysine methyltransferase 3 [EC:2.1.1.-] +K21804 METTL21A; protein N-lysine methyltransferase METTL21A [EC:2.1.1.-] +K21805 METTL21C; protein N-lysine methyltransferase METTL21C [EC:2.1.1.-] +K21806 VCPKMT, METTL21D; protein N-lysine methyltransferase METTL21D [EC:2.1.1.-] +K21807 E6; Alphapapillomavirus protein E6 +K21808 L2; Alphapapillomavirus minor capsid protein L2 +K21809 E7; Alphapapillomavirus protein E7 +K21810 E1; Alphapapillomavirus replication protein E1 [EC:5.6.2.-] +K21811 E2; Alphapapillomavirus regulatory protein E2 +K21812 E5; Alphapapillomavirus protein E5 +K21813 ENDOV; endonuclease V [EC:3.1.26.-] +K21814 CPPED1; serine/threonine-protein phosphatase CPPED1 [EC:3.1.3.16] +K21815 efe; 2-oxoglutarate dioxygenase / 2-oxoglutarate/L-arginine monooxygenase/decarboxylase [EC:1.13.12.19 1.14.20.7] +K21816 fsr; sulfite reductase (coenzyme F420) [EC:1.8.98.3] +K21817 blh; beta-carotene 15,15'-dioxygenase [EC:1.13.11.63] +K21818 cypD; cypemycin cysteine dehydrogenase (decarboxylating) [EC:1.3.99.36] +K21819 EASG; agroclavine dehydrogenase [EC:1.5.1.46] +K21820 APO1; unspecific peroxygenase [EC:1.11.2.1] +K21821 hod; 3-hydroxy-2-methylquinolin-4-one 2,4-dioxygenase [EC:1.13.11.48] +K21822 E1.13.11.82; 8'-apo-carotenoid 13,14-cleaving dioxygenase [EC:1.13.11.82] +K21823 E1.13.12.13; oplophorus-luciferin 2-monooxygenase catalytic subunit [EC:1.13.12.13] +K21824 K21824; oplophorus-luciferin 2-monooxygenase non-catalytic subunit +K21825 argR; AraC family transcriptional regulator, L-arginine-responsive activator +K21826 gbdR; AraC family transcriptional regulator, glycine betaine-responsive activator +K21827 arcR; IclR family transcriptional regulator, arginine deiminase pathway regulator +K21828 arcR; CRP/FNR family transcriptional regulator, arginine deiminase pathway regulator +K21829 dauR; D-arginine utilization repressor +K21830 pchP; phosphorylcholine phosphatase +K21831 choE; cholinesterase +K21832 gbcB, bmoB; glycine betaine monooxygenase B [EC:1.14.13.251] +K21833 dgcA, ddhC; N,N-dimethylglycine/sarcosine dehydrogenase [EC:1.5.7.3] +K21834 dgcB; N,N-dimethylglycine/sarcosine dehydrogenase ferredoxin subunit +K21835 adf; secondary-alcohol dehydrogenase (coenzyme-F420) [EC:1.1.98.5] +K21836 dld; D-lactate dehydrogenase (acceptor) [EC:1.1.99.6] +K21837 ZSD1; zerumbone synthase [EC:1.1.1.326] +K21838 DBR2; artemisinic aldehyde Delta11(13)-reductase [EC:1.3.1.92] +K21839 caa43; 2-haloacrylate reductase [EC:1.3.1.103] +K21840 HOX; hexose oxidase [EC:1.1.3.5] +K21841 TBC1D24; TBC1 domain family member 24 +K21842 EFR3; protein EFR3 +K21843 TTC7; tetratricopeptide repeat protein 7 +K21844 FAM126; protein FAM126 +K21845 YPP1; cargo-transport protein YPP1 +K21846 TMEM150; transmembrane protein 150 +K21847 SGSM1, RUTBC2; small G protein signaling modulator 1 +K21848 ARV1; lipid intermediate transporter +K21849 KEG1; beta-1,6-glucan synthesis-associated protein KEG1 +K21850 KRE6; beta-glucan synthesis-associated protein KRE6 +K21851 SGSM2, RUTBC1; small G protein signaling modulator 2 +K21852 DOCK6_7_8; dedicator of cytokinesis protein 6/7/8 +K21853 DOCK9_10_11; dedicator of cytokinesis protein 9/10/11 +K21854 X; Orthohepadnavirus protein X +K21855 EBNA3, EBNA3A; Lymphocryptovirus nuclear antigen 3 +K21856 EBNA4, EBNA3B; Lymphocryptovirus nuclear antigen 4 +K21857 tax; Deltaretrovirus protein Tax-1 +K21858 vIRF4, K10; KSHV interferon regulatory factor-like protein 4 +K21859 KIE2, ORF45; KSHV transcription activator ORF45 +K21860 K14; KSHV OX-2 membrane glycoprotein +K21861 ORF35; KSHV protein ORF35 +K21862 DSC1, NaCP60E; voltage-gated cation channel +K21863 NALCN; sodium leak channel non-selective protein +K21864 CCH1; voltage-dependent calcium channel +K21865 kcv; Chlorovirus potassium channel protein kcv +K21866 POLLUX, DMI1, CASTOR; ion channel POLLUX/CASTOR +K21867 AKT, KAT, GORK, SKOR; potassium channel +K21868 MYO7B; myosin VIIb +K21869 DDX53, CAGE; ATP-dependent RNA helicase DDX53 [EC:5.6.2.7] +K21870 BANF; barrier-to-autointegration factor +K21871 MPHOSPH8, MPP8; M-phase phosphoprotein 8 +K21872 PPHLN1; periphilin-1 +K21873 FAM208A; protein TASOR +K21874 SUN3; SUN domain-containing protein 3 +K21875 SPAG4, SUN4; sperm-associated antigen 4 protein +K21876 SUN5; SUN domain-containing protein 5 +K21877 USH1C; harmonin +K21878 USH1G; Usher syndrome type-1G protein +K21879 WHRN, USH2D; whirlin +K21880 MPP1; MAGUK 55 kDa erythrocyte membrane protein +K21881 USHBP1, MCC2; Usher syndrome type-1C protein-binding protein 1 +K21882 PDZD7; PDZ domain-containing protein 7 +K21883 lra5; 2-dehydro-3-deoxy-L-rhamnonate dehydrogenase (NAD+) [EC:1.1.1.401] +K21884 cmr; CRP/FNR family transcriptional regulator, cAMP and macrophage regulator +K21885 cmtR; ArsR family transcriptional regulator, cadmium/lead-responsive transcriptional repressor +K21886 nmtR; ArsR family transcriptional regulator, nickel/cobalt-responsive transcriptional repressor +K21887 ctpJ, nmtA; cation-transporting P-type ATPase J [EC:7.2.2.-] +K21888 DHAR; glutathione dehydrogenase/transferase [EC:1.8.5.1 2.5.1.18] +K21889 TMBIM6, BI1, TEGT; Bax inhibitor 1 +K21890 GHITM, DERP2, TMBIM5; growth hormone-inducible transmembrane protein +K21891 TMCO1; calcium load-activated calcium channel +K21892 MB; myoglobin +K21893 NGB; neuroglobin +K21894 CYGB; cytoglobin +K21895 16OMT; tabersonine 16-O-methyltransferase [EC:2.1.1.94] +K21896 NMT; 3-hydroxy-16-methoxy-2,3-dihydrotabersonine N-methyltransferase [EC:2.1.1.99] +K21897 E3.4.24.52; trimerelysin I [EC:3.4.24.52] +K21898 orr; ornithine racemase [EC:5.1.1.12] +K21899 AUDH; aldos-2-ulose dehydratase [EC:4.2.1.110] +K21900 cysL; LysR family transcriptional regulator, transcriptional activator of the cysJI operon +K21901 dctR; LuxR family transcriptional regulator, dicarboxylate transport regulator +K21902 yfmP; MerR family transcriptional regulator, repressor of the yfmOP operon +K21903 cadC, smtB; ArsR family transcriptional regulator, lead/cadmium/zinc/bismuth-responsive transcriptional repressor +K21904 smtA; metallothionein +K21905 gadX; AraC family transcriptional regulator, glutamate-dependent acid resistance regulator +K21906 gadW; AraC family transcriptional regulator, glutamate-dependent acid resistance regulator +K21907 gadE; LuxR family transcriptional regulator, glutamate-dependent acid resistance regulator +K21908 hdeD; membrane protein HdeD +K21909 eryC; D-erythrulose 1-phosphate 3-epimerase [EC:5.1.3.38] +K21910 eryH, lerI; L-erythrulose 1-phosphate isomerase [EC:5.3.1.33] +K21911 eryI; D-erythrulose 4-phosphate isomerase [EC:5.3.1.34] +K21912 KBTBD12; kelch repeat and BTB domain-containing protein 12 +K21913 KBTBD13; kelch repeat and BTB domain-containing protein 13 +K21914 KCTD2_5_17; BTB/POZ domain-containing protein KCTD2/5/17 +K21915 KCTD3; BTB/POZ domain-containing protein KCTD3 +K21916 KCTD6; BTB/POZ domain-containing protein KCTD6 +K21917 KCTD7_14; BTB/POZ domain-containing protein KCTD7/14 +K21918 KCTD8_12_16; BTB/POZ domain-containing protein KCTD8/12/16 +K21919 KCTD9; BTB/POZ domain-containing protein KCTD9 +K21920 KCTD11; BTB/POZ domain-containing protein KCTD11 [EC:2.3.2.27] +K21921 KCTD18; BTB/POZ domain-containing protein KCTD18 +K21922 KCTD21; BTB/POZ domain-containing protein KCTD21 +K21923 POL; Adenoviridae DNA polymerase [EC:2.7.7.7] +K21924 L; Bornaviridae RNA-directed RNA polymerase L [EC:2.7.7.48] +K21925 TPS3; (-)-camphene/tricyclene/(4S)-limonene/myrcene synthase [EC:4.2.3.117 4.2.3.105 4.2.3.16 4.2.3.15] +K21926 TPS1; (+)-alpha-terpineol/(4S)-limonene synthase [EC:4.2.3.112 4.2.3.16] +K21927 COP3; alpha-muurolene/germacrene-A/gamma-muurolene/(+)-delta-cadinol synthase [EC:4.2.3.125 4.2.3.23 4.2.3.126 4.2.3.212] +K21928 TTS2; delta/alpha/beta-amyrin synthase [EC:5.4.99.55 5.4.99.40 5.4.99.39] +K21929 udg; uracil-DNA glycosylase [EC:3.2.2.27] +K21930 AG9; terpinolene synthase [EC:4.2.3.113] +K21931 E4.2.3.114; gamma-terpinene synthase [EC:4.2.3.114] +K21932 ETS2; C-ets-2 +K21933 TPSA; gamma-curcumene synthase [EC:4.2.3.94] +K21934 frbC; 2-phosphonomethylmalate synthase [EC:2.3.3.19] +K21935 ablB; beta-lysine N6-acetyltransferase [EC:2.3.1.264] +K21936 chuW; anaerobilin synthase [EC:2.1.1.342] +K21937 NMT; 3-aminomethylindole N-methyltransferase [EC:2.1.1.340] +K21938 3CAR; (+)-car-3-ene synthase [EC:4.2.3.107] +K21939 SS; (+)-sabinene/gamma-terpinene synthase [EC:4.2.3.110 4.2.3.114] +K21940 SHS; shionone synthase [EC:5.4.99.46] +K21941 GLS; glutinol synthase [EC:5.4.99.49] +K21942 FRS; friedelin synthase [EC:5.4.99.50] +K21943 BOS; baccharis oxide synthase [EC:5.4.99.51] +K21944 PER1; period circadian protein 1 +K21945 PER3; period circadian protein 3 +K21946 DUSP6; dual specificity phosphatase 6 [EC:3.1.3.16 3.1.3.48] +K21947 ttuA; tRNA-5-methyluridine54 2-sulfurtransferase [EC:2.8.1.15] +K21948 otnK; 3-dehydrotetronate 4-kinase [EC:2.7.1.217] +K21949 sbnA; N-(2-amino-2-carboxyethyl)-L-glutamate synthase [EC:2.5.1.140] +K21950 HOXA9; homeobox protein Hox-A9 +K21951 HOXA11; homeobox protein Hox-A11 +K21952 CASKIN, ANKS5; CASK-interacting protein +K21953 SHKBP1; SH3KBP1-binding protein 1 +K21954 FYCO1; FYVE and coiled-coil domain-containing protein 1 +K21955 DRAM1; DNA damage-regulated autophagy modulator protein 1 +K21956 DRAM2; DNA damage-regulated autophagy modulator protein 2 +K21957 FAM20A; pseudokinase FAM20A +K21958 FAM20C; extracellular serine/threonine protein kinase FAM20C [EC:2.7.11.1] +K21959 ftsR; LysR family transcriptional regulator, cell division regulator +K21960 ytlI; LysR family transcriptional regulator, regulator of the ytmI operon +K21961 ethR, etaR; TetR/AcrR family transcriptional regulator, ethionamide resistance regulator +K21962 acnR; TetR/AcrR family transcriptional regulator, transcriptional repressor of aconitase +K21963 ecpR, matA; LuxR family transcriptional regulator, Mat/Ecp fimbriae transcriptional regulator +K21964 ecpA, matB; Mat/Ecp fimbriae major subunit +K21965 ecpB, matC; Mat/Ecp fimbriae periplasmic chaperone +K21966 ecpC, matD; Mat/Ecp fimbriae outer membrane usher protein +K21967 ecpD, matE; Mat/Ecp fimbriae adhesin +K21968 ecpE, matF; Mat/Ecp fimbriae periplasmic chaperone +K21969 NSUN3; tRNA (cytosine34-C5)-methyltransferase [EC:2.1.1.-] +K21970 NSUN4; 5-methylcytosine rRNA methyltransferase NSUN4 [EC:2.1.1.-] +K21971 NSUN6; methyltransferase NSUN6 [EC:2.1.1.-] +K21972 bluR; MerR family transcriptional regulator, repressor of blue light- and temperature-responsive genes +K21973 bluF; blue light- and temperature-responsive anti-repressor +K21974 ycgZ; probable RcsB/C two-component-system connector +K21975 ymgA; probable RcsB/C two-component-system connector +K21976 ariR; probable RcsB/C two-component-system connector, global regulator of biofilm formation and acid-resistance +K21977 coaB; phosphopantothenate---cysteine ligase (CTP) [EC:6.3.2.5] +K21978 E4.2.3.97; (-)-delta-cadinene synthase [EC:4.2.3.97] +K21979 E4.2.3.98; (+)-T-muurolol synthase [EC:4.2.3.98] +K21980 TPS4; bicyclogermacrene synthase [EC:4.2.3.100] +K21981 PT30; (+)-alpha-pinene synthase [EC:4.2.3.121] +K21982 MG25; beta-cubebene synthase [EC:4.2.3.128] +K21983 TPS2; alpha-isocomene synthase [EC:4.2.3.136] +K21984 TPS8; (+)-epi-alpha-bisabolol synthase [EC:4.2.3.138] +K21985 TPS2; valerena-4,7(11)-diene synthase [EC:4.2.3.139] +K21986 TPS2; kunzeaol synthase [EC:4.2.3.143] +K21987 POLR2M, GRINL1A; DNA-directed RNA polymerase II subunit GRINL1A +K21988 TMC; transmembrane channel-like protein +K21989 TMEM63, CSC1; calcium permeable stress-gated cation channel +K21990 yfdC; formate-nitrite transporter family protein +K21991 UNC45; protein unc-45 +K21992 mbtK; lysine N-acyltransferase [EC:2.3.1.-] +K21993 fdhC; formate transporter +K21994 LBD18; LOB domain-containing protein 18 +K21995 CYP77A; cytochrome P450 family 77 subfamily A [EC:1.14.-.-] +K21996 SNX41_42; sorting nexin-41/42 +K21997 ATG19_34; autophagy-related protein 19/34 +K21998 RLN1_2; relaxin 1/2 +K21999 INSL3; insulin-like 3 +K22000 RLN3; relaxin 3 +K22001 INSL5; insulin-like 5 +K22002 ADI1; aconitate Delta-isomerase [EC:5.3.3.7] +K22003 ais; aconitate Delta-isomerase [EC:5.3.3.7] +K22004 TAD1; trans-aconitate decarboxylase [EC:4.1.1.113] +K22005 CYP3; itaconate hydroxylase +K22006 INSL4; insulin-like 4 +K22007 gp55; Straboviridae RNA polymerase sigma factor +K22008 PSK1; serine/threonine-protein kinase Psk1 [EC:2.7.11.1] +K22009 MCK1; protein kinase MCK1 +K22010 pdtaR; two-component system, response regulator PdtaR +K22011 cfbA; sirohydrochlorin cobalto/nickelchelatase [EC:4.99.1.3 4.99.1.11] +K22012 cfbB; Ni-sirohydrochlorin a,c-diamide synthase [EC:6.3.5.12] +K22013 SGR, SGRL; magnesium dechelatase [EC:4.99.1.10] +K22014 Nu1, Noh; Enterobacteria phage terminase small subunit, DNA-packaging protein +K22015 fdhF; formate dehydrogenase (hydrogenase) [EC:1.17.98.4 1.17.98.-] +K22017 MUC4; mucin-4 +K22018 MUC3_12_17; mucin-3/12/17 +K22019 MUC15; mucin-15 +K22021 MUC20; mucin-20 +K22022 MUC21; mucin-21 +K22023 MUC6_19; mucin-6/19 +K22024 pdxA2; 4-phospho-D-threonate 3-dehydrogenase / 4-phospho-D-erythronate 3-dehydrogenase [EC:1.1.1.408 1.1.1.409] +K22025 denD; D-erythronate 2-dehydrogenase [EC:1.1.1.410] +K22026 K22026; nucleoside kinase [EC:2.7.1.73 2.7.1.213 2.7.1.-] +K22027 iacA; indole-3-acetate monooxygenase [EC:1.14.13.235] +K22028 MYPN; myopalladin +K22029 PALLD; palladin +K22030 LMOD; leiomodin +K22031 MYZAP; myocardial zonula adherens protein +K22032 K22032; lytic cellulose monooxygenase (C4-dehydrogenating) [EC:1.14.99.56] +K22033 K22033; lytic cellulose monooxygenase (C4-dehydrogenating) [EC:1.14.99.56] +K22034 BERS; exo-alpha-bergamotene synthase [EC:4.2.3.81] +K22035 K22035; alpha/beta-santalene synthase [EC:4.2.3.82 4.2.3.83] +K22036 C2_3_4; alpha/delta-guaiene synthase [EC:4.2.3.87 4.2.3.93] +K22037 inx, zpg, ogre, shakB; innexin +K22038 LRRC8; volume-regulated anion channel +K22039 GJE1, CX23; gap junction epsilon-1 protein +K22040 TRPS1; atypical GATA-binding protein TRPS1 +K22041 comR; TetR/AcrR family transcriptional regulator, copper-responsive repressor +K22042 hlyU; ArsR family transcriptional regulator, virulence genes transcriptional regulator +K22043 czrA; ArsR family transcriptional regulator, zinc-responsive transcriptional repressor +K22044 ybiO; moderate conductance mechanosensitive channel +K22045 BCL11A; B-cell lymphoma/leukemia 11A +K22046 BCL11B; B-cell lymphoma/leukemia 11B +K22047 MSL1_2_3; mechanosensitive ion channel protein 1/2/3 +K22048 MSL4S; mechanosensitive ion channel protein 4/5/6/7/8/9/10 +K22049 LIS; S-linalool synthase [EC:4.2.3.25] +K22050 QH6; (-)-beta-pinene synthase [EC:4.2.3.120] +K22051 mscM, bspA; miniconductance mechanosensitive channel +K22052 E4.2.3.31; ent-pimara-9(11),15-diene synthase [EC:4.2.3.31] +K22053 AG8; (4S)-beta-phellandrene synthase (geranyl-diphosphate-cyclizing) [EC:4.2.3.52] +K22054 ZIS; zingiberene synthase [EC:4.2.3.65] +K22055 ZSS2; beta/10-epi-gamma/alpha-eudesmol synthase [EC:4.2.3.68 4.2.3.84 4.2.3.85] +K22056 BOT2; presilphiperfolanol synthase [EC:4.2.3.74] +K22057 E4.2.3.77; (+)-germacrene D synthase [EC:4.2.3.77] +K22058 COP4; cubebol/beta-copaene/beta-cubebene/(+)-sativene synthase [EC:4.2.3.91 4.2.3.127 4.2.3.128 4.2.3.129] +K22059 CDS; (+)-gamma-cadinene synthase [EC:4.2.3.92] +K22060 COP6; (-)-alpha-cuprenene synthase [EC:4.2.3.95] +K22061 TPS2; beta-sesquiphellandrene synthase [EC:4.2.3.123] +K22062 PRO1; Delta6-protoilludene synthase [EC:4.2.3.135] +K22063 ISCA1; iron-sulfur cluster assembly 1 +K22064 CJFS; beta-farnesene synthase [EC:4.2.3.47] +K22065 TPS1; alpha-copaene/(+)-delta-cadinene synthase [EC:4.2.3.133 4.2.3.13] +K22066 BOLA1; BolA-like protein 1 +K22067 nasS; two-component system, oxyanion-binding sensor +K22068 ISCU; iron-sulfur cluster assembly enzyme ISCU, mitochondrial +K22069 LYRM4; LYR motif-containing protein 4 +K22070 FDX1, ADX; ferredoxin-1, mitochondrial +K22071 FDX2; ferredoxin-2, mitochondrial +K22072 ISCA2; iron-sulfur cluster assembly 2 +K22073 IBA57; transferase CAF17, mitochondrial [EC:2.1.-.-] +K22074 NFU1, HIRIP5; NFU1 iron-sulfur cluster scaffold homolog, mitochondrial +K22075 BOLA3; BolA-like protein 3 +K22076 MFF; mitochondrial fission factor +K22077 GDAP1; ganglioside-induced differentiation-associated protein 1 +K22078 PGGHG, ATHL1; protein-glucosylgalactosylhydroxylysine glucosidase [EC:3.2.1.107] +K22079 E3.4.21.84; limulus clotting factor C [EC:3.4.21.84] +K22080 E3.4.21.85; limulus clotting factor B [EC:3.4.21.85] +K22081 mgsA; methylamine---glutamate N-methyltransferase subunit A [EC:2.1.1.21] +K22082 mgsB; methylamine---glutamate N-methyltransferase subunit B [EC:2.1.1.21] +K22083 mgsC; methylamine---glutamate N-methyltransferase subunit C [EC:2.1.1.21] +K22084 mgdA; methylglutamate dehydrogenase subunit A [EC:1.5.99.5] +K22085 mgdB; methylglutamate dehydrogenase subunit B [EC:1.5.99.5] +K22086 mgdC; methylglutamate dehydrogenase subunit C [EC:1.5.99.5] +K22087 mgdD; methylglutamate dehydrogenase subunit D [EC:1.5.99.5] +K22088 N7OMT; norreticuline-7-O-methyltransferase [EC:2.1.1.-] +K22089 STOX, DBOX; tetrahydroprotoberberine oxidase [EC:1.3.3.8] +K22090 NR; noroxomaritidine/norcraugsodine reductase [EC:1.3.1.- 1.4.1.-] +K22091 OMT; O-methyltransferase [EC:2.1.1.-] +K22092 GLU1; ipecoside beta-D-glucosidase [EC:3.2.1.220] +K22093 REPI; 1,2-dehydroreticuline synthase/reductase [EC:1.14.19.54 1.5.1.27] +K22094 CYP82X2; (S)-1-hydroxy-N-methylcanadine 13-hydroxylase [EC:1.14.14.163] +K22095 AT1; (13S,14R)-1,13-dihydroxy-N-methylcandine 13-O-acetyltransferase [EC:2.3.1.285] +K22096 CYP82X1; (13S,14R)-13-O-acetyl-1-hydroxy-N-methylcanadine 8-hydroxylase [EC:1.14.14.167] +K22097 CXE1; 3-O-acetylpapaveroxine carboxylesterase [EC:3.1.1.105] +K22098 SDR1, NOS; noscapine synthase [EC:1.1.1.415] +K22099 folC2; dihydrofolate synthase / folylpolyglutamate synthase [EC:6.3.2.12 6.3.2.17] +K22100 trpF; 2,5-diamino-6-(5-phospho-D-ribosylamino)pyrimidin-4(3H)-one isomerase/dehydratase [EC:4.2.1.160] +K22101 PTPS; dihydroneopterin triphosphate aldolase (PTPS-III) / 6-pyruvoyltetrahydropterin synthase [EC:4.1.2.60 4.2.3.12] +K22102 E4.1.2.59; dihydroneopterin phosphate aldolase [EC:4.1.2.59] +K22103 glcR; DeoR family transcriptional regulator, carbon catabolite repression regulator +K22104 nanR; GntR family transcriptional regulator, sialic acid-inducible nan operon repressor +K22105 fabR; TetR/AcrR family transcriptional regulator, fatty acid biosynthesis regulator +K22106 fatR, bscR; TetR/AcrR family transcriptional regulator, repressor of fatR-cypB operon +K22107 kstR; TetR/AcrR family transcriptional regulator, cholesterol catabolism regulator +K22108 kstR2; TetR/AcrR family transcriptional regulator, cholesterol catabolism regulator +K22109 gbsR; HTH-type transcriptional regulator, glycine betaine synthesis regulator +K22110 kdgM, kdgN, nanC, ompL; oligogalacturonate-specific porin family protein +K22111 nanS; 9-O-acetyl-N-acetylneuraminic acid deacetylase +K22112 amiS; putative amide transporter protein +K22113 ddaG; fumarate---(S)-2,3-diaminopropanoate ligase [EC:6.3.2.46] +K22114 ddaF; dapdiamide synthase [EC:6.3.2.47] +K22115 rizA; L-arginine-specific L-amino acid ligase [EC:6.3.2.48] +K22116 capC, pgsC; gamma-polyglutamate biosynthesis protein CapC +K22117 SLC52A1_2, RFT1_3; riboflavin transporter 1/3 +K22118 GLIP, ACLP; gliotoxin/aspirochlorine biosynthesis peptide synthetase [EC:6.3.2.-] +K22119 GLIG, ACLG; gliotoxin/aspirochlorine biosynthesis glutathione S-transferase [EC:2.5.1.-] +K22120 GLIK, ACLK; gliotoxin/aspirochlorine biosynthesis gamma-glutamylcyclotransferase [EC:4.3.2.-] +K22121 GLII, ACLI; gliotoxin/aspirochlorine biosynthesis aminotransferase [EC:2.6.1.-] +K22122 GLIF; gliotoxin biosynthesis cytochrome P450 monooxygenase [EC:1.-.-.-] +K22123 GLIN; gliotoxin biosynthesis N-methyltransferase [EC:2.1.1.-] +K22124 GLIT, ACLT; gliotoxin/aspirochlorine biosynthesis thioredoxin reductase [EC:1.8.1.-] +K22125 MYOF; myoferlin +K22126 FER1L5; fer-1-like protein 5 +K22127 FER1L6; fer-1-like protein 6 +K22128 PIEZO1_2, FAM38; piezo-type mechanosensitive ion channel component 1/2 +K22129 dtnK, denK; D-threonate/D-erythronate kinase [EC:2.7.1.219 2.7.1.220] +K22130 otnC; 3-dehydro-4-phosphotetronate decarboxylase [EC:4.1.1.104] +K22131 otnI; 2-dehydrotetronate isomerase [EC:5.3.1.35] +K22132 tcdA; tRNA threonylcarbamoyladenosine dehydratase +K22133 AAE3; oxalate---CoA ligase [EC:6.2.1.8] +K22134 GLIA; MFS transporter, DHA2 family, glioxin efflux transporter +K22135 bshB2; N-acetylglucosamine malate deacetylase 2 [EC:3.5.1.-] +K22136 bshC; bacillithiol synthase +K22137 MCUR1; mitochondrial calcium uniporter regulator 1 +K22138 MPC1; mitochondrial pyruvate carrier 1 +K22139 MPC2; mitochondrial pyruvate carrier 2 +K22140 MGM1; dynamin-like GTPase MGM1, mitochondrial +K22141 GSDMA; gasdermin-A +K22142 GSDMB; gasdermin-B +K22143 GSDMC; gasdermin-C +K22144 TEME2; cell surface hyaluronidase [EC:3.2.1.35] +K22145 TMEM18; transmembrane protein 18 +K22146 GSDME, DFNA5; gasdermin-E +K22147 PJVK, DFNB59; pejvakin +K22148 SIDC; ferricrocin synthase +K22149 SIDI; mevalonyl-CoA ligase +K22150 SIDH; mevalonyl-CoA hydratase +K22151 SIDF; N5-hydroxy-L-ornithine N5-transacylase +K22152 SIDD; fusarinine C synthase +K22153 SIDG; fusarinine C N2-transacetylase +K22154 DACT; dapper +K22155 JADE2; E3 ubiquitin-protein ligase Jade-2 [EC:2.3.2.27] +K22156 JADE3; protein Jade-3 +K22157 RNF183; E3 ubiquitin-protein ligase RNF183 [EC:2.3.2.31] +K22158 fpoA; F420H2 dehydrogenase subunit A [EC:1.5.98.3] +K22159 fpoB; F420H2 dehydrogenase subunit B [EC:1.5.98.3] +K22160 fpoC; F420H2 dehydrogenase subunit C [EC:1.5.98.3] +K22161 fpoD; F420H2 dehydrogenase subunit D [EC:1.5.98.3] +K22162 fpoF; F420H2 dehydrogenase subunit F [EC:1.5.7.2 1.5.98.3] +K22163 fpoH; F420H2 dehydrogenase subunit H [EC:1.5.98.3] +K22164 fpoI; F420H2 dehydrogenase subunit I [EC:1.5.98.3] +K22165 fpoJ; F420H2 dehydrogenase subunit J [EC:1.5.98.3] +K22166 fpoK; F420H2 dehydrogenase subunit K [EC:1.5.98.3] +K22167 fpoL; F420H2 dehydrogenase subunit L [EC:1.5.98.3] +K22168 fpoM; F420H2 dehydrogenase subunit M [EC:1.5.98.3] +K22169 fpoN; F420H2 dehydrogenase subunit N [EC:1.5.98.3] +K22170 fpoO; F420H2 dehydrogenase subunit O [EC:1.5.98.3] +K22171 fqoA; F420H2:quinone oxidoreductase subunit A [EC:1.1.98.4] +K22172 fqoBC; F420H2:quinone oxidoreductase subunit B/C [EC:1.1.98.4] +K22173 fqoD; F420H2:quinone oxidoreductase subunit D [EC:1.1.98.4] +K22174 fqoF; F420H2:quinone oxidoreductase subunit F [EC:1.1.98.4] +K22175 fqoH; F420H2:quinone oxidoreductase subunit H [EC:1.1.98.4] +K22176 fqoI; F420H2:quinone oxidoreductase subunit I [EC:1.1.98.4] +K22177 fqoJ; F420H2:quinone oxidoreductase subunit J [EC:1.1.98.4] +K22178 fqoK; F420H2:quinone oxidoreductase subunit K [EC:1.1.98.4] +K22179 fqoL; F420H2:quinone oxidoreductase subunit L [EC:1.1.98.4] +K22180 fqoM; F420H2:quinone oxidoreductase subunit M [EC:1.1.98.4] +K22181 fqoN; F420H2:quinone oxidoreductase subunit N [EC:1.1.98.4] +K22182 TXNRD; thioredoxin reductase (NADPH) [EC:1.8.1.9] +K22183 TERC; telomerase RNA component +K22184 BRD9; bromodomain-containing protein 9 +K22185 xylB; D-xylose 1-dehydrogenase [EC:1.1.1.175] +K22186 xylD; xylonate dehydratase [EC:4.2.1.82] +K22187 xylA; alpha-ketoglutaric semialdehyde dehydrogenase [EC:1.2.1.-] +K22188 CLCC1; chloride channel CLIC-like protein 1 +K22189 MS4A10; membrane-spanning 4-domains subfamily A member 10 +K22190 MS4A3S; membrane-spanning 4-domains subfamily A member 3/4/8/12/15/18 +K22191 MS4A5_6_7; membrane-spanning 4-domains subfamily A member 5/6/7 +K22192 MS4A14; membrane-spanning 4-domains subfamily A member 14 +K22193 GPR89, GPHR; golgi pH regulator +K22194 SSPN; sarcospan +K22195 TMEM196; transmembrane protein 196 +K22196 TMEM212; transmembrane protein 212 +K22197 BAF45A, PHF10; BRG1-associated factor 45A +K22198 BAF45B_C, DPF1_3; BRG1-associated factor 45B/C +K22199 ppm; phosphopentomutase [EC:5.4.2.7] +K22200 E3.1.3.63; 2-carboxy-D-arabinitol-1-phosphatase [EC:3.1.3.63] +K22201 CM2; Influenza C virus CM2 channel family protein +K22202 vpr; HIV virus protein R +K22203 DCE; dopachrome tautomerase [EC:5.3.3.12] +K22204 BEST; bestrophin, other +K22205 E3.13.2.3; S-adenosyl-L-methionine hydrolase (adenosine-forming) [EC:3.13.2.3] +K22206 thiR; XRE family transcriptional regulator, thiamine biosynthesis regulator +K22207 LCD; L-cysteine desulfhydrase [EC:4.4.1.28] +K22208 AG6; (-)-camphene synthase [EC:4.2.3.117] +K22209 tarD; D(-)-tartrate dehydratase [EC:4.2.1.81] +K22210 DGLUCY; D-glutamate cyclase [EC:4.2.1.48] +K22211 GLX3, HSP31; D-lactate dehydratase [EC:4.2.1.130] +K22212 mleA, mleS; malolactic enzyme [EC:4.1.1.101] +K22213 PATG; 6-methylsalicylate decarboxylase [EC:4.1.1.52] +K22214 scpC; propionyl-CoA:succinyl-CoA transferase [EC:2.8.3.27] +K22215 galD; galactose dehydrogenase [EC:1.1.1.48 1.1.1.120] +K22216 ilvD1; dehydratase ilvD1 +K22217 K22217; sugar lactone lactonase +K22218 TPST; protein-tyrosine sulfotransferase [EC:2.8.2.20] +K22219 dszC; dibenzothiophene monooxygenase [EC:1.14.14.21] +K22220 dszA; dibenzothiophene sulfone monooxygenase [EC:1.14.14.22] +K22221 K22221; HEAT repeat-containing taxis protein +K22222 cetZ; tubulin-like protein CetZ +K22223 pgp; phosphoglycolate phosphatase [EC:3.1.3.18] +K22224 acdB; acetate---CoA ligase (ADP-forming) subunit beta [EC:6.2.1.13] +K22225 ahbAB; siroheme decarboxylase [EC:4.1.1.111] +K22226 ahbC; Fe-coproporphyrin III synthase +K22227 ahbD; AdoMet-dependent heme synthase [EC:1.3.98.6] +K22228 secG, sec61beta; preprotein translocase subunit SecG +K22229 K22229; 2-ketogluconate reductase [EC:1.1.1.215] +K22230 iolU; scyllo-inositol 2-dehydrogenase (NADP+) [EC:1.1.1.-] +K22231 iolM; scyllo-inosose 3-dehydrogenase [EC:1.1.1.-] +K22232 iolN; 3-dehydro-scyllo-inosose hydrolase [EC:3.7.1.-] +K22233 iolO; 5-keto-L-gluconate epimerase [EC:5.1.-.-] +K22234 CDX2; homeobox protein CDX2 +K22235 MLPH; melanophilin +K22236 EXPH5; exophilin-5 +K22237 MYRIP; Rab effector MyRIP +K22238 BLI1; biogenesis of lysosome-related organelles complex 1 subunit BLI1 +K22239 BLS1; biogenesis of lysosome-related organelles complex 1 subunit BLS1 +K22240 CNL1; biogenesis of lysosome-related organelles complex 1 subunit CNL1 +K22241 SNN1; biogenesis of lysosome-related organelles complex 1 subunit SNN1 +K22242 VAB2; biogenesis of lysosome-related organelles complex 1 subunit VAB2 +K22243 KXD1; biogenesis of lysosome-related organelles complex 1 subunit KXD1 +K22244 REG4; regenerating islet-derived protein 4 +K22245 INUA; inulinase [EC:3.2.1.7] +K22246 THT; tyramine N-feruloyltransferase [EC:2.3.1.110] +K22247 neuO; polysialic-acid O-acetyltransferase [EC:2.3.1.136] +K22248 TP; alpha,alpha-trehalose phosphorylase (configuration-retaining) [EC:2.4.1.231] +K22249 phaZ; poly(3-hydroxyoctanoate) depolymerase [EC:3.1.1.76] +K22250 phaZ; poly(3-hydroxyoctanoate) depolymerase [EC:3.1.1.76] +K22251 golD; glycerol dehydrogenase [EC:1.1.1.6] +K22252 tld; GDP-6-deoxy-D-talose 4-dehydrogenase [EC:1.1.1.135] +K22253 mta; glucan 1,4-alpha-maltotetraohydrolase [EC:3.2.1.60] +K22254 UBQLNL; ubiquilin-like protein +K22255 ATPIF1; ATPase inhibitor, mitochondrial +K22256 SIAH3; seven in absentia homolog 3 +K22257 SPATA18; mitochondria-eating protein +K22258 ATG36; autophagy-related protein 36 +K22259 ATG30; autophagy-related protein 30 +K22260 PEX15; peroxin-15 +K22261 SEPA1; protein sepa-1 +K22262 WDFY3, ALFY; WD repeat and FYVE domain-containing protein 3 +K22263 EPG2; ectopic P granules protein 2 +K22264 NVJ1; nucleus-vacuole junction protein 1 +K22265 NLRP4; NACHT, LRR and PYD domains-containing protein 4 +K22266 NLRP10; NACHT, LRR and PYD domains-containing protein 10 +K22267 STBD1; starch-binding domain-containing protein 1 +K22268 xylA; xylan 1,4-beta-xylosidase [EC:3.2.1.37] +K22269 rosA; 8-amino-8-demethylriboflavin N,N-dimethyltransferase [EC:2.1.1.343] +K22270 nagX; 3-hydroxybenzoate 6-monooxygenase [EC:1.14.13.24] +K22271 Core; Hepatitis C virus core protein +K22272 E2; Hepatitis C virus envelope glycoprotein E2 +K22273 NS3; Hepatitis C virus serine protease / helicase NS3 [EC:3.4.21.98 3.6.1.15 5.6.2.6] +K22274 NS4A; Hepatitis C virus non-structural protein 4A +K22275 NS5A; Hepatitis C virus non-structural protein 5A +K22276 NEG1; glucan endo-1,6-beta-glucosidase [EC:3.2.1.75] +K22277 EXGB; glucan endo-1,6-beta-glucosidase [EC:3.2.1.75] +K22278 pgdA; peptidoglycan-N-acetylglucosamine deacetylase [EC:3.5.1.104] +K22279 VH; vicianin beta-glucosidase [EC:3.2.1.119] +K22280 C; measles protein C +K22281 V; measles non-structural protein V +K22282 FAXDC2; fatty acid hydroxylase domain-containing protein 2 +K22283 LIPC; hepatic triacylglycerol lipase [EC:3.1.1.3] +K22284 LIPG; endothelial lipase [EC:3.1.1.3] +K22285 OSBPL8, ORP8; oxysterol-binding protein-related protein 8 +K22286 APOC1; apolipoprotein C-I +K22287 APOC2; apolipoprotein C-II +K22288 ANGPTL3; angiopoietin-like 3 +K22289 ANGPTL8, RIFL; angiopoietin-like 8 +K22290 LRPAP1; alpha-2-macroglobulin receptor-associated protein +K22291 STARD3; StAR-related lipid transfer protein 3 +K22292 mupP; N-acetyl-D-muramate 6-phosphate phosphatase [EC:3.1.3.105] +K22293 rspR; GntR family transcriptional regulator, rspAB operon transcriptional repressor +K22294 nicS; TetR/AcrR family transcriptional regulator, upper aerobic nicotinate degradation pathway regulator +K22295 K22295; TetR/AcrR family transcriptional regulator, repressor for neighboring sulfatase +K22296 nicR; MarR family transcriptional regulator, lower aerobic nicotinate degradation pathway regulator +K22297 furA; Fur family transcriptional regulator, stress-responsive regulator +K22298 smtB; ArsR family transcriptional regulator, zinc-responsive transcriptional repressor +K22299 rghR; HTH-type transcriptional regulator, competence development regulator +K22300 dicA; HTH-type transcriptional regulator, cell division transcriptional repressor +K22301 opcR; HTH-type transcriptional regulator, osmoprotectant uptake regulator +K22302 dicC; transcriptional repressor of cell division inhibition gene dicB +K22303 atsK; alkyl sulfatase [EC:1.14.11.77] +K22304 dicB; cell division inhibition protein DicB +K22305 psp; phosphoserine phosphatase [EC:3.1.3.3] +K22306 gpgP; glucosyl-3-phosphoglycerate phosphatase [EC:3.1.3.85] +K22307 E3.2.1.204; 1,3-alpha-isomaltosidase [EC:3.2.1.204] +K22308 E3.2.1.205; isomaltose glucohydrolase [EC:3.2.1.205] +K22309 olsG; ornithine lipid N-methyltransferase [EC:2.1.1.344] +K22310 olsB; L-ornithine Nalpha-acyltransferase [EC:2.3.2.30] +K22311 ptfP1; phosphatidylinositol dimannoside acyltransferase [EC:2.3.1.265] +K22312 ST2A, SOT15; hydroxyjasmonate sulfotransferase [EC:2.8.2.39] +K22313 E3.1.7.12; (+)-kolavelool synthase [EC:3.1.7.12] +K22314 GGP; glucosinolate gamma-glutamyl hydrolase [EC:3.4.19.16] +K22315 SHB17; sedoheptulose-bisphosphatase [EC:3.1.3.37] +K22316 rhnA-cobC; ribonuclease H / adenosylcobalamin/alpha-ribazole phosphatase [EC:3.1.26.4 3.1.3.73] +K22317 oleA; acyl-CoA:acyl-CoA alkyltransferase [EC:2.3.3.20] +K22318 oleB; cis-3-alkyl-4-acyloxetan-2-one decarboxylase [EC:4.1.1.114] +K22319 oleC; olefin beta-lactone synthetase [EC:6.1.3.1] +K22320 oleD; 2-alkyl-3-oxoalkanoate reductase [EC:1.1.1.412] +K22321 ST5B_C, SOT18_17; aliphatic desulfoglucosinolate sulfotransferase [EC:2.8.2.38] +K22322 barS1; A-factor type gamma-butyrolactone 1'-reductase (1S-forming) [EC:1.1.1.413] +K22323 T3R; 3-hydroxy-1,2-didehydro-2,3-dihydrotabersonine reductase [EC:1.1.99.41] +K22324 GS-OX; aliphatic glucosinolate S-oxygenase [EC:1.14.13.237] +K22325 cndA; chloroacetanilide N-alkylformylase [EC:1.14.15.23] +K22326 CYP5437; vinorine hydroxylase [EC:1.14.14.104] +K22327 TYRDC-2; 4-hydroxyphenylacetaldehyde synthase [EC:4.1.1.108] +K22328 PAAS; phenylacetaldehyde synthase [EC:4.1.1.109] +K22329 TDC-1; tyrosine decarboxylase [EC:4.1.1.25] +K22330 tyrDC; tyrosine decarboxylase [EC:4.1.1.25] +K22331 blaOXA-184; beta-lactamase class D OXA-184 [EC:3.5.2.6] +K22332 blaOXA-548; beta-lactamase class D OXA-548 [EC:3.5.2.6] +K22333 blaOXA-493; beta-lactamase class D OXA-493 [EC:3.5.2.6] +K22334 blaOXA-464; beta-lactamase class D OXA-464 [EC:3.5.2.6] +K22335 blaOXA-114; beta-lactamase class D OXA-114 [EC:3.5.2.6] +K22336 bfrB; bacterioferritin B [EC:1.16.3.1] +K22337 TSL1, TPS3; trehalose 6-phosphate synthase complex regulatory subunit +K22338 hylA; formate dehydrogenase (NAD+, ferredoxin) subunit A [EC:1.17.1.11] +K22339 hylB; formate dehydrogenase (NAD+, ferredoxin) subunit B [EC:1.17.1.11] +K22340 hylC; formate dehydrogenase (NAD+, ferredoxin) subunit C [EC:1.17.1.11] +K22341 fdhF2; formate dehydrogenase (NAD+, ferredoxin) subunit [EC:1.17.1.11] +K22342 dmmA; dimethylamine monooxygenase subunit A [EC:1.14.13.238] +K22343 dmmB; dimethylamine monooxygenase subunit B [EC:1.14.13.238] +K22344 dmmC; dimethylamine monooxygenase subunit C [EC:1.14.13.238] +K22345 E4.3.1.9; glucosaminate ammonia-lyase [EC:4.3.1.9] +K22346 blaSME; beta-lactamase class A SME [EC:3.5.2.6] +K22347 nox; 4,4'-dithiodibutanoate disulfide reductase [EC:1.8.1.20] +K22348 moxA; manganese oxidase [EC:1.16.3.3] +K22349 mnxG; manganese oxidase [EC:1.16.3.3] +K22350 mcoA; manganese oxidase [EC:1.16.3.3] +K22351 blaOXA-209; beta-lactamase class D OXA-209 [EC:3.5.2.6] +K22352 blaOXA-29; beta-lactamase class D OXA-29 [EC:3.5.2.6] +K22353 etnC; alkene monooxygenase alpha subunit [EC:1.14.13.69] +K22354 etnA; alkene monooxygenase beta subunit [EC:1.14.13.69] +K22355 etnB; alkene monooxygenase coupling protein +K22356 etnD; alkene monooxygenase reductase +K22357 amoA; alkene monooxygenase alpha subunit [EC:1.14.13.69] +K22358 amoE; alkene monooxygenase beta subunit [EC:1.14.13.69] +K22359 amoB; alkene monooxygenase gamma subunit [EC:1.14.13.69] +K22360 amoC; alkene monooxygenase ferredoxin subunit +K22361 amoD; alkene monooxygenase effector subunit +K22362 amoF; alkene monooxygenase ferredoxin reductase component [EC:1.18.1.3] +K22363 etnE; 2-hydroxypropyl-CoM lyase [EC:4.4.1.23] +K22364 xecC; 2-oxopropyl-CoM reductase (carboxylating) [EC:1.8.1.5] +K22365 CYP71D1; tabersonine 3-oxygenase [EC:1.14.14.50] +K22366 SELENOT; thioredoxin reductase-like selenoprotein T +K22367 PRSS58; serine protease 58 [EC:3.4.21.-] +K22368 EPHX3; epoxide hydrolase 3 [EC:3.3.2.10] +K22369 EPHX4; epoxide hydrolase 4 [EC:3.3.-.-] +K22370 AREL1; apoptosis-resistant E3 ubiquitin protein ligase 1 [EC:2.3.2.26] +K22371 G2H3; G2/M phase-specific E3 ubiquitin-protein ligase [EC:2.3.2.26] +K22372 HERC5_6; E3 ISG15--protein ligase [EC:2.3.2.-] +K22373 larA; lactate racemase [EC:5.1.2.1] +K22374 DMAS1; 3''-deamino-3''-oxonicotianamine reductase [EC:1.1.1.285] +K22375 DCST1; E3 ubiquitin-protein ligase DCST1 [EC:2.3.2.27] +K22376 KCMF1, FIGC; E3 ubiquitin-protein ligase KCMF1 [EC:2.3.2.27] +K22377 LTN1; E3 ubiquitin-protein ligase listerin [EC:2.3.2.27] +K22378 RNF181; E3 ubiquitin-protein ligase RNF181 [EC:2.3.2.27] +K22379 RNFT1; E3 ubiquitin-protein ligase RNFT1 [EC:2.3.2.27] +K22380 TMEM129; E3 ubiquitin-protein ligase TM129 [EC:2.3.2.27] +K22381 ZNF598; E3 ubiquitin-protein ligase ZNF598 [EC:2.3.2.27] +K22382 WDR26; WD repeat-containing protein 26 +K22383 IRF2BP; interferon regulatory factor 2-binding protein +K22384 GET1, WRB; tail-anchored protein insertion receptor +K22385 CAMLG; calcium signal-modulating cyclophilin ligand +K22386 GET2; GET complex subunit GET2 +K22387 GDPD1_3, GDE4_7; lysophospholipase D [EC:3.1.4.39] +K22388 NAB; NGFI-A-binding protein +K22389 LCAT3; phospholipase A1 [EC:3.1.1.32] +K22390 ACP7; acid phosphatase type 7 +K22391 E3.5.4.16; GTP cyclohydrolase I [EC:3.5.4.16] +K22392 hppE; (S)-2-hydroxypropylphosphonic acid epoxidase [EC:1.11.1.23] +K22393 nfr1; flavin reductase (NADH) subunit 1 [EC:1.5.1.36] +K22394 nfr2; flavin reductase (NADH) subunit 2 [EC:1.5.1.36] +K22395 K22395; cinnamyl-alcohol dehydrogenase [EC:1.1.1.195] +K22396 yjhG, yagF; xylonate dehydratase [EC:4.2.1.82] +K22397 yjhH, yagE; 2-dehydro-3-deoxy-D-pentonate aldolase [EC:4.1.2.28] +K22398 MRAP; melanocortin-2 receptor accessory protein +K22399 TRIP13; pachytene checkpoint protein 2 +K22400 FERD3L; Fer3-like protein +K22401 E4F1; transcription factor E4F1 / E3 ubiquitin-protein ligase [EC:2.3.2.27] +K22402 GZF1; GDNF-inducible zinc finger protein 1 +K22403 ZMIZ; zinc finger MIZ domain-containing protein +K22404 KLB; beta-klotho +K22405 fprA1_2; NADH oxidase (H2O-forming) [EC:1.6.3.4] +K22406 JBP1; thymine dioxygenase [EC:1.14.11.6] +K22407 JBP2; thymine dioxygenase / DNA helicase [EC:1.14.11.6 5.6.2.-] +K22408 dac; N,N'-diacetylchitobiose non-reducing end deacetylase [EC:3.5.1.136] +K22409 sle1; N-acetylmuramoyl-L-alanine amidase [EC:3.5.1.28] +K22410 PRDM16; [histone H3]-lysine9 N-methyltransferase [EC:2.1.1.367] +K22411 ZNF516; zinc finger protein 516 +K22412 SDC-1; zinc finger protein Sdc-1 +K22413 FGF11_12_13, FHF3_1_2; fibroblast growth factor 11/12/13 +K22414 POLDIP3; polymerase delta-interacting protein 3 +K22415 ZC3H11; zinc finger CCCH domain-containing protein 11 +K22416 IREB2; iron-responsive element-binding protein 2 +K22417 AAO4; benzaldehyde dehydrogenase (NAD+) / indole-3-acetaldehyde oxidase [EC:1.2.1.28 1.2.3.7] +K22418 HSD1; 11beta/17beta-hydroxysteroid dehydrogenase [EC:1.1.1.146 1.1.1.-] +K22419 VEP1; Delta4-3-oxosteroid 5beta-reductase [EC:1.3.1.3] +K22420 MEIOB; meiosis-specific with OB domain-containing protein [EC:3.1.-.-] +K22421 SPATA22; spermatogenesis-associated protein 22 +K22422 DONSON; protein downstream neighbor of Son +K22423 CPT2; nerylneryl diphosphate synthase [EC:2.5.1.142] +K22424 E2.7.3.13; glutamine kinase [EC:2.7.3.13] +K22425 OEGLU; oleuropein beta-glucosidase [EC:3.2.1.206] +K22426 UGT74AC1; mogroside IE synthase [EC:2.4.1.350] +K22427 AADC; phenylalanine decarboxylase [EC:4.1.1.53] +K22428 FGF23; fibroblast growth factor 23 +K22429 FGF21; fibroblast growth factor 21 +K22430 carC; caffeyl-CoA reductase-Etf complex subunit CarC [EC:1.3.1.108] +K22431 carD; caffeyl-CoA reductase-Etf complex subunit CarD [EC:1.3.1.108] +K22432 carE; caffeyl-CoA reductase-Etf complex subunit CarE [EC:1.3.1.108] +K22433 PSID; L-tryptophan decarboxylase [EC:4.1.1.105] +K22434 PSIH; tryptamine 4-monooxygenase [EC:1.14.99.59] +K22435 PSIK; 4-hydroxytryptamine kinase [EC:2.7.1.222] +K22436 PSIM; psilocybin synthase [EC:2.1.1.345] +K22437 E2.1.1.22; carnosine N-methyltransferase [EC:2.1.1.22] +K22438 TMT1; trans-aconitate 3-methyltransferase [EC:2.1.1.145] +K22439 OMT; tricetin 3',4',5'-O-trimethyltransferase [EC:2.1.1.169] +K22440 NOMT; naringenin 7-O-methyltransferase [EC:2.1.1.232] +K22441 paiA; diamine N-acetyltransferase [EC:2.3.1.57] +K22442 GLYATL1; glutamine N-acyltransferase [EC:2.3.1.68] +K22443 cntA; carnitine monooxygenase subunit [EC:1.14.13.239] +K22444 cntB; carnitine monooxygenase subunit [EC:1.14.13.239] +K22445 ald, crtNc; 4,4'-diapolycopenoate synthase [EC:1.2.99.10] +K22446 K22446; tRNA (cytosine49-C5)-methyltransferase [EC:2.1.1.-] +K22447 cct, ths; archaeal chaperonin +K22448 ECE1; extent of cell elongation protein 1 +K22449 TBCEL; tubulin-specific chaperone cofactor E-like protein +K22450 SNAT; aralkylamine N-acetyltransferase [EC:2.3.1.87] +K22451 jgt; 4-alpha-glucanotransferase [EC:2.4.1.25] +K22452 tgpA; protein-glutamine gamma-glutamyltransferase [EC:2.3.2.13] +K22453 TFF2; trefoil factor 2 +K22454 TFF3; trefoil factor 3 +K22455 EBAG9; estrogen receptor-binding fragment-associated gene 9 protein +K22456 TFF1; trefoil factor 1 +K22457 E2.6.1.14; asparagine---oxo-acid transaminase [EC:2.6.1.14] +K22458 CCD2; crocetin dialdehyde synthase [EC:1.13.11.84] +K22459 P3H2; procollagen-proline 3-dioxygenase 2 [EC:1.14.11.7] +K22460 P3H3; procollagen-proline 3-dioxygenase 3 [EC:1.14.11.7] +K22461 P3H4; endoplasmic reticulum protein SC65 +K22462 bprA; (4-alkanoyl-5-oxo-2,5-dihydrofuran-3-yl)methyl phosphate reductase [EC:1.3.1.113] +K22463 afsA; 2-oxo-3-(phosphooxy)propyl 3-oxoalkanoate synthase [EC:2.3.1.277] +K22464 FAP; fatty acid photodecarboxylase [EC:4.1.1.106] +K22465 bzaA_B; 5-hydroxybenzimidazole synthase [EC:4.1.99.23] +K22466 bzaF; 5-hydroxybenzimidazole synthase [EC:4.1.99.23] +K22467 TPS08; rhizathalene A synthase [EC:4.2.3.195] +K22468 ppk2; polyphosphate kinase [EC:2.7.4.34] +K22469 fau-1, aubA; probable ribonuclease FAU-1 [EC:3.1.26.-] +K22470 SQOR; eukaryotic sulfide quinone oxidoreductase [EC:1.8.5.8] +K22471 CCN4, WISP1; CCN family member 4 +K22472 NS5B; Hepatitis C virus RNA-dependent RNA polymerase [EC:2.7.7.48] +K22473 adhA; alcohol dehydrogenase (quinone), dehydrogenase subunit [EC:1.1.5.5] +K22474 adhB; alcohol dehydrogenase (quinone), cytochrome c subunit [EC:1.1.5.5] +K22475 adhS; alcohol dehydrogenase (quinone) subunit AdhS +K22476 K22476; N-acetylglutamate synthase [EC:2.3.1.1] +K22477 argO; N-acetylglutamate synthase [EC:2.3.1.1] +K22478 K22478; bifunctional N-acetylglutamate synthase/kinase [EC:2.3.1.1 2.7.2.8] +K22479 argA; N-acetyltransferase +K22480 hdrA1; heterodisulfide reductase subunit A1 [EC:1.8.7.3] +K22481 hdrB1; heterodisulfide reductase subunit B1 [EC:1.8.7.3] +K22482 hdrC1; heterodisulfide reductase subunit C1 [EC:1.8.7.3] +K22483 HMO1; transcriptional regulator HMO1 +K22484 CBF1; transcriptional regulator CBF1 +K22485 TBF1; protein TBF1 +K22486 hilA; transcriptional regulator HilA, main transcriptional regulator of SPI1 +K22487 prgJ; type III secretion system protein +K22488 prgH; type III secretion system protein +K22489 hosA; MarR family transcriptional regulator, temperature-dependent positive regulator of motility +K22490 ldrP; CRP/FNR family transcriptional regulator, LitR-dependent transcriptional activator +K22491 litR; MerR family transcriptional regulator, light-induced transcriptional regulator +K22492 CYP175A; beta-carotene 3-hydroxylase [EC:1.14.15.24] +K22493 ALS; agglutinin-like protein +K22494 K22494; CFEM-containing surface protein +K22495 SOHLH1; spermatogenesis- and oogenesis-specific basic helix-loop-helix-containing protein 1 +K22496 RFG1, ROX1; repressor RFG1/ROX1 +K22497 NS2; Hepatitis C virus non-structural protein 2 [EC:3.4.22.-] +K22498 NS4B; Hepatitis C virus non-structural protein 4B +K22499 ARMC5; armadillo repeat-containing protein 5 +K22500 E1.13.12.18; dinoflagellate luciferase [EC:1.13.12.18] +K22501 appX; cytochrome bd-II ubiquinol oxidase subunit AppX [EC:7.1.1.7] +K22502 crtY; lycopene beta-cyclase [EC:5.5.1.19] +K22503 DARS1; aspartyl-tRNA synthetase [EC:6.1.1.12] +K22504 invG; type III secretion system outer membrane ring protein +K22505 prgK; type III secretion system inner membrane ring protein +K22506 spaL; type III secretion system ATPase [EC:7.4.2.8] +K22507 spaP; type III secretion system export apparatus protein +K22508 spaQ; type III secretion system export apparatus protein +K22509 spaR; type III secretion system export apparatus protein +K22510 spaS; type III secretion system export apparatus switch protein +K22511 invE; type III secretion system protein +K22512 spaK, invB; type III secretion system chaperone +K22513 spaM, invI; type III secretion system protein +K22514 spaN, invJ; type III secretion system protein +K22515 fdwB; formate dehydrogenase beta subunit [EC:1.17.1.9] +K22516 fdhA; formate dehydrogenase (coenzyme F420) alpha subunit [EC:1.17.98.3 1.8.98.6] +K22517 CBLB; E3 ubiquitin-protein ligase CBL-B [EC:2.3.2.27] +K22518 CBLC; E3 ubiquitin-protein ligase CBL-C [EC:2.3.2.27] +K22519 PTAC5; protein disulfide-isomerase [EC:5.3.4.1] +K22520 LQY1; protein disulfide-isomerase [EC:5.3.4.1] +K22521 SCO2; protein disulfide-isomerase [EC:5.3.4.1] +K22522 LOG; cytokinin riboside 5'-monophosphate phosphoribohydrolase [EC:3.2.2.-] +K22523 SULT6B1; sulfotransferase 6B1 [EC:2.8.2.-] +K22524 WBP2; WW domain-binding protein 2 +K22525 MKL; MKL/myocardin-like protein +K22526 MYOCD; myocardin +K22527 CITED1; Cbp/p300-interacting transactivator 1 +K22528 CITED4; Cbp/p300-interacting transactivator 4 +K22529 AMIGO; amphoterin-induced protein +K22530 ATAD1, MSP1; outer mitochondrial transmembrane helix translocase +K22531 ATAD2; ATPase family AAA domain-containing protein 2 [EC:3.6.1.-] +K22532 WBP2NL; postacrosomal sheath WW domain-binding protein +K22533 LINS1; protein Lines +K22534 PRDM5; PR domain zinc finger protein 5 [EC:2.1.1.-] +K22535 DRM; drumstick +K22536 DAN, DANR; distal antenna +K22537 RPUSD3; mitochondrial RNA pseudouridine synthase RPUSD3 [EC:5.4.99.-] +K22538 RPUSD4; mitochondrial RNA pseudouridine synthase RPUSD4 [EC:5.4.99.-] +K22539 PLY; pectate lyase [EC:4.2.2.2] +K22540 HTD2; 3-hydroxyacyl-thioester dehydratase, animal type [EC:4.2.1.-] +K22541 HTD2; 3-hydroxyacyl-thioester dehydratase, fungi type [EC:4.2.1.-] +K22542 SDNA; cycloaraneosene synthase [EC:4.2.3.191] +K22543 MN1; transcriptional activator MN1 +K22544 SAMHD1; deoxynucleoside triphosphate triphosphohydrolase SAMHD1 [EC:3.1.5.-] +K22545 mtf2; fatty-acid O-methyltransferase [EC:2.1.1.15] +K22546 FAMT; juvenile hormone-III synthase [EC:2.1.1.325] +K22547 HAC1; arsenate reductase [EC:1.20.4.1] +K22548 lhpL; trans-L-3-hydroxyproline dehydratase [EC:4.2.1.77] +K22549 lhpC; D-hydroxyproline dehydrogenase subunit alpha [EC:1.5.99.-] +K22550 lhpD; D-hydroxyproline dehydrogenase subunit gamma +K22551 hpbA; N-methyl-L-proline demethylase [EC:1.5.3.-] +K22552 mmcO; multicopper oxidase [EC:1.16.3.1] +K22553 CYP199A2; 4-methoxybenzoate monooxygenase (O-demethylating) [EC:1.14.99.15] +K22554 THEM5; acyl-coenzyme A thioesterase THEM5 [EC:3.1.2.2] +K22555 TBC1D23; TBC1 domain family member 23 +K22556 MANF, ARMET; mesencephalic astrocyte-derived neurotrophic factor +K22557 COMMD1, MURR1; COMM domain containing 1 +K22558 COMMD2; COMM domain containing 2 +K22559 COMMD3, BUP; COMM domain containing 3 +K22560 COMMD4; COMM domain containing 4 +K22561 COMMD5, HCARG; COMM domain containing 5 +K22562 COMMD6; COMM domain containing 6 +K22563 COMMD7; COMM domain containing 7 +K22564 COMMD8; COMM domain containing 8 +K22565 COMMD9; COMM domain containing 9 +K22566 COMMD10; COMM domain containing 10 +K22567 nroR; rubredoxin---NAD+ reductase [EC:1.18.1.1] +K22568 pccX; acetyl-CoA/propionyl-CoA carboxylase, PccX subunit [EC:6.4.1.2 6.4.1.3] +K22569 AF520; (+)-exo-beta-bergamotene synthase [EC:4.2.3.211] +K22570 AF480; 5-dehydro-6-demethoxyfumagillol dioxygenase [EC:1.14.11.82] +K22571 AF390-400, fmaD; 5-dehydro-6-demethoxy-6-hydroxyfumagillol O-methyltransferase [EC:2.1.1.387] +K22572 AF490; 5-dehydrofumagillol 5-reductase [EC:1.1.1.437] +K22573 AF370; fumagillin biosynthesis polyketide synthase +K22574 AF380; fumagillin biosynthesis transferase +K22575 AF470; fumagillin biosynthesis monooxygenase +K22576 cos; carbonyl sulfide hydrolase [EC:3.13.1.7] +K22577 E2.1.1.347; (+)-O-methylkolavelool synthase [EC:2.1.1.347] +K22578 sesA; sesamin methylene transferase [EC:2.1.5.1] +K22579 rph; rifampicin phosphotransferase [EC:2.7.9.6] +K22580 fmtA; teichoic acid D-alanine hydrolase [EC:3.1.1.103] +K22581 TAS1; tenuazonic acid synthetase [EC:6.3.2.50] +K22582 PREPL; prolyl endopeptidase-like [EC:3.4.21.-] +K22583 TIMP2; metalloproteinase inhibitor 2 +K22584 TIMP4; metalloproteinase inhibitor 4 +K22585 nreA; DNA repair protein NreA +K22586 EAT1; ethanol O-acetyltransferase [EC:2.3.1.268] +K22587 DCI1; Delta3,5-Delta2,4-dienoyl-CoA isomerase [EC:5.3.3.21] +K22588 ASMT; acetylserotonin O-methyltransferase, plant [EC:2.1.1.4] +K22589 thadh; threo-3-hydroxy-L-aspartate ammonia-lyase [EC:4.3.1.16] +K22590 ind1; indolepyruvate C-methyltransferase [EC:2.1.1.47] +K22591 ADNP; activity-dependent neuroprotector homeobox protein +K22592 AHDC1; AT-hook DNA-binding motif-containing protein 1 +K22593 CHAMP1; chromosome alignment-maintaining phosphoprotein 1 +K22594 POGZ; pogo transposable element with ZNF domain +K22595 CCDC155, KASH5; protein KASH5 +K22596 GGCT; gamma-glutamylcyclotransferase, plant [EC:4.3.2.9] +K22597 E2.4.1.352; glucosylglycerate phosphorylase [EC:2.4.1.352] +K22598 rosB; 8-demethyl-8-aminoriboflavin-5'-phosphate synthase [EC:2.6.1.114] +K22599 PR; HIV protease [EC:3.4.23.16 3.4.23.47] +K22600 GUCY2G; guanylate cyclase 2G [EC:4.6.1.2] +K22601 hpxY; oxamate carbamoyltransferase [EC:2.1.3.5] +K22602 hpxW; oxamate amidohydrolase [EC:3.5.1.126] +K22603 FGF19; fibroblast growth factor 19 +K22604 E1.1.1.52; 3alpha-hydroxycholanate dehydrogenase (NAD+) [EC:1.1.1.52] +K22605 baiA; 3alpha-hydroxycholanate dehydrogenase (NADP+) [EC:1.1.1.392] +K22606 E1.1.1.391; 3beta-hydroxycholanate 3-dehydrogenase (NAD+) [EC:1.1.1.391] +K22607 E1.1.1.393; 3beta-hydroxycholanate 3-dehydrogenase (NADP+) [EC:1.1.1.393] +K22608 PTHLH, PTHRP; parathyroid hormone-related hormone +K22609 BGLAP; osteocalcin +K22610 RSBN1, KDM9; lysine-specific demethylase 9 [EC:1.14.11.-] +K22611 SART3, TIP110; squamous cell carcinoma antigen recognized by T-cells 3 +K22612 vVEGFA; Poxvirus vascular endothelial growth factor A +K22613 vCX3C; RSV chemokine CX3C homolog +K22614 NLRC3, NOD3; NLR family CARD domain-containing protein 3 +K22615 NLRC5, NOD4; NLR family CARD domain containing 5 +K22616 olsC; ornithine lipid ester-linked acyl 2-hydroxylase [EC:1.14.11.58] +K22617 olsA; lyso-ornithine lipid O-acyltransferase [EC:2.3.1.270] +K22618 olsE; ornithine lipid hydroxylase +K22619 Aequorin; calcium-regulated photoprotein [EC:1.13.12.24] +K22620 CYP716A141; beta-amyrin 16beta-monooxygenase [EC:1.14.14.63] +K22621 CYP716E26; beta-amyrin 6beta-monooxygenase [EC:1.14.14.64] +K22622 soxD; S-disulfanyl-L-cysteine oxidoreductase SoxD [EC:1.8.2.6] +K22623 vIL17; Herpesvirus interleukin 17 +K22624 vCCL27; MOCV1 CC chemokine receptor antagonist +K22625 vIL8; Marek's disease virus interleukin 8 homolog +K22626 NLRP5; NACHT, LRR and PYD domains-containing protein 5 +K22627 CXCL17; C-X-C motif chemokine 17 +K22628 IL16; interleukin 16 +K22629 IL27, IL27A; interleukin 27 subunit alpha +K22630 IL31RA; interleukin 31 receptor subunit alpha +K22631 IL31; interleukin 31 +K22632 IL32; interleukin 32 +K22633 IL34; interleukin 34 +K22634 CYP71BE52; salviol synthase [EC:1.14.14.62] +K22635 CYP76AH3; ferruginol monooxygenase / sugiol synthase [EC:1.14.14.60 1.14.14.65] +K22636 CYP76AH24; ferruginol synthase / ferruginol monooxygenase [EC:1.14.14.175 1.14.14.60] +K22637 CYP76AK1; 11-hydroxysugiol 20-monooxygenase [EC:1.14.14.67] +K22638 CYP76AK6; carnosic acid synthase [EC:1.14.14.61] +K22639 CYP92C5; trimethyltridecatetraene/dimethylnonatriene synthase [EC:1.14.14.58 1.14.14.59] +K22640 CYP92C6; trimethyltridecatetraene synthase [EC:1.14.14.58] +K22641 TTYH; protein tweety +K22642 SLN; sarcolipin +K22643 MRLN; myoregulin +K22644 HVCN1, HV1; voltage-gated hydrogen channel 1 +K22645 SLX5; E3 ubiquitin-protein ligase complex SLX5-SLX8 subunit SLX5 [EC:2.3.2.27] +K22646 SLX8; E3 ubiquitin-protein ligase complex SLX5-SLX8 subunit SLX8 [EC:2.3.2.27] +K22647 MINDY3_4; ubiquitin carboxyl-terminal hydrolase MINDY-3/4 [EC:3.4.19.12] +K22648 BCL6B; B-cell CLL/lymphoma 6 member B protein +K22649 BCL9, BCL9L; B-cell CLL/lymphoma 9 protein +K22650 bglJ; LuxR family transcriptional regulator, regulator of transport and utilization of aryl beta-glucosides +K22651 RNF4; E3 ubiquitin-protein ligase RNF4 [EC:2.3.2.27] +K22652 TMEM25; transmembrane protein 25 +K22653 NPTN; neuroplastin +K22654 IGDCC3, PUNK; immunoglobulin superfamily DCC subclass member 3 +K22655 IGSF9; immunoglobulin superfamily member 9 +K22656 IGSF9B; immunoglobulin superfamily member 9B +K22657 IGDCC4, NOPE; immunoglobulin superfamily DCC subclass member 4 +K22658 CDH26; cadherin 26 +K22659 CLSTN1; calsyntenin 1 +K22660 CLSTN2; calsyntenin 2 +K22661 CLSTN3; calsyntenin 3 +K22662 NLRP8, NALP8; NACHT, LRR and PYD domains-containing protein 8 +K22663 NLRP9, NALP9; NACHT, LRR and PYD domains-containing protein 9 +K22664 NLRP11, NALP11; NACHT, LRR and PYD domains-containing protein 11 +K22665 NLRP13, NALP13; NACHT, LRR and PYD domains-containing protein 13 +K22666 NLRP14, NALP14; NACHT, LRR and PYD domains-containing protein 14 +K22667 IL20; interleukin 20 +K22668 IL24; interleukin 24 +K22669 IFNL2_3, IL28; interferon lambda 2/3 +K22670 BMP10; bone morphogenetic protein 10 +K22671 CCL9; C-C motif chemokine 9 +K22672 GDF3; growth differentiation factor 3 +K22673 GDF9; growth differentiation factor 9 +K22674 GDF10, BMP3B; growth differentiation factor 10 +K22675 XCL2, SCM1B; C motif chemokine 2 +K22676 bphB; cis-2,3-dihydrobiphenyl-2,3-diol/cis-2,3-dihydrodiol-DDE dehydrogenase [EC:1.3.1.-] +K22677 bphD; 2,6-dioxo-6-phenylhexa-3-enoate/TCOA hydrolase [EC:3.7.1.-] +K22678 dhl1; DDT-dehydrochlorinase [EC:4.5.1.1] +K22679 GDF11; growth differentiation factor 11 +K22680 CLEC2A; c-type lectin domain family 2 member A +K22681 CLEC2L; c-type lectin domain family 2 member L +K22682 CLEC18; c-type lectin domain family 18 +K22683 APF2; aspartyl protease family protein [EC:3.4.23.-] +K22684 MCA1; metacaspase-1 [EC:3.4.22.-] +K22685 WSS1; DNA-dependent metalloprotease WSS1 [EC:3.4.24.-] +K22686 NMA111; pro-apoptotic serine protease NMA111 [EC:3.4.21.-] +K22687 INHBB; inhibin beta B chain +K22688 INHBC; inhibin beta C chain +K22689 INHBE; inhibin beta E chain +K22690 roxA; exo-cleaving rubber dioxygenase [EC:1.13.11.85] +K22691 DOX1; drimenol monooxygenase [EC:1.14.14.72] +K22692 bmp2; 1H-pyrrole-2-carbonyl-[peptidyl-carrier protein] brominase [EC:1.14.19.57] +K22693 pyrH; tryptophan 5-halogenase [EC:1.14.19.58] +K22694 sttH; tryptophan 6-halogenase [EC:1.14.19.59] +K22695 ktzR; 7-chloro-L-tryptophan 6-halogenase [EC:1.14.19.60] +K22696 EEF2KMT; protein-lysine N-methyltransferase EEF2KMT [EC:2.1.1.-] +K22697 SAMD8; sphingomyelin synthase-related protein 1 +K22698 SEY1; protein SEY1 [EC:3.6.5.-] +K22699 thi4; sulfide-dependent adenosine diphosphate thiazole synthase [EC:2.4.2.59] +K22700 ZCCHC2; Zinc finger CCHC domain-containing protein 2 +K22701 TNFRSF10C, TRAILR3, DCR1, CD263; tumor necrosis factor receptor superfamily member 10C +K22702 TNFRSF10D, TRAILR4, DCR2, CD264; tumor necrosis factor receptor superfamily member 10D +K22703 IGMT; hydroxy-3-indolylmethylglucosinolate O-methyltransferase [EC:2.1.1.-] +K22704 hpnR; hopanoid C-3 methylase [EC:2.1.1.-] +K22705 hpnP; hopanoid C-2 methylase [EC:2.1.1.-] +K22706 UGT85A19; (R)-mandelonitrile beta-glucosyltransferase [EC:2.4.1.354] +K22707 sdnJ; sordaricin 6-deoxyaltrosyltransferase [EC:2.4.1.353] +K22708 tarS; poly(ribitol-phosphate) beta-N-acetylglucosaminyltransferase [EC:2.4.1.355] +K22709 tarQ; poly(ribitol-phosphate) beta-glucosyltransferase [EC:2.4.1.53] +K22710 tarM; poly(ribitol-phosphate) alpha-N-acetylglucosaminyltransferase [EC:2.4.1.70] +K22711 pltR; LysR family transcriptional regulator, pyoluteorin biosynthesis regulator +K22712 pltA; 1H-pyrrole-2-carbonyl-[peptidyl-carrier protein] chlorinase [EC:1.14.19.56] +K22713 pltG; thioesterase [EC:3.1.2.-] +K22714 pltB_C; polyketide synthase +K22715 dxnA1; dibenzofuran dioxygenase subunit alpha [EC:1.14.12.-] +K22716 dxnA2; dibenzofuran dioxygenase subunit beta [EC:1.14.12.-] +K22717 dxnB; 2-hydroxy-6-oxo-6-(2-hydroxyphenoxy)-hexa-2,4-dienoate hydrolase [EC:3.7.1.-] +K22718 blr; divisome-associated membrane protein +K22719 envC; murein hydrolase activator +K22720 glgS; surface composition regulator +K22721 CSG1, SUR1, CSH1; inositol phosphorylceramide mannosyltransferase catalytic subunit [EC:2.4.1.370] +K22722 CSG2; inositol phosphorylceramide mannosyltransferase regulatory subunit +K22723 AUR1; inositol phosphorylceramide synthase catalytic subunit [EC:2.7.1.227] +K22724 KEI1; inositol phosphorylceramide synthase regulatory subunit +K22725 IPT1; mannosyl-inositol-phosphoceramide inositolphosphotransferase [EC:2.7.1.228] +K22726 CYP5081B1, HELB2; helvolic acid biosynthesis cytochrome P450 monooxygenase +K22727 CYP5081C1, HELB4; helvolic acid biosynthesis cytochrome P450 monooxygenase +K22728 CYP5081D1, HELB3; helvolic acid biosynthesis cytochrome P450 monooxygenase +K22729 HELC; helvolic acid biosynthesis dehydrogenase/reductase +K22730 HELD1; helvolic acid biosynthesis C6-acyltransferase +K22731 HELD2; helvolic acid biosynthesis cytochrome C16-acyltransferase +K22732 HELE; helvolic acid biosynthesis 3-ketosteroid Delta1-dehydrogenase +K22733 NIPA, SLC57A2S; magnesium transporter +K22734 ANKH, SLC62A1; progressive ankylosis protein +K22735 NKAIN; sodium/potassium-transporting ATPase subunit beta-1-interacting protein +K22736 VIT; vacuolar iron transporter family protein +K22737 mbfA; erythrin-vacuolar iron transport family protein +K22738 PDFR; PDF receptor +K22739 CHYA; 2-(2-aminopropanamido)benzoic acid synthetase +K22740 PSOD; pseurotin biosynthesis cytochrome P450 monooxygenase +K22741 PSOC; pseurotin biosynthesis methyltransferase [EC:2.1.1.-] +K22742 PSOE; pseurotin biosynthesis glutathione S-transferase +K22743 PSOF; pseurotin biosynthesis epoxidase/methyltransferase +K22744 SIVA1; apoptosis regulatory protein Siva +K22745 AIFM2; apoptosis-inducing factor 2 +K22746 CIAPIN1, DRE2; anamorsin +K22747 AIFM3; apoptosis-inducing factor 3 +K22748 ATXR3, SDG2; [histone H3]-lysine4 N-trimethyltransferase ATXR3 [EC:2.1.1.354] +K22749 GLYATL2; glycine N-acyltransferase [EC:2.3.1.13] +K22750 GLYATL3; glycine N-acyltransferase-like protein 3 [EC:2.3.1.-] +K22751 CBFA2T2; CBFA2/RUNX1 translocation partner 2 +K22752 CBFA2T3; CBFA2/RUNX1 translocation partner 3 +K22753 RNF6; E3 ubiquitin-protein ligase RNF6 [EC:2.3.2.27] +K22754 RNF213; E3 ubiquitin-protein ligase RNF213 [EC:2.3.2.27] +K22755 UFL1; E3 UFM1-protein ligase 1 [EC:2.3.2.-] +K22756 NSMCE2, NSE2; E3 SUMO-protein ligase NSE2 [EC:2.3.2.-] +K22757 QCT, qpcT; glutaminyl-peptide cyclotransferase [EC:2.3.2.5] +K22758 CHCHD2; coiled-coil-helix-coiled-coil-helix domain-containing protein 2 +K22759 CHCHD10; coiled-coil-helix-coiled-coil-helix domain-containing protein 10 +K22760 CXXC5; CXXC-type zinc finger protein 5 +K22761 PRIMPOL; DNA-directed primase/polymerase protein [EC:2.7.7.102 2.7.7.7] +K22762 DESI1, PPPDE2; desumoylating isopeptidase 1 [EC:3.4.-.-] +K22763 DESI2, PPPDE1; deubiquitinase DESI2 [EC:3.4.19.12] +K22764 TMEM107; transmembrane protein 107 +K22765 TMEM237; transmembrane protein 237 +K22766 FIGNL1; fidgetin-like protein 1 [EC:5.6.2.-] +K22767 MCC1; histone acetyltransferase MCC1 [EC:2.3.1.48] +K22768 MBD9; methyl-CpG-binding domain-containing protein 9 [EC:2.3.1.48] +K22769 desA3; NADPH-dependent stearoyl-CoA 9-desaturase [EC:1.14.19.-] +K22770 K22770; stearoyl-CoA 9-desaturase NADPH oxidoreductase +K22771 UGT73C6; flavonol-3-O-L-rhamnoside-7-O-glucosyltransferase [EC:2.4.1.-] +K22772 FG2; flavonol-3-O-glucoside L-rhamnosyltransferase [EC:2.4.1.159] +K22773 gB, UL55; Betaherpesvirinae envelope glycoprotein B +K22774 UL123; HCMV immediate-early protein 1 +K22775 UL122; Cytomegalovirus viral transcription factor IE2 +K22776 UL38; Cytomegalovirus apoptosis inhibitor UL38 +K22777 gH, UL75; Cytomegalovirus envelope glycoprotein H +K22778 gL, UL115; Cytomegalovirus envelope glycoprotein L +K22779 UL82; Cytomegalovirus tegument protein pp71 +K22780 UL26; Cytomegalovirus tegument protein UL26 +K22781 US28; HCMV envelope protein US28 +K22782 UL33; Cytomegalovirus G-protein coupled receptor UL33 +K22783 US27; HCMV envelope glycoprotein US27 +K22784 UL22A; HCMV glycoprotein UL22A +K22785 US6; HCMV membrane glycoprotein US6 +K22786 US11; HCMV membrane glycoprotein US11 +K22787 US3; HCMV membrane glycoprotein US3 +K22788 UL36; Cytomegalovirus viral inhibitor of caspase-8-induced apoptosis +K22789 UL37; UL37 HCMV immediate early glycoprotein +K22790 Octbeta; octopamine receptor beta +K22791 TyrR; tyramine receptor +K22792 TrissinR; trissin receptor +K22793 MRGPRH; Mas-related G protein-coupled receptor member H +K22794 FG3; flavonol-3-O-glucoside/galactoside glucosyltransferase [EC:2.4.1.239 2.4.1.-] +K22795 papA2; 2-O-sulfo trehalose long-chain-acyltransferase [EC:2.3.1.288] +K22796 chp2; diacyltrehalose acyltransferase [EC:2.3.1.-] +K22797 octT; diglucosylglycerate octanoyltransferase [EC:2.3.1.273] +K22798 auaE; anthranilate-CoA-ACP transferase [EC:6.2.1.-] +K22799 auaA; 2-methyl-4-hydroxyquinoline prenyltransferase [EC:2.5.1.-] +K22800 auaF; aurachin D monooxygenase [EC:1.14.13.-] +K22801 auaJ; aurachin B monooxygenase [EC:1.14.13.-] +K22802 auaI; aurichin B epoxide hydrolase +K22803 SMC5; structural maintenance of chromosomes protein 5 +K22804 SMC6; structural maintenance of chromosomes protein 6 +K22805 FAM84A, NSE1; protein FAM84A +K22806 SPIDR; DNA repair-scaffolding protein +K22807 WRNexo; werner syndrome-like exonuclease [EC:3.1.11.-] +K22808 KANK; KN motif and ankyrin repeat domain-containing protein +K22809 IPUT1; inositol phosphorylceramide glucuronosyltransferase 1 [EC:2.4.1.-] +K22810 FAM84B; protein FAM84B +K22811 CYP705A5; thalian-diol desaturase +K22812 CYP708A2; thalianol hydroxylase +K22813 E4.1.1.110; bisphosphomevalonate decarboxylase [EC:4.1.1.110] +K22814 Octalpha; octopamine receptor alpha +K22815 Oct-TyrR; octopamine/tyramine receptor +K22816 CNPY3_4; protein canopy 3/4 +K22817 NSMCE1, NSE1; non-structural maintenance of chromosomes element 1 [EC:2.3.2.27] +K22818 fadE26; 3-oxocholest-4-en-26-oyl-CoA dehydrogenase alpha subunit [EC:1.3.99.-] +K22819 fadE27; 3-oxocholest-4-en-26-oyl-CoA dehydrogenase beta subunit [EC:1.3.99.-] +K22820 fadE34; 3-oxochol-4-en-24-oyl-CoA dehydrogenase [EC:1.3.99.-] +K22821 fadE28; 3-oxo-4-pregnene-20-carboxyl-CoA dehydrogenase alpha subunit [EC:1.3.99.-] +K22822 fadE29; 3-oxo-4-pregnene-20-carboxyl-CoA dehydrogenase beta subunit [EC:1.3.99.-] +K22823 NSMCE3, NSE3; non-structural maintenance of chromosomes element 3 +K22824 WTAP; pre-mRNA-splicing regulator WTAP +K22825 NSMCE4, NSE4; non-structural maintenance of chromosomes element 4 +K22826 EID3, NSMCE4B; EP300-interacting inhibitor of differentiation 3 +K22827 MICU1; calcium uptake protein 1, mitochondrial +K22828 MICU2; calcium uptake protein 2, mitochondrial +K22829 MCUB; calcium uniporter regulatory subunit MCUb, mitochondrial +K22830 SMDT1, EMRE; essential MCU regulator, mitochondrial +K22831 LOA1; 1-acylglycerol-3-phosphate O-acyltransferase [EC:2.3.1.51] +K22832 GAS1; 1,3-beta-glucanosyltransferase GAS1 [EC:2.4.1.-] +K22833 GAS2; 1,3-beta-glucanosyltransferase GAS2 [EC:2.4.1.-] +K22834 GAS3; 1,3-beta-glucanosyltransferase GAS3 [EC:2.4.1.-] +K22835 GAS4; 1,3-beta-glucanosyltransferase GAS4 [EC:2.4.1.-] +K22836 GAS5; 1,3-beta-glucanosyltransferase GAS5 [EC:2.4.1.-] +K22837 ubaA; SAMP-activating enzyme [EC:2.7.7.100] +K22838 phlA; 2-acetylphloroglucinol acetyltransferase [EC:2.3.1.272] +K22839 phlC; 2-acetylphloroglucinol acetyltransferase [EC:2.3.1.272] +K22840 phlB; 2-acetylphloroglucinol acetyltransferase [EC:2.3.1.272] +K22841 famD2; 3-geranyl-3-[(Z)-2-isocyanoethenyl]indole synthase [EC:2.5.1.146] +K22842 MRP; L-glutamate-5-semialdehyde N-acetyltransferase [EC:2.3.1.271] +K22843 ETFBKMT, METTL20; ETFB lysine methyltransferase [EC:2.1.1.-] +K22844 aglG; glucosyl-dolichyl phosphate glucuronosyltransferase [EC:2.4.1.356] +K22845 PGT1; phlorizin synthase [EC:2.4.1.357] +K22846 CS26; S-sulfo-L-cysteine synthase (O-acetyl-L-serine-dependent) [EC:2.5.1.144] +K22847 cysK2; S-sulfo-L-cysteine synthase (3-phospho-L-serine-dependent) [EC:2.8.5.1] +K22848 DGAT2; diacylglycerol O-acyltransferase 2, plant [EC:2.3.1.20] +K22849 DGAT3; diacylglycerol O-acyltransferase 3, plant [EC:2.3.1.20] +K22850 cfaA; CFA/I fimbrial subunit A +K22851 cfaB; CFA/I fimbrial subunit B +K22852 cfaC; CFA/I fimbrial subunit C +K22853 cfaE; CFA/I fimbrial subunit E +K22854 cfaD; CFA/I fimbrial subunit D +K22855 EEF1AKMT1, EFM5; EEF1A lysine methyltransferase 1 [EC:2.1.1.-] +K22856 EEF1AKMT2, EFM4, METTL10; EEF1A lysine methyltransferase 2 [EC:2.1.1.-] +K22857 EEF1AKMT4; EEF1A lysine methyltransferase 4 [EC:2.1.1.-] +K22858 JBTS26; protein JBTS26 +K22859 JBTS17, CPLANE1; protein JBTS17 +K22860 RSG1, CPLANE2; REM2 and Rab-like small GTPase 1 +K22861 FUZ, CPLANE3; protein fuzzy +K22862 INTU, CPLANE4, PDZD6; protein inturned +K22863 WDPCP, CPLANE5; WD repeat-containing and planar cell polarity effector protein +K22864 ARMC9; LisH domain-containing protein ARMC9 +K22865 TALPID3, JBTS23; protein TALPID3 +K22866 TCTEX1D2; tctex1 domain-containing protein 2 +K22867 TMEM138; transmembrane protein 138 +K22868 WDR34; WD repeat-containing protein 34 +K22869 WDR60; WD repeat-containing protein 60 +K22870 ZNF423; zinc finger protein 423 +K22871 tzs; adenylate dimethylallyltransferase [EC:2.5.1.27] +K22872 ASTC-R; allatostatin C receptor +K22873 TRE1; protein trapped in endoderm-1 +K22874 pvcB; L-tyrosine isonitrile desaturase/decarboxylase [EC:1.14.20.9 1.14.20.10] +K22875 rtxC; dihydrorhizobitoxine desaturase [EC:1.14.19.61] +K22876 ambI3; 3-[(Z)-2-isocyanoethenyl]-1H-indole synthase [EC:1.14.20.11] +K22877 isnB; 3-[(E)-2-isocyanoethenyl]-1H-indole synthase [EC:1.14.20.12] +K22878 DAF9; cytochrome P450 daf-9 [EC:1.14.15.15] +K22879 hpyO; FAD-dependent urate hydroxylase [EC:1.14.13.113] +K22880 CYP3201B1; phenylacetonitrile alpha-monooxygenase [EC:1.14.14.77] +K22881 phaE; poly[(R)-3-hydroxyalkanoate] polymerase subunit PhaE +K22882 K22882; thymidylate synthase [EC:2.1.1.-] +K22883 NATA1; L-ornithine N5-acetyltransferase [EC:2.3.1.-] +K22884 SIDL; N5-hydroxyornithine acetyltransferase [EC:2.3.1.-] +K22885 K22885; dTDP-4-amino-4,6-dideoxyglucose formyltransferase [EC:2.3.1.-] +K22886 K22886; protein lysine acetyltransferase [EC:2.3.1.-] +K22887 CYP52M1; long-chain fatty acid omega-monooxygenase [EC:1.14.14.80] +K22888 HISAT; histidine N-acetyltransferase [EC:2.3.1.33] +K22889 AYT1, TRI101; trichothecene 3-O-acetyltransferase [EC:2.3.1.-] +K22890 vpu; HIV-1 protein Vpu +K22891 nef; HIV protein Nef +K22892 vif; HIV virion infectivity factor +K22893 pknH; serine/threonine kinase PknH [EC:2.7.11.1] +K22894 embR; SARP family transcriptional regulator, regulator of embCAB operon +K22895 cruH; renierapurpurin 18,18'-hydroxylase +K22896 vnfD; vanadium-dependent nitrogenase alpha chain [EC:1.18.6.2] +K22897 vnfK; vanadium-dependent nitrogenase beta chain [EC:1.18.6.2] +K22898 vnfG; vanadium nitrogenase delta subunit [EC:1.18.6.2] +K22899 vnfH; vanadium nitrogenase iron protein +K22900 TRMO, trmO; tRNA (adenine37-N6)-methyltransferase [EC:2.1.1.-] +K22901 trm4; tRNA (cytosine40_48-C5)-methyltransferase [EC:2.1.1.-] +K22902 K22902; D-galactosaminyltransferase +K22903 vnfE; nitrogenase vanadium-cofactor synthesis protein VnfE +K22904 PLPP6; presqualene diphosphate phosphatase [EC:3.1.3.-] +K22905 stf3; omega-hydroxy-beta-dihydromenaquinone-9 sulfotransferase [EC:2.8.2.40] +K22906 phy; phloretin hydrolase [EC:3.7.1.4] +K22907 ppgS; polyprenyl-phospho-N-acetylgalactosaminyl synthase +K22908 mggS; mannosylglucosylglycerate synthase [EC:2.4.1.-] +K22909 ZC3H13; zinc finger CCCH domain-containing protein 13 +K22910 VIRMA; protein virilizer +K22911 TH2; thiamine phosphate phosphatase / amino-HMP aminohydrolase [EC:3.1.3.100 3.5.99.-] +K22912 PYRP2; 5-amino-6-(5-phospho-D-ribitylamino)uracil phosphatase [EC:3.1.3.104] +K22913 FIG4; phosphatidylinositol 3,5-bisphosphate 5-phosphatase [EC:3.1.3.-] +K22914 tviA; Vi polysaccharide biosynthesis protein TviA +K22915 tviD; Vi polysaccharide biosynthesis protein TviD +K22916 tviE, vipC; Vi polysaccharide biosynthesis protein TviE +K22917 vexE; Vi polysaccharide export protein VexE +K22918 ttsA; typhoid toxin secretion A +K22919 DopEcR; dopamine/ecdysteroid receptor +K22920 UGP3; UTP---glucose-1-phosphate uridylyltransferase [EC:2.7.7.9] +K22921 vexB; Vi polysaccharide transport system permease protein +K22922 vexD; Vi polysaccharide transport system permease protein +K22923 vexC; Vi polysaccharide transport system ATP-binding protein [EC:7.6.2.12] +K22924 vexA, tviF; Vi polysaccharide export protein VexA +K22925 tviC, vipB; UDP-N-acetylglucosaminuronic acid 4-epimerase [EC:5.1.3.-] +K22926 tviB, vipA; UDP-N-acetylglucosamine 6-dehydrogenase [EC:1.1.1.136] +K22927 gdpP; cyclic-di-AMP phosphodiesterase [EC:3.1.4.59] +K22928 DNPH1; 2'-deoxynucleoside 5'-phosphate N-hydrolase [EC:3.2.2.-] +K22929 E4.2.3.192; labda-7,13(16),14-triene synthase [EC:4.2.3.192] +K22930 cldD; (12E)-labda-8(17),12,14-triene synthase [EC:4.2.3.193] +K22931 E5.5.1.29; (+)-kolavenyl diphosphate synthase [EC:5.5.1.29] +K22932 CYP81E9; isoflavone 3'-hydroxylase [EC:1.14.14.88] +K22933 lplD; galacturan 1,4-alpha-galacturonidase [EC:3.2.1.67] +K22934 E3.2.1.28; alpha,alpha-trehalase [EC:3.2.1.28] +K22935 XK1, psk; D-ribulokinase [EC:2.7.1.47] +K22936 CNPY1_2; protein canopy 1/2 +K22937 LYST, CHS1; lysosomal-trafficking regulator +K22938 SDCCAG3, ENTR1; serologically defined colon cancer antigen 3 +K22939 IER3IP1, YOS1; immediate early response 3-interacting protein 1 +K22940 YIPF1_2; protein YIPF1/2 +K22941 YIPF3, KLIP1; protein YIPF3 +K22942 YIPF4; protein YIPF4 +K22943 YIPF6; protein YIPF6 +K22944 cyaA; bifunctional hemolysin/adenylate cyclase [EC:4.6.1.1] +K22945 TPS2; nezukol synthase [EC:4.2.3.183] +K22946 CPS4; ent-8alpha-hydroxylabd-13-en-15-yl diphosphate synthase [EC:4.2.1.173] +K22947 KSL2; ent-13-epi-manoyl oxide synthase [EC:4.2.3.186] +K22948 E5.5.1.28; (-)-kolavenyl diphosphate synthase [EC:5.5.1.28] +K22949 RIBF; FAD synthetase [EC:2.7.7.2] +K22950 UGT71K3; acylphloroglucinol glucosyltransferase [EC:2.4.1.358] +K22951 gag, gag-pol; HIV Gag or Gag-Pol polyprotein +K22952 pvcA; L-tyrosine isonitrile synthase [EC:4.1.99.24] +K22953 ambI1; L-tryptophan isonitrile synthase [EC:4.1.99.25] +K22954 luxI; acyl homoserine lactone synthase [EC:2.3.1.184] +K22955 traI, avsI; acyl homoserine lactone synthase [EC:2.3.1.184] +K22956 expI, esaI; acyl homoserine lactone synthase [EC:2.3.1.184] +K22957 cviI; acyl homoserine lactone synthase [EC:2.3.1.184] +K22958 lpdC; gallate decarboxylase subunit C [EC:4.1.1.59] +K22959 lpdB; gallate decarboxylase subunit B +K22960 lpdD; gallate decarboxylase subunit D +K22961 GPR179; G protein-coupled receptor 179 +K22962 NP7; nitrite dismutase [EC:1.7.6.1] +K22963 lis; linalool isomerase [EC:5.4.4.8] +K22964 LCC; pre-alpha-onocerin synthase [EC:5.4.99.65] +K22965 LCD; alpha-onocerin synthase [EC:5.4.99.66] +K22966 HINT4; sulfate adenylyltransferase (ADP) / adenylylsulfatase [EC:2.7.7.5 3.6.2.1] +K22967 TPS3; (-)-drimenol synthase [EC:4.2.3.194] +K22968 sinI, avsI; acyl homoserine lactone synthase [EC:2.3.1.184] +K22969 gdh; glucose 1-dehydrogenase [EC:1.1.1.47] +K22970 DHRS11; 17beta-estradiol 17-dehydrogenase / 3beta-hydroxysteroid 3-dehydrogenase [EC:1.1.1.62 1.1.1.270] +K22971 K22971; hapalindole H/12-epi-hapalindole U/12-epi-fischerindole U/hapalindole U synthase [EC:5.5.1.31 5.5.1.32 5.5.1.33 5.5.1.36] +K22972 BPLF1; Lymphocryptovirus large tegment protein deneddylase [EC:3.4.19.12] +K22973 BARF1; Lymphocryptovirus secreted protein BARF1 +K22974 BNLF2A; Lymphocryptovirus protein BNLF2a +K22975 BILF1; Lymphocryptovirus G-protein coupled receptor BILF1 +K22976 atxA; anthrax toxin expression trans-acting positive regulator +K22977 acpA; capsule synthesis positive regulator AcpA +K22978 STC3; (+)-eremophilene synthase [EC:4.2.3.164] +K22979 geoA; (+)-eremophilene synthase [EC:4.2.3.164] +K22980 acpB; capsule synthesis positive regulator AcpB +K22981 capE; gamma-polyglutamate biosynthesis protein CapE +K22982 K22982; hydroxypyruvate reductase [EC:1.1.1.81] +K22983 CYP76A; cytochrome P450 family 76 subfamily A +K22984 OR; odorant receptor +K22985 GPR107; G protein-coupled receptor 107 +K22986 GPR108; G protein-coupled receptor 108 +K22987 GCR1, CRLA; cAMP receptor-like G-protein coupled receptor +K22988 TPRA1, GPR175; transmembrane protein adipocyte-associated 1 +K22989 GPR137; integral membrane protein GPR137 +K22990 TOR1; torsin-1 +K22991 WDR45, WIPI4, WIPI3; WD repeat-containing protein 45 +K22992 CYP628; cytochrome P450 family 628 +K22993 K22993; bifunctional Delta-12/omega-3 fatty acid desaturase [EC:1.14.19.6 1.14.19.-] +K22994 pelX; pectate disaccharide-lyase [EC:4.2.2.9] +K22995 CYP81Q; (+)-piperitol/(+)-sesamin synthase [EC:1.14.19.74] +K22996 ambO5, welO5; hapalindole-type alkaloid chlorinase [EC:1.14.20.14] +K22997 cotB3; cyclooctat-9-en-7-ol 5-monooxygenase [EC:1.14.99.61] +K22998 cotB4; cyclooctatin synthase [EC:1.14.99.62] +K22999 TOR2A; torsin-2A +K23000 TOR3A, ADIR; torsin-3A +K23001 TOR1AIP; torsin-1A-interacting protein +K23002 RPAP3; RNA polymerase II-associated protein 3 +K23003 lgaA; L-galactose dehydrogenase [EC:1.1.1.-] +K23004 lgaB; L-galactono-1,5-lactonase [EC:3.1.1.-] +K23005 lgaC; L-galactonate 5-dehydrogenase [EC:1.1.1.414] +K23006 FAD3; omega-3 fatty acid desaturase (Delta-15 desaturase) [EC:1.14.19.-] +K23007 lgoD; L-galactonate 5-dehydrogenase [EC:1.1.1.414] +K23008 USPL1; SUMO-specific isopeptidase USPL1 [EC:3.4.22.-] +K23009 CPO; carboxypeptidase O [EC:3.4.17.-] +K23010 OMA1; metalloendopeptidase OMA1, mitochondrial [EC:3.4.24.-] +K23011 PRSS57, NSP4; serine protease 57 [EC:3.4.21.-] +K23012 TYSND1; peroxisomal leader peptide-processing protease [EC:3.4.21.-] +K23013 DPP6; dipeptidyl aminopeptidase-like protein 6 +K23014 DPP10; inactive dipeptidyl peptidase 10 +K23015 lgoR; GntR family transcriptional regulator, transcriptional activator for L-galactonate catabolism +K23016 lgoT; MFS transporter, ACS family, L-galactonate transporter +K23017 gag; Deltaretrovirus gag polyprotein +K23018 rex; HTLV-1 rex polyprotein +K23019 mabB; 5-aminosalicylate 1,2-dioxygenase [EC:1.13.11.86] +K23020 camE36; 3,6-diketocamphane 1,6-monooxygenase [EC:1.14.14.155] +K23021 TPS6; (2S,3R,6S,9S)-(-)-protoillud-7-ene synthase [EC:4.2.3.160] +K23022 TPS2; (3S)-(+)-asterisca-2(9),6-diene synthase [EC:4.2.3.161] +K23023 K23023; (+)-corvol ether B/A synthase [EC:4.2.3.163 4.2.3.171] +K23024 E4.2.3.166; (+)-(1E,4E,6S,7R)-germacra-1(10),4-dien-6-ol synthase [EC:4.2.3.166] +K23025 AVP; H+-translocating diphosphatase [EC:7.1.3.1] +K23026 LIMA1, EPLIN; LIM domain and actin-binding protein 1 +K23027 MYOC; myocilin +K23028 SPECC1; cytospin +K23029 EFHC1; EF-hand domain-containing protein 1 +K23030 E4.2.3.170; 4-epi-cubebol synthase [EC:4.2.3.170] +K23031 E4.2.3.175; 10-epi-cubebol synthase [EC:4.2.3.175] +K23032 E4.2.3.176; sesterfisherol synthase [EC:4.2.3.176] +K23033 TENT5A_B, FAM46A_B; terminal nucleotidyltransferase 5A/B [EC:2.7.7.-] +K23034 TENT5C, FAM46C; terminal nucleotidyltransferase 5C [EC:2.7.7.19] +K23035 TENT5D, FAM46D; terminal nucleotidyltransferase 5D [EC:2.7.7.19] +K23036 desC2; sn-2 palmitoyl-lipid 9-desaturase [EC:1.14.19.27] +K23037 CRTS, ASY; beta-carotene 4-ketolase/3-hydroxylase [EC:1.14.99.63 1.14.15.24 1.14.99.-] +K23038 ZC3H14; zinc finger CCCH domain-containing protein 14 +K23039 NAB2; nuclear polyadenylated RNA-binding protein NAB2 +K23040 METTL22; methyltransferase-like protein 22 [EC:2.1.1.-] +K23041 DEAF1; deformed epidermal autoregulatory factor 1 +K23042 CPS1; peregrinol diphosphate synthase [EC:4.2.1.174] +K23043 E4.2.3.157; (+)-isoafricanol synthase [EC:4.2.3.157] +K23044 sds; selina-4(15),7(11)-diene synthase [EC:4.2.3.181] +K23045 E4.2.3.182; pristinol synthase [EC:4.2.3.182] +K23046 hcs; (2Z,6E)-hedycaryol synthase [EC:4.2.3.187] +K23047 UNKL; E3 ubiquitin-protein ligase UNKL [EC:2.3.2.27] +K23048 UNK; RING finger protein unkempt +K23049 HECA, HDC; headcase protein +K23050 PCBER1; phenylcoumaran benzylic ether reductase [EC:1.3.1.-] +K23051 ndhT; NAD(P)H-quinone oxidoreductase subunit T, chloroplastic [EC:7.1.1.-] +K23052 ndhU; NAD(P)H-quinone oxidoreductase subunit U, chloroplastic [EC:7.1.1.-] +K23053 SOMT-2; flavonoid 4'-O-methyltransferase [EC:2.1.1.231] +K23054 desC; sn-1 stearoyl-lipid 9-desaturase [EC:1.14.19.28] +K23055 K23055; putative lysine/arginine/ornithine/histidine/octopine transport system substrate-binding protein +K23056 K23056; putative lysine/arginine/ornithine/histidine/octopine transport system permease protein +K23057 K23057; putative lysine/arginine/ornithine/histidine/octopine transport system permease protein +K23058 K23058; putative lysine/arginine/ornithine/histidine/octopine transport system ATP-binding protein [EC:7.4.2.1] +K23059 artP, artI; arginine/lysine/histidine transporter system substrate-binding protein +K23060 artR, artM; arginine/lysine/histidine transport system ATP-binding protein [EC:7.4.2.1] +K23061 lhpP; hydroxyproline transporter system substrate-binding protein +K23062 lhpM; hydroxyproline transport system permease protein +K23063 lhpN; hydroxyproline transport system permease protein +K23064 lhpO; hydroxyproline transport system ATP-binding protein [EC:7.4.2.1] +K23065 SWNN; swainsonine biosynthesis oxidoreductase SwnN [EC:1.3.1.-] +K23066 SWNH1_2; swainsonine biosynthesis dioxygenase SwnH1/2 [EC:1.14.11.-] +K23067 waaX; beta-1,4-galactosyltransferase +K23068 p30II; HTLV-1 accessory protein p30II +K23069 p12I; HTLV-1 accessory protein p12I +K23070 p13; HTLV-1 accessory protein p13 +K23071 HBZ; HTLV-1 basic zipper factor +K23072 wbbI; O16-antigen biosynthesis beta-1,6-galactofuranosyltransferase [EC:2.4.1.-] +K23073 wbbK; O16-antigen biosynthesis glucosyltransferase +K23074 LMP2B; Lymphocryptovirus latent membrane protein 2B +K23075 garA; glutathione amide-dependent peroxidase [EC:1.11.1.17] +K23076 garB; glutathione amide reductase [EC:1.8.1.16] +K23077 dsrC; dissimilatory sulfite reductase related protein +K23078 mqnK, menK; menaquinone C8-methyltransferase [EC:2.1.1.350] +K23079 E2.4.1.359; glucosylglycerol phosphorylase (configuration-retaining) [EC:2.4.1.359] +K23080 CASTOR1; cytosolic arginine sensor for mTORC1 subunit 1 +K23081 CASTOR2; cytosolic arginine sensor for mTORC1 subunit 2 +K23082 kdoH1; 3-deoxy-D-manno-octulosonic acid-hydrolase [EC:3.2.1.144] +K23083 kdoH2; 3-deoxy-D-manno-octulosonic acid-hydrolase +K23084 rgtA; lipopolysaccharide core galacturonosyltransferase RgtA [EC:2.4.1.-] +K23085 rgtB; lipopolysaccharide core galacturonosyltransferase RgtB [EC:2.4.1.-] +K23086 ggH; glucosylglycerate hydrolase [EC:3.2.1.208] +K23087 TFPI2; tissue factor pathway inhibitor 2 +K23088 STRA6; vitamin A receptor/transporter (stra6) family protein +K23089 CCN5, WISP2; CCN family member 5 +K23090 CCN6, WISP3; CCN family member 6 +K23091 KREMEN; kremen protein +K23092 MAB21L1; putative nucleotidyltransferase [EC:2.7.7.-] +K23093 USB1; U6 snRNA phosphodiesterase [EC:3.1.4.-] +K23094 ABC4, menA; 2-carboxy-1,4-naphthoquinone phytyltransferase [EC:2.5.1.130] +K23095 MENG, menG; demethylphylloquinol methyltransferase [EC:2.1.1.329] +K23096 RGMA; repulsive guidance molecule A +K23097 RSPO2; R-spondin 2 +K23098 RSPO3; R-spondin 3 +K23099 RSPO4; R-spondin 4 +K23100 HJV, RGMC; hemojuvelin +K23101 wekV; O18-antigen biosynthesis glucosyltransferase +K23102 wekW; O18-antigen biosynthesis alpha-1,3-galactosyltransferase [EC:2.4.1.-] +K23103 wekU; O18-antigen biosynthesis glycosyltransferase [EC:2.4.1.-] +K23104 wbdH; O111-antigen biosynthesis galactosyltransferase +K23105 wbdL; O111-antigen biosynthesis colitosyltransferase [EC:2.4.1.-] +K23106 HAMP; hepcidin +K23107 yajO; 1-deoxyxylulose-5-phosphate synthase [EC:1.1.-.-] +K23108 BZO1; benzoate---CoA ligase [EC:6.2.1.25] +K23109 fldH; aromatic 2-oxoacid reductase [EC:1.1.1.110] +K23110 fldB; (R)-3-(aryl)lactoyl-CoA dehydratase alpha subunit [EC:4.2.1.175] +K23111 fldC; (R)-3-(aryl)lactoyl-CoA dehydratase beta subunit [EC:4.2.1.175] +K23112 BRAT1; BRCA1-associated ATM activator 1 +K23113 SMCHD1; structural maintenance of chromosomes flexible hinge domain-containing protein 1 +K23114 ARMT1; damage-control phosphatase, subfamily III [EC:3.1.3.-] +K23115 TTI2; TELO2-interacting protein 2 +K23116 HEPACAM; hepatocyte cell adhesion molecule +K23117 lcp; endo-cleaving rubber dioxygenase [EC:1.13.11.87] +K23118 roxB; endo-cleaving rubber dioxygenase [EC:1.13.11.87] +K23119 ADS2; very-long-chain acyl-lipid omega-9 desaturase [EC:1.14.19.75] +K23120 cntL; histidine 2-aminobutanoyltransferase [EC:2.5.1.152 2.5.1.-] +K23121 pflD; trans-4-hydroxy-L-proline dehydratase [EC:4.2.1.172] +K23122 cntM; staphylopine/pseudopaline/yersinopine synthase [EC:1.5.1.52 1.5.1.-] +K23123 pxpB; 5-oxoprolinase (ATP-hydrolysing) subunit B [EC:3.5.2.9] +K23124 pxpC; 5-oxoprolinase (ATP-hydrolysing) subunit C [EC:3.5.2.9] +K23125 DEFB1; beta-defensin 1 +K23126 DEFB103; beta-defensin 103 +K23127 fimW; cyclic-di-GMP-binding protein +K23128 S; Orthohepadnavirus large envelope protein +K23129 C; Orthohepadnavirus capsid protein +K23130 wbdN; O157-antigen biosynthesis beta-1,3-glucosyltransferase +K23131 wbdO; O157-antigen biosynthesis glycosyltransferase +K23132 wbdP; O157-antigen biosynthesis glycosyltransferase +K23133 comC; competence-stimulating peptide +K23134 CYP71Z16_18; dolabradiene monooxygenase / zealexin A1 synthase [EC:1.14.14.159 1.14.14.160] +K23135 CYP93G2; flavanone 2-hydroxylase [EC:1.14.14.162] +K23136 CYP82C4; fraxetin 5-hydroxylase [EC:1.14.14.164] +K23137 CYP82C2; indole-3-carbonyl nitrile 4-hydroxylase [EC:1.14.14.165] +K23138 CYP109; cytochrome P450 family 109 [EC:1.14.-.-] +K23139 CYP110; cytochrome P450 family 110 [EC:1.14.-.-] +K23140 KISS1; metastasis-suppressor KiSS-1 +K23141 NPW; neuropeptide W +K23142 UCN; urcortin +K23143 PTH2, TIP39; tuberoinfundibular peptide of 39 residues +K23144 K23144; UDP-N-acetylglucosamine diphosphorylase / glucose-1-phosphate thymidylyltransferase / UDP-N-acetylgalactosamine diphosphorylase / glucosamine-1-phosphate N-acetyltransferase / galactosamine-1-phosphate N-acetyltransferase [EC:2.7.7.23 2.7.7.24 2.7.7.83 2.3.1.157 2.3.1.276] +K23145 S8H; scopoletin 8-hydroxylase [EC:1.14.11.60] +K23146 HPD1; 3-hydroxyisobutyrate/3-hydroxypropionate dehydrogenase [EC:1.1.1.31 1.1.1.59] +K23147 E2.7.1.223; aminoimidazole riboside kinase [EC:2.7.1.223] +K23148 E2.7.1.224; cytidine diphosphoramidate kinase [EC:2.7.1.224] +K23149 E3.1.1.104; 5-phospho-D-xylono-1,4-lactonase [EC:3.1.1.104] +K23150 E3.5.1.129; N5-(cytidine 5'-diphosphoramidyl)-L-glutamine hydrolase [EC:3.5.1.129] +K23151 METTL23; methyltransferase-like protein 23 [EC:2.1.1.-] +K23152 LOS; lycopaoctaene synthase [EC:2.5.1.148] +K23153 ncmP; nocamycin O-methyltransferase [EC:2.1.1.351] +K23154 CGT; 2-hydroxyflavanone C-glucosyltransferase [EC:2.4.1.360] +K23155 crtEb; lycopene elongase/hydratase (flavuxanthin-forming) [EC:2.5.1.149] +K23156 papA3; mycolipenoyl-CoA---2-(long-chain-fatty acyl)-trehalose mycolipenoyltransferase / long-chain-acyl-CoA---trehalose acyltransferase [EC:2.3.1.278 2.3.1.279] +K23157 OMT2; 3-O-acetyl-4'-O-demethylpapaveroxine 4'-O-methyltransferase subunit OMT2 [EC:2.1.1.352] +K23158 OMT3; 3-O-acetyl-4'-O-demethylpapaveroxine 4'-O-methyltransferase subunit OMT3 +K23159 lpxF; lipid A 4'-phosphatase [EC:3.1.3.-] +K23160 wabB, rfbU; GlcNAc transferase +K23161 MAGAININ; magainin +K23162 MELT; melittin +K23163 sbp; sulfate/thiosulfate transport system substrate-binding protein +K23164 RTN4IP1; reticulon-4-interacting protein 1, mitochondrial +K23165 UQCC3; ubiquinol-cytochrome-c reductase complex assembly factor 3 +K23166 OPA3; optic atrophy 3 protein +K23167 VAT1; synaptic vesicle membrane protein VAT-1 +K23168 MPAN; protein MPAN +K23169 murD2; UDP-N-acetylmuramoyl-L-alanine---L-glutamate ligase [EC:6.3.2.53] +K23170 murL; UDP-N-acetyl-alpha-D-muramoyl-L-alanyl-L-glutamate epimerase [EC:5.1.1.23] +K23171 KSL4; dolabradiene synthase [EC:4.2.3.196] +K23172 TPS2, SES; alpha-selinene synthase [EC:4.2.3.198] +K23173 STPS; (-)-5-epieremophilene synthase [EC:4.2.3.199] +K23174 PCS; beta-pinacene synthase [EC:4.2.3.200] +K23175 RNU2; ribonuclease U2 [EC:4.6.1.20] +K23176 mtxT; methylthioxylose transferase +K23177 CYP71BL6; germacrene A acid 8beta-hydroxylase / 8-epi-inunolide synthase [EC:1.14.14.168 1.14.14.170] +K23178 CYP71DD6; eupatolide synthase [EC:1.14.14.169] +K23179 CYP93B2_16; flavone synthase II [EC:1.14.19.76] +K23180 CYP93G1; flavone synthase II [EC:1.14.19.76] +K23181 fecB; ferric citrate transport system substrate-binding protein +K23182 fecD; ferric citrate transport system permease protein +K23183 fecC; ferric citrate transport system permease protein +K23184 fecE; ferric citrate transport system ATP-binding protein [EC:7.2.2.18] +K23185 fepB; ferric enterobactin transport system substrate-binding protein +K23186 fepD, fagA, cchC, desH; iron-siderophore transport system permease protein +K23187 fepG, fagB, cchD, desG; iron-siderophore transport system permease protein +K23188 fepC, fagC, cchE, desF; iron-siderophore transport system ATP-binding protein [EC:7.2.2.17 7.2.2.-] +K23189 wbuB; O26/O145-antigen biosynthesis N-acetyl-L-fucosamine transferase +K23190 wbuA; O26-antigen biosynthesis rhamnosyltransferase +K23191 wbuW; O145-antigen biosynthesis Neu5Ac transferase +K23192 MYT1; myelin transcription factor 1 +K23193 MYT1L; myelin transcription factor 1-like protein +K23194 GATAD2; transcriptional repressor p66 +K23195 CTCF, CTCFL; transcriptional repressor CTCF +K23196 ZBTB18_42; zinc finger and BTB domain-containing protein 18/42 +K23197 wbbA; O7-antigen biosynthesis N-acetylviosaminyltransferase +K23198 wbbB; O7-antigen biosynthesis rhamnosyltransferase +K23199 wbbC; O7-antigen biosynthesis mannosyltransferase +K23200 ARAD; putative arabinosyltransferase [EC:2.4.2.-] +K23201 wbaC; O17/O44/073/077/0106-antigen biosynthesis mannosyltransferase +K23202 wbaD; O17/O44/073/077/0106-antigen biosynthesis mannosyltransferase +K23203 THAP1_3; THAP domain-containing protein 1/3 +K23204 THAP2; THAP domain-containing protein 2 +K23205 THAP4; THAP domain-containing protein 4 +K23206 THAP5_8; THAP domain-containing protein 5/8 +K23207 THAP6; THAP domain-containing protein 6 +K23208 THAP7; THAP domain-containing protein 7 +K23209 THAP9; DNA transposase THAP9 [EC:2.7.7.-] +K23210 THAP10; THAP domain-containing protein 10 +K23211 THAP11; THAP domain-containing protein 11 +K23212 UL46; Simplexvirus tegument protein VP11/12 +K23213 SIN3B; paired amphipathic helix protein Sin3b +K23214 AUTS2; autism susceptibility gene 2 protein +K23215 BCOR; bcl-6 corepressor +K23216 SETD5; SET domain-containing protein 5 +K23217 SETBP1; SET-binding protein +K23218 ZMYND11, BS69; zinc finger MYND domain-containing protein 11 +K23219 MBD5; methyl-CpG-binding domain protein 5 +K23220 LRIF1; ligand-dependent nuclear receptor-interacting factor 1 +K23221 NAIF1; nuclear apoptosis-inducing factor 1 +K23222 HARBI1; nuclease HARBI1 [EC:3.1.-.-] +K23223 PMFBP1; polyamine-modulated factor 1-binding protein 1 +K23224 SPATA6; spermatogenesis-associated protein 6 +K23225 SATB1; DNA-binding protein SATB1 +K23226 SATB2; DNA-binding protein SATB2 +K23227 fhuD; ferric hydroxamate transport system substrate-binding protein +K23228 fhuB; ferric hydroxamate transport system permease protein +K23229 wbgP; O55-antigen biosynthesis glycosyltransferase +K23230 wbgO; O55-antigen biosynthesis beta-1,3-galactosyltransferase +K23231 E1.1.1.201; 7beta-hydroxysteroid dehydrogenase (NADP+) [EC:1.1.1.201] +K23232 10HGO; 8-hydroxygeraniol dehydrogenase [EC:1.1.1.324] +K23233 ODH1; D-octopine dehydrogenase [EC:1.5.1.11] +K23234 ALDH8A1; aminomuconate-semialdehyde dehydrogenase [EC:1.2.1.32] +K23235 TADH; tauropine dehydrogenase [EC:1.5.1.23] +K23236 safA; two-component-system connector protein SafA +K23237 melR; AraC family transcriptional regulator, melibiose operon regulatory protein +K23238 rpiR, alsR; RpiR family transcriptional regulator, repressor of rpiB and als operon +K23239 frmR; FrmR/RcnR family transcriptional regulator, repressor of frmRAB operon +K23240 rcnR; FrmR/RcnR family transcriptional regulator, repressor of rcnA expression +K23241 mdtM; MFS transporter, DHA1 family, multidrug resistance protein +K23242 mntP; manganese efflux pump family protein +K23243 rcnB; nickel/cobalt homeostasis protein +K23244 apsD; D-apiose dehydrogenase [EC:1.1.1.420] +K23245 apnO; D-apionate oxidoisomerase [EC:1.1.1.421] +K23246 apnL; D-apionolactonase [EC:3.1.1.115] +K23247 oiaK; 3-oxoisoapionate kinase [EC:2.7.1.231] +K23248 oiaC; 3-oxoisoapionate decarboxylase [EC:4.1.1.120] +K23249 wbwA; O104-antigen biosynthesis alpha-2,3-NeuNAc transferase +K23250 wbwB; O104-antigen biosynthesis alpha-1,4-galactosyltransferase +K23251 wbwC; O104-antigen biosynthesis beta-1,3-galactosyltransferase +K23252 aglS; dolichol phosphate-mannose mannosyltransferase [EC:2.4.1.-] +K23253 putR; PucR family transcriptional regulator, proline-responsive transcriptional activator +K23254 silP; P-type Ag+ transporter [EC:7.2.2.15] +K23255 pilA; archaeal type IV pilus assembly protein PilA +K23256 curA; NADPH-dependent curcumin reductase [EC:1.3.1.-] +K23257 yvgN; methylglyoxal/glyoxal reductase [EC:1.1.1.283 1.1.1.-] +K23258 mutT1; 8-oxo-(d)GTP phosphatase [EC:3.6.1.69] +K23259 adh; isopropanol dehydrogenase (NADP+) [EC:1.1.1.80] +K23260 TOGT1; scopoletin glucosyltransferase [EC:2.4.1.128] +K23261 5GT; cyanidin 3-O-rutinoside 5-O-glucosyltransferase [EC:2.4.1.116] +K23262 gvpA; gas vesicle structural protein +K23263 gvpC; gas vesicle minor protein +K23264 purS; phosphoribosylformylglycinamidine synthase subunit PurS [EC:6.3.5.3] +K23265 purQ; phosphoribosylformylglycinamidine synthase subunit PurQ / glutaminase [EC:6.3.5.3 3.5.1.2] +K23266 RARRES3; retinoic acid receptor responder protein 3 +K23267 APCS, SAP; serum amyloid P component +K23268 VSIR, VISTA; V-type immunoglobulin domain-containing suppressor of T-cell activation +K23269 purL; phosphoribosylformylglycinamidine synthase subunit PurL [EC:6.3.5.3] +K23270 purSL; phosphoribosylformylglycinamidine synthase subunit PurSL [EC:6.3.5.3] +K23271 eltD; erythritol/L-threitol dehydrogenase [EC:1.1.1.-] +K23272 P2OX; pyranose oxidase [EC:1.1.3.10] +K23273 fdhL; fructose 5-dehydrogenase large subunit [EC:1.1.5.14] +K23274 fdhS; fructose 5-dehydrogenase small subunit [EC:1.1.5.14] +K23275 fdhC; fructose 5-dehydrogenase cytochrome subunit +K23276 CYP72A224; 7-deoxyloganate 7-hydroxylase [EC:1.14.14.85] +K23277 HCBT; anthranilate N-benzoyltransferase [EC:2.3.1.144] +K23278 HRASLS5; phosphatidylethanolamine N-acyltransferase [EC:2.3.1.-] +K23279 UGT84A13; gallate 1-beta-glucosyltransferase [EC:2.4.1.136] +K23280 RRT; rhamnogalacturonan I rhamnosyltransferase [EC:2.4.1.351] +K23281 VPS33B; vacuolar protein sorting-associated protein 33B +K23282 PLEKHM1; pleckstrin homology domain-containing family M member 1 +K23283 RUSC1, NESCA; RUN and SH3 domain-containing protein 1 +K23284 C1QL; C1q-related factor +K23285 GULP1, CED6; PTB domain-containing engulfment adapter protein 1 +K23286 NEBL1_2; neurobeachin-like protein 1/2 +K23287 VIPAS39, VPS16B; VPS33B-interacting protein in polarity and apical restriction +K23288 VPS50; syndetin +K23289 EIPR1, TSSC1; EARP and GARP complex-interacting protein 1 +K23290 PACS1; phosphofurin acidic cluster sorting protein 1 +K23291 RUSC2; iporin +K23292 LNPK; endoplasmic reticulum junction formation protein lunapark +K23293 RMDN3, PTPIP51; regulator of microtubule dynamics protein 3 +K23294 PACS2; phosphofurin acidic cluster sorting protein 2 +K23295 KPTN; KICSTOR complex protein kaptin +K23296 ITFG2; KICSTOR complex protein ITFG2 +K23297 C12ORF66; KICSTOR complex protein C12orf66 +K23298 SZT2; KICSTOR complex protein SZT2 +K23299 WDFY1; WD repeat and FYVE domain-containing protein 1 +K23300 qrcA; menaquinone reductase, multiheme cytochrome c subunit [EC:1.97.-.-] +K23301 qrcC; menaquinone reductase, iron-sulfur cluster-binding subunit [EC:1.97.-.-] +K23302 qrcB; menaquinone reductase, molybdopterin-binding-like subunit +K23303 qrcD; menaquinone reductase, integral membrane subunit +K23304 cysE; serine O-acetyltransferase [EC:2.3.1.30] +K23305 gvpE; PadR family transcriptional regulator, activator of gas vesicle formation +K23306 brz; bacteriorhodopsin-regulating zinc finger protein +K23307 gvpD; gas vesicle operon resressor +K23308 NUFIP1; nuclear fragile X mental retardation-interacting protein 1 +K23309 ZNHIT3; zinc finger HIT domain-containing protein 3 +K23310 PHF6; PHD finger protein 6 +K23311 CTC1; CST complex subunit CTC1 +K23312 STN1; CST complex subunit STN1 +K23313 TEN1; CST complex subunit TEN1 +K23314 WRAP53, TCAB1; telomerase Cajal body protein 1 +K23315 basB; chemotactic signal transduction system substrate-binding protein BasB +K23316 cosB; chemotactic signal transduction system substrate-binding protein CosB +K23317 MTF1; metal regulatory transcription factor 1 +K23318 GREM; gremlin +K23319 ACLH; flavine halogenase [EC:1.14.14.-] +K23320 ACLB; aspirochlorine biosynthesis cytochrome P450 monooxygenase [EC:1.-.-.-] +K23321 ACLL; aspirochlorine biosynthesis cytochrome P450 monooxygenase [EC:1.-.-.-] +K23322 ACLO; aspirochlorine biosynthesis cytochrome P450 monooxygenase [EC:1.-.-.-] +K23323 GLIM, ACLM_U; gliotoxin/aspirochlorine biosynthesis O-methyltransferase [EC:2.1.1.-] +K23324 EDARADD; ectodysplasin-A receptor-associated adapter protein +K23325 TBL2; transducin beta-like protein 2 +K23326 CCNK; cyclin K +K23327 HIKESHI; protein Hikeshi +K23328 DMP1; dentin matrix acidic phosphoprotein 1 +K23329 HMT1, ACLQ; ATP-binding cassette, subfamily B, vacuolar membrane transporter HMT1/ACLQ +K23330 LZTR1; leucine-zipper-like transcriptional regulator 1 +K23331 DCAF17; DDB1- and CUL4-associated factor 17 +K23332 RSPRY1; RING finger and SPRY domain-containing protein 1 +K23333 RMND5; E3 ubiquitin-protein transferase RMND5 [EC:2.3.2.27] +K23334 RANBP9_10, RANBPM; Ran-binding protein 9/10 +K23335 GID4; glucose-induced degradation protein 4 +K23336 ARMC8; armadillo repeat-containing protein 8 +K23337 MKLN1; muskelin +K23338 GID8; glucose-induced degradation protein 8 +K23339 YPEL5; protein yippee-like 5 +K23340 TMUB; transmembrane and ubiquitin-like domain-containing protein +K23341 ERLIN; erlin +K23342 FBN2_3; fibrillin 2/3 +K23343 CCDC22; coiled-coil domain-containing protein 22 +K23344 DDRGK1; DDRGK domain-containing protein 1 +K23345 GLMN; glomulin +K23346 KDF1; keratinocyte differentiation factor 1 +K23347 kdpQ; probable Kdp system regulatory protein +K23348 dmsR; HTH-type transcriptional regulator, dimethyl sulfoxide reductase transcription regulator +K23349 dmsD; putative dimethyl sulfoxide reductase chaperone +K23351 gcdC, mmdC; glutaconyl-CoA/methylmalonyl-CoA decarboxylase subunit gamma +K23352 gcdD, mmdD; glutaconyl-CoA/methylmalonyl-CoA decarboxylase subunit delta +K23353 PDLIM1_2_3_4; PDZ and LIM domain protein 1/2/3/4 +K23354 LIMS1_2, PINCH1_2; LIM and senescent cell antigen-like-containing domain protein 1/2 +K23355 VASH; tubulinyl-Tyr carboxypeptidase [EC:3.4.17.17] +K23356 trmB; HTH-type transcriptional regulator, sugar sensing transcriptional regulator +K23357 SVBP; small vasohibin-binding protein +K23358 TAF1; transcription initiation factor TFIID subunit 1, fungi type [EC:2.3.1.48] +K23359 biuH; biuret amidohydrolase [EC:3.5.1.84] +K23360 mmdE; methylmalonyl-CoA decarboxylase subunit epsilon +K23361 sbnD; MFS transporter, DHA1 family, staphyloferrin B biosynthesis exporter +K23362 MPPE1, PGAP5; ethanolamine phosphate phosphodiesterase [EC:3.1.-.-] +K23363 iem, iso; isoeugenol monooxygenase [EC:1.13.11.88] +K23364 aurH; luteothin monooxygenase [EC:1.14.15.37] +K23365 cpkA; 5-hydroxydodecatetraenal polyketide synthase CpkA [EC:2.3.1.281] +K23366 cpkB; 5-hydroxydodecatetraenal polyketide synthase CpkB [EC:2.3.1.281] +K23367 cpkC; 5-hydroxydodecatetraenal polyketide synthase CpkC [EC:2.3.1.281] +K23368 TRIP11; thyroid receptor-interacting protein 11 +K23369 ADAMTSL4; ADAMTS-like protein 4 +K23370 serK; L-serine kinase (ADP) [EC:2.7.1.226] +K23371 sbnI; L-serine kinase (ATP) / ParB family transcriptional regulator, heme-responsive regulator [EC:2.7.1.225] +K23372 sbnE; L-2,3-diaminopropanoate---citrate ligase [EC:6.3.2.54] +K23373 sbnH; 2-[(L-alanin-3-ylcarbamoyl)methyl]-2-hydroxybutanedioate decarboxylase [EC:4.1.1.117] +K23374 sbnF; 2-[(L-alanin-3-ylcarbamoyl)methyl]-3-(2-aminoethylcarbamoyl)-2-hydroxypropanoate synthase [EC:6.3.2.55] +K23375 sbnC; staphyloferrin B synthase [EC:6.3.2.56] +K23376 sbnG; staphyloferrin B biosynthesis citrate synthase +K23377 THSD4, ADAMTSL6; thrombospondin type-1 domain-containing protein 4 +K23378 DIOX4, IB2; feruloyl-CoA 6-hydroxylase / trans-4-coumaroyl-CoA 2-hydroxylase [EC:1.14.11.61 1.14.11.62] +K23379 FRAS1; extracelluar matrix protein FRAS1 +K23380 FREM1_2; FRAS1-related extracelluar matrix protein 1/2 +K23381 vCCI; Poxvirus chemokine inhibitor +K23382 gG; Simplexvirus envelope glycoprotein G +K23383 FREM3; FRAS1-related extracellular matrix protein 3 +K23384 iad; indoleacetate decarboxylase [EC:4.1.1.115] +K23385 dokD; D-ornithine/D-lysine decarboxylase [EC:4.1.1.116] +K23386 PWWP3, MUM1; PWWP domain-containing DNA repair factor 3 +K23387 GET4; golgi to ER traffic protein 4 +K23388 UBL4; ubiquitin-like protein 4 +K23389 KLLN; killin +K23390 BAG6; large proline-rich protein BAG6 +K23392 vCCL4a, U83; HHV6 CCRs chemokine agonist +K23393 murT; lipid II isoglutaminyl synthase (glutamine-hydrolysing) [EC:6.3.5.13] +K23394 aurI; demethylluteothin O-methyltransferase [EC:2.1.1.353] +K23395 E2.4.1.361; GDP-mannose:di-myo-inositol-1,3'-phosphate beta-1,2-mannosyltransferase [EC:2.4.1.361] +K23396 brsB; alpha-(1->3) branching sucrase [EC:2.4.1.362] +K23397 cpkG; 5-hydroxydodecatetraenal 1-aminotransferase [EC:2.6.1.115] +K23398 TRIP4; activating signal cointegrator 1 +K23399 MGA; MAX gene-associated protein +K23400 DCDC1; doublecortin domain-containing protein 1 +K23401 SYNE4; nesprin-4 +K23402 CBY1; protein chibby 1 +K23403 SPERT, CBY2; spermatid-associated protein +K23404 TAPT1; transmembrane anterior posterior transformation protein 1 +K23405 DCDC2; doublecortin domain-containing protein 2 +K23406 BAP18; chromatin complexes subunit BAP18 +K23407 GATAD1; GATA zinc finger domain-containing protein 1 +K23408 CDCA7, CDCA7L, JPO1; cell division cycle-associated protein 7 +K23409 AHSG, FETUA; alpha-2-HS-glycoprotein +K23410 HRG; histidine-rich glycoprotein +K23411 FETUB; fetuin-B +K23412 SERPINI1; neuroserpin +K23413 ANOS1, KAL1, WFDC19; anosmin-1 +K23414 papA5; phenolphthiocerol/phthiocerol/phthiodiolone dimycocerosyl transferase [EC:2.3.1.282] +K23415 papA1; 2'-acyl-2-O-sulfo-trehalose (hydroxy)phthioceranyltransferase [EC:2.3.1.283] +K23416 chp1; 3'-(hydroxy)phthioceranyl-2'-palmitoyl(stearoyl)-2-O-sulfo-trehalose (hydroxy)phthioceranyltransferase [EC:2.3.1.284] +K23417 SPINK1; serine protease inhibitor Kazal-type 1 +K23418 SPINK2; serine protease inhibitor Kazal-type 2 +K23419 SPINK4; serine protease inhibitor Kazal-type 4 +K23420 SPINK5; serine protease inhibitor Kazal-type 5 +K23421 SPINT2; Kunitz-type protease inhibitor 2 +K23422 SPINT3; Kunitz-type protease inhibitor 3 +K23423 SPINT4; Kunitz-type protease inhibitor 4 +K23424 TMTC; protein O-mannosyl-transferase [EC:2.4.1.-] +K23425 SERPINB1; leukocyte elastase inhibitor +K23426 134R; YLDV 134R protein +K23427 7L; Poxvirus chemokine receptor 7L +K23428 2L; TPV TNF binding protein 2L +K23429 SERPINE3; serpin E3 +K23430 SERPINI2; serpin I2 +K23431 HHV6-U12; HHV6 CC-chemokine receptor U12 +K23432 HHV7-U12; HHV7 CC-chemokine receptor U12 +K23433 HHV6-U51; HHV6 G-protein coupled receptor homolog U51 +K23434 HHV7-U51; HHV7 G-protein coupled receptor homolog U51 +K23435 AGTPBP1, CCP1; cytosolic carboxypeptidase protein 1 [EC:3.4.17.24] +K23436 AGBL1, CCP4; cytosolic carboxypeptidase protein 4 [EC:3.4.17.24] +K23437 AGBL2_3, CCP2_3; cytosolic carboxypeptidase protein 2/3 [EC:3.4.17.-] +K23438 AGBL5, CCP5; cytosolic carboxypeptidase protein 5 [EC:3.4.17.24] +K23439 AGBL4, CCP6; cytosolic carboxypeptidase protein 6 [EC:3.4.17.24] +K23440 PRSS56; serine protease 56 [EC:3.4.21.-] +K23441 MST1; hepatocyte growth factor-like protein +K23442 AMBN; ameloblastin +K23443 AMELX_Y; amelogenin +K23444 ENAM; enamelin +K23445 CASQ2; calsequestrin 2 +K23446 sfnaD; D-ornithine---citrate ligase [EC:6.3.2.58] +K23447 sfnaB; staphyloferrin A synthase [EC:6.3.2.57] +K23448 sfaA; MFS transporter, DHA1 family, staphyloferrin A biosynthesis exporter +K23449 TRDN; triadin +K23450 HRC; sarcoplasmic reticulum histidine-rich calcium-binding protein +K23451 LCB3; dihydrosphingosine 1-phosphate phosphatase [EC:3.1.3.-] +K23452 UGT85A; UDP-glucosyltransferase 85A [EC:2.4.1.-] +K23453 src; RSV tyrosine-protein kinase transforming protein Src [EC:2.7.10.2] +K23454 gag-pro-pol; Deltaretrovirus gag-pro-pol polyprotein +K23455 COL8A; collagen type VIII alpha +K23456 CFAP410, C21ORF2; cilla- and flagella-associated protein +K23457 CDSN; corneodesmosin +K23458 PHO5_11_12; repressible acid phosphatase [EC:3.1.3.2] +K23459 KLRA4, LY49D; killer cell lectin-like receptor subfamily A member 4 +K23460 CHM, CHML; Rab proteins geranylgeranyltransferase component A +K23461 RHO; rhomboid [EC:3.4.21.105] +K23462 tgnA; flavin-dependent trigonelline monooxygenase, reductase component [EC:1.5.1.36] +K23463 tgnC; (Z)-2-((N-methylformamido)methylene)-5-hydroxybutyrolactone dehydrogenase [EC:1.2.1.-] +K23464 tgnB; flavin-dependent trigonelline monooxygenase, oxygenase component [EC:1.14.14.-] +K23465 tgnD; (E)-2-((N-methylformamido)methylene)succinate hydrolase [EC:3.5.1.-] +K23466 tgnR; GntR family transcriptional regulator, trigonelline degradation regulator +K23467 tgnP; trigonelline permease +K23468 CASQ1; calsequestrin 1 +K23469 CLB2; G2/mitotic-specific cyclin 2 +K23470 C1-hpah; 4-hydroxyphenylacetate 3-hydroxylase, reductase component [EC:1.5.1.36] +K23471 SKAP2; src kinase-associated phosphoprotein 2 +K23472 ypkA, yopO; serine/threonine protein kinase YpkA [EC:2.7.11.1] +K23473 yopE; outer membrane virulence protein YopE +K23474 yopH; tyrosine-protein phosphatase YopH [EC:3.1.3.48] +K23475 yopB, popB, aopB; transloator +K23476 yopD, popD, aopD; transloator +K23477 yopQ, yopK; protein YopQ +K23478 yopM; outer membrane protein YopM +K23479 CCAAT/enhancer binding protein (C/EBP), other +K23480 ZNF362_384, LIN-29; zinc finger protein 362/384 +K23481 VPS1; vacuolar protein sorting-associated protein 1 +K23482 CRYB; beta-crystallin +K23483 CRYG; gamma-crystallin +K23484 DNM2; dynamin 2 [EC:3.6.5.5] +K23485 AltSQE; alternative squalene epoxidase [EC:1.14.19.-] +K23486 PGFS; 9,11-endoperoxide prostaglandin H2 reductase [EC:1.1.1.-] +K23487 EVL; Ena/VASP-like protein +K23488 RAPH1; Ras-associated and pleckstrin homology domains-containing protein 1 +K23489 SVH1, Teq; HGF/MSP/plasminogen-like protein +K23490 CYB5; cytochrome b5 +K23491 CTNND2; catenin delta-2 +K23492 C2-hpah; 4-hydroxyphenylacetate 3-monooxygenase [EC:1.14.14.9] +K23493 GS; geissoschizine synthase [EC:1.3.1.36] +K23494 CYP71AY1; alstonine synthase [EC:1.14.14.-] +K23495 RCC1L; RCC1-like G exchanging factor-like protein +K23496 NGRN; neugrin +K23497 TRUB2; mitochondrial mRNA pseudouridine synthase TRUB2 [EC:5.4.99.-] +K23498 COXPD7; peptide chain release factor +K23499 RMND1; required for meiotic nuclear division protein 1 +K23500 SFXN1_3; sideroflexin-1/3 +K23501 SFXN2; sideroflexin-2 +K23502 SFXN4; sideroflexin-4 +K23503 SFXN5; sideroflexin-5 +K23504 SERAC1; protein SERAC1 +K23505 TIMMDC1; complex I assembly factor TIMMDC1 +K23506 APOPT1; apoptogenic protein 1 +K23507 MIEF1_2; mitochondrial dynamics protein MID51/49 +K23508 ytfQ; galactofuranose transport system substrate-binding protein +K23509 ytfT, yjfF; galactofuranose transport system permease protein +K23510 rfuA; riboflavin transport system substrate-binding protein +K23511 rfuC; riboflavin transport system permease protein +K23512 rfuD; riboflavin transport system permease protein +K23513 rfuB; riboflavin transport system ATP-binding protein +K23514 fecI, prhI; RNA polymerase sigma-19 factor, ECF subfamily +K23515 LPO; lignin peroxidase [EC:1.11.1.14] +K23516 XAN1; xanthine dioxygenase [EC:1.14.11.48] +K23517 cpnB; cyclopentanone monooxygenase [EC:1.14.13.16] +K23518 MACROD, ymdB; O-acetyl-ADP-ribose deacetylase [EC:3.1.1.106] +K23519 phlG; 2,4-diacetylphloroglucinol hydrolase [EC:3.7.1.24] +K23520 UGTPg1; ginsenoside 20-O-glucosyltransferase [EC:2.4.1.363] +K23521 UGT74AE2; protopanaxadiol-type ginsenoside 3-O-glucosyltransferase [EC:2.4.1.364] +K23522 UGT94Q2; protopanaxadiol-type ginsenoside-3-O-glucoside 2''-O-glucosyltransferase [EC:2.4.1.365] +K23523 UGTPg101; ginsenoside F1 6-O-glucosyltransferase [EC:2.4.1.366] +K23524 UGTPg100; ginsenoside 6-O-glucosyltransferase [EC:2.4.1.367] +K23525 UGT73C10_11; oleanolate 3-O-glucosyltransferase [EC:2.4.1.368] +K23526 gcoA; aromatic O-demethylase, cytochrome P450 subunit [EC:1.14.14.-] +K23527 gcoB; aromatic O-demethylase, reductase subunit [EC:1.6.2.-] +K23528 pnpB; p-benzoquinone reductase (NADPH) [EC:1.6.5.6] +K23529 E1.6.5.7; 2-hydroxy-1,4-benzoquinone reductase [EC:1.6.5.7] +K23530 hps; hydropyrene/hydropyrenol/isoelisabethatriene synthase [EC:4.2.3.201 4.2.3.202 4.2.3.203] +K23531 CABP1_2_4_5; calcium-binding protein 1/2/4/5 +K23532 WDFY2; WD repeat and FYVE domain-containing protein 2 +K23533 LINGO, LRRN6; leucine-rich repeat and immunoglobulin-like domain-containing nogo receptor-interacting protein +K23534 PP2CHN; protein phosphatase [EC:3.1.3.16] +K23535 nupB; general nucleoside transport system permease protein +K23536 nupC; general nucleoside transport system permease protein +K23537 nupA; general nucleoside transport system ATP-binding protein +K23538 ELMOD; ELMO domain-containing protein +K23539 UNC119; protein unc-119 +K23540 GOLIM4; golgi integral membrane protein 4 +K23541 TMEM165, GDT1; Ca2+/H+ antiporter, TMEM165/GDT1 family +K23542 TMEM199; TMEM199 family protein +K23543 CCDC115; coiled-coil domain-containing protein 115 +K23544 SERINC1; serine incorporator 1 +K23545 yphF; sugar transport system substrate-binding protein +K23546 yphD; sugar transport system permease protein +K23547 yphE; sugar transport system ATP-binding protein +K23548 hupU; uptake hydrogenase small subunit [EC:1.12.99.6] +K23549 hupV; uptake hydrogenase large subunit [EC:1.12.99.6] +K23550 nanH; sialidase [EC:3.2.1.18] +K23551 FSCN1; fascin 1 +K23552 PGAP2; post-GPI attachment to proteins factor 2 +K23553 PGAP3, PER1; post-GPI attachment to proteins factor 3 +K23554 GRAMD4; GRAM domain-containing protein 4 +K23555 LMF1; lipase maturation factor 1 +K23556 sdmA; 4beta-methylsterol monooxygenase [EC:1.14.13.246] +K23557 sdmB; 3beta-hydroxysteroid-4beta-carboxylate 3-dehydrogenase (decarboxylating) [EC:1.1.1.417] +K23558 3BETAHSDD; plant 3beta-hydroxysteroid-4alpha-carboxylate 3-dehydrogenase [EC:1.1.1.418] +K23559 MIR19B; microRNA 19b +K23560 ZEB2; zinc finger homeobox protein 2 +K23561 CLK1_4; dual specificity protein kinase CLK1/4 [EC:2.7.12.1] +K23562 EMC1; ER membrane protein complex subunit 1 +K23563 EMC2, TTC35; ER membrane protein complex subunit 2 +K23564 EMC3, TMEM111; ER membrane protein complex subunit 3 +K23565 EMC4, TMEM85; ER membrane protein complex subunit 4 +K23566 MMGT1, EMG5; membrane magnesium transporter 1 +K23567 EMC6, TMEM93; ER membrane protein complex subunit 6 +K23568 EMC7; ER membrane protein complex subunit 7 +K23569 EMC8_9; ER membrane protein complex subunit 8/9 +K23570 EMC10; ER membrane protein complex subunit 10 +K23571 NOV, CCN3, IGFBP9; insulin-like growth factor-binding protein 9 +K23572 MIR34C; microRNA 34c +K23573 DSPP; dentin sialophosphoprotein +K23574 COCH; cochlin +K23575 IGFBP2; insulin-like growth factor-binding protein 2 +K23576 IGFBP4; insulin-like growth factor-binding protein 4 +K23577 IGFBP5; insulin-like growth factor-binding protein 5 +K23578 IGFBP1; insulin-like growth factor-binding protein 1 +K23579 IGFBP6; insulin-like growth factor-binding protein 6 +K23580 IGFBP7; insulin-like growth factor-binding protein 7 +K23581 SOX4; transcription factor SOX4 (SOX group C) +K23582 FOXP1; forkhead box protein P1 +K23583 KPNA3_4; importin subunit alpha-4/3 +K23584 SRA; resistance-associated protein +K23585 APOL1; apolipoprotein L1 +K23586 ssl7, set1; superantigen-like protein 7 +K23587 ssl5_11; superantigen-like protein 5/11 +K23588 MLLT6_10, AF17_10; protein AF-17/10 +K23589 PZP; pregnancy zone protein +K23590 CRP; complement regulatory protein +K23591 TS; trans-sialidase [EC:3.2.1.-] +K23592 PAI3; protease A inhibitor 3 +K23593 A2ML; alpha-2-macroglobulin-like protein +K23594 LXN; latexin +K23595 RARRES1; retinoic acid receptor responder protein 1 +K23596 PCSK1N; proSAAS +K23597 sspC; staphostatin B +K23598 iseA; iseA protein +K23599 SZL; secreted Xwnt8 inhibitor sizzled +K23600 TARDBP, TDP43; TAR DNA-binding protein 43 +K23601 SREHP; serine-rich protein +K23602 EhSTIRP; serine-threonine-isoleucine rich protein +K23603 SPINK6_7_9; serine protease inhibitor Kazal-type 6/7/9 +K23604 SPINK8; serine protease inhibitor Kazal-type 8 +K23605 SMAD3; mothers against decapentaplegic homolog 3 +K23606 SPINK10_11; serine protease inhibitor Kazal-type 10/11 +K23607 TMEFF1; tomoregulin-1 +K23608 TMEFF2; tomoregulin-2 +K23609 C9ORF72; guanine nucleotide exchange protein C9orf72 +K23610 WDR41; WD repeat-containing protein 41 +K23611 SMCR8; guanine nucleotide exchange protein SMCR8 +K23612 WASL; neural Wiskott-Aldrich syndrome protein +K23613 SPINK14; serine protease inhibitor Kazal-type 14 +K23614 SPIK7; ovomucoid +K23615 SPIK5; ovoinhibitor +K23616 ATXN1_1L; ataxin 1/1L +K23617 ACSF2; medium-chain acyl-CoA ligase, mitochondrial [EC:6.2.1.2] +K23618 AAE11_12; acyl-activating enzyme 11/12 [EC:6.2.1.2 6.2.1.-] +K23619 COL28A; collagen type XXVIII alpha +K23620 AMBP; protein AMBP +K23621 WFIKKN; WAP, Kazal, immunoglobulin, Kunitz and NTR domain-containing protein +K23622 EPPIN; eppin +K23623 WFDC8; WAP four-disulfide core domain protein 8 +K23624 PAPLN; papilin +K23625 ATXN2_2L; ataxin 2/2L +K23626 DCAF16; DDB1- and CUL4-associated factor 16 +K23627 ASQK; cyclopeptine synthase [EC:6.3.2.40] +K23628 TTLL10; tubulin--tyrosine ligase like protein 10 [EC:6.3.2.-] +K23629 ASAR; C6 transcription factor AsaR +K23630 ASAE; MFS transporter, MCT family, aspergillic acid transporter +K23631 ASAC; aspergillic acid biosynthesis nonribosomal peptide synthetase [EC:6.3.2.-] +K23632 ASAD; deoxyaspergillic acid monooxygenase [EC:1.-.-.-] +K23633 ASAB; aspergillic acid hydroxylase [EC:1.-.-.-] +K23634 ASAA; ankyrin-repeat domain containg transcription coregulator AsaA +K23635 WFDC1; WAP four-disulfide core domain protein 1 +K23636 WFDC2; WAP four-disulfide core domain protein 2 +K23637 WFDC3; WAP four-disulfide core domain protein 3 +K23638 SLPI, WFDC4; antileukoproteinase +K23639 WFDC5; WAP four-disulfide core domain protein 5 +K23640 WFDC6; WAP four-disulfide core domain protein 6 +K23641 WFDC12; WAP four-disulfide core domain protein 12 +K23642 PI3, WFDC14; elafin +K23643 LSM12; protein LSM12 +K23644 TYF; twenty-four +K23645 BAIAP2L2; BAI1-associated protein 2-like protein 2 +K23646 DTPA; ditryptophenaline biosynthesis nonribosomal peptide synthase [EC:6.3.2.-] +K23647 DTPB; ditryptophenaline biosynthesis N-methyltransferase [EC:2.1.1.-] +K23648 espJ; T3SS secreted effector ADP-ribosyltransferase EspJ +K23649 ABI1; abl interactor 1 +K23650 espB; LEE-encoded effector EspB +K23651 espT; T3SS secreted effector EspT +K23652 espW; T3SS secreted effector EspW +K23653 espM; T3SS effector EspM +K23654 nleE, ospZ; T3SS secreted effector NleE +K23655 nleC; T3SS secreted effector NleC +K23656 nleD; T3SS secreted effector NleD +K23657 nleB; T3SS secreted effector NleB +K23658 nleF; T3SS secreted effector NleF +K23659 espZ; LEE-encoded effector EspZ +K23660 cif; cell inhibiting factor +K23661 escI; type III secretion system protein +K23662 CYP98A9; cytochrome P450 family 98 subfamily A9 [EC:1.14.13.-] +K23663 MOSMO; modulator of smoothened protein +K23664 MEGF8; multipile epidermal growth factor-like domains protein 8 +K23665 FMQA; fumiquinazoline F synthetase [EC:6.3.2.-] +K23666 FMQB; fumiquinazoline F monooxygenase [EC:1.14.14.-] +K23667 FMQC; fumiquinazoline A synthase [EC:6.3.2.-] +K23668 FMQD; fumiquinazoline A oxidase [EC:1.5.3.-] +K23669 besD; L-lysine 4-chlorinase [EC:1.14.20.-] +K23670 besC; 4-chloro-allylglycine synthase [EC:1.14.99.-] +K23671 besB; L-2-amino-4-chloropent-4-enoate dechlorinase/desaturase [EC:4.5.1.-] +K23672 besA; L-propargylglycine--L-glutamate ligase [EC:6.3.2.-] +K23673 besE; L-gamma-glutamyl-L-propargylglycine hydroxylase [EC:1.14.11.-] +K23674 besF; terminal-alkyne amino-acid exporter +K23675 fmnP, ribU; riboflavin transporter +K23676 btsT; pyruvate/proton symporter +K23677 SPNS; MFS transporter, Spinster family, sphingosine-1-phosphate transporter +K23678 PQLC2, SLC66A1, LAAT1; solute carrier family 66 (lysosomal lysine-arginine transporter), member 1 +K23679 PQLC1, SLC66A2; solute carrier family 66, member 2 +K23680 PQLC3, SLC66A3; solute carrier family 66, member 3 +K23681 SLURP1; secreted Ly-6/uPAR-related protein 1 +K23682 SLURP2; secreted Ly-6/uPAR-related protein 2 +K23683 aglD; glycosyltransferase AglD [EC:2.4.1.-] +K23684 aglJ; dolichol-phosphate hexosyltransferase [EC:2.4.1.-] +K23685 aglI; glycosyltransferase AglI [EC:2.4.1.-] +K23686 aglE; glycosyltransferase AglE [EC:2.4.1.-] +K23687 RIN2_3; Ras and Rab interactor 2/3 +K23688 BCAR3, SH2D3B; breast cancer anti-estrogen resistance protein 3 +K23689 SH2D3A; SH2 domain-containing protein 3A +K23690 SH2D3C; SH2 domain-containing protein 3C +K23691 PKN2; serine/threonine-protein kinase N2 [EC:2.7.11.13] +K23692 PKN3; serine/threonine-protein kinase N3 [EC:2.7.11.13] +K23693 CCDC78; coiled-coil domain-containing protein 78 +K23694 GRAP; GRB2-related adapter protein +K23695 GRB7; growth factor receptor-bound protein 7 +K23696 GRB14; growth factor receptor-bound protein 14 +K23697 SHB_D_E_F; SH2 domain-containing adapter protein B/D/E/F +K23698 SLA; src-like-adapter +K23699 HSH2D; hematopoietic SH2 domain-containing protein +K23700 SET2; [histone H3]-lysine36 N-trimethyltransferase [EC:2.1.1.359] +K23701 SH2D5; SH2 domain-containing protein 5 +K23702 MACC1; metastasis-associated in colon cancer protein 1 +K23703 MIA2, CTAGE5; melanoma inhibitory activity protein 2 +K23704 MIA3, TANGO1; transport and golgi organization protein 1 +K23705 SASH1; SAM and SH3 domain-containing protein 1 +K23706 SASH3; SAM and SH3 domain-containing protein 3 +K23707 SAMSN1; SAM domain-containing protein SAMSN-1 +K23708 SORBS2; sorbin and SH3 domain-containing protein 2 +K23709 SORBS3; vinexin +K23710 ABI3; abi gene family member 3 +K23711 STAC; SH3 and cysteine-rich domain-containing protein +K23712 STAC2; SH3 and cysteine-rich domain-containing protein 2 +K23713 STAC3; SH3 and cysteine-rich domain-containing protein 3 +K23714 SH3D19; SH3 domain-containing protein 19 +K23715 SH3D21; SH3 domain-containing protein 21 +K23716 VXN; vexin +K23717 SLC23A2, SVCT2; solute carrier family 23 (nucleobase transporter), member 2 +K23718 SON; protein SON +K23719 SAC3; nuclear mRNA export protein SAC3 +K23720 UVSSA; UV-stimulated scaffold protein A +K23721 iroE; apo-salmochelin esterase [EC:3.1.1.107] +K23722 pfeE; iron(III)-enterobactin esterase [EC:3.1.1.108] +K23723 iroD; iron(III)-salmochelin esterase [EC:3.1.1.109] +K23724 TPS1; (2E,6E)-hedycaryol/valerianol synthase [EC:4.2.3.174 4.2.3.204] +K23725 iroB; enterobactin C-glucosyltransferase [EC:2.4.1.369] +K23726 agaA; Nalpha-acyl-L-glutamine aminoacylase [EC:3.5.1.133] +K23727 CERS5_6, LASS5_6; sphingoid base N-palmitoyltransferase [EC:2.3.1.291] +K23728 CCDC65, DRC2; dynein regulatory complex subunit 2 +K23729 CCDC39; coiled-coil domain-containing protein 39 +K23730 CCDC40; coiled-coil domain-containing protein 40 +K23731 CCDC103; coiled-coil domain-containing protein 103 +K23732 CCDC63_114; coiled-coil domain-containing protein 63/114 +K23733 ODAD3, CCDC151; outer dynein arm-docking complex subunit 3 +K23734 lipM; lipoyl(octanoyl) transferase [EC:2.3.1.181] +K23735 LIPT2, LIP2; lipoyl(octanoyl) transferase 2 [EC:2.3.1.181] +K23736 PHM8; 2-lysophosphatidate phosphatase [EC:3.1.3.106] +K23737 NPC3; 2-lysophosphatidate phosphatase [EC:3.1.3.106] +K23738 chcA; cyclohexane-1-carbonyl-CoA reductase (NADP+) [EC:1.3.1.120] +K23739 SH3BP5; SH3-domain binding protein 5 +K23740 SH3BGR; SH3 domain-binding glutamic acid-rich protein +K23741 MAN1B, MNS3; endoplasmic reticulum Man9GlcNAc2 1,2-alpha-mannosidase [EC:3.2.1.209] +K23742 UTY, KDM6C; lysine-specific demethylase 6C [EC:1.14.11.68] +K23743 E3.4.24.33; peptidyl-Asp metalloendopeptidase [EC:3.4.24.33] +K23744 aurA; aureothin polyketide synthase system AurA [EC:2.3.1.289] +K23745 aurB; aureothin polyketide synthase system AurB [EC:2.3.1.289] +K23746 aurC; aureothin polyketide synthase system AurC [EC:2.3.1.289] +K23747 norA; spectinabilin polyketide synthase system NorA [EC:2.3.1.290] +K23748 norB; spectinabilin polyketide synthase system NorB [EC:2.3.1.290] +K23749 norC; spectinabilin polyketide synthase system NorC [EC:2.3.1.290] +K23750 LIP3, AIM22; octanoyl-CoA:protein transferase [EC:2.3.1.-] +K23751 TRIOBP; TRIO and F-actin-binding protein +K23752 cmlA; 4-amino-L-phenylalanyl-[CmlP-peptidyl-carrier-protein] 3-hydroxylase [EC:1.14.99.65] +K23753 ppk2, pap; AMP-polyphosphate phosphotransferase [EC:2.7.4.33] +K23754 EDS; eudesmane-5,11-diol synthase [EC:4.2.3.197] +K23755 SCO2; protein SCO2 +K23756 ACSM1, LAE; medium-chain acyl-CoA ligase / lipoate-activating enzyme [EC:6.2.1.2] +K23757 HRNR, FLG3, S100A18; hornerin +K23758 S100A1; protein S100-A1 +K23759 S100A2; protein S100-A2 +K23760 S100A3, S100E; protein S100-A3 +K23761 S100A4; protein S100-A4 +K23762 S100A5, S100D; protein S100-A5 +K23763 lipL2, lplA2; lipoyl-AMP:Nepsilon-lysine lipoyltransferase / lipoyl(octanoyl) transferase [EC:2.3.1.181] +K23764 S100A6; protein S100-A6 +K23765 S100A11_13, S100C; protein S100-A11/13 +K23766 S100A12; protein S100-A12 +K23767 S100A14; protein S100-A14 +K23768 S100A16, S100F; protein S100-A16 +K23769 TCHHL1, S100A17; trichohyalin-like protein 1 +K23770 S100B; protein S100-B +K23771 S100P; protein S100-P +K23772 S100Z; protein S100-Z +K23773 hdfR; LysR family transcriptional regulator, flagellar master operon regulator +K23774 ccpN; DeoR family transcriptional regulator, catabolite repression regulator +K23775 ohrR; MarR family transcriptional regulator, organic hydroperoxide resistance regulator +K23776 tnrA; MerR family transcriptional regulator, global nitrogen regulator +K23777 cecR; TetR/AcrR family transcriptional regulator, regulator of cefoperazone and chloramphenicol sensitivity +K23778 rcdA; TetR/AcrR family transcriptional regulator, regulator of biofilm formation and stress response +K23779 sutR; XRE family transcriptional regulator, regulator of sulfur utilization +K23780 GAB3; GRB2-associated-binding protein 3 +K23781 ADAP, CENTA; Arf-GAP with dual PH domain-containing protein +K23782 AFAP1L; actin filament associated protein 1-like +K23783 CNKSR1, CNK1; connector enhancer of kinase suppressor of Ras 1 +K23784 CNKSR3, CNK3; connector enhancer of kinase suppressor of Ras 3 +K23785 RCK2, CLK1; serine/threonine-protein kinase RCK2 [EC:2.7.11.1] +K23786 exoA; 5'-3' exonuclease [EC:3.1.11.-] +K23787 DMA1_2; E3 ubiquitin-protein ligase DMA1/2 [EC:2.3.2.27] +K23788 TUL1, FLY1_2; transmembrane E3 ubiquitin-protein ligase [EC:2.3.2.27] +K23789 RNF145; E3 ubiquitin-protein ligase RNF145 [EC:2.3.2.27] +K23790 GSTP; glutathione S-transferase P [EC:2.5.1.18] +K23791 PHETA; sesquipedalian +K23792 MPRIP; myosin phosphatase Rho-interacting protein +K23793 PHLDA; pleckstrin homology-like domain family A +K23794 PHLDB; pleckstrin homology-like domain family B +K23795 IPCEF1; interactor protein for cytohesin exchange factors 1 +K23796 PLEKHA1_2; pleckstrin homology domain-containing family A member 1/2 +K23797 PLEKHA4_5_6_7; pleckstrin homology domain-containing family A member 4/5/6/7 +K23798 ARHGEF39; Rho guanine nucleotide exchange factor 39 +K23799 YRA2; RNA annealing protein YRA2 +K23800 XXYLT1; xylosyl alpha-1,3-xylosyltransferase [EC:2.4.2.62] +K23801 PCID2, THP1; nuclear mRNA export protein PCID2/THP1 +K23802 LENG8, THP3; SAC3 family protein LENG8/THP3 +K23803 YY1AP1; YY1-associated protein 1 +K23804 GON4L; GON-4-like protein +K23805 CYP71A16; marneral oxidase [EC:1.14.-.-] +K23806 CYP71BE5; alpha-guaiene 2-oxidase +K23807 CYP71D353; cytochrome P450 family 71 subfamily D353 +K23808 CYP72A67; cytochrome P450 family 72 subfamily A67 [EC:1.14.13.-] +K23809 CYP72A68; cytochrome P450 family 72 subfamily A68 [EC:1.14.14.-] +K23810 CYP76F14; (E)-8-carboxylinalool synthase [EC:1.14.14.-] +K23811 CYP147G1; fatty acid omega-hydroxylase [EC:1.14.-.-] +K23812 CYP150A5; cytochrome P450 family 150 subfamily A5 [EC:1.14.-.-] +K23813 CYP521A1; cytochrome P450 family 521 subfamily A1 [EC:1.14.-.-] +K23814 CYP705A; cytochrome P450 family 705 subfamily A [EC:1.14.-.-] +K23815 CFHR1_2_3; complement factor H-related protein 1/2/3 +K23816 CFHR4; complement factor H-related protein 4 +K23817 CFHR5; complement factor H-related protein 5 +K23818 SRPX; sushi repeat-containing protein SRPX +K23819 SUSD1; sushi domain-containing protein 1 +K23820 SUSD2; sushi domain-containing protein 2 +K23821 SUSD3; sushi domain-containing protein 3 +K23822 SUSD4; sushi domain-containing protein 4 +K23823 SUSD5; sushi domain-containing protein 5 +K23824 SUSD6; sushi domain-containing protein 6 +K23825 K23825; F420H(2)-dependent biliverdin reductase [EC:1.3.98.-] +K23826 TIFA; TRAF-interacting protein with FHA domain-containing protein A +K23827 ospI; glutamine deamidase +K23828 ipaH1.4_2.5; E3 ubiquitin-protein ligase IpaH1.4/2.5 [EC:2.3.2.27] +K23829 TNIP1, ABIN1; TNFAIP3-interacting protein 1 +K23830 ipaH4.5; E3 ubiquitin-protein ligase IpaH4.5 [EC:2.3.2.27] +K23831 ipaH0722; E3 ubiquitin-protein ligase IpaH0722 [EC:2.3.2.27] +K23832 ipaJ; cysteine protease IpaJ [EC:3.4.22.-] +K23833 ospC; secreted effector OspC +K23834 ipaH7.8; E3 ubiquitin-protein ligase IpaH7.8 [EC:2.3.2.27] +K23835 TIFB; TRAF-interacting protein with FHA domain-containing protein B +K23836 TNIP3, ABIN3; TNFAIP3-interacting protein 3 +K23837 CIB2; calcium and integrin-binding protein 2 +K23838 CIB3; calcium and integrin-binding protein 3 +K23839 CIB4; calcium and integrin-binding protein 4 +K23840 GlcAT-P; beta-1,3-glucuronyltransferase P [EC:2.4.1.135 2.4.1.-] +K23841 CLRN; clarin +K23842 lpdA; NAD(P)H dehydrogenase (quinone) [EC:1.6.5.2] +K23843 MICU3; calcium uptake protein 3, mitochondrial +K23844 NSMF; NMDA receptor synaptonuclear signaling and neuronal migration factor +K23845 KIFBP; KIF-binding protein +K23846 HPCA; neuron-specific calcium-binding protein hippocalcin +K23847 HPCAL1; hippocalcin-like protein 1 +K23848 HPCAL4; hippocalcin-like protein 4 +K23849 CABP7_8, CALN2_1; calcium-binding protein 7/8 +K23850 CRNN; cornulin +K23851 EFCAB6; EF-hand calcium-binding domain-containing protein 6 +K23852 EFCAB7; EF-hand calcium-binding domain-containing protein 7 +K23853 EFCAB11; EF-hand calcium-binding domain-containing protein 11 +K23854 NECAB; N-terminal EF-hand calcium-binding protein +K23855 KCNIP; Kv channel-interacting protein +K23856 GPX; peroxiredoxin [EC:1.11.1.24] +K23857 PLEKHB; pleckstrin homology domain-containing family B +K23858 PLEKHF; pleckstrin homology domain-containing family F +K23859 PLEKHG1_2_3; pleckstrin homology domain-containing family G member 1/2/3 +K23860 PLEKHG4; pleckstrin homology domain-containing family G member 4 +K23861 PLEKHG6; pleckstrin homology domain-containing family G member 6 +K23862 NEPS2; (+)-cis,trans-nepetalactol synthase [EC:5.5.1.34] +K23863 OSTM1; osteopetrosis-associated transmembrane protein 1 (chloride channel 7 beta subunit) +K23864 PNKD; paroxysmal nonkinesiogenic dyskinesia protein +K23865 MYB30; transcription factor MYB30 +K23866 hopD2; effector protein HopD2 [EC:3.1.3.48] +K23867 ECM1; extracellular matrix protein 1 +K23868 FAM92; protein FAM92 +K23869 GALS; galactan beta-1,4-galactosyltransferase [EC:2.4.1.-] +K23870 QUA2, TSD2; putative pectin methyltransferase [EC:2.1.1.-] +K23871 CGR; putative pectin methylesterase [EC:2.1.1.-] +K23872 QUA3; putative homogalacturonan methyltransferase [EC:2.1.1.-] +K23873 sodD; sodorifen synthase [EC:4.2.3.205] +K23874 cmlD, papB; 4-amino-4-deoxychorismate mutase [EC:5.4.99.67] +K23875 tmlU; marinolic acid---CoA ligase [EC:6.2.1.60] +K23876 hgdC, fldI, hadI, lcdC; (R)-2-hydroxyacyl-CoA dehydratese activating ATPase [EC:5.6.1.9] +K23877 AXY4, AXY4L; xyloglucan O-acetyltransferase +K23878 AAGAB; alpha- and gamma-adaptin-binding protein p34 +K23879 GRN; progranulin +K23880 RETREG; reticulophagy regulator +K23881 TECPR2; tectonin beta-propeller repeat-containing protein 2 +K23882 CISD2; CDGSH iron-sulfur domain-containing protein 2 +K23883 EPG5; ectopic P granules protein 5 +K23884 WAC; WW domain-containing adapter protein with coiled-coil +K23885 CISD1; CDGSH iron-sulfur domain-containing protein 1 +K23886 CISD3; CDGSH iron-sulfur domain-containing protein 3 +K23887 UAPA_C; uric acid-xanthine permease +K23888 ROQA; histidyltryptophyldiketopiperazine synthetase [EC:6.3.2.-] +K23889 ROQD; roquefortine prenyltransferase [EC:2.5.1.-] +K23890 ROQM; mycotoxins biosynthesis FAD-dependent monooxygenase [EC:1.14.14.-] +K23891 ROQN; glandicoline B O-methyltransferase [EC:2.1.1.-] +K23892 ROQO; mycotoxins biosynthesis cytochrome P450 monooxygenase RoqO [EC:1.14.14.-] +K23893 LHFPL; LHFPL tetraspan subfamily member protein +K23894 MFSD2A; sodium-dependent lysophosphatidylcholine symporter 1 +K23895 MFSD2B; major facilitator superfamily domain-containing protein 2B +K23896 PRRT1; proline-rich transmembrane protein 1 +K23897 PRRT2; proline-rich transmembrane protein 2 +K23898 RCN1; reticulocalbin-1 +K23899 RCN2; reticulocalbin-2 +K23900 RCN3; reticulocalbin-3 +K23901 CALU; calumenin +K23902 PDCD6; programmed cell death protein 6 +K23903 SYNDIG1; synapse differentiation-inducing gene protein 1 +K23904 TMEM91; transmembrane protein 91 +K23905 PEF1; peflin +K23906 SYNDIG1L; synapse differentiation-inducing gene protein 1-like +K23907 TMIE; transmembrane inner ear expressed protein +K23908 CALB2; calretinin +K23909 CAPS; calcyphosin +K23910 TFR2; transferrin receptor protein 2 +K23911 RBP3; retinol-binding protein 3 +K23912 FSTL1; follistatin-related protein 1 +K23913 FSTL3; follistatin-related protein 3 +K23914 FSTL4; follistatin-related protein 4 +K23915 FSTL5; follistatin-related protein 5 +K23916 nifL; nitrogen fixation regulatory protein +K23917 POF1B; protein POF1B +K23918 NEXN; nexilin +K23919 NAV3; neuron navigator 3 +K23920 FGF14, FHF4; fibroblast growth factor 14 +K23921 EFHD1; EF-hand domain-containing family member D1 +K23922 EFHD2; EF-hand domain-containing family member D2 +K23923 GCA; grancalcin +K23924 SRI; sorcin +K23925 OCM; oncomodulin +K23926 PVALB; parvalbumin alpha +K23927 RPTN; repeatin +K23928 SCGN; secretagogin +K23929 EFHB; EF-hand domain-containing family member B +K23930 FAM83; protein FAM83 +K23931 FAM83H; protein FAM83H +K23932 SPTBN2; spectrin beta, non-erythrocytic 2 +K23933 ATXN8OS; ATXN8 opposite strand lncRNA +K23934 AHNAK; neuroblast differentiation-associated protein AHNAK +K23935 ACBD3; golgi resident protein GCP60 +K23936 sopD2; secreted effector protein SopD2 +K23937 STX10; syntaxin 10 +K23938 FHOD1; FH1/FH2 domain-containing protein 1 +K23939 FHOD3, FHOS2; FH1/FH2 domain-containing protein 3 +K23940 KPNA1; importin subunit alpha-5 +K23941 pipA, gogA, gtgA; PipA/GogA/GtgA family effector protease +K23942 gogB; Gifsy-1 prophage leucine-rich repeat protein +K23943 sseK3; type III secretion system effector arginine glycosyltransferase +K23944 sseK1; type III secretion system effector arginine glycosyltransferase +K23945 sseK2; type III secretion system effector +K23946 slrP; E3 ubiquitin-protein ligase SlrP [EC:2.3.2.27] +K23947 DAO; 2-oxoglutarate-dependent dioxygenase [EC:1.14.11.-] +K23948 E1.6.5.9; NADH:quinone reductase (non-electrogenic) [EC:1.6.5.9] +K23949 SAMD9, SAMD9L; sterile alpha motif domain-contaning protein 9 +K23950 MAGEL2; MAGE-like protein 2 +K23951 DYM; dymeclin +K23952 VMA21; vacuolar ATPase assembly integral membrane protein VMA21 +K23953 PCO; plant cysteine oxidase [EC:1.13.11.-] +K23954 FRMPD1; FERM and PDZ domain-containing protein 1 +K23955 FRMPD2; FERM and PDZ domain-containing protein 2 +K23956 FRMPD4; FERM and PDZ domain-containing protein 4 +K23957 FMNL; formic-like protein +K23958 INF2; inverted formin-2 +K23959 FRMPD3; FERM and PDZ domain-containing protein 3 +K23960 METTL14; mRNA m6A methyltransferase non-catalytic subunit +K23961 EPB41L1_2_3; band 4.1-like protein 1/2/3 +K23962 EPB41L4A, NBL4; band 4.1-like protein 4A +K23963 EPB41L5; band 4.1-like protein 5 +K23964 CCNQ, FAM58A; cyclin-Q +K23965 RSPH3; radial spoke head protein 3 +K23966 CCNL; cyclin L +K23967 SLC12A5, KCC2; solute carrier family 12 (potassium/chloride transporter), member 5 +K23968 AmiISY; 8-oxogeranial reductase [EC:1.3.1.123] +K23969 FRMD3_5; FERM domain-containing protein 3/5 +K23970 FRMD4; FERM domain-containing protein 4 +K23971 FRMD7; FERM domain-containing protein 7 +K23972 FRMD8; FERM domain-containing protein 8 +K23973 sodC; pre-sodorifen synthase [EC:2.1.1.363] +K23974 gtfJ; mutansucrase [EC:2.4.1.372] +K23975 E2.8.1.16; L-aspartate semialdehyde sulfurtransferase [EC:2.8.1.16] +K23976 K23976; L-aspartate semialdehyde sulfurtransferase ferredoxin +K23977 GTK; L-glutamine---4-(methylsulfanyl)-2-oxobutanoate aminotransferase [EC:2.6.1.117] +K23978 IAH1; isoamyl acetate esterase [EC:3.1.1.112] +K23979 MNL1; endoplasmic reticulum Man8GlcNAc2 1,2-alpha-mannosidase [EC:3.2.1.210] +K23980 tpdA; cysteinylglycine-S-conjugate dipeptidase [EC:3.4.13.23] +K23981 E2.4.1.373; alpha-(1->2) branching sucrase [EC:2.4.1.373] +K23982 MTP1_2; beta-1,2-mannooligosaccharide synthase [EC:2.4.1.374] +K23983 amiN; amicoumacin kinase [EC:2.7.1.230] +K23984 amiO; amicoumacin phosphatase [EC:3.1.3.107] +K23985 pilOP; type IV pilus assembly protein PilOP +K23986 flaCE; archaeal flagellar protein FlaCE +K23987 rfbCD, rmlCD; dTDP-4-dehydrorhamnose 3,5-epimerase/reductase [EC:5.1.3.13 1.1.1.133] +K23988 arsR-arsC; ArsR family transcriptional regulator, arsenate/arsenite/antimonite-responsive transcriptional repressor / arsenate reductase (thioredoxin) [EC:1.20.4.4] +K23989 lytD, lytB; mannosyl-glycoprotein endo-beta-N-acetylglucosaminidase [EC:3.2.1.96] +K23990 NEPS1; nepetalactol dehydrogenase / (+)-cis,trans-nepetalactol synthase [EC:1.1.1.419 5.5.1.34] +K23991 ptsA, fryA; multiphosphoryl transfer protein [EC:2.7.3.9 2.7.1.-] +K23992 K23992; 1L-myo-inositol 1-phosphate cytidylyltransferase / CDP-L-myo-inositol myo-inositolphosphotransferase [EC:2.7.7.74 2.7.8.34] +K23993 fruB; multiphosphoryl transfer protein [EC:2.7.3.9 2.7.1.202] +K23994 SLC9B1_2; solute carrier family 9B (sodium/hydrogen exchanger), member 1/2 +K23995 xoxF; lanthanide-dependent methanol dehydrogenase [EC:1.1.2.10] +K23996 phnY; methylphosphonate hydroxylase [EC:1.14.11.71] +K23997 nnr; ADP-dependent NAD(P)H-hydrate dehydratase / NAD(P)H-hydrate epimerase [EC:4.2.1.136 5.1.99.6] +K23998 PPOX; pyridoxal 5'-phosphate synthase / NAD(P)H-hydrate epimerase [EC:1.4.3.5 5.1.99.6] +K23999 fom1; phosphoenolpyruvate phosphomutase / 2-hydroxyethylphosphonate cytidylyltransferase [EC:5.4.2.9 2.7.7.104] +K24000 fomD; HPP-CMP hydrolase [EC:3.6.1.-] +K24001 cyrI; 7-deoxycylindrospermopsin hydroxylase [EC:1.14.11.70] +K24002 cmlC, papC; 4-amino-4-deoxyprephenate dehydrogenase [EC:1.3.1.121] +K24003 stc2, hpbB; stachydrine N-demethylase [EC:1.14.13.247] +K24004 stc4, hpbC; stachydrine N-demethylase, reductase component +K24005 stc3; stachydrine N-demethylase, flavoprotein component +K24006 PAM; peptidylglycine monooxygenase / peptidylamidoglycolate lyase [EC:1.14.17.3 4.3.2.5] +K24007 soxD; cytochrome aa3-type oxidase subunit SoxD +K24008 soxC; cytochrome aa3-type oxidase subunit III +K24009 soxB; cytochrome aa3-type oxidase subunit I [EC:7.1.1.4] +K24010 soxA; cytochrome aa3-type oxidase subunit II [EC:7.1.1.4] +K24011 soxM; cytochrome aa3-type oxidase subunit I/III [EC:7.1.1.4] +K24012 acdAB; acetate---CoA ligase (ADP-forming) [EC:6.2.1.13] +K24013 TMEM38, TRIC; trimeric intracellular cation channel +K24014 UNC79; protein unc-79 +K24015 UNC80; protein unc-80 +K24016 acdA; 3-(aryl)acrylate reductase [EC:1.3.8.15] +K24017 priA; phosphoribosyl isomerase A [EC:5.3.1.16 5.3.1.24] +K24018 K24018; cyclohexadieny/prephenate dehydrogenase / 3-phosphoshikimate 1-carboxyvinyltransferase [EC:1.3.1.43 1.3.1.12 2.5.1.19] +K24019 FCGRT; IgG receptor FcRn large subunit p51 +K24020 PLEKHH; pleckstrin homology domain-containing family H +K24021 PLEKHJ; pleckstrin homology domain-containing family J +K24022 PLEKHO; pleckstrin homology domain-containing family O +K24023 RALGPS; Ras-specific guanine nucleotide-releasing factor RalGPS +K24024 RTKN; rhotekin +K24025 STAP1; signal-transducing adaptor protein 1 +K24026 STAP2; signal-transducing adaptor protein 2 +K24027 MELT; protein melted +K24028 DMR6, DLO; salicylic acid 3-hydroxylase [EC:1.14.11.-] +K24029 OGFOD1, TPA1; prolyl 3-hydroxylase /prolyl 3,4-dihydroxylase [EC:1.14.11.-] +K24030 ZMYND10; zinc finger MYND domain-containing protein 10 +K24031 TMPO; lamina-associated polypeptide 2 +K24032 SH3PXD2; SH3 and PX domain-containing protein 2 +K24033 pafBC; proteasome accessory factor BC +K24034 SPE3-LYS9; spermidine synthase / saccharopine dehydrogenase (NADP+, L-glutamate-forming) [EC:2.5.1.16 1.5.1.10] +K24035 APBA3, 11L2; amyloid beta A4 precursor protein-binding family A member 3 +K24036 DOK3; docking protein 3 +K24037 DOK4_5_6, IRS5_6; docking protein 4/5/6 +K24038 DOK7; docking protein 7 +K24039 FRS3; fibroblast growth factor receptor substrate 3 +K24040 ecfTA; energy-coupling factor transport system permease/ATP-binding protein [EC:7.-.-.-] +K24041 yxeI; penicillin V amidase [EC:3.5.1.11] +K24042 yitJ; methionine synthase / methylenetetrahydrofolate reductase (NADH) [EC:2.1.1.13 1.5.1.54] +K24043 TMSB15; thymosin beta 15 +K24044 RGPD; RANBP2-like and GRIP domain-containing protein +K24045 JMY; junction-mediating and -regulatory protein +K24046 COBLL1; cordon-bleu protein-like 1 +K24047 ESPN; espin +K24048 MPP2_6; MAGUK p55 subfamily member 2/6 +K24049 MPP3_7; MAGUK p55 subfamily member 3/7 +K24050 DLG5; discs large protein 5 +K24051 SPRTN; SprT-like domain-contaning protein Spartan +K24052 RBM20; RNA-binding protein 20 +K24053 GRASP; general receptor for phosphoinositides 1-associated scaffold protein +K24054 GOPC; golgi-associated PDZ and coiled-coil motif-containing protein +K24055 LRRC7; leucine-rich repeat-containing protein 7 +K24056 PDZD4; PDZ domain-containing protein 4 +K24057 PDZK1, PDZD1; DZ domain-containing protein 1 +K24058 PDZD2; PDZ domain-containing protein 2 +K24059 PDZD3; PDZ domain-containing protein 3 +K24060 PDZD8; PDZ domain-containing protein 8 +K24061 PDZD11; PDZ domain-containing protein 11 +K24062 PICK1; PRKCA-binding protein +K24063 SNTA; alpha-syntrophin +K24064 SNTB; beta-syntrophin +K24065 SNTG; gamma-syntrophin +K24066 SYNPO2; synaptopodin-2 +K24067 TAX1BP3; Tax1-binding protein 3 +K24068 MEGF10_11; multiple epidermal growth factor-like domains protein 10/11 +K24069 PITPNM; membrane-associated phosphatidylinositol transfer protein +K24070 PARP1; poly [ADP-ribose] polymerase 1 [EC:2.4.2.30] +K24071 gsmt-sdmt; glycine/sarcosine/dimethylglycine N-methyltransferase [EC:2.1.1.156 2.1.1.157] +K24072 xpf; positive control factor +K24073 cnrH; RNA polymerase sigma factor CnrH +K24074 PGRP-LE; peptidoglycan recognition protein LE +K24075 PGRP-LC; peptidoglycan recognition protein LC +K24076 PGRP-LB; peptidoglycan-recognition protein LB [EC:3.5.1.28] +K24077 PGRP-LF; peptidoglycan-recognition protein LF +K24078 cnrR, cnrX; nickel and cobalt resistance protein CnrR +K24079 cnrY; nickel and cobalt resistance protein CnrY +K24080 LEMD2; LEM domain-contaning protein 2 +K24081 ZMYND15; zinc finger MYND domain-containing protein 15 +K24082 pgrR; LysR family transcriptional regulator, regulator of peptidoglycan recycling +K24083 ABHD13; abhydrolase domain-containing protein 13 [EC:3.-.-.-] +K24084 aidA; quorum-quenching protein AidA +K24085 estD; esterase [EC:3.1.1.1] +K24086 EIF4H; translation initiation factor 4H +K24087 rpnB; recombination-promoting nuclease RpnB [EC:3.1.21.-] +K24088 rpnC; recombination-promoting nuclease RpnC [EC:3.1.21.-] +K24089 rpnD; recombination-promoting nuclease RpnD [EC:3.1.21.-] +K24090 rpnE; recombination-promoting nuclease RpnE +K24091 OBI1; ORC ubiquitin ligase 1 [EC:2.3.2.27] +K24092 PGRP-LA; peptidoglycan recognition protein LA +K24093 PGRP-LD; peptidoglycan recognition protein LD +K24094 HS1BP3; HCLS1-binding protein 3 +K24095 NISCH; nischarin +K24096 PGRP-SB; peptidoglycan recognition protein SB [EC:3.5.1.28] +K24097 PGRP-SD; peptidoglycan recognition protein SD +K24098 LMO1_3; rhombotin-1/3 +K24099 LMO4; LIM domain transcription factor LMO4 +K24100 E3.2.1.213; galactan exo-1,6-beta-galactobiohydrolase (non-reducing end) [EC:3.2.1.213] +K24101 vabF; L-arginine---[L-arginyl-carrier protein] ligase [EC:6.2.1.63] +K24102 folCP; dihydrofolate synthase / dihydropteroate synthase [EC:6.3.2.12 2.5.1.15] +K24103 UGT3A; UDP-glycosyltransferase [EC:2.4.1.-] +K24104 GPN; GPN-loop GTPase +K24105 mglA; mutual gliding-motility protein MglA +K24106 N; SARS coronavirus nucleocapsid protein +K24107 GEX; MFS transporter, SIT family, glutathione exchanger +K24108 asbA; spermidine-citrate ligase [EC:6.3.2.-] +K24109 asbB; 3,4-dihydroxybenzoyl-citryl-spermidine/N-citryl-spermidine--spermidine ligase [EC:6.3.2.-] +K24110 asbC; 3,4-dihydroxybenzoate---[aryl-carrier protein] ligase [EC:6.2.1.62] +K24111 asbD; aryl carrier protein AsbD +K24112 asbE; petrobactin synthase [EC:2.-.-.-] +K24113 PCL6_7; PHO85 cyclin-6/7 +K24114 PCL8_10; PHO85 cyclin-8/10 +K24115 RANBP17; Ran-binding protein 17 +K24116 scmK; N-acetyl-S-(2-succino)cysteine monooxygenase [EC:1.14.-.-] +K24117 scmL; S-(2-succino)cysteine N-acetyltransferase [EC:2.3.1.-] +K24118 atsB, chuR, aslB; serine-type anaerobic sulfatase-maturating enzyme [EC:1.1.98.7] +K24119 ahpC; NADH-dependent peroxiredoxin subunit C [EC:1.11.1.26] +K24120 ahpE; mycoredoxin-dependent peroxiredoxin [EC:1.11.1.29] +K24121 MPO1; 2-hydroxy fatty acid dioxygenase [EC:1.14.18.12] +K24122 ctmAB; limonene dehydrogenase [EC:1.17.99.8] +K24123 ARMC2; armadillo repeat-containing protein 2 +K24124 ARMC3; armadillo repeat-containing protein 3 +K24125 ODAD2, ARMC4; outer dynein arm-docking complex subunit 2 +K24126 ahpC; lipoyl-dependent peroxiredoxin subunit C [EC:1.11.1.28] +K24127 MAGE; melanoma-associated antigen +K24128 NEL1; GTPase-activating protein NEL1 +K24129 K24129; glutaredoxin-dependent peroxiredoxin [EC:1.11.1.25] +K24130 K24130; glutaredoxin-dependent peroxiredoxin [EC:1.11.1.25] +K24131 prsW; protease PrsW [EC:3.4.-.-] +K24132 Sp7; serine protease 7 [EC:3.4.21.-] +K24133 Sb; serine proteinase stubble [EC:3.4.21.-] +K24134 ZUP1, ZUFSP; zinc finger-containing ubiquitin peptidase 1 [EC:3.4.19.12] +K24135 MORC; MORC family CW-type zinc finger protein +K24136 pgdX; glutathione-dependent peroxiredoxin [EC:1.11.1.27] +K24137 PRX1; glutaredoxin/glutathione-dependent peroxiredoxin [EC:1.11.1.25 1.11.1.27] +K24138 prx3; glutaredoxin/glutathione-dependent peroxiredoxin [EC:1.11.1.25 1.11.1.27] +K24139 PILS, ECM3; auxin efflux carrier family protein +K24140 PRXII; glutaredoxin-dependent peroxiredoxin [EC:1.11.1.25] +K24141 STARD7; StAR-related lipid transfer protein 7, mitochondrial +K24142 STARD10; StAR-related lipid transfer protein 10 +K24143 LDB2; LIM domain-binding protein 2 +K24144 NHS; Nance-Horan syndrome protein and NHS-like proteins +K24145 BHLHA9; class A basic helix-loop-helix protein 9 +K24146 BNC; zinc finger protein basonuclin +K24147 entH; proofreading thioesterase EntH +K24148 RNF151; RING finger protein 151 +K24149 pp1ab; Coronaviridae replicase polyprotein 1ab +K24150 M; SARS coronavirus membrane protein +K24151 E; SARS coronavirus envelope small membrane protein +K24152 S; SARS coronavirus spike glycoprotein +K24153 blaOXY; beta-lactamase class A OXY [EC:3.5.2.6] +K24154 UFSP1; Ufm1-specific protease 1 +K24155 DMXL, DMX, RAV1; rabconnectin-3a +K24156 GFRAL; GDNF family receptor alpha-like +K24157 prxII; thioredoxin-dependent peroxiredoxin [EC:1.11.1.24] +K24158 prx; thioredoxin-dependent peroxiredoxin [EC:1.11.1.24] +K24159 blaLAP; beta-lactamase class A LAP [EC:3.5.2.6] +K24160 NHA1, SOD2; sodium/hydrogen antiporter +K24161 blaGOP; beta-lactamase class B GOB [EC:3.5.2.6] +K24162 blaBlaB; beta-lactamase class B BlaB [EC:3.5.2.6] +K24163 nhaK; monovalent cation/hydrogen antiporter +K24164 TPRN; taperin +K24165 PCARE; photoreceptor cilium actin regulator +K24166 ARMC6; armadillo repeat-containing protein 6 +K24167 ARMC10; armadillo repeat-containing protein 10 +K24168 ARMC12; armadillo repeat-containing protein 12 +K24169 THADA, ARMC13; thyroid adenoma-associated protein +K24170 ONECUT2; one cut domain family member 2 +K24171 ONECUT3; one cut domain family member 3 +K24172 CAND2, TIP120B; cullin-associated NEDD8-dissociated protein 2 +K24173 MPND; MPN domain-containing protein +K24174 METTL4; N(6)-adenine-specific DNA methyltransferase [EC:2.1.1.72] +K24175 MFSD5; MFS transporter, MFS domain-containing protein family, molybdate-anion transporter +K24176 SERINC2; serine incorporator 2 +K24177 SERINC4; serine incorporator 4 +K24178 TTC21A, IFT139A; tetratricopeptide repeat protein 21A +K24179 CYP72A61; cytochrome P450 family 72 subfamily A61 [EC:1.14.14.-] +K24180 mleP; malate permease and related proteins +K24181 LRBA; lipopolysaccharide-responsive and beige-like anchor protein +K24182 PFK9; 6-phosphofructokinase [EC:2.7.1.11] +K24183 NBEA; neurobeachin +K24184 CYP89A; cytochrome P450 family 89 subfamily A [EC:1.14.-.-] +K24185 KIF21; kinesin family member 21 +K24186 KIF27; kinesin family member 27 +K24187 CYP89A9; cytochrome P450 family 89 subfamily A9 [EC:1.14.-.-] +K24188 CYP93A; cytochrome P450 family 93 subfamily A [EC:1.14.-.-] +K24189 GPP; (DL)-glycerol-3-phosphatase [EC:3.1.3.21] +K24190 LIM2; lens fiber membrane intrinsic protein +K24191 PROK; prokineticin +K24192 CYP138; cytochrome P450 family 138 [EC:1.14.-.-] +K24193 STP; MFS transporter, SP family, sugar:H+ symporter +K24194 BOR; boron transporter +K24195 XPR1, PHO1; xenotropic and polytropic retrovirus receptor 1 +K24196 PRTFDC1; phosphoribosyltransferase domain-containing protein 1 +K24197 IGFBPL1; insulin-like growth factor-binding protein-like 1 +K24198 SPACA3; sperm acrosome membrane-associated protein 3 +K24199 NOBOX; homeobox protein NOBOX +K24200 OCA2; P protein +K24201 SNCB; beta-synuclein +K24202 SNCG; gamma-synuclein +K24203 MAP7D2; MAP7 domain-containing protein 2 +K24204 hxpB; mannitol-1-/sugar-/sorbitol-6-/2-deoxyglucose-6-phosphatase [EC:3.1.3.22 3.1.3.23 3.1.3.50 3.1.3.68] +K24205 TMBIM, LFG; protein lifeguard +K24206 uacT; uric acid transporter +K24207 KLRA1, Ly49A; killer cell lectin-like receptor subfamily A member 1 +K24208 KLRA3, Ly49C; killer cell lectin-like receptor subfamily A member 3 +K24209 SMPX; small muscular protein +K24210 LIPN; lipase member N [EC:3.1.1.-] +K24211 C1QTNF2; complement C1q and tumor necrosis factor-related protein 2 +K24212 C1QTNF5; complement C1q and tumor necrosis factor-related protein 5 +K24213 C1QTNF9; complement C1q and tumor necrosis factor-related protein 9 +K24214 OTOL1; otolin-1 +K24215 LIPK; lipase member K [EC:3.1.1.-] +K24216 LIPJ; lipase member J [EC:3.1.1.-] +K24217 mnaT; L-amino acid N-acyltransferase [EC:2.3.1.-] +K24218 C1QTNF7; complement C1q and tumor necrosis factor-related protein 7 +K24219 TECRL; trans-2,3-enoyl-CoA reductase-like [EC:1.3.1.-] +K24220 MYH1s; myosin heavy chain 1/2/3/4/8/13/7B/15 +K24221 IP5P1_2; type I inositol polyphosphate 5-phosphatase IP5P1/2 [EC:3.1.3.56] +K24222 INPP5J_K; inositol polyphosphate 5-phosphatase INPP5J/K [EC:3.1.3.56] +K24223 CFAP43, WDR96; cilia- and flagella-associated protein 43 +K24224 CFAP44, WDR52; cilia- and flagella-associated protein 44 +K24225 CFAP53; cilia- and flagella-associated protein 53 +K24226 CFAP65; cilia- and flagella-associated protein 65 +K24227 CFAP69; cilia- and flagella-associated protein 69 +K24228 WDR66, CFAP251; cilia- and flagella-associated protein 251 +K24229 CFAP298; cilia- and flagella-associated protein 298 +K24230 CFAP300; cilia- and flagella-associated protein 300 +K24231 KIR2DL4, CD158D; killer cell immunoglobulin-like receptor 2DL4 +K24232 KIR2DL5, CD158F; killer cell immunoglobulin-like receptor 2DL5 +K24233 KLRC2_3, NKG2C_E; killer cell lectin-like receptor subfamily C2/3 +K24234 KLRC4, NKG2F; killer cell lectin-like receptor subfamily C4 +K24235 CBLN; cerebellin +K24236 C1QTNF3; complement C1q and tumor necrosis factor-related protein 3 +K24237 C1QTNF4; complement C1q and tumor necrosis factor-related protein 4 +K24238 KLRA7, Ly49G2; killer cell lectin-like receptor subfamily A member 7 +K24239 KLRA8, Ly49H; killer cell lectin-like receptor subfamily A member 8 +K24240 KLRA9, Ly49I; killer cell lectin-like receptor subfamily A member 9 +K24241 CYP135; cytochrome P450 family 135 [EC:1.14.-.-] +K24242 NT5C3; 7-methylguanosine nucleotidase [EC:3.1.3.91] +K24243 CRISPLD; cysteine-rich secretory protein LCCL domain-containing +K24244 ligXc; 5,5'-dehydrodivanillate O-demethylase ferredoxin subunit +K24245 ligXd; 5,5'-dehydrodivanillate O-demethylase ferredoxin reductase subunit [EC:1.18.1.-] +K24246 EMILIN; emilin +K24247 MMRN; multimerin +K24248 EMID1; EMI domain-containing protein 1 +K24249 qdtA; TDP-4-oxo-6-deoxy-alpha-D-glucose-3,4-oxoisomerase [EC:5.3.2.4] +K24250 qdtB; dTDP-3-amino-3,6-dideoxy-alpha-D-glucopyranose transaminase [EC:2.6.1.89] +K24251 qdtC; dTDP-D-Quip3N acetylase [EC:2.3.1.-] +K24252 wbvR, qnlA; UDP-6-deoxy-4-keto-L-IdoNAc 3-epimerase / UDP-4-keto-L-RhaNAc 4-reductase [EC:1.1.1.-] +K24253 DNAAF6, PIH1D3; dynein axonemal assembly factor 6 +K24254 ODAD4, TTC25; outer dynein arm-docking complex subunit 4 +K24255 PRDM12; PR domain zinc finger protein 12 [EC:2.1.1.-] +K24256 wbvD, qnlB; UDP-L-QuiNAc synthase +K24257 neuC, nnaA; UDP-N-acetylglucosamine 2-epimerase (hydrolysing) [EC:3.2.1.183] +K24258 wbjD; UDP-N-acetyl-L-fucosamine synthase [EC:5.1.3.28] +K24259 wbuX; putative aminotransferase +K24260 WDR11; WD repeat-containing protein 11 +K24261 MAP11; microtubule-associated protein 11 +K24262 SPARC; secreted protein acidic and rich in cysteine +K24263 panG; 2-dehydropantoate 2-reductase [EC:1.1.1.169] +K24264 panP; aspartate 1-decarboxylase [EC:4.1.1.11] +K24265 PANK4; bifunctional damage-control phosphatase, subfamily II, fusion protein +K24266 gp120; HIV envelope glycoprotein gp120 +K24267 UTS2B; urotensin-2B +K24268 oiaX; 3-oxoisoapionate-4-phosphate decarboxylase [EC:4.1.1.121] +K24269 ald2; 5-deoxyribulose 1-phosphate aldolase [EC:4.1.2.62] +K24270 TES; testin +K24271 Testin; testin-2 +K24272 DENR, TMA22; density-regulated protein +K24273 ZRSR; U2 small nuclear ribonucleoprotein auxiliary factor 35 kDa subunit-related protein +K24274 FAM111A; protein FAM111A +K24275 FAM111B; protein FAM111B +K24276 VAMT; vanillin aminotransferase [EC:2.6.1.119] +K24277 CS; capsaicin synthase [EC:2.3.2.35] +K24278 ERDS; ergosteryl-3beta-O-L-aspartate synthase [EC:6.1.1.12 2.3.2.37] +K24279 ERDH; ergosteryl-3beta-O-L-aspartate hydrolase [EC:3.1.1.121] +K24280 elg2; UDP-4-amino-4,6-dideoxy-N-acetyl-beta-L-idosamine transaminase +K24281 elg5; UDP-4-amino-4,6-dideoxy-N-acetyl-beta-L-idosamine acetyltransferase [EC:2.3.1.-] +K24282 elg3; UDP-2,4-diacetamido-2,4,6-trideoxy-beta-L-idose 2-epimerase [EC:5.1.3.-] +K24283 elg6; UDP-2,4-diacetamido-2,4,6-trideoxy-beta-L-gulopyranose hydrolase [EC:3.6.1.-] +K24284 elg4; 2,4-diacetamido-2,4,6-trideoxy-beta-L-gulose transferase [EC:2.5.1.-] +K24285 elg7; N,N'-diacetyl-8-epilegionaminate cytidylyltransferase [EC:2.7.7.-] +K24286 PRG4; proteoglycan 4 +K24287 lmbB2; L-tyrosine peroxygenase [EC:1.11.2.6] +K24288 meT1; MMP 1-O-methyltransferase [EC:2.1.1.365] +K24289 E3.2.1.214; exo beta-1,2-glucooligosaccharide sophorohydrolase (non-reducing end) [EC:3.2.1.214] +K24290 tmpB; [1-hydroxy-2-(trimethylamino)ethyl]phosphonate dioxygenase [EC:1.13.11.90] +K24291 tmpA; [2-(trimethylamino)ethyl]phosphonate dioxygenase [EC:1.14.11.72] +K24292 mycCI, CYP105L2; mycinamicin VIII C21 methyl hydroxylase [EC:1.14.-.-] +K24293 tcpA; 3,5,6-trichloropyridin-2-ol/2,4,6-trichlorophenol monooxygenase [EC:1.14.14.172 1.14.14.173] +K24294 GRXCR2; glutaredoxin domain-contaning cysteine-rich protein 2 +K24295 HCG22; protein PBMUCL2 +K24296 MUC22; mucin-22 +K24297 QRICH1; glutamine-rich protein 1 +K24298 QRICH2; glutamine-rich protein 2 +K24299 tcdH; thiocyanate desulfurase [EC:1.8.2.7] +K24300 wbpM, wbgZ, aatA; UDP-N-acetylglucosamine 4,6-dehydratase [EC:4.2.1.135] +K24301 lea1; UDP-N-acetylglucosamine 4,6-dehydratase [EC:4.2.1.135] +K24302 lea2; UDP-N-acetylbacillosamine transaminase [EC:2.6.1.34] +K24303 lea3; UDP-N-acetylbacillosamine alanyltransferase +K24304 lea5; UDP-2-acetamido-4-(D-alanylamino)-2,4,6-trideoxy-alpha-D-glucose 2-epimerase +K24305 lea6; UDP-2-acetamido-4-(D-alanylamino)-2,4,6-trideoxy-alpha-D-mannopyranose hydrolase +K24306 lea4; 2-acetamido-4-(D-alanylamino)-2,4,6-trideoxy-D-mannopyranose transferase +K24307 lea7; 5-N-acetyl-7-N-(D-alanyl)-legionaminic acid cytidylyltransferase +K24308 FUNDC2; FUN14 domain-containing protein 2 +K24309 TET2_3; methylcytosine dioxygenase TET2/3 [EC:1.14.11.80] +K24310 wbpV, wreQ; UDP-N-acetyl-alpha-D-quinovosamine dehydrogenase [EC:1.1.1.426] +K24311 preQ; UDP-4-keto-6-deoxy-GlcNAc-4-reductase [EC:1.1.1.-] +K24312 wbpK; UDP-4-keto-D-FucNAc 4-reductase +K24313 SH3TC; SH3 domain and tetratricopeptide repeat-containing protein +K24314 LPXN; leupaxin +K24315 TGFB1I1; transforming growth factor beta-1-induced transcript 1 protein +K24316 ARHGEF40; Rho guanine nucleotide exchange factor 40 +K24317 MCM3AP; germinal-center associated nuclear protein [EC:2.3.1.48] +K24318 SCARF1; scavenger receptor class F member 1 +K24319 SCARF2; scavenger receptor class F member 2 +K24320 GPC; Old World arenavirus glycoprotein +K24321 GPC; New World clade B/D arenavirus glycoprotein +K24322 GPC; New World clade A arenavirus glycoprotein +K24323 GPC; New World clade C arenavirus glycoprotein +K24324 S; MERS coronavirus spike glycoprotein +K24325 S; Betacoronavirus (excluding SARS and MERS) spike glycoprotein +K24326 wbpG; aminotransferase +K24327 wbpS; glutamine-dependent amidotransferase [EC:6.3.5.-] +K24328 SIGLEC13; sialic acid binding Ig-like lectin 13 +K24329 SIGLEC14; sialic acid binding Ig-like lectin 14 +K24330 SIGLEC16; sialic acid binding Ig-like lectin 16 +K24331 PEAR1, MEGF12; platelet endothelial aggregation receptor 1 +K24332 ATRN; attractin +K24333 MEGF6; multiple epidermal growth factor-like domains protein 6 +K24334 MEGF9; multiple epidermal growth factor-like domains protein 9 +K24335 CRELD; protein disulfide-isomerase [EC:5.3.4.1] +K24336 elg1, pglF; UDP-N-acetylglucosamine 4,6-dehydratase [EC:4.2.1.115] +K24337 CNTNAP3_4; contactin associated protein-like 3/4 +K24338 CNTNAP5; contactin associated protein-like 5 +K24339 COL16A; collagen type XVI alpha +K24340 COL19A; collagen type XIX alpha +K24341 EGFRAM; pikachurin +K24342 NELL; protein kinase C-binding protein NELL +K24343 flgT; flagellar H-ring protein FlgT +K24344 flgO; flagellar H-ring protein FlgO +K24345 KIC; calcium-binding protein KIC and related proteins +K24346 flgQ; flagellar motility protein FlgQ +K24347 UBXN2B; UBX domain-containing protein 2B +K24348 UBXN1_4; UBX domain-containing protein 1/4 +K24349 UBXN2A; UBX domain-containing protein 2A +K24350 UBXN7; UBX domain-containing protein 7 +K24351 UBXN8; UBX domain-containing protein 8 +K24352 UBXN10; UBX domain-containing protein 10 +K24353 UBXN11; UBX domain-containing protein 11 +K24354 SMOC; SPARC-related modular calcium-binding protein +K24355 COL23A; collagen type XXIII alpha +K24356 COL25A; collagen type XXV alpha +K24357 COL20A; collagen type XX alpha +K24358 COL26A, EMID2; collagen type XXVI alpha (EMI domain-containing protein 2) +K24359 MFRP; membrane frizzled-related protein +K24360 NETO; neuropilin and tolloid-like protein +K24361 PCOLCE; procollagen C-endopeptidase enhancer +K24362 PAMR1; inactive serine protease PAMR1 +K24363 SEZ6; seizure protein 6 +K24364 CSN12; COP9 signalosome complex subunit 12 +K24365 CSN9; COP9 signalosome complex subunit 9 +K24366 RRI2, CSN10; COP9 signalosome complex subunit 10 +K24367 PCI8, CSN11; COP9 signalosome complex subunit 11 +K24368 CSI1; COP9 signalosome-interactor 1 +K24369 ZC4H2; zinc finger C4H2 domain-contaning protein +K24370 ZNF148; zinc finger protein 148 +K24371 ZNF335; zinc finger protein 335 +K24372 ZNF408; zinc finger protein 408 +K24373 ZNF513; zinc finger protein 513 +K24374 ZNF644; zinc finger protein 644 +K24375 ZNF687; zinc finger protein 687 +K24376 ZNF711; zinc finger protein 711 +K24377 ZNF750; zinc finger protein 750 +K24378 CTSQ; cathepsin Q [EC:3.4.22.-] +K24379 CTS8; cathepsin 8 [EC:3.4.22.-] +K24380 CST10; cystatin-10 +K24381 ERFE, FAM132B; erythroferrone +K24382 CTF2; cardiotrophin 2 +K24383 PATZ1; POZ-AT hook zinc finger protein 1 +K24384 HIC; hypermethylated in cancer protein +K24385 MYNN; myoneurin +K24386 ST18; suppression of tumorigenicity 18 protein +K24387 L3MBTL; lethal(3)malignant brain tumor-like protein +K24388 ZC3H8; zinc finger CCCH domain-containing protein 8 +K24389 vdh, CYP107BR1; vitamin D3 1,25-hydroxylase [EC:1.14.15.-] +K24390 mycG, CYP107E1; mycinamicin IV hydroxylase/epoxidase [EC:1.14.-.-] +K24391 P450terp, CYP108; alpha-terpineol hydroxylase +K24392 CYP120A1; retinoid hydroxylase +K24393 comDE; sulfopyruvate decarboxylase [EC:4.1.1.79] +K24394 STU2; protein STU2 +K24395 ERVW-1; syncytin-1 +K24396 ERVFRD-1; syncytin-2 +K24397 DAOA; D-amino acid oxidase activator +K24398 ODAPH; odontogenesis associated phosphoprotein +K24399 LRMDA; leucine-rich melanocyte differentiation-associated protein +K24400 MXRA5; matrix remodeling-associated protein 5 +K24401 MXRA7; matrix remodeling-associated protein 7 +K24402 MXRA8; matrix remodeling-associated protein 8 +K24403 KIAA0319, AAVR; dyslexia-associated protein KIAA0319 +K24404 KIAA0319L; dyslexia-associated protein KIAA0319-like protein +K24405 SUVH1; [histone H3]-lysine9 N-dimethyltransferase [EC:2.1.1.368] +K24406 ATXR5_6; [histone H3]-lysine27 N-methyltransferase [EC:2.1.1.369] +K24407 SET9; [histone H4]-lysine20 N-trimethyltransferase [EC:2.1.1.372] +K24408 sagA; salicylate---CoA ligase [EC:6.2.1.65] +K24409 ycaO; thioglycine synthase [EC:6.2.2.1] +K24410 tfuA; TfuA protein +K24411 patD, lynD; oxazoline/thiazoline synthase [EC:6.2.2.2 6.2.2.3] +K24412 CRIP1, CRP1; cysteine-rich protein 1 +K24413 CRIP2_3, CRP2_3; cysteine-rich protein 2/3 +K24414 FHL3; four and a half LIM domains protein 3 +K24415 FHL5, ACT; four and a half LIM domains protein 5 +K24416 FBLIM1, FBLP1; filamin-binding LIM protein 1 +K24417 LMCD1; LIM and cysteine-rich domains protein 1 +K24418 METTL5; rRNA N6-adenosine-methyltransferase METTL5 +K24419 METTL27; methyltransferase-like protein 27 [EC:2.1.1.-] +K24420 LASP1; LIM and SH3 domain protein 1 +K24421 NRAP; nebulin-related-anchoring protein +K24422 LIMCH1; LIM and calponin homology domains-containing protein 1 +K24423 ZNF185; zinc finger protein 185 +K24424 SCEL; sciellin +K24425 SDR9C7; short-chain dehydrogenase/reductase family 9C member 7 [EC:1.1.1.-] +K24426 PYROXD1; pyridine nucleotide-disulfide oxidoreductase domain-containing protein 1 [EC:1.8.1.-] +K24427 SPON1; spondin-1 +K24428 SPON2; spondin-2 +K24429 ADAMTSL1_3; ADAMTS-like protein 1/3 +K24430 ADAMTSL2; ADAMTS-like protein 2 +K24431 OPA3; oncoprotein-induced transcript 3 protein +K24432 ADAMTSL5; ADAMTS-like protein 5 +K24433 THSD1; thrombospondin type-1 domain-containing protein 1 +K24434 SSPO; SCO-spondin +K24435 ISM; isthmin +K24436 CILP; cartilage intermediate layer protein +K24437 TSEAR; thrombospondin-type laminin G domain and EAR repeat-containing protein +K24438 AFLN, STCS, CYP59A1; sterigmatocystin biosynthesis cytochrome P450 monooxygenase +K24439 STCL, CYP60B1; versicolorin B desaturase [EC:1.14.-.-] +K24440 STCB, CYP62A1; averufin monooxygenase [EC:1.14.-.-] +K24441 CYP76B74; geranylhydroquinone 3''-hydroxylase [EC:1.14.14.174] +K24442 xacA; D-xylose 1-dehydrogenase (NADP+, D-xylono-1,4-lactone-forming) [EC:1.1.1.424] +K24443 xacC; D-xylono/L-arabinono-1,4-lactonase [EC:3.1.1.68 3.1.1.15] +K24444 JMJ30; [histone H3]-dimethyl/trimethyl-L-lysine36 demethylase [EC:1.14.11.27 1.14.11.-] +K24445 SLFN14; protein SLFN14 [EC:3.1.-.-] +K24446 arcD; arginine/ornithine antiporter +K24447 artA; archaeosortase A [EC:3.4.22.-] +K24448 hilA; L-isoleucine 31-dioxygenase [EC:1.14.11.74] +K24449 hliB; 31-hydroxy-L-isoleucine 4-dioxygenase [EC:1.14.11.75] +K24450 hmf, hmt; DNA-binding protein +K24451 zim; modification methylase +K24452 pinA; (+)-pinoresinol hydroxylase [EC:1.17.9.2] +K24453 pinB; (+)-pinoresinol hydroxylase [EC:1.17.9.2] +K24454 patG; thiazoline dehydrogenase / protease [EC:1.3.3.16 3.4.-.-] +K24455 TTPA; alpha-tocopherol transfer protein +K24456 KY; kyphoscoliosis peptidase [EC:3.4.-.-] +K24457 SLFN12, SLFN12L; schlafen family member 12 +K24458 SLFN11; schlafen family member 11 [EC:3.6.-.-] +K24459 SLFN13; schlafen family member 13 [EC:3.1.-.-] +K24460 GA13ox; gibberellin 13-oxidase [EC:1.14.-.-] +K24461 DLK1; protein delta homolog 1 +K24462 DLK2, EGFL9; protein delta homolog 2 +K24463 DNER; delta and Notch-like epidermal growth factor-related receptor +K24464 EDIL3; EGF-like repeat and discoidin I-like domain-containing protein 3 +K24465 EGFL7_8; epidermal growth factor-like protein 7/8 +K24466 NOTCH2NL; Notch homolog 2 N-terminal-like protein +K24467 PROZ; vitamin K-dependent protein Z +K24468 SCUBE1_3; signal peptide, CUB and EGF-like domain-containing protein 1/3 +K24469 SVEP1; sushi, von Willebrand factor type A, EGF and pentraxin domain-containing protein 1 +K24470 SNED1, IRE-BP1; insulin-responsive sequence DNA-binding protein 1 +K24471 EPGN; epigen +K24472 HEG; protein HEG +K24473 TENM, ODZ; teneurin +K24474 BSPH, ELSPBP2; binder of sperm protein +K24475 ELSPBP1; epididymal sperm-binding protein 1 +K24476 EBI3, IL27B; interleukin 27 subunit beta +K24477 ABI3BP; target of Nesh-SH3 +K24478 ANKFN1; ankyrin repeat and fibronectin type-III domain-containing protein 1 +K24479 ASTN; astrotactin +K24480 CMYA5; cardiomyopathy-associated protein 5 +K24481 CRLF1; cytokine receptor-like factor 1 +K24482 CRLF3; cytokine receptor-like factor 3 +K24483 FANK1; fibronectin type 3 and ankyrin repeat domains protein 1 +K24484 FNDC1; fibronectin type III domain-containing protein 1 +K24485 FNDC3; fibronectin type III domain-containing protein 3 +K24486 FNDC4_5; fibronectin type III domain-containing protein 4/5 +K24487 FNDC7; fibronectin type III domain-containing protein 7 +K24488 FNDC8; fibronectin type III domain-containing protein 8 +K24489 FSD1; fibronectin type III and SPRY domain-containing protein 1 +K24490 FSD2; fibronectin type III and SPRY domain-containing protein 2 +K24491 LRIT; leucine-rich repeat, immunoglobulin-like domain and transmembrane domain-containing protein +K24492 LRRN1_2_3; leucine-rich repeat neuronal protein 1/2/3 +K24493 LRRN4; leucine-rich repeat neuronal protein 4 +K24494 MYBPH; myosin-binding protein H +K24495 MYOM; myomesin +K24496 NPHS1; nephron +K24497 PHYHIP; phytanoyl-CoA hydroxylate-interacting protein +K24498 SORL1; sortilin-related receptor +K24499 UMODL1; uromodulin-like 1 +K24500 VASN; vasorin +K24501 PRDM1; PR domain zinc finger protein 1 [EC:2.1.1.-] +K24502 FEZF; Fez family zinc finger protein +K24503 SP110; nuclear body protein Sp110 +K24504 SP140; nuclear body protein Sp140 +K24505 GMEB; glucocorticoid modulatory element-binding protein +K24506 VIT; vitrin +K24507 VWA1; von Willebrand factor A domain-containing protein 1 +K24508 VWA2; von Willebrand factor A domain-containing protein 2 +K24509 VWA3; von Willebrand factor A domain-containing protein 3 +K24510 VWA5; von Willebrand factor A domain-containing protein 5 +K24511 VWA7; von Willebrand factor A domain-containing protein 7 +K24512 VWA8; von Willebrand factor A domain-containing protein 8 +K24513 ITIH3, SHAP; inter-alpha-trypsin inhibitor heavy chain H3 +K24514 ITIH4; inter-alpha-trypsin inhibitor heavy chain H4 +K24515 ITIH5; inter-alpha-trypsin inhibitor heavy chain H5 +K24516 ITIH6; inter-alpha-trypsin inhibitor heavy chain H6 +K24517 BMPER; BMP-binding endothelial regulator protein +K24518 CRIM1; cysteine-rich motor neuron 1 protein +K24519 VWCE; von Willebrand factor C and EGF domain-containing protein +K24520 CHRDL1; chordin-like protein 1 +K24521 VWC2; brorin +K24522 KCP; kielin/chordin-like protein +K24523 CPNE5_8_9; copine 5/8/9 +K24524 CPNE1_2_3; copine 1/2/3 +K24525 CPNE4_6_7; copine 4/6/7 +K24526 RBM12; RNA-binding protein 12 +K24527 RBM18; RNA-binding protein 18 +K24528 mycAI; protomycinolide IV synthase 1 +K24529 mycB; protomycinolide IV desosaminyltransferase [EC:2.4.1.-] +K24530 mycCII; ferredoxin +K24531 mycD; mycinamicin VII 6-deoxyallosyltransferase [EC:2.4.1.-] +K24532 CYP1A; cytochrome P450 family 1 subfamily A [EC:1.14.-.-] +K24533 GP2; Cuevavirus envelope glycoprotein 2 +K24534 GP; Ebolavirus envelope glycoprotein +K24535 GP; Marburgvirus envelope glycoprotein +K24536 ZZZ3; ZZ-type zinc finger-containing protein 3 +K24537 KAT14; cysteine-rich protein 2-binding protein +K24538 MBIP; MAP3K12-binding inhibitory protein 1 +K24539 YEATS2; YEATS domain-contaning protein 2 +K24540 PRKRA; interferon-inducible double-stranded RNA-dependent protein kinase activator A +K24541 CYP71P1; tryptamine 5-hydroxylase [EC:1.14.-.-] +K24542 CYP81D; cytochrome P450 family 81 subfamily D +K24543 CYP97B3; cytochrome P450 family 97 subfamily B polypeptide 3 +K24544 CYP714C; cytochrome P450 family 714 subfamily C +K24545 F; Avulavirus fusion glycoprotein F0 +K24546 HE; Betacoronavirus hemagglutinin-esterase [EC:3.1.1.53] +K24547 F; Henipavirus fusion glycoprotein F0 +K24548 F; Respirovirus fusion glycoprotein F0 +K24549 F; Rubulavirus fusion glycoprotein F0 +K24550 BCAS3; breast carcinoma-amplified sequence 3 +K24551 BCAS4; breast carcinoma-amplified sequence 4 +K24552 ASPRV1; retroviral-like aspartic protease 1 [EC:3.4.23.-] +K24553 DPY19L; C-mannosyltransferase DPY19L [EC:2.4.1.-] +K24554 KIAA0825; protein KIAA0825 +K24555 tylG2; tylactone synthase 2 +K24556 tylG3; tylactone synthase 3 +K24557 tylG4; tylactone synthase 4 +K24558 tylG5; tylactone synthase 5 +K24559 mycAII; protomycinolide IV synthase 2 +K24560 mycAIII; protomycinolide IV synthase 3 +K24561 mycAIV; protomycinolide IV synthase 4 +K24562 mycAV; protomycinolide IV synthase 5 +K24563 eryAII; 6-deoxyerythronolide B synthase EryAII [EC:2.3.1.94] +K24564 eryAIII; 6-deoxyerythronolide B synthase EryAIII [EC:2.3.1.94] +K24565 oleAII; 8,8a-deoxyoleandolide synthase 2 +K24566 oleAIII; 8,8a-deoxyoleandolide synthase 3 +K24567 aveA2; avermectin polyketide synthase AveA2 +K24568 aveA3; avermectin polyketide synthase AveA3 +K24569 aveA4; avermectin polyketide synthase AveA4 +K24570 POLY; Flavivirus structral polyprotein +K24571 GP; Orthohantavirus envelopment polyprotein +K24572 GP; Orthobunyavirus envelopment polyprotein +K24573 GP; Orthonairovirus envelopment polyprotein +K24574 TEX11; testis-expressed protein 11 +K24575 MPLKIP; M-phase-specific PLK1-interacting protein +K24576 TMEM8A_B; transmembrane protein 8A/B +K24577 MYMK, TMEM8C; protein myomaker +K24578 MYMX; protein myomixer +K24579 3a; SARS coronavirus accessory protein 3a +K24580 6; SARS coronavirus accessory protein 6 +K24581 7a; SARS coronavirus accessory protein 7a +K24582 7b; SARS coronavirus accessory protein 7b +K24583 8; SARS coronavirus accessory protein 8 +K24584 10; SARS coronavirus accessory protein 10 +K24585 BZLF2; Lymphocryptovirus glycoprotein 42 +K24586 A7; Macavirus C-type lectin protein A7 +K24587 GP64; Alphabaculovirus major envelope glycoprotein +K24588 G; Ephemerovirus glycoprotein +K24589 G; Lyssavirus glycoprotein +K24590 G; Vesiculovirus glycoprotein +K24591 GP; Thogotovirus envelope glycoprotein +K24592 NSP1-1; Rotavirus nonstructural protein 1-1 +K24593 p14; Orthoreovirus FAST protein +K24594 RSRC1; arginine/serine-rich coiled-coil protein 1 +K24595 RSRC2; arginine/serine-rich coiled-coil protein 2 +K24596 VP7; Rotavirus outer capsid protein VP7 +K24597 VP6; Rotavirus inner capsid protein VP6 +K24598 VP2; Rotavirus core capsid protein VP2 +K24599 HA; Orthopoxvirus hemagglutinin +K24600 A21L; Orthopoxvirus virion membrane protein A21 +K24601 F9; Orthopoxvirus protein F9 +K24602 G3L; Orthopoxvirus protein G3 +K24603 G9R; Orthopoxvirus myristoylated protein G9 +K24604 H2R; Orthopoxvirus late protein H2 +K24605 I2L; Orthopoxvirus protein I2 +K24606 J5L, L5L; Orthopoxvirus protein J5 +K24607 L1R; Orthopoxvirus protein L1 +K24608 L5R; Orthopoxvirus protein L5 +K24609 LRIG2; leucine-rich repeats and immunoglobulin-like domains protein 2 +K24610 LRIG1_3; leucine-rich repeats and immunoglobulin-like domains protein 1/3 +K24611 AMMECR1, AMMECR1L; AMME syndrome candidate gene 1 protein +K24612 ERVFC1; endogenous retrovirus group FC1 Env polyprotein +K24613 ERVV; endogenous retrovirus group V Env polyprotein +K24614 ERVMER34-1; endogenous retroviral envelope protein HEMO +K24615 ERV3-1; endogenous retrovirus group 3 member 1 Env polyprotein +K24616 ERVPABLB-1, CAR1; endogenous retrovirus group PABLB member 1 Env polyprotein +K24617 EFF-1; eff-1 +K24618 AFF-1; cell fusion protein aff-1 +K24619 mauC; amicyanin +K24620 ykoF; energy-coupling factor transport system substrate-specific component +K24621 CERS2_4, LASS2_4; very-long-chain ceramide synthase [EC:2.3.1.297] +K24622 CERS3, LASS3; very-long-chain ceramide synthase / ultra-long-chain ceramide synthase [EC:2.3.1.297 2.3.1.298] +K24623 waaH; UDP-glucose:(glucosyl)LPS alpha-1,2-glucosyltransferase [EC:2.4.1.-] +K24624 MICOS13; MICOS complex subunit MIC13 +K24625 APOO; MICOS complex subunit MIC26 +K24626 APOOL; MICOS complex subunit MIC27 +K24627 GAS2, GAS2L; growth arrest-specific protein 2 +K24628 ROGDI; protein rogdi +K24629 UBAP1; ubiquitin-associated protein 1 +K24630 ZMYND8; protein kinase C-binding protein 1 +K24631 ANKMY1, ZMYD13; ankyrin repeat and MYND domain-containing protein 1 +K24632 ZMYND19; zinc finger MYND domain-containing protein 19 +K24633 ANKMY2, ZMYND20, DAF25; ankyrin repeat and MYND domain-containing protein 2 +K24634 SMYD4, ZMYND21; SET and MYND domain-containing protein 4 [EC:2.1.1.-] +K24635 SMYD5, ZMYND23; SET and MYND domain-containing protein 5 [EC:2.1.1.-] +K24636 STRC; stereocilin +K24637 ZBED1; zinc finger BED domain-containing protein 1 (E3 SUMO-protein ligase ZBED1) [EC:2.3.2.-] +K24638 ZBED2; zinc finger BED domain-containing protein 2 +K24639 ZBED3; zinc finger BED domain-containing protein 3 +K24640 ZBED4; zinc finger BED domain-containing protein 4 +K24641 ZBED6; zinc finger BED domain-containing protein 6 +K24642 ZBED5_7_8_9, BUSTER; zinc finger BED domain-containing protein 5/7/8/9 +K24643 PRDM10; PR domain zinc finger protein 10 [EC:2.1.1.-] +K24644 PRDM11; PR domain zinc finger protein 11 [EC:2.1.1.-] +K24645 PRDM13; PR domain zinc finger protein 13 [EC:2.1.1.-] +K24646 PRDM14; PR domain zinc finger protein 14 [EC:2.1.1.-] +K24647 PRDM15; PR domain zinc finger protein 15 [EC:2.1.1.-] +K24648 remB; extracellular matrix regulatory protein B +K24649 wbdM; O111-antigen biosynthesis glucosyltransferase +K24650 HMG20B; SWI/SNF-related matrix-associated actin-dependent regulator of chromatin subfamily E member 1-related +K24651 PHF21A; PHD finger protein 21A +K24652 TTC12; tetratricopeptide repeat protein 12 +K24653 FAM149; primary cilium assembly protein FAM149 +K24654 wclR; O3-antigen biosynthesis alpha-1,3-galactosyltransferase [EC:2.4.1.343] +K24655 wbpX; O-antigen biosynthesis alpha-1,2-rhamnosyltransferase [EC:2.4.1.-] +K24656 wbpY; O-antigen biosynthesis alpha-1,3-rhamnosyltransferase [EC:2.4.1.-] +K24657 wbpZ; O-antigen biosynthesis rhamnosyltransferase [EC:2.4.1.-] +K24658 wbdA; O-antigen biosynthesis alpha-1,2-mannosyltransferase [EC:2.4.1.371 2.4.1.-] +K24659 wbdD; O-antigen chain-terminating methyltransferase [EC:2.1.1.-] +K24660 HMG20A; high mobility group protein 20A +K24661 rgtC; lipopolysaccharide core galacturonosyltransferase RgtC [EC:2.4.1.-] +K24662 rgtD; lipid A galacturonosyltransferase RgtD [EC:2.4.1.-] +K24663 NDD1; nuclear division defective protein 1 +K24664 FKH; forkhead protein FKH +K24665 AZU1; azurocidin +K24666 dsyB; 2-hydroxy-4-(methylsulfanyl)butanoate S-methyltransferase [EC:2.1.1.373] +K24667 htm; 2-heptyl-1-hydroxyquinolin-4(1H)-one methyltransferase [EC:2.1.1.374] +K24668 NES; neryl diphosphate diphosphatase [EC:3.1.7.13] +K24669 PADI4, PAD4; protein-arginine deiminase 4 [EC:3.5.3.15] +K24670 K24670; 2',3'-cyclic-nucleotide 2'-phosphodiesterase / phosphoenolpyruvate phosphatase [EC:3.1.4.16 3.1.3.60] +K24671 mne; mannose 2-epimerase [EC:5.1.3.44] +K24672 apsI; D-apiose isomerase [EC:5.3.1.36] +K24673 wbyI; glycosyltransferase [EC:2.4.1.-] +K24674 ZMYM1; zinc finger MYM-type protein 1 +K24675 ZMYM2_3_4; zinc finger MYM-type protein 2/3/4 +K24676 ZMYM5; zinc finger MYM-type protein 5 +K24677 IQCE; IQ domain-contaning protein E +K24678 HHAT; protein-cysteine N-palmitoyltransferase HHAT [EC:2.3.1.-] +K24679 HHATL; protein-cysteine N-palmitoyltransferase HHAT-like protein +K24680 DISP1; protein dispatched 1 +K24681 DISP2; protein dispatched 2 +K24682 PTCHD; patched domain-containing protein +K24683 DISP3, PTCHD2; protein dispatched 3 +K24684 ZFAND1; AN1-type zinc finger protein 1 +K24685 ZFAND2; AN1-type zinc finger protein 2 +K24686 ZFAND3; AN1-type zinc finger protein 3 +K24687 ZFAND5_6; AN1-type zinc finger protein 5/6 +K24688 ZCWPW1; zinc finger CW-type PWWP domain protein 1 +K24689 lipS2; lipoyl synthase +K24690 ZCWPW2; zinc finger CW-type PWWP domain protein 2 +K24691 ZNF106; zinc finger protein 106 +K24692 ZNF638; zinc finger protein 638 +K24693 mftD; pre-mycofactocin synthase [EC:1.4.3.26] +K24694 mftA; mycofactocin precursor peptide MftA +K24695 mftB; mycofactocin biosynthesis protein MftB +K24696 mftC; [mycofactocin precursor peptide]-tyrosine decarboxylase / 3-amino-5-[(4-hydroxyphenyl)methyl]-4,4-dimethylpyrrolidin-2-one synthase [EC:1.3.98.7 4.1.99.26] +K24697 mftE; mycofactocin precursor peptide peptidase [EC:3.4.14.14] +K24698 mftF; mycofactocin glycosyltransferase +K24699 mftR; TetR/AcrR family transcriptional regulator, regulator of mycofactocin system +K24700 mdo; 3-mercaptopropionate dioxygenase [EC:1.13.11.91] +K24701 IBOH; L-glutamate 3(R)-hydroxylase [EC:1.14.11.76] +K24702 pdmA; N,N-dimethyl phenylurea N-demethylase alpha subunit [EC:1.14.15.38] +K24703 pdmB; N,N-dimethyl phenylurea N-demethylase beta subunit [EC:1.14.15.38] +K24704 cmlI; alpha-N-dichloroacetyl-p-aminophenylserinol N-oxygenase [EC:1.14.99.67] +K24705 aurF; 4-aminobenzoate N-oxygenase [EC:1.14.99.68] +K24706 SCUBE2; signal peptide, CUB and EGF-like domain-containing protein 2 +K24707 E2.7.1.16; ribulokinase [EC:2.7.1.16] +K24708 K24708; ATP-binding cassette, subfamily B, putative efflux pump [EC:7.6.2.-] +K24709 K24709; D-galactose transport system substrate-binding protein +K24710 K24710; D-galactose transport system permease protein +K24711 K24711; D-galactose transport system permease protein +K24712 K24712; D-galactose transport system ATP-binding protein [EC:7.5.2.11] +K24713 s25dA; steroid C-25 hydroxylase alpha subunit [EC:1.17.99.10] +K24714 s25dB; steroid C-25 hydroxylase beta subunit [EC:1.17.99.10] +K24715 s25dC; steroid C-25 hydroxylase gamma subunit +K24716 atcA; 3-oxo-Delta1-steroid hydratase/dehydrogenase large subunit [EC:1.17.99.11] +K24717 atcB; 3-oxo-Delta1-steroid hydratase/dehydrogenase medium subunit [EC:1.17.99.11] +K24718 atcC; 3-oxo-Delta1-steroid hydratase/dehydrogenase small subunit [EC:1.17.99.11] +K24719 sph1; smc-like protein Sph1 +K24720 TULP4; tubby-related protein 4 +K24721 CLINT1, EPN4; clathrin interactor 1 +K24722 DNAI3, WDR63; dynein axonemal intermediate chain 3 +K24723 DNAI4, WDR78; dynein axonemal intermediate chain 4 +K24724 AES, TLE5; TLE family member 5 (amino-terminal enhancer of split) +K24725 AAMP; angio-associated migratory cell protein +K24726 NDUFAF8; NADH dehydrogenase [ubiquinone] 1 alpha subcomplex assembly factor 8 +K24727 MYORG; myogenesis-regulating glycosidase [EC:3.2.1.-] +K24728 CFAP52, WDR16; cilia- and flagella-associated protein 52 +K24729 CFAP57, WDR65; cilia- and flagella-associated protein 57 +K24730 CIAO1, CIA1; cytosolic iron-sulfur protein assembly protein CIAO1 +K24731 DMWD; dystrophia myotonica WD repeat-containing protein +K24732 GNB1L; guanine nucleotide-binding protein subunit beta-like protein 1 +K24733 LRWD1; leucine-rich repeat and WD repeat-containing protein 1 +K24734 NWD; NACHT domain- and WD repeat-containing protein +K24735 SPAG16; sperm-associated antigen 16 protein +K24736 WDR1, AIP1; WD repeat-containing protein 1 (actin-interacting protein 1) +K24737 WDR6; WD repeat-containing protein 6 +K24738 WDR7; rabconnectin-3b +K24739 WDR13; WD repeat-containing protein 13 +K24740 WDR17; WD repeat-containing protein 17 +K24741 WDR20; WD repeat-containing protein 20 +K24742 WDR25; WD repeat-containing protein 25 +K24743 WDR31; WD repeat-containing protein 31 +K24744 WDR37; WD repeat-containing protein 37 +K24745 WDR38; WD repeat-containing protein 38 +K24746 WDR47; WD repeat-containing protein 47 +K24747 WDR49; WD repeat-containing protein 49 +K24748 WDR53; WD repeat-containing protein 53 +K24749 WDR54; WD repeat-containing protein 54 +K24750 WDR55, JIP5; WD repeat-containing protein 55 +K24751 WDR64; WD repeat-containing protein 64 +K24752 WDR70; WD repeat-containing protein 70 +K24753 WDR72; WD repeat-containing protein 72 +K24754 WDR73; WD repeat-containing protein 73 +K24755 WDR76, CMR1; WD repeat-containing protein 76 +K24756 WDR86; WD repeat-containing protein 86 +K24757 WDR88; WD repeat-containing protein 88 +K24758 WDR89; WD repeat-containing protein 89 +K24759 WDR90; WD repeat-containing protein 90 +K24760 WDR91; WD repeat-containing protein 91 +K24761 WDR92, DNAAF10; dynein axonemal assembly factor 10 +K24762 WDR93; WD repeat-containing protein 93 +K24763 RMC1; regulator of MON1-CCZ1 complex +K24764 WDSUB1; WD repeat, SAM and U-box domain-containing protein 1 +K24765 CREC; catabolite repression protein CreC +K24766 ACRB; ubiquitination network signaling protein AcrB +K24767 ASA1; ASTRA-associated protein 1 +K24768 MYRF; myelin regulatory factor [EC:3.4.-.-] +K24769 TCF20; transcription factor 20 +K24770 DSE1, ALT2, EMB2757; protein decreased size exclusion limit 1 +K24771 TTI2; TEL2-interacting protein 2 +K24772 GG1_2; guanine nucleotide-binding protein subunit gamma 1/2, plant +K24773 GG3; guanine nucleotide-binding protein subunit gamma 3, plant +K24774 FNBP4; formin-binding protein 4 +K24775 WBP1; WW domain-binding protein 1 +K24776 RUFY3; protein RUFY3 +K24777 WDFY4; WD repeat and FYVE domain-containing protein 4 +K24778 ZFYVE19, ANCHR; abscission/NoCut checkpoint regulator +K24779 ZFYVE21; zinc finger FYVE domain-containing protein 21 +K24780 ZFYVE28, LST2; lateral signaling target protein 2 +K24781 BPH1; beige protein homolog 1 +K24782 CHMP4C, SNF7, VPS32C; charged multivesicular body protein 4C +K24783 JAKMIP1; janus kinase and microtubule-interacting protein 1 +K24784 JAKMIP2; janus kinase and microtubule-interacting protein 2 +K24785 JAKMIP3; janus kinase and microtubule-interacting protein 3 +K24786 RUNDC1; RUN domain-containing protein 1 +K24787 RUNDC3; RUN domain-containing protein 3 +K24788 HPDL; 4-hydroxyphenylpyruvate dioxygenase-like protein [EC:1.13.-.-] +K24789 TOP6BL; type 2 DNA topoisomerase 6 subunit B-like +K24790 POSTN; periostin +K24791 C1RL; complement C1r subcomponent-like protein [EC:3.4.21.-] +K24792 CDCP2; CUB domain-containing protein 2 +K24793 CUZD1; CUB and zona pellucida-like domain-containing protein 1 +K24794 DCBLD; discoidin, CUB and LCCL domain-containing protein +K24795 TBC1D12; TBC1 domain family member 12 +K24796 TBC1D13; TBC1 domain family member 13 +K24797 TBC1D16; TBC1 domain family member 16 +K24798 TBC1D21; TBC1 domain family member 21 +K24799 TBC1D25; TBC1 domain family member 25 +K24800 TBC1D30; TBC1 domain family member 30 +K24801 gp41; HIV transmembrane fusion protein gp41 +K24802 RT; HIV-1 reverse transcriptase / ribonuclease H [EC:2.7.7.49 2.7.7.7 3.1.26.13] +K24803 IN; HIV-1 integrase +K24804 ZBTB14; zinc finger and BTB domain-containing protein 14 +K24805 ZBTB21; zinc finger and BTB domain-containing protein 21 +K24806 ZBTB35, ZNF131; zinc finger and BTB domain-containing protein 35 +K24807 ZBTB49; zinc finger and BTB domain-containing protein 49 +K24808 BTBD17; BTB/POZ domain-containing protein 17 +K24809 CCIN; calicin +K24810 IBTK; inhibitor of Bruton tyrosine kinase +K24811 BTBD18; BTB/POZ domain-containing protein 18 +K24812 HEATR3; HEAT repeat-containing protein 3 +K24813 HEATR4; HEAT repeat-containing protein 4 +K24814 HEATR5, LAA1; HEAT repeat-containing protein 5 +K24815 HEATR6; HEAT repeat-containing protein 6 +K24816 MROH1, HEATR7A; maestro heat-like repeat-containing protein family member 1 +K24817 MROH2, HEATR7B; maestro heat-like repeat-containing protein family member 2 +K24818 RIPOR, FAM65; Rho family-interacting cell polarization regulator +K24819 ndvA; ATP-binding cassette, subfamily B, beta-glucan exporter [EC:7.5.2.3] +K24820 K24820; ATP-binding cassette, subfamily B, fatty acid transporter +K24821 atm1, pexA; ATP-binding cassette, subfamily B, heavy metal transporter +K24822 LOXHD1; lipoxygenase homology domain-containing protein 1 +K24823 PATL2; protein PAT1 homolog 2 +K24824 RBM48; RNA-binding protein 48 +K24825 ARMC7; armadillo repeat-containing protein 7 +K24826 CRIPT; cysteine-rich PDZ-binding protein +K24827 SCNM1; sodium channel modifier 1 +K24828 LCA5; lebercilin +K24829 MINAR1; major intrinsically disordered Notch2-binding receptor 1 +K24830 MINAR2; major intrinsically disordered Notch2-binding receptor 2 +K24831 ZAN; zonadhesin +K24832 IQCJ; IQ domain-containing protein J +K24833 SCHP1; schwannomin-interacting protein 1 +K24834 GLIPR1; glioma pathogenesis-related protein 1 +K24835 GLIPR2; glioma pathogenesis-related protein 2 +K24836 PI15, CRISP8; peptidase inhibitor 15 +K24837 IQCA, DRC11; dynein regulatory complex subunit 11 +K24838 IQUB; IQ and ubiquitin-like domain-containing protein +K24839 IQCD, DRC10; dynein regulatory complex subunit 10 +K24840 IQCF; IQ domain-containing protein F +K24841 IQCG, DRC9; dynein regulatory complex subunit 9 +K24842 IQCH; IQ domain-containing protein H +K24843 ubiT; O2-independent ubiquinone biosynthesis accessory factor UbiT +K24844 ubiU; O2-independent ubiquinone biosynthesis protein UbiU +K24845 ubiV; O2-independent ubiquinone biosynthesis protein UbiV +K24846 pglK; ATP-binding cassette, subfamily B, bacterial PglK [EC:7.5.2.-] +K24847 rlhA; 23S rRNA 5-hydroxycytidine C2501 synthase +K24848 IFIT2; interferon-induced protein with tetratricopeptide repeats 2 +K24849 IFIT3; interferon-induced protein with tetratricopeptide repeats 3 +K24850 IFIT5; interferon-induced protein with tetratricopeptide repeats 5 +K24851 ZNF142; zinc finger protein 142 +K24852 ZNF341; zinc finger protein 341 +K24853 ZNF462; zinc finger protein 462 +K24854 K24854; damage-control phosphatase, subfamily II, stand-alone protein [EC:3.1.3.-] +K24855 STCW; hydroxyversicolorone monooxygenase [EC:1.14.13.-] +K24856 AFLM; NADPH-dependent reductase +K24857 AFLX; oxidoreductase AflX +K24858 AFLY; oxidoreductase AflY +K24859 GP; phenuiviridae envelopment polyprotein +K24860 p110; Rubivirus structral polyprotein +K24861 E1; Hepatitis C virus envelope glycoprotein E1 +K24862 gp46; HTLV envelope surface glycoprotein gp46 +K24863 gp21; HTLV envelope transmembrane protein gp21 +K24864 ARL6IP1; ADP-ribosylation factor-like protein 6-interacting protein 1 +K24865 CDIN1; CDAN1-interacting nuclease 1 +K24866 sirC; precorrin-2 dehydrogenase [EC:1.3.1.76] +K24867 nirN; dihydro-heme d1 dehydrogenase +K24868 nirJ; heme d1 biosynthesis protein +K24869 SCAPER; S phase cyclin A-associated protein in the endoplasmic reticulum +K24870 TMEM240; transmembrane protein 240 +K24871 E2.1.3.16; ureidoglycine carbamoyltransferase [EC:2.1.3.16] +K24872 yvoF; heptaprenylglycerol acetyltransferase [EC:2.3.1.-] +K24873 hepT; heptaprenyl diphosphate synthase component 2 [EC:2.5.1.30] +K24874 BSX; brain-specific homeobox protein +K24875 DBX; homeobox protein DBX +K24876 NOTO; homeobox protein notochord +K24877 VENTX; homeobox protein VENTX +K24878 ADNP2; activity-dependent neuroprotector homeobox protein 2 +K24879 ZHX1; zinc fingers and homeoboxes protein 1 +K24880 ZHX2; zinc fingers and homeoboxes protein 2 +K24881 ZHX3; zinc fingers and homeoboxes protein 3 +K24882 NANOGNB; NANOG neighbor homeobox +K24883 HOMEZ; homeobox and leucine zipper protein Homez +K24884 HDX; highly divergent homeobox +K24885 HMBOX1; homeobox-containing protein 1 +K24886 TOGARAM; TOG array regulator of axonemal microtubules protein +K24887 GTPBP1; GTP-binding protein 1 +K24888 GTPBP2; GTP-binding protein 2 +K24889 IRX; iroquois-class homeodomain protein IRX +K24890 MKX; homeobox protein Mohawk +K24891 PKNOX; homeobox protein PKNOX +K24892 ARGFX; arginine-fifty homeobox +K24893 DMBX1; diencephalon/mesencephalon homeobox protein 1 +K24894 DPRX; divergent paired-related homeobox +K24895 DRGX, PRRXL1; dorsal root ganglia homeobox protein +K24896 DUX; double homeobox protein +K24897 HOPX; homeodomain-only protein +K24898 ISX; intestine-specific homeobox +K24899 LEUTX; leucine-twenty homeobox +K24900 MIXL1; homeobox protein MIXL1 +K24901 OTP; homeobox protein orthopedia +K24902 RHOXF1; rhox homeobox family member 1 +K24903 RHOXF2; rhox homeobox family member 2 +K24904 SEBOX; homeobox protein SEBOX +K24905 TPRX1; tetra-peptide repeat homeobox protein 1 +K24906 wekT; O18-antigen biosynthesis rhamnosyltransferase +K24907 DIP2A; disco-interacting protein 2 homolog A [EC:6.2.1.1] +K24908 DIP2B; disco-interacting protein 2 homolog B +K24909 DIP2C; disco-interacting protein 2 homolog C +K24910 ramA, amfB; ATP-binding cassette, subfamily B, bacterial RamA/AmfB +K24911 ramB, amfA; ATP-binding cassette, subfamily B, bacterial RamB/AmfA +K24912 ramR, amfR; LuxR family transcriptional regulator, transcriptional activator for aerial hyphae formation +K24913 ramS, amfS; lanthionine-containing peptide SapB +K24914 ramC, amfT; probable SapB synthase +K24915 TMEM175; TMEM175 potassium channel family protein +K24916 ZNF521, EVI3; zinc finger protein 521 +K24917 AAP; amino acid permease +K24918 TM4SF1; transmembrane 4 L6 family member 1 +K24919 TM4SF4; transmembrane 4 L6 family member 4 +K24920 TM4SF5; transmembrane 4 L6 family member 5 +K24921 TM4SF18; transmembrane 4 L6 family member 18 +K24922 TM4SF19; transmembrane 4 L6 family member 19 +K24923 TM4SF20; transmembrane 4 L6 family member 20 +K24924 RAPSN; receptor-associated protein of the synapse +K24925 SGTB; small glutamine-rich tetratricopeptide repeat-containing protein beta +K24926 TTC1; tetratricopeptide repeat protein 1 +K24927 TTC4, CNS1; tetratricopeptide repeat protein 4 +K24928 TTC5; tetratricopeptide repeat protein 5 +K24929 TTC6; tetratricopeptide repeat protein 6 +K24930 TTC9; tetratricopeptide repeat protein 9 +K24931 TTC17; tetratricopeptide repeat protein 17 +K24932 CFAP70, TTC18; cilia- and flagella-associated protein 70 +K24933 TTC22; tetratricopeptide repeat protein 22 +K24934 TTC23; tetratricopeptide repeat protein 23 +K24935 TTC27; tetratricopeptide repeat protein 27 +K24936 TTC28; tetratricopeptide repeat protein 28 +K24937 TTC29; tetratricopeptide repeat protein 29 +K24938 CFAP46, TTC40; cilia- and flagella-associated protein 46 +K24939 CWF19L1, DRN1; CWF19-like protein 1 +K24940 CWF19L2; CWF19-like protein 2 +K24941 TTC36, HBP21; tetratricopeptide repeat protein 36 +K24942 TTC38; tetratricopeptide repeat protein 38 +K24943 TTC39; tetratricopeptide repeat protein 39 +K24944 TTC41; tetratricopeptide repeat protein 41 +K24945 ZC3H7; zinc finger CCCH domain-containing protein 7 +K24946 TTC32; tetratricopeptide repeat protein 32 +K24947 TTC34; tetratricopeptide repeat protein 34 +K24948 yknZ, yvrN; antimicrobial peptide resistance transport system permease protein +K24949 yknY, yvrO; antimicrobial peptide resistance transport system ATP-binding protein [EC:7.6.2.-] +K24950 yknX, yvrP; membrane fusion protein, antimicrobial resistance system +K24951 yknW; membrane protein, antimicrobial resistance system +K24952 noxA; nopaline oxidase subunit A +K24953 noxB; nopaline oxidase subunit B +K24954 ooxA; octopine oxidase subunit A +K24955 ooxB; octopine oxidase subunit B +K24956 ZBTB8OS; protein archease +K24957 G; Henipavirus glycoprotein G +K24958 gE, US8; Herpesviridae envelope glycoprotein E +K24959 gH; HHV6A/B envelope glycoprotein H +K24960 gL; HHV6A/B envelope glycoprotein L +K24961 gQ, U100; HHV6A/B glycoprotein Q +K24962 CCDC47; PAT complex subunit CCDC47 +K24963 WDR83OS; PAT complex subunit Asterix +K24964 KIAA1109; transmembrane protein KIAA1109 +K24965 CSF1; protein CSF1 +K24966 gamR; GntR family transcriptional regulator, amino sugar utilization regulator +K24967 nagR; GntR family transcriptional regulator, N-acetylglucosamine utilization regulator +K24968 phnF; GntR family transcriptional regulator, repressor of the phnDCE operon +K24969 dasR; GntR family transcriptional regulator, nutrient-sensing system regulator +K24970 TCF25, RQC1; transcription factor 25 +K24971 NEMF, RQC2; nuclear export mediator factor NEMF +K24972 purZ; Vibrio phage 2-amino-2'-deoxyadenylo-succinate synthase [EC:6.3.4.25] +K24973 DALRD3; DALR anticodon-binding domain-containing protein 3 +K24974 METTL2; tRNA N(3)-methylcytidine methyltransferase METTL2 [EC:2.1.1.-] +K24975 METTL8; mRNA N(3)-methylcytidine methyltransferase METTL8 [EC:2.1.1.-] +K24976 TRK, HKT; Trk/Ktr/HKT type cation transporter +K24977 PMP2; myelin P2 protein +K24978 A1CF; APOBEC1 complementation factor +K24979 BOLL; protein boule-like +K24980 DAZ; deleted in azoospermia protein +K24981 DND1; dead end 1 +K24982 ENOX; ecto-NOX disulfide-thiol exchanger +K24983 G3BP2; Ras GTPase-activating protein-binding protein 2 +K24984 GRSF1; G-rich sequence factor 1 +K24985 ribY; putative riboflavin transport system substrate-binding protein +K24986 ribX; putative riboflavin transport system permease protein +K24987 thiY; putative thiamine transport system substrate-binding protein +K24988 thiX; putative thiamine transport system permease protein +K24989 thiZ; putative thiamine transport system ATP-binding protein +K24990 RBMS; RNA-binding motif, single-stranded-interacting protein +K24991 MTHFSD; methenyltetrahydrofolate synthase domain-containing protein +K24992 MYEF2; myelin expression factor 2 +K24993 PSPC1; paraspeckle component 1 +K24994 RALYL; RNA-binding Raly-like protein +K24995 E1.1.1.425; levoglucosan dehydrogenase [EC:1.1.1.425] +K24996 STEEP1; STING ER exit protein +K24997 GDAP2; ganglioside-induced differentiation-associated protein 2 +K24998 fbiB; dehydro coenzyme F420 reductase / coenzyme F420-0:L-glutamate ligase / coenzyme F420-1:gamma-L-glutamate ligase [EC:1.3.8.17 6.3.2.31 6.3.2.34] +K24999 RAVER1; ribonucleoprotein PTB-binding 1 +K25000 RAVER2; ribonucleoprotein PTB-binding 2 +K25001 S1; SARS coronavirus spike protein S1 +K25002 S2; SARS coronavirus spike protein S2 +K25003 E; Flavivirus envelope protein E +K25004 MTHFR; methylenetetrahydrofolate reductase (NADPH) [EC:1.5.1.53] +K25005 RBM11; splicing regulator RBM11 +K25006 RBM24_38; RNA-binding protein 24/38 +K25007 metV; methylenetetrahydrofolate reductase (NADH) small subunit +K25008 rnfC2; ion-translocating oxidoreductase complex subunit C [EC:7.-.-.-] +K25009 E1.5.1.20; methylenetetrahydrofolate reductase [NAD(P)H] [EC:1.5.1.20] +K25010 GE; (4-O-methyl)-D-glucuronate---lignin esterase [EC:3.1.1.117] +K25011 nsp1; SARS coronavirus host translation inhibitor nsp1 +K25012 nsp2; SARS coronavirus non-structural protein 2 +K25013 nsp3; SARS coronavirus non-structural protein 3 [EC:3.4.19.12] +K25014 nsp4; SARS coronavirus non-structural protein 4 +K25015 nsp5; SARS coronavirus 3C-like proteinase [EC:3.4.22.69] +K25016 nsp6; SARS coronavirus non-structural protein 6 +K25017 nsp7; SARS coronavirus non-structural protein 7 +K25018 nsp8; SARS coronavirus non-structural protein 8 +K25019 nsp9; SARS coronavirus non-structural protein 9 +K25020 nsp10; SARS coronavirus non-structural protein 10 +K25021 nsp12; Coronaviridae RNA-directed RNA polymerase [EC:2.7.7.48] +K25022 nsp13; SARS coronavirus helicase [EC:5.6.2.5] +K25023 nsp14; SARS coronavirus proofreading exoribonuclease [EC:3.1.13.-] +K25024 nsp15; SARS coronavirus uridylate-specific endoribonuclease +K25025 nsp16; SARS coronavirus 2'-O-methyltransferase [EC:2.1.1.-] +K25026 glk; glucokinase [EC:2.7.1.2] +K25027 btuC; cobalamin transport system permease protein +K25028 btuD; cobalamin transport system ATP-binding protein [EC:7.6.2.8] +K25029 OTOA; otoancorin +K25030 OTOG, OTOGL; otogelin +K25031 gntK; gluconokinase [EC:2.7.1.12] +K25032 K25032; alpha-aminoadipate-LysW ligase/glutamate-LysW ligase [EC:6.3.2.43 6.3.2.60] +K25033 chdC, hemQ; hydrogen peroxide-dependent heme synthase [EC:1.3.98.5] +K25034 btuF; cobalamin transport system substrate-binding protein +K25035 rlp; S-methyl-5-thioribulose 1-phosphate isomerase [EC:5.3.3.23] +K25036 ESM1; endothelial cell-specific molecule 1 +K25037 PODN; podocan +K25038 PODNL1; podocan-like protein 1 +K25039 PAQR7, MPRA; membrane progestin receptor alpha +K25040 PAQR8, MPRB; membrane progestin receptor beta +K25041 PAQR5, MPRG; membrane progestin receptor gamma +K25042 HHT; hydroxycinnamoyl-CoA:5-hydroxyanthranilate N-hydroxycinnamoyltransferase [EC:2.3.1.302] +K25043 LGK; levoglucosan kinase [EC:2.7.1.232] +K25044 oleBC; cis-3-alkyl-4-acyloxetan-2-one decarboxylase / olefin beta-lactone synthetase [EC:4.1.1.114 6.1.3.1] +K25045 xacG; L-arabinose/D-xylose transport system substrate-binding protein +K25046 xacH; L-arabinose/D-xylose transport system permease protein +K25047 xacI; L-arabinose/D-xylose transport system permease protein +K25048 TMEM106B; transmembrane protein 106B +K25049 TMEM106A; transmembrane protein 106A +K25050 TMEM106C; transmembrane protein 106C +K25051 MA; HTLV-1 matrix protein +K25052 CA; HTLV-1 capsid protein +K25053 NC; HTLV-1 nucleocapsid protein +K25054 PR; HTLV-1 protease [EC:3.4.23.-] +K25055 RT; HTLV-1 reverse transcriptase / ribonuclease H [EC:2.7.7.49 2.7.7.7 3.1.26.4] +K25056 IN; HTLV-1 integrase +K25057 PSIP1, LEDGF; PC4 and SFRS1-interacting protein +K25058 CACTIN; cactin +K25059 SDE2; replication stress response regulator SDE2 +K25060 CYP87D18_20; cucurbitadienol 11-hydroxylase / 11-oxocucurbitadienol 20-hydroxylase [EC:1.14.14.71 1.14.14.-] +K25061 lipL; uridine-5'-phosphate dioxygenase [EC:1.14.11.49] +K25062 abnE; arabinooligosaccharide transport system substrate-binding protein +K25063 abnF; arabinooligosaccharide transport system permease protein +K25064 abnJ; arabinooligosaccharide transport system permease protein +K25065 HDGFL2; hepatoma-derived growth factor-related protein 2 +K25066 L2; Adenoviridae penton base protein +K25067 fcsSBP; fucose transport system substrate-binding protein +K25068 K25068; fucose transport system permease protein +K25069 K25069; fucose transport system permease protein +K25070 DTWD1; tRNA-uridine aminocarboxypropyltransferase [EC:2.5.1.25] +K25071 A26L; Orthopoxvirus protein A26 +K25072 crtNc; 4,4'-diapolycopenoate synthase [EC:1.2.99.10] +K25073 cruO; 1'-hydroxy-gamma-carotene C-4' ketolase +K25074 crtU; carotenoid chi-ring synthase [EC:1.3.99.40] +K25075 PTS; pterocarpan synthase [EC:4.2.1.139] +K25076 KHDC3; KH domain-containing protein 3 +K25077 OOEP; oocyte-expressed protein +K25078 RBM33; RNA-binding protein 33 +K25079 RBM42; RNA-binding protein 42 +K25080 RBM44; RNA-binding protein 44 +K25081 RBM45; RNA-binding protein 45 +K25082 RBM46; RNA-binding protein 46 +K25083 RBM47; RNA-binding protein 47 +K25084 CSAA; contact site A protein +K25085 PSPA; prespore-specific protein A +K25086 musE; maltose transport system substrate-binding protein +K25087 musF; maltose transport system permease protein +K25088 musG; maltose transport system permease protein +K25089 musI; membrane protein +K25090 RBMY1; RNA-binding motif protein, Y chromosome, family 1 +K25091 RBPMS; RNA-binding protein with multiple splicing +K25092 SAFB; scaffold attachment factor B +K25093 SLTM; SAFB-like transcription modulator +K25094 EPB42; erythrocyte membrane protein band 4.2 +K25095 SLIRP; SRA stem-loop-interacting RNA-binding protein, mitochondrial +K25096 agpA; alpha-galactoside transport system substrate-binding protein +K25097 agpB; alpha-galactoside transport system permease protein +K25098 agpC; alpha-galactoside transport system permease protein +K25099 agpD; alpha-galactoside transport system ATP-binding protein +K25100 SPEN, SHARP, MINT; Msx2-interacting protein +K25101 SRSF12; serine/arginine-rich splicing factor 12 +K25102 TRNAU1AP; tRNA selenocysteine 1-associated protein 1 +K25103 nikZ; nickel transport system substrate-binding protein +K25104 nikY; nickel transport system permease protein +K25105 nikX; nickel transport system permease protein +K25106 nikW; nickel transport system ATP-binding protein [EC:7.2.2.11] +K25107 nikV; nickel transport system ATP-binding protein [EC:7.2.2.11] +K25108 E3.2.1.73; licheninase [EC:3.2.1.73] +K25109 sirA, fecB, cbrA; iron-siderophore transport system substrate-binding protein +K25110 sirB, fecC, cbrB; iron-siderophore transport system permease protein +K25111 sirC, fecD, cbrC; iron-siderophore transport system permease protein +K25112 TMX2; thioredoxin-related transmembrane protein 2 +K25113 htsA, isdE; heme transport system substrate-binding protein +K25114 htsB, isdF; heme transport system permease protein +K25115 htsC; heme transport system ATP-binding protein [EC:7.6.2.5] +K25116 isdD; heme transport system membrane component +K25117 isdB; iron-regulated surface determinant protein B +K25118 isdC; iron-regulated surface determinant protein C +K25119 shp; heme transport system cell surface heme-binding protein +K25120 shr; heme sequestration protein +K25121 isdH, harA; iron-regulated surface determinant protein H +K25122 GP1; New World clade B arenavirus glycoprotein GP1 +K25123 hydA2; iron hydrogenase HydA2 [EC:1.12.7.-] +K25124 hycB; FeS-containing electron transfer protein +K25125 GP1; Old World arenavirus glycoprotein GP1 +K25126 E2; Alphavirus spike glycoprotein E2 +K25127 VP1; Enterovirus C capsid protein VP1 +K25128 E1; Rubivirus spike glycoprotein E1 +K25129 AHCTF1, ELYS; protein ELYS +K25130 fecE, cbrD; iron-siderophore transport system ATP-binding protein [EC:7.2.2.-] +K25131 PRSS37; inactive serine protease 37 +K25132 hmuT, phuT, bhuT, hemT; heme transport system substrate-binding protein +K25133 hmuU, phuU, bhuU, hemU; heme transport system permease protein +K25134 E4.2.3.159; tsukubadiene synthase [EC:4.2.3.159] +K25135 K25135; cyclic di-GMP phosphodiesterase [EC:3.1.4.-] +K25136 rlmK; 23S rRNA (guanine2069-N7)-methyltransferase [EC:2.1.1.264] +K25137 rlmL; 23S rRNA (guanine2445-N2)-methyltransferase [EC:2.1.1.173] +K25138 ANKRD26; ankyrin repeat domain-containing protein 26 +K25139 ERMARD; endoplasmic reticulum membrane-associated RNA degradation protein +K25140 drrB; daunorubicin/doxorubicin transport system permease protein +K25141 drrA; daunorubicin/doxorubicin transport system ATP-binding protein +K25142 lnrN, sagI; linearmycin/streptolysin S transport system permease protein +K25143 lnrM, sagH; linearmycin/streptolysin S transport system permease protein +K25144 lnrL, sagG; linearmycin/streptolysin S transport system ATP-binding protein +K25145 fscF; candicidin polyketide synthase FscF +K25146 PA-X; Influenza A virus protein PA-X +K25147 berB; beta-exotoxin I transport system permease protein +K25148 berA; beta-exotoxin I transport system ATP-binding protein +K25149 narB; polyether ionophore transport system permease protein +K25150 narA; polyether ionophore transport system ATP-binding protein +K25151 gldF; gliding motility-associated transport system permease protein +K25152 gldA; gliding motility-associated transport system ATP-binding protein +K25153 gldG; gliding motility-associatede transport system auxiliary component +K25154 evrC; viologen exporter family transport system permease protein +K25155 evrB; viologen exporter family transport system permease protein +K25156 evrA; viologen exporter family transport system ATP-binding protein +K25157 ecsB; ABC-2 type transport system permease protein +K25158 ecsA; ABC-2 type transport system ATP-binding protein +K25159 ecsC; protein EcsC +K25160 HA1; Influenza A virus hemagglutinin HA1 chain +K25161 HA2; Influenza A virus hemagglutinin HA2 chain +K25162 GUP1_2; membrane-bound O-acyltransferase GUP1_2 +K25163 WAPL; wings apart-like protein +K25164 WRAP73, WDR8; WD repeat-containing protein WRAP73 +K25165 HELZ2; 3'-5' exoribonuclease HELZ2 [EC:3.1.13.1 5.6.2.6] +K25166 EEF1AKNMT, METTL13; eEF1A lysine and N-terminal methyltransferase [EC:2.1.1.-] +K25167 ABCH1; ATP-binding cassette, subfamily H +K25168 HELZ; helicase with zinc finger domain [EC:5.6.2.-] +K25169 devC; heterocyst specific transport system permease protein +K25170 devA; heterocyst specific system ATP-binding protein +K25171 devB; membrane fusion protein DevB +K25172 hgdD; heterocyst glycolipid deposition protein +K25173 RNF112; E3 ubiquitin-protein ligase RNF112 [EC:2.3.2.27] +K25174 RNF220; E3 ubiquitin-protein ligase RNF220 [EC:2.3.2.27] +K25175 ZFP91; E3 ubiquitin-protein ligase ZFP91 [EC:2.3.2.27] +K25176 ZNF451; E3 SUMO-protein ligase ZNF451 [EC:2.3.2.-] +K25177 ZCCHC4; rRNA N6-adenosine-methyltransferase ZCCHC4 [EC:2.1.1.-] +K25178 CCDC174; coiled-coil domain-containing protein 174 +K25179 ARMS2; age-related maculopathy susceptibility protein 2 +K25180 ybhR; drug efflux transport system permease protein +K25181 ybhS; drug efflux transport system permease protein +K25182 ybhF; drug efflux transport system ATP-binding protein +K25183 ybhG; membrane fusion protein YbhG +K25184 pltN; outer membrane protein PltN +K25185 TRABD2; metalloprotease TIKI [EC:3.4.-.-] +K25186 RTF2; replication termination factor 2 +K25187 pltK; pyoluteorin transport system permease protein +K25188 pltJ; pyoluteorin transport system permease protein +K25189 pltI; pyoluteorin transport system ATP-binding protein +K25190 pltH; membrane fusion protein PltH +K25191 BCDIN3D; RNA 5'-monophosphate methyltransferase [EC:2.1.1.-] +K25192 RNF157; E3 ubiquitin-protein ligase RNF157 [EC:2.3.2.27] +K25193 SDC; serine decarboxylase [EC:4.1.1.-] +K25194 rfbL, wbaL; O-antigen biosynthesis O-acetyltransferase [EC:2.3.1.303] +K25195 rfbU, wbaU; O-antigen biosynthesis alpha-1,4-mannosyltransferase [EC:2.4.1.378] +K25196 rfbZ, wbaZ; O-antigen biosynthesis alpha-1,3-mannosyltransferase [EC:2.4.1.379] +K25197 rfbW, wbaW; O-antigen biosynthesis alpha-1,2-mannosyltransferase [EC:2.4.1.380] +K25198 rfbQ, wbaQ; O-antigen biosynthesis alpha-1,2-rahmnosyltransferase [EC:2.4.1.381] +K25199 rfbR, wbaR; O-antigen biosynthesis alpha-1,3-abequosyltransferase [EC:2.4.1.382] +K25200 rfbO, wbaO; O-antigen biosynthesis beta-1,4-mannosyltransferase [EC:2.4.1.383] +K25201 IPO11, RANBP11; importin-11 +K25202 IPO13, RANBP13; importin-13 +K25203 XPO4; exportin-4 +K25204 XPO6, RANBP20; exportin-6 +K25205 pslC; polysaccharide biosynthesis protein PslC +K25206 TMEM127; transmembrane protein 127 +K25207 ZSWIM8; zinc finger SWIM domain-containing protein 8 +K25208 ANKRD9; ankyrin repeat domain-containing protein 9 +K25209 CASZ1; zinc finger protein castor +K25210 LANCL1; glutathione transferase [EC:2.5.1.18] +K25211 hptA; hexose phosphate transport regulatory protein HptA +K25212 hptS; two-component system, sensor histidine kinase HptS [EC:2.7.13.3] +K25213 hptR; two-component system, response regulator HptR +K25214 RNF186; E3 ubiquitin-protein ligase RNF186 [EC:2.3.2.27] +K25215 LMBR1L; protein LMBR1L +K25216 UBAC2; ubiquitin-associated domain-containing protein 2 +K25217 LMBR1; limb region 1 protein +K25218 AFTPH; aftiphilin +K25219 SYNRG; synergin gamma +K25220 mtgB; glycine betaine---corrinoid protein Co-methyltransferase [EC:2.1.1.376] +K25221 mtgA; [methyl-Co(III) glycine betaine-specific corrinoid protein]---tetrahydrofolate methyltransferase [EC:2.1.1.378] +K25222 mmp10; [methyl coenzyme M reductase]-L-arginine C-5-methyltransferase [EC:2.1.1.379] +K25223 arsJ; MFS transporter, APGE family, 1-arseno-3-phosphoglycerate exporter +K25224 gapdh; glyceraldehyde-3-phosphate dehydrogenase (arsenate-transferring) [EC:1.2.1.107] +K25225 AMTN; amelotin +K25226 C8ORF37; protein C8orf37 +K25227 sdsA1; linear primary-alkylsulfatase [EC:3.1.6.21] +K25228 APC15, ANAPC15; anaphase-promoting complex subunit 15 +K25229 APC16, ANAPC16; anaphase-promoting complex subunit 16 +K25230 yjiC; NDP-glycosyltransferase [EC:2.4.1.384] +K25231 aplK; apulose kinase [EC:2.7.1.233] +K25232 fakB; fatty acid kinase fatty acid binding subunit +K25233 ambB; L-alanine---[L-alanyl-carrier protein] ligase [EC:6.2.1.67] +K25234 ambE; L-glutamate---[L-glutamyl-carrier protein] ligase [EC:6.2.1.68] +K25235 UL52; Simplexvirus DNA primase [EC:2.7.7.-] +K25236 UL8; Simplexvirus DNA helicase/primase complex-associated protein +K25237 UL5, HELI; Simplexvirus DNA replication helicase [EC:5.6.2.3] +K25238 UL42; Simplexvirus DNA polymerase processivity factor +K25239 UL70; Cytomegalovirus DNA primase [EC:2.7.7.-] +K25240 UL102; Cytomegalovirus DNA helicase/primase complex-associated protein +K25241 UL105, HELI; Cytomegalovirus DNA replication helicase [EC:5.6.2.-] +K25242 UL44; Cytomegalovirus DNA polymerase processivity factor +K25243 UL57, DBP; Cytomegalovirus major DNA-binding protein +K25244 BSLF1; Lymphocryptovirus DNA primase [EC:2.7.7.-] +K25245 BBLF2/3; Lymphocryptovirus DNA helicase/primase complex-associated protein +K25246 BBLF4, HELI; Lymphocryptovirus DNA replication helicase [EC:5.6.2.-] +K25247 BMRF1; Lymphocryptovirus DNA polymerase processivity factor +K25248 BALF2, DBP; Lymphocryptovirus major DNA-binding protein +K25249 U43; Roseolovirus DNA primase [EC:2.7.7.-] +K25250 U74; Roseolovirus DNA helicase/primase complex-associated protein +K25251 U77, HELI; Roseolovirus DNA replication helicase [EC:5.6.2.-] +K25252 U27; Roseolovirus DNA polymerase processivity factor +K25253 U41, DBP; Roseolovirus major DNA-binding protein +K25254 ecm13; L-tryptophan---[L-tryptophyl-carrier protein] ligase [EC:6.2.1.73] +K25255 hpfG; (2S)-3-sulfopropanediol dehydratase [EC:4.2.1.177] +K25256 E2A, DBP; Mastadenovirus DNA-binding protein +K25257 E1A; Mastadenovirus E1A protein +K25258 E1B; Mastadenovirus E1B protein +K25259 E4; Mastadenovirus E4 protein +K25260 lxyD; L-lyxonate dehydratase [EC:4.2.1.176] +K25261 islA; isethionate sulfite-lyase [EC:4.4.1.38] +K25262 islB; isethionate sulfite-lyase activating enzyme +K25263 hpfH; (2S)-3-sulfopropanediol dehydratase activating enzyme +K25264 hpsG; (2S)-3-sulfopropanediol sulfolyase [EC:4.4.1.41] +K25265 hpsH; (2S)-3-sulfopropanediol sulfolyase activating enzyme +K25266 UNG; Poxviridae uracil-DNA glycosylase [EC:3.2.2.27] +K25267 D5R; Poxviridae primase D5 +K25268 POL; Poxviridae DNA polymerase [EC:2.7.7.7 3.1.11.-] +K25269 I3L; Poxviridae ssDNA-binding phosphoprotein +K25270 H5; Poxviridae late transcription elongation factor H5 +K25271 tynA; tyramine oxidase subunit A [EC:1.4.3.-] +K25272 tynB; tyramine oxidase subunit B [EC:1.4.3.-] +K25273 RPO147; Poxviridae DNA-directed RNA polymerase 147 kDa subunit [EC:2.7.7.6] +K25274 RPO132; Poxviridae DNA-directed RNA polymerase 133 kDa subunit [EC:2.7.7.6] +K25275 RPO30; Poxviridae DNA-directed RNA polymerase 30 kDa subunit [EC:2.7.7.6] +K25276 RPO35; Poxviridae DNA-directed RNA polymerase 35 kDa subunit [EC:2.7.7.6] +K25277 RPO22; Poxviridae DNA-directed RNA polymerase 22 kDa subunit [EC:2.7.7.6] +K25278 RPO7; Poxviridae DNA-directed RNA polymerase 7 kDa subunit [EC:2.7.7.6] +K25279 RPO19; Poxviridae DNA-directed RNA polymerase 19 kDa subunit [EC:2.7.7.6] +K25280 gp2.5, ssb; Autographiviridae single-stranded DNA-binding protein +K25281 gp1; Enterovirus genome polyprotein +K25282 yclQ, ceuA; iron-siderophore transport system substrate-binding protein +K25283 yclO, ceuC; iron-siderophore transport system permease protein +K25284 yclN, ceuB; iron-siderophore transport system permease protein +K25285 yclP, ceuD; iron-siderophore transport system ATP-binding protein [EC:7.2.2.-] +K25286 fagD, cchF, irp1A, piaA; iron-siderophore transport system substrate-binding protein +K25287 desE; iron-desferrioxamine transport system substrate-binding protein +K25288 fhuB, ftsC, siuB; ferric hydroxamate/heme transport system permease protein +K25289 fhuG, ftsD, siuG; ferric hydroxamate/heme transport system permease protein +K25290 fhuA, ftsA, siuA; ferric hydroxamate/heme transport system ATP-binding protein [EC:7.2.2.16] +K25291 TMEM94; transmembrane protein 94 +K25292 TMEM98; transmembrane protein 98 +K25293 2A; Enterovirus protease 2A [EC:3.4.22.29] +K25294 2B; Enterovirus protein 2B +K25295 3AB; Enterovirus protein 3AB +K25296 3A; Enterovirus protein 3A +K25297 3B; Enterovirus viral protein genome-linked +K25298 3CD; Enterovirus protein 3CD +K25299 3C; Enterovirus protease 3C [EC:3.4.22.28] +K25300 gp1; Alphavirus polyprotein P1234 +K25301 N; Mammarenavirus nucleoprotein [EC:3.1.13.-] +K25302 Z; Mammarenavirus RING finger protein Z +K25303 L; Mammarenavirus RNA-directed RNA polymerase L [EC:2.7.7.48 3.1.-.-] +K25304 RPC9, CRCP; DNA-directed RNA polymerase III subunit RPC9 +K25305 dmfA1; N,N-dimethylformamidase small subunit [EC:3.5.1.56] +K25306 CA; HIV capsid protein +K25307 wzb, etp; low molecular weight protein-tyrosine phosphatase [EC:3.1.3.48] +K25308 fhuD, ftsB, siuD; ferric hydroxamate/heme transport system substrate-binding protein +K25309 VP1; Rotavirus RNA-directed RNA polymerase [EC:2.7.7.48] +K25310 VP3; Rotavirus protein VP3 [EC:3.1.4.- 2.7.7.50 2.1.1.56] +K25311 VP1; Coltivirus RNA-directed RNA polymerase [EC:2.7.7.48] +K25312 VP2; Coltivirus RNA methyltransferase VP2 [EC:2.1.1.-] +K25313 VP3; Coltivirus protein VP3 +K25314 FKGP, fkp; fucokinase / fucose-1-phosphate guanylyltransferase [EC:2.7.1.52 2.7.7.30] +K25315 AFKP80; arabinokinase / fucokinase / arabinose-1-phosphate guanylyltransferase / fucose-1-phosphate guanylyltransferase [EC:2.7.1.- 2.7.7.- 2.7.1.52 2.7.7.30] +K25316 racX, ygeA; amino-acid racemase [EC:5.1.1.10] +K25317 alr, bsrV; amino-acid racemase [EC:5.1.1.10] +K25318 MEI1; meiosis inhibitor protein 1 +K25319 GP2; Old World arenavirus glycoprotein GP2 +K25320 NS1_2; Norovirus protein p48 +K25321 NS4; Norovirus protein p22 +K25322 NS5; Norovirus viral genome-linked protein +K25323 NS7; Norovirus RNA-directed RNA polymerase [EC:2.7.7.48] +K25324 NS3; Norovirus NTPase [EC:3.6.1.15] +K25325 NS6; Norovirus 3C-like protease [EC:3.4.22.66] +K25326 NS4B; Flavivirus non-structural protein 4B +K25327 NS1; Flavivirus non-structural protein 1 +K25328 NS3; Flavivirus serine protease NS3 catalytic subunit [EC:3.4.21.91 3.6.1.15 5.6.2.6] +K25329 NS2B; Flavivirus serine protease subunit NS2B +K25330 NS4A; Flavivirus non-structural protein 4A +K25331 NS2A; Flavivirus non-structural protein 2A +K25332 NS5; Flavivirus RNA-directed RNA polymerase NS5 [EC:2.1.1.56. 2.1.1.57 2.7.7.48] +K25333 L; Ebolavirus RNA-directed RNA polymerase L [EC:2.7.7.48 2.7.7.88 3.6.1.- 2.1.1.-] +K25334 VP35; Ebolavirus polymerase cofactor VP35 +K25335 NP; Ebolavirus nucleoprotein +K25336 L; Marburgvirus RNA-directed RNA polymerase L [EC:2.7.7.48 2.7.7.88 3.6.1.- 2.1.1.-] +K25337 VP35; Marburgvirus polymerase cofactor VP35 +K25338 NP; Marburgvirus nucleoprotein +K25339 P; Respirovirus phosphoprotein +K25340 N; Respirovirus nucleoprotein +K25341 P; Lyssavirus phosphoprotein +K25342 N; Lyssavirus nucleoprotein +K25343 ADM2; adrenomedullin-2 +K25344 ADM5; adrenomedullin-5 +K25345 L; Peribunyaviridae RNA-directed RNA polymerase L [EC:2.7.7.48 3.1.-.-] +K25346 N; Orthobunyavirus nucleoprotein +K25347 L; Orthonairovirus RNA-dependent RNA polymerase L [EC:2.7.7.48 3.4.19.12] +K25348 N; Orthonairovirus nucleoprotein +K25349 AFM; afamin +K25350 ALKAL; ALK and LTK ligand +K25351 LCN1; lipocalin-1 +K25352 OBP2; odorant-binding protein 2 +K25353 PAEP; glycodelin +K25354 APOM; apolipoprotein M +K25355 APELA; apelin receptor early endogenous ligand +K25356 ANGPTL1, ANG3; angiopoietin-related protein 1 +K25357 ANGPTL5; angiopoietin-related protein 5 +K25358 ANGPTL7; angiopoietin-related protein 7 +K25359 ANGPTL2; angiopoietin-related protein 2 +K25360 ANGPTL6; angiopoietin-related protein 6 +K25361 TM6SF; transmembrane 6 superfamily +K25362 APOC4; apolipoprotein C-IV +K25363 APOF; apolipoprotein F +K25364 LK; lombricine kinase [EC:2.7.3.5] +K25365 gbh; guanidinobutyrase / D-arginase [EC:3.5.3.7 3.5.3.10] +K25366 MESD, BOCA; LRP chaperone MESD +K25367 LYPD6; Ly-6/uPAR domain-containing protein 6 +K25368 LYPD6B; Ly-6/uPAR domain-containing protein 6B +K25369 LYNX1; Ly-6/neurotoxin-like protein 1 +K25370 PATE; prostate and testis expressed protein +K25371 LYPD8; Ly-6/uPAR domain-containing protein 8 +K25372 TEX101; testis-expressed protein 101 +K25373 ACRV1; acrosomal protein SP-10 +K25374 BPI; bactericidal permeability-increasing protein +K25375 BPIFA, SPLUNC; BPI fold-containing family A +K25376 BPIFB, LPLUNC; BPI fold-containing family B +K25377 BPIFC; BPI fold-containing family C +K25378 DEK1; calpain-type cysteine protease DEK1 [EC:3.4.22.-] +K25379 iaaH; indole-3-acetyl-L-aspartate hydrolase [EC:3.5.1.134] +K25380 EGY; zinc metalloprotease EGY, chloroplastic [EC:3.4.24.-] +K25381 FRRS1L; DOMON domain-contaning protein FRRS1L +K25382 MENT; protein MENT +K25383 C6ORF15, STG; protein C6orf15 +K25384 LEG1; protein LEG1 +K25385 BRINP1, DBCCR1, FAM5A; BMP/retinoic acid-inducible neural-specific protein 1 +K25386 BRINP2_3, DBCCR1L, FAM5B_C; BMP/retinoic acid-inducible neural-specific protein 2/3 +K25387 GPR15L; protein GPR15L +K25388 KIFAP3, KAP3; kinesin-associated protein 3 +K25389 TXNDC15; thioredoxin domain-containing protein 15 +K25390 CETN4; centrin-4 +K25391 DBN1; drebrin +K25392 CCDC88A; girdin +K25393 PIFO; protein pitchfork +K25394 TMEM80; transmembrane protein 80 +K25395 CFAP36; cilia- and flagella-associated protein 36 +K25396 CFAP126; protein Flattop +K25397 CCDC66; coiled-coil domain-containing protein 66 +K25398 CCDC68; coiled-coil domain containing protein 68 +K25399 CCDC120; coiled-coil domain containing protein 120 +K25400 SCLT1; sodium channel and clathrin linker 1 +K25401 LRRC45; leucine-rich repeat-containing protein 45 +K25402 CYS1; cystin-1 +K25403 RILPL2; RILP-like protein 2 +K25404 RD3; protein RD3 +K25405 RGS9BP; regulator of G-protein signaling 9-binding protein +K25406 MFAP2; microfibrillar-associated protein 2 +K25407 MFAP3; microfibrillar-associated protein 3 +K25408 MFAP3L; microfibrillar-associated protein 3-like +K25409 MFAP4; microfibrillar-associated protein 4 +K25410 MFAP5; microfibrillar-associated protein 5 +K25411 ENHO; adropin +K25412 CD5L; CD5 antigen-like protein +K25413 CLPSL2; colipase-like protein 2 +K25414 NRTN; neurturin +K25415 ARTN; artemin +K25416 PSPN; persephin +K25417 CCDC134; coiled-coil domain-containing protein 134 +K25418 CYTL1; cytokine-like protein 1 +K25419 DYNLT2, TCTE3; dynein light chain Tctex-type 2 +K25420 DYNLT4, TCTEX1D4; dynein light chain Tctex-type 4 +K25421 DYNLT5, TCTEX1D1; dynein light chain Tctex-type 5 +K25422 yceF; 7-methyl-GTP pyrophosphatase [EC:3.6.1.-] +K25423 DNAAF8; dynein axonemal assembly factor 8 +K25424 DNAAF9; dynein axonemal assembly factor 9 +K25425 LRRC56; leucine-rich repeat-containing protein 56 +K25426 PIH1D1; PIH1 domain-containing protein 1 +K25427 PIH1D2; PIH1 domain-containing protein 2 +K25428 LGI1; leucine-rich repeat LGI family member 1 +K25429 LGI2; leucine-rich repeat LGI family member 2 +K25430 LGI4; leucine-rich repeat LGI family member 4 +K25431 LRG1; leucine-rich alpha-2-glycoprotein +K25432 LRRC17; leucine-rich repeat-containing protein 17 +K25433 LEAP2; liver-expressed antimicrobial peptide 2 +K25434 pynA; pyrimidine 5'-nucleotidase [EC:3.1.3.-] +K25435 ASMTL; putative bifunctional nucleoside triphosphate pyrophosphatase / methyltransferase [EC:3.6.1.- 2.1.1.-] +K25436 POLR1G; DNA-directed RNA polymerase I subunit RPA34 +K25437 OXR1; oxidation resistance protein 1 +K25438 LYZL4; lysozyme-like protein 4 +K25439 CFAP100, MIA1; cilia- and flagella-associated protein 100 +K25440 CFAP73, CCDC42; CFAP73 family protein +K25441 MNS1; meiosis-specific nuclear structural protein 1 +K25442 NCOA7; nuclear receptor coactivator 7 +K25443 DRC3; dynein regulatory complex subunit 3 +K25444 OLFM1; noelin +K25445 OLFM2; noelin-2 +K25446 OLFM3; noelin-3 +K25447 OLFM4; olfactomedin-4 +K25448 OLFML1_3; olfactomedin-like protein 1/3 +K25449 OLFML2; olfactomedin-like protein 2 +K25450 TCTE1, DRC5; dynein regulatory complex subunit 5 +K25451 DRC7; dynein regulatory complex subunit 7 +K25452 EFCAB2, DRC8; dynein regulatory complex subunit 8 +K25453 CARTPT; cocaine- and amphetamine-regulated transcript protein +K25454 CFC1; cryptic protein +K25455 TDGF1; teratocarcinoma-derived growth factor 1 +K25456 ROPN1; ropporin-1 +K25457 ROPN1L; ropporin-1-like protein +K25458 RSPH10B; radial spoke head protein 10B +K25459 RSPH14, RTDR1; radial spoke head protein 14 +K25460 CFAP61; cilia- and flagella-associated protein 61 +K25461 CFAP91, MAATS1; cilia- and flagella-associated protein 91 +K25462 OPRPN, SMR3, PROL1; opiorphin prepropeptide and related proteins +K25463 CLOA; cytochrome P450 monooxygenase CloA [EC:1.14.13.-] +K25464 SCGB1A, CC10; secretoglobin family 1A (uteroglobin) +K25465 SCGB1C; secretoglobin family 1C +K25466 SCGB1D; secretoglobin family 1D +K25467 SCGB2A; secretoglobin family 2A (mammaglobin) +K25468 SCGB2B; secretoglobin family 2B +K25469 SCGB3A; secretoglobin family 3A +K25470 CFAP20; cilia- and flagella-associated protein 20 +K25471 CFAP206; cilia- and flagella-associated protein 206 +K25472 SAXO; stabilizer of axonemal microtubules +K25473 BBOF1; basal body-orientation factor 1 +K25474 FAM183; protein FAM183 +K25475 RIBC; RIB43A-like with coiled-coils protein +K25476 CREG; protein CREG +K25477 CRHBP; corticotropin-releasing factor-binding protein +K25478 CT55; cancer/testis antigen 55 +K25479 DAND5, CERL2; DAN domain family member 5 +K25480 DCD; dermcidin +K25481 FRZB, SFRP3; secreted frizzled-related protein 3 +K25482 GALP; galanin-like peptide +K25483 GPHA2; glycoprotein hormone alpha-2 +K25484 GPHB5; glycoprotein hormone beta-5 +K25485 RAV2; regulator of V-ATPase in vacuolar membrane protein 2 +K25486 CYP88L2; cucurbitadienol 19-hydroxylase [EC:1.14.14.-] +K25487 CYP81Q58; 19-hydroxycucurbitadienol 25-hydroxylase [EC:1.14.14.-] +K25488 CYP81Q59; 11-carbonyl-20beta-hydroxycucurbitadienol 2-hydroxylase [EC:1.14.14.-] +K25489 PGA2, CYP72A188; cholesterol 22-hydroxylase [EC:1.14.14.-] +K25490 PGA1, CYP72A208; 22-hydroxycholesterol 26-hydroxylase [EC:1.14.14.-] +K25491 ACT; cucurbitacin acetyltransferase [EC:2.3.1.-] +K25492 16DOX; 22,26-dihydroxycholesterol 16alpha-hydroxylase [EC:1.14.11.-] +K25493 DKK3; dickkopf 3 +K25494 nimT; MFS transporter, CP family, 2-nitroimidazole transporter +K25495 nimR; AraC family transcriptional regulator, regulator of nimT +K25496 cbiR; adenosylcobalamin phosphodiesterase +K25497 bzaC; 5-hydroxybenzimidazole methyltransferase [EC:2.1.1.-] +K25498 bzaD; 5-methoxybenzimidazole methyltransferase +K25499 bzaE; 5-methoxy-6-methylbenzimidazole methyltransferase +K25500 mazZ; Cyanophage dATP/dGTP diphosphohydrolase [EC:3.6.1.-] +K25501 datZ; Vibrio phage dATP triphosphohydrolase [EC:3.1.5.-] +K25502 HA; Influenza B virus hemagglutinin +K25503 cedB; DNA import protein CedB +K25504 cedA; DNA import protein CedA +K25505 cedA1; DNA import protein CedA1 +K25506 cedA2; DNA import protein CedA2 +K25507 HMGBP; high mobility group B protein, plant +K25508 F17R; Orthopoxvirus phosphoprotein F17 +K25509 CRYBG; beta/gamma crystallin domain-containing protein +K25510 nurA; DNA double-strand break repair nuclease NurA [EC:3.1.-.-] +K25511 DRAXIN; draxin +K25512 DPT; dermatopontin +K25513 SPACA1; sperm acrosome membrane-associated protein 1 +K25514 SPACA6; sperm acrosome membrane-associated protein 6 +K25515 SPACA7; sperm acrosome membrane-associated protein 7 +K25516 SPACA9; sperm acrosome membrane-associated protein 9 +K25517 acnX1; phosphomecalonate degydratase large subunit [EC:4.2.1.182] +K25518 E4.1.1.126; anhydromevalonate phosphate decarboxylase [EC:4.1.1.126] +K25519 cotR; putative sporulation hydrolase +K25520 E3.6.1.76; prenyl-diphosphate phosphatase [EC:3.6.1.76] +K25521 L; Respirovirus RNA-directed RNA polymerase L [EC:2.7.7.48 3.6.1.- 2.7.7.88 2.1.1.375] +K25522 CYP76F112; marmesin synthase [EC:1.14.14.66] +K25523 CYP71AZ; cytochrome P450 family 71 subfamily AZ [EC:1.14.14.-] +K25524 pvcC; paerucumarin biosynthesis protein PvcC [EC:1.14.-.-] +K25525 pvcD; paerucumarin biosynthesis protein PvcD +K25526 EDDM3; epididymal secretory protein E3 +K25527 EGFL6, MAEG; epidermal growth factor-like protein 6 +K25528 ysaA; phosphoserine phosphatase [EC:3.1.3.3] +K25529 IZUMO1; izumo sperm-egg fusion protein 1 +K25530 IZUMO1R, FOLR4; sperm-egg fusion protein Juno +K25531 CFAP97D1; sperm axonemal maintenance protein CFAP97D1 +K25532 SPAG6; sperm-associated antigen 6 +K25533 SPAG17; sperm-associated antigen 17 +K25534 FDCSP; follicular dendritic cell secreted peptide +K25535 FGFBP; fibroblast growth factor-binding protein +K25536 FGL1; fibrinogen-like protein 1 +K25537 FGL2; fibroleukin +K25538 GKN1; gastrokine-1 +K25539 GKN2; gastrokine-2 +K25540 GKN3; gastrokine-3 +K25541 TAFA1, FAM19A1; chemokine-like protein TAFA1 +K25542 TAFA2_3, FAM19A2_3; chemokine-like protein TAFA2/3 +K25543 GLB1L; beta-galactosidase-1-like protein [EC:3.2.1.-] +K25544 TAFA4, FAM19A4; chemokine-like protein TAFA4 +K25545 TAFA5, FAM19A5; chemokine-like protein TAFA5 +K25546 SPATA17; spermatogenesis-associated protein 17 +K25547 CCDC189; coiled-coil domain-containing protein 189 +K25548 DLEC1; deleted in lung and esophageal cancer protein 1 +K25549 LRGUK; leucine-rich repeat and guanylate kinase domain-containing protein +K25550 MYCBP; c-Myc-binding protein +K25551 CFAP45; cilia- and flagella-associated protein 45 +K25552 CFAP47; cilia- and flagella-associated protein 47 +K25553 CFAP54; cilia- and flagella-associated protein 54 +K25554 CFAP58; cilia- and flagella-associated protein 58 +K25555 dncV; cyclic GMP-AMP synthase [EC:2.7.7.-] +K25556 GUCA2; guanylate cyclase activator 2 +K25557 HHIPL; HHIP-like protein +K25558 HHLA1; HERV-H LTR-associating protein 1 +K25559 IGFL; insulin growth factor-like family member +K25560 IGFLR1; IGF-like family receptor 1 +K25561 IGIP; IgA-inducing protein +K25562 creE; L-aspartate N-monooxygenase (nitrosuccinate-forming) [EC:1.14.13.248] +K25563 creL, ptmB3; 3-amino-4-hydroxybenzoate 2-monooxygenase [EC:1.14.13.249] +K25564 sznF, stzF; nitrosourea synthase [EC:1.14.13.250] +K25565 IL18BP; interleukin-18-binding protein +K25566 ISLR; immunoglobulin superfamily containing leucine-rich repeat protein +K25567 JCHAIN; immunoglobulin J chain +K25568 KAZALD1; Kazal-type serine protease inhibitor domain-containing protein 1 +K25569 KRTDAP; keratinocyte differentiation-associated protein +K25570 bioU; 8-amino-7-oxononanoate carboxylating dehydrogenase [EC:2.6.1.121] +K25571 pydD; beta-alanine---2-oxoglutarate transaminase [EC:2.6.1.120] +K25572 EHBP1; EH domain-binding protein 1 +K25573 EHBP1L1; EH domain-binding protein 1-like protein 1 +K25574 pntC; (2-aminoethyl)phosphonate cytidylyltransferase [EC:2.7.7.107] +K25575 pabA; 4-amino-4-deoxychorismate synthase (2-amino-4-deoxychorismate-forming) component II [EC:2.6.1.123] +K25576 AVO2; target of rapamycin complex 2 subunit AVO2 +K25577 BIT61_2; target of rapamycin complex 2 subunit BIT61/BIT2 +K25578 pabB; 4-amino-4-deoxychorismate synthase (2-amino-4-deoxychorismate-forming) component I [EC:2.6.1.123] +K25579 TCO89; target of rapamycin complex 1 subunit TCO89 +K25580 CYP82E; nicotine N-demethylase +K25581 CYP82M3; tropinone synthase +K25582 UGT1; phenyllactate UDP-glycosyltransferase [EC:2.4.1.-] +K25583 LS; littorine synthase [EC:2.3.1.-] +K25584 CYP80F1; littorine mutase/monooxygenase +K25585 ktzT; L-piperazate synthase [EC:4.8.1.1] +K25586 LFS; lachrymatory-factor synthase [EC:5.3.99.12] +K25587 E3.4.17.25; glutathione-S-conjugate glycine hydrolase [EC:3.4.17.25] +K25588 K25588; tyrosine-protein kinase [EC:2.7.10.3] +K25589 inuH; inosine/uridine nucleosidase [EC:3.2.2.2 3.2.2.3] +K25590 epsF; protein tyrosine kinase modulator +K25591 LSM10; U7 snRNA-associated Sm-like protein LSm10 +K25592 LSM11; U7 snRNA-associated Sm-like protein LSm11 +K25593 CASP8AP2; CASP8-associated protein 2 +K25594 creN; 3-amino-4-hydroxybenzoate 4-O-methyltransferase [EC:2.1.1.380] +K25595 sznE, stzE; arginine Nomega-methyltransferase [EC:2.1.1.381] +K25596 E4.2.1.178; difructose-dianhydride-III synthase [EC:4.2.1.178] +K25597 creD; nitrosuccinate lyase [EC:4.3.99.5] +K25598 creM; 3-amino-2-hydroxy-4-methoxybenzoate diazotase [EC:6.7.1.1] +K25599 ltaP; lipoteichoic acid primase +K25600 mtcB; L-carnitine---corrinoid protein Co-methyltransferase [EC:2.1.1.383] +K25601 azpI; 6-diazo-5-oxo-L-norleucine Nalpha-acetyltranferase [EC:2.3.1.307] +K25602 tagK; D-tagatose-1-phosphate kinase [EC:2.7.1.234] +K25603 E3.2.1.215; 3-O-alpha-D-galactosyl-alpha-L-arabinofuranosidase [EC:3.2.1.215] +K25604 E3.5.1.137; N-methylcarbamate hydrolase [EC:3.5.1.137] +K25605 BCL7; B-cell CLL/lymphoma 7 protein +K25606 DEFB; defensin, beta +K25607 CFAP74; cilia- and flagella-associated protein 74 +K25608 CFAP99; cilia- and flagella-associated protein 99 +K25609 CFAP157; cilia- and flagella-associated protein 157 +K25610 CFAP221, PCDP1; cilia- and flagella-associated protein 221 +K25611 CFAP299; cilia- and flagella-associated protein 299 +K25612 BICRA, GLTSCR1; BRD4-interacting chromatin-remodeling complex-associated protein +K25613 BICRAL, GLTSCR1L; BRD4-interacting chromatin-remodeling complex-associated protein-like +K25614 SPEF1; sperm flagellar protein 1 +K25615 SPEF2; sperm flagellar protein 2 +K25616 SPATA4; spermatogenesis-associated protein 4 +K25617 csbB; lipoteichoic acid polyisoprenyl-phosphate beta-N-acetylglucosaminyltransferase [EC:2.4.-.-] +K25618 gtlA; lipoteichoic acid polyisoprenyl-phosphate galactosyltransferase [EC:2.4.-.-] +K25619 yfhO; lipoteichoic acid glycosylation protein +K25620 gtlB; lipoteichoic acid galactosyltransferase +K25621 chsH2; 3-oxo-4,17-pregnadiene-20-carboxyl-CoA hydratase alpha subunit [EC:4.2.1.-] +K25622 chsH1; 3-oxo-4,17-pregnadiene-20-carboxyl-CoA hydratase beta subunit [EC:4.2.1.-] +K25623 ltp2; 17-hydroxy-3-oxo-4-pregnene-20-carboxyl-CoA lyase [EC:4.1.3.-] +K25624 CCDC172; coiled-coil domain-containing protein 172 +K25625 CCDC181; coiled-coil domain-containing protein 181 +K25626 aatB; UDP-2-acetamido-4-dehydro-2,6-dideoxyglucose transaminase [EC:2.6.1.-] +K25627 wbgY; AATGal transferase +K25628 TCP11; T-complex protein 11 +K25629 CABYR; calcium-binding tyrosine phosphorylation-regulated protein +K25630 FSCB; fibrous sheath CABYR-binding protein +K25631 FLACC1, ALS2CR12; flagellum-associated coiled-coil domain-containing protein 1 +K25632 TSGA10; testis-specific gene 10 protein +K25633 SPA17; sperm surface protein Sp17 +K25634 hgdH; 2-oxoglutarate reductase [EC:1.1.1.399] +K25635 ODF1; outer dense fiber protein 1 +K25636 ODF3; outer dense fiber protein 3 +K25637 ODF4; outer dense fiber protein 4 +K25638 RHPN1; rhophilin-1 +K25639 SUPT16H, SPT16; FACT complex subunit SPT16 +K25640 MPIG6B; megakaryocyte and platelet inhibitory receptor G6b +K25641 dgk2; deoxyguanosine kinase [EC:2.7.1.113] +K25642 CATSPERE; cation channel sperm-associated protein subunit epsilon +K25643 CATSPERZ, TEX40; cation channel sperm-associated protein subunit zeta +K25644 CABCOCO1; ciliary-associated calcium-binding coiled-coil protein 1 +K25645 CABS1; calcium-binding and spermatid-specific protein 1 +K25646 EFCAB9; EF-hand calcium-binding domain-containing protein 9 +K25647 ENKUR; enkurin +K25648 MYCBPAP, AMAP1; MYCBP-associated protein +K25649 mgh; mannosylglycerate hydrolase [EC:3.2.1.170] +K25650 K25650; teichoic acid beta-1,3-glucosyltransferase [EC:2.4.1.-] +K25651 licD3; teichoic acid ribitol-phosphate transferase +K25652 K25652; teichoic acid N-acetylgalactosaminyltransferase [EC:2.4.1.-] +K25653 K25653; teichoic acid N-acetylgalactosaminyltransferase [EC:2.4.1.-] +K25654 licD2; teichoic acid cholinephosphotransferase [EC:2.7.8.-] +K25655 SERINC5; serine incorporator 5 +K25656 cry, CRYD; cryptochrome +K25657 licA; choline kinase [EC:2.7.1.32] +K25658 licC; choline-phosphate cytidylyltransferase [EC:2.7.7.15] +K25659 K25659; teichoic acid polymerase [EC:2.4.1.-] +K25660 tacL; lipoteichoic acid ligase +K25661 SERINC3; serine incorporator 3 +K25662 RNF212; E3 SUMO-protein ligase RNF212 [EC:2.3.2.-] +K25663 FEZ1; fasciculation and elongation protein zeta-1 +K25664 NC; HIV-1 nucleocapsid protein +K25665 rev; HIV protein Rev +K25666 MA; HIV-1 matrix protein +K25667 p6gag; HIV-1 p6-gag +K25668 FEZ2; fasciculation and elongation protein zeta-2 +K25669 tarP; poly(ribitiol-phosphate) beta-1,3-N-acetylglucosaminyltransferase [EC:2.4.1.-] +K25670 fusA; fructooligosaccharide transport system substrate-binding protein +K25671 fusC; fructooligosaccharide transport system permease protein +K25672 fusB; fructooligosaccharide transport system permease protein +K25673 ytcQ; polygalacturonan/rhamnogalacturonan transport system substrate-binding protein +K25674 yteP; polygalacturonan/rhamnogalacturonan transport system permease protein +K25675 ytcP; polygalacturonan/rhamnogalacturonan transport system permease protein +K25676 yesO; pectin-derived oligosaccharide transport system substrate-binding protein +K25677 yesP; pectin-derived oligosaccharide transport system permease protein +K25678 yesQ; pectin-derived oligosaccharide transport system permease protein +K25679 TEX13; testis-expressed protein 13 +K25680 TEX15; testis-expressed protein 15 +K25681 TEX19; testis-expressed protein 19 +K25682 TEX22; testis-expressed protein 22 +K25683 FAM9, TEX39; protein FAM9 +K25684 MSMB; beta-microseminoprotein +K25685 MSMP; prostate-associated microseminoprotein +K25686 MZB1; marginal zone B- and B1-cell-specific protein +K25687 NDNF; protein NDNF +K25688 NDP; norrin +K25689 NENF; neudesin +K25690 NMS; neuromedin S +K25691 NPS; neuropeptide S +K25692 NPVF; pro-FMRFamide-related neuropeptide VF +K25693 QRFP; orexigenic neuropeptide QRFP +K25694 SPX; spexin +K25695 VGF; neurosecretory protein VGF +K25696 PNOC; prepronociceptin +K25697 TSGA13; testis-specific gene 13 protein +K25698 TPPP2; tubulin polymerization-promoting protein family member 2 +K25699 TXNDC8, SPTRX3; thioredoxin domain-containing protein 8 +K25700 CTHRC1; collagen triple helix repeat-containing protein 1 +K25701 MORN4; MORN repeat-containing protein 4 +K25702 TECTB; beta-tectorin +K25703 VEZT; vezatin +K25704 ZSWIM6; zinc finger SWIM domain-containing protein 6 +K25705 SIX6OS1; protein SIX6OS1 +K25706 tsaD; tRNA N6-adenosine threonylcarbamoyltransferase [EC:2.3.1.234] +K25707 LYZL; lysozyme [EC:3.2.1.17] +K25708 PRSS53; serine protease 53 [EC:3.4.21.-] +K25709 NPTX; neuronal pentraxin +K25710 NPTXR; neuronal pentraxin receptor +K25711 NXPH4; neurexophilin-4 +K25712 OC90; otoconin-90 +K25713 OSTN; osteocrin +K25714 OTOR; otoraplin +K25715 OTOS; otospiralin +K25716 PDGFRL; platelet-derived growth factor receptor-like protein +K25717 PIP; prolactin-inducible protein +K25718 PLAC1; placenta-specific protein 1 +K25719 PLGLB; plasminogen-like protein B +K25720 PRADC1; protease-associated domain-containing protein 1 +K25721 PRB3_4; basic salivary proline-rich protein 3/4 +K25722 PRG3; proteoglycan 3 +K25723 PRR4; proline-rich protein 4 +K25724 PTX3; pentraxin-related protein PTX3 +K25725 PSORS1C2, SPR1; psoriasis susceptibility 1 candidate gene 2 protein +K25726 R3HDML; peptidase inhibitor R3HDML +K25727 REG1; lithostathine-1 +K25728 REG3; regenerating islet-derived protein 3 +K25729 RS1; retinoschisin +K25730 VPS26C; vacuolar protein sorting-associated protein 26C +K25731 VPS35L; VPS35 endosomal protein-sorting factor-like +K25732 SCG2; secretogranin-2 +K25733 SCG3; secretogranin-3 +K25734 SCG5; neuroendocrine protein 7B2 +K25735 SCRG1; scrapie-responsive protein 1 +K25736 SEMG; semenogelin +K25737 SMIM31; small integral membrane protein 31 +K25738 SOSTDC1; sclerostin domain-containing protein 1 +K25739 SSC4D; scavenger receptor cysteine-rich domain-containing group B protein +K25740 SSC5D; soluble scavenger receptor cysteine-rich domain-containing protein SSC5D +K25741 TCN1; transcobalamin-1 +K25742 TEPP; testis, prostate and placenta-expressed protein +K25743 TWSG1; twisted gastrulation protein 1 +K25744 UCMA; unique cartilage matrix-associated protein +K25745 VMO1; vitelline membrane outer layer protein 1 +K25746 VSTM2; V-set and transmembrane domain-containing protein 2 +K25747 ZG16; zymogen granule membrane protein 16 +K25748 ZG16B, PAUF; zymogen granule membrane protein 16B +K25749 TERB1; telomere repeats-binding bouquet formation protein 1 +K25750 TERB2; telomere repeats-binding bouquet formation protein 2 +K25751 MAJIN; membrane-anchored junction protein +K25752 ZPBP; zona pellucida-binding protein +K25753 SELENOP; selenoprotein P +K25754 SHBG; sex hormone-binding globulin +K25755 LECT2; leukocyte cell-derived chemotaxin-2 +K25756 OOSP; oocyte-secreted protein +K25757 DIPK2; divergent protein kinase domain 2 +K25758 CHADL; chondroadherin-like protein +K25759 iaaF; benzylmalonyl-CoA dehydrogenase [EC:1.3.3.17] +K25760 iaaB; indoleacetate---CoA ligase [EC:6.2.1.75] +K25761 iaaL; phenylsuccinyl-CoA transferase [EC:2.8.3.28] +K25762 NAT9; tubulin N-terminal N-acetyltransferase [EC:2.3.1.308] +K25763 ctsY; isomaltosyltransferase [EC:2.4.1.387] +K25764 E2.4.1.388; glucosylgalactose phosphorylase [EC:2.4.1.388] +K25765 avrRxo1; NAD+ 3'-kinase [EC:2.7.1.236] +K25766 E3.2.1.216; kojibiose hydrolase [EC:3.2.1.216] +K25767 nag31; exo-acting protein-alpha-N-acetylgalactosaminidase [EC:3.2.1.217] +K25768 RALGAPA; Ral GTPase-activating protein subunit alpha +K25769 RALGAPB; Ral GTPase-activating protein subunit beta +K25770 ZSWIM7, SWS1; zinc finger SWIM domain-containing protein 7 +K25771 SWSAP1; ATPase SWSAP1 +K25772 PAXX; protein PAXX +K25773 CLSPN; claspin +K25774 K25774; 4-hydroxybutyrate---CoA ligase (AMP-forming) [EC:6.2.1.40] +K25775 casG; steroid-24-oyl-CoA synthetase [EC:6.2.1.-] +K25776 casI; steroid-22-oyl-CoA synthetase [EC:6.2.1.-] +K25777 GOLGA7, GCP16; golgin subfamily A member 7 +K25778 ZDHHC9; palmitoyltransferase ZDHHC9 [EC:2.3.1.225] +K25779 HSD17B11; hydroxysteroid 17beta dehydrogenase 11 [EC:1.1.1.-] +K25780 KHDC4, BLOM7; kelch domain-containing protein 4 +K25781 ILDR1; immunoglobulin-like domain-containing receptor 1 +K25782 ILDR2; immunoglobulin-like domain-containing receptor 2 +K25783 BZIP17_28_49; bZIP transcription factor 17/28/49 +K25784 BZIP9_10_25_63; bZIP transcription factor 9/10/25/63 +K25785 BZIP19_23_24; bZIP transcription factor 19/23/24 +K25786 BZIP1S; bZIP transcription factor 1/2/11/44/53 +K25787 HSD17B13; hydroxysteroid 17beta dehydrogenase 13 [EC:1.1.-.-] +K25788 CATIP; ciliogenesis-associated TTC17-interacting protein +K25789 JAGN; protein jagunal +K25790 EMSY; BRCA2-interacting transcriptional repressor EMSY +K25791 HSF2BP; heat shock factor 2-binding protein +K25792 JMJD8; jumonji domain-containing protein 8 +K25793 NUPR2, NUPR1L; nuclear protein 2 +K25794 HINFP; histone H4 transcription factor +K25795 INSM; insulinoma-associated protein +K25796 YAB; plant-specific transcription factor YABBY family protein +K25797 VP1; Erythroparvovirus capsid protein VP1/VP2 +K25798 gO, UL74; Cytomegalovirus envelope glycoprotein O +K25799 UL130; Cytomegalovirus envelope glycoprotein UL130 +K25800 UL131A; Cytomegalovirus envelope glycoprotein UL131A +K25801 SDH4; succinate dehydrogenase (ubiquinone) subunit 4 +K25802 ATF7IP, MCAF; activating transcription factor 7-interacting protein +K25803 MALSU1; mitochondrial assembly of ribosomal large subunit protein 1 +K25804 E1; Alphavirus spike glycoprotein E1 +K25805 FEM1A_C; protein fem-1 homolog A/C +K25806 APPBP2; amyloid protein-binding protein 2 +K25807 KLHDC2; kelch domain-containing protein 2 +K25808 KLHDC3; kelch domain-containing protein 3 +K25809 KLHDC10; kelch domain-containing protein 10 +K25810 KLHDC1; kelch domain-containing protein 1 +K25811 CCDC88C; protein Daple +K25812 APCDD1; protein APCDD1 +K25813 CCDC88B; coiled-coil domain-containing protein 88B +K25814 manP; mannose PTS system EIIBCA component [EC:2.7.1.191] +K25815 SUB1; activated RNA polymerase II transcriptional coactivator p15 +K25816 CCAR2, DBC1; cell cycle and apoptosis regulator protein 2 +K25817 MAF1; repressor of RNA polymerase III transcription MAF1 +K25818 NOLC1; nucleolar and coiled-body phosphoprotein 1 +K25819 ABCD1, PXA1; ATP-binding cassette, subfamily D (ALD), peroxisomal ABC transporter [EC:7.6.2.4] +K25820 icmA; isobutyryl-CoA mutase large subunit [EC:5.4.99.13] +K25821 icmB; isobutyryl-CoA mutase small subunit [EC:5.4.99.13] +K25822 pcmA; pivalyl-CoA mutase large subunit [EC:5.4.99.-] +K25823 pcmB; pivalyl-CoA mutase small subunit [EC:5.4.99.-] +K25824 ABHD16A; abhydrolase domain-containing protein 16A [EC:3.1.1.23 3.1.-.-] +K25825 ABHD16B; abhydrolase domain-containing protein 16B [EC:3.-.-.-] +K25826 CBFB; core-binding factor subunit beta +K25827 CCAR1; cell division cycle and apoptosis regulator protein 1 +K25828 CALCOCO1; calcium-binding and coiled-coil domain-containing protein 1 +K25829 ELOF1, ELF1; transcription elongation factor 1 +K25830 CECR2; cat eye syndrome critical region protein 2 +K25831 LUZP1; leucine zipper protein 1 +K25832 SLITRK1; SLIT and NTRK-like protein 1 +K25833 SLITRK2; SLIT and NTRK-like protein 2 +K25834 SLITRK3; SLIT and NTRK-like protein 3 +K25835 SLITRK4; SLIT and NTRK-like protein 4 +K25836 SLITRK5; SLIT and NTRK-like protein 5 +K25837 SLITRK6; SLIT and NTRK-like protein 6 +K25838 MYO19; myosin XIX +K25839 NDFIP; NEDD4 family-interacting protein +K25840 AIRP2; E3 ubiquitin-protein ligase AIRP2 [EC:2.3.2.27] +K25841 ALMT; aluminum-activated malate transporter family protein +K25842 mlnB; macrolactin polyketide synthase MlnB +K25843 mlnC; macrolactin polyketide synthase MlnC +K25844 mlnD; macrolactin polyketide synthase MlnD +K25845 mlnE; macrolactin polyketide synthase MlnE +K25846 mlnF; macrolactin polyketide synthase MlnF +K25847 mlnG; macrolactin polyketide synthase MlnG +K25848 mlnH; macrolactin polyketide synthase MlnH +K25849 dfnD; difficidin synthase DfnD +K25850 dfnE; difficidin synthase DfnE +K25851 dfnF; difficidin synthase DfnF +K25852 dfnG; difficidin synthase DfnG +K25853 dfnH; difficidin synthase DfnH +K25854 dfnI; difficidin synthase DfnI +K25855 dfnJ; difficidin synthase DfnJ +K25856 ARID3; AT-rich interactive domain-containing protein 3 +K25857 ARID5; AT-rich interactive domain-containing protein 5 +K25858 ZNF410; zinc finger protein 410 +K25859 acrZ; accessory protein, multidrug efflux pump +K25860 PACC1; proton-activated chloride channel +K25861 ZRANB3; DNA annealing helicase and endonuclease ZRANB3 [EC:5.6.2.- 3.1.-.-] +K25862 NEXMIF; neurite extension and migration factor +K25863 CYBC1; cytochrome b-245 chaperone 1 +K25864 mzrA; modulator protein MzrA +K25865 NEBL; nebulette +K25866 NUDC; nuclear migration protein NudC +K25867 TPPP; tubulin polymerization-promoting protein [EC:3.6.5.-] +K25868 EBS, SHL; chromatin remodeling protein +K25869 IDD1_2; zinc finger protein IDD1/2 +K25870 IDD3S; zinc finger protein IDD3/4/5/6/7/8/9/10/11/12/13 +K25871 IDD14_15_16; zinc finger protein IDD14/15/16 +K25872 TPPP3; tubulin polymerization-promoting protein family member 3 +K25873 raiR; LuxR family transcriptional regulator, quorum-sensing system regulator RaiR +K25874 KIRREL, NEPH; Kirrel/Neph family protein +K25875 wcaA; putative colanic acid biosynthesis glycosyltransferase WcaA +K25876 METTL15; 12S rRNA N4-methylcytidine (m4C) methyltransferase [EC:2.1.1.-] +K25877 MYG1; MYG1 exonuclease [EC:3.1.-.-] +K25878 CIDEC; cell death activator CIDE-C +K25879 LXRA; L-xylulose reductase [EC:1.1.1.10] +K25880 LADA; L-arabinitol 4-dehydrogenase [EC:1.1.1.12] +K25881 LARA; L-arabinose reductase [EC:1.1.1.-] +K25882 syrM; LysR family transcriptional regulator, transcriptional activator of nodD3 and syrA +K25883 expG, wggR; MarR family transcriptional regulator, exopolysaccharide II synthesis transcriptional activator +K25884 mucR, rosR; MucR family transcriptional regulator, transcriptional regulator of exopolysaccharide biosynthesis +K25885 exoR; exopolysaccharide production negative regulator +K25886 vpsK; polysaccharide biosynthesis protein VpsK +K25887 aceA; undecaprenyl-phosphate glucose phosphotransferase [EC:2.7.8.31] +K25888 aceB; beta-1,4-glucosyltransferase [EC:2.4.1.-] +K25889 aceQ; glucosyltransferase +K25890 aceP; beta-1,6-glucosyltransferase +K25891 aceR; rhamnosyltransferase +K25892 aceI; acyltransferase +K25893 CIDEA; cell death activator CIDE-A +K25894 SPP; stromal processing peptidase, chloroplastic [EC:3.4.24.-] +K25895 DEGP1; protease Do-like 1, chloroplastic [EC:3.4.21.-] +K25896 DEGP2; protease Do-like 2, chloroplastic [EC:3.4.21.-] +K25897 DEGP9; protease Do-like 9 [EC:3.4.21.-] +K25898 CRSP; CO(2)-response secreted protease +K25899 GCP1, RDL1; germination-specific cysteine protease 1 [EC:3.4.22.-] +K25900 RD21; cysteine proteinase RD21 [EC:3.4.22.-] +K25901 qsuD; quinate/shikimate dehydrogenase (NAD+) [EC:1.1.1.24] +K25902 pssA; acidic exopolysaccharide biosynthesis protein PssA +K25903 pssD; exopolysaccharide biosynthesis glucuronosyltransferase PssD +K25904 pssE; exopolysaccharide biosynthesis glucuronosyltransferase PssE +K25905 pssC; exopolysaccharide biosynthesis glycosyltransferase PssC +K25906 pssS; exopolysaccharide biosynthesis glucosyltransferase PssS [EC:2.4.1.-] +K25907 pssF; exopolysaccharide biosynthesis glycosyltransferase PssF +K25908 pssI; exopolysaccharide biosynthesis glycosyltransferase PssI +K25909 pssG; exopolysaccharide biosynthesis glycosyltransferase PssG +K25910 pssH; exopolysaccharide biosynthesis glycosyltransferase PssH +K25911 pssJ; exopolysaccharide biosynthesis galactosyltransferase PssJ +K25912 pssR; exopolysaccharide acyltransferase PssR +K25913 pssK; exopolysaccharide biosynthesis protein PssK +K25914 CIDEB; cell death activator CIDE-B +K25915 mtvA; [methyl-Co(III) methoxylated-aromatic-compound-specific corrinoid protein]---tetrahydrofolate methyltransferase [EC:2.1.1.385] +K25916 mtvB, mtoB; methoxylated aromatic compound---corrinoid protein Co-methyltransferase [EC:2.1.1.382] +K25917 mtoA; [methyl-Co(III) methoxylated-aromatic-compound-specific corrinoid protein]---tetrahydromethanopterin methyltransferase [EC:2.1.1.384] +K25918 AUG8; augmin complex subunit 8 +K25919 E2.4.1.389; solabiose phosphorylase [EC:2.4.1.389] +K25920 E2.5.1.155; phosphoglycerol geranylfarnesyltransferase [EC:2.5.1.155] +K25921 E2.5.1.156; geranylfarnesylglycerol-phosphate geranylfarnesyltransferase [EC:2.5.1.156] +K25922 3C; Hepatitis A virus protease 3C [EC:3.4.22.28] +K25923 nsP2; Alphavirus protease nsP2 [EC:3.4.22.-] +K25924 nsP3; Alphacoronavirus papain-like proteinase 1/2 [EC:3.4.19.12 3.4.22.-] +K25925 p150; Rubella virus protease/methyltransferase p150 [EC:3.4.22.-] +K25926 nsp5; Alphacoronavirus 3C-like proteinase [EC:3.4.22.-] +K25927 I7L; Poxviridae core protease I7 [EC:3.4.22.-] +K25928 VP0; Enterovirus capsid protein VP0 +K25929 C; Alphavirus capsid protein [EC:3.4.21.90] +K25930 assemblin; Herpesviridae assemblin [EC:3.4.21.97] +K25931 NKAP; NF-kappa-B-activating protein +K25932 ppcA; phenyl-phosphate phosphatase/carboxylase subunit alpha [EC:4.1.1.123] +K25933 ppcB; phenyl-phosphate phosphatase/carboxylase subunit beta [EC:4.1.1.123] +K25934 ppcC; phenyl-phosphate phosphatase/carboxylase subunit gamma [EC:4.1.1.123] +K25935 ppcD; phenyl-phosphate phosphatase/carboxylase subunit delta [EC:4.1.1.123] +K25936 ppsA; phenol phosphorylase subunit alpha [EC:2.7.1.238] +K25937 ppsB; phenol phosphorylase subunit beta [EC:2.7.1.238] +K25938 ppsC; phenol phosphorylase subunit delta gamma [EC:2.7.1.238] +K25939 BDH2; 4-oxoproline reductase [EC:1.1.1.104] +K25940 A33R; Poxviridae protein A33 +K25941 A34R; Poxviridae protein A34 +K25942 B5R; Orthopoxvirus protein B5 +K25943 K2L; Orthopoxvirus serine proteinase inhibitor 3 +K25944 F13L; Poxviridae envelope phospholipase F13 [EC:3.1.1.-] +K25945 A16L; Poxviridae virion membrane protein A16 +K25946 O3L; Poxviridae protein O3 +K25947 C2CD6, ALS2CR11; C2 calcium-dependent domain-containing protein 6 +K25948 RUBCNL; protein associated with UVRAG as autophagy enhancer +K25949 CCDC50; coiled-coil domain-containing protein 50 +K25950 amdH; secondary-alkyl amine dehydrogenase [NAD(P)+] [EC:1.4.1.28] +K25951 K25951; fructosyl amine oxidase (glucosone-forming) [EC:1.5.3.25] +K25952 socD; fructosyl amine oxidase (glucosone-forming) [EC:1.5.3.25] +K25953 E1.14.14.183; taxoid 2alpha-hydroxylase [EC:1.14.14.183] +K25954 I5L; Poxviridae protein I5 +K25955 A14.5L; Poxviridae virion membrane protein A14.5 +K25956 A13L; Poxviridae virion membrane protein A13 +K25957 cpsG; stewartan biosynthesis glycosyltransferase CpsG +K25958 cpsF; stewartan biosynthesis galactosyltransferase CpsF +K25959 CYP85A3; brassinosteroid 6-oxygenase / brassinolide synthase [EC:1.14.14.179 1.14.14.180] +K25960 etfA; N,N-dimethylglycine/sarcosine catabolism electron transfer flavoprotein subunit alpha +K25961 etfB; N,N-dimethylglycine/sarcosine catabolism electron transfer flavoprotein subunit beta +K25962 A9L; Poxviridae virion membrane protein A9 +K25963 D8L; Poxviridae cell surface-binding protein +K25964 A2.5L; Poxviridae protein A2.5 +K25965 E10R; Poxviridae probable FAD-linked sulfhydryl oxidase [EC:1.8.3.2] +K25966 O2L; Poxviridae glutaredoxin-1 +K25967 H3L; Poxviridae envelope protein H3 +K25968 MRAP2; melanocortin-2 receptor accessory protein 2 +K25969 A14L; Poxviridae virion membrane protein A14 +K25970 A17L; Poxviridae virion membrane protein A17 +K25971 A25; Orthopoxvirus A-type inclusion protein A25 +K25972 D13L; Poxviridae scaffold protein D13 +K25973 G4L; Poxviridae glutaredoxin-2 +K25974 A4L; Orthopoxvirus 39kDa core protein +K25975 A10L; Poxviridae major core protein 4a +K25976 A3L; Poxviridae major core protein 4b +K25977 L4R; Poxviridae core protein VP8 +K25978 G1L; Poxviridae metalloendopeptidase G1 [EC:3.4.24.-] +K25979 A30L; Poxviridae protein A30 +K25980 G7L; Poxviridae assembly protein G7 +K25981 J1R; Poxviridae protein J1 +K25982 A15L; Poxviridae core protein A15 +K25983 D2L; Poxviridae core protein D2 +K25984 D3R; Orthopoxvirus core protein D3 +K25985 sarD, tauF; sulfoacetaldehyde reductase (NADH) [EC:1.1.1.433] +K25986 ydcJ; 2-oxoadipate dioxygenase/decarboxylase [EC:1.13.11.93] +K25987 scoE, mmaE; (R)-3-[(carboxymethyl)amino]fatty acid dioxygenase/decarboxylase [EC:1.14.11.78] +K25988 TOP1, H6R; Poxviridae DNA topoisomerase 1B [EC:5.6.2.1] +K25989 VETFL, A7L; Poxviridae early transcription factor large subunit +K25990 VETFS, D6R; Poxviridae early transcription factor small subunit [EC:5.6.2.-] +K25991 D1R; Poxviridae mRNA-capping enzyme catalytic subunit [EC:3.1.3.33 2.7.7.50 2.1.1.56] +K25992 D12L; Poxviridae mRNA-capping enzyme regulatory subunit +K25993 C3L; Orthopoxvirus complement control protein C3 +K25994 H1L; Poxviridae dual specificity protein phosphatase H1 [EC:3.1.3.48 3.1.3.-] +K25995 frdB, fdrB; succinate dehydrogenase iron-sulfur subunit [EC:1.3.5.1 7.1.1.12] +K25996 frdC, fdrC; succinate dehydrogenase subunit C +K25997 vpx; HIV-2 protein Vpx +K25998 HDH; hyoscyamine dehydrogenase +K25999 M; Flavivirus small envelope protein M +K26000 C; Flavivirus capsid protein C +K26001 L1; Mastadenovirus pre-hexon-linking protein IIIa +K26002 L4; Adenoviridae pre-hexon-linking protein VIII +K26003 IX; Mastadenovirus hexon-interlacing protein +K26004 L3; Mastadenovirus pre-protein VI +K26005 sauT; sulfoacetate-CoA ligase [EC:6.2.1.-] +K26006 MMADHC; cobalamin trafficking protein CblD +K26007 L2; Mastadenovirus core-capsid bridging protein +K26008 L2; Mastadenovirus pre-core protein X +K26009 L2; Mastadenovirus pre-histone-like nucleoprotein +K26010 IVa2; Mastadenovirus packaging protein 1 +K26011 PTP; Mastadenovirus preterminal protein +K26012 L3; Adenoviridae endopeptidase [EC:3.4.22.39] +K26013 L1; Mastadenovirus packaging protein 3 +K26014 VP5, UL19; Herpesviridae major capsid protein +K26015 VP19C, UL38; Herpesviridae triplex capsid protein 1 +K26016 VP23, UL18; Herpesviridae triplex capsid protein 2 +K26017 UL17; Herpesviridae capsid vertex component 1 +K26018 UL25; Herpesviridae capsid vertex component 2 +K26019 VP26, UL35; Herpesviridae small capsomere-interacting protein +K26020 UL6; Herpesviridae portal protein +K26021 UL37; Herpesviridae inner tegument protein [EC:3.5.1.- 3.5.1.44] +K26022 UL7; Herpesviridae cytoplasmic envelopment protein 1 +K26023 UL51; Herpesviridae tegument protein UL51 +K26024 gI, US7; Herpesviridae envelope glycoprotein I +K26025 M; Lyssavirus matrix protein +K26026 gN, UL49.5; Simplexvirus envelope glycoprotein N +K26027 gK, UL53; Herpesviridae envelope glycoprotein K +K26028 gJ, US5; Simplexvirus envelope glycoprotein J +K26029 gp5; Straboviridae pre-baseplate central spike protein Gp5 [EC:3.2.1.17] +K26030 CD; Straboviridae deoxycytidylate deaminase [EC:3.5.4.12] +K26031 E; Straboviridae endolysin [EC:3.2.1.17] +K26032 nrdD; Straboviridae anaerobic ribonucleoside-triphosphate reductase [EC:1.1.98.6] +K26033 alt; Straboviridae NAD(+)--arginine ADP-ribosyltransferase [EC:2.4.2.31] +K26034 modA; Straboviridae NAD--protein ADP-ribosyltransferase ModA [EC:2.4.2.31] +K26035 modB; Straboviridae NAD--protein ADP-ribosyltransferase ModB [EC:2.4.2.31] +K26036 pseT; Straboviridae polynucleotide kinase [EC:2.7.1.78 3.1.3.34] +K26037 CYP76AD1; tyrosine hydroxylase / L-DOPA oxygenase [EC:1.14.-.-] +K26038 AMASY1; amaranthin synthetase [EC:2.4.1.-] +K26039 nrdA; Straboviridae ribonucleoside-diphosphate reductase subunit alpha [EC:1.17.4.1] +K26040 gp39; Straboviridae DNA topoisomerase large subunit [EC:5.6.2.2] +K26041 ITEVIR; Straboviridae intron-associated endonuclease 1 [EC:3.1.-.-] +K26042 gp60; Escherichia phage DNA topoisomerase small subunit [EC:5.6.2.2] +K26043 gp46; Straboviridae exonuclease subunit 2 [EC:3.1.11.-] +K26044 bgt; Straboviridae DNA beta-glucosyltransferase [EC:2.4.1.27] +K26045 gp52; Straboviridae DNA topoisomerase medium subunit [EC:5.6.2.2] +K26046 gp4; Straboviridae/Kyanoviridae head completion nuclease [EC:3.1.-.-] +K26047 TD; Straboviridae thymidylate synthase [EC:2.1.1.45] +K26048 gp47; Straboviridae/Ackermannviridae/Kyanoviridae exonuclease subunit 1 [EC:3.1.11.-] +K26049 dexA; Straboviridae exodeoxyribonuclease [EC:3.1.11.1] +K26050 MYOZ; myozenin +K26051 SPATA5L1; ribosome biogenesis protein SPATA5L1 [EC:3.6.4.10] +K26052 CINP; cyclin-dependent kinase 2-interacting protein +K26053 C1ORF109; ribosome biogenesis protein C1orf109 +K26054 THC1; tetrahymanol synthase [EC:4.2.1.123] +K26055 scoD, mmaD; (3R)-3-[(carboxylmethyl)amino]fatty acid synthase [EC:4.3.2.11] +K26056 lanGT3; D-olivosyltransferase +K26057 smoB, squF; 6-dehydroglucose reductase [EC:1.1.1.432] +K26058 smoC, squD; sulfoquinovose monooxygenase [EC:1.14.14.181] +K26059 gtd1; glucoside 3-dehydrogenase (cytochrome c) catalytic subunit [EC:1.1.2.11] +K26060 gtd2; glucoside 3-dehydrogenase (cytochrome c) hitch-hiker subunit +K26061 amaB; L-aminoadipate-semialdehyde dehydrogenase +K26062 K26062; 2-aminoadipate transaminase [EC:2.6.1.39] +K26063 ydiJ; (R)-2-hydroxyglutarate dehydrogenase [EC:1.1.-.-] +K26064 amaD; D-lysine oxidase +K26065 amaA; L-pipecolate oxidase +K26066 XYRB; D-xylose/L-arabinose reductase (NADPH) [EC:1.1.1.431 1.1.1.-] +K26067 SFTPB; pulmonary surfactant-associated protein B +K26068 SFTPC; pulmonary surfactant-associated protein C +K26069 dznr; daidzein reductase [EC:1.3.1.-] +K26070 dhdr; dihydrodaidzein reductase [EC:1.1.1.-] +K26071 thdr; tetrahydrodaidzein reductase +K26072 wejN; O78-antigen biosynthesis glycosyltransferase +K26073 wejO; O78-antigen biosynthesis glycosyltransferase +K26074 wejQ; O78-antigen biosynthesis glycosyltransferase +K26075 wckD; O104-antigen biosynthesis O-acyltransferase +K26076 ZRANB2; zinc finger Ran-binding domain-containing protein 2 +K26077 ISE2, EMB25; ATP-dependent RNA helicase ISE2 [EC:5.6.2.6] +K26078 xecD; 2-(R)-hydroxypropyl-CoM dehydrogenase [EC:1.1.1.268] +K26079 xecE; 2-(S)-hydroxypropyl-CoM dehydrogenase [EC:1.1.1.269] +K26080 E1.1.3.29; N-acylhexosamine oxidase [EC:1.1.3.29] +K26081 carA; C-glycoside oxidase [EC:1.1.3.50] +K26082 AOS; arachidonate 8-lipoxygenase / allene oxide synthase [EC:1.13.11.40 4.2.1.-] +K26083 ibpA, pfhB2; protein adenylyltransferase / cysteine protease [EC:2.7.7.108 3.4.22.-] +K26084 REC114; meiotic recombination protein REC114 +K26085 IHO1, CCDC36; interactor of HORMAD1 protein 1 +K26086 MEI4; meiosis-specific protein MEI4 +K26087 ANKRD31; ankyrin repeat domain-containing protein 31 +K26088 vopS; protein adenylyltransferase VopS [EC:2.7.7.108] +K26089 ANKZF1, VMS1; ankyrin repeat and zinc finger domain-containing protein 1 +K26090 SINHCAF; SIN3-HDAC complex-associated factor +K26091 CENPW; centromere protein W +K26092 HJURP; holliday junction recognition protein +K26093 MAD2L1BP; MAD2L1-binding protein +K26094 SKA1; spindle and kinetochore-associated protein 1 +K26095 SKA2; spindle and kinetochore-associated protein 2 +K26096 SKA3; spindle and kinetochore-associated protein 3 +K26097 KNSTRN, SKAP; small kinetochore-associated protein +K26098 SPDL1; protein Spindly +K26099 PTTG1IP; PTTG1-interacting protein +K26100 PWWP2; PWWP domain-containing protein 2 +K26101 ZNF16, HZF1; zinc finger protein 16 +K26102 UL97; Cytomegalovirus serine/threonine protein kinase UL97 [EC:2.7.11.1] +K26103 TRM1, UL56; Cytomegalovirus tripartite terminase subunit 1 +K26104 TRM2, UL51; Cytomegalovirus tripartite terminase subunit 2 +K26105 TRM3, UL89; Cytomegalovirus tripartite terminase subunit 3 +K26106 M1AP; meiosis 1 arrest protein +K26107 FGFRL1, FGFR5; fibroblast growth factor receptor-like 1 +K26108 RGCC, RGC32; regulator of cell cycle RGCC +K26109 NRDE2; nuclear exosome regulator NRDE2 +K26110 guaB1; GMP reductase [EC:1.7.1.7] +K26111 SIDT1; SID1 transmembrane family member 1 +K26112 SIDT2; SID1 transmembrane family member 2 +K26113 lctD; lactate dehydrogenase (NAD+,ferredoxin) subunit LctD [EC:1.1.1.436] +K26114 lctC; lactate dehydrogenase (NAD+,ferredoxin) subunit LctC +K26115 lctB; lactate dehydrogenase (NAD+,ferredoxin) subunit LctB +K26116 MTBP; Mdm2-binding protein +K26117 TICRR; Treslin +K26118 ATAD5; ATPase family AAA domain-containing protein 5 +K26119 MCIDAS; multicilin +K26120 NAPB, SNAPB; beta-soluble NSF attachment protein +K26121 SPATA16; spermatogenesis-associated protein 16 +K26122 MMS22; E3 ubiquitin-protein ligase substrate receptor MMS22 +K26123 MMS1; E3 ubiquitin-protein ligase linker protein MMS1 +K26124 RTT101, CUL8; cullin 8 +K26125 MMS22L; protein MMS22-like +K26126 SLF1; SMC5-SMC6 complex localization factor protein 1 +K26127 SLF2; SMC5-SMC6 complex localization factor protein 2 +K26128 SHLD1; shieldin complex subunit 1 +K26129 SHLD2; shieldin complex subunit 2 +K26130 SHLD3; shieldin complex subunit 3 +K26131 L; Henipavirus RNA-directed RNA polymerase L [EC:2.7.7.48 3.6.1.- 2.7.7.88 2.1.1.375] +K26132 L; Orthorubulavirus/Pararubulavirus RNA-directed RNA polymerase L [EC:2.7.7.48 3.6.1.- 2.7.7.88 2.1.1.375] +K26133 L; Pneumoviridae RNA-directed RNA polymerase L [EC:2.7.7.48 3.6.1.- 2.7.7.88 2.1.1.375] +K26134 L; Hantaviridae RNA-directed RNA polymerase L [EC:2.7.7.48 3.1.-.-] +K26135 LEF-8; Baculoviridae probable DNA-directed RNA polymerase catalytic subunit [EC:2.7.7.6] +K26136 LEF-9; Baculoviridae DNA-directed RNA polymerase subunit LEF-9 +K26137 P47; Baculoviridae DNA-directed RNA polymerase subunit p47 +K26138 nasE; nitrite reductase [NAD(P)H] small subunit [EC:1.7.1.4] +K26139 nasD, nasB; nitrite reductase [NAD(P)H] large subunit [EC:1.7.1.4] +K26140 nsP4; Alphavirus RNA-directed RNA polymerase nsP4 [EC:2.7.7.48] +K26141 PM20D2; Xaa-Arg dipeptidase [EC:3.4.13.4] +K26142 NOPCHAP1; NOP protein chaperone 1 +K26143 ICE1; little elongation complex subunit 1 +K26144 ICE2; little elongation complex subunit 2 +K26145 ZSWIM1; zinc finger SWIM domain-containing protein 1 +K26146 ZSWIM4; zinc finger SWIM domain-containing protein 4 +K26147 ZSWIM5; zinc finger SWIM domain-containing protein 5 +K26148 K26148; c-di-GMP phosphodiesterase [EC:3.1.4.52] +K26149 K26149; c-di-GMP phosphodiesterase [EC:3.1.4.52] +K26150 UNC93B; MFS transporter, NAG-T family, unc-93 homolog B +K26151 MFSD11; MFS transporter, NAG-T family, sugar:H+ symporter +K26152 SLC25A51_52; solute carrier family 25 (mitochondrial nicotinamide adenine dinucleotide transporter), member 51/52 +K26153 OTOP; proton channel OTOP +K26154 RELCH; RAB11-binding protein RELCH +K26155 CYREN, MRI; cell cycle regulator of non-homologous end joining +K26156 KIF18B; kinesin family member 18B +K26157 KIF19; kinesin family member 19 +K26158 STMN2_3_4; stathmin 2/3/4 +K26159 PRKRIP1; PRKR-interacting protein 1 +K26160 CENATAC; centrosomal AT-AC splicing factor +K26161 FIBP; acidic fibroblast growth factor intracellular-binding protein +K26162 MADD; MAP kinase-activating death domain protein +K26163 PACRG; parkin coregulated gene protein +K26164 RIC3; protein RIC-3 +K26165 CSTPP1; centriolar satellite-associated tubulin polyglutamylase complex regulator 1 +K26166 NUSAP1; nucleolar and spindle-associated protein 1 +K26167 BAZ2B; bromodomain adjacent to zinc finger domain protein 2B +K26168 IGSF1; immunoglobulin superfamily member 1 +K26169 PAQR6; membrane progestin receptor delta +K26170 PAQR9; membrane progestin receptor epsilon +K26171 TMEM97, S2R; sigma intracellular receptor 2 +K26172 dgpA; puerarin oxidase +K26173 dgpB; deglycosylation enzyme subunit DgpB +K26174 dgpC; deglycosylation enzyme subunit DgpC +K26175 ddrc; dihydrodaizein racemase [EC:5.1.-.-] +K26176 flr; flavone/flavonol reductase +K26177 chi; chalcone isomerase +K26178 fcr; flavanone/flavanol-cleaving reductase +K26179 fdeD; naringenin degradation protein FdeD +K26180 fdeE; naringenin degradation protein FdeE +K26181 fdeC; naringenin degradation protein FdeC +K26182 fdeH; naringenin degradation protein FdeH +K26183 fdeJ; naringenin degradation protein FdeJ +K26184 fdeB; naringenin degradation protein FdeB +K26185 fdeI; naringenin degradation protein FdeI +K26186 MTRES1; mitochondrial transcription rescue factor 1 +K26187 ARMCX1; armadillo repeat-containing X-linked protein 1 +K26188 ARMCX2; armadillo repeat-containing X-linked protein 2 +K26189 ARMCX3; armadillo repeat-containing X-linked protein 3 +K26190 ARMCX6; armadillo repeat-containing X-linked protein 6 +K26191 s-rRNA; mitochondrial 12S ribosomal RNA +K26192 l-rRNA; mitochondrial 16S ribosomal RNA +K26193 rrnS; mitochondrial 18S/15S ribosomal RNA +K26194 rrnL; mitochondrial 26S/21S ribosomal RNA +K26195 rrn16; chloroplast 16S ribosomal RNA +K26196 rrn23; chloroplast 23S ribosomal RNA +K26197 GPRASP2; G-protein coupled receptor-associated sorting protein 2 +K26198 ARMCX4; armadillo repeat-containing X-linked protein 4 +K26199 BCORL1; BCL-6 corepressor-like protein 1 +K26200 SPR; sex peptide receptor +K26201 FMRFaR; FMRFamide receptor +K26202 Proc-R; proctolin receptor +K26203 MsR; myosuppressin receptor +K26204 MIP; allatostatins MIP +K26205 SP, Dup99B; sex-peptide gene family protein +K26206 POPDC2; popeye domain-containing protein 2 +K26207 POPDC3; popeye domain-containing protein 3 +K26208 E2.7.1.239; alpha-D-ribose-1-phosphate 5-kinase (ATP) [EC:2.7.1.239] +K26209 K26209; glycolaldehyde reductase [EC:1.1.1.-] +K26210 E3.1.3.109; ribulose-1,5-bisphosphate 5-phosphatase [EC:3.1.3.109] +K26211 K26211; guanosine phosphorylase [EC:2.4.2.15] +K26212 K26212; guanosine phosphorylase [EC:2.4.2.15] +K26213 FAMA; transcription factor FAMA +K26214 FIT; transcription factor FER-LIKE IRON +K26215 FOXR; forkhead box protein R +K26216 AHSA1, AHA1; activator of Hsp90 ATPase protein 1 +K26217 wbgX; UDP-4-amino-4-deoxy-L-arabinose-oxoglutarate aminotransferase +K26218 wbgV; UDP-GalNAcA 5-epimerase +K26219 MOE; ezrin-moesin-radixin 1 +K26220 SLC35D4, TMEM241; solute carrier family 35, member D4 +K26221 GONST3; GDP-nucleotide sugar transporter +K26222 GALT1, GONST5; UDP-galactose transporter +K26223 GFT1, GONST4; GDP-fucose transporter +K26224 URGT; UDP-rhamnose/UDP-galactose transporter +K26225 RIMBP3; RIMS-binding protein 3 +K26226 PPFIA; liprin-alpha +K26227 ALS2CL; ALS2 C-terminal-like protein +K26228 ARRDC1; arrestin domain-containing protein 1 +K26229 ARRDC2_3; arrestin domain-containing protein 2/3 +K26230 ARRDC4; arrestin domain-containing protein 4 +K26231 GPRASP1; G-protein coupled receptor-associated sorting protein 1 +K26232 DDIT4L, CHRB; DNA damage-inducible transcript 4-like protein +K26233 ARMCX5; armadillo repeat-containing X-linked protein 5 +K26234 BHLHB9, GPRASP3; G-protein coupled receptor-associated sorting protein 3 +K26235 PGAP4, TMEM246; post-GPI attachment to proteins factor 4 +K26236 STIMATE, TMEM110; store-operated calcium entry regulator +K26237 TMEM9B; transmembrane protein 9B +K26238 TMEM9; proton-transporting V-type ATPase complex assembly regulator +K26239 BANK1; B-cell scaffold protein with ankyrin repeats +K26240 C2CD2L, C2CD2, TMEM24; phospholipid transfer protein +K26241 NACHO, TMEM35A; novel acetylcholine receptor chaperone +K26242 RCOR2_3; REST corepressor 2/3 +K26243 HP1BP3; heterochromatin protein 1-binding protein 3 +K26244 PHF12, RCO1; transcriptional regulatory protein PHF12/RCO1 +K26245 PHO23; transcriptional regulatory protein PHO23 +K26246 UME1; transcriptional regulatory protein UME1 +K26247 PROT; proline transporter +K26248 rok; repressor Rok +K26249 lsr2; nucleoid-associated protein Lsr2 +K26250 HPF1; histone PARylation factor 1 +K26251 CEP295; centrosomal protein CEP295 +K26252 dtxR, ideR; DtxR family transcriptional regulator, iron-dependent repressor +K26253 FBRS; fibrosin-1 +K26254 FBRSL1; fibrosin-1-like protein +K26255 EMP1; epithelial membrane protein 1 +K26256 EMP2; epithelial membrane protein 2 +K26257 EMP3; epithelial membrane protein 3 +K26258 tay; tay bridge +K26259 EPOP; elongin BC and Polycomb repressive complex 2-associated protein +K26260 LCOR; ligand-dependent corepressor +K26261 S1; Seadornavirus RNA-directed RNA polymerase VP1 [EC:2.7.7.48] +K26262 VP1; Orbivirus RNA-directed RNA polymerase [EC:2.7.7.48] +K26263 S2; Dinovernavirus RNA-directed RNA polymerase VP2 [EC:2.7.7.48] +K26264 S2; Aquareovirus/Orthoreovirus RNA-directed RNA polymerase VP2 [EC:2.7.7.48] +K26265 S2; Picobirnaviridae RNA-dependent RNA polymerase [EC:2.7.7.48] +K26266 SAMD1; sterile alpha motif domain-containing protein 1 +K26267 SAP30BP; SAP30-binding protein +K26268 VP1; Birnaviridae RNA-directed RNA polymerase [EC:2.7.7.48] +K26269 SFMBT; scm-like with four MBT domains protein +K26270 MBTD1; MBT domain-containing protein 1 +K26271 MS1, MMD1; PHD finger protein MS1/MMD1 +K26272 dgcN; D-glutamate N-acetyltransferase [EC:2.3.1.312] +K26273 SBNO, SNO, FGT1; protein strawberry notch +K26274 AL; PHD finger protein ALFIN-LIKE +K26275 L; Rhabdoviridae RNA-directed RNA polymerase L [EC:2.7.7.48 3.6.1.- 2.7.7.88 2.1.1.375] +K26276 L; Novirhabdovirus RNA-directed RNA polymerase L [EC:2.7.7.48 3.6.1.- 2.7.7.88 2.1.1.375] +K26277 L; Reptarenavirus RNA-directed RNA polymerase L [EC:2.7.7.48 3.1.-.-] +K26278 PB1; Quaranjavirus RNA-directed RNA polymerase catalytic subunit [EC:2.7.7.48] +K26279 P2; Thogotovirus RNA-directed RNA polymerase catalytic subunit [EC:2.7.7.48] +K26280 L; Tospoviridae RNA-directed RNA polymerase L [EC:2.7.7.48 3.1.-.-] +K26281 PB2; Quaranjavirus polymerase basic protein 2 +K26282 PA; Quaranjavirus polymerase acidic protein +K26283 CPES; ceramide phosphoethanolamine synthase [EC:2.7.8.48] +K26284 csg; S-layer glycoprotein +K26285 gtfB; 4,3-alpha-glucanotransferase [EC:2.4.1.390] +K26286 E2.4.1.391; beta-1,2-glucosyltransferase [EC:2.4.1.391] +K26287 E2.4.1.392; 3-O-beta-D-glucopyranosyl-beta-D-glucuronide phosphorylase [EC:2.4.1.392] +K26288 E3.2.1.218; alpha-3'-ketoglucosidase [EC:3.2.1.218] +K26289 palQ; palatinase [EC:3.2.1.219] +K26290 palR; LysR family transcriptional regulator, regulator of pal gene cluster +K26291 SNORD13, U13; small nucleolar RNA SNORD13 +K26292 SNORD17; small nucleolar RNA SNORD17 +K26293 SNORD21, U21; small nucleolar RNA SNORD21 +K26294 SNORD22, U22; small nucleolar RNA SNORD22 +K26295 SNORD23; small nucleolar RNA SNORD23 +K26296 SNORD26, U26; small nucleolar RNA SNORD26 +K26297 SNORD28, U28; small nucleolar RNA SNORD28 +K26298 SNORD30, U30; small nucleolar RNA SNORD30 +K26299 SNORD41, U41; small nucleolar RNA SNORD41 +K26300 SNORD43, U43; small nucleolar RNA SNORD43 +K26301 SNORD44, U44; small nucleolar RNA SNORD44 +K26302 SNORD45, U45; small nucleolar RNA SNORD45 +K26303 SNORD48, U48; small nucleolar RNA SNORD48 +K26304 SNORD49, U49; small nucleolar RNA SNORD49 +K26305 SNORD50, U50; small nucleolar RNA SNORD50 +K26306 SNORD53_92; small nucleolar RNA SNORD53/92 +K26307 SNORD54, U54; small nucleolar RNA SNORD54 +K26308 SNORD55, U55; small nucleolar RNA SNORD55 +K26309 SNORD56, U56; small nucleolar RNA SNORD56 +K26310 SNORD58, U58; small nucleolar RNA SNORD58 +K26311 SNORD61, U61; small nucleolar RNA SNORD61 +K26312 SNORD75, U75; small nucleolar RNA SNORD75 +K26313 SNORD78, U78; small nucleolar RNA SNORD78 +K26314 SNORD79, U79; small nucleolar RNA SNORD79 +K26315 SNORD81, U81; small nucleolar RNA SNORD81 +K26316 LRRC32; transforming growth factor beta activator LRRC32 +K26317 NRROS, LRRC33; transforming growth factor beta activator LRRC33 +K26318 fccA, fcc3; fumarate reductase (cytochrome) [EC:1.3.2.4] +K26319 SNORA79, ACA65; small nucleolar RNA SNORA79 +K26320 SNORA80, ACA67; small nucleolar RNA SNORA80 +K26321 SNORA4, ACA4; small nucleolar RNA SNORA4 +K26322 SNORA7, ACA7; small nucleolar RNA SNORA7 +K26323 SNORA8, ACA8; small nucleolar RNA SNORA8 +K26324 SNORA9, ACA9; small nucleolar RNA SNORA9 +K26325 SNORA15, ACA15; small nucleolar RNA SNORA15 +K26326 SNORA17_43, ACA17_43; small nucleolar RNA SNORA17/43 +K26327 SNORA18, ACA18; small nucleolar RNA SNORA18 +K26328 SNORA19, ACA19; small nucleolar RNA SNORA19 +K26329 SNORA22, ACA22; small nucleolar RNA SNORA22 +K26330 SNORA23, ACA23; small nucleolar RNA SNORA23 +K26331 SNORA24, ACA24; small nucleolar RNA SNORA24 +K26332 SNORA25, ACA25; small nucleolar RNA SNORA25 +K26333 SNORA27, ACA27; small nucleolar RNA SNORA27 +K26334 SNORA28, ACA28; small nucleolar RNA SNORA28 +K26335 SNORA30_37, ACA30_37; small nucleolar RNA SNORA30/37 +K26336 SNORA31, ACA31; small nucleolar RNA SNORA31 +K26337 SNORA32, ACA32; small nucleolar RNA SNORA32 +K26338 SNORA36, ACA36; small nucleolar RNA SNORA36 +K26339 SNORA41, ACA41; small nucleolar RNA SNORA41 +K26340 SNORA44, ACA44; small nucleolar RNA SNORA44 +K26341 SNORA46, ACA46; small nucleolar RNA SNORA46 +K26342 SNORA48, ACA48; small nucleolar RNA SNORA48 +K26343 SNORA58, ACA58; small nucleolar RNA SNORA58 +K26344 SNORA60_71, ACA60, U71; small nucleolar RNA SNORA60/71 +K26345 SNORA61, ACA61; small nucleolar RNA SNORA61 +K26346 HSO; homospermidine oxidase [EC:1.4.3.27] +K26347 ASQJ; (-)-cyclopenine synthase [EC:1.14.11.81] +K26348 ASQI, ASQO; cyckopenase [EC:4.1.99.27] +K26349 FORHAM; alpha-L-rhamnosyl-(1->4)-beta-D-glucuronate lyase [EC:4.2.2.28] +K26350 ERIG; (-)-cyatha-3,12-diene synthase [EC:4.2.3.206] +K26351 sapTC1; neoverrucosan-5beta-ol synthase [EC:4.2.3.207] +K26352 chlTC2; verrucosan-2beta-ol synthase [EC:4.2.3.208] +K26353 cysTC2; (R)-axinyssene synthase [EC:4.2.3.209] +K26354 stlTC; lydicene synthase [EC:4.2.3.210] +K26355 ard; acrylate reductase [EC:1.3.1.125] +K26356 LAT2, LAB; linker for activation of T-cells family member 2 +K26357 TARM1; T-cell-interacting, activating receptor on myeloid cells protein 1 +K26358 SNORA66, U66; small nucleolar RNA SNORA66 +K26359 SNORA67, U67; small nucleolar RNA SNORA67 +K26360 SNORA68, U68; small nucleolar RNA SNORA68 +K26361 SNORA69, U69; small nucleolar RNA SNORA69 +K26362 SNORA72, U72; small nucleolar RNA SNORA72 +K26363 SNORA75, U23; small nucleolar RNA SNORA75 +K26364 K26364; mimosinase [EC:4.3.3.8] +K26365 cangL; canavanine-gamma-lyase [EC:4.4.1.43] +K26366 ORF1; Ascoviridae DNA polymerase [EC:2.7.7.7] +K26367 FV3-060R; Iridoviridae putative DNA polymerase [EC:2.7.7.7] +K26368 FV3-008R; Iridoviridae putative DNA-directed RNA polymerase [EC:2.7.7.6] +K26369 FV3-062L; Iridoviridae putative DNA-directed RNA polymerase II subunit RPB2 [EC:2.7.7.6] +K26370 IIV6-343L; Iridovirus probable DNA-directed RNA polymerase subunit [EC:2.7.7.6] +K26371 IIV6-454R; Iridovirus putative DNA-directed RNA polymerase subunit +K26372 NP1450L; Asfivirus DNA-directed RNA polymerase RPB1 [EC:2.7.7.6] +K26373 EP1242L; Asfivirus DNA-directed RNA polymerase RPB2 [EC:2.7.7.6] +K26374 C147L; Asfivirus DNA-directed RNA polymerase RPB6 +K26375 D205R; Asfivirus DNA-directed RNA polymerase RPB5 +K26376 CP80R; Asfivirus DNA-directed RNA polymerase RPB10 +K26377 H359L; Asfivirus DNA-directed RNA polymerase RPB3-11 +K26378 O174L; Asfivirus repair DNA polymerase X [EC:2.7.7.7] +K26379 DPOL; Asfivirus DNA polymerase beta [EC:2.7.7.7] +K26380 NSP; thiohydroximate-O-sulfate sulfate/sulfur-lyase (nitrile-forming) [EC:4.8.1.5] +K26381 ESP; N-(sulfonatooxy)alkenimidothioic acid sulfate-lyase (epithionitrile-forming) [EC:4.8.1.6] +K26382 TFP; phenyl-N-(sulfonatooxy)methanimidothioate sulfolyase [EC:4.8.1.7] +K26383 TFP; N-(sulfonatooxy)prop-2-enimidothioate sulfolyase [EC:4.8.1.8] +K26384 SPTSS; serine palmitoyltransferase small subunit +K26385 LHT; lysine histidine transporter +K26386 SNORD115; small nucleolar RNA SNORD115 +K26387 RNU6ATAC; U6atac small nuclear RNA +K26388 RNU4ATAC; U4 atac small nuclear RNA +K26389 TRAF3IP3; TRAF3-interacting JNK-activating modulator +K26390 TNFAIP8; tumor necrosis factor alpha-induced protein 8 +K26391 STOML1, SLP1; stomatin-like protein 1 +K26392 STOML2, SLP2; stomatin-like protein 2 +K26393 STOML3, SLP3; stomatin-like protein 3 +K26394 RdRp; Alphatetraviridae methyltransferase/helicase/RNA-directed RNA polymerase [EC:2.1.1.- 2.7.7.48 5.6.2.5] +K26395 RdRp; Alphanodavirus RNA-directed RNA polymerase [EC:2.7.7.48] +K26396 RdRp; Betanodavirus RNA-directed RNA polymerase [EC:2.7.7.48] +K26397 E5.5.1.10; alpha-pinene-oxide decyclase [EC:5.5.1.10] +K26398 camB; putidaredoxin +K26399 K26399; arabinonate dehydratase [EC:4.2.1.5] +K26400 quiC1, QA-4; 3-dehydroshikimate dehydratase [EC:4.2.1.118] +K26401 TOM1, TOM1L1_2; target of Myb membrane trafficking protein 1 and related proteins +K26402 TRAM2; translocating chain-associated membrane protein 2 +K26403 CIAO2, CIA2, FAM96; cytosolic iron-sulfur assembly component 2 +K26404 CIAO3; cytosolic iron-sulfur assembly component 3 +K26405 CCDC25; coiled-coil domain-containing protein 25 +K26406 dut; Rudiviridae probable dUTP diphosphatase [EC:3.6.1.23] +K26407 OPG174; Poxviridae/Iridoviridae 3beta-hydroxy-Delta5-steroid dehydrogenase / steroid Delta-isomerase [EC:1.1.1.145 5.3.3.1] +K26408 IFI6, G1P3; interferon alpha-inducible protein 6 +K26409 IFI27, ISG12; interferon alpha-inducible protein 27 +K26410 SARAF; store-operated calcium entry-associated regulatory factor +K26411 MR1; major histocompatibility complex class I-related gene protein +K26412 FHDC1, INF1; FH2 domain-containing protein 1 +K26413 GRID2IP; delphilin +K26414 DAM; Straboviridae DNA adenine methylase [EC:2.1.1.72] +K26415 ARHGAP45; Rho GTPase-activating protein 45 +K26416 CCM2; cerebral cavernous malformations 2 +K26417 RASIP1; Ras-interacting protein 1 +K26418 RADIL; Ras-associating and dilute domain-containing protein +K26419 AKTIP, FTS; AKT-interacting protein +K26420 FHIP1, FAM160A; FHF complex subunit HOOK interacting protein 1 +K26421 FHIP2, FAM160B; FHF complex subunit HOOK interacting protein 2 +K26422 L808; Mimiviridae probable sterol 14alpha-demethylase [EC:1.14.14.154] +K26423 S273R; Asfivirus cysteine protease S273R [EC:3.4.22.-] +K26424 E165R; Asfivirus dUTP diphosphatase [EC:3.6.1.23] +K26425 NP419L; Asfivirus DNA ligase [EC:6.5.1.1] +K26426 P1192R; Asfivirus DNA topoisomerase II [EC:5.6.2.2] +K26427 EP364R; Asfivirus ERCC4 domain-containing protein EP364R [EC:3.1.4.-] +K26428 B119L; Asfivirus FAD-linked sulfhydryl oxidase [EC:1.8.3.2] +K26429 NP868R; Asfivirus mRNA-capping enzyme [EC:3.1.3.33 2.7.7.50 2.1.1.56] +K26430 D250R; Asfivirus mRNA-decapping protein g5R [EC:3.1.3.- 3.6.1.52] +K26431 E296R; Asfivirus probable AP endonuclease [EC:3.1.21.-] +K26432 I215L; Asfivirus ubiquitin-conjugating enzyme E2 [EC:2.3.2.23] +K26433 C129R; Asfivirus protein C129R [EC:3.1.4.-] +K26434 LRRFIP; leucine-rich repeat flightless-interacting protein +K26435 MTDH, AEG1; protein LYRIC +K26436 CCD62; coiled-coil domain-containing protein 62 +K26437 MFSD12; major facilitator superfamily domain-containing protein 12 +K26438 S3; Aquareovirus major inner capsid protein VP3 [EC:5.6.2.-] +K26439 ORF69; Alphabaculovirus cap-specific mRNA (nucleoside-2'-O-)-methyltransferase [EC:2.1.1.57] +K26440 CHIA; Alphabaculovirus/Betabaculovirus chitinase [EC:3.2.1.14] +K26441 lig; DNA ligase [EC:6.5.1.1] +K26442 MEPE; matrix extracellular phosphoglycoprotein +K26443 EGT; Alphabaculovirus/Betabaculovirus ecdysteroid UDP-glucosyltransferase [EC:2.4.1.-] +K26444 P33; Baculoviridae FAD-linked sulfhydryl oxidase [EC:1.8.3.2] +K26445 P79; Alphabaculovirus/Betabaculovirus non-sulfated chondroitin lyase E66 [EC:4.2.2.-] +K26446 P26; Alphabaculovirus poxin [EC:3.1.-.-] +K26447 PK2; Alphabaculovirus probable serine/threonine-protein kinase 2 [EC:2.7.11.1] +K26448 ORF38; Alphabaculovirus/Betabaculovirus ADP-ribose diphosphatase [EC:3.6.1.13] +K26449 PNK/PNL; Alphabaculovirus putative polynucleotide kinase / polynucleotide phosphatase / RNA ligase [EC:2.7.1.78 3.1.3.32 6.5.1.3] +K26450 PK1; Alphabaculovirus/Betabaculovirus serine/threonine-protein kinase 1 [EC:2.7.11.1] +K26451 PTP; Alphabaculovirus tyrosine-protein phosphatase [EC:3.1.3.48] +K26452 IE2; Alphabaculovirus E3 ubiquitin-protein ligase IE2 [EC:2.3.2.27] +K26453 MPS1; protein multipolar spindle 1 +K26454 CDK2AP1; cyclin-dependent kinase 2-associated protein 1 +K26455 CDK2AP2; cyclin-dependent kinase 2-associated protein 2 +K26456 TANC; protein TANC +K26457 NPAS4; neuronal PAS domain-containing protein 4 +K26458 NKRF; NF-kappa-B-repressing factor +K26459 INAVA; innate immunity activator protein +K26460 LZTS1; leucine zipper putative tumor suppressor 1 +K26461 SNR190; small nucleolar RNA SNR190 +K26462 SNR48; small nucleolar RNA SNR48 +K26463 SNR73; small nucleolar RNA SNR73 +K26464 SNR78; small nucleolar RNA SNR78 +K26465 SNR35; small nucleolar RNA SNR35 +K26466 STRIT1; sarcoplasmic/endoplasmic reticulum calcium ATPase regulator DWORF +K26467 ALN; another-regulin +K26468 SMIM6, ELN; endoregulin +K26469 CCDC51, MITOK; mitochondrial potassium channel +K26470 NNAT; neuronatin +K26471 LZTS2; leucine zipper putative tumor suppressor 2 +K26472 LZTS3; leucine zipper putative tumor suppressor 3 +K26473 N4BP3; NEDD4-binding protein 3 +K26474 SNORD90; small nucleolar RNA SNORD90 +K26475 SNR63; small nucleolar RNA SNR63 +K26476 SNR69; small nucleolar RNA SNR69 +K26477 NME1; small nucleolar RNA MRP +K26478 SNR8; small nucleolar RNA SNR8 +K26479 SNR10; small nucleolar RNA SNR10 +K26480 NRARP; Notch-regulated ankyrin repeat-containing protein +K26481 CYP716A297; oleanolic acid C16alpha-oxidase +K26482 CYP714E52; echinocystic acid C23-oxidase +K26483 CSLM; quillaic acid 3-O-glucuronosyltransferase +K26484 UGT73CU3; quillaic acid 3-O-GlcA beta-1,2-galactosyltransferase [EC:2.4.1.-] +K26485 UGT73CX1; quillaic acid 3-O-Gal-1,2-GlcA beta-1,3-xylosyltransferase [EC:2.4.2.-] +K26486 UGT73CX2; quillaic acid 3-O-Gal-1,2-GlcA alpha-1,3-rhamnosyltransferase [EC:2.4.1.-] +K26487 UGT74BX1; quillaic acid 3-O-Xyl/L-Rha-1,3-(Gal-1,2)-GlcA 28-O-glycosyltransferase +K26488 FucSyn; 4-keto-6-deoxyglucose 4-dehydrogenase +K26489 UGT91AR1; quillaic acid 3-O-Xyl/L-Rha-1,3-(Gal-1,2)-GlcA-28-O-Fuc alpha-1,2-rhamnosyltransferase [EC:2.4.1.-] +K26490 UGT91AQ1; quillaic acid 3-O-Xyl/L-Rha-1,3-(Gal-1,2)-GlcA-28-O-L-Rha-1,2-Fuc beta-1,4-xylosyltransferase [EC:2.4.2.-] +K26491 UGT73CY2; quillaic acid 3-O-Xyl/L-Rha-1,3-(Gal-1,2)-GlcA-28-O-Xyl-1,4-L-Rha-1,2-Fuc beta-1,3-apiosyltransferase [EC:2.4.2.-] +K26492 UGT73CY3; quillaic acid 3-O-Xyl/L-Rha-1,3-(Gal-1,2)-GlcA-28-O-Xyl-1,4-L-Rha-1,2-Fuc beta-1,3-xylosyltransferase [EC:2.4.2.-] +K26493 ACT1; O-acetyltransferase +K26494 UGT73B44; alpha-1,3-rhamnosyltransferase [EC:2.4.1.-] +K26495 UGT91AP1; beta-1,3-glucosyltransferase [EC:2.4.1.-] +K26496 RAB5IF; GEL complex subunit OPTI +K26497 TMEM230; transmembrane protein 230 +K26498 TMEM147; BOS complex subunit TMEM147 +K26499 NCLN; BOS complex subunit NCLN +K26500 NOMO1_2_3; BOS complex subunit NOMO +K26501 OSTC; oligosaccharyltransferase complex subunit OSTC +K26502 TMEM258; transmembrane protein 258 +K26503 SKI; Ski oncogene +K26504 HE; Torovirus hemagglutinin-esterase [EC:3.1.1.53] +K26505 OPG188; Orthopoxvirus poxin-schlafen [EC:3.1.-.-] +K26506 p28; Orthopoxvirus E3 ubiquitin-protein ligase p28 [EC:2.3.2.27] +K26507 BVRF2; Lymphocryptovirus capsid scaffolding protein [EC:3.4.21.97] +K26508 BGLF5; Lymphocryptovirus shutoff alkaline exonuclease [EC:3.1.-.-] +K26509 ORF63; Equid alphaherpesvirus E3 ubiquitin-protein ligase ICP0 [EC:2.3.2.27] +K26510 FV3-083R; Ranavirus probable DNA (cytosine-5)-methyltransferase [EC:2.1.1.37] +K26511 VP1; Bocaparvovirus minor capsid protein VP1 [EC:3.1.1.4] +K26512 UL12; Simplexvirus alkaline nuclease [EC:3.1.-.-] +K26513 UL2; Simplexvirus uracil-DNA glycosylase [EC:3.2.2.27] +K26514 ORF36; Rhadinovirus serine/threonine protein kinase [EC:2.7.11.1] +K26515 K3; Rhadinovirus E3 ubiquitin-protein ligase MIR1 [EC:2.3.2.36] +K26516 LAP; Leporipoxvirus E3 ubiquitin-protein ligase LAP [EC:2.3.2.27] +K26517 ORF1; Panicovirus RNA-directed RNA polymerase [EC:2.7.7.48] +K26518 Rep; Circovirus replication-associated protein [EC:2.7.7.- 3.1.21.- 3.6.1.-] +K26519 SCIMP; SLP adapter and CSK-interacting membrane protein +K26520 PRR7; proline-rich protein 7 +K26521 PAG1; hosphoprotein associated with glycosphingolipid-enriched microdomains 1 +K26522 LIME1; Lck-interacting transmembrane adapter 1 +K26523 GAPT; protein GAPT +K26524 LST1; leukocyte-specific transcript 1 protein +K26525 ORF1; Dianthovirus RNA-directed RNA polymerase [EC:2.7.7.48] +K26526 N; Hantaviridae nucleoprotein [EC:3.1.-.-] +K26527 hjc; Rudiviridae holliday junction resolvase [EC:3.1.21.10] +K26528 C1; Begomovirus replication-associated protein [EC:2.7.7.- 3.1.21.-] +K26529 F2L; Poxviridae dUTP diphosphatase [EC:3.6.1.23] +K26530 A50R; Poxviridae DNA ligase [EC:6.5.1.1] +K26531 D9R; Poxviridae mRNA-decapping protein [EC:3.1.3.-] +K26532 D10R; Poxviridae mRNA-decapping protein [EC:3.1.3.-] +K26533 G5R; Poxviridae putative nuclease [EC:3.1.-.-] +K26534 A22R; Poxviridae DNA holliday junction resolvase [EC:3.1.-.-] +K26535 HFE; hereditary hemochromatosis protein +K26536 RPS19BP1; active regulator of SIRT1 +K26537 UXT; protein UXT +K26538 PHOX; protein PHOX +K26539 ACTMAP; actin maturation protease [EC:3.4.11.-] +K26540 SCAB; stomatal closure-related actin-binding protein +K26541 RELL; RELT-like protein +K26542 ZNF346, JAZ; zinc finger protein 346 +K26543 ZNF385A, HZF; zinc finger protein 385A +K26544 SEC14, SEC14L; phosphatidylinositol/phosphatidylcholine transfer protein +K26545 UBAP2; ubiquitin-associated protein 2 +K26546 Dlish; SH3 domain-containing protein Dlish +K26547 MPEG1; macrophage-expressed gene 1 protein +K26548 NPF4, NRT1; MFS transporter, POT/PTR family, nitrate transporter +K26549 NPF6, NRT1; MFS transporter, POT/PTR family, nitrate transporter +K26550 PIR; cell wall mannoprotein +K26551 NPF1, NRT1; MFS transporter, POT/PTR family, low-affinity nitrate transporter +K26552 NPF2, GTR, NRT1; MFS transporter, POT/PTR family, nitrate/chloride/glucosinolate transporter +K26553 NPF3, NITR, NRT1; MFS transporter, POT/PTR family, nitrite transporter +K26554 NPF7, NRT1; MFS transporter, POT/PTR family, low-affinity nitrate transporter +K26555 DNHD1; dynein heavy chain domain-containing protein 1 +K26556 RAD52-1; DNA repair RAD52-like protein 1, mitochondrial +K26557 SPA3_4; protein SPA1-related 3/4 +K26558 RAD52-2; DNA repair RAD52-like protein 2, chloroplastic +K26559 WHY1; single-stranded DNA-binding protein WHY1 +K26560 WHY3; single-stranded DNA-binding protein WHY3 +K26561 WHY2; single-stranded DNA-binding protein WHY2 +K26562 NPF5, NRT1, NAET; MFS transporter, POT/PTR family, peptide/nitrate/nicotianamine transporter +K26563 NRT3, NAR2; high-affinity nitrate transporter +K26564 NPAP1; nuclear pore-associated protein 1 +K26565 clbH; colibactin biosynthesis nonribosomal peptide synthase +K26566 clbE; colibactin biosynthesis acyl carrier protein +K26567 clbD; colibactin biosynthesis 3-hydroxyacyl-CoA dehydrogenase +K26568 clbF; colibactin biosynthesis acyl-CoA dehydrogenase +K26569 clbG; colibactin biosynthesis malonyl-CoA transacylase +K26570 clbQ; colibactin biosynthesis thioesterase +K26571 clbL; colibactin biosynthesis amidase +K26572 clbN; colibactin biosynthesis nonribosomal peptide synthase +K26573 clbB; colibactin biosynthesis hybrid nonribosomal peptide/polyketide synthase +K26574 clbC; colibactin biosynthesis polyketide synthase +K26575 clbI; colibactin biosynthesis polyketide synthase +K26576 clbO; colibactin biosynthesis polyketide synthase +K26577 clbK; colibactin biosynthesis hybrid nonribosomal peptide/polyketide synthase +K26578 clbJ; colibactin biosynthesis nonribosomal peptide synthase +K26579 clbP; colibactin biosynthesis peptidase +K26580 rhmT; MFS transporter, ACS family, inner membrane transport protein +K26581 KCTD19; BTB/POZ domain-containing protein KCTD19 +K26582 MIDEAS, ELMSAN1; mitotic deacetylase-associated SANT domain protein +K26583 TRERF1; transcriptional-regulating factor 1 +K26584 ZNF541; zinc finger protein 541 +K26585 MBD6; methyl-CpG-binding domain protein 6 +K26586 COLQ; acetylcholinesterase collagenic tail peptide +K26587 CP; Potexvirus coat protein +K26588 CP; Tobravirus coat protein +K26589 CP; Tymovirus coat protein +K26590 umaA; mycolic acid methyltransferase UmaA [EC:2.1.1.-] +K26591 pcaA, umaA2; cyclopropane mycolic acid synthase PcaA +K26592 mmaA4, hma; hydroxy mycolic acid synthase MmaA4 +K26593 mmaA3; methoxy mycolic acid synthase MmaA3 +K26594 mmaA1; mycolic acid methyltransferase MmaA1 [EC:2.1.1.-] +K26595 mmaA2; cyclopropane mycolic acid synthase MmaA2 +K26596 cmaA2; cyclopropane mycolic acid synthase CmaA2 +K26597 cmaA1; cyclopropane mycolic acid synthase CmaA1 +K26598 HSPA2; heat shock 70kDa protein 2 +K26599 gfcR; HTH-type transcriptional regulator, activator of D-glucose/D-fructose catabolism +K26600 TLCD3; TLC domain-containing protein 3 +K26601 azlB; Lrp/AsnC family transcriptional regulator, repressor for azl operon +K26602 yihN; MFS transporter, GlpU family, inner membrane protein +K26603 yhjV; inner membrane transport protein +K26604 cyuP; cysteine uptake transport protein +K26605 azlC, brnF; branched chain amino acid efflux pump +K26606 azlD, brnE; branched chain amino acid efflux pump +K26607 cyuA; putative L-cysteine desulfidase +K26608 TMEM120; transmembrane protein 120 +K26609 exuR; LacI family transcriptional regulator, galacturonate utilization repressor +K26610 VEZF1; vascular endothelial zinc finger 1 +K26611 pol; Ackermannviridae DNA polymerase +K26612 pol; Ackermannviridae DNA polymerase +K26613 K26613; Kuttervirus RNA polymerase ADP-ribosylase +K26614 K26614; Cyvirus DNA polymerase catalytic subunit +K26615 RdRp; Alphaflexiviridae RNA-directed RNA polymerase +K26616 RdRp; Alternavirus RNA-directed RNA polymerase +K26617 pol; Acidianus bottle-shaped virus DNA polymerase +K26618 RdRp; Hartmanivirus RNA-directed RNA polymerase +K26619 RdRp; Peropuvirus RNA-directed RNA polymerase +K26620 K26620; Ascovirus DNA-directed RNA polymerase +K26621 K26621; Ascovirus virescens ascovirus DNA-directed RNA polymerase b subunit +K26622 K26622; Ascovirus DNA-directed RNA polymerase II +K26623 pol; Autographiviridae DNA polymerase +K26624 pol; Autographiviridae DNA polymerase +K26625 pol; Phikmvvirus DNA polymerase +K26626 K26626; Pseudomonas phage RNA polymerase +K26627 pol; Vibrio phage DNA polymerase +K26628 ORF1; Betaflexiviridae RNA replication polyprotein +K26629 RdRp; Ourmiavirus putative RNA-directed RNA polymerase +K26630 RdRp; Ilarvirus RNA-directed RNA polymerase +K26631 pol; Casjensviridae DNA polymerase +K26632 pol; Chaseviridae DNA polymerase +K26633 K26633; Chaseviridae RNA polymerase +K26634 RdRp; Chrysoviridae RNA-directed RNA polymerase +K26635 RdRp; Chrysoviridae RNA-directed RNA polymerase +K26636 RdRp; Chuviridae RNA-directed RNA polymerase +K26637 RdRp; Velarivirus RNA-directed RNA polymerase +K26638 RdRp; Pseudomonas phage RNA-directed RNA polymerase +K26639 K26639; Druskaviridae DNA polymerase elongation subunit family B +K26640 RdRp; Duinviridae RNA-directed RNA polymerase +K26641 RdRp; Emaravirus RNA-directed RNA polymerase +K26642 RdRp; Fusariviridae RNA-directed RNA polymerase +K26643 pol; Clostridium phage DNA polymerase +K26644 K26644; Hafunaviridae DNA polymerase elongation subunit family B +K26645 pol; Bacillus phage DNA polymerase +K26646 pol; Bacillus phage DNA polymerase +K26647 K26647; Herelleviridae RNA polymerase beta subunit +K26648 K26648; Lactobacillus phage RNA polymerase beta subunit +K26649 U27; Proboscivirus DNA polymerase processivity subunit +K26650 pol; Intestiviridae DNA polymerase +K26651 K26651; Chloriridovirus DNA-directed RNA polymerase II subunit E +K26652 K26652; Chloriridovirus RNA polymerase II subunit Rpb5b +K26653 K26653; Lymphocystis disease virus RNA-directed DNA polymerase +K26654 pol; Kyanoviridae DNA polymerase +K26655 K26655; Marseilleviridae DNA polymerase delta catalytic subunit +K26656 K26656; Marseilleviridae DNA-directed RNA polymerase subunit 2 +K26657 K26657; Marseilleviridae DNA-directed RNA polymerase subunit alpha +K26658 K26658; Marseilleviridae DNA-directed RNA polymerase subunit RPB5 +K26659 RdRp; Megabirnavirus RNA-directed RNA polymerase +K26660 K26660; Mesyanzhinovviridae bifunctional DNA primase/polymerase +K26661 pol; Mesyanzhinovviridae DNA polymerase +K26662 K26662; Mesyanzhinovviridae DNA polymerase I +K26663 K26663; Mimiviridae DNA-directed RNA polymerase subunit L +K26664 K26664; Mimiviridae DNA-directed RNA polymerase subunit 5 +K26665 K26665; Mimiviridae DNA-directed RNA polymerase subunit 6 +K26666 K26666; Mimiviridae putative DNA polymerase family X +K26667 K26667; Mimiviridae putative DNA-directed RNA polymerase subunit Rpb9 +K26668 K26668; Mimiviridae putative DNA-directed RNA polymerase subunit Rpb7 +K26669 K26669; Mimiviridae putative poly(A) polymerase catalytic subunit +K26670 RdRp; Mitoviridae RNA-directed RNA polymerase +K26671 GARRE1; granule associated Rac and RHOG effector protein 1 +K26672 SLAC1, SLAH; S-type anion channel +K26673 FIGN; fidgetin +K26674 TMEM218; transmembrane protein 218 +K26675 FSIP2; fibrous sheath-interacting protein 2 +K26676 NSG1; neuronal vesicle trafficking-associated protein 1 +K26677 NSG2; neuronal vesicle trafficking-associated protein 2 +K26678 MON2; protein MON2 +K26679 ATP9A; phospholipid-transporting ATPase IIA [EC:7.6.2.1] +K26680 DOP1, DOPEY; protein dopey +K26681 INSIG; insulin-induced protein +K26682 SCAP; sterol regulatory element-binding protein cleavage-activating protein +K26683 GOLT1, GOT1; vesicle transport protein GOT1 +K26684 RdRp; Nodaviridae RNA-directed RNA polymerase +K26685 RdRp; Nyamiviridae RNA-directed RNA polymerase +K26686 PA; Thogotovirus polymerase subunit PA +K26687 PB2; Thogotovirus polymerase subunit PB2 +K26688 RdRp; Alphapartitivirus RNA-directed RNA polymerase +K26689 RdRp; Betapartitivirus RNA-directed RNA polymerase +K26690 RdRp; Partitiviridae RNA-directed RNA polymerase +K26691 RdRp; Gammapartitivirus RNA-directed RNA polymerase +K26692 K26692; Peduoviridae polymerase +K26693 RdRp; Orthophasmavirus RNA-directed RNA polymerase +K26694 L; Bandavirus RNA-directed RNA polymerase L [EC:2.7.7.48 3.1.-.-] +K26695 K26695; Phenuiviridae RNA-directed RNA polymerase +K26696 K26696; Prasinovirus DNA polymerase exonuclease subunit +K26697 K26697; Phycodnaviridae DNA-directed RNA polymerase II subunit RPB9 +K26698 ORF5; Sopolycivirus RNA-directed RNA polymerase +K26699 RdRp; Polymycovirus RNA-directed RNA polymerase +K26700 K26700; Poxviridae DNA polymerase-beta / AP endonuclease +K26701 K26701; Poxviridae poly(A) polymerase catalytic subunit VP55 +K26702 K26702; Poxviridae RNA polymerase RPO18 +K26703 K26703; Poxviridae RNA polymerase RPO35 +K26704 L; Rhabdoviridae RNA-directed RNA polymerase +K26705 pol; Rountreeviridae DNA polymerase +K26706 pol; Schitoviridae DNA polymerase +K26707 K26707; Schitoviridae RNA polymerase +K26708 K26708; Vibrio phage RNA polymerase +K26709 K26709; Schitoviridae RNA polymerase RNAP1 subunit A +K26710 K26710; Schitoviridae RNA polymerase RNAP1 subunit B +K26711 K26711; Schitoviridae virion RNA polymerase +K26712 RdRp; Lake Sinai virus RNA-directed RNA polymerase +K26713 RdRp; Fijivirus RNA-directed RNA polymerase +K26714 K26714; Steigviridae DNA polymerase I +K26715 K26715; Steigviridae putative RNA polymerase +K26716 K26716; Steigviridae putative RNA polymerase subunit +K26717 K26717; Steigviridae putative RNA polymerase subunit +K26718 K26718; Aeromonas phage Alt-like RNA polymerase ADP-ribosyltransferase +K26719 alt; Aeromonas phage Alt-like RNA polymerase ADP-ribosyltransferase +K26720 K26720; Straboviridae RNA polymerase ADP-ribosylase +K26721 modB; Krischvirus RNA polymerase ADP-ribosylase +K26722 pol; Suoliviridae DNA polymerase +K26723 pol; Bacillus phage DNA polymerase +K26724 RdRp; Totiviridae RNA-directed RNA polymerase +K26725 RdRp; Totiviridae RNA-directed RNA polymerase +K26726 RdRp; Xinmoviridae RNA-directed RNA polymerase +K26727 pol; Zierdtviridae DNA polymerase +K26728 ZNF292; zinc finger protein 292 +K26729 ZNF407; Zinc finger protein 407 +K26730 napA, nhaS3, nhaS5, gerN; Na+:H+ antiporter +K26731 CHX, KHA, nhaS4; K+:H+ antiporter +K26732 khtU; K+:H+ antiporter subunit KhtU +K26733 khtS; K+:H+ antiporter modulator KhtS +K26734 MCC; colorectal mutant cancer protein +K26735 KEA4_5_6, TMCO3, ybaL; K+:H+ antiporter +K26736 PA2G4, EBP1; ERBB-3 binding protein +K26737 IQCN; IQ domain-containing protein N +K26738 PERM1; PGC-1 and ERR-induced regulator in muscle protein 1 +K26739 padR; PadR family transcriptional regulator, phenolic acid-responsive transcriptional regulator +K26740 vanR; PadR family transcriptional regulator, regulator of vanillate utilization +K26741 ladR; PadR family transcriptional regulator, multidrug transcriptional repressor LadR +K26742 lmrR; PadR family transcriptional regulator, multidrug transcriptional repressor LmrR +K26743 pex; PadR family transcriptional regulator, circadian period extender +K26744 vanK; MFS transporter, AAHS family, vanillate permease +K26745 ydiM_N; MFS transporter, AAHS family, multidrug transporter +K26746 TMX1_4; thioredoxin-related transmembrane protein 1/4 +K26747 LYSET, TMEM251; lysosomal enzyme trafficking factor +K26748 tfdK; MFS transporter, AAHS family, 2,4-dichlorophenoxyacetate transporter +K26749 genK; MFS transporter, AAHS family, 2,5-dihydroxybenzoate transporter +K26750 TVP15; golgi apparatus membrane protein TVP15 +K26751 TVP18; golgi apparatus membrane protein TVP18 +K26752 TVP23; golgi apparatus membrane protein TVP23 +K26753 TVP38; golgi apparatus membrane protein TVP38 +K26754 gp24; Straboviridae capsid vertex protein +K26755 soc; Straboviridae small outer capsid protein +K26756 hoc; Straboviridae highly immunogenic outer capsid protein +K26757 ipi1; Straboviridae internal protein I +K26758 ipi2; Straboviridae internal protein II +K26759 ipi3; Straboviridae internal protein III +K26760 inh; Straboviridae inhibitor of prohead protease Gp21, minor capsid protein +K26761 gp21; Straboviridae prohead core protein protease [EC:3.4.-.-] +K26762 gp22; Straboviridae capsid assembly scaffolding protein +K26763 gp67; Straboviridae prehead core component PIP +K26764 gp68; Straboviridae prohead assembly protein Gp68 +K26765 gp20; Straboviridae portal protein +K26766 gp13; Straboviridae neck protein Gp13 +K26767 gp14; Straboviridae neck protein Gp14 +K26768 gp2; Straboviridae terminal DNA protecting protein +K26769 TCEAL1; transcription elongation factor A protein-like 1 +K26770 TMEM64; transmembrane protein 64 +K26771 gp15; Straboviridae tail completion protein Gp15 +K26772 gp3; Tequatrovirus tail tube terminator protein +K26773 wac; Straboviridae fibritin +K26774 gp19; Straboviridae tail tube protein Gp19 +K26775 gp34; Straboviridae long-tail fiber proximal subunit +K26776 gp35; Straboviridae long-tail fiber protein Gp35 +K26777 gp36; Straboviridae long-tail fiber protein Gp36 +K26778 gp37; Straboviridae long-tail fiber protein Gp37 +K26779 gp9; Straboviridae baseplate protein Gp9 +K26780 gp10; Straboviridae baseplate wedge protein Gp10 +K26781 gp11; Straboviridae baseplate wedge protein Gp11 +K26782 gp12; Straboviridae short tail fiber protein Gp12 +K26783 gp6; Straboviridae baseplate wedge protein Gp6 +K26784 gp7; Straboviridae baseplate wedge protein Gp7 +K26785 gp8; Straboviridae baseplate wedge protein Gp8 +K26786 gp53; Straboviridae baseplate wedge protein Gp53 +K26787 MARVELD1; MARVEL domain-containing protein 1 +K26788 gp27; Straboviridae baseplate hub protein Gp27 +K26789 gp5.4; Straboviridae baseplate puncturing device Gp5.4 +K26790 gp26; Straboviridae baseplate hub assembly protein Gp26 +K26791 gp28; Straboviridae baseplate hub assembly protein Gp28 +K26792 gp29; Straboviridae tape measure protein +K26793 gp51; Straboviridae baseplate hub assembly protein Gp51 +K26794 gp48; Straboviridae baseplate tail-tube junction protein Gp48 +K26795 gp54; Straboviridae baseplate tail-tube junction protein Gp54 +K26796 HmgD_Z; high mobility group protein D/Z +K26797 GORASP, GRASP65_55; golgi reassembly-stacking protein +K26798 NS3; Bovine viral diarrhea virus 1 serine protease NS3 [EC:3.4.21.113 3.6.1.15 5.6.2.6] +K26799 Nsp4; Equine arterivirus serine peptidase [EC:3.4.21.114] +K26800 VP4; Infectious pancreatic necrosis birnavirus Vp4 peptidase [EC:3.4.21.115] +K26801 NIa-pro; Potyvirus nuclear-inclusion-a endopeptidase [EC:3.4.22.44] +K26802 alpha; Alphanodavirus capsid protein alpha [EC:3.4.23.44] +K26803 gp31; Straboviridae capsid assembly protein Gp31 +K26804 gp40; Straboviridae head formation protein +K26805 gp38; Straboviridae tail fiber assembly protein +K26806 gp57; Straboviridae tail fiber assembly helper protein +K26807 GGN; gametogenetin +K26808 TXLN; taxilin +K26809 XKRX, XKR2; XK-related protein 2 +K26810 XKR3; XK-related protein 3 +K26811 XKR4_6_7; XK-related protein 4/6/7 +K26812 XKR5; XK-related protein 5 +K26813 XKR8; XK-related protein 8 +K26814 XKR9; XK-related protein 9 +K26815 manT; MMP alpha-(1->4)-mannosyltransferase [EC:2.4.1.393] +K26816 GLT1D1; glycosyltransferase 1 domain-containing protein 1 [EC:2.4.-.-] +K26817 lpa; lipoamidase [EC:3.5.1.138] +K26818 pfpI; archaeal arginyl aminopeptidase [EC:3.4.11.27] +K26819 K26819; Autographiviridae peptidase +K26820 K26820; Pradovirus peptidase HslV family +K26821 K26821; Alphabaculovirus peptidase MA superfamily +K26822 K26822; Demerecviridae metallopeptidase +K26823 K26823; Epseptimavirus peptidase HslV family +K26824 K26824; Vibrio phage peptidase HslV family +K26825 K26825; Demerecviridae exonuclease +K26826 K26826; Clostridium phage peptidase +K26827 K26827; Bacillus phage carboxypeptidase +K26828 K26828; Bacillus phage L-alanyl-D-glutamate peptidase +K26829 K26829; Bacillus phage metallo-endopeptidase +K26830 K26830; Jahgtovirus peptidase +K26831 K26831; Chloriridovirus metallopeptidase WLM +K26832 K26832; Kyanoviridae peptidase +K26833 K26833; Marseillevirus papain-like cysteine peptidase +K26834 K26834; Marseillevirus papain-like cysteine peptidase +K26835 K26835; Marseilleviridae peptidase +K26836 K26836; Marseillevirus putative metallopeptidase WLM +K26837 K26837; Marseillevirus putative peptidoglycan peptidase +K26838 K26838; Mimiviridae cathepsin B cystein protease +K26839 K26839; Mimiviridae putative metallopeptidase WLM domain protein +K26840 K26840; Mimiviridae putative papain-like cysteine peptidase +K26841 gp17; Microbacterium phage peptidase +K26842 K26842; Steigviridae/Suoliviridae L,D-carboxypeptidase/transpeptidase +K26843 K26843; Straboviridae peptidase +K26844 K26844; Ackermannviridae DNA helicase +K26845 K26845; Suoliviridae peptidase +K26846 K26846; Ackermannviridae DNA helicase +K26847 mtpB; proline betaine --- corrinoid protein Co-methyltransferase [EC:2.1.1.388] +K26848 K26848; Ackermannviridae DNA helicase subunit of helicase-primase complex +K26849 ORF71; Cyvirus helicase-primase helicase subunit +K26850 ORF46; Cyprinid herpesvirus helicase-primase primase subunit +K26851 K26851; Ascovirus DEAD-like helicase +K26852 K26852; Heliothis virescens ascovirus helicase +K26853 K26853; African swine fever virus helicase +K26854 K26854; African swine fever virus helicase +K26855 K26855; African swine fever virus helicase +K26856 K26856; African swine fever virus helicase +K26857 K26857; African swine fever virus helicase +K26858 wzy; O-antigen polymerase [EC:2.4.99.27] +K26859 rfc; O-antigen polymerase [EC:2.4.99.27] +K26860 K26860; Autographiviridae DNA primase/helicase +K26861 K26861; Autographiviridae putative DNA helicase +K26862 K26862; Baculoviridae DNA helicase 2 +K26863 gp1; Ilarvirus methyltransferase/helicase +K26864 K26864; Casjensviridae DNA helicase +K26865 K26865; Ruegeria phage DNA helicase +K26866 K26866; Ruegeria phage superfamily II DNA/RNA helicase +K26867 K26867; Chaseviridae DNA primase/helicase +K26868 K26868; Demerecviridae DNA primase/helicase +K26869 K26869; Demerecviridae helicase +K26870 D10; Demerecviridae probable helicase D10 [EC:5.6.2.-] +K26871 K26871; Demerecviridae putative replicative DNA helicase +K26872 K26872; Drexlerviridae ATP-dependent helicase +K26873 K26873; Drexlerviridae DNA helicase +K26874 K26874; Haloferacalesvirus DNA helicase +K26875 K26875; Herelleviridae DNA helicase +K26876 K26876; Bacillus phage DNA helicase +K26877 K26877; Herelleviridae DNA primase/helicase +K26878 K26878; Bacillus phage helicase DnaB-like +K26879 K26879; Herelleviridae helicase DnaB-like +K26880 U73; Roseolovirus DNA replication origin-binding helicase +K26881 K26881; Intestiviridae Dda-like helicase +K26882 K26882; Jahgtovirus DNA helicase +K26883 K26883; Intestiviridae DNA replication ATP-dependent helicase +K26884 K26884; Chloriridovirus helicase +K26885 K26885; Ranavirus helicase +K26886 K26886; Chloriridovirus putative helicase +K26887 K26887; Iridoviridae putative NTPase/helicase-like protein +K26888 K26888; Chloriridovirus SWI/SNF2 family helicase +K26889 K26889; Iridoviridae Uvr/REP helicase +K26890 K26890; Kyanoviridae DNA helicase +K26891 K26891; Kyanoviridae DNA primase/helicase +K26892 K26892; Kyanoviridae helicase +K26893 K26893; Betalipothrixvirus holliday junction branch migration helicase +K26894 K26894; Betalipothrixvirus putative helicase +K26895 K26895; Marseillevirus highly derived D5-like helicase-primase +K26896 K26896; Marseillevirus D6/D11-like helicase +K26897 K26897; Marseillevirus putative D6/D11-like helicase +K26898 K26898; Marseillevirus putative helicase +K26899 K26899; Marseillevirus putative superfamily II helicase +K26900 K26900; Mesyanzhinovviridae Dda-like helicase +K26901 K26901; Mesyanzhinovviridae DNA helicase +K26902 K26902; Mesyanzhinovviridae DNA helicase +K26903 K26903; Mimiviridae putative ATP-dependent DNA helicase +K26904 K26904; Mimiviridae putative ATP-dependent helicase +K26905 K26905; Mimiviridae putative ATP-dependent RNA helicase +K26906 K26906; Mimiviridae putative ATP-dependent RNA helicase +K26907 K26907; Mimiviridae putative ATP-dependent RNA helicase +K26908 K26908; Mimiviridae putative ATP-dependent RNA helicase +K26909 K26909; Mimiviridae putative ATP-dependent RNA helicase +K26910 K26910; Mimiviridae putative ATP-dependent RNA helicase +K26911 fucH; 2-dehydro-3-deoxy-L-fuconate aldolase [EC:4.1.2.64] +K26912 carB; 3'-dehydrocarminate deglycosidase [EC:4.1.99.28] +K26913 pbfA; (R)-1-hydroxy-2-aminoethylphosphonate ammonia-lyase [EC:4.3.1.33] +K26914 K26914; Mimiviridae putative DNA helicase +K26915 K26915; Mimiviridae putative helicase +K26916 K26916; Chlorovirus ATP-dependent RNA helicase +K26917 K26917; Phycodnaviridae DNA helicase +K26918 K26918; Chlorovirus holliday junction branch migration helicase +K26919 K26919; Prasinovirus NTPase/helicase +K26920 K26920; Prasinovirus putative VV A18 helicase +K26921 K26921; Poxviridae NTPase/helicase +K26922 K26922; Schitoviridae ATP-dependent RecD-like DNA helicase +K26923 K26923; Steigviridae replicative DNA helicase +K26924 K26924; Straboviridae DNA helicase +K26925 K26925; Vibrio phage DNA helicase +K26926 K26926; Straboviridae putative RNA-DNA and DNA-DNA helicase ATPase +K26927 K26927; Suoliviridae DNA helicase +K26928 K26928; Mycobacterium phage DnaB-like replicative helicase +K26929 K26929; Zierdtviridae DNA helicase +K26930 mtqA; [methyl-Co(III) quaternary-amine-specific corrinoid protein]---tetrahydrofolate methyltransferase [EC:2.1.1.389] +K26931 sacY; levansucrase and sucrase synthesis operon transcriptional antiterminator +K26932 sacT; sacPA operon transcriptional antiterminator +K26933 kdgF; unsaturated pyranuronate lyase [EC:4.2.99.25] +K26934 ATP11; phospholipid-transporting ATPase [EC:7.6.2.1] +K26935 TMEM30A, CDC50A; cell cycle control protein 50A +K26936 TIMD4, TIM4; T-cell immunoglobulin and mucin domain-containing protein 4 +K26937 dinF, mepA, vmrA; MATE family, multidrug efflux pump +K26938 MATE; MATE family, citrate exporter +K26939 norM, mdtK; MATE family, multidrug efflux pump +K26940 gp10; Autographiviridae major head protein +K26941 gp15; Autographiviridae internal virion protein Gp15 +K26942 gp14; Autographiviridae internal virion protein Gp14 +K26943 gp8; Autographiviridae portal protein +K26944 gp11; Autographiviridae tail tubular protein Gp11 +K26945 gp12; Autographiviridae tail tubular protein Gp12 +K26946 gp17; Autographiviridae tail fiber protein +K26947 gp9; Autographiviridae capsid assembly scaffolding protein +K26948 gp13; Autographiviridae probable scaffold protein Gp13 +K26949 gp6.7; Autographiviridae protein 6.7 +K26950 gp7.3; Autographiviridae protein 7.3 +K26951 gp19; Autographiviridae terminase large subunit [EC:3.6.4.- 3.1.21.-] +K26952 gp18; Autographiviridae terminase small subunit +K26953 TTMP; TPA-induced transmembrane protein +K26954 NUDT22; UDP-sugar diphosphatase [EC:3.6.1.45] +K26955 NUDT25, NUDX25; bis(5'-nucleosidyl)-tetraphosphatase [EC:3.6.1.17] +K26956 NUDT2_6_7_10; ADP-ribose/NAD+ diphosphatase [EC:3.6.1.13 3.6.1.22] +K26957 GCNA, ACRC; germ cell nuclear acidic protein +K26958 brxA_B; bacilliredoxin +K26959 brxC; monothiol bacilliredoxin +K26960 bdr; bacillithiol disulfide reductase [EC:1.8.1.-] +K26961 E; Enterobacteria phage major capsid protein +K26962 D; Enterobacteria phage capsid decoration protein +K26963 B; Enterobacteria phage portal protein +K26964 W; Enterobacteria phage head completion protein +K26965 FI; Enterobacteria phage DNA-packaging protein FI +K26966 FII; Enterobacteria phage head-tail connector protein FII +K26967 Z; Enterobacteria phage tail completion protein +K26968 U; Enterobacteria phage tail tube terminator protein +K26969 V; Enterobacteria phage tail tube protein +K26970 G; Enterobacteria phage tail assembly protein G +K26971 T; Enterobacteria phage tail assembly protein GT +K26972 H; Enterobacteria phage tape measure protein +K26973 M; Enterobacteria phage tail tip protein M +K26974 L; Enterobacteria phage tail tip protein L +K26975 K; Enterobacteria phage tail tip assembly protein K +K26976 I; Enterobacteria phage tail tip assembly protein I +K26977 J; Enterobacteria phage tip attachment protein J +K26978 ZNF526_574; zinc finger protein 526/574 +K26979 RNF10; E3 ubiquitin-protein ligase RNF10 [EC:2.3.2.27] +K26980 tfa; Enterobacteria phage tail fiber assembly protein +K26981 mazE1; antitoxin MazE1 +K26982 mazE2; antitoxin MazE2 +K26983 mazE3; antitoxin MazE3 +K26984 mazE4; antitoxin MazE4 +K26985 mazE5; antitoxin MazE5 +K26986 mazE6; antitoxin MazE6 +K26987 mazE7; antitoxin MazE7 +K26988 mazE8; antitoxin MazE8 +K26989 mazE9; antitoxin MazE9 +K26990 rsoA; sigma-O factor regulatory protein RsoA +K26991 yvrL; membrane-bound negative regulator +K26992 sigO; RNA polymerase sigma-O factor +K26993 sdpR; ArsR family transcriptional regulator, repressor of sdpIR and other operons +K26994 sdpA; sporulation delaying protein A +K26995 sdpB; sporulation delaying protein B +K26996 sdpI; immunity protein, SdpI family +K26997 sdpC; cannibalism toxin, SdpC family +K26998 DTNA; dystrobrevin alpha +K26999 BPY2; testis-specific basic protein Y 2 +K27000 sigH; RNA polymerase sigma-H factor +K27001 GDAH, AGMAT; taurocyamine/4-guanidinobutanoate/3-guanidinopropanoate hydrolase [EC:3.5.3.- 3.5.3.7 3.5.3.17] +K27002 K27002; Allexivirus coat protein +K27003 K27003; Atkinsviridae coat protein +K27004 K27004; Vitivirus coat protein +K27005 K27005; Robigovirus coat protein +K27006 gp5; Carlavirus coat protein +K27007 K27007; Blumeviridae coat protein +K27008 ORF3b; Bromovirus capsid protein +K27009 s3gp2; Anulavirus coat protein +K27010 s3gp2; Ilarvirus coat protein +K27011 gp1; Cavemovirus coat protein / movement protein +K27012 s2gp1; Betachrysovirus putative coat protein +K27013 ORF5; Closteroviridae minor capsid protein +K27014 K27014; Closteroviridae coat protein +K27015 K27015; Crinivirus minor coat protein +K27016 K27016; Fiersviridae coat protein +K27017 K27017; Capulavirus coat protein +K27018 gp2; Geminiviridae coat protein +K27019 K27019; Begomovirus coat protein +K27020 V2; Begomovirus protein V2 +K27021 gp1; Genomoviridae capsid protein +K27022 K27022; Xanthomonas phage major coat protein +K27023 K27023; Inoviridae major coat protein +K27024 K27024; Ralstonia phage major coat protein +K27025 K27025; Ampelovirus putative coat protein +K27026 gp04; Xanthomonas phage minor coat protein +K27027 gp03; Xanthomonas phage minor coat protein +K27028 gp08; Inoviridae minor coat protein +K27029 K27029; Inoviridae minor coat protein A +K27030 K27030; Inoviridae minor coat protein B +K27031 K27031; Inoviridae putative minor coat protein +K27032 K27032; Kyanoviridae minor coat protein +K27033 K27033; Synechococcus phage minor coat protein +K27034 gp1; Babuvirus coat protein +K27035 s2gp1; Betanodavirus coat protein +K27036 s2gp1; Alphapartitivirus coat protein +K27037 s2gp1; Betapartitivirus coat protein +K27038 s2gp1; Gammapartitivirus coat protein +K27039 K27039; Partitiviridae putative coat protein +K27040 s2gp1; Partitiviridae putative coat protein +K27041 fimL; scaffold protein FimL +K27042 trpI; LysR family transcriptional regulator, trpBA operon transcriptional activator +K27043 clgR; XRE family transcriptional regulator, stress-response regulator +K27044 pacL1; chaperone-like protein +K27045 CCZ1; vacuolar fusion protein CCZ1, animal type +K27046 K27046; Poxviridae trimeric virion coat protein rifampicin res +K27047 K27047; Rudiviridae major capsid protein +K27048 K27048; Hoswirudivirus putative coat protein +K27049 K27049; Solspiviridae coat protein +K27050 K27050; Steitzviridae coat protein +K27051 K27051; Burzaovirus spore coat protein-like protein +K27052 K27052; Tombusviridae coat protein +K27053 ORF2; Tombusviridae capsid protein +K27054 gp1; Diatom colony associated dsRNA virus coat protein +K27055 gp1; Totiviridae coat protein +K27056 gp2; Maculavirus coat protein +K27057 K27057; Tobamovirus coat protein +K27058 s2gp1; Virgaviridae capsid protein +K27059 CP-CP2; Furovirus coat protein readthrough +K27060 UTRN; utrophin +K27061 SGCE; epsilon-sarcoglycan +K27062 SGCZ; zeta-sarcoglycan +K27063 VP40; Ebolavirus matrix protein VP40 +K27064 VP30; Ebolavirus transcriptional activator VP30 +K27065 VP24; Ebolavirus membrane-associated protein VP24 +K27066 VP40; Marburgvirus matrix protein VP40 +K27067 VP30; Marburgvirus transcriptional activator VP30 +K27068 VP24; Marburgvirus membrane-associated protein VP24 +K27069 lacI; LacI family transcriptional regulator, lactose operon repressor +K27070 kasB; meromycolic acid 3-oxoacyl-[acyl-carrier protein] synthase II [EC:2.3.1.294] +K27071 hadA; meromycolic acid (3R)-3-hydroxyacyl-[acyl-carrier protein] dehydratase HadA [EC:4.2.1.-] +K27072 hadB; meromycolic acid (3R)-3-hydroxyacyl-[acyl-carrier protein] dehydratase HadB [EC:4.2.1.-] +K27073 hadC; meromycolic acid (3R)-3-hydroxyacyl-[acyl-carrier protein] dehydratase HadC [EC:4.2.1.-] +K27074 hadD; meromycolic acid (3R)-3-hydroxyacyl-[acyl-carrier protein] dehydratase HadD [EC:4.2.1.-] +K27075 NEPRO; nucleolus and neural progenitor protein +K27076 pprA; two-component system, NarL family, sensor histidine kinase PprA [EC:2.7.13.3] +K27077 pprB; two-component system, NarL family, response regulator PprB +K27078 cupE; spore coat protein U domain-containing protein, fimbrial subunit CupE1/2/3/6 +K27079 tadD; tight adherence protein D +K27080 tadG; tight adherence protein G +K27081 SORC1; VPS10 domain-containing receptor SorCS1 +K27082 SORC2; VPS10 domain-containing receptor SorCS2 +K27083 SORC3; VPS10 domain-containing receptor SorCS3 +K27084 eccA; ESX secretion system protein EccA +K27085 eccB; ESX secretion system ATPase EccB +K27086 eccC; ESX secretion system protein EccC +K27087 eccD; ESX secretion system protein EccD +K27088 eccE; ESX secretion system protein EccE +K27089 espC_F; ESX secretion-associated protein EspC/F +K27090 espD_H; ESX secretion-associated protein EspD/H +K27091 espG; ESX secretion-associated protein EspG +K27092 espI; ESX secretion-associated protein EspI +K27093 accD4; long-chain acyl-CoA carboxylase carboxyl transferase subunit [EC:6.4.1.- 2.1.3.-] +K27094 accD5; propionyl-CoA/long-chain acyl-CoA carboxylase carboxyl transferase subunit [EC:6.4.1.3 6.4.1.- 2.1.3.15] +K27095 accE5, accE; acyl-CoA carboxylase epsilon subunit +K27096 PPFIBP; liprin-beta +K27097 espR; ESX-1-secreted protein regulator +K27098 espA_E; ESX secretion-associated protein EspA/E +K27099 espB; ESX secretion-associated protein EspB +K27100 espJ; ESX secretion-associated protein EspJ +K27101 espK; ESX secretion-associated protein EspK +K27102 espL; ESX secretion-associated protein EspL +K27103 SRRT, ARS2; serrate RNA effector molecule +K27104 ZNF827; zinc finger protein 827 +K27105 dosT; two-component system, NarL family, sensor histidine kinase DosT [EC:2.7.13.3] +K27106 ZNF668; zinc finger protein 668 +K27107 mce3R; TetR/AcrR family transcriptional regulator, mce3 operon repressor +K27108 ephA_B; epoxide hydrolase A/B [EC:3.3.2.-] +K27109 ctaF; cytochrome c oxidase subunit IV [EC:7.1.1.9] +K27110 SNORD118; small nucleolar RNA SNORD118 +K27111 SNORD63, U63; small nucleolar RNA SNORD63 +K27112 SNORD64; small nucleolar RNA SNORD64 +K27113 SNORD91; small nucleolar RNA SNORD91 +K27114 SNORD93; small nucleolar RNA SNORD93 +K27115 SNORD94, U94; small nucleolar RNA SNORD94 +K27116 SNORD95, U95; small nucleolar RNA SNORD95 +K27117 SNORD96, U96; small nucleolar RNA SNORD96 +K27118 SNORD97, U97; small nucleolar RNA SNORD97 +K27119 SNORD98; small nucleolar RNA SNORD98 +K27120 SNORD99; small nucleolar RNA SNORD99 +K27121 SNORD100; small nucleolar RNA SNORD100 +K27122 SNORD101, U101, snoR60; small nucleolar RNA SNORD101 +K27123 SNORD102; small nucleolar RNA SNORD102 +K27124 SNORD103, U103; small nucleolar RNA SNORD103 +K27125 SNORD105, U105; small nucleolar RNA SNORD105 +K27126 SNORD107; small nucleolar RNA SNORD107 +K27127 SNORD108; small nucleolar RNA SNORD108 +K27128 SNORD109; small nucleolar RNA SNORD109 +K27129 SNORD110, snoR14; small nucleolar RNA SNORD110 +K27130 SNORD111; small nucleolar RNA SNORD111 +K27131 SNORD112; small nucleolar RNA SNORD112 +K27132 SNORD113_114; small nucleolar RNA SNORD113/114 +K27133 SNORD82, U82; small nucleolar RNA SNORD82 +K27134 SNORD83, U83; small nucleolar RNA SNORD83 +K27135 SNORD116; small nucleolar RNA SNORD116 +K27136 SNORD117, SNORD83; small nucleolar RNA SNORD117 +K27137 SNORD121; small nucleolar RNA SNORD121 +K27138 SNORD123; small nucleolar RNA SNORD123 +K27139 SNORD124; small nucleolar RNA SNORD124 +K27140 SNORD125; small nucleolar RNA SNORD125 +K27141 SNORD126; small nucleolar RNA SNORD126 +K27142 SNORD127; small nucleolar RNA SNORD127 +K27143 NSP1; Rotavirus non-structural protein 1 +K27144 NSP2; Rotavirus non-structural protein 2 [EC:3.6.4.-] +K27145 NSP3; Rotavirus non-structural protein 3 +K27146 NSP4; Rotavirus non-structural glycoprotein 4 +K27147 NSP5; Rotavirus non-structural protein 5 +K27148 nod; nitric oxide dismutase +K27149 SNORA47; small nucleolar RNA SNORA47 +K27150 SNORA55, ACA55; small nucleolar RNA SNORA55 +K27151 SNORA84; small nucleolar RNA SNORA84 +K27152 SCARNA1, ACA35; small Cajal body-specific RNA 1 +K27153 SCARNA4, ACA26; small Cajal body-specific RNA 4 +K27154 SCARNA6, SCARNA5; small Cajal body-specific RNA 6 +K27155 SCARNA10, U85; small Cajal body-specific RNA 10 +K27156 SCARNA11, ACA57; small Cajal body-specific RNA 11 +K27157 SCARNA12, U89; small Cajal body-specific RNA 12 +K27158 SCARNA15, ACA45; small Cajal body-specific RNA 15 +K27159 SCARNA16, ACA47; small Cajal body-specific RNA 16 +K27160 SCARNA24, SCARNA23; small Cajal body-specific RNA 24 +K27161 SCARNA2; small Cajal body-specific RNA 2 +K27162 ZCCHC3; zinc finger CCHC domain-containing protein 3 +K27163 SND1; SRP-independent targeting protein 1 +K27164 SND2, TMEM208; SRP-independent targeting protein 2 +K27165 SND3, PHO88; SRP-independent targeting protein 3 +K27166 SCARNA7, U90; small Cajal body-specific RNA 7 +K27167 SCARNA8, U92; small Cajal body-specific RNA 8 +K27168 SCARNA9; small Cajal body-specific RNA 9 +K27169 SCARNA13, U93; small Cajal body-specific RNA 13 +K27170 SCARNA14, U100; small Cajal body-specific RNA 14 +K27171 SCARNA17, U91; small Cajal body-specific RNA 17 +K27172 SCARNA18, U109; small Cajal body-specific RNA 18 +K27176 SNORD86, U86; small nucleolar RNA SNORD86 +K27177 SNORD87 U87; small nucleolar RNA SNORD87 +K27178 SNORD89; small nucleolar RNA SNORD89 +K27179 ODAD5, CLXN, EFCAB1; outer dynein arm-docking complex subunit 5 +K27180 K27180; 2-epi-5-epi-valiolone dehydrogenase / demethylgadusol O-methyltransferase [EC:1.3.1.126 2.1.1.391] +K27181 SNORD72; small nucleolar RNA SNORD72 +K27184 gtfC; 4,6-alpha-glucanotransferase (linear substrates/linear products) [EC:2.4.1.394] +K27185 gtfO, gtfA; reuteransucrase [EC:2.4.1.395] +K27186 gtfD; 4,6-alpha-glucanotransferase (linear and branched substrates, branched products) [EC:2.4.1.396] +K27187 dsrM; [DsrC]-trisulfide reductase subunit M [EC:1.8.5.10] +K27188 dsrK; [DsrC]-trisulfide reductase subunit K [EC:1.8.5.10] +K27189 dsrJ; [DsrC]-trisulfide reductase subunit J +K27190 dsrO; [DsrC]-trisulfide reductase subunit O +K27191 dsrP; [DsrC]-trisulfide reductase subunit P +K27192 TUFT1; tuftelin +K27193 mheI; carbendazim hydrolysing esterase [EC:3.1.1.122] +K27194 mmpH; MMP endo-(1,4)-3-O-methyl-alpha-D-mannosidase [EC:3.2.1.221] +K27195 E3.2.1.222; funoran endo-beta-hydrolase [EC:3.2.1.222] +K27196 dsrL; dissimilatory sulfite reductase flavoprotein subunit +K27197 SNORD4; small nucleolar RNA SNORD4 +K27198 SNORD5; small nucleolar RNA SNORD5 +K27199 SNORD6; small nucleolar RNA SNORD6 +K27200 SNORD7; small nucleolar RNA SNORD7 +K27201 SNORD8_9; small nucleolar RNA SNORD8/9 +K27202 CS; (+)-delta-cadinol synthase [EC:4.2.3.212] +K27203 DS; dolasta-1(15),8-diene / delta-araneosene synthase [EC:4.2.3.214 4.2.3.215] +K27204 stsC; somaliensene A/B synthase [EC:4.2.3.216 4.2.3.217] +K27205 VS; variediene synthase [EC:4.2.3.218] +K27206 SNORD10; small nucleolar RNA SNORD10 +K27207 SNORD20, U20; small nucleolar RNA SNORD20 +K27208 SNORD73, U73; small nucleolar RNA SNORD73 +K27209 SS; stellata-2,6,19-triene synthase [EC:4.2.3.178] +K27210 SNORD37, U37; small nucleolar RNA SNORD37 +K27211 SNORD66; small nucleolar RNA SNORD66 +K27212 SNORD67; small nucleolar RNA SNORD67 +K27213 SNORD68; small nucleolar RNA SNORD68 +K27214 SNORD69; small nucleolar RNA SNORD69 +K27215 SNORD70; small nucleolar RNA SNORD70 +K27216 SNORD71; small nucleolar RNA SNORD71 +K27217 K27217; Kuttervirus endonuclease +K27218 K27218; Ackermannviridae endonuclease V N-glycosylase UV repair enzyme +K27219 K27219; Ackermannviridae exonuclease +K27220 K27220; Ackermannviridae exonuclease +K27221 K27221; Kuttervirus GIY-YIG homing endonuclease +K27222 K27222; Ackermannviridae HNH endonuclease +K27223 K27223; Salmonella phage HNH endonuclease +K27224 K27224; Ackermannviridae HNH endonuclease +K27225 K27225; Salmonella phage homing endonuclease +K27226 K27226; Salmonella phage homing endonuclease +K27227 K27227; Ackermannviridae homing endonuclease +K27228 K27228; Ackermannviridae homing endonuclease +K27229 K27229; Ackermannviridae homing endonuclease +K27230 K27230; Ackermannviridae homing endonuclease +K27231 K27231; Salmonella phage homing endonuclease +K27232 K27232; Ackermannviridae homing endonuclease +K27233 K27233; Salmonella phage homing endonuclease +K27234 K27234; Ackermannviridae homing endonuclease +K27235 K27235; Ackermannviridae homing endonuclease +K27236 K27236; Salmonella phage homing endonuclease +K27237 CWO; transcription factor CWO +K27238 BDBT; bride of doubletime +K27239 CIPC; CLOCK-interacting protein circadian +K27240 CIPC; CLOCK-interacting pacemaker +K27241 ZNF219; zinc finger protein 219 +K27242 ZNF536; zinc finger protein 536 +K27243 csqR; DeoR family transcriptional regulator, sulfoquinovose operon repressor +K27244 TMEM260; dolichyl-phosphate-mannose-protein mannosyltransferase [EC:2.4.1.109] +K27245 sleB; peptidoglycan lytic transglycosylase [EC:4.2.2.29] +K27246 NHP6; non-histone chromosomal protein 6 +K27247 K27247; MFS transporter, DHA2 family, triacylglyceride efflux pump +K27248 K27248; Ackermannviridae homing endonuclease +K27249 K27249; Ackermannviridae homing endonuclease with GIY-YIG motif +K27250 K27250; Ackermannviridae recombination endonuclease subunit +K27251 K27251; Ascovirus DNA repair exonuclease +K27252 K27252; Heliothis virescens ascovirus nuclease-VHS inhibit celluar gene expression +K27253 K27253; Ascovirus putative S1/P1 nuclease +K27254 K27254; Erwinia phage DNA endonuclease-like protein +K27255 K27255; Autographiviridae DNA polymerase exonuclease subunit +K27256 K27256; Autographiviridae DNA polymerase exonuclease subunit +K27257 K27257; Pradovirus DNA polymerase exonuclease subunit +K27258 WLS; protein wntless +K27259 pocR; AraC family transcriptional regulator, pdu and cob operon regulator +K27260 pduA; bacterial microcompartment shell protein +K27261 pduF; propanediol uptake facilitator +K27262 BOD1L1; biorientation of chromosomes in cell division protein 1-like 1 +K27263 pduB; bacterial microcompartment shell protein +K27264 pduG; propanediol dehydratase-reactivating factor large subunit +K27265 pduH; propanediol dehydratase-reactivating factor small subunit +K27266 pduJ; bacterial microcompartment shell protein +K27267 pduK; bacterial microcompartment shell protein +K27268 pduM; bacterial microcompartment assembly protein +K27269 pduN; bacterial microcompartment shell vertex protein +K27270 pduO; corrinoid adenosyltransferase [EC:2.5.1.-] +K27271 pduS; cobalamin reductase +K27272 pduT; bacterial microcompartment shell protein +K27273 BOD1; biorientation of chromosomes in cell division protein 1 +K27274 GTF2IRD1; general transcription factor II-I repeat domain-containing protein 1 +K27275 ZNF217; zinc finger protein 217 +K27276 GSE1; genetic suppressor element 1 +K27277 SETD4; SET domain-containing protein 4 [EC:2.1.1.- 2.1.1.364] +K27278 K27278; Xanthomonas phage DNA polymerase exonuclease subunit +K27279 K27279; Pseudomonas phage DNA polymerase exonuclease subunit +K27280 K27280; Autographiviridae DNA repair exonuclease +K27281 K27281; Pectobacterium phage endonuclease +K27282 K27282; Autographiviridae endonuclease +K27283 K27283; Autographiviridae HNH endonuclease +K27284 K27284; Escherichia phage endonuclease +K27285 K27285; Autographiviridae endonuclease +K27286 K27286; Autographiviridae endonuclease VII +K27287 K27287; Autographiviridae endonuclease VII +K27288 ACBD4_5; acyl-CoA-binding domain-containing protein 4/5 +K27289 MIGA, FAM73; mitoguardin +K27290 MRP10; small subunit ribosomal protein MRP10 +K27291 MJE; methyl jasmonate esterase [EC:3.1.1.-] +K27292 avaA6; 3-aminoavenalumate diazotase [EC:6.7.1.2] +K27293 K27293; Autographiviridae exonuclease +K27294 K27294; Autographiviridae exonuclease +K27295 K27295; Pseudomonas phage exonuclease +K27296 K27296; Vibrio phage exonuclease +K27297 K27297; Autographiviridae exonuclease +K27298 K27298; Autographiviridae exonuclease +K27299 K27299; Autographiviridae exonuclease +K27300 K27300; Autographiviridae exonuclease +K27301 K27301; Pectobacterium phage exonuclease +K27302 K27302; Erwinia phage exonuclease +K27303 K27303; Autographiviridae exonuclease +K27304 SOBP; sine oculis-binding protein +K27305 aprG, curF; polyketide synthase / 4-carboxy-3-alkylbut-2-enoyl-[acp] decarboxylase [EC:4.1.1.125] +K27306 cmrA; mycolic acid reductase +K27307 tmaT; acetyltransferase [EC:2.3.1.-] +K27308 tdmh; trehalose dimycolate hydrolase +K27309 TMEM59; transmembrane protein 59 +K27310 TMEM41; transmembrane protein 41 +K27311 dcrB; inner membrane lipoprotein DcrB +K27312 TEPSIN; AP-4 complex accessory subunit Tepsin +K27313 FBXO48; F-box protein 48 +K27314 SNE, SLY2; F-box protein SNE +K27315 MPZL1; myelin protein zero-like protein 1 +K27316 MPZL2; myelin protein zero-like protein 2 +K27317 MPZL3; myelin protein zero-like protein 3 +K27318 MTARC; mitochondrial amidoxime-reducing component [EC:1.7.-.-] +K27319 STMP1; short transmembrane mitochondrial protein 1 +K27320 MSTO1, MST; protein misato +K27321 K27321; Autographiviridae HNH endonuclease +K27322 K27322; Autographiviridae HNH endonuclease +K27323 K27323; Autographiviridae HNH endonuclease +K27324 K27324; Escherichia phage HNH endonuclease +K27325 K27325; Yersinia phage homing endonuclease +K27326 K27326; Autographiviridae HNH endonuclease +K27327 K27327; Autographiviridae HNH endonuclease +K27328 K27328; Acinetobacter phage HNH endonuclease +K27329 K27329; Autographiviridae HNH endonuclease +K27330 K27330; Autographiviridae HNH endonuclease +K27331 K27331; Yersinia phage HNH endonuclease +K27332 K27332; Pectobacterium phage HNH endonuclease +K27333 K27333; Autographiviridae HNH endonuclease +K27334 K27334; Pectobacterium phage HNH endonuclease +K27335 K27335; Acinetobacter phage HNH endonuclease +K27336 K27336; Pectobacterium phage HNH family homing endonuclease +K27337 K27337; Acinetobacter phage putative DNA exonuclease +K27338 K27338; Autographiviridae putative HNH endonuclease +K27339 UQCC4; ubiquinol-cytochrome c reductase complex assembly factor 4 +K27340 UQCC5, SMIM4; ubiquinol-cytochrome c reductase complex assembly factor 5 +K27341 UQCC6; ubiquinol-cytochrome c reductase complex assembly factor 6 +K27342 TMEM223; transmembrane protein 223 +K27343 tmcAL; tRNA(Met) cytidine acetate ligase [EC:6.3.4.-] +K27344 ldmS; L-aspartate-L-methionine ligase [EC:6.3.2.-] +K27345 PRND, PrPLP, DPL; prion like protein doppel +K27346 SPRN, SHO; shadow of prion protein +K27347 SPAAR, SPAR; small regulatory polypeptide of amino acid response +K27348 CES-2; transcription factor Ces-2 +K27349 RKM2; ribosomal lysine N-methyltransferase 2 [EC:2.1.1.-] +K27350 P19; uterocalin +K27351 GCD1; small ribosomal subunit protein mS75 +K27352 LATH; latherin +K27353 IFNT; interferon tau +K27354 BEND5; BEN domain-containing protein 5 +K27355 NEMP, TMEM194; nuclear envelope integral membrane protein +K27356 PPP1R13L; RelA-associated inhibitor +K27357 tfH; cutinase [EC:3.1.1.74] +K27358 cut1_2_4_7; cutinase-like protein [EC:3.1.1.-] +K27359 cut3, tdmh; trehalose dimycolate hydrolase +K27360 cut6; phospholipase A/thioesterase [EC:3.1.1.-] +K27361 K27361; Betabaculovirus alkaline exonuclease +K27362 K27362; Aeromonas phage 3'-5' exoribonuclease +K27363 K27363; Ruegeria phage DNA repair exonuclease +K27364 K27364; Casjensviridae endonuclease +K27365 K27365; Ruegeria phage endonuclease +K27366 K27366; Ruegeria phage exonuclease +K27367 K27367; Xylella phage exonuclease +K27368 K27368; Casjensviridae exonuclease +K27369 K27369; Casjensviridae exonuclease recombination-associated +K27370 K27370; Lavrentievavirus exonuclease recombination-associated +K27371 K27371; Aeromonas phage exonuclease recombination-associated +K27372 K27372; Chaseviridae 5'-3' exonuclease +K27373 K27373; Chaseviridae HNH endonuclease +K27374 T5p150; Demerecviridae putative endonuclease [EC:3.1.-.-] +K27375 K27375; Vibrio phage exodeoxyribonuclease VIII +K27376 D15; Demerecviridae flap endonuclease [EC:3.1.11.- 3.1.11.3] +K27377 K27377; Tequintavirus HNH endonuclease +K27378 K27378; Salmonella phage HNH endonuclease +K27379 K27379; Demerecviridae HNH endonuclease +K27380 K27380; Demerecviridae HNH endonuclease +K27381 XIRP; xin actin-binding repeat-containing protein +K27382 CKM; creatine kinase M-type [EC:2.7.3.2] +K27383 NCE101, NCE1; non-classical export protein 1 +K27384 NCE102, NCE2; non-classical export protein 2 +K27385 SUR7; SUR7 family protein +K27386 EIS1; eisosome protein 1 +K27387 SEG; eisosome protein SEG +K27388 PIL1, LSP1; sphingolipid long chain base-responsive protein PIL1/LSP1 +K27389 RDS2, ERT1, GSM1; transcription activator of gluconeogenesis +K27390 HCFC2; host cell factor 2 +K27391 ZNFX1; NFX1-type zinc finger-containing protein 1 +K27392 FLNB; filamin-B +K27393 FLNC; filamin-C +K27394 ENO4; enolase 4 [EC:4.2.1.11] +K27395 PRX; periaxin +K27396 SMG; protein Smaug +K27397 PHF14; PHD finger protein 14 +K27398 CWC2; pre-mRNA-splicing factor CWC2 +K27399 K27399; Demerecviridae HNH endonuclease +K27400 K27400; Demerecviridae HNH endonuclease +K27401 K27401; Vibrio phage HNH endonuclease +K27402 K27402; Demerecviridae HNH homing endonuclease +K27403 K27403; Demerecviridae homing endonuclease +K27404 K27404; Demerecviridae homing endonuclease +K27405 K27405; Epseptimavirus homing endonuclease +K27406 K27406; Vibrio phage putative exodeoxyribonuclease +K27407 VTS1; RNA-binding protein VTS1 +K27408 SPTA; spectrin alpha, erythrocytic +K27409 SPTB; spectrin beta, erythrocytic +K27410 CCDC32; coiled-coil domain-containing protein 32 +K27411 PHAF1; phagosome assembly factor 1 +K27412 PARPBP; PCNA-interacting partner +K27413 ASK1_3_5; shaggy-related protein kinase [EC:2.7.11.1] +K27414 ASK2_8; shaggy-related protein kinase [EC:2.7.11.1] +K27415 ABP; auxin-binding protein +K27416 U70; Roseolovirus alkaline exonuclease +K27417 K27417; Demerecviridae putative HNH endonuclease +K27418 K27418; Demerecviridae HNH homing endonuclease +K27419 K27419; Epseptimavirus putative HNH homing endonuclease +K27420 K27420; Demerecviridae putative homing endonuclease +K27421 ORF142, T5p149; Demerecviridae nicking endonuclease [EC:3.1.21.-] +K27422 D12; Demerecviridae probable exonuclease subunit 1 [EC:3.1.11.-] +K27423 D13; Demerecviridae probable exonuclease subunit 2 [EC:3.1.11.-] +K27424 K27424; Drexlerviridae DNA repair exonuclease +K27425 K27425; Drexlerviridae exonuclease VIII +K27426 K27426; Escherichia phage HNH endonuclease +K27427 K27427; Escherichia phage HNH endonuclease +K27428 K27428; Drexlerviridae HNH endonuclease +K27429 K27429; Tunavirus HNH endonuclease +K27430 gp02; Rogunavirus HNH endonuclease +K27431 K27431; Fuselloviridae nuclease +K27432 K27432; Hafunaviridae ERCC4-type nuclease +K27433 K27433; Haloferacalesvirus exonuclease +K27434 K27434; Haloferacalesvirus HNH endonuclease +K27435 K27435; Hafunaviridae HNH endonuclease +K27436 K27436; Hafunaviridae PD-(D/E)XK nuclease +K27437 K27437; Staphylococcus phage endonuclease +K27438 K27438; Bacillus phage endonuclease +K27439 K27439; Kayvirus endonuclease +K27440 K27440; Bacillus phage endonuclease +K27441 K27441; Staphylococcus phage endonuclease +K27442 K27442; Bacillus phage exonuclease +K27443 K27443; Herelleviridae exonuclease +K27444 K27444; Bacillus phage exonuclease II +K27445 K27445; Herelleviridae exonuclease +K27446 K27446; Wphvirus HNH endonuclease +K27447 K27447; Staphylococcus phage HNH endonuclease +K27448 IRF2BP2; interferon regulatory factor 2-binding protein 2 +K27449 PRY; PTPN13-like protein, Y-linked +K27450 K27450; Bacillus phage HNH endonuclease +K27451 K27451; Staphylococcus phage HNH endonuclease +K27452 K27452; Bacillus phage HNH endonuclease +K27453 K27453; Staphylococcus phage HNH endonuclease +K27454 K27454; Lactobacillus phage HNH endonuclease +K27455 K27455; Staphylococcus phage HNH endonuclease +K27456 K27456; Staphylococcus phage HNH endonuclease +K27457 K27457; Bacillus phage HNH endonuclease +K27458 K27458; Staphylococcus phage HNH endonuclease +K27459 K27459; Bacillus phage HNH endonuclease +K27460 K27460; Enterococcus phage HNH endonuclease +K27461 K27461; Staphylococcus phage HNH endonuclease +K27462 K27462; Staphylococcus phage homing endonuclease with GIY-YIG motif +K27463 K27463; Staphylococcus phage intron encoded nuclease +K27464 K27464; Bacillus phage ParB-like partition nuclease +K27465 K27465; Staphylococcus phage recombination exonuclease +K27466 K27466; Enterococcus phage recombination exonuclease +K27467 K27467; Listeria phage recombination exonuclease +K27468 K27468; Bacillus phage recombination exonuclease +K27469 K27469; Orthoherpesviridae alkaline exonuclease +K27470 PAIP2; polyadenylate-binding protein-interacting protein 2 +K27471 MED32; mediator of RNA polymerase II transcription subunit 32 +K27472 MED33; mediator of RNA polymerase II transcription subunit 33 +K27473 PHF13; PHD finger protein 13 +K27474 MISP; mitotic interactor and substrate of PLK1 +K27475 khk; ketohexokinase [EC:2.7.1.3] +K27476 PHF23; PHD finger protein 23 +K27477 GREB1; growth regulating estrogen receptor binding 1 +K27478 GREB1L; GREB1-like protein +K27479 UL12; Varicellovirus deoxyribonuclease +K27480 K27480; Mardivirus deoxyribonuclease +K27481 K27481; Cytomegalovirus deoxyribonuclease +K27482 K27482; Varicellovirus deoxyribonuclease +K27483 K27483; Jahgtovirus DNA endonuclease +K27484 K27484; Jahgtovirus recombination endonuclease +K27485 K27485; Chloriridovirus 5'-3' exoribonuclease 1 +K27486 K27486; Chloriridovirus flap endonuclease 1-A +K27487 K27487; Lymphocystis disease virus putative XPG/RAD2-type nuclease +K27488 TMEM43; transmembrane protein 43 +K27489 fbsK; N-hydroxyputrescine acetyltransferase [EC:2.3.1.316] +K27490 ambP3; hapalindole G dimethylallyltransferase [EC:2.5.1.159] +K27491 ENSA, ARPP19; endosulfine family protein +K27492 cdhB; betainyl-CoA thioesterase [EC:3.1.2.33] +K27493 exoMA2; D-arabinan exo beta-(1,2)-arabinofuranosidase (non-reducing end) [EC:3.2.1.224] +K27494 exoMA1; D-arabinan exo alpha-(1,3)/(1,5)-arabinofuranosidase (non-reducing end) [EC:3.2.1.225] +K27495 endoMA; D-arabinan endo alpha-(1,5)-arabinofuranosidase [EC:3.2.1.226] +K27496 FLII; flightless I actin remodeling protein +K27497 K27497; carnitine 3-dehydrogenase / betainyl-CoA thioesterase [EC:1.1.1.108 3.1.2.33] +K27498 FOCAD; focadhesin +K27499 chcB2; cis-4-hydroxycyclohexanecarboxylate dehydrogenase [EC:1.1.1.438] +K27500 chcC1; 4-oxocyclohexanecarboxylate 2-dehydrogenase [EC:1.17.3.5] +K27501 alcA, pubA, fbsI; putrescine N-hydroxylase [EC:1.14.13.252] +K27502 capadh; carboxyaminopropylagmatine dehydrogenase [EC:1.5.1.55] +K27503 CYP725A22; taxane 9alpha-hydroxylase [EC:1.14.14.185] +K27504 LOG2; E3 ubiquitin-protein ligase LOG2 [EC:2.3.2.27] +K27505 SAMBA; protein SAMBA +K27506 K27506; Chloriridovirus ribonuclease III +K27507 K27507; Ranavirus ribonuclease III +K27508 K27508; Kyanoviridae DNA endonuclease V +K27509 K27509; Synechococcus phage DNA endonuclease V +K27510 K27510; Kyanoviridae endonuclease +K27511 K27511; Kyanoviridae endonuclease VII +K27512 K27512; Kyanoviridae exonuclease +K27513 K27513; Kyanoviridae HNH endonuclease +K27514 K27514; Kyanoviridae HNH endonuclease +K27515 K27515; Synechococcus phage HNH endonuclease +K27516 K27516; Kyanoviridae NAD synthetase +K27517 K27517; Kyanoviridae restriction endonuclease II +K27518 K27518; Kyanoviridae ribonuclease H +K27519 K27519; Kyanoviridae SbcC-like subunit of palindrome specific endonuclease +K27520 K27520; Marseillevirus homing endonuclease +K27521 K27521; Marseillevirus putative DNA repair exonuclease +K27522 K27522; Marseillevirus putative endonuclease 4 +K27523 K27523; Marseillevirus putative flap endonuclease +K27524 K27524; Marseillevirus putative nuclease +K27525 K27525; Marseillevirus putative nuclease +K27526 K27526; Marseillevirus putative ribonuclease III +K27527 K27527; Marseillevirus putative Vsr/MutH/archaeal HJR family endonuclease +K27528 K27528; Marseilleviridae restriction endonuclease +K27529 K27529; Marseillevirus XRN1 5'-3' exoribonuclease +K27530 K27530; Pseudomonas phage exodeoxyribonuclease +K27531 K27531; Mesyanzhinovviridae exonuclease +K27532 K27532; Pseudomonas phage homing endonuclease +K27533 K27533; Mimiviridae putative UV-damage endonuclease +K27534 K27534; Mimiviridae putative endonuclease 4 +K27535 K27535; Microbacterium phage HNH endonuclease +K27536 SARM1, SAMD2; NAD(+) hydrolase SARM1 [EC:3.2.2.6] +K27537 PCD1; 2-hydroxy-dATP diphosphatase / coenzyme A diphosphatase [EC:3.6.1.55 3.6.1.77] +K27538 PES; diacylglycerol/phytol O-acyltransferase [EC:2.3.1.20 2.3.1.314] +K27539 K27539; diacylglycerol/phytol O-acyltransferase [EC:2.3.1.20 2.3.1.314] +K27540 E2.3.1.315; succinyl-CoA:cyclohexane-1-carboxylate CoA transferase [EC:2.3.1.315] +K27541 ZFX_Y; zinc finger X/Y-chromosomal protein +K27542 argZ; arginine dihydrolase [EC:3.5.3.27] +K27543 argM; L-arginine:2-oxoglutarate/L-aspartate:5-guanidino-3-methyl-2-oxopentanoate transaminase [EC:2.6.1.125 2.6.1.126] +K27544 UBCL1; salsolinol synthase [EC:3.5.99.12] +K27545 argZ; arginine dihydrolase [EC:3.5.3.27] +K27546 K27546; Peduoviridae DNA polymerase exonuclease subunit +K27547 K27547; Yersinia phage exonuclease +K27548 K27548; Yersinia phage terminase, endonuclease subunit +K27549 K27549; Prasinovirus endonuclease +K27550 K27550; Prasinovirus endonuclease VII +K27551 K27551; Prasinovirus exonuclease +K27552 K27552; Chlorovirus exonuclease +K27553 K27553; Chlorovirus GIY-YIG catalytic domain-containing endonuclease +K27554 K27554; Chlorovirus GIY-YIG catalytic domain-containing endonuclease +K27555 K27555; Paramecium bursaria Chlorella virus GIY-YIG catalytic domain-containing endonuclease +K27556 K27556; Chlorovirus HNH endonuclease +K27557 K27557; Chlorovirus homing endonuclease +K27558 K27558; Phycodnaviridae ribonuclease III +K27559 K27559; Poxviridae FEN1-like nuclease (Cop-G5R) +K27560 K27560; Enterococcus phage HNH endonuclease +K27561 K27561; Bacillus phage HNH endonuclease +K27562 K27562; Schitoviridae DNA repair exonuclease +K27563 K27563; Pectobacterium phage endonuclease +K27564 K27564; Schitoviridae exonuclease +K27565 K27565; Pseudomonas phage HNH endonuclease +K27566 GAPVD1; GTPase-activating protein and VPS9 domain-containing protein 1 +K27567 GRIPAP1; GRIP1-associated protein 1 +K27568 BLZF1; golgin-45 +K27569 EVA1; protein eva-1 +K27570 DAP; death-associated protein 1 +K27571 SAMD7; sterile alpha motif domain-containing protein 7 +K27572 K27572; Schitoviridae HNH endonuclease +K27573 K27573; Gamaleyavirus HNH endonuclease +K27574 K27574; Schitoviridae HNH endonuclease +K27575 K27575; Vibrio phage HNH endonuclease +K27576 K27576; Schitoviridae HNH endonuclease +K27577 K27577; Steigviridae PD-(D/E)XK superfamily exonuclease +K27578 K27578; Steigviridae putative HKD family nuclease +K27579 K27579; Straboviridae anti-restriction nuclease +K27580 K27580; Straboviridae anti-restriction nuclease +K27581 K27581; Schitoviridae HNH endonuclease +K27582 SAMD11; sterile alpha motif domain-containing protein 11 +K27583 CENPV; centromere protein V +K27584 K27584; Straboviridae anti-restriction nuclease +K27585 K27585; Straboviridae DenB-like DNA endonuclease IV +K27586 K27586; Tequatrovirus DNA endonuclease +K27587 JPT, HN; microtubule-associated protein Jupiter +K27588 RHBDF; inactive rhomboid protein +K27589 PSY1R; tyrosine-sulfated glycopeptide receptor 1 [EC:2.7.11.1] +K27590 PSYR; tyrosine-sulfated glycopeptide receptor +K27591 PSY; tyrosine-sulfated glycopeptide +K27592 evdC; L-evernosamine nitrososynthase [EC:1.14.13.187] +K27593 asuE1; protoasukamycin 4-monooxygenase [EC:1.14.13.215] +K27594 asuE2; NADH-dependent FMN reductase [EC:1.5.1.-] +K27595 CYP260A1; C-19 steroid 1alpha-hydroxylase [EC:1.14.15.19] +K27596 accA2; acyl-CoA carboxylase subunit alpha [EC:6.4.1.-] +K27597 K27597; 1,2-diacylglycerol 3-alpha-glucosyltransferase/glucuronosyltransferase [EC:2.4.1.337 2.4.1.-] +K27598 VAN; vanillin synthease [EC:4.1.2.65] +K27599 DES; etheroleic acid synthase [EC:4.2.1.183] +K27600 CYP74M3; etheroleic acid synthase [EC:4.2.1.183] +K27601 kdcA; branched-chain-2-oxoacid decarboxylase [EC:4.1.1.72] +K27602 PT4; geranyl-pyrophosphate---olivetolic acid geranyltransferase [EC:2.5.1.102] +K27603 pycC; uridylate cyclase [EC:4.6.1.26] +K27604 pycC; cytidylate cyclase [EC:4.6.1.6] +K27605 RBL; rhomboid-like protein, plant [EC:3.4.21.105] +K27606 K27606; hexaprenyl diphosphate synthase / talaropentaene synthase [EC:2.5.1.158 4.2.3.220] +K27607 K27607; hexaprenyl diphosphate synthase / macrophomene synthase [EC:2.5.1.158 4.2.3.221] +K27608 PS; phomopsene synthease [EC:4.2.3.222] +K27609 E4.2.3.222; phomopsene synthease [EC:4.2.3.222] +K27610 bds; bonnadiene synthase [EC:4.2.3.223] +K27611 sboA; subtilosin-A +K27612 albA; antilisterial bacteriocin subtilosin biosynthesis protein AlbA +K27613 albB; antilisterial bacteriocin subtilosin biosynthesis protein AlbB +K27614 albC; antilisterial bacteriocin subtilosin biosynthesis transport system ATP-binding protein +K27615 albD; antilisterial bacteriocin subtilosin biosynthesis transport system permease protein +K27616 albE; antilisterial bacteriocin subtilosin biosynthesis protein AlbE +K27617 albF; putative zinc protease AlbF +K27618 albG; antilisterial bacteriocin subtilosin biosynthesis protein AlbG +K27619 E4.2.3.225; cattleyene synthease [EC:4.2.3.225] +K27620 TPS13; (Z)-beta-ocimene synthase [EC:4.2.3.228] +K27621 PRSS41; serine protease 41 +K27622 PRSS42_43_44; serine protease 42/43/44 +K27623 PRSS48; serine protease 48 [EC:3.4.21.-] +K27624 PKHD1L1; fibrocystin-L +K27625 PSKR1; phytosulfokine receptor 1 [EC:2.7.11.1 4.6.1.2] +K27626 PSKR2; phytosulfokine receptor 2 [EC:2.7.11.1] +K27627 PSK; phytosulfokine +K27628 PUB12_13; U-box domain-containing protein 12/13 [EC:2.3.2.27] +K27629 CNGC17; cyclic nucleotide gated channel 17 +K27630 K27630; Aeromonas phage DNA polymerase exonuclease subunit +K27631 K27631; Aeromonas phage endonuclease +K27632 K27632; Straboviridae endonuclease +K27633 K27633; Straboviridae endonuclease +K27634 K27634; Straboviridae endonuclease +K27635 K27635; Aeromonas phage endonuclease +K27636 CPS-KS; ent-copalyl diphosphate/ent-kaurene/ent-beyerene synthase [EC:5.5.1.13 4.2.3.19 4.2.3.229] +K27637 KSL2; ent-beyerene synthase [EC:4.2.3.229] +K27638 K27638; Vibrio phage endonuclease V N-glycosylase UV repair enzyme +K27639 K27639; Straboviridae endonuclease V N-glycosylase UV repair enzyme +K27640 K27640; Pseudotevenvirus endonuclease V N-glycosylase UV repair enzyme +K27641 K27641; Proteus phage endoribonuclease +K27642 K27642; Krischvirus endoribonuclease +K27643 K27643; Straboviridae endoribonuclease +K27644 K27644; Straboviridae exonuclease +K27645 K27645; Krischvirus HNH endonuclease +K27646 K27646; Straboviridae HNH endonuclease +K27647 K27647; Tequatrovirus HNH endonuclease +K27648 K27648; Straboviridae HNH endonuclease +K27649 K27649; Vibrio phage HNH endonuclease +K27650 K27650; Straboviridae HNH endonuclease +K27651 K27651; Acinetobacter phage HNH endonuclease +K27652 K27652; Escherichia phage homing endonuclease +K27653 K27653; Acinetobacter phage homing endonuclease +K27654 K27654; Straboviridae homing endonuclease +K27655 segB; Straboviridae putative endonuclease SegB [EC:3.1.-.-] +K27656 K27656; Straboviridae homing endonuclease +K27657 K27657; Straboviridae homing endonuclease +K27658 segD; Straboviridae putative endonuclease SegD [EC:3.1.-.-] +K27659 K27659; Straboviridae homing endonuclease +K27660 K27660; Straboviridae putative endonuclease +K27661 K27661; Straboviridae homing endonuclease +K27662 PNX; homeobox protein Pnx +K27663 K27663; Straboviridae homing endonuclease +K27664 K27664; Straboviridae homing endonuclease +K27665 K27665; Straboviridae homing endonuclease +K27666 gp69; Straboviridae DNA replication protein +K27667 K27667; Tequatrovirus homing endonuclease +K27668 K27668; Straboviridae homing endonuclease +K27669 K27669; Tequatrovirus homing endonuclease +K27670 K27670; Straboviridae homing endonuclease +K27671 K27671; Straboviridae homing endonuclease +K27672 ChcAa; cyclohexane-1-carboxylate hydroxylase +K27673 chcB1; trans-4-hydroxycyclohexanecarboxylate dehydrogenase [EC:1.1.1.226] +K27674 chcC2; 4-oxocyclohex-2-ene-1-carboxylate desaturase +K27675 redI; 4-hydroxy-2,2'-bipyrrole-5-carbaldehyde O-methyltransferase [EC:2.1.1.-] +K27676 MATCAP1, TMCP1; tubulin metallocarboxypeptidase 1 [EC:3.4.17.17] +K27677 MATCAP2, TMCP2; tubulin metallocarboxypeptidase 2 [EC:3.4.17.-] +K27678 ENKD1; enkurin domain-containing protein 1 +K27679 DEPP1; protein DEPP1 +K27680 segE; Straboviridae putative endonuclease SegE [EC:3.1.-.-] +K27681 pgsA; phosphatidylinositol phosphate synthase [EC:2.7.8.-] +K27682 CYP38; peptidylprolyl isomerase (cyclophilin 38) [EC:5.2.1.8] +K27683 apauh; N1-aminopropylagmatine ureohydrolase [EC:3.5.3.24] +K27684 capadc; carboxyaminopropylagmatine decarboxylase [EC:4.1.1.127] +K27685 GLTP; glycolipid transfer protein +K27686 DL1; phragmoplastin DRP1 [EC:3.6.5.-] +K27687 NOL7; U3 small nucleolar RNA-associated protein NOL7 +K27688 MDFIC; MyoD family inhibitor domain-containing protein +K27689 hadAB; meromycolic acid (3R)-3-hydroxyacyl-[acyl-carrier protein] dehydratase HadAB [EC:4.2.1.-] +K27690 VTC1; vacuolar transporter chaperone complex subunit 1 +K27691 VTC2_3; vacuolar transporter chaperone complex subunit 2/3 +K27692 VTC4; vacuolar transporter chaperone complex subunit 4 [EC:2.7.4.1] +K27693 NDRG2; protein NDRG2 +K27694 NDRG3; protein NDRG3 +K27695 NDRG4; protein NDRG4 +K27696 NDL; protein NDL +K27697 DMTN; dematin +K27698 FILIP1; filamin-A-interacting protein 1 +K27699 HAPSTR1; HUWE1-associated protein modifying stress responses 1 +K27700 HAPSTR2; HUWE1-associated protein modifying stress responses 2 +K27701 MAX2; F-box protein MAX2 +K27702 SPIN; spindlin +K27703 SPINDOC; spindlin interactor and repressor of chromatin-binding protein +K27704 MTCL; microtubule cross-linking factor +K27705 DRG2, RBG2; developmentally-regulated GTP-binding protein 2 [EC:3.6.5.-] +K27706 ZC3H15, TMA46; zinc finger CCCH domain-containing protein 15 +K27707 CRS1; chloroplastic group IIA intron splicing facilitator CRS1, chloroplastic +K27708 CFM; CRM-domain containing factor CFM, chloroplastic +K27709 CAF1; CRS2-associated factor 1, chloroplastic +K27710 CAF2; CRS2-associated factor 2, chloroplastic +K27711 CRS2; chloroplastic group IIB intron splicing facilitator CRS2, chloroplastic +K27712 CCDC146; coiled-coil domain-containing protein 146 +K27713 K27713; Straboviridae homing endonuclease +K27714 K27714; Straboviridae homing endonuclease +K27715 K27715; Straboviridae homing endonuclease +K27716 K27716; Tequatrovirus homing endonuclease +K27717 K27717; Tequatrovirus homing endonuclease +K27718 K27718; Tequatrovirus homing endonuclease +K27719 K27719; Proteus phage homing endonuclease +K27720 K27720; Acinetobacter phage homing endonuclease +K27721 K27721; Straboviridae intron-like DNA endonuclease +K27722 K27722; Aeromonas phage nuclease +K27723 K27723; Acinetobacter phage putative endonuclease subunit +K27724 K27724; Straboviridae homing endonuclease +K27725 K27725; Acinetobacter phage putative Seg-like homing endonuclease +K27726 K27726; Straboviridae SbcC-like subunit of palindrome specific endonuclease +K27727 K27727; Suoliviridae exonuclease +K27728 K27728; Buchavirus homing endonuclease with GIY-YIG motif +K27729 K27729; Mycobacterium phage DNA polymerase exonuclease subunit +K27730 K27730; Mycobacterium phage DNA polymerase exonuclease subunit +K27731 K27731; Mycobacterium phage exonuclease +K27732 K27732; Mycobacterium phage exonuclease +K27733 K27733; Mycobacterium phage HNH endonuclease +K27734 K27734; Mycobacterium phage HNH endonuclease +K27735 K27735; Mycobacterium phage HNH endonuclease +K27736 K27736; Reyvirus HNH endonuclease +K27737 K27737; Vilmaviridae nuclease +K27738 K27738; Zierdtviridae exonuclease +K27739 K27739; Zierdtviridae HNH endonuclease +K27740 AFB2_3; protein auxin signaling F-box 2/3 +K27741 GRH1, AFB1; GRR1-like protein 1 +K27751 ACBD6; acyl-CoA-binding domain-containing protein 6 diff --git a/data/pathway.tsv b/metax/data/pathway.tsv similarity index 100% rename from data/pathway.tsv rename to metax/data/pathway.tsv diff --git a/__init__.py b/metax/database_builder/__init__.py similarity index 100% rename from __init__.py rename to metax/database_builder/__init__.py diff --git a/utils/DatabaseBuilderMAG.py b/metax/database_builder/database_builder_mag.py similarity index 100% rename from utils/DatabaseBuilderMAG.py rename to metax/database_builder/database_builder_mag.py diff --git a/utils/DatabaseBuilderOwn.py b/metax/database_builder/database_builder_own.py similarity index 100% rename from utils/DatabaseBuilderOwn.py rename to metax/database_builder/database_builder_own.py diff --git a/src/__init__.py b/metax/database_updater/__init__.py similarity index 100% rename from src/__init__.py rename to metax/database_updater/__init__.py diff --git a/utils/DatabaseUpdater.py b/metax/database_updater/database_updater.py similarity index 100% rename from utils/DatabaseUpdater.py rename to metax/database_updater/database_updater.py diff --git a/utils/AnalyzerUtils/__init__.py b/metax/gui/__init__.py similarity index 100% rename from utils/AnalyzerUtils/__init__.py rename to metax/gui/__init__.py diff --git a/utils/GUI.py b/metax/gui/main_gui.py similarity index 95% rename from utils/GUI.py rename to metax/gui/main_gui.py index 77a1dfc..af7db82 100644 --- a/utils/GUI.py +++ b/metax/gui/main_gui.py @@ -29,55 +29,8 @@ import datetime from collections import OrderedDict import re -####### add parent path to sys.path ####### -myDir = os.getcwd() -sys.path.append(myDir) - -from pathlib import Path -path = Path(myDir) -a=str(path.parent.absolute()) - -sys.path.append(a) -####### add parent path to sys.path ####### - -# import Version -from MetaX.utils.version import __version__ - - -# import core scripts of MetaX -from MetaX.utils.TaxaFuncAnalyzer import TaxaFuncAnalyzer - -# import utils scripts of MetaX -from MetaX.utils.metax_updater import Updater - -# import ploter -from MetaX.utils.TaxaFuncPloter.heatmap_plot import HeatmapPlot -from MetaX.utils.TaxaFuncPloter.basic_plot import BasicPlot -from MetaX.utils.TaxaFuncPloter.volcano_plot_js import VolcanoPlot -from MetaX.utils.TaxaFuncPloter.tukey_plot import TukeyPlot -from MetaX.utils.TaxaFuncPloter.bar_plot_js import BarPlot_js -from MetaX.utils.TaxaFuncPloter.sankey_plot import SankeyPlot -from MetaX.utils.TaxaFuncPloter.network_plot import NetworkPlot -from MetaX.utils.TaxaFuncPloter.trends_plot import TrendsPlot -from MetaX.utils.TaxaFuncPloter.trends_plot_js import TrendsPlot_js -from MetaX.utils.TaxaFuncPloter.pca_plot_js import PcaPlot_js -from MetaX.utils.TaxaFuncPloter.diversity_plot import DiversityPlot -from MetaX.utils.TaxaFuncPloter.sunburst_plot import SunburstPlot -from MetaX.utils.TaxaFuncPloter.treemap_plot import TreeMapPlot - -# import GUI scripts -from MetaX.utils.MetaX_GUI import Ui_MainWindow -from MetaX.utils.MetaX_GUI import webDialog -from MetaX.utils.MetaX_GUI.MatplotlibFigureCanvas import MatplotlibWidget -from MetaX.utils.MetaX_GUI.CheckableComboBox import CheckableComboBox -from MetaX.utils.MetaX_GUI.Ui_Table_view import Ui_Table_view -from MetaX.utils.MetaX_GUI.DrageLineEdit import FileDragDropLineEdit -from MetaX.utils.MetaX_GUI.ExtendedComboBox import ExtendedComboBox -# from MetaX.utils.MetaX_GUI.ShowPltDialog import PltDialog -from MetaX.utils.MetaX_GUI.ShowPlt import ExportablePlotDialog -from MetaX.utils.MetaX_GUI.InputWindow import InputWindow -from MetaX.utils.MetaX_GUI.UserAgreementDialog import UserAgreementDialog -from MetaX.utils.MetaX_GUI.Settings import SettingsWidget + + # import third-party modules import pandas as pd @@ -97,10 +50,101 @@ from qt_material import apply_stylesheet, list_themes, QtStyleTools from PyQt5.QtWidgets import QAction, QMenu +# if not run as script, import the necessary MetaX modules by absolute path +if __name__ == '__main__': + # Use absolute path to import the module + metax_dir = os.path.dirname(os.path.dirname(os.path.abspath(__file__))) + # set parent dir as the root dir + metax_dir = os.path.dirname(metax_dir) + print(metax_dir) + sys.path.append(metax_dir) + + from metax.utils.version import __version__ + from metax.taxafunc_analyzer.analyzer import TaxaFuncAnalyzer + from metax.utils.metax_updater import Updater + from metax.taxafunc_ploter.heatmap_plot import HeatmapPlot + from metax.taxafunc_ploter.basic_plot import BasicPlot + from metax.taxafunc_ploter.volcano_plot_js import VolcanoPlot + from metax.taxafunc_ploter.tukey_plot import TukeyPlot + from metax.taxafunc_ploter.bar_plot_js import BarPlot_js + from metax.taxafunc_ploter.sankey_plot import SankeyPlot + from metax.taxafunc_ploter.network_plot import NetworkPlot + from metax.taxafunc_ploter.trends_plot import TrendsPlot + from metax.taxafunc_ploter.trends_plot_js import TrendsPlot_js + from metax.taxafunc_ploter.pca_plot_js import PcaPlot_js + from metax.taxafunc_ploter.diversity_plot import DiversityPlot + from metax.taxafunc_ploter.sunburst_plot import SunburstPlot + from metax.taxafunc_ploter.treemap_plot import TreeMapPlot + + from metax.gui.metax_gui import ui_main_window + from metax.gui.metax_gui import web_dialog + from metax.gui.metax_gui.matplotlib_figure_canvas import MatplotlibWidget + from metax.gui.metax_gui.checkable_combo_box import CheckableComboBox + from metax.gui.metax_gui.ui_table_view import Ui_Table_view + from metax.gui.metax_gui.drag_line_edit import FileDragDropLineEdit + from metax.gui.metax_gui.extended_combo_box import ExtendedComboBox + from metax.gui.metax_gui.show_plt import ExportablePlotDialog + from metax.gui.metax_gui.input_window import InputWindow + from metax.gui.metax_gui.user_agreement_dialog import UserAgreementDialog + from metax.gui.metax_gui.settings_widget import SettingsWidget + from metax.gui.metax_gui.cmap_combo_box import CmapComboBox + from metax.gui.metax_gui.ui_lca_help import UiLcaHelpDialog + from metax.gui.metax_gui.ui_func_threshold_help import UifuncHelpDialog + from metax.gui.metax_gui.generic_thread import FunctionExecutor + + from metax.peptide_annotator.metalab2otf import MetaLab2OTF + from metax.peptide_annotator.peptable_annotator import PeptideAnnotator + + from metax.database_builder.database_builder_own import build_db + from metax.database_updater.database_updater import run_db_update + from metax.database_builder.database_builder_mag import download_and_build_database + + +else: + from ..utils.version import __version__ + from ..taxafunc_analyzer.analyzer import TaxaFuncAnalyzer + from ..utils.metax_updater import Updater + from ..taxafunc_ploter.heatmap_plot import HeatmapPlot + from ..taxafunc_ploter.basic_plot import BasicPlot + from ..taxafunc_ploter.volcano_plot_js import VolcanoPlot + from ..taxafunc_ploter.tukey_plot import TukeyPlot + from ..taxafunc_ploter.bar_plot_js import BarPlot_js + from ..taxafunc_ploter.sankey_plot import SankeyPlot + from ..taxafunc_ploter.network_plot import NetworkPlot + from ..taxafunc_ploter.trends_plot import TrendsPlot + from ..taxafunc_ploter.trends_plot_js import TrendsPlot_js + from ..taxafunc_ploter.pca_plot_js import PcaPlot_js + from ..taxafunc_ploter.diversity_plot import DiversityPlot + from ..taxafunc_ploter.sunburst_plot import SunburstPlot + from ..taxafunc_ploter.treemap_plot import TreeMapPlot + + from .metax_gui import ui_main_window + from .metax_gui import web_dialog + from .metax_gui.matplotlib_figure_canvas import MatplotlibWidget + from .metax_gui.checkable_combo_box import CheckableComboBox + from .metax_gui.ui_table_view import Ui_Table_view + from .metax_gui.drag_line_edit import FileDragDropLineEdit + from .metax_gui.extended_combo_box import ExtendedComboBox + from .metax_gui.show_plt import ExportablePlotDialog + from .metax_gui.input_window import InputWindow + from .metax_gui.user_agreement_dialog import UserAgreementDialog + from .metax_gui.settings_widget import SettingsWidget + from .metax_gui.cmap_combo_box import CmapComboBox + from .metax_gui.ui_lca_help import UiLcaHelpDialog + from .metax_gui.ui_func_threshold_help import UifuncHelpDialog + from .metax_gui.generic_thread import FunctionExecutor + + from ..peptide_annotator.metalab2otf import MetaLab2OTF + from ..peptide_annotator.peptable_annotator import PeptideAnnotator + + from ..database_builder.database_builder_own import build_db + from ..database_updater.database_updater import run_db_update + from ..database_builder.database_builder_mag import download_and_build_database + ############### Class MetaXGUI Begin ############### -class MetaXGUI(Ui_MainWindow.Ui_metaX_main,QtStyleTools): +class MetaXGUI(ui_main_window.Ui_metaX_main,QtStyleTools): def __init__(self, MainWindow): super().__init__() MainWindow.closeEvent = self.closeEvent @@ -240,6 +284,9 @@ def __init__(self, MainWindow): # set ComboBox eanble searchable self.make_related_comboboxes_searchable() + # update in condition combobox to multi checkable + self.update_in_condition_combobox() + # link double click event to list widget self.listWidget_table_list.itemDoubleClicked.connect(self.show_table_in_list) self.listWidget_tfnet_focus_list.itemDoubleClicked.connect(self.copy_to_clipboard) @@ -305,7 +352,7 @@ def __init__(self, MainWindow): # set change event self.checkBox_create_protein_table.stateChanged.connect(self.change_event_checkBox_create_protein_table) self.comboBox_method_of_protein_inference.currentIndexChanged.connect(self.update_method_of_protein_inference) - + self.comboBox_3dbar_sub_meta.currentIndexChanged.connect(self.change_event_comboBox_3dbar_sub_meta) ## Basic Stat self.pushButton_plot_pca_sns.clicked.connect(lambda: self.plot_basic_info_sns('pca')) @@ -632,8 +679,14 @@ def change_event_comboBox_condition_group(comboBox, group_name): try: meta_name = comboBox.currentText() group_list = self.tfa.meta_df[meta_name].unique().tolist() - getattr(self, group_name).clear() + getattr(self, group_name).clear() # clear the comboBox list getattr(self, group_name).addItems(group_list) + try: + getattr(self, group_name).unselectAll() # unselect all items + # select 1st item + getattr(self, group_name).select_first() + except: + pass except Exception as e: print(e) @@ -647,7 +700,8 @@ def show_settings_window(self): if self.settings_dialog is None: self.settings_dialog = QDialog(self.MainWindow) self.settings_dialog.setWindowTitle("Settings") - self.settings_dialog.setModal(False) + self.settings_dialog.setModal(False) + self.settings_dialog.setWindowFlags(self.settings_dialog.windowFlags() | Qt.WindowMinimizeButtonHint | Qt.WindowMaximizeButtonHint) layout = QVBoxLayout(self.settings_dialog) self.settings_dialog.resize(900, 600) # General settings @@ -700,6 +754,19 @@ def on_protein_infer_method_changed(self, method): self.settings.setValue("protein_infer_greedy_mode", method) print(f"Protein infering razor mode changed to: {method}") + def change_event_comboBox_3dbar_sub_meta(self): + # when the sub_meta comboBox is not None, the mean plot is not available + if self.comboBox_3dbar_sub_meta.currentText() != 'None': + self.checkBox_basic_heatmap_plot_mean.setEnabled(False) + else: + self.checkBox_basic_heatmap_plot_mean.setEnabled(True) + + # if self.checkBox_basic_heatmap_plot_mean.isChecked(): + # self.comboBox_3dbar_sub_meta.setEnabled(False) + # else: + # self.comboBox_3dbar_sub_meta.setEnabled(True) + + ############### basic function End ############### @@ -1386,8 +1453,7 @@ def add_theme_to_combobox(self): from matplotlib import colormaps cmap_list = ['Auto'] + sorted(list(colormaps)) - # add right click menu for comboBox - from MetaX.utils.MetaX_GUI.CmapComboBox import CmapComboBox + cmap_combox_list = ['comboBox_basic_hetatmap_theme', 'comboBox_tflink_cmap', 'comboBox_top_heatmap_cmap'] for name in cmap_combox_list: old_combobox = getattr(self, name) @@ -1599,7 +1665,6 @@ def run_db_builder(self): try: # self.open_output_window(DBBuilderMAG, save_path, db_type, meta_path, mgyg_dir) - from MetaX.utils.DatabaseBuilderMAG import download_and_build_database parm_kwargs = {'save_path': save_path, 'db_type': db_type, 'meta_path': meta_path, 'mgyg_dir': mgyg_dir, 'db_name': db_name} self.run_in_new_window(download_and_build_database, show_msg=True, **parm_kwargs) @@ -1609,7 +1674,6 @@ def run_db_builder(self): def run_in_new_window(self, func, *args, show_msg=False, **kwargs): - from MetaX.utils.MetaX_GUI.GenericThread import FunctionExecutor # 定义 handle_finished 方法来处理执行完成后的逻辑 def handle_finished(result, success): @@ -1797,7 +1861,6 @@ def run_db_builder_own_table(self): self.logger.write_log(f'run_db_builder_own_table: anno_path:{anno_path} taxa_path:{taxa_path} save_path:{save_path}') # self.open_output_window(DBBuilderOwn, anno_path, taxa_path, save_path) - from MetaX.utils.DatabaseBuilderOwn import build_db parm_kwargs = {'anno_path': anno_path, 'taxa_path': taxa_path, 'db_path': save_path} self.run_in_new_window(build_db, show_msg=True,**parm_kwargs) @@ -1838,7 +1901,6 @@ def run_db_updater(self): try: self.logger.write_log(f'run_db_updater: update_type:{update_type} tsv_path:{tsv_path} old_db_path:{old_db_path} new_db_path:{new_db_path} built_in_db_name:{built_in_db_name}') # self.open_output_window(DBUpdater, update_type, tsv_path, old_db_path, new_db_path, built_in_db_name) - from MetaX.utils.DatabaseUpdater import run_db_update parm_kwargs = { 'update_type': update_type, 'tsv_path': tsv_path, 'old_db_path': old_db_path, 'new_db_path': new_db_path, @@ -1872,12 +1934,16 @@ def run_peptide2taxafunc(self): else: try: self.logger.write_log(f'run_peptide2taxafunc: db_path:{db_path} final_peptide_path:{final_peptide_path} peptide2taxafunc_outpath:{peptide2taxafunc_outpath} threshold:{threshold}') - # self.open_output_window(PeptideAnnotator, final_peptide_path, peptide2taxafunc_outpath, db_path, threshold)4 - from MetaX.utils.PeptableAnnotator import peptableAnnotate - parm_kwargs = {'final_peptides_path': final_peptide_path, 'output_path': peptide2taxafunc_outpath, - 'db_path': db_path, 'threshold': threshold} - self.run_in_new_window(peptableAnnotate,show_msg=True, **parm_kwargs) - + def peptide2taxafunc_main_wrapper(): + instance = PeptideAnnotator( + db_path=db_path, + peptide_path = final_peptide_path, + output_path = peptide2taxafunc_outpath, + threshold=threshold, + ) + return instance.run_annotate() + self.run_in_new_window(peptide2taxafunc_main_wrapper, show_msg=True) + except Exception as e: self.logger.write_log(f'run_peptide2taxafunc error: {e}', 'e') QMessageBox.warning(self.MainWindow, 'Warning', f'Error: {e}') @@ -1894,8 +1960,7 @@ def run_metalab_maxq_annotate(self): return None try: self.logger.write_log(f'run_metalab_maxq_annotate: pepTaxa_file:{pepTaxa_file} peptide_file:{peptide_file} functions_file:{functions_file} otf_save_path:{otf_save_path}') - - from MetaX.utils.metalab2otf import MetaLab2OTF + def metalab_main_wrapper(): instance = MetaLab2OTF(pepTaxa_file, peptide_file, functions_file, otf_save_path) return instance.main() @@ -2035,15 +2100,13 @@ def show_toolButton_final_peptide_help(self): def show_toolButton_lca_threshould_help(self): # QMessageBox.information(self.MainWindow, 'LCA Threshold Help', 'For each peptide, find the proportion of LCAs in the corresponding protein group with the largest number of taxonomic categories. The default is 1.00 (100%).') - from MetaX.utils.MetaX_GUI.Ui_LCA_help import MyDialog - lca_help = MyDialog(self.MainWindow) + lca_help = UiLcaHelpDialog(self.MainWindow) lca_help.exec_() def show_func_threshold_help(self): # QMessageBox.information(self.MainWindow, 'Function Threshold Help', 'The proportion threshold of the largest number of function in a protein group of a peptide, it will be considered a representative function of that peptide. The default is 1.00 (100%).') - from MetaX.utils.MetaX_GUI.Ui_func_threshold_help import MyDialog - lca_help = MyDialog(self.MainWindow) + lca_help = UifuncHelpDialog(self.MainWindow) lca_help.exec_() # database builder help @@ -2065,26 +2128,6 @@ def show_toolButton_db_update_table_help(self): #### Help info function End #### - - #### Deprecated Function #### - #### TaxaFuncAnalyzer Function #### - # def check_tables_for_taxaFuncAnalyzer(self, taxafunc_path, meta_path): - # try: - # taxafunc_table = pd.read_csv(taxafunc_path, sep='\t', index_col=0,header=0) - # meta_table = pd.read_csv(meta_path, sep='\t', index_col=0,header=0) - # taxafunc_column_names = taxafunc_table.columns.tolist() - # if 'Taxon_prop' not in taxafunc_column_names: - # QMessageBox.warning(self.MainWindow, 'Warning', 'TaxaFunc table looks like not correct, please check!') - # return False - # meta_column_names = meta_table.columns.tolist() - # if len(meta_column_names) < 1: - # print(meta_column_names) - # QMessageBox.warning(self.MainWindow, 'Warning', 'The meta table only has one column, please check!\n\nPlease make sure the first column is sample name and the following columns are meta information!\n\n And make sure the meta table is TSV format (table separated by tab)\n\nPlease check!') - # return False - # except Exception as e: - # QMessageBox.warning(self.MainWindow, 'Warning', 'Please check your Files!\n\n' + str(e)) - # return False - #### Deprecated Function #### def show_taxaFuncAnalyzer_init(self): original_row_num = self.tfa.original_row_num @@ -2649,7 +2692,60 @@ def update_basic_heatmap_combobox(self, type_list = 'taxa'): self.add_basic_heatmap_list() - + def update_in_condition_combobox(self): + ''' + Update condition_group comboBox to enable multi condition selection + ''' + combobox_layout_dict = { + self.horizontalLayout_68: 'comboBox_basic_condition_group', + self.horizontalLayout_67: 'comboBox_basic_heatmap_condition_group', + self.horizontalLayout_70: 'comboBox_ttest_condition_group', + self.horizontalLayout_71: 'comboBox_anova_condition_group', + self.horizontalLayout_72: 'comboBox_tukey_condition_group', + self.horizontalLayout_73: 'comboBox_group_control_condition_group', + self.horizontalLayout_74: 'comboBox_co_expression_condition_group', + self.horizontalLayout_75: 'comboBox_deseq2_condition_group', + self.horizontalLayout_76: 'comboBox_trends_condition_group', + self.horizontalLayout_77: 'comboBox_tflink_condition_group', + self.horizontalLayout_80: 'comboBox_tfnetwork_condition_group', + } + + for layout, combobox_name in combobox_layout_dict.items(): + try: + layout.itemAt(0).widget().deleteLater() + except Exception as e: + pass + new_combobox = CheckableComboBox() + setattr(self, combobox_name, new_combobox) + layout.addWidget(new_combobox) + # set as disabled + new_combobox.setEnabled(False) + + # reconnect the signal and slot + signnal_slot_dict = { + self.checkBox_basic_in_condtion: 'comboBox_basic_condition_group', + self.checkBox_basic_heatmap_in_condition: 'comboBox_basic_heatmap_condition_group', + self.checkBox_ttest_in_condition: 'comboBox_ttest_condition_group', + self.checkBox_anova_in_condition: 'comboBox_anova_condition_group', + self.checkBox_tukey_in_condition: 'comboBox_tukey_condition_group', + self.checkBox_group_control_in_condition: 'comboBox_group_control_condition_group', + self.checkBox_co_expression_in_condition: 'comboBox_co_expression_condition_group', + self.checkBox_deseq2_comparing_in_condition: 'comboBox_deseq2_condition_group', + self.checkBox_trends_in_condition: 'comboBox_trends_condition_group', + self.checkBox_tflink_in_condition: 'comboBox_tflink_condition_group', + self.checkBox_tfnetwork_in_condition: 'comboBox_tfnetwork_condition_group', + } + + # when checkBox is checked, enable the comboBox + def enable_combobox_by_checkbox(checkbox, combobox_name): + if checkbox.isChecked(): + getattr(self, combobox_name).setEnabled(True) + else: + getattr(self, combobox_name).setEnabled(False) + + for checkbox, combobox_name in signnal_slot_dict.items(): + checkbox.stateChanged.connect(lambda state, cb=checkbox, cmb_name=combobox_name: enable_combobox_by_checkbox(cb, cmb_name)) + def update_group_and_sample_combobox(self, meta_name = None, update_group_list = True, update_sample_list = True): if meta_name == None: @@ -2742,8 +2838,6 @@ def update_func_taxa_group_to_combobox(self): self.comboBox_others_taxa.addItem('') self.comboBox_others_taxa.addItems(self.taxa_list_linked) - - def update_combobox_and_label(self, current_text, type, label, comboBox): if not current_text: @@ -3176,7 +3270,7 @@ def add_basic_heatmap_top_list(self): top_num = self.spinBox_basic_heatmap_top_num.value() filtered = self.checkBox_basic_heatmap_top_filtered.isChecked() in_condition = ( - [self.comboBox_basic_heatmap_condition_meta.currentText(), self.comboBox_basic_heatmap_condition_group.currentText()] + [self.comboBox_basic_heatmap_condition_meta.currentText(), self.comboBox_basic_heatmap_condition_group.getCheckedItems()] if self.checkBox_basic_heatmap_in_condition.isChecked() else None ) # get sample list @@ -3201,7 +3295,6 @@ def add_all_searched_basic_heatmap_to_list(self,items): df_type = self.comboBox_basic_table.currentText() self.add_a_list_to_list_window(df_type, aim_list='basic_heatmap', str_list=items, input_mode = False) - def add_a_list_to_co_expr(self): df_type = self.comboBox_co_expr_table.currentText() @@ -3253,7 +3346,7 @@ def add_co_expr_top_list(self): if self.radioButton_co_expr_bygroup.isChecked(): # select by group group_list = self.comboBox_co_expr_group.getCheckedItems() in_condition = ( - [self.comboBox_co_expression_condition_meta.currentText(), self.comboBox_co_expression_condition_group.currentText()] + [self.comboBox_co_expression_condition_meta.currentText(), self.comboBox_co_expression_condition_group.getCheckedItems()] if self.checkBox_co_expression_in_condition.isChecked() else None ) sample_list = self.get_sample_list_for_group_list_in_condition(group_list, condition=in_condition) @@ -3294,7 +3387,7 @@ def plot_basic_list(self, plot_type='heatmap'): # get sample list if self.radioButton_basic_heatmap_group.isChecked(): condition = [self.comboBox_basic_heatmap_condition_meta.currentText(), - self.comboBox_basic_heatmap_condition_group.currentText()]\ + self.comboBox_basic_heatmap_condition_group.getCheckedItems()]\ if self.checkBox_basic_heatmap_in_condition.isChecked() else None group_list = self.comboBox_basic_group.getCheckedItems() @@ -3399,7 +3492,7 @@ def plot_basic_list(self, plot_type='heatmap'): scale=scale, row_cluster=row_cluster, col_cluster=col_cluster, cmap=cmap, rename_taxa=rename_taxa, font_size=font_size, show_all_labels=show_all_labels, rename_sample=rename_sample, - plot_mean = plot_mean) + plot_mean = plot_mean, sub_meta = self.comboBox_3dbar_sub_meta.currentText()) elif plot_type == 'bar': @@ -3549,7 +3642,7 @@ def add_trends_top_list(self): group_list = self.comboBox_trends_group.getCheckedItems() filtered = self.checkBox_trends_top_filtered.isChecked() in_condition = ( - [self.comboBox_trends_condition_meta.currentText(), self.comboBox_trends_condition_group.currentText()] + [self.comboBox_trends_condition_meta.currentText(), self.comboBox_trends_condition_group.getCheckedItems()] if self.checkBox_trends_in_condition.isChecked() else None ) @@ -3588,7 +3681,7 @@ def plot_trends_cluster(self): # get sample list and check if the sample list at least has 2 groups if self.radioButton_trends_group.isChecked(): condition = [self.comboBox_trends_condition_meta.currentText(), - self.comboBox_trends_condition_group.currentText()]\ + self.comboBox_trends_condition_group.getCheckedItems()]\ if self.checkBox_trends_in_condition.isChecked() else None group_list = self.comboBox_trends_group.getCheckedItems() @@ -3684,7 +3777,7 @@ def plot_trends_interactive_line(self): font_size = self.spinBox_trends_font_size.value() condition = [self.comboBox_trends_condition_meta.currentText(), - self.comboBox_trends_condition_group.currentText()]\ + self.comboBox_trends_condition_group.getCheckedItems()]\ if self.checkBox_trends_in_condition.isChecked() else None save_table_name = f'cluster({table_name.lower()})' @@ -3757,7 +3850,7 @@ def get_trends_cluster_table(self): save_table_name = f'cluster({table_name.lower()})' plot_samples = self.checkBox_trends_plot_interactive_plot_samples.isChecked() condition = [self.comboBox_trends_condition_meta.currentText(), - self.comboBox_trends_condition_group.currentText()]\ + self.comboBox_trends_condition_group.getCheckedItems()]\ if self.checkBox_trends_in_condition.isChecked() else None try: @@ -3813,7 +3906,7 @@ def save_and_show_js_plot(self, pic, title, width=None, height=None): pic.render(save_path) self.logger.write_log(f'html saved: {save_path}', 'i') - web = webDialog.WebDialog(save_path, None, theme=self.html_theme) + web = web_dialog.WebDialog(save_path, None, theme=self.html_theme) if title: web.setWindowTitle(title) @@ -3826,8 +3919,6 @@ def save_and_show_js_plot(self, pic, title, width=None, height=None): self.logger.write_log(f'save_and_show_js_plot error: {error_message}', 'e') QMessageBox.warning(self.MainWindow, 'Error', f'{error_message}') - - def peptide_query(self): if self.tfa.any_df_mode: @@ -3954,8 +4045,6 @@ def plot_taxa_number_new_window(self): peptide_num = self.spinBox_overview_tax_plot_new_window_peptide_num.value() self.show_message('Plotting taxa number...') BasicPlot(self.tfa).plot_taxa_number(peptide_num=peptide_num, theme=theme, res_type='show', font_size = font_size) - - def plot_peptide_num_in_func(self): @@ -3980,8 +4069,6 @@ def plot_peptide_num_in_func(self): self.mat_widget_plot_peptide_num_in_func = MatplotlibWidget(pic.get_figure()) self.verticalLayout_overview_func.addWidget(self.mat_widget_plot_peptide_num_in_func) - - def plot_basic_info_sns(self, method:str ='pca'): def get_title_by_table_name(self, table_name): @@ -4016,7 +4103,7 @@ def get_title_by_table_name(self, table_name): # get sample list when plot by group if self.radioButton_basic_pca_group.isChecked(): condition = [self.comboBox_basic_condition_meta.currentText(), - self.comboBox_basic_condition_group.currentText()] \ + self.comboBox_basic_condition_group.getCheckedItems()] \ if self.checkBox_basic_in_condtion.isChecked() else None group_list = self.comboBox_basic_pca_group.getCheckedItems() @@ -4370,7 +4457,7 @@ def anova_test(self): df_type = self.comboBox_table_for_anova.currentText().lower() condition = [self.comboBox_anova_condition_meta.currentText(), - self.comboBox_anova_condition_group.currentText()] \ + self.comboBox_anova_condition_group.getCheckedItems()] \ if self.checkBox_anova_in_condition.isChecked() else None group_list = self.comboBox_anova_group.getCheckedItems() @@ -4468,7 +4555,7 @@ def group_control_test(self, method:str = 'dunnett'): df_type = self.comboBox_table_for_dunnett.currentText().lower() condition = [self.comboBox_group_control_condition_meta.currentText(), - self.comboBox_group_control_condition_group.currentText()] \ + self.comboBox_group_control_condition_group.getCheckedItems()] \ if self.checkBox_group_control_in_condition.isChecked() else None all_condition_meta = self.comboBox_group_control_comparing_each_condition_meta.currentText() @@ -4576,7 +4663,7 @@ def tukey_test(self): func = self.remove_pep_num_str_and_strip(self.comboBox_tukey_func.currentText()) - condition = [self.comboBox_tukey_condition_meta.currentText(), self.comboBox_tukey_condition_group.currentText()] \ + condition = [self.comboBox_tukey_condition_meta.currentText(), self.comboBox_tukey_condition_group.getCheckedItems()] \ if self.checkBox_tukey_in_condition.isChecked() else None if taxa == '' and func == '': @@ -4620,7 +4707,7 @@ def t_test(self): group1 = self.comboBox_ttest_group1.currentText() group2 = self.comboBox_ttest_group2.currentText() df_type = self.comboBox_table_for_ttest.currentText().lower() - condition = [self.comboBox_ttest_condition_meta.currentText(), self.comboBox_ttest_condition_group.currentText()] \ + condition = [self.comboBox_ttest_condition_meta.currentText(), self.comboBox_ttest_condition_group.getCheckedItems()] \ if self.checkBox_ttest_in_condition.isChecked() else None if group1 is None or group2 is None: @@ -4720,11 +4807,12 @@ def deseq2_test(self): group1 = self.comboBox_deseq2_group1.currentText() group2 = self.comboBox_deseq2_group2.currentText() - + if self.checkBox_deseq2_comparing_in_condition.isChecked(): - condition = [self.comboBox_deseq2_condition_meta.currentText(), self.comboBox_deseq2_condition_group.currentText()] + condition = [self.comboBox_deseq2_condition_meta.currentText(), self.comboBox_deseq2_condition_group.getCheckedItems()] try: - self.tfa.check_if_condition_valid(condition_meta = condition[0], condition_group = condition[1], current_group_list = [group1, group2]) + for cond_group in condition[1]: + self.tfa.check_if_condition_valid(condition_meta = condition[0], condition_group = cond_group, current_group_list = [group1, group2]) except Exception as e: QMessageBox.warning(self.MainWindow, 'Warning', f'{e}') return None @@ -4846,7 +4934,7 @@ def plot_co_expr_network(self): # print(f'Plot with selected samples:{sample_list}') elif self.radioButton_co_expr_bygroup.isChecked(): condition = [self.comboBox_co_expression_condition_meta.currentText(), - self.comboBox_co_expression_condition_group.currentText()] \ + self.comboBox_co_expression_condition_group.getCheckedItems()] \ if self.checkBox_co_expression_in_condition.isChecked() else None @@ -4998,7 +5086,7 @@ def add_tfnet_top_list(self): else: # by group in_condition = ( - [self.comboBox_tfnetwork_condition_meta.currentText(), self.comboBox_tfnetwork_condition_group.currentText()] + [self.comboBox_tfnetwork_condition_meta.currentText(), self.comboBox_tfnetwork_condition_group.getCheckedItems()] if self.checkBox_tfnetwork_in_condition.isChecked() else None ) group_list = self.comboBox_network_group.getCheckedItems() @@ -5078,27 +5166,39 @@ def plot_network(self): rename_taxa = self.checkBox_tf_link_net_rename_taxa.isChecked() font_size = self.spinBox_network_font_size.value() - - if self.radioButton_network_bysample.isChecked(): + if self.radioButton_network_bysample.isChecked(): # by sample slected_list = self.comboBox_network_sample.getCheckedItems() - sample_list = slected_list + if slected_list: + sample_list = slected_list + else: + sample_list = self.tfa.sample_list + + else: # by group + in_condition = ( + [self.comboBox_tfnetwork_condition_meta.currentText(), self.comboBox_tfnetwork_condition_group.getCheckedItems()] + if self.checkBox_tfnetwork_in_condition.isChecked() else None + ) + group_list = self.comboBox_network_group.getCheckedItems() + sample_list = self.get_sample_list_for_group_list_in_condition(group_list, condition=in_condition) - # print(f'Plot with selected samples:{sample_list}') - elif self.radioButton_network_bygroup.isChecked(): - groups = self.comboBox_network_group.getCheckedItems() - sample_list = [] - for group in groups: - sample_list += self.tfa.get_sample_list_in_a_group(group) - # print(f'Plot with selected groups:{groups} and samples:{sample_list}') try: self.show_message('Plotting network...') - pic = NetworkPlot(self.tfa, - show_labels=show_labels, - rename_taxa=rename_taxa, - font_size=font_size, - theme=self.html_theme, - **self.tf_link_net_params_dict - ).plot_tflink_network(sample_list=sample_list, width=width, height=height, focus_list=focus_list,plot_list_only=plot_list_only) + list_only_no_link = self.checkBox_tf_link_net_plot_list_only_no_link.isChecked() + pic = NetworkPlot( + self.tfa, + show_labels=show_labels, + rename_taxa=rename_taxa, + font_size=font_size, + theme=self.html_theme, + **self.tf_link_net_params_dict, + ).plot_tflink_network( + sample_list=sample_list, + width=width, + height=height, + focus_list=focus_list, + plot_list_only=plot_list_only, + list_only_no_link=list_only_no_link, + ) self.save_and_show_js_plot(pic, 'taxa-func link Network') except Exception as e: error_message = traceback.format_exc() @@ -5143,7 +5243,7 @@ def get_sample_list_tflink(self): # get sample list if self.radioButton_tflink_group.isChecked(): # by group in_condition = ( - [self.comboBox_tflink_condition_meta.currentText(), self.comboBox_tflink_condition_group.currentText()] + [self.comboBox_tflink_condition_meta.currentText(), self.comboBox_tflink_condition_group.getCheckedItems()] if self.checkBox_tflink_in_condition.isChecked() else None ) group_list = self.comboBox_tflink_group.getCheckedItems() @@ -5474,7 +5574,5 @@ def runGUI(): sys.exit(app.exec_()) - -if __name__ == '__main__': - # QtCore.QCoreApplication.setAttribute(QtCore.Qt.AA_EnableHighDpiScaling) - runGUI() \ No newline at end of file +if __name__ == "__main__": + runGUI() diff --git a/utils/MetaX_GUI/__init__.py b/metax/gui/metax_gui/__init__.py similarity index 100% rename from utils/MetaX_GUI/__init__.py rename to metax/gui/metax_gui/__init__.py diff --git a/utils/MetaX_GUI/CheckableComboBox.py b/metax/gui/metax_gui/checkable_combo_box.py similarity index 96% rename from utils/MetaX_GUI/CheckableComboBox.py rename to metax/gui/metax_gui/checkable_combo_box.py index 4dd874f..ce42680 100644 --- a/utils/MetaX_GUI/CheckableComboBox.py +++ b/metax/gui/metax_gui/checkable_combo_box.py @@ -108,3 +108,8 @@ def unselectAll(self): item = self.model().item(i, 0) item.setCheckState(QtCore.Qt.Unchecked) self.checkedItemsOrder = [] # 清空勾选顺序列表 + + def select_first(self): + item = self.model().item(0, 0) + item.setCheckState(QtCore.Qt.Checked) + self.checkedItemsOrder.append(item.text()) \ No newline at end of file diff --git a/utils/MetaX_GUI/CmapComboBox.py b/metax/gui/metax_gui/cmap_combo_box.py similarity index 100% rename from utils/MetaX_GUI/CmapComboBox.py rename to metax/gui/metax_gui/cmap_combo_box.py diff --git a/utils/MetaX_GUI/DrageLineEdit.py b/metax/gui/metax_gui/drag_line_edit.py similarity index 100% rename from utils/MetaX_GUI/DrageLineEdit.py rename to metax/gui/metax_gui/drag_line_edit.py diff --git a/utils/MetaX_GUI/ExtendedComboBox.py b/metax/gui/metax_gui/extended_combo_box.py similarity index 100% rename from utils/MetaX_GUI/ExtendedComboBox.py rename to metax/gui/metax_gui/extended_combo_box.py diff --git a/utils/MetaX_GUI/GenericThread.py b/metax/gui/metax_gui/generic_thread.py similarity index 100% rename from utils/MetaX_GUI/GenericThread.py rename to metax/gui/metax_gui/generic_thread.py diff --git a/utils/MetaX_GUI/InputWindow.py b/metax/gui/metax_gui/input_window.py similarity index 100% rename from utils/MetaX_GUI/InputWindow.py rename to metax/gui/metax_gui/input_window.py diff --git a/utils/MetaX_GUI/MainWindow.ui b/metax/gui/metax_gui/main_window.ui similarity index 96% rename from utils/MetaX_GUI/MainWindow.ui rename to metax/gui/metax_gui/main_window.ui index 1323d1f..858f9df 100644 --- a/utils/MetaX_GUI/MainWindow.ui +++ b/metax/gui/metax_gui/main_window.ui @@ -46,7 +46,7 @@ Qt::LeftToRight - 2 + 6 @@ -239,8 +239,8 @@ 0 0 - 391 - 80 + 496 + 373 @@ -1320,7 +1320,7 @@ - 0 + 1 @@ -1329,8 +1329,34 @@ - - + + + + + + In Condition + + + + + + + false + + + + + + + + + false + + + + + + @@ -1408,6 +1434,16 @@ + + + + + + + Samples + + + @@ -1418,38 +1454,6 @@ - - - - Samples - - - - - - - - - In Condition - - - - - - - false - - - - - - - false - - - - - @@ -2201,260 +2205,274 @@ Heatmap and Bar - - - - false - - - - 0 - 0 - - - - Add selected item to the drawing box - - - Add to List - - - - - + + - Select for plotting + Sample - - - - - - - - Qt::LeftToRight - - - - - - Theme - - - Qt::AlignLeading|Qt::AlignLeft|Qt::AlignVCenter - - - - - - - - 0 - 0 - - - - - - - - - 0 - 0 - - - - Scale - - - - - - - - 0 - 0 - - - - - row - - - - - column - - - - - None - - - - - - - - + + + + + + false + - + 0 0 - Plot Peptides + Get Table - + + + false + - + 0 0 - Show All Labels + Plot Sankey - - - - Plot Mean + + + + false - - - - - + 0 0 - Rename + Plot Bar - - - - - - Row Cluster - - - true - - - - - - - Col Cluster - - - true - - - - + + + + Sub Meta for Bar Plot + + - - + + + + false + - + 0 0 - - Only show the last level of name - - Taxa - - - true + Plot Heatmap - - + + - Sankey Title + Sub Meta - - - - - 0 - 0 - - - - X - - - - - - - Add group name to Sample names + + + + + + Qt::Vertical + + + + + + + + + + 0 + 0 + - Samples - - - true + In Condition - - - - Y + + + + false - - + + - + + + false + - + 0 0 - - Bar Lgd - - - true - - - - - - - Bar % - + + + + + + + List for Plotting + + + + + + + false + + + + 0 + 0 + + + + Add selected item to the drawing box + + + Add to List + + + + + + + + 0 + 0 + + + + + + + + + + + 0 + 0 + + + + Width + + + + + + + + 0 + 0 + + + + Height + + + + + + + + 0 + 0 + + + + Label Font Size + + + + + + + + + + + 1 + + + 200 + + + 16 + + + + + + + + 0 + 0 + + + + 1 + + + 200 + + + 9 + + + + + + + 1 + + + 999 + + + 10 + + + + + @@ -2573,226 +2591,300 @@ - - - - - 0 - 0 - - - - Plotting Parameter - - - - - - - false - - - - 0 - 0 - - - - Add conditionally filtered items to the drawing box - - - Add Top to List - - - - - + + - + + + false + - + 0 0 - Width + Drop Item - + + + false + - + 0 0 - Height + Clean List - + + + false + - + 0 0 - - Label Font Size + + Add a list to the drawing box, make sure there is one item per line. + + + Add a list - - - - - - false - + + + + + 0 + 0 + + + + Plotting Parameter + + + + + + + + + + + Qt::LeftToRight + + + + + + Theme + + + Qt::AlignLeading|Qt::AlignLeft|Qt::AlignVCenter + + + + + + + + 0 + 0 + + + + + + + + + 0 + 0 + + + + Scale + + + + + + + + 0 + 0 + + + + + row + + + + + column + + + + + None + + + + + + + + - + 0 0 - Get Table + Plot Peptides - - - false - + - + 0 0 - Plot Sankey + Show All Labels - - - - false - - - - 0 - 0 - - + + - Plot Heatmap + Plot Mean - - - - false - + + - + 0 0 - Plot Bar + Rename - - - - Sub Meta for Bar Plot - - + + + + + + Row Cluster + + + true + + + + + + + Col Cluster + + + true + + + + - - - - - - Qt::Vertical - - - - - - - - 0 - 0 - - - - - - - - - - false - + + - + 0 0 + + Only show the last level of name + - Drop Item + Taxa + + + true - - - - false + + + + Sankey Title + + + + - + 0 0 - Clean List + X - - - - false + + + + Add group name to Sample names - - - 0 - 0 - + + Samples - - Add a list to the drawing box, make sure there is one item per line. + + true + + + + - Add a list + Y + + + + + + + 0 + 0 + + + + Bar Lgd + + + true + + + + + + + Bar % + + + + + @@ -2805,56 +2897,46 @@ - - - - - - 1 - - - 200 - - - 16 - - - - - - - - 0 - 0 - - - - 1 - - - 200 - - - 9 - - - - - - - 1 - - - 999 - - - 10 - - - - + + + + Select for plotting + + + + + + + + 0 + 0 + + + + + + + + false + + + + 0 + 0 + + + + Add conditionally filtered items to the drawing box + + + Add Top to List + + + + + - + @@ -2920,73 +3002,6 @@ - - - - List for Plotting - - - - - - - Sample - - - - - - - - 0 - 0 - - - - - - - - - - - - - - - - - 0 - 0 - - - - In Condition - - - - - - - false - - - - - - - false - - - - 0 - 0 - - - - - - @@ -3043,7 +3058,7 @@ - 0 + 3 @@ -3199,11 +3214,15 @@ - - - false - - + + + + + false + + + + @@ -3318,11 +3337,15 @@ - - - false - - + + + + + false + + + + @@ -3513,11 +3536,15 @@ - - - false - - + + + + + false + + + + @@ -3659,11 +3686,15 @@ - - - false - - + + + + + false + + + + @@ -4275,7 +4306,7 @@ - 1 + 0 @@ -4734,11 +4765,15 @@ - - - false - - + + + + + false + + + + @@ -4795,11 +4830,21 @@ - - - false - - + + + + + false + + + + 0 + 0 + + + + + @@ -4944,9 +4989,6 @@ - - - @@ -5338,6 +5380,9 @@ + + + @@ -5555,9 +5600,6 @@ - - - @@ -5648,40 +5690,6 @@ - - - - - - Qt::LeftToRight - - - In Condition - - - - - - - false - - - - - - - false - - - - 0 - 0 - - - - - - @@ -5914,6 +5922,53 @@ + + + + + + + + + + 0 + 0 + + + + Qt::LeftToRight + + + In Condition + + + + + + + false + + + + + + + + + false + + + + 0 + 0 + + + + + + + + @@ -5938,78 +5993,7 @@ Taxa-Func Link - - - - - 0 - 0 - - - - Function - - - - - - - - 0 - 0 - - - - Taxa - - - - - - - false - - - - 0 - 0 - - - - Restore both lists to their original full items - - - Reset List - - - - - - - - 0 - 0 - - - - Linked Number: - - - - - - - - - 0 - 0 - - - - Sample - - - - + @@ -6181,43 +6165,20 @@ - - - - - - false - - - - 0 - 0 - - - - Plot Heatmap - - - - - - - false - - - - 0 - 0 - - - - Plot Bar - - - - + + + + + 0 + 0 + + + + Function + + - + @@ -6294,130 +6255,7 @@ - - - - 0 - 0 - - - - 1 - - - 999 - - - 10 - - - - - - - - 0 - 0 - - - - Qt::LeftToRight - - - Col Cluster - - - true - - - - - - - - 0 - 0 - - - - Row Cluster - - - true - - - - - - - - 0 - 0 - - - - Show Legend - - - true - - - - - - - - 0 - 0 - - - - Plot Mean - - - - - - - - - false - - - - 0 - 0 - - - - Show Linked Taxa Only - - - - - - - - 0 - 0 - - - - true - - - - - - - - - Filter Top - - - - - + 0 @@ -6428,7 +6266,7 @@ 1 - 99999 + 999 10 @@ -6436,132 +6274,73 @@ - + - + 0 0 + + Qt::LeftToRight + - By + Col Cluster - - Qt::AlignCenter + + true - - - - Total Intensity - - - - - Frequency in Samples - - - - - Number of links - - - - - ANOVA(p-value) - - - - - ANOVA(f-statistic) - - - - - T-TEST(p-value) - - - - - T-TEST(t-statistic) - - - - - Deseq2-up(p-value) - - - - - Deseq2-down(p-value) - - - - - Deseq2-up(log2FC) - - - - - Deseq2-down(log2FC) - - + + + + 0 + 0 + + + + Row Cluster + + + true + - + - + 0 0 - Filter with threshold + Show Legend + + + true - - - false - + - + 0 0 - - Filter items in the two lists by condition - - Filter + Plot Mean - - - - - 0 - 0 - - - - true - - - - - - - false - + + 0 @@ -6569,67 +6348,25 @@ - Get Intensity Matrix - - - - - - - Qt::Horizontal - - - - - - - - 0 - 0 - - - - Linked Number: - + Meta - - - - false - + + - + 0 0 - - Show Linked Func Only + + Qt::LeftToRight - - - - - - - - - - 0 - 0 - - - - Group - - - true - - - + + @@ -6660,100 +6397,95 @@ - - - false - - - - 0 - 0 - - - - - - + + + + + + + false + + + + 0 + 0 + + + + + + + - - - - - 0 - 0 - - - - Meta - - - - - - - - 0 - 0 - - - - Qt::LeftToRight - - - - - - - Qt::Horizontal - - - - - - - - Taxa-Func Network - - - - - - false - - - - 0 - 0 - - - - Plot Ntework - - - false - - - - - - - false - + + - + 0 0 - Clean List + Sample - - + + + + + + false + + + + 0 + 0 + + + + Get Intensity Matrix + + + + + + + false + + + + 0 + 0 + + + + Plot Heatmap + + + + + + + false + + + + 0 + 0 + + + + Plot Bar + + + + + + + 0 @@ -6761,28 +6493,12 @@ - Group - - - true - - - - - - - false - - - Add a list to the drawing box, make sure there is one item per line. - - - Add a list + Taxa - - + + 0 @@ -6790,29 +6506,26 @@ - Sample + Group + + + true - - + + - - - - 0 - 0 - - + - Select Top + Filter Top - + - + 0 0 @@ -6829,23 +6542,23 @@ - + - + 0 0 - Sort by + By - Qt::AlignRight|Qt::AlignTrailing|Qt::AlignVCenter + Qt::AlignCenter - + Total Intensity @@ -6904,7 +6617,7 @@ - + 0 @@ -6916,55 +6629,271 @@ + + + + false + + + + 0 + 0 + + + + Filter items in the two lists by condition + + + Filter + + + + + + + false + + + + 0 + 0 + + + + Restore both lists to their original full items + + + Reset List + + + + + + + + + + + + 0 + 0 + + + + Linked Number: - + + + + + + + false + + + + 0 + 0 + + + + Show Linked Taxa Only + + + + + + + + + + + + 0 + 0 + + + + Linked Number: - + + + + + + + false + + + + 0 + 0 + + + + Show Linked Func Only + + + - - + + + + + 0 + 0 + + + + true + + + + + + + + 0 + 0 + + + + true + + + + + + + + + + + + + Qt::Horizontal + + + + + + + Qt::Horizontal + + + + + + + + Taxa-Func Network + + + + + + false + + + + 0 + 0 + + + + Drop Item + + + + + false - Add selected item to the drawing box + Add conditionally filtered items to the drawing box - Add to Focus List + Add Top to List - - - - - - - false + + + + + 0 + 0 + + + + Sample + + + + + + + - + 0 0 - Drop Item + Group + + + true - - + + + + + + Show Labels + + + + + + + true + + + Raname Taxa + + + true + + + + + + + + + + + + false + - + 0 0 - Focus List + Clean List - - + + @@ -7009,7 +6938,7 @@ Meta - Qt::AlignCenter + Qt::AlignRight|Qt::AlignTrailing|Qt::AlignVCenter @@ -7018,8 +6947,110 @@ - - + + + + false + + + Add selected item to the drawing box + + + Add to Focus List + + + + + + + + + + 0 + 0 + + + + Width + + + + + + + + 0 + 0 + + + + 1 + + + 99 + + + 1 + + + 10 + + + 10 + + + + + + + + 0 + 0 + + + + Height + + + + + + + true + + + + 0 + 0 + + + + + 20 + 0 + + + + 1 + + + 99 + + + 1 + + + 8 + + + 10 + + + + + + + @@ -7041,80 +7072,61 @@ - - - false - - + + + + + false + + + + - - - - - - - Plot List Only - - - - - - - false - - - Add conditionally filtered items to the drawing box - - - Add Top to List - - - - - + + - + - Show Labels + Font Size - + true - - Raname Taxa + + 1 - - true + + 10 - - + + - + - + 0 0 - Width + Select Top - + - + 0 0 @@ -7123,21 +7135,15 @@ 1 - 99 - - - 1 + 99999 10 - - 10 - - + 0 @@ -7145,65 +7151,151 @@ - Height + Sort by + + + Qt::AlignRight|Qt::AlignTrailing|Qt::AlignVCenter - - - true - + + + + Total Intensity + + + + + Frequency in Samples + + + + + Number of links + + + + + ANOVA(p-value) + + + + + ANOVA(f-statistic) + + + + + T-TEST(p-value) + + + + + T-TEST(t-statistic) + + + + + Deseq2-up(p-value) + + + + + Deseq2-down(p-value) + + + + + Deseq2-up(log2FC) + + + + + Deseq2-down(log2FC) + + + + + + 0 0 - - - 20 - 0 - - - - 1 - - - 99 - - - 1 - - - 8 - - - 10 + + Filter with threshold - - + + + + false + + + + 0 + 0 + + + + Plot Ntework + + + false + + + + + + + + 0 + 0 + + + + Focus List + + + + + + + false + + + Add a list to the drawing box, make sure there is one item per line. + + + Add a list + + + + + - + - Font Size + Plot List Only - + - true + false - - 1 + + Without Links - - 10 + + false @@ -8164,12 +8256,12 @@ setEnabled(bool) - 137 - 149 + 59 + 107 - 242 - 151 + 65 + 107 @@ -8180,12 +8272,12 @@ setEnabled(bool) - 137 - 149 + 59 + 107 - 348 - 151 + 71 + 108 @@ -8196,12 +8288,12 @@ setEnabled(bool) - 139 - 132 + 615 + 153 - 139 - 132 + 787 + 155 @@ -8212,12 +8304,12 @@ setEnabled(bool) - 139 - 132 + 615 + 153 - 139 - 132 + 959 + 155 @@ -8228,11 +8320,11 @@ setEnabled(bool) - 52 + 55 105 - 58 + 64 105 @@ -8244,12 +8336,12 @@ setEnabled(bool) - 52 + 55 105 - 63 - 105 + 72 + 106 @@ -8260,12 +8352,12 @@ setEnabled(bool) - 137 - 114 + 184 + 149 - 137 - 114 + 259 + 151 @@ -8276,12 +8368,12 @@ setEnabled(bool) - 137 - 114 + 184 + 149 - 137 - 114 + 336 + 151 @@ -8292,12 +8384,12 @@ setEnabled(bool) - 147 - 114 + 161 + 136 - 159 - 114 + 277 + 152 @@ -8308,12 +8400,12 @@ setEnabled(bool) - 147 - 114 + 161 + 136 - 159 - 114 + 353 + 152 @@ -8344,8 +8436,8 @@ 102 - 120 - 102 + 119 + 103 @@ -8356,12 +8448,12 @@ setEnabled(bool) - 137 - 109 + 96 + 102 - 137 - 109 + 108 + 102 @@ -8372,12 +8464,12 @@ setEnabled(bool) - 137 - 109 + 96 + 102 - 137 - 109 + 119 + 103 @@ -8388,12 +8480,12 @@ setEnabled(bool) - 149 - 113 + 248 + 141 - 149 - 113 + 327 + 140 @@ -8404,12 +8496,12 @@ setEnabled(bool) - 149 - 113 + 248 + 141 - 149 - 113 + 405 + 140 @@ -8420,28 +8512,12 @@ setEnabled(bool) - 137 - 110 - - - 137 - 110 - - - - - checkBox_basic_in_condtion - clicked(bool) - comboBox_basic_condition_group - setEnabled(bool) - - - 137 - 110 + 84 + 108 - 137 - 110 + 96 + 108 @@ -8472,8 +8548,8 @@ 116 - 80 - 116 + 81 + 117 @@ -8484,12 +8560,12 @@ setEnabled(bool) - 96 - 102 + 539 + 166 - 108 - 102 + 734 + 168 @@ -8500,12 +8576,12 @@ setEnabled(bool) - 96 - 102 + 539 + 166 - 120 - 102 + 931 + 168 @@ -8516,12 +8592,12 @@ setEnabled(bool) - 137 - 116 + 111 + 114 - 137 - 116 + 119 + 114 @@ -8532,12 +8608,12 @@ setEnabled(bool) - 137 - 116 + 111 + 114 - 137 - 122 + 78 + 124 @@ -8548,12 +8624,60 @@ setEnabled(bool) - 137 - 116 + 111 + 114 - 137 - 116 + 85 + 114 + + + + + checkBox_basic_in_condtion + clicked(bool) + comboBox_basic_condition_group + setEnabled(bool) + + + 84 + 108 + + + 106 + 109 + + + + + checkBox_basic_heatmap_plot_mean + clicked(bool) + comboBox_3dbar_sub_meta + setDisabled(bool) + + + 924 + 350 + + + 969 + 397 + + + + + checkBox_tf_link_net_plot_list_only + clicked(bool) + checkBox_tf_link_net_plot_list_only_no_link + setEnabled(bool) + + + 834 + 339 + + + 932 + 340 diff --git a/utils/MetaX_GUI/MatplotlibFigureCanvas.py b/metax/gui/metax_gui/matplotlib_figure_canvas.py similarity index 100% rename from utils/MetaX_GUI/MatplotlibFigureCanvas.py rename to metax/gui/metax_gui/matplotlib_figure_canvas.py diff --git a/utils/MetaX_GUI/resources/FUNC_prop.png b/metax/gui/metax_gui/resources/FUNC_prop.png similarity index 100% rename from utils/MetaX_GUI/resources/FUNC_prop.png rename to metax/gui/metax_gui/resources/FUNC_prop.png diff --git a/utils/MetaX_GUI/resources/LCA_prop.png b/metax/gui/metax_gui/resources/LCA_prop.png similarity index 100% rename from utils/MetaX_GUI/resources/LCA_prop.png rename to metax/gui/metax_gui/resources/LCA_prop.png diff --git a/utils/MetaX_GUI/resources/NorthOmics_logo.png b/metax/gui/metax_gui/resources/NorthOmics_logo.png similarity index 100% rename from utils/MetaX_GUI/resources/NorthOmics_logo.png rename to metax/gui/metax_gui/resources/NorthOmics_logo.png diff --git a/utils/MetaX_GUI/resources/logo.png b/metax/gui/metax_gui/resources/logo.png similarity index 100% rename from utils/MetaX_GUI/resources/logo.png rename to metax/gui/metax_gui/resources/logo.png diff --git a/utils/MetaX_GUI/Setting.ui b/metax/gui/metax_gui/setting_window.ui similarity index 100% rename from utils/MetaX_GUI/Setting.ui rename to metax/gui/metax_gui/setting_window.ui diff --git a/utils/MetaX_GUI/Settings.py b/metax/gui/metax_gui/settings_widget.py similarity index 99% rename from utils/MetaX_GUI/Settings.py rename to metax/gui/metax_gui/settings_widget.py index 165970c..5cbe378 100644 --- a/utils/MetaX_GUI/Settings.py +++ b/metax/gui/metax_gui/settings_widget.py @@ -1,6 +1,6 @@ from PyQt5.QtWidgets import QWidget, QToolBox from PyQt5.QtCore import pyqtSignal -from .Ui_Setting import Ui_Settings +from .ui_setting_window import Ui_Settings class SettingsWidget(QWidget): update_mode_changed = pyqtSignal(str) diff --git a/utils/MetaX_GUI/ShowPlt.py b/metax/gui/metax_gui/show_plt.py similarity index 100% rename from utils/MetaX_GUI/ShowPlt.py rename to metax/gui/metax_gui/show_plt.py diff --git a/utils/MetaX_GUI/ShowPltDialog.py b/metax/gui/metax_gui/show_plt_dialog.py similarity index 100% rename from utils/MetaX_GUI/ShowPltDialog.py rename to metax/gui/metax_gui/show_plt_dialog.py diff --git a/utils/MetaX_GUI/Ui_func_threshold_help.py b/metax/gui/metax_gui/ui_func_threshold_help.py similarity index 96% rename from utils/MetaX_GUI/Ui_func_threshold_help.py rename to metax/gui/metax_gui/ui_func_threshold_help.py index e809506..38b61cb 100644 --- a/utils/MetaX_GUI/Ui_func_threshold_help.py +++ b/metax/gui/metax_gui/ui_func_threshold_help.py @@ -6,9 +6,9 @@ import os -class MyDialog(QDialog): +class UifuncHelpDialog(QDialog): def __init__(self, parent=None): - super(MyDialog, self).__init__(parent) + super(UifuncHelpDialog, self).__init__(parent) self.setWindowTitle('Function Threshold Help') self.setSizePolicy(QtWidgets.QSizePolicy.Expanding, QtWidgets.QSizePolicy.Expanding) self.resize(1400, 600) diff --git a/utils/MetaX_GUI/Ui_LCA_help.py b/metax/gui/metax_gui/ui_lca_help.py similarity index 96% rename from utils/MetaX_GUI/Ui_LCA_help.py rename to metax/gui/metax_gui/ui_lca_help.py index d0349d1..f4dd1c0 100644 --- a/utils/MetaX_GUI/Ui_LCA_help.py +++ b/metax/gui/metax_gui/ui_lca_help.py @@ -5,9 +5,9 @@ from PyQt5.QtCore import Qt import os -class MyDialog(QDialog): +class UiLcaHelpDialog(QDialog): def __init__(self, parent=None): - super(MyDialog, self).__init__(parent) + super(UiLcaHelpDialog, self).__init__(parent) self.setWindowTitle('LCA Threshold Help') self.setSizePolicy(QtWidgets.QSizePolicy.Expanding, QtWidgets.QSizePolicy.Expanding) self.resize(1400, 600) diff --git a/utils/MetaX_GUI/Ui_MainWindow.py b/metax/gui/metax_gui/ui_main_window.py similarity index 97% rename from utils/MetaX_GUI/Ui_MainWindow.py rename to metax/gui/metax_gui/ui_main_window.py index af9d508..b374d53 100644 --- a/utils/MetaX_GUI/Ui_MainWindow.py +++ b/metax/gui/metax_gui/ui_main_window.py @@ -1,6 +1,6 @@ # -*- coding: utf-8 -*- -# Form implementation generated from reading ui file 'c:\Users\max\OneDrive - University of Ottawa\code\TaxaFunc\MetaX\utils\MetaX_GUI\MainWindow.ui' +# Form implementation generated from reading ui file 'c:\Users\max\OneDrive - University of Ottawa\code\TaxaFunc\MetaX\metax\gui\metax_gui\main_window.ui' # # Created by: PyQt5 UI code generator 5.15.9 # @@ -145,7 +145,7 @@ def setupUi(self, metaX_main): self.toolBox_2.setMaximumSize(QtCore.QSize(1677, 16777215)) self.toolBox_2.setObjectName("toolBox_2") self.page_2 = QtWidgets.QWidget() - self.page_2.setGeometry(QtCore.QRect(0, 0, 391, 80)) + self.page_2.setGeometry(QtCore.QRect(0, 0, 496, 373)) self.page_2.setObjectName("page_2") self.gridLayout_27 = QtWidgets.QGridLayout(self.page_2) self.gridLayout_27.setObjectName("gridLayout_27") @@ -671,9 +671,23 @@ def setupUi(self, metaX_main): self.gridLayout_26.setObjectName("gridLayout_26") self.gridLayout_35 = QtWidgets.QGridLayout() self.gridLayout_35.setObjectName("gridLayout_35") - self.verticalLayout_basic_pca_group = QtWidgets.QVBoxLayout() - self.verticalLayout_basic_pca_group.setObjectName("verticalLayout_basic_pca_group") - self.gridLayout_35.addLayout(self.verticalLayout_basic_pca_group, 2, 2, 1, 2) + self.horizontalLayout_36 = QtWidgets.QHBoxLayout() + self.horizontalLayout_36.setObjectName("horizontalLayout_36") + self.checkBox_basic_in_condtion = QtWidgets.QCheckBox(self.tab_12) + self.checkBox_basic_in_condtion.setObjectName("checkBox_basic_in_condtion") + self.horizontalLayout_36.addWidget(self.checkBox_basic_in_condtion) + self.comboBox_basic_condition_meta = QtWidgets.QComboBox(self.tab_12) + self.comboBox_basic_condition_meta.setEnabled(False) + self.comboBox_basic_condition_meta.setObjectName("comboBox_basic_condition_meta") + self.horizontalLayout_36.addWidget(self.comboBox_basic_condition_meta) + self.horizontalLayout_68 = QtWidgets.QHBoxLayout() + self.horizontalLayout_68.setObjectName("horizontalLayout_68") + self.comboBox_basic_condition_group = QtWidgets.QComboBox(self.tab_12) + self.comboBox_basic_condition_group.setEnabled(False) + self.comboBox_basic_condition_group.setObjectName("comboBox_basic_condition_group") + self.horizontalLayout_68.addWidget(self.comboBox_basic_condition_group) + self.horizontalLayout_36.addLayout(self.horizontalLayout_68) + self.gridLayout_35.addLayout(self.horizontalLayout_36, 2, 1, 1, 1) self.horizontalLayout_35 = QtWidgets.QHBoxLayout() self.horizontalLayout_35.setObjectName("horizontalLayout_35") self.label_70 = QtWidgets.QLabel(self.tab_12) @@ -715,6 +729,12 @@ def setupUi(self, metaX_main): self.comboBox_basic_pca_meta.setObjectName("comboBox_basic_pca_meta") self.horizontalLayout_35.addWidget(self.comboBox_basic_pca_meta) self.gridLayout_35.addLayout(self.horizontalLayout_35, 0, 0, 1, 2) + self.verticalLayout_basic_pca_group = QtWidgets.QVBoxLayout() + self.verticalLayout_basic_pca_group.setObjectName("verticalLayout_basic_pca_group") + self.gridLayout_35.addLayout(self.verticalLayout_basic_pca_group, 2, 2, 1, 2) + self.radioButton_basic_pca_sample = QtWidgets.QRadioButton(self.tab_12) + self.radioButton_basic_pca_sample.setObjectName("radioButton_basic_pca_sample") + self.gridLayout_35.addWidget(self.radioButton_basic_pca_sample, 3, 0, 1, 1) self.line_7 = QtWidgets.QFrame(self.tab_12) self.line_7.setFrameShape(QtWidgets.QFrame.HLine) self.line_7.setFrameShadow(QtWidgets.QFrame.Sunken) @@ -723,23 +743,6 @@ def setupUi(self, metaX_main): self.verticalLayout_basic_pca_sample = QtWidgets.QVBoxLayout() self.verticalLayout_basic_pca_sample.setObjectName("verticalLayout_basic_pca_sample") self.gridLayout_35.addLayout(self.verticalLayout_basic_pca_sample, 3, 1, 1, 3) - self.radioButton_basic_pca_sample = QtWidgets.QRadioButton(self.tab_12) - self.radioButton_basic_pca_sample.setObjectName("radioButton_basic_pca_sample") - self.gridLayout_35.addWidget(self.radioButton_basic_pca_sample, 3, 0, 1, 1) - self.horizontalLayout_36 = QtWidgets.QHBoxLayout() - self.horizontalLayout_36.setObjectName("horizontalLayout_36") - self.checkBox_basic_in_condtion = QtWidgets.QCheckBox(self.tab_12) - self.checkBox_basic_in_condtion.setObjectName("checkBox_basic_in_condtion") - self.horizontalLayout_36.addWidget(self.checkBox_basic_in_condtion) - self.comboBox_basic_condition_meta = QtWidgets.QComboBox(self.tab_12) - self.comboBox_basic_condition_meta.setEnabled(False) - self.comboBox_basic_condition_meta.setObjectName("comboBox_basic_condition_meta") - self.horizontalLayout_36.addWidget(self.comboBox_basic_condition_meta) - self.comboBox_basic_condition_group = QtWidgets.QComboBox(self.tab_12) - self.comboBox_basic_condition_group.setEnabled(False) - self.comboBox_basic_condition_group.setObjectName("comboBox_basic_condition_group") - self.horizontalLayout_36.addWidget(self.comboBox_basic_condition_group) - self.gridLayout_35.addLayout(self.horizontalLayout_36, 2, 1, 1, 1) self.radioButton_basic_pca_group = QtWidgets.QRadioButton(self.tab_12) sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Fixed, QtWidgets.QSizePolicy.Fixed) sizePolicy.setHorizontalStretch(0) @@ -1100,6 +1103,92 @@ def setupUi(self, metaX_main): self.tab_13.setObjectName("tab_13") self.gridLayout_23 = QtWidgets.QGridLayout(self.tab_13) self.gridLayout_23.setObjectName("gridLayout_23") + self.radioButton_basic_heatmap_sample = QtWidgets.QRadioButton(self.tab_13) + self.radioButton_basic_heatmap_sample.setObjectName("radioButton_basic_heatmap_sample") + self.gridLayout_23.addWidget(self.radioButton_basic_heatmap_sample, 2, 0, 1, 1) + self.gridLayout_39 = QtWidgets.QGridLayout() + self.gridLayout_39.setObjectName("gridLayout_39") + self.pushButton_basic_heatmap_get_table = QtWidgets.QPushButton(self.tab_13) + self.pushButton_basic_heatmap_get_table.setEnabled(False) + sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Preferred, QtWidgets.QSizePolicy.Preferred) + sizePolicy.setHorizontalStretch(0) + sizePolicy.setVerticalStretch(0) + sizePolicy.setHeightForWidth(self.pushButton_basic_heatmap_get_table.sizePolicy().hasHeightForWidth()) + self.pushButton_basic_heatmap_get_table.setSizePolicy(sizePolicy) + self.pushButton_basic_heatmap_get_table.setObjectName("pushButton_basic_heatmap_get_table") + self.gridLayout_39.addWidget(self.pushButton_basic_heatmap_get_table, 2, 1, 1, 1) + self.pushButton_basic_heatmap_sankey_plot = QtWidgets.QPushButton(self.tab_13) + self.pushButton_basic_heatmap_sankey_plot.setEnabled(False) + sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Preferred, QtWidgets.QSizePolicy.Preferred) + sizePolicy.setHorizontalStretch(0) + sizePolicy.setVerticalStretch(0) + sizePolicy.setHeightForWidth(self.pushButton_basic_heatmap_sankey_plot.sizePolicy().hasHeightForWidth()) + self.pushButton_basic_heatmap_sankey_plot.setSizePolicy(sizePolicy) + self.pushButton_basic_heatmap_sankey_plot.setObjectName("pushButton_basic_heatmap_sankey_plot") + self.gridLayout_39.addWidget(self.pushButton_basic_heatmap_sankey_plot, 2, 0, 1, 1) + self.pushButton_basic_bar_plot = QtWidgets.QPushButton(self.tab_13) + self.pushButton_basic_bar_plot.setEnabled(False) + sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Preferred, QtWidgets.QSizePolicy.Preferred) + sizePolicy.setHorizontalStretch(0) + sizePolicy.setVerticalStretch(0) + sizePolicy.setHeightForWidth(self.pushButton_basic_bar_plot.sizePolicy().hasHeightForWidth()) + self.pushButton_basic_bar_plot.setSizePolicy(sizePolicy) + self.pushButton_basic_bar_plot.setObjectName("pushButton_basic_bar_plot") + self.gridLayout_39.addWidget(self.pushButton_basic_bar_plot, 1, 1, 1, 1) + self.comboBox_3dbar_sub_meta = QtWidgets.QComboBox(self.tab_13) + self.comboBox_3dbar_sub_meta.setObjectName("comboBox_3dbar_sub_meta") + self.gridLayout_39.addWidget(self.comboBox_3dbar_sub_meta, 0, 1, 1, 1) + self.pushButton_basic_heatmap_plot = QtWidgets.QPushButton(self.tab_13) + self.pushButton_basic_heatmap_plot.setEnabled(False) + sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Preferred, QtWidgets.QSizePolicy.Preferred) + sizePolicy.setHorizontalStretch(0) + sizePolicy.setVerticalStretch(0) + sizePolicy.setHeightForWidth(self.pushButton_basic_heatmap_plot.sizePolicy().hasHeightForWidth()) + self.pushButton_basic_heatmap_plot.setSizePolicy(sizePolicy) + self.pushButton_basic_heatmap_plot.setObjectName("pushButton_basic_heatmap_plot") + self.gridLayout_39.addWidget(self.pushButton_basic_heatmap_plot, 1, 0, 1, 1) + self.label_164 = QtWidgets.QLabel(self.tab_13) + self.label_164.setObjectName("label_164") + self.gridLayout_39.addWidget(self.label_164, 0, 0, 1, 1) + self.gridLayout_23.addLayout(self.gridLayout_39, 6, 9, 1, 1) + self.line_8 = QtWidgets.QFrame(self.tab_13) + self.line_8.setFrameShape(QtWidgets.QFrame.VLine) + self.line_8.setFrameShadow(QtWidgets.QFrame.Sunken) + self.line_8.setObjectName("line_8") + self.gridLayout_23.addWidget(self.line_8, 0, 6, 7, 1) + self.horizontalLayout_26 = QtWidgets.QHBoxLayout() + self.horizontalLayout_26.setObjectName("horizontalLayout_26") + self.checkBox_basic_heatmap_in_condition = QtWidgets.QCheckBox(self.tab_13) + sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Fixed, QtWidgets.QSizePolicy.Fixed) + sizePolicy.setHorizontalStretch(0) + sizePolicy.setVerticalStretch(0) + sizePolicy.setHeightForWidth(self.checkBox_basic_heatmap_in_condition.sizePolicy().hasHeightForWidth()) + self.checkBox_basic_heatmap_in_condition.setSizePolicy(sizePolicy) + self.checkBox_basic_heatmap_in_condition.setObjectName("checkBox_basic_heatmap_in_condition") + self.horizontalLayout_26.addWidget(self.checkBox_basic_heatmap_in_condition) + self.comboBox_basic_heatmap_condition_meta = QtWidgets.QComboBox(self.tab_13) + self.comboBox_basic_heatmap_condition_meta.setEnabled(False) + self.comboBox_basic_heatmap_condition_meta.setObjectName("comboBox_basic_heatmap_condition_meta") + self.horizontalLayout_26.addWidget(self.comboBox_basic_heatmap_condition_meta) + self.horizontalLayout_67 = QtWidgets.QHBoxLayout() + self.horizontalLayout_67.setObjectName("horizontalLayout_67") + self.comboBox_basic_heatmap_condition_group = QtWidgets.QComboBox(self.tab_13) + self.comboBox_basic_heatmap_condition_group.setEnabled(False) + sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Preferred, QtWidgets.QSizePolicy.Fixed) + sizePolicy.setHorizontalStretch(0) + sizePolicy.setVerticalStretch(0) + sizePolicy.setHeightForWidth(self.comboBox_basic_heatmap_condition_group.sizePolicy().hasHeightForWidth()) + self.comboBox_basic_heatmap_condition_group.setSizePolicy(sizePolicy) + self.comboBox_basic_heatmap_condition_group.setObjectName("comboBox_basic_heatmap_condition_group") + self.horizontalLayout_67.addWidget(self.comboBox_basic_heatmap_condition_group) + self.horizontalLayout_26.addLayout(self.horizontalLayout_67) + self.gridLayout_23.addLayout(self.horizontalLayout_26, 1, 1, 1, 2) + self.verticalLayout_basic_heatmap_sample = QtWidgets.QVBoxLayout() + self.verticalLayout_basic_heatmap_sample.setObjectName("verticalLayout_basic_heatmap_sample") + self.gridLayout_23.addLayout(self.verticalLayout_basic_heatmap_sample, 2, 1, 1, 5) + self.label_34 = QtWidgets.QLabel(self.tab_13) + self.label_34.setObjectName("label_34") + self.gridLayout_23.addWidget(self.label_34, 4, 0, 1, 1) self.pushButton_basic_heatmap_add = QtWidgets.QPushButton(self.tab_13) self.pushButton_basic_heatmap_add.setEnabled(False) sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Preferred, QtWidgets.QSizePolicy.Fixed) @@ -1109,141 +1198,80 @@ def setupUi(self, metaX_main): self.pushButton_basic_heatmap_add.setSizePolicy(sizePolicy) self.pushButton_basic_heatmap_add.setObjectName("pushButton_basic_heatmap_add") self.gridLayout_23.addWidget(self.pushButton_basic_heatmap_add, 3, 5, 1, 1) - self.label_32 = QtWidgets.QLabel(self.tab_13) - self.label_32.setObjectName("label_32") - self.gridLayout_23.addWidget(self.label_32, 3, 0, 1, 1) - self.gridLayout_41 = QtWidgets.QGridLayout() - self.gridLayout_41.setObjectName("gridLayout_41") - self.horizontalLayout_31 = QtWidgets.QHBoxLayout() - self.horizontalLayout_31.setObjectName("horizontalLayout_31") - self.label_13 = QtWidgets.QLabel(self.tab_13) - self.label_13.setLayoutDirection(QtCore.Qt.LeftToRight) - self.label_13.setLocale(QtCore.QLocale(QtCore.QLocale.Chinese, QtCore.QLocale.China)) - self.label_13.setAlignment(QtCore.Qt.AlignLeading|QtCore.Qt.AlignLeft|QtCore.Qt.AlignVCenter) - self.label_13.setObjectName("label_13") - self.horizontalLayout_31.addWidget(self.label_13) - self.comboBox_basic_hetatmap_theme = QtWidgets.QComboBox(self.tab_13) + self.comboBox_basic_heatmap_selection_list = QtWidgets.QComboBox(self.tab_13) sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Preferred, QtWidgets.QSizePolicy.Fixed) sizePolicy.setHorizontalStretch(0) sizePolicy.setVerticalStretch(0) - sizePolicy.setHeightForWidth(self.comboBox_basic_hetatmap_theme.sizePolicy().hasHeightForWidth()) - self.comboBox_basic_hetatmap_theme.setSizePolicy(sizePolicy) - self.comboBox_basic_hetatmap_theme.setObjectName("comboBox_basic_hetatmap_theme") - self.horizontalLayout_31.addWidget(self.comboBox_basic_hetatmap_theme) - self.label_31 = QtWidgets.QLabel(self.tab_13) - sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Fixed, QtWidgets.QSizePolicy.Fixed) + sizePolicy.setHeightForWidth(self.comboBox_basic_heatmap_selection_list.sizePolicy().hasHeightForWidth()) + self.comboBox_basic_heatmap_selection_list.setSizePolicy(sizePolicy) + self.comboBox_basic_heatmap_selection_list.setObjectName("comboBox_basic_heatmap_selection_list") + self.gridLayout_23.addWidget(self.comboBox_basic_heatmap_selection_list, 3, 1, 1, 4) + self.horizontalLayout_3 = QtWidgets.QHBoxLayout() + self.horizontalLayout_3.setObjectName("horizontalLayout_3") + self.label_35 = QtWidgets.QLabel(self.tab_13) + sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Preferred, QtWidgets.QSizePolicy.Fixed) sizePolicy.setHorizontalStretch(0) sizePolicy.setVerticalStretch(0) - sizePolicy.setHeightForWidth(self.label_31.sizePolicy().hasHeightForWidth()) - self.label_31.setSizePolicy(sizePolicy) - self.label_31.setObjectName("label_31") - self.horizontalLayout_31.addWidget(self.label_31) - self.comboBox_basic_hetatmap_scale = QtWidgets.QComboBox(self.tab_13) - sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Preferred, QtWidgets.QSizePolicy.Maximum) + sizePolicy.setHeightForWidth(self.label_35.sizePolicy().hasHeightForWidth()) + self.label_35.setSizePolicy(sizePolicy) + self.label_35.setObjectName("label_35") + self.horizontalLayout_3.addWidget(self.label_35) + self.label_33 = QtWidgets.QLabel(self.tab_13) + sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Preferred, QtWidgets.QSizePolicy.Preferred) sizePolicy.setHorizontalStretch(0) sizePolicy.setVerticalStretch(0) - sizePolicy.setHeightForWidth(self.comboBox_basic_hetatmap_scale.sizePolicy().hasHeightForWidth()) - self.comboBox_basic_hetatmap_scale.setSizePolicy(sizePolicy) - self.comboBox_basic_hetatmap_scale.setObjectName("comboBox_basic_hetatmap_scale") - self.comboBox_basic_hetatmap_scale.addItem("") - self.comboBox_basic_hetatmap_scale.addItem("") - self.comboBox_basic_hetatmap_scale.addItem("") - self.horizontalLayout_31.addWidget(self.comboBox_basic_hetatmap_scale) - self.gridLayout_41.addLayout(self.horizontalLayout_31, 1, 0, 1, 3) - self.checkBox_basic_heatmap_plot_peptide = QtWidgets.QCheckBox(self.tab_13) - sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Minimum, QtWidgets.QSizePolicy.Fixed) + sizePolicy.setHeightForWidth(self.label_33.sizePolicy().hasHeightForWidth()) + self.label_33.setSizePolicy(sizePolicy) + self.label_33.setObjectName("label_33") + self.horizontalLayout_3.addWidget(self.label_33) + self.label_108 = QtWidgets.QLabel(self.tab_13) + sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Preferred, QtWidgets.QSizePolicy.Preferred) sizePolicy.setHorizontalStretch(0) sizePolicy.setVerticalStretch(0) - sizePolicy.setHeightForWidth(self.checkBox_basic_heatmap_plot_peptide.sizePolicy().hasHeightForWidth()) - self.checkBox_basic_heatmap_plot_peptide.setSizePolicy(sizePolicy) - self.checkBox_basic_heatmap_plot_peptide.setObjectName("checkBox_basic_heatmap_plot_peptide") - self.gridLayout_41.addWidget(self.checkBox_basic_heatmap_plot_peptide, 4, 0, 1, 1) - self.label_130 = QtWidgets.QLabel(self.tab_13) + sizePolicy.setHeightForWidth(self.label_108.sizePolicy().hasHeightForWidth()) + self.label_108.setSizePolicy(sizePolicy) + self.label_108.setObjectName("label_108") + self.horizontalLayout_3.addWidget(self.label_108) + self.gridLayout_23.addLayout(self.horizontalLayout_3, 1, 9, 1, 1) + self.horizontalLayout_4 = QtWidgets.QHBoxLayout() + self.horizontalLayout_4.setObjectName("horizontalLayout_4") + self.spinBox_basic_heatmap_width = QtWidgets.QSpinBox(self.tab_13) + self.spinBox_basic_heatmap_width.setMinimum(1) + self.spinBox_basic_heatmap_width.setMaximum(200) + self.spinBox_basic_heatmap_width.setProperty("value", 16) + self.spinBox_basic_heatmap_width.setObjectName("spinBox_basic_heatmap_width") + self.horizontalLayout_4.addWidget(self.spinBox_basic_heatmap_width) + self.spinBox_basic_heatmap_height = QtWidgets.QSpinBox(self.tab_13) sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Preferred, QtWidgets.QSizePolicy.Fixed) sizePolicy.setHorizontalStretch(0) sizePolicy.setVerticalStretch(0) - sizePolicy.setHeightForWidth(self.label_130.sizePolicy().hasHeightForWidth()) - self.label_130.setSizePolicy(sizePolicy) - self.label_130.setObjectName("label_130") - self.gridLayout_41.addWidget(self.label_130, 2, 0, 1, 1) - self.checkBox_basic_heatmap_plot_mean = QtWidgets.QCheckBox(self.tab_13) - self.checkBox_basic_heatmap_plot_mean.setObjectName("checkBox_basic_heatmap_plot_mean") - self.gridLayout_41.addWidget(self.checkBox_basic_heatmap_plot_mean, 4, 1, 1, 2) - self.label_152 = QtWidgets.QLabel(self.tab_13) - sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Maximum, QtWidgets.QSizePolicy.Preferred) - sizePolicy.setHorizontalStretch(0) - sizePolicy.setVerticalStretch(0) - sizePolicy.setHeightForWidth(self.label_152.sizePolicy().hasHeightForWidth()) - self.label_152.setSizePolicy(sizePolicy) - self.label_152.setObjectName("label_152") - self.gridLayout_41.addWidget(self.label_152, 3, 0, 1, 1) - self.horizontalLayout_30 = QtWidgets.QHBoxLayout() - self.horizontalLayout_30.setObjectName("horizontalLayout_30") - self.checkBox_basic_hetatmap_row_cluster = QtWidgets.QCheckBox(self.tab_13) - self.checkBox_basic_hetatmap_row_cluster.setChecked(True) - self.checkBox_basic_hetatmap_row_cluster.setObjectName("checkBox_basic_hetatmap_row_cluster") - self.horizontalLayout_30.addWidget(self.checkBox_basic_hetatmap_row_cluster) - self.checkBox_basic_hetatmap_col_cluster = QtWidgets.QCheckBox(self.tab_13) - self.checkBox_basic_hetatmap_col_cluster.setChecked(True) - self.checkBox_basic_hetatmap_col_cluster.setObjectName("checkBox_basic_hetatmap_col_cluster") - self.horizontalLayout_30.addWidget(self.checkBox_basic_hetatmap_col_cluster) - self.gridLayout_41.addLayout(self.horizontalLayout_30, 0, 0, 1, 3) - self.checkBox_basic_hetatmap_rename_taxa = QtWidgets.QCheckBox(self.tab_13) - sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Minimum, QtWidgets.QSizePolicy.Preferred) + sizePolicy.setHeightForWidth(self.spinBox_basic_heatmap_height.sizePolicy().hasHeightForWidth()) + self.spinBox_basic_heatmap_height.setSizePolicy(sizePolicy) + self.spinBox_basic_heatmap_height.setMinimum(1) + self.spinBox_basic_heatmap_height.setMaximum(200) + self.spinBox_basic_heatmap_height.setProperty("value", 9) + self.spinBox_basic_heatmap_height.setObjectName("spinBox_basic_heatmap_height") + self.horizontalLayout_4.addWidget(self.spinBox_basic_heatmap_height) + self.spinBox_basic_heatmap_label_font_size = QtWidgets.QSpinBox(self.tab_13) + self.spinBox_basic_heatmap_label_font_size.setMinimum(1) + self.spinBox_basic_heatmap_label_font_size.setMaximum(999) + self.spinBox_basic_heatmap_label_font_size.setProperty("value", 10) + self.spinBox_basic_heatmap_label_font_size.setObjectName("spinBox_basic_heatmap_label_font_size") + self.horizontalLayout_4.addWidget(self.spinBox_basic_heatmap_label_font_size) + self.gridLayout_23.addLayout(self.horizontalLayout_4, 2, 9, 1, 1) + self.horizontalLayout_29 = QtWidgets.QHBoxLayout() + self.horizontalLayout_29.setObjectName("horizontalLayout_29") + self.label_67 = QtWidgets.QLabel(self.tab_13) + sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Fixed, QtWidgets.QSizePolicy.Preferred) sizePolicy.setHorizontalStretch(0) sizePolicy.setVerticalStretch(0) - sizePolicy.setHeightForWidth(self.checkBox_basic_hetatmap_rename_taxa.sizePolicy().hasHeightForWidth()) - self.checkBox_basic_hetatmap_rename_taxa.setSizePolicy(sizePolicy) - self.checkBox_basic_hetatmap_rename_taxa.setChecked(True) - self.checkBox_basic_hetatmap_rename_taxa.setObjectName("checkBox_basic_hetatmap_rename_taxa") - self.gridLayout_41.addWidget(self.checkBox_basic_hetatmap_rename_taxa, 3, 2, 1, 1) - self.checkBox_basic_heatmap_sankey_title = QtWidgets.QCheckBox(self.tab_13) - self.checkBox_basic_heatmap_sankey_title.setObjectName("checkBox_basic_heatmap_sankey_title") - self.gridLayout_41.addWidget(self.checkBox_basic_heatmap_sankey_title, 5, 0, 1, 1) - self.checkBox_basic_hetatmap_show_all_labels_x = QtWidgets.QCheckBox(self.tab_13) - sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Maximum, QtWidgets.QSizePolicy.Fixed) - sizePolicy.setHorizontalStretch(0) - sizePolicy.setVerticalStretch(0) - sizePolicy.setHeightForWidth(self.checkBox_basic_hetatmap_show_all_labels_x.sizePolicy().hasHeightForWidth()) - self.checkBox_basic_hetatmap_show_all_labels_x.setSizePolicy(sizePolicy) - self.checkBox_basic_hetatmap_show_all_labels_x.setObjectName("checkBox_basic_hetatmap_show_all_labels_x") - self.gridLayout_41.addWidget(self.checkBox_basic_hetatmap_show_all_labels_x, 2, 1, 1, 1) - self.checkBox_basic_hetatmap_rename_sample_name = QtWidgets.QCheckBox(self.tab_13) - self.checkBox_basic_hetatmap_rename_sample_name.setChecked(True) - self.checkBox_basic_hetatmap_rename_sample_name.setObjectName("checkBox_basic_hetatmap_rename_sample_name") - self.gridLayout_41.addWidget(self.checkBox_basic_hetatmap_rename_sample_name, 3, 1, 1, 1) - self.checkBox_basic_hetatmap_show_all_labels_y = QtWidgets.QCheckBox(self.tab_13) - self.checkBox_basic_hetatmap_show_all_labels_y.setObjectName("checkBox_basic_hetatmap_show_all_labels_y") - self.gridLayout_41.addWidget(self.checkBox_basic_hetatmap_show_all_labels_y, 2, 2, 1, 1) - self.horizontalLayout_60 = QtWidgets.QHBoxLayout() - self.horizontalLayout_60.setObjectName("horizontalLayout_60") - self.checkBox_basic_bar_show_legend = QtWidgets.QCheckBox(self.tab_13) - sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Fixed, QtWidgets.QSizePolicy.Fixed) - sizePolicy.setHorizontalStretch(0) - sizePolicy.setVerticalStretch(0) - sizePolicy.setHeightForWidth(self.checkBox_basic_bar_show_legend.sizePolicy().hasHeightForWidth()) - self.checkBox_basic_bar_show_legend.setSizePolicy(sizePolicy) - self.checkBox_basic_bar_show_legend.setChecked(True) - self.checkBox_basic_bar_show_legend.setObjectName("checkBox_basic_bar_show_legend") - self.horizontalLayout_60.addWidget(self.checkBox_basic_bar_show_legend) - self.checkBox_basic_bar_plot_percent = QtWidgets.QCheckBox(self.tab_13) - self.checkBox_basic_bar_plot_percent.setObjectName("checkBox_basic_bar_plot_percent") - self.horizontalLayout_60.addWidget(self.checkBox_basic_bar_plot_percent) - self.gridLayout_41.addLayout(self.horizontalLayout_60, 5, 1, 1, 2) - self.gridLayout_23.addLayout(self.gridLayout_41, 3, 9, 3, 1) - self.horizontalLayout_29 = QtWidgets.QHBoxLayout() - self.horizontalLayout_29.setObjectName("horizontalLayout_29") - self.label_67 = QtWidgets.QLabel(self.tab_13) - sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Fixed, QtWidgets.QSizePolicy.Preferred) - sizePolicy.setHorizontalStretch(0) - sizePolicy.setVerticalStretch(0) - sizePolicy.setHeightForWidth(self.label_67.sizePolicy().hasHeightForWidth()) - self.label_67.setSizePolicy(sizePolicy) - self.label_67.setAlignment(QtCore.Qt.AlignRight|QtCore.Qt.AlignTrailing|QtCore.Qt.AlignVCenter) - self.label_67.setObjectName("label_67") - self.horizontalLayout_29.addWidget(self.label_67) - self.spinBox_basic_heatmap_top_num = QtWidgets.QSpinBox(self.tab_13) - sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Fixed, QtWidgets.QSizePolicy.Fixed) + sizePolicy.setHeightForWidth(self.label_67.sizePolicy().hasHeightForWidth()) + self.label_67.setSizePolicy(sizePolicy) + self.label_67.setAlignment(QtCore.Qt.AlignRight|QtCore.Qt.AlignTrailing|QtCore.Qt.AlignVCenter) + self.label_67.setObjectName("label_67") + self.horizontalLayout_29.addWidget(self.label_67) + self.spinBox_basic_heatmap_top_num = QtWidgets.QSpinBox(self.tab_13) + sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Fixed, QtWidgets.QSizePolicy.Fixed) sizePolicy.setHorizontalStretch(0) sizePolicy.setVerticalStretch(0) sizePolicy.setHeightForWidth(self.spinBox_basic_heatmap_top_num.sizePolicy().hasHeightForWidth()) @@ -1279,105 +1307,6 @@ def setupUi(self, metaX_main): self.checkBox_basic_heatmap_top_filtered.setObjectName("checkBox_basic_heatmap_top_filtered") self.horizontalLayout_29.addWidget(self.checkBox_basic_heatmap_top_filtered) self.gridLayout_23.addLayout(self.horizontalLayout_29, 4, 1, 1, 4) - self.label_145 = QtWidgets.QLabel(self.tab_13) - sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Preferred, QtWidgets.QSizePolicy.Maximum) - sizePolicy.setHorizontalStretch(0) - sizePolicy.setVerticalStretch(0) - sizePolicy.setHeightForWidth(self.label_145.sizePolicy().hasHeightForWidth()) - self.label_145.setSizePolicy(sizePolicy) - self.label_145.setObjectName("label_145") - self.gridLayout_23.addWidget(self.label_145, 0, 9, 1, 1) - self.pushButton_basic_heatmap_add_top = QtWidgets.QPushButton(self.tab_13) - self.pushButton_basic_heatmap_add_top.setEnabled(False) - sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Preferred, QtWidgets.QSizePolicy.Fixed) - sizePolicy.setHorizontalStretch(0) - sizePolicy.setVerticalStretch(0) - sizePolicy.setHeightForWidth(self.pushButton_basic_heatmap_add_top.sizePolicy().hasHeightForWidth()) - self.pushButton_basic_heatmap_add_top.setSizePolicy(sizePolicy) - self.pushButton_basic_heatmap_add_top.setObjectName("pushButton_basic_heatmap_add_top") - self.gridLayout_23.addWidget(self.pushButton_basic_heatmap_add_top, 4, 5, 1, 1) - self.horizontalLayout_3 = QtWidgets.QHBoxLayout() - self.horizontalLayout_3.setObjectName("horizontalLayout_3") - self.label_35 = QtWidgets.QLabel(self.tab_13) - sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Preferred, QtWidgets.QSizePolicy.Fixed) - sizePolicy.setHorizontalStretch(0) - sizePolicy.setVerticalStretch(0) - sizePolicy.setHeightForWidth(self.label_35.sizePolicy().hasHeightForWidth()) - self.label_35.setSizePolicy(sizePolicy) - self.label_35.setObjectName("label_35") - self.horizontalLayout_3.addWidget(self.label_35) - self.label_33 = QtWidgets.QLabel(self.tab_13) - sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Preferred, QtWidgets.QSizePolicy.Preferred) - sizePolicy.setHorizontalStretch(0) - sizePolicy.setVerticalStretch(0) - sizePolicy.setHeightForWidth(self.label_33.sizePolicy().hasHeightForWidth()) - self.label_33.setSizePolicy(sizePolicy) - self.label_33.setObjectName("label_33") - self.horizontalLayout_3.addWidget(self.label_33) - self.label_108 = QtWidgets.QLabel(self.tab_13) - sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Preferred, QtWidgets.QSizePolicy.Preferred) - sizePolicy.setHorizontalStretch(0) - sizePolicy.setVerticalStretch(0) - sizePolicy.setHeightForWidth(self.label_108.sizePolicy().hasHeightForWidth()) - self.label_108.setSizePolicy(sizePolicy) - self.label_108.setObjectName("label_108") - self.horizontalLayout_3.addWidget(self.label_108) - self.gridLayout_23.addLayout(self.horizontalLayout_3, 1, 9, 1, 1) - self.gridLayout_39 = QtWidgets.QGridLayout() - self.gridLayout_39.setObjectName("gridLayout_39") - self.pushButton_basic_heatmap_get_table = QtWidgets.QPushButton(self.tab_13) - self.pushButton_basic_heatmap_get_table.setEnabled(False) - sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Preferred, QtWidgets.QSizePolicy.Preferred) - sizePolicy.setHorizontalStretch(0) - sizePolicy.setVerticalStretch(0) - sizePolicy.setHeightForWidth(self.pushButton_basic_heatmap_get_table.sizePolicy().hasHeightForWidth()) - self.pushButton_basic_heatmap_get_table.setSizePolicy(sizePolicy) - self.pushButton_basic_heatmap_get_table.setObjectName("pushButton_basic_heatmap_get_table") - self.gridLayout_39.addWidget(self.pushButton_basic_heatmap_get_table, 2, 1, 1, 1) - self.pushButton_basic_heatmap_sankey_plot = QtWidgets.QPushButton(self.tab_13) - self.pushButton_basic_heatmap_sankey_plot.setEnabled(False) - sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Preferred, QtWidgets.QSizePolicy.Preferred) - sizePolicy.setHorizontalStretch(0) - sizePolicy.setVerticalStretch(0) - sizePolicy.setHeightForWidth(self.pushButton_basic_heatmap_sankey_plot.sizePolicy().hasHeightForWidth()) - self.pushButton_basic_heatmap_sankey_plot.setSizePolicy(sizePolicy) - self.pushButton_basic_heatmap_sankey_plot.setObjectName("pushButton_basic_heatmap_sankey_plot") - self.gridLayout_39.addWidget(self.pushButton_basic_heatmap_sankey_plot, 2, 0, 1, 1) - self.pushButton_basic_heatmap_plot = QtWidgets.QPushButton(self.tab_13) - self.pushButton_basic_heatmap_plot.setEnabled(False) - sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Preferred, QtWidgets.QSizePolicy.Preferred) - sizePolicy.setHorizontalStretch(0) - sizePolicy.setVerticalStretch(0) - sizePolicy.setHeightForWidth(self.pushButton_basic_heatmap_plot.sizePolicy().hasHeightForWidth()) - self.pushButton_basic_heatmap_plot.setSizePolicy(sizePolicy) - self.pushButton_basic_heatmap_plot.setObjectName("pushButton_basic_heatmap_plot") - self.gridLayout_39.addWidget(self.pushButton_basic_heatmap_plot, 0, 0, 2, 1) - self.pushButton_basic_bar_plot = QtWidgets.QPushButton(self.tab_13) - self.pushButton_basic_bar_plot.setEnabled(False) - sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Preferred, QtWidgets.QSizePolicy.Preferred) - sizePolicy.setHorizontalStretch(0) - sizePolicy.setVerticalStretch(0) - sizePolicy.setHeightForWidth(self.pushButton_basic_bar_plot.sizePolicy().hasHeightForWidth()) - self.pushButton_basic_bar_plot.setSizePolicy(sizePolicy) - self.pushButton_basic_bar_plot.setObjectName("pushButton_basic_bar_plot") - self.gridLayout_39.addWidget(self.pushButton_basic_bar_plot, 1, 1, 1, 1) - self.comboBox_3dbar_sub_meta = QtWidgets.QComboBox(self.tab_13) - self.comboBox_3dbar_sub_meta.setObjectName("comboBox_3dbar_sub_meta") - self.gridLayout_39.addWidget(self.comboBox_3dbar_sub_meta, 0, 1, 1, 1) - self.gridLayout_23.addLayout(self.gridLayout_39, 6, 9, 1, 1) - self.line_8 = QtWidgets.QFrame(self.tab_13) - self.line_8.setFrameShape(QtWidgets.QFrame.VLine) - self.line_8.setFrameShadow(QtWidgets.QFrame.Sunken) - self.line_8.setObjectName("line_8") - self.gridLayout_23.addWidget(self.line_8, 0, 6, 7, 1) - self.listWidget_list_for_ploting = QtWidgets.QListWidget(self.tab_13) - sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Preferred, QtWidgets.QSizePolicy.Preferred) - sizePolicy.setHorizontalStretch(0) - sizePolicy.setVerticalStretch(0) - sizePolicy.setHeightForWidth(self.listWidget_list_for_ploting.sizePolicy().hasHeightForWidth()) - self.listWidget_list_for_ploting.setSizePolicy(sizePolicy) - self.listWidget_list_for_ploting.setObjectName("listWidget_list_for_ploting") - self.gridLayout_23.addWidget(self.listWidget_list_for_ploting, 5, 1, 2, 5) self.verticalLayout = QtWidgets.QVBoxLayout() self.verticalLayout.setObjectName("verticalLayout") self.pushButton_basic_heatmap_drop_item = QtWidgets.QPushButton(self.tab_13) @@ -1408,115 +1337,195 @@ def setupUi(self, metaX_main): self.pushButton_basic_heatmap_add_a_list.setObjectName("pushButton_basic_heatmap_add_a_list") self.verticalLayout.addWidget(self.pushButton_basic_heatmap_add_a_list) self.gridLayout_23.addLayout(self.verticalLayout, 5, 0, 2, 1) - self.radioButton_basic_heatmap_group = QtWidgets.QRadioButton(self.tab_13) - self.radioButton_basic_heatmap_group.setChecked(True) - self.radioButton_basic_heatmap_group.setObjectName("radioButton_basic_heatmap_group") - self.gridLayout_23.addWidget(self.radioButton_basic_heatmap_group, 1, 0, 1, 1) - self.horizontalLayout_4 = QtWidgets.QHBoxLayout() - self.horizontalLayout_4.setObjectName("horizontalLayout_4") - self.spinBox_basic_heatmap_width = QtWidgets.QSpinBox(self.tab_13) - self.spinBox_basic_heatmap_width.setMinimum(1) - self.spinBox_basic_heatmap_width.setMaximum(200) - self.spinBox_basic_heatmap_width.setProperty("value", 16) - self.spinBox_basic_heatmap_width.setObjectName("spinBox_basic_heatmap_width") - self.horizontalLayout_4.addWidget(self.spinBox_basic_heatmap_width) - self.spinBox_basic_heatmap_height = QtWidgets.QSpinBox(self.tab_13) + self.label_145 = QtWidgets.QLabel(self.tab_13) + sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Preferred, QtWidgets.QSizePolicy.Maximum) + sizePolicy.setHorizontalStretch(0) + sizePolicy.setVerticalStretch(0) + sizePolicy.setHeightForWidth(self.label_145.sizePolicy().hasHeightForWidth()) + self.label_145.setSizePolicy(sizePolicy) + self.label_145.setObjectName("label_145") + self.gridLayout_23.addWidget(self.label_145, 0, 9, 1, 1) + self.gridLayout_41 = QtWidgets.QGridLayout() + self.gridLayout_41.setObjectName("gridLayout_41") + self.horizontalLayout_31 = QtWidgets.QHBoxLayout() + self.horizontalLayout_31.setObjectName("horizontalLayout_31") + self.label_13 = QtWidgets.QLabel(self.tab_13) + self.label_13.setLayoutDirection(QtCore.Qt.LeftToRight) + self.label_13.setLocale(QtCore.QLocale(QtCore.QLocale.Chinese, QtCore.QLocale.China)) + self.label_13.setAlignment(QtCore.Qt.AlignLeading|QtCore.Qt.AlignLeft|QtCore.Qt.AlignVCenter) + self.label_13.setObjectName("label_13") + self.horizontalLayout_31.addWidget(self.label_13) + self.comboBox_basic_hetatmap_theme = QtWidgets.QComboBox(self.tab_13) sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Preferred, QtWidgets.QSizePolicy.Fixed) sizePolicy.setHorizontalStretch(0) sizePolicy.setVerticalStretch(0) - sizePolicy.setHeightForWidth(self.spinBox_basic_heatmap_height.sizePolicy().hasHeightForWidth()) - self.spinBox_basic_heatmap_height.setSizePolicy(sizePolicy) - self.spinBox_basic_heatmap_height.setMinimum(1) - self.spinBox_basic_heatmap_height.setMaximum(200) - self.spinBox_basic_heatmap_height.setProperty("value", 9) - self.spinBox_basic_heatmap_height.setObjectName("spinBox_basic_heatmap_height") - self.horizontalLayout_4.addWidget(self.spinBox_basic_heatmap_height) - self.spinBox_basic_heatmap_label_font_size = QtWidgets.QSpinBox(self.tab_13) - self.spinBox_basic_heatmap_label_font_size.setMinimum(1) - self.spinBox_basic_heatmap_label_font_size.setMaximum(999) - self.spinBox_basic_heatmap_label_font_size.setProperty("value", 10) - self.spinBox_basic_heatmap_label_font_size.setObjectName("spinBox_basic_heatmap_label_font_size") - self.horizontalLayout_4.addWidget(self.spinBox_basic_heatmap_label_font_size) - self.gridLayout_23.addLayout(self.horizontalLayout_4, 2, 9, 1, 1) - self.horizontalLayout_28 = QtWidgets.QHBoxLayout() - self.horizontalLayout_28.setObjectName("horizontalLayout_28") - self.label_80 = QtWidgets.QLabel(self.tab_13) - sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Fixed, QtWidgets.QSizePolicy.Preferred) + sizePolicy.setHeightForWidth(self.comboBox_basic_hetatmap_theme.sizePolicy().hasHeightForWidth()) + self.comboBox_basic_hetatmap_theme.setSizePolicy(sizePolicy) + self.comboBox_basic_hetatmap_theme.setObjectName("comboBox_basic_hetatmap_theme") + self.horizontalLayout_31.addWidget(self.comboBox_basic_hetatmap_theme) + self.label_31 = QtWidgets.QLabel(self.tab_13) + sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Fixed, QtWidgets.QSizePolicy.Fixed) sizePolicy.setHorizontalStretch(0) sizePolicy.setVerticalStretch(0) - sizePolicy.setHeightForWidth(self.label_80.sizePolicy().hasHeightForWidth()) - self.label_80.setSizePolicy(sizePolicy) - self.label_80.setObjectName("label_80") - self.horizontalLayout_28.addWidget(self.label_80) - self.comboBox_basic_table = QtWidgets.QComboBox(self.tab_13) - self.comboBox_basic_table.setEnabled(False) - sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Preferred, QtWidgets.QSizePolicy.Fixed) + sizePolicy.setHeightForWidth(self.label_31.sizePolicy().hasHeightForWidth()) + self.label_31.setSizePolicy(sizePolicy) + self.label_31.setObjectName("label_31") + self.horizontalLayout_31.addWidget(self.label_31) + self.comboBox_basic_hetatmap_scale = QtWidgets.QComboBox(self.tab_13) + sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Preferred, QtWidgets.QSizePolicy.Maximum) sizePolicy.setHorizontalStretch(0) sizePolicy.setVerticalStretch(0) - sizePolicy.setHeightForWidth(self.comboBox_basic_table.sizePolicy().hasHeightForWidth()) - self.comboBox_basic_table.setSizePolicy(sizePolicy) - self.comboBox_basic_table.setObjectName("comboBox_basic_table") - self.comboBox_basic_table.addItem("") - self.comboBox_basic_table.addItem("") - self.comboBox_basic_table.addItem("") - self.comboBox_basic_table.addItem("") - self.horizontalLayout_28.addWidget(self.comboBox_basic_table) - self.label_144 = QtWidgets.QLabel(self.tab_13) - sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Fixed, QtWidgets.QSizePolicy.Preferred) + sizePolicy.setHeightForWidth(self.comboBox_basic_hetatmap_scale.sizePolicy().hasHeightForWidth()) + self.comboBox_basic_hetatmap_scale.setSizePolicy(sizePolicy) + self.comboBox_basic_hetatmap_scale.setObjectName("comboBox_basic_hetatmap_scale") + self.comboBox_basic_hetatmap_scale.addItem("") + self.comboBox_basic_hetatmap_scale.addItem("") + self.comboBox_basic_hetatmap_scale.addItem("") + self.horizontalLayout_31.addWidget(self.comboBox_basic_hetatmap_scale) + self.gridLayout_41.addLayout(self.horizontalLayout_31, 1, 0, 1, 3) + self.checkBox_basic_heatmap_plot_peptide = QtWidgets.QCheckBox(self.tab_13) + sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Minimum, QtWidgets.QSizePolicy.Fixed) sizePolicy.setHorizontalStretch(0) sizePolicy.setVerticalStretch(0) - sizePolicy.setHeightForWidth(self.label_144.sizePolicy().hasHeightForWidth()) - self.label_144.setSizePolicy(sizePolicy) - self.label_144.setObjectName("label_144") - self.horizontalLayout_28.addWidget(self.label_144) - self.comboBox_basic_heatmap_meta = QtWidgets.QComboBox(self.tab_13) - self.comboBox_basic_heatmap_meta.setObjectName("comboBox_basic_heatmap_meta") - self.horizontalLayout_28.addWidget(self.comboBox_basic_heatmap_meta) - self.gridLayout_23.addLayout(self.horizontalLayout_28, 0, 0, 1, 2) - self.label_34 = QtWidgets.QLabel(self.tab_13) - self.label_34.setObjectName("label_34") - self.gridLayout_23.addWidget(self.label_34, 4, 0, 1, 1) - self.radioButton_basic_heatmap_sample = QtWidgets.QRadioButton(self.tab_13) - self.radioButton_basic_heatmap_sample.setObjectName("radioButton_basic_heatmap_sample") - self.gridLayout_23.addWidget(self.radioButton_basic_heatmap_sample, 2, 0, 1, 1) - self.comboBox_basic_heatmap_selection_list = QtWidgets.QComboBox(self.tab_13) + sizePolicy.setHeightForWidth(self.checkBox_basic_heatmap_plot_peptide.sizePolicy().hasHeightForWidth()) + self.checkBox_basic_heatmap_plot_peptide.setSizePolicy(sizePolicy) + self.checkBox_basic_heatmap_plot_peptide.setObjectName("checkBox_basic_heatmap_plot_peptide") + self.gridLayout_41.addWidget(self.checkBox_basic_heatmap_plot_peptide, 4, 0, 1, 1) + self.label_130 = QtWidgets.QLabel(self.tab_13) sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Preferred, QtWidgets.QSizePolicy.Fixed) sizePolicy.setHorizontalStretch(0) sizePolicy.setVerticalStretch(0) - sizePolicy.setHeightForWidth(self.comboBox_basic_heatmap_selection_list.sizePolicy().hasHeightForWidth()) - self.comboBox_basic_heatmap_selection_list.setSizePolicy(sizePolicy) - self.comboBox_basic_heatmap_selection_list.setObjectName("comboBox_basic_heatmap_selection_list") - self.gridLayout_23.addWidget(self.comboBox_basic_heatmap_selection_list, 3, 1, 1, 4) - self.verticalLayout_basic_heatmap_sample = QtWidgets.QVBoxLayout() - self.verticalLayout_basic_heatmap_sample.setObjectName("verticalLayout_basic_heatmap_sample") - self.gridLayout_23.addLayout(self.verticalLayout_basic_heatmap_sample, 2, 1, 1, 5) - self.verticalLayout_basic_heatmap_group = QtWidgets.QVBoxLayout() - self.verticalLayout_basic_heatmap_group.setObjectName("verticalLayout_basic_heatmap_group") - self.gridLayout_23.addLayout(self.verticalLayout_basic_heatmap_group, 1, 3, 1, 3) - self.horizontalLayout_26 = QtWidgets.QHBoxLayout() - self.horizontalLayout_26.setObjectName("horizontalLayout_26") - self.checkBox_basic_heatmap_in_condition = QtWidgets.QCheckBox(self.tab_13) + sizePolicy.setHeightForWidth(self.label_130.sizePolicy().hasHeightForWidth()) + self.label_130.setSizePolicy(sizePolicy) + self.label_130.setObjectName("label_130") + self.gridLayout_41.addWidget(self.label_130, 2, 0, 1, 1) + self.checkBox_basic_heatmap_plot_mean = QtWidgets.QCheckBox(self.tab_13) + self.checkBox_basic_heatmap_plot_mean.setObjectName("checkBox_basic_heatmap_plot_mean") + self.gridLayout_41.addWidget(self.checkBox_basic_heatmap_plot_mean, 4, 1, 1, 2) + self.label_152 = QtWidgets.QLabel(self.tab_13) + sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Maximum, QtWidgets.QSizePolicy.Preferred) + sizePolicy.setHorizontalStretch(0) + sizePolicy.setVerticalStretch(0) + sizePolicy.setHeightForWidth(self.label_152.sizePolicy().hasHeightForWidth()) + self.label_152.setSizePolicy(sizePolicy) + self.label_152.setObjectName("label_152") + self.gridLayout_41.addWidget(self.label_152, 3, 0, 1, 1) + self.horizontalLayout_30 = QtWidgets.QHBoxLayout() + self.horizontalLayout_30.setObjectName("horizontalLayout_30") + self.checkBox_basic_hetatmap_row_cluster = QtWidgets.QCheckBox(self.tab_13) + self.checkBox_basic_hetatmap_row_cluster.setChecked(True) + self.checkBox_basic_hetatmap_row_cluster.setObjectName("checkBox_basic_hetatmap_row_cluster") + self.horizontalLayout_30.addWidget(self.checkBox_basic_hetatmap_row_cluster) + self.checkBox_basic_hetatmap_col_cluster = QtWidgets.QCheckBox(self.tab_13) + self.checkBox_basic_hetatmap_col_cluster.setChecked(True) + self.checkBox_basic_hetatmap_col_cluster.setObjectName("checkBox_basic_hetatmap_col_cluster") + self.horizontalLayout_30.addWidget(self.checkBox_basic_hetatmap_col_cluster) + self.gridLayout_41.addLayout(self.horizontalLayout_30, 0, 0, 1, 3) + self.checkBox_basic_hetatmap_rename_taxa = QtWidgets.QCheckBox(self.tab_13) + sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Minimum, QtWidgets.QSizePolicy.Preferred) + sizePolicy.setHorizontalStretch(0) + sizePolicy.setVerticalStretch(0) + sizePolicy.setHeightForWidth(self.checkBox_basic_hetatmap_rename_taxa.sizePolicy().hasHeightForWidth()) + self.checkBox_basic_hetatmap_rename_taxa.setSizePolicy(sizePolicy) + self.checkBox_basic_hetatmap_rename_taxa.setChecked(True) + self.checkBox_basic_hetatmap_rename_taxa.setObjectName("checkBox_basic_hetatmap_rename_taxa") + self.gridLayout_41.addWidget(self.checkBox_basic_hetatmap_rename_taxa, 3, 2, 1, 1) + self.checkBox_basic_heatmap_sankey_title = QtWidgets.QCheckBox(self.tab_13) + self.checkBox_basic_heatmap_sankey_title.setObjectName("checkBox_basic_heatmap_sankey_title") + self.gridLayout_41.addWidget(self.checkBox_basic_heatmap_sankey_title, 5, 0, 1, 1) + self.checkBox_basic_hetatmap_show_all_labels_x = QtWidgets.QCheckBox(self.tab_13) + sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Maximum, QtWidgets.QSizePolicy.Fixed) + sizePolicy.setHorizontalStretch(0) + sizePolicy.setVerticalStretch(0) + sizePolicy.setHeightForWidth(self.checkBox_basic_hetatmap_show_all_labels_x.sizePolicy().hasHeightForWidth()) + self.checkBox_basic_hetatmap_show_all_labels_x.setSizePolicy(sizePolicy) + self.checkBox_basic_hetatmap_show_all_labels_x.setObjectName("checkBox_basic_hetatmap_show_all_labels_x") + self.gridLayout_41.addWidget(self.checkBox_basic_hetatmap_show_all_labels_x, 2, 1, 1, 1) + self.checkBox_basic_hetatmap_rename_sample_name = QtWidgets.QCheckBox(self.tab_13) + self.checkBox_basic_hetatmap_rename_sample_name.setChecked(True) + self.checkBox_basic_hetatmap_rename_sample_name.setObjectName("checkBox_basic_hetatmap_rename_sample_name") + self.gridLayout_41.addWidget(self.checkBox_basic_hetatmap_rename_sample_name, 3, 1, 1, 1) + self.checkBox_basic_hetatmap_show_all_labels_y = QtWidgets.QCheckBox(self.tab_13) + self.checkBox_basic_hetatmap_show_all_labels_y.setObjectName("checkBox_basic_hetatmap_show_all_labels_y") + self.gridLayout_41.addWidget(self.checkBox_basic_hetatmap_show_all_labels_y, 2, 2, 1, 1) + self.horizontalLayout_60 = QtWidgets.QHBoxLayout() + self.horizontalLayout_60.setObjectName("horizontalLayout_60") + self.checkBox_basic_bar_show_legend = QtWidgets.QCheckBox(self.tab_13) sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Fixed, QtWidgets.QSizePolicy.Fixed) sizePolicy.setHorizontalStretch(0) sizePolicy.setVerticalStretch(0) - sizePolicy.setHeightForWidth(self.checkBox_basic_heatmap_in_condition.sizePolicy().hasHeightForWidth()) - self.checkBox_basic_heatmap_in_condition.setSizePolicy(sizePolicy) - self.checkBox_basic_heatmap_in_condition.setObjectName("checkBox_basic_heatmap_in_condition") - self.horizontalLayout_26.addWidget(self.checkBox_basic_heatmap_in_condition) - self.comboBox_basic_heatmap_condition_meta = QtWidgets.QComboBox(self.tab_13) - self.comboBox_basic_heatmap_condition_meta.setEnabled(False) - self.comboBox_basic_heatmap_condition_meta.setObjectName("comboBox_basic_heatmap_condition_meta") - self.horizontalLayout_26.addWidget(self.comboBox_basic_heatmap_condition_meta) - self.comboBox_basic_heatmap_condition_group = QtWidgets.QComboBox(self.tab_13) - self.comboBox_basic_heatmap_condition_group.setEnabled(False) + sizePolicy.setHeightForWidth(self.checkBox_basic_bar_show_legend.sizePolicy().hasHeightForWidth()) + self.checkBox_basic_bar_show_legend.setSizePolicy(sizePolicy) + self.checkBox_basic_bar_show_legend.setChecked(True) + self.checkBox_basic_bar_show_legend.setObjectName("checkBox_basic_bar_show_legend") + self.horizontalLayout_60.addWidget(self.checkBox_basic_bar_show_legend) + self.checkBox_basic_bar_plot_percent = QtWidgets.QCheckBox(self.tab_13) + self.checkBox_basic_bar_plot_percent.setObjectName("checkBox_basic_bar_plot_percent") + self.horizontalLayout_60.addWidget(self.checkBox_basic_bar_plot_percent) + self.gridLayout_41.addLayout(self.horizontalLayout_60, 5, 1, 1, 2) + self.gridLayout_23.addLayout(self.gridLayout_41, 3, 9, 3, 1) + self.radioButton_basic_heatmap_group = QtWidgets.QRadioButton(self.tab_13) + self.radioButton_basic_heatmap_group.setChecked(True) + self.radioButton_basic_heatmap_group.setObjectName("radioButton_basic_heatmap_group") + self.gridLayout_23.addWidget(self.radioButton_basic_heatmap_group, 1, 0, 1, 1) + self.label_32 = QtWidgets.QLabel(self.tab_13) + self.label_32.setObjectName("label_32") + self.gridLayout_23.addWidget(self.label_32, 3, 0, 1, 1) + self.listWidget_list_for_ploting = QtWidgets.QListWidget(self.tab_13) + sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Preferred, QtWidgets.QSizePolicy.Preferred) + sizePolicy.setHorizontalStretch(0) + sizePolicy.setVerticalStretch(0) + sizePolicy.setHeightForWidth(self.listWidget_list_for_ploting.sizePolicy().hasHeightForWidth()) + self.listWidget_list_for_ploting.setSizePolicy(sizePolicy) + self.listWidget_list_for_ploting.setObjectName("listWidget_list_for_ploting") + self.gridLayout_23.addWidget(self.listWidget_list_for_ploting, 5, 1, 2, 5) + self.pushButton_basic_heatmap_add_top = QtWidgets.QPushButton(self.tab_13) + self.pushButton_basic_heatmap_add_top.setEnabled(False) sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Preferred, QtWidgets.QSizePolicy.Fixed) sizePolicy.setHorizontalStretch(0) sizePolicy.setVerticalStretch(0) - sizePolicy.setHeightForWidth(self.comboBox_basic_heatmap_condition_group.sizePolicy().hasHeightForWidth()) - self.comboBox_basic_heatmap_condition_group.setSizePolicy(sizePolicy) - self.comboBox_basic_heatmap_condition_group.setObjectName("comboBox_basic_heatmap_condition_group") - self.horizontalLayout_26.addWidget(self.comboBox_basic_heatmap_condition_group) - self.gridLayout_23.addLayout(self.horizontalLayout_26, 1, 1, 1, 2) + sizePolicy.setHeightForWidth(self.pushButton_basic_heatmap_add_top.sizePolicy().hasHeightForWidth()) + self.pushButton_basic_heatmap_add_top.setSizePolicy(sizePolicy) + self.pushButton_basic_heatmap_add_top.setObjectName("pushButton_basic_heatmap_add_top") + self.gridLayout_23.addWidget(self.pushButton_basic_heatmap_add_top, 4, 5, 1, 1) + self.verticalLayout_basic_heatmap_group = QtWidgets.QVBoxLayout() + self.verticalLayout_basic_heatmap_group.setObjectName("verticalLayout_basic_heatmap_group") + self.gridLayout_23.addLayout(self.verticalLayout_basic_heatmap_group, 1, 3, 1, 3) + self.horizontalLayout_28 = QtWidgets.QHBoxLayout() + self.horizontalLayout_28.setObjectName("horizontalLayout_28") + self.label_80 = QtWidgets.QLabel(self.tab_13) + sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Fixed, QtWidgets.QSizePolicy.Preferred) + sizePolicy.setHorizontalStretch(0) + sizePolicy.setVerticalStretch(0) + sizePolicy.setHeightForWidth(self.label_80.sizePolicy().hasHeightForWidth()) + self.label_80.setSizePolicy(sizePolicy) + self.label_80.setObjectName("label_80") + self.horizontalLayout_28.addWidget(self.label_80) + self.comboBox_basic_table = QtWidgets.QComboBox(self.tab_13) + self.comboBox_basic_table.setEnabled(False) + sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Preferred, QtWidgets.QSizePolicy.Fixed) + sizePolicy.setHorizontalStretch(0) + sizePolicy.setVerticalStretch(0) + sizePolicy.setHeightForWidth(self.comboBox_basic_table.sizePolicy().hasHeightForWidth()) + self.comboBox_basic_table.setSizePolicy(sizePolicy) + self.comboBox_basic_table.setObjectName("comboBox_basic_table") + self.comboBox_basic_table.addItem("") + self.comboBox_basic_table.addItem("") + self.comboBox_basic_table.addItem("") + self.comboBox_basic_table.addItem("") + self.horizontalLayout_28.addWidget(self.comboBox_basic_table) + self.label_144 = QtWidgets.QLabel(self.tab_13) + sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Fixed, QtWidgets.QSizePolicy.Preferred) + sizePolicy.setHorizontalStretch(0) + sizePolicy.setVerticalStretch(0) + sizePolicy.setHeightForWidth(self.label_144.sizePolicy().hasHeightForWidth()) + self.label_144.setSizePolicy(sizePolicy) + self.label_144.setObjectName("label_144") + self.horizontalLayout_28.addWidget(self.label_144) + self.comboBox_basic_heatmap_meta = QtWidgets.QComboBox(self.tab_13) + self.comboBox_basic_heatmap_meta.setObjectName("comboBox_basic_heatmap_meta") + self.horizontalLayout_28.addWidget(self.comboBox_basic_heatmap_meta) + self.gridLayout_23.addLayout(self.horizontalLayout_28, 0, 0, 1, 3) self.tabWidget_4.addTab(self.tab_13, "") self.tab_10 = QtWidgets.QWidget() self.tab_10.setObjectName("tab_10") @@ -1644,10 +1653,13 @@ def setupUi(self, metaX_main): self.comboBox_ttest_condition_meta.setEnabled(False) self.comboBox_ttest_condition_meta.setObjectName("comboBox_ttest_condition_meta") self.horizontalLayout_38.addWidget(self.comboBox_ttest_condition_meta) + self.horizontalLayout_70 = QtWidgets.QHBoxLayout() + self.horizontalLayout_70.setObjectName("horizontalLayout_70") self.comboBox_ttest_condition_group = QtWidgets.QComboBox(self.tab_3) self.comboBox_ttest_condition_group.setEnabled(False) self.comboBox_ttest_condition_group.setObjectName("comboBox_ttest_condition_group") - self.horizontalLayout_38.addWidget(self.comboBox_ttest_condition_group) + self.horizontalLayout_70.addWidget(self.comboBox_ttest_condition_group) + self.horizontalLayout_38.addLayout(self.horizontalLayout_70) self.gridLayout_13.addLayout(self.horizontalLayout_38, 2, 0, 1, 2) self.tabWidget_3.addTab(self.tab_3, "") self.tab_7 = QtWidgets.QWidget() @@ -1706,10 +1718,13 @@ def setupUi(self, metaX_main): self.comboBox_anova_condition_meta.setEnabled(False) self.comboBox_anova_condition_meta.setObjectName("comboBox_anova_condition_meta") self.horizontalLayout_37.addWidget(self.comboBox_anova_condition_meta) + self.horizontalLayout_71 = QtWidgets.QHBoxLayout() + self.horizontalLayout_71.setObjectName("horizontalLayout_71") self.comboBox_anova_condition_group = QtWidgets.QComboBox(self.tab_7) self.comboBox_anova_condition_group.setEnabled(False) self.comboBox_anova_condition_group.setObjectName("comboBox_anova_condition_group") - self.horizontalLayout_37.addWidget(self.comboBox_anova_condition_group) + self.horizontalLayout_71.addWidget(self.comboBox_anova_condition_group) + self.horizontalLayout_37.addLayout(self.horizontalLayout_71) self.gridLayout_11.addLayout(self.horizontalLayout_37, 1, 0, 1, 2) self.tabWidget_3.addTab(self.tab_7, "") self.tab_4 = QtWidgets.QWidget() @@ -1817,10 +1832,13 @@ def setupUi(self, metaX_main): self.comboBox_tukey_condition_meta.setEnabled(False) self.comboBox_tukey_condition_meta.setObjectName("comboBox_tukey_condition_meta") self.horizontalLayout_59.addWidget(self.comboBox_tukey_condition_meta) + self.horizontalLayout_72 = QtWidgets.QHBoxLayout() + self.horizontalLayout_72.setObjectName("horizontalLayout_72") self.comboBox_tukey_condition_group = QtWidgets.QComboBox(self.tab_4) self.comboBox_tukey_condition_group.setEnabled(False) self.comboBox_tukey_condition_group.setObjectName("comboBox_tukey_condition_group") - self.horizontalLayout_59.addWidget(self.comboBox_tukey_condition_group) + self.horizontalLayout_72.addWidget(self.comboBox_tukey_condition_group) + self.horizontalLayout_59.addLayout(self.horizontalLayout_72) self.gridLayout_10.addLayout(self.horizontalLayout_59, 5, 1, 1, 1) self.label_111 = QtWidgets.QLabel(self.tab_4) self.label_111.setObjectName("label_111") @@ -1894,10 +1912,13 @@ def setupUi(self, metaX_main): self.comboBox_group_control_condition_meta.setEnabled(False) self.comboBox_group_control_condition_meta.setObjectName("comboBox_group_control_condition_meta") self.horizontalLayout_39.addWidget(self.comboBox_group_control_condition_meta) + self.horizontalLayout_73 = QtWidgets.QHBoxLayout() + self.horizontalLayout_73.setObjectName("horizontalLayout_73") self.comboBox_group_control_condition_group = QtWidgets.QComboBox(self.tab_16) self.comboBox_group_control_condition_group.setEnabled(False) self.comboBox_group_control_condition_group.setObjectName("comboBox_group_control_condition_group") - self.horizontalLayout_39.addWidget(self.comboBox_group_control_condition_group) + self.horizontalLayout_73.addWidget(self.comboBox_group_control_condition_group) + self.horizontalLayout_39.addLayout(self.horizontalLayout_73) self.gridLayout_33.addLayout(self.horizontalLayout_39, 1, 1, 1, 2) self.horizontalLayout_dunnett_group = QtWidgets.QHBoxLayout() self.horizontalLayout_dunnett_group.setObjectName("horizontalLayout_dunnett_group") @@ -2487,10 +2508,13 @@ def setupUi(self, metaX_main): self.comboBox_deseq2_condition_meta.setEnabled(False) self.comboBox_deseq2_condition_meta.setObjectName("comboBox_deseq2_condition_meta") self.horizontalLayout_40.addWidget(self.comboBox_deseq2_condition_meta) + self.horizontalLayout_75 = QtWidgets.QHBoxLayout() + self.horizontalLayout_75.setObjectName("horizontalLayout_75") self.comboBox_deseq2_condition_group = QtWidgets.QComboBox(self.tab_6) self.comboBox_deseq2_condition_group.setEnabled(False) self.comboBox_deseq2_condition_group.setObjectName("comboBox_deseq2_condition_group") - self.horizontalLayout_40.addWidget(self.comboBox_deseq2_condition_group) + self.horizontalLayout_75.addWidget(self.comboBox_deseq2_condition_group) + self.horizontalLayout_40.addLayout(self.horizontalLayout_75) self.gridLayout_16.addLayout(self.horizontalLayout_40, 0, 0, 1, 2) self.tabWidget.addTab(self.tab_6, "") self.tab_5 = QtWidgets.QWidget() @@ -2525,10 +2549,18 @@ def setupUi(self, metaX_main): self.comboBox_co_expression_condition_meta.setEnabled(False) self.comboBox_co_expression_condition_meta.setObjectName("comboBox_co_expression_condition_meta") self.horizontalLayout_42.addWidget(self.comboBox_co_expression_condition_meta) + self.horizontalLayout_74 = QtWidgets.QHBoxLayout() + self.horizontalLayout_74.setObjectName("horizontalLayout_74") self.comboBox_co_expression_condition_group = QtWidgets.QComboBox(self.tab_5) self.comboBox_co_expression_condition_group.setEnabled(False) + sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.MinimumExpanding, QtWidgets.QSizePolicy.Fixed) + sizePolicy.setHorizontalStretch(0) + sizePolicy.setVerticalStretch(0) + sizePolicy.setHeightForWidth(self.comboBox_co_expression_condition_group.sizePolicy().hasHeightForWidth()) + self.comboBox_co_expression_condition_group.setSizePolicy(sizePolicy) self.comboBox_co_expression_condition_group.setObjectName("comboBox_co_expression_condition_group") - self.horizontalLayout_42.addWidget(self.comboBox_co_expression_condition_group) + self.horizontalLayout_74.addWidget(self.comboBox_co_expression_condition_group) + self.horizontalLayout_42.addLayout(self.horizontalLayout_74) self.gridLayout_47.addLayout(self.horizontalLayout_42, 1, 1, 1, 1) self.horizontalLayout_41 = QtWidgets.QHBoxLayout() self.horizontalLayout_41.setObjectName("horizontalLayout_41") @@ -2605,9 +2637,6 @@ def setupUi(self, metaX_main): self.pushButton_co_expr_add_a_list.setObjectName("pushButton_co_expr_add_a_list") self.verticalLayout_2.addWidget(self.pushButton_co_expr_add_a_list) self.gridLayout_47.addLayout(self.verticalLayout_2, 5, 0, 1, 1) - self.gridLayout_co_expr_group = QtWidgets.QGridLayout() - self.gridLayout_co_expr_group.setObjectName("gridLayout_co_expr_group") - self.gridLayout_47.addLayout(self.gridLayout_co_expr_group, 1, 2, 1, 2) self.radioButton_co_expr_bygroup = QtWidgets.QRadioButton(self.tab_5) sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Fixed, QtWidgets.QSizePolicy.Fixed) sizePolicy.setHorizontalStretch(0) @@ -2797,6 +2826,9 @@ def setupUi(self, metaX_main): self.pushButton_co_expr_plot.setObjectName("pushButton_co_expr_plot") self.verticalLayout_3.addWidget(self.pushButton_co_expr_plot) self.gridLayout_47.addLayout(self.verticalLayout_3, 5, 8, 1, 1) + self.gridLayout_co_expr_group = QtWidgets.QGridLayout() + self.gridLayout_co_expr_group.setObjectName("gridLayout_co_expr_group") + self.gridLayout_47.addLayout(self.gridLayout_co_expr_group, 1, 2, 1, 2) self.tabWidget.addTab(self.tab_5, "") self.tab_15 = QtWidgets.QWidget() self.tab_15.setObjectName("tab_15") @@ -2908,9 +2940,6 @@ def setupUi(self, metaX_main): self.comboBox_trends_meta.setObjectName("comboBox_trends_meta") self.horizontalLayout_44.addWidget(self.comboBox_trends_meta) self.gridLayout_24.addLayout(self.horizontalLayout_44, 0, 0, 1, 3) - self.verticalLayout_trends_group = QtWidgets.QVBoxLayout() - self.verticalLayout_trends_group.setObjectName("verticalLayout_trends_group") - self.gridLayout_24.addLayout(self.verticalLayout_trends_group, 1, 3, 1, 5) self.comboBox_trends_selection_list = QtWidgets.QComboBox(self.tab_15) sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Preferred, QtWidgets.QSizePolicy.Preferred) sizePolicy.setHorizontalStretch(0) @@ -2961,26 +2990,6 @@ def setupUi(self, metaX_main): self.pushButton_trends_plot_trends.setSizePolicy(sizePolicy) self.pushButton_trends_plot_trends.setObjectName("pushButton_trends_plot_trends") self.gridLayout_24.addWidget(self.pushButton_trends_plot_trends, 9, 6, 1, 2) - self.horizontalLayout_45 = QtWidgets.QHBoxLayout() - self.horizontalLayout_45.setObjectName("horizontalLayout_45") - self.checkBox_trends_in_condition = QtWidgets.QCheckBox(self.tab_15) - self.checkBox_trends_in_condition.setLayoutDirection(QtCore.Qt.LeftToRight) - self.checkBox_trends_in_condition.setObjectName("checkBox_trends_in_condition") - self.horizontalLayout_45.addWidget(self.checkBox_trends_in_condition) - self.comboBox_trends_condition_meta = QtWidgets.QComboBox(self.tab_15) - self.comboBox_trends_condition_meta.setEnabled(False) - self.comboBox_trends_condition_meta.setObjectName("comboBox_trends_condition_meta") - self.horizontalLayout_45.addWidget(self.comboBox_trends_condition_meta) - self.comboBox_trends_condition_group = QtWidgets.QComboBox(self.tab_15) - self.comboBox_trends_condition_group.setEnabled(False) - sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Preferred, QtWidgets.QSizePolicy.Fixed) - sizePolicy.setHorizontalStretch(0) - sizePolicy.setVerticalStretch(0) - sizePolicy.setHeightForWidth(self.comboBox_trends_condition_group.sizePolicy().hasHeightForWidth()) - self.comboBox_trends_condition_group.setSizePolicy(sizePolicy) - self.comboBox_trends_condition_group.setObjectName("comboBox_trends_condition_group") - self.horizontalLayout_45.addWidget(self.comboBox_trends_condition_group) - self.gridLayout_24.addLayout(self.horizontalLayout_45, 1, 1, 1, 2) self.checkBox_trends_plot_interactive_show_legend = QtWidgets.QCheckBox(self.tab_15) self.checkBox_trends_plot_interactive_show_legend.setObjectName("checkBox_trends_plot_interactive_show_legend") self.gridLayout_24.addWidget(self.checkBox_trends_plot_interactive_show_legend, 12, 7, 1, 1) @@ -3093,6 +3102,37 @@ def setupUi(self, metaX_main): self.label_98 = QtWidgets.QLabel(self.tab_15) self.label_98.setObjectName("label_98") self.gridLayout_24.addWidget(self.label_98, 5, 0, 1, 1) + self.verticalLayout_trends_group = QtWidgets.QVBoxLayout() + self.verticalLayout_trends_group.setObjectName("verticalLayout_trends_group") + self.gridLayout_24.addLayout(self.verticalLayout_trends_group, 1, 4, 1, 4) + self.horizontalLayout_45 = QtWidgets.QHBoxLayout() + self.horizontalLayout_45.setObjectName("horizontalLayout_45") + self.checkBox_trends_in_condition = QtWidgets.QCheckBox(self.tab_15) + sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Fixed, QtWidgets.QSizePolicy.Fixed) + sizePolicy.setHorizontalStretch(0) + sizePolicy.setVerticalStretch(0) + sizePolicy.setHeightForWidth(self.checkBox_trends_in_condition.sizePolicy().hasHeightForWidth()) + self.checkBox_trends_in_condition.setSizePolicy(sizePolicy) + self.checkBox_trends_in_condition.setLayoutDirection(QtCore.Qt.LeftToRight) + self.checkBox_trends_in_condition.setObjectName("checkBox_trends_in_condition") + self.horizontalLayout_45.addWidget(self.checkBox_trends_in_condition) + self.comboBox_trends_condition_meta = QtWidgets.QComboBox(self.tab_15) + self.comboBox_trends_condition_meta.setEnabled(False) + self.comboBox_trends_condition_meta.setObjectName("comboBox_trends_condition_meta") + self.horizontalLayout_45.addWidget(self.comboBox_trends_condition_meta) + self.horizontalLayout_76 = QtWidgets.QHBoxLayout() + self.horizontalLayout_76.setObjectName("horizontalLayout_76") + self.comboBox_trends_condition_group = QtWidgets.QComboBox(self.tab_15) + self.comboBox_trends_condition_group.setEnabled(False) + sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Preferred, QtWidgets.QSizePolicy.Fixed) + sizePolicy.setHorizontalStretch(0) + sizePolicy.setVerticalStretch(0) + sizePolicy.setHeightForWidth(self.comboBox_trends_condition_group.sizePolicy().hasHeightForWidth()) + self.comboBox_trends_condition_group.setSizePolicy(sizePolicy) + self.comboBox_trends_condition_group.setObjectName("comboBox_trends_condition_group") + self.horizontalLayout_76.addWidget(self.comboBox_trends_condition_group) + self.horizontalLayout_45.addLayout(self.horizontalLayout_76) + self.gridLayout_24.addLayout(self.horizontalLayout_45, 1, 1, 1, 3) self.tabWidget.addTab(self.tab_15, "") self.gridLayout_12.addWidget(self.tabWidget, 0, 0, 1, 1) self.tabWidget_TaxaFuncAnalyzer.addTab(self.tab_diff_stats, "") @@ -3107,47 +3147,6 @@ def setupUi(self, metaX_main): self.tab_8.setObjectName("tab_8") self.gridLayout_4 = QtWidgets.QGridLayout(self.tab_8) self.gridLayout_4.setObjectName("gridLayout_4") - self.label_18 = QtWidgets.QLabel(self.tab_8) - sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Fixed, QtWidgets.QSizePolicy.Fixed) - sizePolicy.setHorizontalStretch(0) - sizePolicy.setVerticalStretch(0) - sizePolicy.setHeightForWidth(self.label_18.sizePolicy().hasHeightForWidth()) - self.label_18.setSizePolicy(sizePolicy) - self.label_18.setObjectName("label_18") - self.gridLayout_4.addWidget(self.label_18, 8, 0, 1, 1) - self.label_19 = QtWidgets.QLabel(self.tab_8) - sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Fixed, QtWidgets.QSizePolicy.Fixed) - sizePolicy.setHorizontalStretch(0) - sizePolicy.setVerticalStretch(0) - sizePolicy.setHeightForWidth(self.label_19.sizePolicy().hasHeightForWidth()) - self.label_19.setSizePolicy(sizePolicy) - self.label_19.setObjectName("label_19") - self.gridLayout_4.addWidget(self.label_19, 9, 0, 1, 1) - self.pushButton_others_fresh_taxa_func = QtWidgets.QPushButton(self.tab_8) - self.pushButton_others_fresh_taxa_func.setEnabled(False) - sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Preferred, QtWidgets.QSizePolicy.Fixed) - sizePolicy.setHorizontalStretch(0) - sizePolicy.setVerticalStretch(0) - sizePolicy.setHeightForWidth(self.pushButton_others_fresh_taxa_func.sizePolicy().hasHeightForWidth()) - self.pushButton_others_fresh_taxa_func.setSizePolicy(sizePolicy) - self.pushButton_others_fresh_taxa_func.setObjectName("pushButton_others_fresh_taxa_func") - self.gridLayout_4.addWidget(self.pushButton_others_fresh_taxa_func, 7, 3, 1, 1) - self.label_others_func_num = QtWidgets.QLabel(self.tab_8) - sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Fixed, QtWidgets.QSizePolicy.Fixed) - sizePolicy.setHorizontalStretch(0) - sizePolicy.setVerticalStretch(0) - sizePolicy.setHeightForWidth(self.label_others_func_num.sizePolicy().hasHeightForWidth()) - self.label_others_func_num.setSizePolicy(sizePolicy) - self.label_others_func_num.setObjectName("label_others_func_num") - self.gridLayout_4.addWidget(self.label_others_func_num, 8, 2, 1, 1) - self.radioButton_tflink_sample = QtWidgets.QRadioButton(self.tab_8) - sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Fixed, QtWidgets.QSizePolicy.Fixed) - sizePolicy.setHorizontalStretch(0) - sizePolicy.setVerticalStretch(0) - sizePolicy.setHeightForWidth(self.radioButton_tflink_sample.sizePolicy().hasHeightForWidth()) - self.radioButton_tflink_sample.setSizePolicy(sizePolicy) - self.radioButton_tflink_sample.setObjectName("radioButton_tflink_sample") - self.gridLayout_4.addWidget(self.radioButton_tflink_sample, 3, 0, 1, 1) self.horizontalLayout_54 = QtWidgets.QHBoxLayout() self.horizontalLayout_54.setObjectName("horizontalLayout_54") self.label_23 = QtWidgets.QLabel(self.tab_8) @@ -3242,28 +3241,15 @@ def setupUi(self, metaX_main): self.checkBox_tflink_bar_plot_percent.setObjectName("checkBox_tflink_bar_plot_percent") self.horizontalLayout_52.addWidget(self.checkBox_tflink_bar_plot_percent) self.horizontalLayout_54.addLayout(self.horizontalLayout_52) - self.gridLayout_4.addLayout(self.horizontalLayout_54, 13, 0, 1, 3) - self.verticalLayout_4 = QtWidgets.QVBoxLayout() - self.verticalLayout_4.setObjectName("verticalLayout_4") - self.pushButton_others_plot_heatmap = QtWidgets.QPushButton(self.tab_8) - self.pushButton_others_plot_heatmap.setEnabled(False) - sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Preferred, QtWidgets.QSizePolicy.Preferred) - sizePolicy.setHorizontalStretch(0) - sizePolicy.setVerticalStretch(0) - sizePolicy.setHeightForWidth(self.pushButton_others_plot_heatmap.sizePolicy().hasHeightForWidth()) - self.pushButton_others_plot_heatmap.setSizePolicy(sizePolicy) - self.pushButton_others_plot_heatmap.setObjectName("pushButton_others_plot_heatmap") - self.verticalLayout_4.addWidget(self.pushButton_others_plot_heatmap) - self.pushButton_others_plot_line = QtWidgets.QPushButton(self.tab_8) - self.pushButton_others_plot_line.setEnabled(False) - sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Preferred, QtWidgets.QSizePolicy.Preferred) + self.gridLayout_4.addLayout(self.horizontalLayout_54, 9, 0, 1, 4) + self.label_18 = QtWidgets.QLabel(self.tab_8) + sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Fixed, QtWidgets.QSizePolicy.Fixed) sizePolicy.setHorizontalStretch(0) sizePolicy.setVerticalStretch(0) - sizePolicy.setHeightForWidth(self.pushButton_others_plot_line.sizePolicy().hasHeightForWidth()) - self.pushButton_others_plot_line.setSizePolicy(sizePolicy) - self.pushButton_others_plot_line.setObjectName("pushButton_others_plot_line") - self.verticalLayout_4.addWidget(self.pushButton_others_plot_line) - self.gridLayout_4.addLayout(self.verticalLayout_4, 12, 3, 2, 1) + sizePolicy.setHeightForWidth(self.label_18.sizePolicy().hasHeightForWidth()) + self.label_18.setSizePolicy(sizePolicy) + self.label_18.setObjectName("label_18") + self.gridLayout_4.addWidget(self.label_18, 5, 0, 1, 1) self.horizontalLayout_53 = QtWidgets.QHBoxLayout() self.horizontalLayout_53.setObjectName("horizontalLayout_53") self.label_21 = QtWidgets.QLabel(self.tab_8) @@ -3355,25 +3341,115 @@ def setupUi(self, metaX_main): self.checkBox_tflink_plot_mean.setSizePolicy(sizePolicy) self.checkBox_tflink_plot_mean.setObjectName("checkBox_tflink_plot_mean") self.horizontalLayout_53.addWidget(self.checkBox_tflink_plot_mean) - self.gridLayout_4.addLayout(self.horizontalLayout_53, 12, 0, 1, 3) - self.pushButton_others_show_linked_taxa = QtWidgets.QPushButton(self.tab_8) - self.pushButton_others_show_linked_taxa.setEnabled(False) - sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Fixed, QtWidgets.QSizePolicy.Fixed) + self.gridLayout_4.addLayout(self.horizontalLayout_53, 8, 0, 1, 4) + self.label_149 = QtWidgets.QLabel(self.tab_8) + sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Preferred, QtWidgets.QSizePolicy.Fixed) sizePolicy.setHorizontalStretch(0) sizePolicy.setVerticalStretch(0) - sizePolicy.setHeightForWidth(self.pushButton_others_show_linked_taxa.sizePolicy().hasHeightForWidth()) - self.pushButton_others_show_linked_taxa.setSizePolicy(sizePolicy) - self.pushButton_others_show_linked_taxa.setObjectName("pushButton_others_show_linked_taxa") - self.gridLayout_4.addWidget(self.pushButton_others_show_linked_taxa, 8, 3, 1, 1) - self.comboBox_others_taxa = QtWidgets.QComboBox(self.tab_8) + sizePolicy.setHeightForWidth(self.label_149.sizePolicy().hasHeightForWidth()) + self.label_149.setSizePolicy(sizePolicy) + self.label_149.setObjectName("label_149") + self.gridLayout_4.addWidget(self.label_149, 0, 0, 1, 1) + self.comboBox_tflink_meta = QtWidgets.QComboBox(self.tab_8) + sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Preferred, QtWidgets.QSizePolicy.Preferred) + sizePolicy.setHorizontalStretch(0) + sizePolicy.setVerticalStretch(0) + sizePolicy.setHeightForWidth(self.comboBox_tflink_meta.sizePolicy().hasHeightForWidth()) + self.comboBox_tflink_meta.setSizePolicy(sizePolicy) + self.comboBox_tflink_meta.setLayoutDirection(QtCore.Qt.LeftToRight) + self.comboBox_tflink_meta.setObjectName("comboBox_tflink_meta") + self.gridLayout_4.addWidget(self.comboBox_tflink_meta, 0, 1, 1, 1) + self.horizontalLayout_78 = QtWidgets.QHBoxLayout() + self.horizontalLayout_78.setObjectName("horizontalLayout_78") + self.checkBox_tflink_in_condition = QtWidgets.QCheckBox(self.tab_8) + sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Maximum, QtWidgets.QSizePolicy.Fixed) + sizePolicy.setHorizontalStretch(0) + sizePolicy.setVerticalStretch(0) + sizePolicy.setHeightForWidth(self.checkBox_tflink_in_condition.sizePolicy().hasHeightForWidth()) + self.checkBox_tflink_in_condition.setSizePolicy(sizePolicy) + self.checkBox_tflink_in_condition.setLayoutDirection(QtCore.Qt.LeftToRight) + self.checkBox_tflink_in_condition.setObjectName("checkBox_tflink_in_condition") + self.horizontalLayout_78.addWidget(self.checkBox_tflink_in_condition) + self.comboBox_tflink_condition_meta = QtWidgets.QComboBox(self.tab_8) + self.comboBox_tflink_condition_meta.setEnabled(False) + sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Maximum, QtWidgets.QSizePolicy.Fixed) + sizePolicy.setHorizontalStretch(0) + sizePolicy.setVerticalStretch(0) + sizePolicy.setHeightForWidth(self.comboBox_tflink_condition_meta.sizePolicy().hasHeightForWidth()) + self.comboBox_tflink_condition_meta.setSizePolicy(sizePolicy) + self.comboBox_tflink_condition_meta.setObjectName("comboBox_tflink_condition_meta") + self.horizontalLayout_78.addWidget(self.comboBox_tflink_condition_meta) + self.horizontalLayout_49 = QtWidgets.QHBoxLayout() + self.horizontalLayout_49.setObjectName("horizontalLayout_49") + self.horizontalLayout_77 = QtWidgets.QHBoxLayout() + self.horizontalLayout_77.setObjectName("horizontalLayout_77") + self.comboBox_tflink_condition_group = QtWidgets.QComboBox(self.tab_8) + self.comboBox_tflink_condition_group.setEnabled(False) sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Preferred, QtWidgets.QSizePolicy.Fixed) sizePolicy.setHorizontalStretch(0) sizePolicy.setVerticalStretch(0) - sizePolicy.setHeightForWidth(self.comboBox_others_taxa.sizePolicy().hasHeightForWidth()) - self.comboBox_others_taxa.setSizePolicy(sizePolicy) - self.comboBox_others_taxa.setEditable(True) - self.comboBox_others_taxa.setObjectName("comboBox_others_taxa") - self.gridLayout_4.addWidget(self.comboBox_others_taxa, 9, 1, 1, 1) + sizePolicy.setHeightForWidth(self.comboBox_tflink_condition_group.sizePolicy().hasHeightForWidth()) + self.comboBox_tflink_condition_group.setSizePolicy(sizePolicy) + self.comboBox_tflink_condition_group.setObjectName("comboBox_tflink_condition_group") + self.horizontalLayout_77.addWidget(self.comboBox_tflink_condition_group) + self.horizontalLayout_49.addLayout(self.horizontalLayout_77) + self.horizontalLayout_78.addLayout(self.horizontalLayout_49) + self.gridLayout_4.addLayout(self.horizontalLayout_78, 1, 1, 1, 1) + self.radioButton_tflink_sample = QtWidgets.QRadioButton(self.tab_8) + sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Fixed, QtWidgets.QSizePolicy.Fixed) + sizePolicy.setHorizontalStretch(0) + sizePolicy.setVerticalStretch(0) + sizePolicy.setHeightForWidth(self.radioButton_tflink_sample.sizePolicy().hasHeightForWidth()) + self.radioButton_tflink_sample.setSizePolicy(sizePolicy) + self.radioButton_tflink_sample.setObjectName("radioButton_tflink_sample") + self.gridLayout_4.addWidget(self.radioButton_tflink_sample, 2, 0, 1, 1) + self.verticalLayout_4 = QtWidgets.QVBoxLayout() + self.verticalLayout_4.setObjectName("verticalLayout_4") + self.pushButton_others_get_intensity_matrix = QtWidgets.QPushButton(self.tab_8) + self.pushButton_others_get_intensity_matrix.setEnabled(False) + sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Preferred, QtWidgets.QSizePolicy.Fixed) + sizePolicy.setHorizontalStretch(0) + sizePolicy.setVerticalStretch(0) + sizePolicy.setHeightForWidth(self.pushButton_others_get_intensity_matrix.sizePolicy().hasHeightForWidth()) + self.pushButton_others_get_intensity_matrix.setSizePolicy(sizePolicy) + self.pushButton_others_get_intensity_matrix.setObjectName("pushButton_others_get_intensity_matrix") + self.verticalLayout_4.addWidget(self.pushButton_others_get_intensity_matrix) + self.pushButton_others_plot_heatmap = QtWidgets.QPushButton(self.tab_8) + self.pushButton_others_plot_heatmap.setEnabled(False) + sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Preferred, QtWidgets.QSizePolicy.Preferred) + sizePolicy.setHorizontalStretch(0) + sizePolicy.setVerticalStretch(0) + sizePolicy.setHeightForWidth(self.pushButton_others_plot_heatmap.sizePolicy().hasHeightForWidth()) + self.pushButton_others_plot_heatmap.setSizePolicy(sizePolicy) + self.pushButton_others_plot_heatmap.setObjectName("pushButton_others_plot_heatmap") + self.verticalLayout_4.addWidget(self.pushButton_others_plot_heatmap) + self.pushButton_others_plot_line = QtWidgets.QPushButton(self.tab_8) + self.pushButton_others_plot_line.setEnabled(False) + sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Preferred, QtWidgets.QSizePolicy.Preferred) + sizePolicy.setHorizontalStretch(0) + sizePolicy.setVerticalStretch(0) + sizePolicy.setHeightForWidth(self.pushButton_others_plot_line.sizePolicy().hasHeightForWidth()) + self.pushButton_others_plot_line.setSizePolicy(sizePolicy) + self.pushButton_others_plot_line.setObjectName("pushButton_others_plot_line") + self.verticalLayout_4.addWidget(self.pushButton_others_plot_line) + self.gridLayout_4.addLayout(self.verticalLayout_4, 8, 4, 2, 1) + self.label_19 = QtWidgets.QLabel(self.tab_8) + sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Fixed, QtWidgets.QSizePolicy.Fixed) + sizePolicy.setHorizontalStretch(0) + sizePolicy.setVerticalStretch(0) + sizePolicy.setHeightForWidth(self.label_19.sizePolicy().hasHeightForWidth()) + self.label_19.setSizePolicy(sizePolicy) + self.label_19.setObjectName("label_19") + self.gridLayout_4.addWidget(self.label_19, 6, 0, 1, 1) + self.radioButton_tflink_group = QtWidgets.QRadioButton(self.tab_8) + sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Fixed, QtWidgets.QSizePolicy.Fixed) + sizePolicy.setHorizontalStretch(0) + sizePolicy.setVerticalStretch(0) + sizePolicy.setHeightForWidth(self.radioButton_tflink_group.sizePolicy().hasHeightForWidth()) + self.radioButton_tflink_group.setSizePolicy(sizePolicy) + self.radioButton_tflink_group.setChecked(True) + self.radioButton_tflink_group.setObjectName("radioButton_tflink_group") + self.gridLayout_4.addWidget(self.radioButton_tflink_group, 1, 0, 1, 1) self.horizontalLayout_50 = QtWidgets.QHBoxLayout() self.horizontalLayout_50.setObjectName("horizontalLayout_50") self.label_75 = QtWidgets.QLabel(self.tab_8) @@ -3430,30 +3506,38 @@ def setupUi(self, metaX_main): self.pushButton_tflink_filter.setSizePolicy(sizePolicy) self.pushButton_tflink_filter.setObjectName("pushButton_tflink_filter") self.horizontalLayout_50.addWidget(self.pushButton_tflink_filter) - self.gridLayout_4.addLayout(self.horizontalLayout_50, 7, 1, 1, 2) - self.comboBox_others_func = QtWidgets.QComboBox(self.tab_8) - sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Preferred, QtWidgets.QSizePolicy.Fixed) + self.pushButton_others_fresh_taxa_func = QtWidgets.QPushButton(self.tab_8) + self.pushButton_others_fresh_taxa_func.setEnabled(False) + sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Fixed, QtWidgets.QSizePolicy.Fixed) sizePolicy.setHorizontalStretch(0) sizePolicy.setVerticalStretch(0) - sizePolicy.setHeightForWidth(self.comboBox_others_func.sizePolicy().hasHeightForWidth()) - self.comboBox_others_func.setSizePolicy(sizePolicy) - self.comboBox_others_func.setEditable(True) - self.comboBox_others_func.setObjectName("comboBox_others_func") - self.gridLayout_4.addWidget(self.comboBox_others_func, 8, 1, 1, 1) - self.pushButton_others_get_intensity_matrix = QtWidgets.QPushButton(self.tab_8) - self.pushButton_others_get_intensity_matrix.setEnabled(False) - sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Preferred, QtWidgets.QSizePolicy.Fixed) + sizePolicy.setHeightForWidth(self.pushButton_others_fresh_taxa_func.sizePolicy().hasHeightForWidth()) + self.pushButton_others_fresh_taxa_func.setSizePolicy(sizePolicy) + self.pushButton_others_fresh_taxa_func.setObjectName("pushButton_others_fresh_taxa_func") + self.horizontalLayout_50.addWidget(self.pushButton_others_fresh_taxa_func) + self.gridLayout_4.addLayout(self.horizontalLayout_50, 4, 0, 1, 5) + self.horizontalLayout_81 = QtWidgets.QHBoxLayout() + self.horizontalLayout_81.setObjectName("horizontalLayout_81") + self.label_others_func_num = QtWidgets.QLabel(self.tab_8) + sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Fixed, QtWidgets.QSizePolicy.Fixed) sizePolicy.setHorizontalStretch(0) sizePolicy.setVerticalStretch(0) - sizePolicy.setHeightForWidth(self.pushButton_others_get_intensity_matrix.sizePolicy().hasHeightForWidth()) - self.pushButton_others_get_intensity_matrix.setSizePolicy(sizePolicy) - self.pushButton_others_get_intensity_matrix.setObjectName("pushButton_others_get_intensity_matrix") - self.gridLayout_4.addWidget(self.pushButton_others_get_intensity_matrix, 10, 3, 1, 1) - self.line_3 = QtWidgets.QFrame(self.tab_8) - self.line_3.setFrameShape(QtWidgets.QFrame.HLine) - self.line_3.setFrameShadow(QtWidgets.QFrame.Sunken) - self.line_3.setObjectName("line_3") - self.gridLayout_4.addWidget(self.line_3, 10, 0, 1, 3) + sizePolicy.setHeightForWidth(self.label_others_func_num.sizePolicy().hasHeightForWidth()) + self.label_others_func_num.setSizePolicy(sizePolicy) + self.label_others_func_num.setObjectName("label_others_func_num") + self.horizontalLayout_81.addWidget(self.label_others_func_num) + self.pushButton_others_show_linked_taxa = QtWidgets.QPushButton(self.tab_8) + self.pushButton_others_show_linked_taxa.setEnabled(False) + sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Fixed, QtWidgets.QSizePolicy.Fixed) + sizePolicy.setHorizontalStretch(0) + sizePolicy.setVerticalStretch(0) + sizePolicy.setHeightForWidth(self.pushButton_others_show_linked_taxa.sizePolicy().hasHeightForWidth()) + self.pushButton_others_show_linked_taxa.setSizePolicy(sizePolicy) + self.pushButton_others_show_linked_taxa.setObjectName("pushButton_others_show_linked_taxa") + self.horizontalLayout_81.addWidget(self.pushButton_others_show_linked_taxa) + self.gridLayout_4.addLayout(self.horizontalLayout_81, 5, 4, 1, 1) + self.horizontalLayout_82 = QtWidgets.QHBoxLayout() + self.horizontalLayout_82.setObjectName("horizontalLayout_82") self.label_others_taxa_num = QtWidgets.QLabel(self.tab_8) sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Fixed, QtWidgets.QSizePolicy.Preferred) sizePolicy.setHorizontalStretch(0) @@ -3461,7 +3545,7 @@ def setupUi(self, metaX_main): sizePolicy.setHeightForWidth(self.label_others_taxa_num.sizePolicy().hasHeightForWidth()) self.label_others_taxa_num.setSizePolicy(sizePolicy) self.label_others_taxa_num.setObjectName("label_others_taxa_num") - self.gridLayout_4.addWidget(self.label_others_taxa_num, 9, 2, 1, 1) + self.horizontalLayout_82.addWidget(self.label_others_taxa_num) self.pushButton_others_show_linked_func = QtWidgets.QPushButton(self.tab_8) self.pushButton_others_show_linked_func.setEnabled(False) sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Fixed, QtWidgets.QSizePolicy.Fixed) @@ -3470,179 +3554,47 @@ def setupUi(self, metaX_main): sizePolicy.setHeightForWidth(self.pushButton_others_show_linked_func.sizePolicy().hasHeightForWidth()) self.pushButton_others_show_linked_func.setSizePolicy(sizePolicy) self.pushButton_others_show_linked_func.setObjectName("pushButton_others_show_linked_func") - self.gridLayout_4.addWidget(self.pushButton_others_show_linked_func, 9, 3, 1, 1) - self.gridLayout_tflink_sample = QtWidgets.QGridLayout() - self.gridLayout_tflink_sample.setObjectName("gridLayout_tflink_sample") - self.gridLayout_4.addLayout(self.gridLayout_tflink_sample, 3, 1, 1, 3) - self.horizontalLayout_49 = QtWidgets.QHBoxLayout() - self.horizontalLayout_49.setObjectName("horizontalLayout_49") - self.radioButton_tflink_group = QtWidgets.QRadioButton(self.tab_8) - sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Fixed, QtWidgets.QSizePolicy.Fixed) - sizePolicy.setHorizontalStretch(0) - sizePolicy.setVerticalStretch(0) - sizePolicy.setHeightForWidth(self.radioButton_tflink_group.sizePolicy().hasHeightForWidth()) - self.radioButton_tflink_group.setSizePolicy(sizePolicy) - self.radioButton_tflink_group.setChecked(True) - self.radioButton_tflink_group.setObjectName("radioButton_tflink_group") - self.horizontalLayout_49.addWidget(self.radioButton_tflink_group) - self.checkBox_tflink_in_condition = QtWidgets.QCheckBox(self.tab_8) - sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Maximum, QtWidgets.QSizePolicy.Fixed) - sizePolicy.setHorizontalStretch(0) - sizePolicy.setVerticalStretch(0) - sizePolicy.setHeightForWidth(self.checkBox_tflink_in_condition.sizePolicy().hasHeightForWidth()) - self.checkBox_tflink_in_condition.setSizePolicy(sizePolicy) - self.checkBox_tflink_in_condition.setLayoutDirection(QtCore.Qt.LeftToRight) - self.checkBox_tflink_in_condition.setObjectName("checkBox_tflink_in_condition") - self.horizontalLayout_49.addWidget(self.checkBox_tflink_in_condition) - self.comboBox_tflink_condition_meta = QtWidgets.QComboBox(self.tab_8) - self.comboBox_tflink_condition_meta.setEnabled(False) - sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Maximum, QtWidgets.QSizePolicy.Fixed) + self.horizontalLayout_82.addWidget(self.pushButton_others_show_linked_func) + self.gridLayout_4.addLayout(self.horizontalLayout_82, 6, 4, 1, 1) + self.comboBox_others_func = QtWidgets.QComboBox(self.tab_8) + sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Preferred, QtWidgets.QSizePolicy.Fixed) sizePolicy.setHorizontalStretch(0) sizePolicy.setVerticalStretch(0) - sizePolicy.setHeightForWidth(self.comboBox_tflink_condition_meta.sizePolicy().hasHeightForWidth()) - self.comboBox_tflink_condition_meta.setSizePolicy(sizePolicy) - self.comboBox_tflink_condition_meta.setObjectName("comboBox_tflink_condition_meta") - self.horizontalLayout_49.addWidget(self.comboBox_tflink_condition_meta) - self.comboBox_tflink_condition_group = QtWidgets.QComboBox(self.tab_8) - self.comboBox_tflink_condition_group.setEnabled(False) - sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Maximum, QtWidgets.QSizePolicy.Fixed) + sizePolicy.setHeightForWidth(self.comboBox_others_func.sizePolicy().hasHeightForWidth()) + self.comboBox_others_func.setSizePolicy(sizePolicy) + self.comboBox_others_func.setEditable(True) + self.comboBox_others_func.setObjectName("comboBox_others_func") + self.gridLayout_4.addWidget(self.comboBox_others_func, 5, 1, 1, 3) + self.comboBox_others_taxa = QtWidgets.QComboBox(self.tab_8) + sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.MinimumExpanding, QtWidgets.QSizePolicy.Fixed) sizePolicy.setHorizontalStretch(0) sizePolicy.setVerticalStretch(0) - sizePolicy.setHeightForWidth(self.comboBox_tflink_condition_group.sizePolicy().hasHeightForWidth()) - self.comboBox_tflink_condition_group.setSizePolicy(sizePolicy) - self.comboBox_tflink_condition_group.setObjectName("comboBox_tflink_condition_group") - self.horizontalLayout_49.addWidget(self.comboBox_tflink_condition_group) + sizePolicy.setHeightForWidth(self.comboBox_others_taxa.sizePolicy().hasHeightForWidth()) + self.comboBox_others_taxa.setSizePolicy(sizePolicy) + self.comboBox_others_taxa.setEditable(True) + self.comboBox_others_taxa.setObjectName("comboBox_others_taxa") + self.gridLayout_4.addWidget(self.comboBox_others_taxa, 6, 1, 1, 3) + self.gridLayout_tflink_sample = QtWidgets.QGridLayout() + self.gridLayout_tflink_sample.setObjectName("gridLayout_tflink_sample") + self.gridLayout_4.addLayout(self.gridLayout_tflink_sample, 2, 1, 1, 4) self.gridLayout_tflink_group = QtWidgets.QGridLayout() self.gridLayout_tflink_group.setObjectName("gridLayout_tflink_group") - self.horizontalLayout_49.addLayout(self.gridLayout_tflink_group) - self.gridLayout_4.addLayout(self.horizontalLayout_49, 1, 0, 1, 4) - self.label_149 = QtWidgets.QLabel(self.tab_8) - sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Preferred, QtWidgets.QSizePolicy.Fixed) - sizePolicy.setHorizontalStretch(0) - sizePolicy.setVerticalStretch(0) - sizePolicy.setHeightForWidth(self.label_149.sizePolicy().hasHeightForWidth()) - self.label_149.setSizePolicy(sizePolicy) - self.label_149.setObjectName("label_149") - self.gridLayout_4.addWidget(self.label_149, 0, 0, 1, 1) - self.comboBox_tflink_meta = QtWidgets.QComboBox(self.tab_8) - sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Preferred, QtWidgets.QSizePolicy.Maximum) - sizePolicy.setHorizontalStretch(0) - sizePolicy.setVerticalStretch(0) - sizePolicy.setHeightForWidth(self.comboBox_tflink_meta.sizePolicy().hasHeightForWidth()) - self.comboBox_tflink_meta.setSizePolicy(sizePolicy) - self.comboBox_tflink_meta.setLayoutDirection(QtCore.Qt.LeftToRight) - self.comboBox_tflink_meta.setObjectName("comboBox_tflink_meta") - self.gridLayout_4.addWidget(self.comboBox_tflink_meta, 0, 1, 1, 1) + self.gridLayout_4.addLayout(self.gridLayout_tflink_group, 1, 2, 1, 3) self.line_6 = QtWidgets.QFrame(self.tab_8) self.line_6.setFrameShape(QtWidgets.QFrame.HLine) self.line_6.setFrameShadow(QtWidgets.QFrame.Sunken) self.line_6.setObjectName("line_6") - self.gridLayout_4.addWidget(self.line_6, 4, 0, 1, 4) + self.gridLayout_4.addWidget(self.line_6, 3, 0, 1, 5) + self.line_3 = QtWidgets.QFrame(self.tab_8) + self.line_3.setFrameShape(QtWidgets.QFrame.HLine) + self.line_3.setFrameShadow(QtWidgets.QFrame.Sunken) + self.line_3.setObjectName("line_3") + self.gridLayout_4.addWidget(self.line_3, 7, 0, 1, 5) self.tabWidget_2.addTab(self.tab_8, "") self.tab_9 = QtWidgets.QWidget() self.tab_9.setObjectName("tab_9") self.gridLayout_6 = QtWidgets.QGridLayout(self.tab_9) self.gridLayout_6.setObjectName("gridLayout_6") - self.pushButton_plot_network = QtWidgets.QPushButton(self.tab_9) - self.pushButton_plot_network.setEnabled(False) - sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Minimum, QtWidgets.QSizePolicy.Expanding) - sizePolicy.setHorizontalStretch(0) - sizePolicy.setVerticalStretch(0) - sizePolicy.setHeightForWidth(self.pushButton_plot_network.sizePolicy().hasHeightForWidth()) - self.pushButton_plot_network.setSizePolicy(sizePolicy) - self.pushButton_plot_network.setCheckable(False) - self.pushButton_plot_network.setObjectName("pushButton_plot_network") - self.gridLayout_6.addWidget(self.pushButton_plot_network, 14, 3, 1, 1) - self.pushButton_tfnet_clean_list = QtWidgets.QPushButton(self.tab_9) - self.pushButton_tfnet_clean_list.setEnabled(False) - sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Minimum, QtWidgets.QSizePolicy.Fixed) - sizePolicy.setHorizontalStretch(0) - sizePolicy.setVerticalStretch(0) - sizePolicy.setHeightForWidth(self.pushButton_tfnet_clean_list.sizePolicy().hasHeightForWidth()) - self.pushButton_tfnet_clean_list.setSizePolicy(sizePolicy) - self.pushButton_tfnet_clean_list.setObjectName("pushButton_tfnet_clean_list") - self.gridLayout_6.addWidget(self.pushButton_tfnet_clean_list, 13, 0, 1, 1) - self.radioButton_network_bygroup = QtWidgets.QRadioButton(self.tab_9) - sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Fixed, QtWidgets.QSizePolicy.Fixed) - sizePolicy.setHorizontalStretch(0) - sizePolicy.setVerticalStretch(0) - sizePolicy.setHeightForWidth(self.radioButton_network_bygroup.sizePolicy().hasHeightForWidth()) - self.radioButton_network_bygroup.setSizePolicy(sizePolicy) - self.radioButton_network_bygroup.setChecked(True) - self.radioButton_network_bygroup.setObjectName("radioButton_network_bygroup") - self.gridLayout_6.addWidget(self.radioButton_network_bygroup, 1, 0, 1, 1) - self.pushButton_tfnet_add_a_list = QtWidgets.QPushButton(self.tab_9) - self.pushButton_tfnet_add_a_list.setEnabled(False) - self.pushButton_tfnet_add_a_list.setObjectName("pushButton_tfnet_add_a_list") - self.gridLayout_6.addWidget(self.pushButton_tfnet_add_a_list, 14, 0, 1, 1) - self.radioButton_network_bysample = QtWidgets.QRadioButton(self.tab_9) - sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Fixed, QtWidgets.QSizePolicy.Fixed) - sizePolicy.setHorizontalStretch(0) - sizePolicy.setVerticalStretch(0) - sizePolicy.setHeightForWidth(self.radioButton_network_bysample.sizePolicy().hasHeightForWidth()) - self.radioButton_network_bysample.setSizePolicy(sizePolicy) - self.radioButton_network_bysample.setObjectName("radioButton_network_bysample") - self.gridLayout_6.addWidget(self.radioButton_network_bysample, 3, 0, 1, 1) - self.horizontalLayout_58 = QtWidgets.QHBoxLayout() - self.horizontalLayout_58.setObjectName("horizontalLayout_58") - self.label_78 = QtWidgets.QLabel(self.tab_9) - sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Fixed, QtWidgets.QSizePolicy.Fixed) - sizePolicy.setHorizontalStretch(0) - sizePolicy.setVerticalStretch(0) - sizePolicy.setHeightForWidth(self.label_78.sizePolicy().hasHeightForWidth()) - self.label_78.setSizePolicy(sizePolicy) - self.label_78.setObjectName("label_78") - self.horizontalLayout_58.addWidget(self.label_78) - self.spinBox_tfnet_top_num = QtWidgets.QSpinBox(self.tab_9) - sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Minimum, QtWidgets.QSizePolicy.Fixed) - sizePolicy.setHorizontalStretch(0) - sizePolicy.setVerticalStretch(0) - sizePolicy.setHeightForWidth(self.spinBox_tfnet_top_num.sizePolicy().hasHeightForWidth()) - self.spinBox_tfnet_top_num.setSizePolicy(sizePolicy) - self.spinBox_tfnet_top_num.setMinimum(1) - self.spinBox_tfnet_top_num.setMaximum(99999) - self.spinBox_tfnet_top_num.setProperty("value", 10) - self.spinBox_tfnet_top_num.setObjectName("spinBox_tfnet_top_num") - self.horizontalLayout_58.addWidget(self.spinBox_tfnet_top_num) - self.label_79 = QtWidgets.QLabel(self.tab_9) - sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Fixed, QtWidgets.QSizePolicy.Preferred) - sizePolicy.setHorizontalStretch(0) - sizePolicy.setVerticalStretch(0) - sizePolicy.setHeightForWidth(self.label_79.sizePolicy().hasHeightForWidth()) - self.label_79.setSizePolicy(sizePolicy) - self.label_79.setAlignment(QtCore.Qt.AlignRight|QtCore.Qt.AlignTrailing|QtCore.Qt.AlignVCenter) - self.label_79.setObjectName("label_79") - self.horizontalLayout_58.addWidget(self.label_79) - self.comboBox_tfnet_top_by = QtWidgets.QComboBox(self.tab_9) - self.comboBox_tfnet_top_by.setObjectName("comboBox_tfnet_top_by") - self.comboBox_tfnet_top_by.addItem("") - self.comboBox_tfnet_top_by.addItem("") - self.comboBox_tfnet_top_by.addItem("") - self.comboBox_tfnet_top_by.addItem("") - self.comboBox_tfnet_top_by.addItem("") - self.comboBox_tfnet_top_by.addItem("") - self.comboBox_tfnet_top_by.addItem("") - self.comboBox_tfnet_top_by.addItem("") - self.comboBox_tfnet_top_by.addItem("") - self.comboBox_tfnet_top_by.addItem("") - self.comboBox_tfnet_top_by.addItem("") - self.horizontalLayout_58.addWidget(self.comboBox_tfnet_top_by) - self.checkBox_tfnet_top_filtered = QtWidgets.QCheckBox(self.tab_9) - sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Fixed, QtWidgets.QSizePolicy.Fixed) - sizePolicy.setHorizontalStretch(0) - sizePolicy.setVerticalStretch(0) - sizePolicy.setHeightForWidth(self.checkBox_tfnet_top_filtered.sizePolicy().hasHeightForWidth()) - self.checkBox_tfnet_top_filtered.setSizePolicy(sizePolicy) - self.checkBox_tfnet_top_filtered.setObjectName("checkBox_tfnet_top_filtered") - self.horizontalLayout_58.addWidget(self.checkBox_tfnet_top_filtered) - self.gridLayout_6.addLayout(self.horizontalLayout_58, 7, 2, 1, 1) - self.pushButton_tfnet_add_to_list = QtWidgets.QPushButton(self.tab_9) - self.pushButton_tfnet_add_to_list.setEnabled(False) - self.pushButton_tfnet_add_to_list.setObjectName("pushButton_tfnet_add_to_list") - self.gridLayout_6.addWidget(self.pushButton_tfnet_add_to_list, 4, 3, 1, 1) - self.gridLayout_network_group = QtWidgets.QGridLayout() - self.gridLayout_network_group.setObjectName("gridLayout_network_group") - self.gridLayout_6.addLayout(self.gridLayout_network_group, 1, 2, 1, 2) self.pushButton_tfnet_drop_item = QtWidgets.QPushButton(self.tab_9) self.pushButton_tfnet_drop_item.setEnabled(False) sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Preferred, QtWidgets.QSizePolicy.Fixed) @@ -3652,70 +3604,30 @@ def setupUi(self, metaX_main): self.pushButton_tfnet_drop_item.setSizePolicy(sizePolicy) self.pushButton_tfnet_drop_item.setObjectName("pushButton_tfnet_drop_item") self.gridLayout_6.addWidget(self.pushButton_tfnet_drop_item, 10, 0, 1, 1) - self.label_77 = QtWidgets.QLabel(self.tab_9) - sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Preferred, QtWidgets.QSizePolicy.Fixed) - sizePolicy.setHorizontalStretch(0) - sizePolicy.setVerticalStretch(0) - sizePolicy.setHeightForWidth(self.label_77.sizePolicy().hasHeightForWidth()) - self.label_77.setSizePolicy(sizePolicy) - self.label_77.setObjectName("label_77") - self.gridLayout_6.addWidget(self.label_77, 4, 0, 1, 1) - self.comboBox_tfnet_select_list = QtWidgets.QComboBox(self.tab_9) - self.comboBox_tfnet_select_list.setObjectName("comboBox_tfnet_select_list") - self.gridLayout_6.addWidget(self.comboBox_tfnet_select_list, 4, 1, 1, 2) - self.horizontalLayout_9 = QtWidgets.QHBoxLayout() - self.horizontalLayout_9.setObjectName("horizontalLayout_9") - self.label_49 = QtWidgets.QLabel(self.tab_9) - sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Fixed, QtWidgets.QSizePolicy.Preferred) + self.pushButton_tfnet_add_top = QtWidgets.QPushButton(self.tab_9) + self.pushButton_tfnet_add_top.setEnabled(False) + self.pushButton_tfnet_add_top.setObjectName("pushButton_tfnet_add_top") + self.gridLayout_6.addWidget(self.pushButton_tfnet_add_top, 7, 3, 1, 1) + self.radioButton_network_bysample = QtWidgets.QRadioButton(self.tab_9) + sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Fixed, QtWidgets.QSizePolicy.Fixed) sizePolicy.setHorizontalStretch(0) sizePolicy.setVerticalStretch(0) - sizePolicy.setHeightForWidth(self.label_49.sizePolicy().hasHeightForWidth()) - self.label_49.setSizePolicy(sizePolicy) - self.label_49.setObjectName("label_49") - self.horizontalLayout_9.addWidget(self.label_49) - self.comboBox_tfnet_table = QtWidgets.QComboBox(self.tab_9) - self.comboBox_tfnet_table.setEnabled(False) - self.comboBox_tfnet_table.setObjectName("comboBox_tfnet_table") - self.comboBox_tfnet_table.addItem("") - self.comboBox_tfnet_table.addItem("") - self.comboBox_tfnet_table.addItem("") - self.horizontalLayout_9.addWidget(self.comboBox_tfnet_table) - self.label_150 = QtWidgets.QLabel(self.tab_9) - self.label_150.setAlignment(QtCore.Qt.AlignCenter) - self.label_150.setObjectName("label_150") - self.horizontalLayout_9.addWidget(self.label_150) - self.comboBox_network_meta = QtWidgets.QComboBox(self.tab_9) - self.comboBox_network_meta.setObjectName("comboBox_network_meta") - self.horizontalLayout_9.addWidget(self.comboBox_network_meta) - self.gridLayout_6.addLayout(self.horizontalLayout_9, 0, 0, 1, 2) - self.gridLayout_network_sample = QtWidgets.QGridLayout() - self.gridLayout_network_sample.setObjectName("gridLayout_network_sample") - self.gridLayout_6.addLayout(self.gridLayout_network_sample, 3, 1, 1, 3) - self.horizontalLayout_55 = QtWidgets.QHBoxLayout() - self.horizontalLayout_55.setObjectName("horizontalLayout_55") - self.checkBox_tfnetwork_in_condition = QtWidgets.QCheckBox(self.tab_9) - self.checkBox_tfnetwork_in_condition.setLayoutDirection(QtCore.Qt.RightToLeft) - self.checkBox_tfnetwork_in_condition.setObjectName("checkBox_tfnetwork_in_condition") - self.horizontalLayout_55.addWidget(self.checkBox_tfnetwork_in_condition) - self.comboBox_tfnetwork_condition_meta = QtWidgets.QComboBox(self.tab_9) - self.comboBox_tfnetwork_condition_meta.setEnabled(False) - self.comboBox_tfnetwork_condition_meta.setObjectName("comboBox_tfnetwork_condition_meta") - self.horizontalLayout_55.addWidget(self.comboBox_tfnetwork_condition_meta) - self.comboBox_tfnetwork_condition_group = QtWidgets.QComboBox(self.tab_9) - self.comboBox_tfnetwork_condition_group.setEnabled(False) - self.comboBox_tfnetwork_condition_group.setObjectName("comboBox_tfnetwork_condition_group") - self.horizontalLayout_55.addWidget(self.comboBox_tfnetwork_condition_group) - self.gridLayout_6.addLayout(self.horizontalLayout_55, 1, 1, 1, 1) + sizePolicy.setHeightForWidth(self.radioButton_network_bysample.sizePolicy().hasHeightForWidth()) + self.radioButton_network_bysample.setSizePolicy(sizePolicy) + self.radioButton_network_bysample.setObjectName("radioButton_network_bysample") + self.gridLayout_6.addWidget(self.radioButton_network_bysample, 3, 0, 1, 1) self.listWidget_tfnet_focus_list = QtWidgets.QListWidget(self.tab_9) self.listWidget_tfnet_focus_list.setObjectName("listWidget_tfnet_focus_list") self.gridLayout_6.addWidget(self.listWidget_tfnet_focus_list, 8, 1, 9, 2) - self.checkBox_tf_link_net_plot_list_only = QtWidgets.QCheckBox(self.tab_9) - self.checkBox_tf_link_net_plot_list_only.setObjectName("checkBox_tf_link_net_plot_list_only") - self.gridLayout_6.addWidget(self.checkBox_tf_link_net_plot_list_only, 13, 3, 1, 1) - self.pushButton_tfnet_add_top = QtWidgets.QPushButton(self.tab_9) - self.pushButton_tfnet_add_top.setEnabled(False) - self.pushButton_tfnet_add_top.setObjectName("pushButton_tfnet_add_top") - self.gridLayout_6.addWidget(self.pushButton_tfnet_add_top, 7, 3, 1, 1) + self.radioButton_network_bygroup = QtWidgets.QRadioButton(self.tab_9) + sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Fixed, QtWidgets.QSizePolicy.Fixed) + sizePolicy.setHorizontalStretch(0) + sizePolicy.setVerticalStretch(0) + sizePolicy.setHeightForWidth(self.radioButton_network_bygroup.sizePolicy().hasHeightForWidth()) + self.radioButton_network_bygroup.setSizePolicy(sizePolicy) + self.radioButton_network_bygroup.setChecked(True) + self.radioButton_network_bygroup.setObjectName("radioButton_network_bygroup") + self.gridLayout_6.addWidget(self.radioButton_network_bygroup, 1, 0, 1, 1) self.horizontalLayout_57 = QtWidgets.QHBoxLayout() self.horizontalLayout_57.setObjectName("horizontalLayout_57") self.checkBox_tf_link_net_show_label = QtWidgets.QCheckBox(self.tab_9) @@ -3727,6 +3639,50 @@ def setupUi(self, metaX_main): self.checkBox_tf_link_net_rename_taxa.setObjectName("checkBox_tf_link_net_rename_taxa") self.horizontalLayout_57.addWidget(self.checkBox_tf_link_net_rename_taxa) self.gridLayout_6.addLayout(self.horizontalLayout_57, 10, 3, 1, 1) + self.gridLayout_network_sample = QtWidgets.QGridLayout() + self.gridLayout_network_sample.setObjectName("gridLayout_network_sample") + self.gridLayout_6.addLayout(self.gridLayout_network_sample, 3, 1, 1, 3) + self.pushButton_tfnet_clean_list = QtWidgets.QPushButton(self.tab_9) + self.pushButton_tfnet_clean_list.setEnabled(False) + sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Minimum, QtWidgets.QSizePolicy.Fixed) + sizePolicy.setHorizontalStretch(0) + sizePolicy.setVerticalStretch(0) + sizePolicy.setHeightForWidth(self.pushButton_tfnet_clean_list.sizePolicy().hasHeightForWidth()) + self.pushButton_tfnet_clean_list.setSizePolicy(sizePolicy) + self.pushButton_tfnet_clean_list.setObjectName("pushButton_tfnet_clean_list") + self.gridLayout_6.addWidget(self.pushButton_tfnet_clean_list, 13, 0, 1, 1) + self.gridLayout_network_group = QtWidgets.QGridLayout() + self.gridLayout_network_group.setObjectName("gridLayout_network_group") + self.gridLayout_6.addLayout(self.gridLayout_network_group, 1, 2, 1, 2) + self.horizontalLayout_9 = QtWidgets.QHBoxLayout() + self.horizontalLayout_9.setObjectName("horizontalLayout_9") + self.label_49 = QtWidgets.QLabel(self.tab_9) + sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Fixed, QtWidgets.QSizePolicy.Preferred) + sizePolicy.setHorizontalStretch(0) + sizePolicy.setVerticalStretch(0) + sizePolicy.setHeightForWidth(self.label_49.sizePolicy().hasHeightForWidth()) + self.label_49.setSizePolicy(sizePolicy) + self.label_49.setObjectName("label_49") + self.horizontalLayout_9.addWidget(self.label_49) + self.comboBox_tfnet_table = QtWidgets.QComboBox(self.tab_9) + self.comboBox_tfnet_table.setEnabled(False) + self.comboBox_tfnet_table.setObjectName("comboBox_tfnet_table") + self.comboBox_tfnet_table.addItem("") + self.comboBox_tfnet_table.addItem("") + self.comboBox_tfnet_table.addItem("") + self.horizontalLayout_9.addWidget(self.comboBox_tfnet_table) + self.label_150 = QtWidgets.QLabel(self.tab_9) + self.label_150.setAlignment(QtCore.Qt.AlignRight|QtCore.Qt.AlignTrailing|QtCore.Qt.AlignVCenter) + self.label_150.setObjectName("label_150") + self.horizontalLayout_9.addWidget(self.label_150) + self.comboBox_network_meta = QtWidgets.QComboBox(self.tab_9) + self.comboBox_network_meta.setObjectName("comboBox_network_meta") + self.horizontalLayout_9.addWidget(self.comboBox_network_meta) + self.gridLayout_6.addLayout(self.horizontalLayout_9, 0, 0, 1, 2) + self.pushButton_tfnet_add_to_list = QtWidgets.QPushButton(self.tab_9) + self.pushButton_tfnet_add_to_list.setEnabled(False) + self.pushButton_tfnet_add_to_list.setObjectName("pushButton_tfnet_add_to_list") + self.gridLayout_6.addWidget(self.pushButton_tfnet_add_to_list, 4, 3, 1, 1) self.horizontalLayout_56 = QtWidgets.QHBoxLayout() self.horizontalLayout_56.setObjectName("horizontalLayout_56") self.label_50 = QtWidgets.QLabel(self.tab_9) @@ -3774,6 +3730,27 @@ def setupUi(self, metaX_main): self.spinBox_network_height.setObjectName("spinBox_network_height") self.horizontalLayout_56.addWidget(self.spinBox_network_height) self.gridLayout_6.addLayout(self.horizontalLayout_56, 8, 3, 1, 1) + self.comboBox_tfnet_select_list = QtWidgets.QComboBox(self.tab_9) + self.comboBox_tfnet_select_list.setObjectName("comboBox_tfnet_select_list") + self.gridLayout_6.addWidget(self.comboBox_tfnet_select_list, 4, 1, 1, 2) + self.horizontalLayout_55 = QtWidgets.QHBoxLayout() + self.horizontalLayout_55.setObjectName("horizontalLayout_55") + self.checkBox_tfnetwork_in_condition = QtWidgets.QCheckBox(self.tab_9) + self.checkBox_tfnetwork_in_condition.setLayoutDirection(QtCore.Qt.RightToLeft) + self.checkBox_tfnetwork_in_condition.setObjectName("checkBox_tfnetwork_in_condition") + self.horizontalLayout_55.addWidget(self.checkBox_tfnetwork_in_condition) + self.comboBox_tfnetwork_condition_meta = QtWidgets.QComboBox(self.tab_9) + self.comboBox_tfnetwork_condition_meta.setEnabled(False) + self.comboBox_tfnetwork_condition_meta.setObjectName("comboBox_tfnetwork_condition_meta") + self.horizontalLayout_55.addWidget(self.comboBox_tfnetwork_condition_meta) + self.horizontalLayout_80 = QtWidgets.QHBoxLayout() + self.horizontalLayout_80.setObjectName("horizontalLayout_80") + self.comboBox_tfnetwork_condition_group = QtWidgets.QComboBox(self.tab_9) + self.comboBox_tfnetwork_condition_group.setEnabled(False) + self.comboBox_tfnetwork_condition_group.setObjectName("comboBox_tfnetwork_condition_group") + self.horizontalLayout_80.addWidget(self.comboBox_tfnetwork_condition_group) + self.horizontalLayout_55.addLayout(self.horizontalLayout_80) + self.gridLayout_6.addLayout(self.horizontalLayout_55, 1, 1, 1, 1) self.horizontalLayout_69 = QtWidgets.QHBoxLayout() self.horizontalLayout_69.setObjectName("horizontalLayout_69") self.label_163 = QtWidgets.QLabel(self.tab_9) @@ -3786,6 +3763,92 @@ def setupUi(self, metaX_main): self.spinBox_network_font_size.setObjectName("spinBox_network_font_size") self.horizontalLayout_69.addWidget(self.spinBox_network_font_size) self.gridLayout_6.addLayout(self.horizontalLayout_69, 11, 3, 1, 1) + self.horizontalLayout_58 = QtWidgets.QHBoxLayout() + self.horizontalLayout_58.setObjectName("horizontalLayout_58") + self.label_78 = QtWidgets.QLabel(self.tab_9) + sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Fixed, QtWidgets.QSizePolicy.Fixed) + sizePolicy.setHorizontalStretch(0) + sizePolicy.setVerticalStretch(0) + sizePolicy.setHeightForWidth(self.label_78.sizePolicy().hasHeightForWidth()) + self.label_78.setSizePolicy(sizePolicy) + self.label_78.setObjectName("label_78") + self.horizontalLayout_58.addWidget(self.label_78) + self.spinBox_tfnet_top_num = QtWidgets.QSpinBox(self.tab_9) + sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Minimum, QtWidgets.QSizePolicy.Fixed) + sizePolicy.setHorizontalStretch(0) + sizePolicy.setVerticalStretch(0) + sizePolicy.setHeightForWidth(self.spinBox_tfnet_top_num.sizePolicy().hasHeightForWidth()) + self.spinBox_tfnet_top_num.setSizePolicy(sizePolicy) + self.spinBox_tfnet_top_num.setMinimum(1) + self.spinBox_tfnet_top_num.setMaximum(99999) + self.spinBox_tfnet_top_num.setProperty("value", 10) + self.spinBox_tfnet_top_num.setObjectName("spinBox_tfnet_top_num") + self.horizontalLayout_58.addWidget(self.spinBox_tfnet_top_num) + self.label_79 = QtWidgets.QLabel(self.tab_9) + sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Fixed, QtWidgets.QSizePolicy.Preferred) + sizePolicy.setHorizontalStretch(0) + sizePolicy.setVerticalStretch(0) + sizePolicy.setHeightForWidth(self.label_79.sizePolicy().hasHeightForWidth()) + self.label_79.setSizePolicy(sizePolicy) + self.label_79.setAlignment(QtCore.Qt.AlignRight|QtCore.Qt.AlignTrailing|QtCore.Qt.AlignVCenter) + self.label_79.setObjectName("label_79") + self.horizontalLayout_58.addWidget(self.label_79) + self.comboBox_tfnet_top_by = QtWidgets.QComboBox(self.tab_9) + self.comboBox_tfnet_top_by.setObjectName("comboBox_tfnet_top_by") + self.comboBox_tfnet_top_by.addItem("") + self.comboBox_tfnet_top_by.addItem("") + self.comboBox_tfnet_top_by.addItem("") + self.comboBox_tfnet_top_by.addItem("") + self.comboBox_tfnet_top_by.addItem("") + self.comboBox_tfnet_top_by.addItem("") + self.comboBox_tfnet_top_by.addItem("") + self.comboBox_tfnet_top_by.addItem("") + self.comboBox_tfnet_top_by.addItem("") + self.comboBox_tfnet_top_by.addItem("") + self.comboBox_tfnet_top_by.addItem("") + self.horizontalLayout_58.addWidget(self.comboBox_tfnet_top_by) + self.checkBox_tfnet_top_filtered = QtWidgets.QCheckBox(self.tab_9) + sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Fixed, QtWidgets.QSizePolicy.Fixed) + sizePolicy.setHorizontalStretch(0) + sizePolicy.setVerticalStretch(0) + sizePolicy.setHeightForWidth(self.checkBox_tfnet_top_filtered.sizePolicy().hasHeightForWidth()) + self.checkBox_tfnet_top_filtered.setSizePolicy(sizePolicy) + self.checkBox_tfnet_top_filtered.setObjectName("checkBox_tfnet_top_filtered") + self.horizontalLayout_58.addWidget(self.checkBox_tfnet_top_filtered) + self.gridLayout_6.addLayout(self.horizontalLayout_58, 7, 2, 1, 1) + self.pushButton_plot_network = QtWidgets.QPushButton(self.tab_9) + self.pushButton_plot_network.setEnabled(False) + sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Minimum, QtWidgets.QSizePolicy.Expanding) + sizePolicy.setHorizontalStretch(0) + sizePolicy.setVerticalStretch(0) + sizePolicy.setHeightForWidth(self.pushButton_plot_network.sizePolicy().hasHeightForWidth()) + self.pushButton_plot_network.setSizePolicy(sizePolicy) + self.pushButton_plot_network.setCheckable(False) + self.pushButton_plot_network.setObjectName("pushButton_plot_network") + self.gridLayout_6.addWidget(self.pushButton_plot_network, 14, 3, 1, 1) + self.label_77 = QtWidgets.QLabel(self.tab_9) + sizePolicy = QtWidgets.QSizePolicy(QtWidgets.QSizePolicy.Preferred, QtWidgets.QSizePolicy.Fixed) + sizePolicy.setHorizontalStretch(0) + sizePolicy.setVerticalStretch(0) + sizePolicy.setHeightForWidth(self.label_77.sizePolicy().hasHeightForWidth()) + self.label_77.setSizePolicy(sizePolicy) + self.label_77.setObjectName("label_77") + self.gridLayout_6.addWidget(self.label_77, 4, 0, 1, 1) + self.pushButton_tfnet_add_a_list = QtWidgets.QPushButton(self.tab_9) + self.pushButton_tfnet_add_a_list.setEnabled(False) + self.pushButton_tfnet_add_a_list.setObjectName("pushButton_tfnet_add_a_list") + self.gridLayout_6.addWidget(self.pushButton_tfnet_add_a_list, 14, 0, 1, 1) + self.horizontalLayout_85 = QtWidgets.QHBoxLayout() + self.horizontalLayout_85.setObjectName("horizontalLayout_85") + self.checkBox_tf_link_net_plot_list_only = QtWidgets.QCheckBox(self.tab_9) + self.checkBox_tf_link_net_plot_list_only.setObjectName("checkBox_tf_link_net_plot_list_only") + self.horizontalLayout_85.addWidget(self.checkBox_tf_link_net_plot_list_only) + self.checkBox_tf_link_net_plot_list_only_no_link = QtWidgets.QCheckBox(self.tab_9) + self.checkBox_tf_link_net_plot_list_only_no_link.setEnabled(False) + self.checkBox_tf_link_net_plot_list_only_no_link.setChecked(False) + self.checkBox_tf_link_net_plot_list_only_no_link.setObjectName("checkBox_tf_link_net_plot_list_only_no_link") + self.horizontalLayout_85.addWidget(self.checkBox_tf_link_net_plot_list_only_no_link) + self.gridLayout_6.addLayout(self.horizontalLayout_85, 13, 3, 1, 1) self.tabWidget_2.addTab(self.tab_9, "") self.gridLayout_19.addWidget(self.tabWidget_2, 0, 0, 1, 1) self.tabWidget_TaxaFuncAnalyzer.addTab(self.tab_others_stats, "") @@ -4269,11 +4332,11 @@ def setupUi(self, metaX_main): self.retranslateUi(metaX_main) self.stackedWidget.setCurrentIndex(0) - self.tabWidget_TaxaFuncAnalyzer.setCurrentIndex(2) + self.tabWidget_TaxaFuncAnalyzer.setCurrentIndex(6) self.toolBox_2.setCurrentIndex(0) - self.tabWidget_4.setCurrentIndex(0) - self.tabWidget_3.setCurrentIndex(0) - self.tabWidget.setCurrentIndex(1) + self.tabWidget_4.setCurrentIndex(1) + self.tabWidget_3.setCurrentIndex(3) + self.tabWidget.setCurrentIndex(0) self.tabWidget_2.setCurrentIndex(1) self.tabWidget_6.setCurrentIndex(1) self.toolBox_metalab_res_anno.setCurrentIndex(0) @@ -4295,7 +4358,6 @@ def setupUi(self, metaX_main): self.checkBox_basic_heatmap_in_condition.clicked['bool'].connect(self.comboBox_basic_heatmap_condition_meta.setEnabled) # type: ignore self.checkBox_basic_heatmap_in_condition.clicked['bool'].connect(self.comboBox_basic_heatmap_condition_group.setEnabled) # type: ignore self.checkBox_basic_in_condtion.clicked['bool'].connect(self.comboBox_basic_condition_meta.setEnabled) # type: ignore - self.checkBox_basic_in_condtion.clicked['bool'].connect(self.comboBox_basic_condition_group.setEnabled) # type: ignore self.checkBox_tukey_in_condition.clicked['bool'].connect(self.comboBox_tukey_condition_meta.setEnabled) # type: ignore self.checkBox_tukey_in_condition.clicked['bool'].connect(self.comboBox_tukey_condition_group.setEnabled) # type: ignore self.checkBox_group_control_in_condition.clicked['bool'].connect(self.comboBox_group_control_condition_meta.setEnabled) # type: ignore @@ -4303,6 +4365,9 @@ def setupUi(self, metaX_main): self.checkBox_pca_if_show_lable.clicked['bool'].connect(self.checkBox_pca_if_adjust_pca_label.setEnabled) # type: ignore self.checkBox_pca_if_show_lable.clicked['bool'].connect(self.checkBox_sunburst_show_all_lables.setEnabled) # type: ignore self.checkBox_pca_if_show_lable.clicked['bool'].connect(self.doubleSpinBox_basic_pca_label_font_transparency.setEnabled) # type: ignore + self.checkBox_basic_in_condtion.clicked['bool'].connect(self.comboBox_basic_condition_group.setEnabled) # type: ignore + self.checkBox_basic_heatmap_plot_mean.clicked['bool'].connect(self.comboBox_3dbar_sub_meta.setDisabled) # type: ignore + self.checkBox_tf_link_net_plot_list_only.clicked['bool'].connect(self.checkBox_tf_link_net_plot_list_only_no_link.setEnabled) # type: ignore QtCore.QMetaObject.connectSlotsByName(metaX_main) metaX_main.setTabOrder(self.comboBox_taxa_level_to_stast, self.toolButton_meta_table_help) metaX_main.setTabOrder(self.toolButton_meta_table_help, self.comboBox_function_to_stast) @@ -4436,6 +4501,7 @@ def retranslateUi(self, metaX_main): self.label_45.setText(_translate("metaX_main", "Drag to change the processing order")) self.label_102.setText(_translate("metaX_main", "Outliers Handling by")) self.tabWidget_TaxaFuncAnalyzer.setTabText(self.tabWidget_TaxaFuncAnalyzer.indexOf(self.tab_set_taxa_func), _translate("metaX_main", "Set TaxaFunc")) + self.checkBox_basic_in_condtion.setText(_translate("metaX_main", "In Condition")) self.label_70.setText(_translate("metaX_main", "Table")) self.comboBox_table4pca.setItemText(0, _translate("metaX_main", "Taxa")) self.comboBox_table4pca.setItemText(1, _translate("metaX_main", "Functions")) @@ -4443,7 +4509,6 @@ def retranslateUi(self, metaX_main): self.comboBox_table4pca.setItemText(3, _translate("metaX_main", "Peptides")) self.label_146.setText(_translate("metaX_main", "Meta")) self.radioButton_basic_pca_sample.setText(_translate("metaX_main", "Samples")) - self.checkBox_basic_in_condtion.setText(_translate("metaX_main", "In Condition")) self.radioButton_basic_pca_group.setText(_translate("metaX_main", "Groups")) self.label_122.setText(_translate("metaX_main", "Plot Param")) self.checkBox_pca_if_show_group_name_in_label.setToolTip(_translate("metaX_main", "Add group name to Sample names")) @@ -4507,9 +4572,39 @@ def retranslateUi(self, metaX_main): self.pushButton_plot_basic_treemap.setText(_translate("metaX_main", "Plot TreeMap")) self.pushButton_plot_basic_sankey.setText(_translate("metaX_main", "Plot Sankey")) self.tabWidget_4.setTabText(self.tabWidget_4.indexOf(self.tab_12), _translate("metaX_main", "Basic Plot")) + self.radioButton_basic_heatmap_sample.setText(_translate("metaX_main", "Sample")) + self.pushButton_basic_heatmap_get_table.setText(_translate("metaX_main", "Get Table")) + self.pushButton_basic_heatmap_sankey_plot.setText(_translate("metaX_main", "Plot Sankey")) + self.pushButton_basic_bar_plot.setText(_translate("metaX_main", "Plot Bar")) + self.comboBox_3dbar_sub_meta.setToolTip(_translate("metaX_main", "Sub Meta for Bar Plot")) + self.pushButton_basic_heatmap_plot.setText(_translate("metaX_main", "Plot Heatmap")) + self.label_164.setText(_translate("metaX_main", "Sub Meta ")) + self.checkBox_basic_heatmap_in_condition.setText(_translate("metaX_main", "In Condition")) + self.label_34.setText(_translate("metaX_main", "List for Plotting")) self.pushButton_basic_heatmap_add.setToolTip(_translate("metaX_main", "Add selected item to the drawing box")) self.pushButton_basic_heatmap_add.setText(_translate("metaX_main", "Add to List")) - self.label_32.setText(_translate("metaX_main", "Select for plotting")) + self.label_35.setText(_translate("metaX_main", "Width")) + self.label_33.setText(_translate("metaX_main", "Height")) + self.label_108.setText(_translate("metaX_main", "Label Font Size")) + self.label_67.setText(_translate("metaX_main", "Select Top")) + self.label_68.setText(_translate("metaX_main", "Sort by")) + self.comboBox_basic_heatmap_top_by.setItemText(0, _translate("metaX_main", "Total Intensity")) + self.comboBox_basic_heatmap_top_by.setItemText(1, _translate("metaX_main", "Frequency in Samples")) + self.comboBox_basic_heatmap_top_by.setItemText(2, _translate("metaX_main", "Number of links")) + self.comboBox_basic_heatmap_top_by.setItemText(3, _translate("metaX_main", "ANOVA(p-value)")) + self.comboBox_basic_heatmap_top_by.setItemText(4, _translate("metaX_main", "ANOVA(f-statistic)")) + self.comboBox_basic_heatmap_top_by.setItemText(5, _translate("metaX_main", "T-TEST(p-value)")) + self.comboBox_basic_heatmap_top_by.setItemText(6, _translate("metaX_main", "T-TEST(t-statistic)")) + self.comboBox_basic_heatmap_top_by.setItemText(7, _translate("metaX_main", "Deseq2-up(p-value)")) + self.comboBox_basic_heatmap_top_by.setItemText(8, _translate("metaX_main", "Deseq2-down(p-value)")) + self.comboBox_basic_heatmap_top_by.setItemText(9, _translate("metaX_main", "Deseq2-up(log2FC)")) + self.comboBox_basic_heatmap_top_by.setItemText(10, _translate("metaX_main", "Deseq2-down(log2FC)")) + self.checkBox_basic_heatmap_top_filtered.setText(_translate("metaX_main", "Filter with threshold")) + self.pushButton_basic_heatmap_drop_item.setText(_translate("metaX_main", "Drop Item")) + self.pushButton_basic_heatmap_clean_list.setText(_translate("metaX_main", "Clean List")) + self.pushButton_basic_heatmap_add_a_list.setToolTip(_translate("metaX_main", "Add a list to the drawing box, make sure there is one item per line.")) + self.pushButton_basic_heatmap_add_a_list.setText(_translate("metaX_main", "Add a list")) + self.label_145.setText(_translate("metaX_main", "Plotting Parameter")) self.label_13.setText(_translate("metaX_main", "Theme")) self.label_31.setText(_translate("metaX_main", "Scale")) self.comboBox_basic_hetatmap_scale.setItemText(0, _translate("metaX_main", "row")) @@ -4530,45 +4625,16 @@ def retranslateUi(self, metaX_main): self.checkBox_basic_hetatmap_show_all_labels_y.setText(_translate("metaX_main", "Y")) self.checkBox_basic_bar_show_legend.setText(_translate("metaX_main", "Bar Lgd")) self.checkBox_basic_bar_plot_percent.setText(_translate("metaX_main", "Bar %")) - self.label_67.setText(_translate("metaX_main", "Select Top")) - self.label_68.setText(_translate("metaX_main", "Sort by")) - self.comboBox_basic_heatmap_top_by.setItemText(0, _translate("metaX_main", "Total Intensity")) - self.comboBox_basic_heatmap_top_by.setItemText(1, _translate("metaX_main", "Frequency in Samples")) - self.comboBox_basic_heatmap_top_by.setItemText(2, _translate("metaX_main", "Number of links")) - self.comboBox_basic_heatmap_top_by.setItemText(3, _translate("metaX_main", "ANOVA(p-value)")) - self.comboBox_basic_heatmap_top_by.setItemText(4, _translate("metaX_main", "ANOVA(f-statistic)")) - self.comboBox_basic_heatmap_top_by.setItemText(5, _translate("metaX_main", "T-TEST(p-value)")) - self.comboBox_basic_heatmap_top_by.setItemText(6, _translate("metaX_main", "T-TEST(t-statistic)")) - self.comboBox_basic_heatmap_top_by.setItemText(7, _translate("metaX_main", "Deseq2-up(p-value)")) - self.comboBox_basic_heatmap_top_by.setItemText(8, _translate("metaX_main", "Deseq2-down(p-value)")) - self.comboBox_basic_heatmap_top_by.setItemText(9, _translate("metaX_main", "Deseq2-up(log2FC)")) - self.comboBox_basic_heatmap_top_by.setItemText(10, _translate("metaX_main", "Deseq2-down(log2FC)")) - self.checkBox_basic_heatmap_top_filtered.setText(_translate("metaX_main", "Filter with threshold")) - self.label_145.setText(_translate("metaX_main", "Plotting Parameter")) + self.radioButton_basic_heatmap_group.setText(_translate("metaX_main", "Group")) + self.label_32.setText(_translate("metaX_main", "Select for plotting")) self.pushButton_basic_heatmap_add_top.setToolTip(_translate("metaX_main", "Add conditionally filtered items to the drawing box")) self.pushButton_basic_heatmap_add_top.setText(_translate("metaX_main", "Add Top to List")) - self.label_35.setText(_translate("metaX_main", "Width")) - self.label_33.setText(_translate("metaX_main", "Height")) - self.label_108.setText(_translate("metaX_main", "Label Font Size")) - self.pushButton_basic_heatmap_get_table.setText(_translate("metaX_main", "Get Table")) - self.pushButton_basic_heatmap_sankey_plot.setText(_translate("metaX_main", "Plot Sankey")) - self.pushButton_basic_heatmap_plot.setText(_translate("metaX_main", "Plot Heatmap")) - self.pushButton_basic_bar_plot.setText(_translate("metaX_main", "Plot Bar")) - self.comboBox_3dbar_sub_meta.setToolTip(_translate("metaX_main", "Sub Meta for Bar Plot")) - self.pushButton_basic_heatmap_drop_item.setText(_translate("metaX_main", "Drop Item")) - self.pushButton_basic_heatmap_clean_list.setText(_translate("metaX_main", "Clean List")) - self.pushButton_basic_heatmap_add_a_list.setToolTip(_translate("metaX_main", "Add a list to the drawing box, make sure there is one item per line.")) - self.pushButton_basic_heatmap_add_a_list.setText(_translate("metaX_main", "Add a list")) - self.radioButton_basic_heatmap_group.setText(_translate("metaX_main", "Group")) self.label_80.setText(_translate("metaX_main", "Table")) self.comboBox_basic_table.setItemText(0, _translate("metaX_main", "Taxa")) self.comboBox_basic_table.setItemText(1, _translate("metaX_main", "Functions")) self.comboBox_basic_table.setItemText(2, _translate("metaX_main", "Taxa-Functions")) self.comboBox_basic_table.setItemText(3, _translate("metaX_main", "Peptides")) self.label_144.setText(_translate("metaX_main", "Meta")) - self.label_34.setText(_translate("metaX_main", "List for Plotting")) - self.radioButton_basic_heatmap_sample.setText(_translate("metaX_main", "Sample")) - self.checkBox_basic_heatmap_in_condition.setText(_translate("metaX_main", "In Condition")) self.tabWidget_4.setTabText(self.tabWidget_4.indexOf(self.tab_13), _translate("metaX_main", "Heatmap and Bar")) self.label_81.setText(_translate("metaX_main", "Peptide")) self.pushButton_basic_peptide_query.setText(_translate("metaX_main", "Query")) @@ -4750,7 +4816,6 @@ def retranslateUi(self, metaX_main): self.pushButton_trends_add.setText(_translate("metaX_main", "Add to List")) self.radioButton_trends_sample.setText(_translate("metaX_main", "Sample")) self.pushButton_trends_plot_trends.setText(_translate("metaX_main", "Plot Trends")) - self.checkBox_trends_in_condition.setText(_translate("metaX_main", "In Condition")) self.checkBox_trends_plot_interactive_show_legend.setText(_translate("metaX_main", "Show Legend")) self.label_95.setText(_translate("metaX_main", "Cluster Number")) self.label_99.setText(_translate("metaX_main", "Select Top")) @@ -4771,14 +4836,9 @@ def retranslateUi(self, metaX_main): self.pushButton_trends_add_a_list.setText(_translate("metaX_main", "Add a list")) self.label_158.setText(_translate("metaX_main", "Font Size")) self.label_98.setText(_translate("metaX_main", "List for Plotting")) + self.checkBox_trends_in_condition.setText(_translate("metaX_main", "In Condition")) self.tabWidget.setTabText(self.tabWidget.indexOf(self.tab_15), _translate("metaX_main", "Expression Trends")) self.tabWidget_TaxaFuncAnalyzer.setTabText(self.tabWidget_TaxaFuncAnalyzer.indexOf(self.tab_diff_stats), _translate("metaX_main", "Differential analysis")) - self.label_18.setText(_translate("metaX_main", "Function")) - self.label_19.setText(_translate("metaX_main", "Taxa")) - self.pushButton_others_fresh_taxa_func.setToolTip(_translate("metaX_main", "Restore both lists to their original full items")) - self.pushButton_others_fresh_taxa_func.setText(_translate("metaX_main", "Reset List")) - self.label_others_func_num.setText(_translate("metaX_main", "Linked Number: -")) - self.radioButton_tflink_sample.setText(_translate("metaX_main", "Sample")) self.label_23.setText(_translate("metaX_main", "Scale")) self.comboBox_tflink_hetatmap_scale.setItemText(0, _translate("metaX_main", "row")) self.comboBox_tflink_hetatmap_scale.setItemText(1, _translate("metaX_main", "column")) @@ -4791,8 +4851,7 @@ def retranslateUi(self, metaX_main): self.checkBox_tflink_hetatmap_rename_sample.setText(_translate("metaX_main", " Samples")) self.checkBox_tflink_hetatmap_rename_taxa.setText(_translate("metaX_main", "Taxa")) self.checkBox_tflink_bar_plot_percent.setText(_translate("metaX_main", "Bar Percent")) - self.pushButton_others_plot_heatmap.setText(_translate("metaX_main", "Plot Heatmap")) - self.pushButton_others_plot_line.setText(_translate("metaX_main", "Plot Bar")) + self.label_18.setText(_translate("metaX_main", "Function")) self.label_21.setText(_translate("metaX_main", "Width")) self.label_20.setText(_translate("metaX_main", "Height")) self.label_110.setText(_translate("metaX_main", "Label Font Size")) @@ -4800,7 +4859,14 @@ def retranslateUi(self, metaX_main): self.checkBox_tflink_hetatmap_row_cluster.setText(_translate("metaX_main", "Row Cluster")) self.checkBox_tflink_bar_show_legend.setText(_translate("metaX_main", "Show Legend")) self.checkBox_tflink_plot_mean.setText(_translate("metaX_main", "Plot Mean")) - self.pushButton_others_show_linked_taxa.setText(_translate("metaX_main", "Show Linked Taxa Only")) + self.label_149.setText(_translate("metaX_main", "Meta")) + self.checkBox_tflink_in_condition.setText(_translate("metaX_main", "In Condition")) + self.radioButton_tflink_sample.setText(_translate("metaX_main", "Sample")) + self.pushButton_others_get_intensity_matrix.setText(_translate("metaX_main", "Get Intensity Matrix")) + self.pushButton_others_plot_heatmap.setText(_translate("metaX_main", "Plot Heatmap")) + self.pushButton_others_plot_line.setText(_translate("metaX_main", "Plot Bar")) + self.label_19.setText(_translate("metaX_main", "Taxa")) + self.radioButton_tflink_group.setText(_translate("metaX_main", "Group")) self.label_75.setText(_translate("metaX_main", "Filter Top")) self.label_76.setText(_translate("metaX_main", "By")) self.comboBox_tflink_top_by.setItemText(0, _translate("metaX_main", "Total Intensity")) @@ -4817,19 +4883,32 @@ def retranslateUi(self, metaX_main): self.checkBox_tflink_top_filtered.setText(_translate("metaX_main", "Filter with threshold")) self.pushButton_tflink_filter.setToolTip(_translate("metaX_main", "Filter items in the two lists by condition")) self.pushButton_tflink_filter.setText(_translate("metaX_main", "Filter")) - self.pushButton_others_get_intensity_matrix.setText(_translate("metaX_main", "Get Intensity Matrix")) + self.pushButton_others_fresh_taxa_func.setToolTip(_translate("metaX_main", "Restore both lists to their original full items")) + self.pushButton_others_fresh_taxa_func.setText(_translate("metaX_main", "Reset List")) + self.label_others_func_num.setText(_translate("metaX_main", "Linked Number: -")) + self.pushButton_others_show_linked_taxa.setText(_translate("metaX_main", "Show Linked Taxa Only")) self.label_others_taxa_num.setText(_translate("metaX_main", "Linked Number: -")) self.pushButton_others_show_linked_func.setText(_translate("metaX_main", "Show Linked Func Only")) - self.radioButton_tflink_group.setText(_translate("metaX_main", "Group")) - self.checkBox_tflink_in_condition.setText(_translate("metaX_main", "In Condition")) - self.label_149.setText(_translate("metaX_main", "Meta")) self.tabWidget_2.setTabText(self.tabWidget_2.indexOf(self.tab_8), _translate("metaX_main", "Taxa-Func Link")) - self.pushButton_plot_network.setText(_translate("metaX_main", "Plot Ntework")) - self.pushButton_tfnet_clean_list.setText(_translate("metaX_main", "Clean List")) - self.radioButton_network_bygroup.setText(_translate("metaX_main", "Group")) - self.pushButton_tfnet_add_a_list.setToolTip(_translate("metaX_main", "Add a list to the drawing box, make sure there is one item per line.")) - self.pushButton_tfnet_add_a_list.setText(_translate("metaX_main", "Add a list")) + self.pushButton_tfnet_drop_item.setText(_translate("metaX_main", "Drop Item")) + self.pushButton_tfnet_add_top.setToolTip(_translate("metaX_main", "Add conditionally filtered items to the drawing box")) + self.pushButton_tfnet_add_top.setText(_translate("metaX_main", "Add Top to List")) self.radioButton_network_bysample.setText(_translate("metaX_main", "Sample")) + self.radioButton_network_bygroup.setText(_translate("metaX_main", "Group")) + self.checkBox_tf_link_net_show_label.setText(_translate("metaX_main", "Show Labels")) + self.checkBox_tf_link_net_rename_taxa.setText(_translate("metaX_main", "Raname Taxa")) + self.pushButton_tfnet_clean_list.setText(_translate("metaX_main", "Clean List")) + self.label_49.setText(_translate("metaX_main", "Table")) + self.comboBox_tfnet_table.setItemText(0, _translate("metaX_main", "Taxa")) + self.comboBox_tfnet_table.setItemText(1, _translate("metaX_main", "Functions")) + self.comboBox_tfnet_table.setItemText(2, _translate("metaX_main", "Taxa-Functions")) + self.label_150.setText(_translate("metaX_main", "Meta")) + self.pushButton_tfnet_add_to_list.setToolTip(_translate("metaX_main", "Add selected item to the drawing box")) + self.pushButton_tfnet_add_to_list.setText(_translate("metaX_main", "Add to Focus List")) + self.label_50.setText(_translate("metaX_main", "Width")) + self.label_51.setText(_translate("metaX_main", "Height")) + self.checkBox_tfnetwork_in_condition.setText(_translate("metaX_main", "In Condition")) + self.label_163.setText(_translate("metaX_main", "Font Size")) self.label_78.setText(_translate("metaX_main", "Select Top")) self.label_79.setText(_translate("metaX_main", "Sort by")) self.comboBox_tfnet_top_by.setItemText(0, _translate("metaX_main", "Total Intensity")) @@ -4844,24 +4923,12 @@ def retranslateUi(self, metaX_main): self.comboBox_tfnet_top_by.setItemText(9, _translate("metaX_main", "Deseq2-up(log2FC)")) self.comboBox_tfnet_top_by.setItemText(10, _translate("metaX_main", "Deseq2-down(log2FC)")) self.checkBox_tfnet_top_filtered.setText(_translate("metaX_main", "Filter with threshold")) - self.pushButton_tfnet_add_to_list.setToolTip(_translate("metaX_main", "Add selected item to the drawing box")) - self.pushButton_tfnet_add_to_list.setText(_translate("metaX_main", "Add to Focus List")) - self.pushButton_tfnet_drop_item.setText(_translate("metaX_main", "Drop Item")) + self.pushButton_plot_network.setText(_translate("metaX_main", "Plot Ntework")) self.label_77.setText(_translate("metaX_main", "Focus List")) - self.label_49.setText(_translate("metaX_main", "Table")) - self.comboBox_tfnet_table.setItemText(0, _translate("metaX_main", "Taxa")) - self.comboBox_tfnet_table.setItemText(1, _translate("metaX_main", "Functions")) - self.comboBox_tfnet_table.setItemText(2, _translate("metaX_main", "Taxa-Functions")) - self.label_150.setText(_translate("metaX_main", "Meta")) - self.checkBox_tfnetwork_in_condition.setText(_translate("metaX_main", "In Condition")) + self.pushButton_tfnet_add_a_list.setToolTip(_translate("metaX_main", "Add a list to the drawing box, make sure there is one item per line.")) + self.pushButton_tfnet_add_a_list.setText(_translate("metaX_main", "Add a list")) self.checkBox_tf_link_net_plot_list_only.setText(_translate("metaX_main", "Plot List Only")) - self.pushButton_tfnet_add_top.setToolTip(_translate("metaX_main", "Add conditionally filtered items to the drawing box")) - self.pushButton_tfnet_add_top.setText(_translate("metaX_main", "Add Top to List")) - self.checkBox_tf_link_net_show_label.setText(_translate("metaX_main", "Show Labels")) - self.checkBox_tf_link_net_rename_taxa.setText(_translate("metaX_main", "Raname Taxa")) - self.label_50.setText(_translate("metaX_main", "Width")) - self.label_51.setText(_translate("metaX_main", "Height")) - self.label_163.setText(_translate("metaX_main", "Font Size")) + self.checkBox_tf_link_net_plot_list_only_no_link.setText(_translate("metaX_main", "Without Links")) self.tabWidget_2.setTabText(self.tabWidget_2.indexOf(self.tab_9), _translate("metaX_main", "Taxa-Func Network")) self.tabWidget_TaxaFuncAnalyzer.setTabText(self.tabWidget_TaxaFuncAnalyzer.indexOf(self.tab_others_stats), _translate("metaX_main", "Taxa-Func Link")) self.pushButton_view_table.setText(_translate("metaX_main", "View Table")) diff --git a/utils/MetaX_GUI/Ui_Setting.py b/metax/gui/metax_gui/ui_setting_window.py similarity index 100% rename from utils/MetaX_GUI/Ui_Setting.py rename to metax/gui/metax_gui/ui_setting_window.py diff --git a/utils/MetaX_GUI/Ui_Table_view.py b/metax/gui/metax_gui/ui_table_view.py similarity index 100% rename from utils/MetaX_GUI/Ui_Table_view.py rename to metax/gui/metax_gui/ui_table_view.py diff --git a/utils/MetaX_GUI/UserAgreementDialog.py b/metax/gui/metax_gui/user_agreement_dialog.py similarity index 100% rename from utils/MetaX_GUI/UserAgreementDialog.py rename to metax/gui/metax_gui/user_agreement_dialog.py diff --git a/utils/MetaX_GUI/webDialog.py b/metax/gui/metax_gui/web_dialog.py similarity index 100% rename from utils/MetaX_GUI/webDialog.py rename to metax/gui/metax_gui/web_dialog.py diff --git a/utils/TaxaFuncPloter/__init__.py b/metax/peptide_annotator/__init__.py similarity index 100% rename from utils/TaxaFuncPloter/__init__.py rename to metax/peptide_annotator/__init__.py diff --git a/utils/convert_ID_to_name.py b/metax/peptide_annotator/convert_id_to_name.py similarity index 76% rename from utils/convert_ID_to_name.py rename to metax/peptide_annotator/convert_id_to_name.py index 1764611..783d720 100644 --- a/utils/convert_ID_to_name.py +++ b/metax/peptide_annotator/convert_id_to_name.py @@ -26,11 +26,20 @@ def download_ec_files(save_path): except Exception as e: print('Error: download enzyme.dat failed!') print(e) + +def download_ko_files(save_path): + url = "https://rest.kegg.jp/list/ko" + try: + urllib.request.urlretrieve(url, os.path.join(save_path, 'ko.tsv')) + print(f'ko.tsv downloaded to {save_path}') + except Exception as e: + print('Error: download ko.tsv failed!') + print(e) def parse_dat_file(file_path): if not os.path.exists(file_path): - print(f'Error: {file_path} does not exist! Try to download the file from https://ftp.expasy.org/databases/enzyme/enzyme.dat') + print(f'{file_path} does not exist!\nTry to download the file from https://ftp.expasy.org/databases/enzyme/enzyme.dat') download_ec_files(os.path.dirname(file_path)) with open(file_path, 'r') as file: @@ -101,7 +110,7 @@ def get_pathway_dict(): script_path = os.path.dirname(os.path.realpath(__file__)) dat_path = os.path.join(script_path, '../data/pathway.tsv') if not os.path.exists(dat_path): - print(f'Error: {dat_path} does not exist! Try to download the file from https://rest.kegg.jp/list/pathway') + print(f'{dat_path} does not exist!\nTry to download the file from https://rest.kegg.jp/list/pathway') download_kegg_files(os.path.dirname(dat_path)) # create a dictionary of pathway IDs and names @@ -165,22 +174,25 @@ def lookup_and_join(ec_nums, column_name): df['EC_CA_prop'] = df['EC_prop'] df.fillna('-', inplace=True) df.replace('', '-', inplace=True) - + print("Add EC columns to df successfully!") return df def add_pathway_name_to_df(df: pd.DataFrame) -> pd.DataFrame: def query_kegg(id_str, pathway_dict): id_list = id_str.split(',') if id_list[0] == 'not_found': - return '-' + return 'not_found' pathway_list = [] for id in id_list: if id in pathway_dict: pathway_list.append(pathway_dict[id]) # remove duplicates - pathway_list = list(set(pathway_list)) + pathway_list = list(dict.fromkeys(pathway_list)) + if len(pathway_list) == 0: + return '-' + # join the list into a string - pathway_list = ';'.join(pathway_list) + pathway_list = '|'.join(pathway_list) return pathway_list # check if the column 'KEGG_Pathway' exists @@ -191,13 +203,54 @@ def query_kegg(id_str, pathway_dict): pathway_dict = get_pathway_dict() df.loc[:, 'KEGG_Pathway_name'] = df['KEGG_Pathway'].apply(lambda x: query_kegg(x, pathway_dict)) df.loc[:, 'KEGG_Pathway_name_prop'] = df['KEGG_Pathway_prop'] + print("Add KEGG_Pathway_name to df successfully!") + return df + +def add_ko_name_to_df(df: pd.DataFrame) -> pd.DataFrame: + def query_ko(id_str, ko_dict): + id_list = id_str.split(',') + ko_list = [] + for ko_id in id_list: + if ko_id in ['not_found', '-']: + ko_list.append('-') + else: + ko_id = ko_id.split(':')[1] + ko_name = ko_dict.get(ko_id, '-') + ko_list.append(f'{ko_id}:{ko_name}') + # join the list into a string + ko_name_str = '|'.join(ko_list) + return ko_name_str + + + # check if the column 'KEGG_ko' exists + if 'KEGG_ko' not in df.columns: + print('KEGG_ko column does not exist!, return the original dataframe') + return df + # read ko.tsv + script_path = os.path.dirname(os.path.realpath(__file__)) + ko_path = os.path.join(script_path, '../data/ko.tsv') + if not os.path.exists(ko_path): + print(f'{ko_path} does not exist!\nTry to download the file from https://rest.kegg.jp/list/ko') + download_ko_files(os.path.dirname(ko_path)) + ko_dict = {} + with open(ko_path, 'r') as f: + for line in f: + line = line.strip().split('\t') + ko_dict[line[0]] = line[1] + + df.loc[:, 'KEGG_ko_name'] = df['KEGG_ko'].apply(lambda x: query_ko(x, ko_dict)) + df.loc[:, 'KEGG_ko_name_prop'] = df['KEGG_ko_prop'] + print("Add KEGG_ko_name to df successfully!") return df + + + # if __name__ == '__main__': -# df_path = "MetaX/data/example_data/Example_final_peptide2.tsv" +# df_path = "MetaX/data/example_data/Example_OTF.tsv" # df = pd.read_csv(df_path, sep='\t') # df = add_pathway_name_to_df(df) # df = add_ec_name_to_df(df) -# df.head() -# df.to_csv("1.tsv", sep='\t', index=False) \ No newline at end of file +# df = add_ko_name_to_df(df) +# df.to_csv("11.tsv", sep='\t', index=False) \ No newline at end of file diff --git a/utils/metalab2otf.py b/metax/peptide_annotator/metalab2otf.py similarity index 100% rename from utils/metalab2otf.py rename to metax/peptide_annotator/metalab2otf.py diff --git a/utils/pep2taxafunc.py b/metax/peptide_annotator/pep_to_taxafunc.py similarity index 53% rename from utils/pep2taxafunc.py rename to metax/peptide_annotator/pep_to_taxafunc.py index b9a01dd..f5a3159 100644 --- a/utils/pep2taxafunc.py +++ b/metax/peptide_annotator/pep_to_taxafunc.py @@ -44,131 +44,157 @@ # Date: 2024-03-05 # Version:0.2.10 # add an option to count the genome level in the taxonomic level +# +# Date: 2024-07-14 +# Version:0.2.11 +# change it to a class for easy to use from collections import Counter import sqlite3 -# open the database of eggNOG animation of MGYG and return the connection -def open_eggnog_db(db_path): - conn = sqlite3.connect(db_path) - conn.cursor() - return conn - -# return a list of taxonomic levels of each protein -def query_taxon_from_db(conn, protein_list, genome_mode = True): - c = conn.cursor() - taxa = [] - sql = 'SELECT Taxa from id2taxa where ID = ?' - for i in protein_list: - i = i.split('_')[0] - if re := c.execute(sql, (i,)).fetchone(): - taxa_str = re[0] - if genome_mode: - taxa_genome = f'{taxa_str};m__{i}' - taxa.append(taxa_genome) - else: - taxa.append(taxa_str) - else: - #taxon_level.append('d__NULL;p__NULL;c__NULL;o__NULL;f__NULL;g__NULL;s__NULL') - taxa.append('not_found') - - return taxa - - - -# return the last common ancestor and its percentage -def find_LCA(taxa_list: list, threshold: float =1.0, genome_mode = True): - # split the taxon level by semicolon for each element in the list - taxa_list = [tax.split(';') for tax in taxa_list] - taxa_level_dict = {'d': 'domain', 'p': 'phylum', 'c': 'class', - 'o': 'order', 'f': 'family', 'g': 'genus', 's': 'species'} - if genome_mode: - taxa_level_dict['m'] = 'genome' # add genome level - tax_re = None - # '6543210' present the location of the taxon level in the list(s to d) - # for j in range(6, -1, -1): - for j in range(7, -1, -1) if genome_mode else range(6, -1, -1): - # join the taxon level by the level number - taxa_level_list = [str.join('|', k[:int(j)+1]) for k in taxa_list] - - most = Counter(taxa_level_list).most_common(1) - proportion = most[0][1] / len(taxa_level_list) - tax = most[0][0] - if tax == 'not_found': - tax_re = 'not_found', tax, proportion - - elif proportion >= float(threshold) and tax.split('__')[-1] != '': - lca_level = taxa_level_dict[tax.split('|')[-1].split('__')[0]] - tax_re = lca_level, tax, proportion - break - elif j == 0 and tax_re is None: - # when taxa level move to domain and still not_found, return 'l' means 'life' - tax_re = 'life', tax, proportion - - return tax_re - -# return a dict of anatation of each protein -def query_protein_from_db(conn, protein_list): - c = conn.cursor() - # get all columns name - c.execute('select * from id2annotation') - col_name = [tuple[0] for tuple in c.description] - # remove the columns that not need - for i in ['ID', 'seed_ortholog', 'evalue', 'score']: - if i in col_name: - col_name.remove(i) - - sql = 'SELECT ' + ','.join(col_name) + ' from id2annotation where ID = ?' - re_dict = {i: [] for i in col_name} - - for i in protein_list: - re = c.execute(sql, (i,)).fetchone() - if re is not None: - for j in range(len(re)): - func = re[j] - if func not in ['', '-']: - re_dict[list(re_dict.keys())[j]].append(func) +class Pep2TaxaFunc: + def __init__( + self, + db_path: str | None = None, + threshold: float = 1.0, + genome_mode: bool = True, + conn=None, + protein_genome_separator="_", + ): + if db_path is None and conn is None: + raise ValueError('Please provide the path of the database or the connection of the database') + + self.db_path = db_path + self.threshold = threshold + self.genome_mode = genome_mode + self.protein_genome_separator = protein_genome_separator + self.conn = conn or self.open_eggnog_db() + + + # open the database of eggNOG animation of MGYG and return the connection + def open_eggnog_db(self): + if self.db_path is None: + raise ValueError('Database path is required to open a new connection') + conn = sqlite3.connect(self.db_path) + return conn + + + # return a list of taxonomic levels of each protein + def query_taxon_from_db(self, protein_list, genome_mode = True): + c = self.conn.cursor() + taxa = [] + sql = 'SELECT Taxa from id2taxa where ID = ?' + for i in protein_list: + i = i.split(self.protein_genome_separator)[0] + if re := c.execute(sql, (i,)).fetchone(): + taxa_str = re[0] + if genome_mode: + taxa_genome = f'{taxa_str};m__{i}' + taxa.append(taxa_genome) else: - re_dict[list(re_dict.keys())[j]].append('-') + taxa.append(taxa_str) + else: + #taxon_level.append('d__NULL;p__NULL;c__NULL;o__NULL;f__NULL;g__NULL;s__NULL') + taxa.append('not_found') - else: - for v in re_dict.values(): - # if the protein is not found in the database, return 'not_found' - v.append('not_found') + return taxa - return re_dict + # return the last common ancestor and its percentage + def find_LCA(self,taxa_list: list): + # split the taxon level by semicolon for each element in the list + taxa_list = [tax.split(';') for tax in taxa_list] + taxa_level_dict = {'d': 'domain', 'p': 'phylum', 'c': 'class', + 'o': 'order', 'f': 'family', 'g': 'genus', 's': 'species'} + if self.genome_mode: + taxa_level_dict['m'] = 'genome' # add genome level + level_range = range(7, -1, -1) + else: + level_range = range(6, -1, -1) + + tax_re = None + + # '6543210' present the location of the taxon level in the list(s to d) + # for j in range(6, -1, -1): + for j in level_range: + # join the taxon level by the level number + taxa_level_list = [str.join('|', k[:int(j)+1]) for k in taxa_list] + + most = Counter(taxa_level_list).most_common(1) + proportion = most[0][1] / len(taxa_level_list) + tax = most[0][0] + if tax == 'not_found': + tax_re = 'not_found', tax, proportion + + elif proportion >= float(self.threshold) and tax.split('__')[-1] != '': + lca_level = taxa_level_dict[tax.split('|')[-1].split('__')[0]] + tax_re = lca_level, tax, proportion + break + elif j == 0 and tax_re is None: + # when taxa level move to domain and still not_found, return 'l' means 'life' + tax_re = 'life', tax, proportion + + return tax_re + + # return a dict of anatation of each protein + def query_protein_from_db(self, protein_list): + c = self.conn.cursor() + # get all columns name + c.execute('select * from id2annotation') + col_name = [tuple[0] for tuple in c.description] + # remove the columns that not need + for i in ['ID', 'seed_ortholog', 'evalue', 'score']: + if i in col_name: + col_name.remove(i) + + sql = 'SELECT ' + ','.join(col_name) + ' from id2annotation where ID = ?' + re_dict = {i: [] for i in col_name} + + for i in protein_list: + re = c.execute(sql, (i,)).fetchone() + if re is not None: + for j in range(len(re)): + func = re[j] + if func not in ['', '-']: + re_dict[list(re_dict.keys())[j]].append(func) + else: + re_dict[list(re_dict.keys())[j]].append('-') + else: + for v in re_dict.values(): + # if the protein is not found in the database, return 'not_found' + v.append('not_found') + return re_dict -# find the most common annotation and its percentage -def stats_fun(re_dict): - for i in re_dict: - re_dict[i] = Counter(re_dict[i]).most_common(1)[0][0], Counter(re_dict[i]).most_common(1)[0][1]/len(re_dict[i]) - return re_dict -# return a dict of taxonomic level and annotation and their percentage -def create_dict_out(function_results, taxa_results): - taxa_level, taxa, taxa_prop = taxa_results[0], taxa_results[1], round(taxa_results[2], ndigits=4) - re_out = {'LCA_level': taxa_level, 'Taxon': taxa, 'Taxon_prop': taxa_prop} - for function, (result, proportion) in function_results.items(): - re_out[function] = result - re_out[f'{function}_prop'] = proportion - return re_out + # find the most common annotation and its percentage + def stats_fun(self,re_dict): + for i in re_dict: + re_dict[i] = Counter(re_dict[i]).most_common(1)[0][0], Counter(re_dict[i]).most_common(1)[0][1]/len(re_dict[i]) + return re_dict - -def proteins_to_taxa_func(protein_list: list, db_path: str, threshold = 1.0, genome_mode =True ) -> dict: - conn = open_eggnog_db(db_path) + # return a dict of taxonomic level and annotation and their percentage + def create_dict_out(self,function_results, taxa_results): + taxa_level, taxa, taxa_prop = taxa_results[0], taxa_results[1], round(taxa_results[2], ndigits=4) + re_out = {'LCA_level': taxa_level, 'Taxon': taxa, 'Taxon_prop': taxa_prop} + for function, (result, proportion) in function_results.items(): + re_out[function] = result + re_out[f'{function}_prop'] = proportion + return re_out - re_dict = query_protein_from_db(conn, protein_list) + + def proteins_to_taxa_func(self,protein_list: list ) -> dict: - fun_re = stats_fun(re_dict = re_dict) + re_dict = self.query_protein_from_db( protein_list) - taxa_list = query_taxon_from_db(conn = conn, protein_list = protein_list, genome_mode = genome_mode) + fun_re = self.stats_fun(re_dict = re_dict) - taxa_re = find_LCA(taxa_list = taxa_list, threshold = threshold, genome_mode = genome_mode) + taxa_list = self.query_taxon_from_db( protein_list = protein_list) - return create_dict_out(fun_re, taxa_re) + taxa_re = self.find_LCA(taxa_list = taxa_list) + + return self.create_dict_out(fun_re, taxa_re) # ### test data @@ -192,17 +218,17 @@ def proteins_to_taxa_func(protein_list: list, db_path: str, threshold = 1.0, ge import time t1 = time.time() - db_path = 'C:/Users/Qing/Desktop/MetaX_Suite/metaX_dev_files/MetaX-human-gut_20231211.db' - - print(db_path) + db_path = 'C:/Users/max/Desktop/MetaX_Suite/MetaX-human-gut-new.db' + + pep2taxafunc = Pep2TaxaFunc(db_path = db_path, threshold = 1, genome_mode = True) # for i in [pep_no_species_level, pep_null, pep2, pep7, pep8, pep9, pep10, pep11]: - for i in [pep_mag_level]: + for i in [pep3]: print(i) protein_list = i.split(';') # re = proteins_to_taxa_func(protein_list, threshold = 1, db_path='C:/Projects/pep2func/id2annotation.db') - re = proteins_to_taxa_func(protein_list, threshold = 1, db_path=db_path) + re = pep2taxafunc.proteins_to_taxa_func(protein_list) keys = list(re.keys()) for i in range(len(keys)): key = keys[i] diff --git a/metax/peptide_annotator/peptable_annotator.py b/metax/peptide_annotator/peptable_annotator.py new file mode 100644 index 0000000..48ade6a --- /dev/null +++ b/metax/peptide_annotator/peptable_annotator.py @@ -0,0 +1,210 @@ +from concurrent.futures import ThreadPoolExecutor +import pandas as pd +import re +from tqdm import tqdm +import time +import os +import threading +import sqlite3 +if __name__ == '__main__': + from pep_to_taxafunc import Pep2TaxaFunc + from convert_id_to_name import add_pathway_name_to_df, add_ec_name_to_df, add_ko_name_to_df +else: + from .pep_to_taxafunc import Pep2TaxaFunc + from .convert_id_to_name import add_pathway_name_to_df, add_ec_name_to_df, add_ko_name_to_df + + +class PeptideAnnotator: + def __init__(self, db_path:str, peptide_path: str, output_path: str, + threshold=1.0, genome_mode=True, protein_separator=';', protein_genome_separator = '_', + protein_col='Proteins', peptide_col='Sequence', sample_col_prefix='Intensity_'): + + self.db_path = db_path + self.peptide_path = peptide_path + self.output_path = output_path + + self.threshold = round(float(threshold), 4) + self.genome_mode = genome_mode + self.protein_separator = protein_separator # the separator between proteins in the proteins group column + self.protein_genome_separator = protein_genome_separator # the separator between protein and genome in each protein ID + self.protein_col = protein_col + self.peptide_col = peptide_col + self.sample_col_prefix = sample_col_prefix + + self.thread_local = threading.local() + + def get_connection(self): + if not hasattr(self.thread_local, "conn"): + self.thread_local.conn = sqlite3.connect(self.db_path) + return self.thread_local.conn + + def get_pep2taxafunc(self): + if not hasattr(self.thread_local, "p2tf"): + self.thread_local.p2tf = Pep2TaxaFunc( + threshold=self.threshold, + genome_mode=self.genome_mode, + conn=self.get_connection(), + protein_genome_separator = self.protein_genome_separator + ) + return self.thread_local.p2tf + + def stat_length(self, seq): + pattern = re.compile(r'\(.*?\)') + return len(re.sub(pattern, '', seq)) + + def count_protein(self, proteins): + return len(proteins.split(self.protein_separator)) + + def run_pep2taxafunc(self, row) -> dict: + protein_list = str(row).split(self.protein_separator) + result = {} + try: + p2tf = self.get_pep2taxafunc() + result = p2tf.proteins_to_taxa_func(protein_list) + except Exception as e: + print(f"Error: {protein_list}") + print(e) + return result + + def add_additional_columns(self, df): + try: + print("Trying to add 'EC_DE', 'EC_AN', 'EC_CC' and 'EC_CA' to the dataframe...") + df = add_ec_name_to_df(df) + except Exception as e: + print('Error: add additional EC columns failed!') + print(e) + + try: + print("Trying to add 'KEGG_Pathway_name' to the dataframe...") + df = add_pathway_name_to_df(df) + except Exception as e: + print('Error: add additional KEGG_Pathway_name column failed!') + print(e) + + try: + print("Trying to add 'KO_name' to the dataframe...") + df = add_ko_name_to_df(df) + except Exception as e: + print('Error: add additional KO_name column failed!') + print(e) + + return df + + def run_2_result(self, df): + tqdm.pandas() + df_t = df.copy() + print('Running proteins_to_taxa_func...') + + with ThreadPoolExecutor() as executor: + futures = [executor.submit(self.run_pep2taxafunc, protein) for protein in df_t[self.protein_col]] + results = [future.result() for future in tqdm(futures, total=len(futures))] + + df_t0 = pd.DataFrame(results, index=df_t.index) + df_t0 = self.add_additional_columns(df_t0) + df_t0['None'] = 'none' + df_t0['None_prop'] = '1.0' + + if 'Description' in df_t0.columns: + df_t0.rename(columns={'Description': 'eggNOG_Description', 'Description_prop': 'eggNOG_Description_prop'}, inplace=True) + if 'Preferred_name' in df_t0.columns: + df_t0.rename(columns={'Preferred_name': 'Gene', 'Preferred_name_prop': 'Gene_prop'}, inplace=True) + else: + print('Warning: column name "Description" does not exist!, skip renaming...') + + df_t = pd.concat([df_t, df_t0], axis=1) + cols = df_t.columns.tolist() + sample_cols = [col for col in cols if col.startswith('Intensity_')] + for col in sample_cols: + cols.remove(col) + cols.append(col) + df_t = df_t.reindex(columns=cols) + return df_t + + def save_result(self, df): + dir_path = os.path.dirname(self.output_path) + if not os.path.exists(dir_path): + os.makedirs(dir_path) + print(f'Output directory did not exist, created: {dir_path}') + + if os.path.exists(self.output_path): + import datetime + counter = 1 + base_name = os.path.splitext(os.path.basename(self.output_path))[0] + ext = os.path.splitext(self.output_path)[-1] + new_output_path = os.path.join(dir_path, f'{base_name}_{datetime.datetime.now().strftime("%Y%m%d%H%M%S")}{ext}') + + while os.path.exists(new_output_path): + counter += 1 + new_output_path = os.path.join(dir_path, f'{base_name}_{counter}{ext}') + self.output_path = new_output_path + print(f'Output file already exists, saved as: {self.output_path}') + + df.to_csv(self.output_path, sep='\t', index=False) + print(f'Output file: {self.output_path}') + print(f'Output shape: {df.shape}') + + + def remove_reversed(self, df): + print('Removing reversed proteins...') + print(f'Original shape: {df.shape}') + try: + df = df[~df['Proteins'].str.contains('REV_')] + print(f'After removing reversed proteins: {df.shape}') + except Exception as e: + print('Error: removing reversed proteins failed!') + print(e) + + return df + + def run_annotate(self): + print('Start running Peptide Annotator...') + print(f'Input file: {self.peptide_path}') + print(f'Database: {self.db_path}') + print(f'Threshold: {self.threshold}') + print(f'Genome mode: {self.genome_mode}') + print(f'Output file: {self.output_path}') + print('-----------------------------------') + + if not os.path.exists(self.peptide_path): + raise FileNotFoundError(f'Input file not found: {self.peptide_path}') + + df = pd.read_csv(self.peptide_path, sep='\t') + df.columns = [col.replace(' ', '_') for col in df.columns] + + print(f'Original shape: {df.shape}') + # exxtract the peptide sequence, protein accessions and sample columns from the dataframe + df = df.loc[:, [self.peptide_col, self.protein_col] + [col for col in df.columns if col.startswith(self.sample_col_prefix)]] + + print(f'After filtering Intensity 0 in all samples and removing other columns: {df.shape}') + + df = self.remove_reversed(df) + + df_res = self.run_2_result(df) + + self.save_result(df_res) + + return df_res + +if __name__ == '__main__': + final_peptides_path = 'peptides.tsv' + output_path = 'OTF.tsv' + db_path = 'metax.db' + threshold = 1 + t0 = time.time() + + annotator = PeptideAnnotator( + db_path=db_path, + peptide_path=final_peptides_path, + output_path=output_path, + threshold=threshold, + genome_mode=True, + protein_separator=';', + protein_genome_separator = '-', + protein_col='Proteins', + peptide_col='Sequence', + sample_col_prefix='CHFL' + + ) + annotator.run_annotate() + + print(f'Running time: {time.time() - t0} seconds') \ No newline at end of file diff --git a/utils/TaxaFuncAnalyzer.py b/metax/taxafunc_analyzer/analyzer.py similarity index 83% rename from utils/TaxaFuncAnalyzer.py rename to metax/taxafunc_analyzer/analyzer.py index 21b9b60..146668e 100644 --- a/utils/TaxaFuncAnalyzer.py +++ b/metax/taxafunc_analyzer/analyzer.py @@ -12,14 +12,14 @@ # restructure the code, move the functions to AnalyzerUtils import pandas as pd - +from typing import Optional, Dict, List, Union # import AnalyzerUtils -from .AnalyzerUtils.DataPreprocessing import DataPreprocessing -from .AnalyzerUtils.SumProteinIntensity import SumProteinIntensity -from .AnalyzerUtils.BasicStats import BasicStats -from .AnalyzerUtils.CrossTest import CrossTest -from .AnalyzerUtils.GetMatrix import GetMatrix +from .analyzer_utils.data_preprocessing import DataPreprocessing +from .analyzer_utils.sum_protein_intensity import SumProteinIntensity +from .analyzer_utils.basic_stats import BasicStats +from .analyzer_utils.cross_test import CrossTest +from .analyzer_utils.get_matrix import GetMatrix import warnings @@ -36,35 +36,35 @@ def __init__( custom_col_name="Custom", ): self.original_row_num = 0 - self.original_df = None + self.original_df: Optional[pd.DataFrame] = None self.has_na_in_original_df = False - self.preprocessed_df = None + self.preprocessed_df: Optional[pd.DataFrame] = None self.genome_mode = True self.peptide_col_name = peptide_col_name self.protein_col_name = protein_col_name self.custom_col_name = custom_col_name - self.sample_list = None - self.meta_df = None - self.meta_name = None - self.group_list = None # a list of group names for each sample, not unique - self.group_dict = None - - self.func_list = None # all the func in the taxaFunc table which has _prop - self.func_name = None - - self.taxa_level = None - self.clean_df = None - self.peptide_df = None - self.taxa_df = None - self.func_df = None - self.taxa_func_df = None - self.func_taxa_df = None - self.taxa_func_linked_dict = None - self.func_taxa_linked_dict = None - self.protein_df = None + self.sample_list: Optional[List[str]] = None + self.meta_df: Optional[pd.DataFrame] = None + self.meta_name: Optional[str] = None + self.group_list: Optional[List[str]] = None # a list of group names for each sample, not unique + self.group_dict: Optional[Dict[str, List[str]]] = None + + self.func_list: Optional[List[str]] = None # all the func in the taxaFunc table which has _prop + self.func_name: Optional[str] = None + + self.taxa_level: Optional[str] = None + self.clean_df: Optional[pd.DataFrame] = None + self.peptide_df: Optional[pd.DataFrame] = None + self.taxa_df: Optional[pd.DataFrame] = None + self.func_df: Optional[pd.DataFrame] = None + self.taxa_func_df: Optional[pd.DataFrame] = None + self.func_taxa_df: Optional[pd.DataFrame] = None + self.taxa_func_linked_dict: Optional[Dict[str, List[tuple]]] = None + self.func_taxa_linked_dict: Optional[Dict[str, List[tuple]]] = None + self.protein_df: Optional[pd.DataFrame] = None self.any_df_mode = any_df_mode # if True, the consider the TaxaFunc df as other_df - self.custom_df = None # other df, any df that user want to add + self.custom_df: Optional[pd.DataFrame] = None # other df, any df that user want to add self.outlier_status = {'peptide': None, 'taxa': None, 'func': None, 'taxa_func': None, 'protein': None, 'custom': None} @@ -129,8 +129,8 @@ def _set_meta(self, meta_path=None) -> None: meta = pd.DataFrame({'Sample': self.sample_list, 'Group_NA': 'NA', 'Sample_Name': self.sample_list}) self.meta_df = meta else: - # read table without fill na - meta = pd.read_csv(meta_path, sep='\t', keep_default_na=False) + # read table without fill na, and as string + meta = pd.read_csv(meta_path, sep='\t', keep_default_na=False, dtype=str) # sample name must be in the first column # rename the first column to Sample meta.rename(columns={meta.columns[0]: 'Sample'}, inplace=True) @@ -280,67 +280,96 @@ def _get_group_dict_from_meta(self, meta: str = None) -> dict: return meta_df.groupby(meta)['Sample'].apply(list).to_dict() # input a group name, return the sample list in this group - def get_sample_list_in_a_group(self, group: str = None, condition: list = None) -> list: - """ - Get a list of samples in a specific group. - - Args: - `group (str)`: The name of the group. Defaults to None. - `condition (list)`: A list with 2 elements, where the first element is the meta column name and the second element is the group. - For example, ["Individual", "PBS"]. Defaults to None. + def get_sample_list_in_a_group( + self, group: Optional[str] = None, + condition: Optional[List[Union[str, list]]] = None + ) -> List: + """ + Get a list of samples in a specific group. - Returns: - list: A sorted list of sample names in the specified group. + Args: + group (Optional[str]): The name of the group. Defaults to None. + condition (Optional[List[Union[str, list]]]): A list with 2 elements, where the first element is the meta column name + and the second element is the group. + For example: 1. ["Individual", "V1"] 2.["Individual", ["V1", "V2"]]. + Defaults to None. - Raises: - ValueError: If the group is not in the group list. - ValueError: If the condition is not a list with 2 elements. - ValueError: If the meta column name in the condition is not in the meta dataframe columns. - ValueError: If the group in the condition is not in the unique values of the specified meta column. + Returns: + List: A sorted list of sample names in the specified group. - """ - if self.group_list is None: - print('group does not exist, please set group first.') - return None - if group not in self.group_list: - raise ValueError(f'group must be in {set(self.group_list)}') - if condition is not None: - if not isinstance(condition, list) or len(condition) != 2: - raise ValueError('condition must be a list with 2 elements, first is the meta column name, second is the group. e.g. ["Person", "PBS"]') - if condition[0] not in self.meta_df.columns: - raise ValueError(f'{condition[0]} must be in {set(self.meta_df.columns)}') - # check if the condition is valid - if condition[1] not in self.meta_df[condition[0]].unique().tolist(): - raise ValueError(f'{condition[1]} must be in {self.meta_df[condition[0]].unique().tolist()}') - # get the sample list - meta_df = self.meta_df[self.meta_df[condition[0]] == condition[1]] + Raises: + ValueError: If the group is not in the group list. + ValueError: If the condition is not a list with 2 elements. + ValueError: If the meta column name in the condition is not in the meta dataframe columns. + ValueError: If the group in the condition is not in the unique values of the specified meta column. + """ + # Check if group list is defined + if self.group_list is None: + raise ValueError('Group list does not exist, please set group first.') + + # Check if the specified group is valid + if group not in self.group_list: + raise ValueError(f'Group must be in {set(self.group_list)}') + + if condition: + # Validate condition format and values + if not isinstance(condition, list) or len(condition) != 2: + raise ValueError('Condition must be a list with 2 elements: [meta_column, group]. e.g. ["Individual", "V1"]') + meta_column, condition_group = condition + + if meta_column not in self.meta_df.columns: + raise ValueError(f'{meta_column} must be in {set(self.meta_df.columns)}') + + # Filter the dataframe based on the condition + if isinstance(condition_group, str): + if condition_group not in self.meta_df[meta_column].unique(): + raise ValueError(f'{condition_group} must be in {self.meta_df[meta_column].unique().tolist()}') + meta_df = self.meta_df[self.meta_df[meta_column] == condition_group] + elif isinstance(condition_group, list): + invalid_groups = [g for g in condition_group if g not in self.meta_df[meta_column].unique()] + if invalid_groups: + raise ValueError(f'{invalid_groups} must be in {self.meta_df[meta_column].unique().tolist()}') + meta_df = self.meta_df[self.meta_df[meta_column].isin(condition_group)] else: - meta_df = self.meta_df + raise ValueError('Condition group must be either a string or a list of strings.') + else: + meta_df = self.meta_df - sample_list = meta_df[meta_df[self.meta_name] == group]['Sample'].tolist() - sample_list = sorted(sample_list) - return sample_list + # Get the sample list for the specified group + sample_list = meta_df[meta_df[self.meta_name] == group]['Sample'].tolist() + return sample_list - def get_sample_list_for_group_list(self, group_list: list = None, condition: list = None) -> list: - """ - Returns a list of sample names for the given group list and condition. + def get_sample_list_for_group_list( + self, + group_list: Optional[List] = None, + condition: Optional[List[Union[str, list]]] = None + ) -> list: + """ + Returns a list of sample names for the given group list and condition. - Args: - `group_list (list, optional)`: List of group names. If not provided, all groups in meta_df will be used. - `condition (list, optional)`: e.g. ["Individual", "PBS"], where the first element is the meta column name and the second element is the group. Defaults to None. + Args: + group_list (Optional[List]): List of group names. If not provided, all groups in meta_df will be used. + condition (Optional[List[Union[str, list]]]): Condition list where the first element is the meta column name + and the second element is the group. Defaults to None. + The second element can be a string or a list of strings. + e.g. ["Individual", ["V1", "V2"]]. - Returns: - list: List of sample names. - """ - if group_list is None: - print('group_list does not provided, set all the groups in meta_df as group_list.') - group_list = self.meta_df[self.meta_name].unique().tolist() + Returns: + List: List of sample names. + + Examples: + get_sample_list_for_group_list(group_list=['PBS', 'BAS'], condition=["Individual", "V1"]) + This will return a list of sample names for the groups 'PBS' and 'BAS' with only in "V1". + """ + if group_list is None: + print("group_list not provided, using all groups in meta_df.") + group_list = self.meta_df[self.meta_name].unique().tolist() - sample_list = [] - for group in group_list: - sample_list += self.get_sample_list_in_a_group(group, condition) + sample_list = [] + for group in group_list: + sample_list += self.get_sample_list_in_a_group(group, condition) - return sample_list + return sample_list # input a sample name, return the group name of this sample def get_group_of_a_sample(self, sample: str, meta_name:str|None='') -> str: diff --git a/utils/__init__.py b/metax/taxafunc_analyzer/analyzer_utils/__init__.py similarity index 100% rename from utils/__init__.py rename to metax/taxafunc_analyzer/analyzer_utils/__init__.py diff --git a/utils/AnalyzerUtils/BasicStats.py b/metax/taxafunc_analyzer/analyzer_utils/basic_stats.py similarity index 100% rename from utils/AnalyzerUtils/BasicStats.py rename to metax/taxafunc_analyzer/analyzer_utils/basic_stats.py diff --git a/utils/AnalyzerUtils/CrossTest.py b/metax/taxafunc_analyzer/analyzer_utils/cross_test.py similarity index 100% rename from utils/AnalyzerUtils/CrossTest.py rename to metax/taxafunc_analyzer/analyzer_utils/cross_test.py diff --git a/utils/AnalyzerUtils/DataPreprocessing.py b/metax/taxafunc_analyzer/analyzer_utils/data_preprocessing.py similarity index 99% rename from utils/AnalyzerUtils/DataPreprocessing.py rename to metax/taxafunc_analyzer/analyzer_utils/data_preprocessing.py index cbd2e5c..c5673c7 100644 --- a/utils/AnalyzerUtils/DataPreprocessing.py +++ b/metax/taxafunc_analyzer/analyzer_utils/data_preprocessing.py @@ -1,5 +1,5 @@ import pandas as pd -from .reComBat import reComBat +from .re_combat import reComBat import numpy as np from joblib import Parallel, delayed diff --git a/utils/AnalyzerUtils/GetMatrix.py b/metax/taxafunc_analyzer/analyzer_utils/get_matrix.py similarity index 96% rename from utils/AnalyzerUtils/GetMatrix.py rename to metax/taxafunc_analyzer/analyzer_utils/get_matrix.py index ecd3220..01c77c4 100644 --- a/utils/AnalyzerUtils/GetMatrix.py +++ b/metax/taxafunc_analyzer/analyzer_utils/get_matrix.py @@ -9,9 +9,11 @@ def get_intensity_matrix(self, func_name: str = None, taxon_name: str = None, # input: a taxon with its function, a function with its taxon, # and the peptides in the function or taxon # output: a matrix of the intensity of the taxon or function or peptide in each sample + # `peptide_seq` (str, optional): when `taxon_name` and `func_name` are both None, extract the intensity matrix of the peptide. Defaults to None. + if condition is not None: sample_list = self.tfa.get_sample_list_for_group_list(condition=condition) - + if func_name is not None: dft = self.tfa.func_taxa_df.copy() dft.reset_index(inplace=True) diff --git a/utils/AnalyzerUtils/reComBat/src/reComBat_single_class.py b/metax/taxafunc_analyzer/analyzer_utils/re_combat.py similarity index 100% rename from utils/AnalyzerUtils/reComBat/src/reComBat_single_class.py rename to metax/taxafunc_analyzer/analyzer_utils/re_combat.py diff --git a/utils/AnalyzerUtils/SumProteinIntensity.py b/metax/taxafunc_analyzer/analyzer_utils/sum_protein_intensity.py similarity index 100% rename from utils/AnalyzerUtils/SumProteinIntensity.py rename to metax/taxafunc_analyzer/analyzer_utils/sum_protein_intensity.py diff --git a/metax/taxafunc_ploter/__init__.py b/metax/taxafunc_ploter/__init__.py new file mode 100644 index 0000000..e69de29 diff --git a/utils/TaxaFuncPloter/bar_plot_js.py b/metax/taxafunc_ploter/bar_plot_js.py similarity index 100% rename from utils/TaxaFuncPloter/bar_plot_js.py rename to metax/taxafunc_ploter/bar_plot_js.py diff --git a/utils/TaxaFuncPloter/basic_plot.py b/metax/taxafunc_ploter/basic_plot.py similarity index 100% rename from utils/TaxaFuncPloter/basic_plot.py rename to metax/taxafunc_ploter/basic_plot.py diff --git a/utils/TaxaFuncPloter/diversity_plot.py b/metax/taxafunc_ploter/diversity_plot.py similarity index 100% rename from utils/TaxaFuncPloter/diversity_plot.py rename to metax/taxafunc_ploter/diversity_plot.py diff --git a/utils/TaxaFuncPloter/get_distinct_colors.py b/metax/taxafunc_ploter/get_distinct_colors.py similarity index 100% rename from utils/TaxaFuncPloter/get_distinct_colors.py rename to metax/taxafunc_ploter/get_distinct_colors.py diff --git a/utils/TaxaFuncPloter/heatmap_plot.py b/metax/taxafunc_ploter/heatmap_plot.py similarity index 96% rename from utils/TaxaFuncPloter/heatmap_plot.py rename to metax/taxafunc_ploter/heatmap_plot.py index b43e935..cb47ebf 100644 --- a/utils/TaxaFuncPloter/heatmap_plot.py +++ b/metax/taxafunc_ploter/heatmap_plot.py @@ -290,10 +290,11 @@ def plot_basic_heatmap_of_test_res(self, df, top_number:int = 100, value_type:st def plot_basic_heatmap(self, df, title = 'Heatmap',fig_size:tuple|None = None, scale = None, col_cluster:bool = True, row_cluster:bool = True, cmap:str|None = None, rename_taxa:bool = True, font_size:int = 10, - show_all_labels:tuple = (False, False), rename_sample:bool = True, plot_mean:bool = False + show_all_labels:tuple = (False, False), rename_sample:bool = True, plot_mean:bool = False, + sub_meta: str = "None" ): - if plot_mean: + if plot_mean and sub_meta == 'None': # if sub_meta is not None, plot_mean is False df = self.tfa.BasicStats.get_stats_mean_df_by_group(df) rename_sample = False @@ -322,11 +323,31 @@ def plot_basic_heatmap(self, df, title = 'Heatmap',fig_size:tuple|None = None, if fig_size is None: fig_size = (30,30) - - if rename_sample: - mat, group_list = self.tfa.add_group_name_for_sample(mat) + if sub_meta != 'None': + # group_list = ( + # [self.tfa.get_group_of_a_sample(i, sub_meta) for i in mat.columns] + # if not plot_mean + # else mat.columns.tolist() + # ) + sample_groups = {sample: self.tfa.get_group_of_a_sample(sample, self.tfa.meta_name) for sample in mat.columns} + sub_groups = {sample: self.tfa.get_group_of_a_sample(sample, sub_meta) for sample in mat.columns} + + # 合并同一meta和submeta的样本,计算平均值 + grouped_data = mat.T.groupby([sample_groups, sub_groups]).mean().T + + # group_list is the sub_meta group + group_list = [i[1] for i in grouped_data.columns] if not plot_mean else grouped_data.columns.tolist() + + # convert multi-index to single index + grouped_data.columns = ['_'.join(col).strip() for col in grouped_data.columns.values] + + mat = grouped_data + else: - group_list = [self.tfa.get_group_of_a_sample(i) for i in mat.columns] if not plot_mean else mat.columns.tolist() + if rename_sample: + mat, group_list = self.tfa.add_group_name_for_sample(mat) + else: + group_list = [self.tfa.get_group_of_a_sample(i) for i in mat.columns] if not plot_mean else mat.columns.tolist() color_list = self.assign_colors(group_list) diff --git a/utils/TaxaFuncPloter/line_plot.py b/metax/taxafunc_ploter/line_plot.py similarity index 100% rename from utils/TaxaFuncPloter/line_plot.py rename to metax/taxafunc_ploter/line_plot.py diff --git a/utils/TaxaFuncPloter/network_plot.py b/metax/taxafunc_ploter/network_plot.py similarity index 88% rename from utils/TaxaFuncPloter/network_plot.py rename to metax/taxafunc_ploter/network_plot.py index 2cee8bd..a93c0d4 100644 --- a/utils/TaxaFuncPloter/network_plot.py +++ b/metax/taxafunc_ploter/network_plot.py @@ -1,5 +1,6 @@ from pyecharts import options as opts from pyecharts.charts import Graph +import pandas as pd class NetworkPlot: def __init__(self, tfobj, @@ -23,7 +24,8 @@ def __init__(self, tfobj, theme="white", label_position="bottom", text_width = 300, - gravity = 0.2 + gravity = 0.2, + show_sub_title = True, ): @@ -55,8 +57,13 @@ def __init__(self, tfobj, self.text_width = text_width self.gravity = gravity + self.show_sub_title = show_sub_title + def modify_focus_list(self, focus_list): + ''' + Split the taxa-func item into taxa and function if it's in the focus_list + ''' new_focus_list = [] for i in focus_list: if i.startswith('d__'): @@ -74,8 +81,14 @@ def modify_focus_list(self, focus_list): focus_list = new_focus_list return focus_list - - def create_nodes_links(self, sample_list:list = None, focus_list:list = [], plot_list_only:bool = False): + + def create_nodes_links( + self, + sample_list: list = None, + focus_list: list = [], + plot_list_only: bool = False, + list_only_no_link: bool = False, + ): """ Prepares data for network visualization of taxa and functions. @@ -85,7 +98,8 @@ def create_nodes_links(self, sample_list:list = None, focus_list:list = [], plot Parameters: - sample_list (list, optional): Specifies which samples to include. If None, all samples are used. - focus_list (list, optional): List of taxa and functions to highlight in the network. - - plot_list_only (bool, optional): If True, only items in focus_list are plotted. + - plot_list_only (bool, optional): If True, only items and theri linked items in focus_list are plotted. + - strict_list (bool, optional): If True, only items in focus_list are plotted. Returns: - nodes (list): Information about each node for the graph, including name and size. @@ -117,11 +131,28 @@ def create_nodes_links(self, sample_list:list = None, focus_list:list = [], plot if plot_list_only: print("Plotting only the list provided in focus_list") print(f"Original df shape: {df.shape}") - df = df.loc[df['taxa'].isin(focus_list) | df['function'].isin(focus_list)] + if list_only_no_link: + df_coverd = df.loc[df['taxa'].isin(focus_list) & df['function'].isin(focus_list)] + covered_taxa = df_coverd['taxa'].unique().tolist() + covered_func = df_coverd['function'].unique().tolist() + uncovered_list = [i for i in focus_list if i not in covered_taxa and i not in covered_func] + + df_taxa = df.loc[df['taxa'].isin(uncovered_list)] + df_taxa['function'] = "" # use empty string to show the dots and not the links + df_func = df.loc[df['function'].isin(uncovered_list)] + df_func['taxa'] = "" + # concatenate the uncovered taxa and functions + df = pd.concat([df_coverd, df_taxa, df_func]) + + + else: + df = df.loc[df['taxa'].isin(focus_list) | df['function'].isin(focus_list)] print(f"New df shape: {df.shape}") - taxa_sum = df.groupby('taxa')['sum'].sum().to_dict() - function_sum = df.groupby('function')['sum'].sum().to_dict() + # taxa_sum = df.groupby('taxa')['sum'].sum().to_dict() + taxa_sum = df[df['taxa'] != ""].groupby('taxa')['sum'].sum().to_dict() + # function_sum = df.groupby('function')['sum'].sum().to_dict() + function_sum = df[df['function'] != ""].groupby('function')['sum'].sum().to_dict() min_value = min(min(taxa_sum.values()), min(function_sum.values())) max_value = max(max(taxa_sum.values()), max(function_sum.values())) @@ -132,8 +163,9 @@ def normalize(value): scaled_value = 100 * (value - min_value) / (max_value - min_value) return max(scaled_value, 10) - taxa = df["taxa"].unique().tolist() - functions = df["function"].unique().tolist() + taxa = [i for i in df["taxa"].unique() if i != ""] + functions = [i for i in df["function"].unique() if i != ""] + nodes = [] if focus_list is not None and len(focus_list) > 0: for taxon in taxa: @@ -149,7 +181,8 @@ def normalize(value): else: nodes.append({"name": function, "category": 2, "symbolSize": normalize(function_sum[function]), "value": function_sum[function], "symbol": symbol}) - links = [{"source": row["taxa"], "target": row["function"]} for _, row in df.iterrows()] + + links = [{"source": row["taxa"], "target": row["function"]} for _, row in df.iterrows() if row["function"] != "" and row["taxa"] != ""] categories = [ {"name": "Taxa", "itemStyle": {"normal": {"color": self.taxa_color}}}, @@ -172,9 +205,15 @@ def normalize(value): return nodes, links, categories - - - def plot_tflink_network(self, sample_list:list = None, width:int = 12, height:int = 8, focus_list: list = None, plot_list_only:bool = False): + def plot_tflink_network( + self, + sample_list: list = None, + width: int = 12, + height: int = 8, + focus_list: list = None, + plot_list_only: bool = False, + list_only_no_link: bool = False, + ): """ Creates a network graph of taxa and functions using Pyecharts. @@ -185,13 +224,13 @@ def plot_tflink_network(self, sample_list:list = None, width:int = 12, height:in - width (int, optional): Width of the graph in pixels. - height (int, optional): Height of the graph in pixels. - focus_list (list, optional): List of taxa and functions to highlight. - - plot_list_only (bool, optional): If True, only plots items in focus_list. + - plot_list_only (bool, optional): If True, only plots items in focus_list and their linked items. + - strict_list_only (bool, optional): If True, only plots items in focus_list. Returns: - A Pyecharts Graph object that can be displayed in Jupyter notebooks or web pages. """ - if focus_list is None: - focus_list = [] + # preprocess focus_list if focus_list is not None and focus_list: new_list = [] @@ -206,8 +245,9 @@ def plot_tflink_network(self, sample_list:list = None, width:int = 12, height:in new_list.extend((taxon, func)) else: print(f"Warning: {i} is not in taxa or function list") - nodes, links, categories = self.create_nodes_links(sample_list, new_list,plot_list_only) + nodes, links, categories = self.create_nodes_links(sample_list, new_list,plot_list_only, list_only_no_link) else: + focus_list = [] nodes, links, categories = self.create_nodes_links(sample_list) @@ -245,7 +285,7 @@ def plot_tflink_network(self, sample_list:list = None, width:int = 12, height:in .set_global_opts( title_opts=opts.TitleOpts( title= "Taxa-Functions Network", - subtitle=f"{sample_list}" if sample_list else None, + subtitle= f"{sample_list}" if self.show_sub_title else None, subtitle_textstyle_opts=opts.TextStyleOpts(font_size=10), ), toolbox_opts=opts.ToolboxOpts( diff --git a/utils/TaxaFuncPloter/pca_plot_js.py b/metax/taxafunc_ploter/pca_plot_js.py similarity index 100% rename from utils/TaxaFuncPloter/pca_plot_js.py rename to metax/taxafunc_ploter/pca_plot_js.py diff --git a/utils/TaxaFuncPloter/sankey_plot.py b/metax/taxafunc_ploter/sankey_plot.py similarity index 100% rename from utils/TaxaFuncPloter/sankey_plot.py rename to metax/taxafunc_ploter/sankey_plot.py diff --git a/utils/TaxaFuncPloter/sunburst_plot.py b/metax/taxafunc_ploter/sunburst_plot.py similarity index 100% rename from utils/TaxaFuncPloter/sunburst_plot.py rename to metax/taxafunc_ploter/sunburst_plot.py diff --git a/utils/TaxaFuncPloter/treemap_plot.py b/metax/taxafunc_ploter/treemap_plot.py similarity index 100% rename from utils/TaxaFuncPloter/treemap_plot.py rename to metax/taxafunc_ploter/treemap_plot.py diff --git a/utils/TaxaFuncPloter/trends_plot.py b/metax/taxafunc_ploter/trends_plot.py similarity index 100% rename from utils/TaxaFuncPloter/trends_plot.py rename to metax/taxafunc_ploter/trends_plot.py diff --git a/utils/TaxaFuncPloter/trends_plot_js.py b/metax/taxafunc_ploter/trends_plot_js.py similarity index 100% rename from utils/TaxaFuncPloter/trends_plot_js.py rename to metax/taxafunc_ploter/trends_plot_js.py diff --git a/utils/TaxaFuncPloter/tukey_plot.py b/metax/taxafunc_ploter/tukey_plot.py similarity index 100% rename from utils/TaxaFuncPloter/tukey_plot.py rename to metax/taxafunc_ploter/tukey_plot.py diff --git a/utils/TaxaFuncPloter/volcano_plot.py b/metax/taxafunc_ploter/volcano_plot.py similarity index 100% rename from utils/TaxaFuncPloter/volcano_plot.py rename to metax/taxafunc_ploter/volcano_plot.py diff --git a/utils/TaxaFuncPloter/volcano_plot_js.py b/metax/taxafunc_ploter/volcano_plot_js.py similarity index 100% rename from utils/TaxaFuncPloter/volcano_plot_js.py rename to metax/taxafunc_ploter/volcano_plot_js.py diff --git a/metax/tests/__init__.py b/metax/tests/__init__.py new file mode 100644 index 0000000..e69de29 diff --git a/metax/tests/test_metax.py b/metax/tests/test_metax.py new file mode 100644 index 0000000..e69de29 diff --git a/metax/utils/__init__.py b/metax/utils/__init__.py new file mode 100644 index 0000000..e69de29 diff --git a/utils/metax_updater.py b/metax/utils/metax_updater.py similarity index 98% rename from utils/metax_updater.py rename to metax/utils/metax_updater.py index acbac6e..0d423a8 100644 --- a/utils/metax_updater.py +++ b/metax/utils/metax_updater.py @@ -47,7 +47,7 @@ def __init__(self, MetaXGUI, version, splash, show_message=False, branch='main') def set_init_path(self): - self.remote_version_path = f"https://raw.githubusercontent.com/byemaxx/MetaX/{self.branch}/utils/version.py" + self.remote_version_path = f"https://raw.githubusercontent.com/byemaxx/MetaX/{self.branch}/metax/utils/version.py" self.remote_change_log_path = f"https://raw.githubusercontent.com/byemaxx/MetaX/{self.branch}/Docs/ChangeLog.md" self.remote_project_zip_download_path = f"https://github.com/byemaxx/MetaX/archive/refs/heads/{self.branch}.zip" @@ -178,16 +178,15 @@ def replace_metax_dir(self): # MetaX folder path is this file's parent and the parent's parent current_script_path = os.path.dirname(os.path.abspath(__file__)) metax_folder_path = os.path.dirname(current_script_path) + metax_folder_path = os.path.dirname(metax_folder_path) print(f"MetaX folder path: {metax_folder_path}") #remove all files in the metax folder, except the __pycache__ folder and data folder and tsv files for root, dirs, files in os.walk(metax_folder_path): for file in files: - # if file != '__init__.py' and file != '__pycache__' and not file.endswith('.tsv'): if file != '__init__.py' and file != '__pycache__' and not file.endswith('.pyc'): os.remove(os.path.join(root, file)) for dir in dirs: - # if dir not in ['__pycache__', 'data', 'example_data']: if dir not in ['__pycache__']: shutil.rmtree(os.path.join(root, dir)) @@ -375,4 +374,4 @@ def __init__(self): updater.check_update(show_message=True) - sys.exit(app.exec_()) # 启动事件循环 + sys.exit(app.exec_()) \ No newline at end of file diff --git a/metax/utils/version.py b/metax/utils/version.py new file mode 100644 index 0000000..f709e86 --- /dev/null +++ b/metax/utils/version.py @@ -0,0 +1,2 @@ +__version__ = '1.108.7' +API_version = '2' \ No newline at end of file diff --git a/pyproject.toml b/pyproject.toml new file mode 100644 index 0000000..414d38e --- /dev/null +++ b/pyproject.toml @@ -0,0 +1,58 @@ +[build-system] +requires = ["setuptools>=42", "wheel"] +build-backend = "setuptools.build_meta" + +[project] +name = "MetaXTools" +version = "1.108.7" +description = "MetaXTools is a novel tool for linking peptide sequences with taxonomic and functional information in Metaproteomics." +readme = "README_PyPi.md" +license = { text = "NorthOmics" } +authors = [ + { name = "Qing Wu", email = "byeomax@outlook.com" } +] +classifiers = [ + "Programming Language :: Python :: 3", + "Operating System :: OS Independent" +] +keywords = ["MetaX", "MetaXTools", "metaproteomics", "peptide", "OTF", "Operational Taxa-Functions", "visualization", "analysis"] +requires-python = ">=3.10" +dependencies = [ + "distinctipy>=1.2.2", + "matplotlib>=3.7.2", + "numpy>=1.25.1", + "pandas>=2.0.3", + "pydeseq2>=0.4.10", + "pyecharts>=2.0.6", + "PyQt5>=5.15.9", + "PyQt5-Qt5>=5.15.2", + "PyQt5-sip>=12.12.1", + "PyQtWebEngine>=5.15.6", + "PyQtWebEngine-Qt5>=5.15.2", + "python-dateutil>=2.8.2", + "qt-material>=2.14", + "QtAwesome>=1.2.3", + "scikit-learn>=1.3.0", + "scipy>=1.11.3", + "tqdm>=4.65.0", + "scikit-bio>=0.6.0", + "adjustText>=1.1.1", + "openpyxl", + "pyproject-toml>=0.0.10", + "statsmodels", + "seaborn>=0.13.2" +] + +[project.scripts] +metax = "metax.gui.main_gui:runGUI" + +[tool.setuptools.packages.find] +where = ["."] +include = ["metax", "metax.*"] + +[tool.setuptools.package-data] +metax = ["data/example_data/*"] + +[project.urls] +Homepage = "https://github.com/byemaxx/MetaX" +Issues = "https://github.com/byemaxx/MetaX/issues" diff --git a/requirements.txt b/requirements.txt index a83fe98..6d12f7a 100644 --- a/requirements.txt +++ b/requirements.txt @@ -1,22 +1,21 @@ -distinctipy==1.2.2 -fastcluster>=1.2.6 +distinctipy>=1.2.2 matplotlib>=3.7.2 numpy>=1.25.1 pandas>=2.0.3 -pydeseq2==0.4.8 -pyecharts==2.0.5 -PyQt5==5.15.9 -PyQt5-Qt5==5.15.2 -PyQt5-sip==12.12.1 -PyQtWebEngine==5.15.6 -PyQtWebEngine-Qt5==5.15.2 -python-dateutil==2.8.2 -qt-material==2.14 -QtAwesome==1.2.3 -scikit-learn==1.3.0 +pydeseq2>=0.4.10 +pyecharts>=2.0.6 +PyQt5>=5.15.9 +PyQt5-Qt5>=5.15.2 +PyQt5-sip>=12.12.1 +PyQtWebEngine>=5.15.6 +PyQtWebEngine-Qt5>=5.15.2 +python-dateutil>=2.8.2 +qt-material>=2.14 +QtAwesome>=1.2.3 +scikit-learn>=1.3.0 scipy>=1.11.3 tqdm>=4.65.0 -scikit-bio==0.6.0 +scikit-bio>=0.6.0 adjustText>=1.1.1 openpyxl pyproject-toml>=0.0.10 diff --git a/src/runGUI.py b/src/runGUI.py deleted file mode 100644 index 746cfa0..0000000 --- a/src/runGUI.py +++ /dev/null @@ -1,18 +0,0 @@ -# -*- coding: utf-8 -*- - -import sys -import os -from pathlib import Path - - -myDir = os.getcwd() -sys.path.append(myDir) -path = Path(myDir) - -metax_path=str(path.parent.absolute()) -print(metax_path) - -sys.path.append(metax_path) -from MetaX.utils.GUI import runGUI - -runGUI() diff --git a/utils/AnalyzerUtils/reComBat/__init__.py b/utils/AnalyzerUtils/reComBat/__init__.py deleted file mode 100644 index f83aa38..0000000 --- a/utils/AnalyzerUtils/reComBat/__init__.py +++ /dev/null @@ -1,4 +0,0 @@ -# from __future__ import absolute_import -from .reComBat import reComBat - -__version__ = '0.1.0' diff --git a/utils/AnalyzerUtils/reComBat/cli.py b/utils/AnalyzerUtils/reComBat/cli.py deleted file mode 100644 index 1823280..0000000 --- a/utils/AnalyzerUtils/reComBat/cli.py +++ /dev/null @@ -1,110 +0,0 @@ -""" -reComBat: cli.py - -Command line interface. -This is the command line interface of the reComBat package. - -You can run the package from the terminal via: reComBat --args. -The arguments are any arguments you can give to reComBat or sklearn linear_model,ridge,lasso or elastic_net. - -The inputs should be *.csv files of shape (rows x columns) = (samples x features or batches). -The sample index is column 0. -""" -# Author: Michael F. Adamer -# November 2021 - -import os -from fire import Fire -import pandas as pd -from multiprocessing import cpu_count -from .reComBat import reComBat - -def run_recombat(data_file, - batch_file, - X_file=None, - C_file=None, - data_path='.', - out_path='.', - out_file='data_adjusted.csv', - parametric=True, - model='linear', - conv_criterion=1e-4, - max_iter_eb=1000, - n_jobs=cpu_count(), - mean_only = False, - optimize_params=True, - reference_batch = None, - verbose=True, - alpha=None, - l1_ratio=None, - precompute=None, - max_iter=None, - copy_X=None, - tol=None, - warm_start=None, - positive=None, - random_state=None, - selection=None, - solver=None): - - # Read in the data and batch files. - data = pd.read_csv(os.path.join(data_path,data_file),index_col=0) - batch = pd.read_csv(os.path.join(data_path,batch_file),index_col=0,squeeze=True) - - # Read in potential design matrices. - if X_file is not None: - X = pd.read_csv(os.path.join(data_path,X_file),index_col=0) - else: - X = None - - if C_file is not None: - C = pd.read_csv(os.path.join(data_path,C_file),index_col=0) - else: - C = None - - # Define the config dictionary. These are all arguments passed to sklearn. - config = {} - - if alpha is not None: - config['alpha'] = float(alpha) - if l1_ratio is not None: - config['l1_ratio'] = float(l1_ratio) - if precompute is not None: - config['precompute'] = precompute - if max_iter is not None: - config['max_iter'] = int(max_iter) - if copy_X is not None: - config['copy_X'] = copy_X - if tol is not None: - config['tol'] = float(tol) - if warm_start is not None: - config['warm_start'] = warm_start - if positive is not None: - config['positive'] = positive - if random_state is not None: - config['random_state'] = int(random_state) - if selection is not None: - config['selection'] = selection - if solver is not None: - config['solver'] = solver - - # Init reComBat. - combat = reComBat(parametric=parametric, - model=model, - config=config, - conv_criterion=conv_criterion, - max_iter=max_iter_eb, - n_jobs=n_jobs, - mean_only=mean_only, - optimize_params=optimize_params, - reference_batch=reference_batch, - verbose=verbose) - - # Adjust data. - data_adjusted = combat.fit_transform(data,batch,X=X,C=C) - - # Save adjusted data. - data_adjusted.to_csv(os.path.join(out_path,out_file),index=True) - -def main(): - Fire(run_recombat) diff --git a/utils/AnalyzerUtils/reComBat/reComBat.py b/utils/AnalyzerUtils/reComBat/reComBat.py deleted file mode 100644 index a6d82e6..0000000 --- a/utils/AnalyzerUtils/reComBat/reComBat.py +++ /dev/null @@ -1,385 +0,0 @@ -""" -reComBat: reComBat.py - -The main class of the reComBat algorithm. -""" -# Author: Michael F. Adamer -# November 2021 - -import warnings -import logging -import numpy as np -import pandas as pd -from tqdm import tqdm -from multiprocessing import cpu_count -from sklearn.linear_model import LinearRegression, Ridge, Lasso, ElasticNet - -from .src.utils import compute_init_values_parametric,compute_values_non_parametric, compute_weights, parametric_update - -class reComBat(object): - """ - reCombatClass - - Parameters - ---------- - parametric : bool, optional - Choose a parametric or non-parametric empirical Bayes optimization. - The default is True. - model : str, optional - Choose a linear model, ridge, Lasso, elastic_net. - The default is 'linear'. - config : dict, optional - A dictionary containing kwargs for the model (see sklean.linear_model for details). - The default is None. - conv_criterion : float, optional - The convergence criterion for the optimization. - The default is 1e-4. - max_iter : int, optional - The maximum number of steps of the parametric empirical Bayes optimization. - The detault is 1000. - n_jobs : int, optional - The number of parallel threads in the non-parametric optimization. - If not given, then this is set to the number of cpus. - mean_only : bool, optional - Adjust the mean only. No scaling is performed. - The default is False. - optimize_params : bool, optional - Perform empirical Bayes optimization. - The default is True. - reference_batch : str, optional - Give a reference batch which is not adjusted. - The default is None. - verbose : bool, optional - Enable verbose output. - The default is True. - """ - - def __init__(self, - parametric=True, - model='elastic_net', - config=None, - conv_criterion=1e-4, - max_iter=1000, - n_jobs=None, - mean_only=False, - optimize_params=True, - reference_batch=None, - verbose=True): - self.parametric = parametric - self.model = model - if config is not None: - self.config = config - else: - self.config={} - self.conv_criterion = conv_criterion - self.max_iter = max_iter - if n_jobs is None: - self.n_jobs = cpu_count() - else: - self.n_jobs = n_jobs - self.mean_only = mean_only - self.optimize_params = optimize_params - if reference_batch is not None: - self.reference_batch = reference_batch - else: - self.reference_batch = None - if verbose: - logging.basicConfig(level=logging.INFO,format='[reComBat] %(asctime)s %(message)s') - else: - logging.disable(level=logging.CRITICAL) - - # Set to True to indicate that reComBat has been fitted. - self.fit_tag = False - - def fit(self,data,batches,X=None,C=None): - """ - Fit method. - - Parameters - ---------- - data : pandas dataframe - A pandas dataframe containing the data matrix. - The format is (rows x columns) = (samples x features) - batches : pandas series - A pandas series containing the batch of each sample in the dataframe. - X : pandas dataframe, optional - The design matrix of the desired variation. Numerical columns should have '_numerical' as a postfix. - The format is (rows x columns) = (samples x features) The default is None. - C : pandas dataframe, optional - The design matrix for the unwanted variation. Numerical columns should have '_numerical' as a postfix. - The format is (rows x columns) = (samples x features). The default is None. - - Returns - ------- - None - """ - - logging.info("Starting to fot reComBat.") - if data.isna().any().any(): - raise ValueError("The data contains NaN values.") - if batches.isna().any().any(): - raise ValueError("The batches contain NaN values.") - - unique_batches = batches.unique() - num_batches = len(unique_batches) - - if num_batches == 1: - raise ValueError("There should be at least two batches in the dataset.") - - batches_one_hot = pd.get_dummies(batches.astype(str)).values - - if np.any(batches_one_hot.sum(axis=0) == 1): - raise ValueError("There should be at least two values for each batch.") - - if data.shape[0] != batches.shape[0]: - raise ValueError("The batch and data matrix have a different number of samples.") - - if self.reference_batch is not None: - self.reference_batch_idxs = np.where(batches.values==self.reference_batch)[0] - self.reference_batch_numerical = np.where(pd.get_dummies(batches.astype(str)).columns==str(self.reference_batch))[0] - if len(self.reference_batch_idxs) == 0: - self.reference_batch = None - batches_one_hot[:,self.reference_batch_numerical] = 1 - - logging.info("Fit the linear model.") - Z = self.fit_model_(data,batches_one_hot,X=X if X is not None else None,C=C if C is not None else None) - - if self.optimize_params: - if self.parametric: - logging.info("Starting the empirical parametric optimisation.") - self.parametric_optimization_(Z,batches_one_hot) - logging.info("Optimisation finished.") - elif not self.parametric: - logging.info("Starting the empirical non-parametric optimisation.") - self.non_parametric_optimization_(Z,batches_one_hot) - logging.info("Optimisation finished.") - else: - logging.info("Compute parameters without optimising.") - self.gamma_star_hat_, self.delta_star_squared_hat_ = compute_values_non_parametric(Z,batches_one_hot) - if self.reference_batch is not None: - self.gamma_star_hat_[self.reference_batch_numerical] = 1 - self.delta_star_squared_hat_[self.reference_batch_numerical] = 1 - - self.fit_tag = True - logging.info("reComBat is fitted.") - - def transform(self,data,batches,X=None,C=None): - """ - Transform method. - ---------------- - - Adjusts a dataframe. Please make sure that the number of batches, - features and design matrix features match. - - Parameters - ---------- - data : pandas dataframe - A pandas dataframe containing the data matrix. - The format is (rows x columns) = (samples x features) - batches : pandas series - A pandas series containing the batch of each sample in the dataframe. - X : pandas dataframe, optional - The design matrix of the desired variation. Numerical columns should have '_numerical' as a postfix. - The format is (rows x columns) = (samples x features) The default is None. - C : pandas dataframe, optional - The design matrix for the unwanted variation. Numerical columns should have '_numerical' as a postfix. - The format is (rows x columns) = (samples x features). The default is None. - - Returns - ------- - A pandas dataframe of the same shape as the input dataframe. - """ - - logging.info("Starting to transform.") - batches_one_hot = pd.get_dummies(batches.astype(str)).values - - if X is not None: - X_categorical = X.loc[:,[c for c in X.columns if '_numerical' not in c]] - X_numerical = X.loc[:,[c for c in X.columns if '_numerical' in c]].values - X_categorical_one_hot = pd.get_dummies(X_categorical.astype(str),drop_first=True).values - X_covariates = np.hstack([X_categorical_one_hot,X_numerical]) - if C is not None: - C_categorical = C.loc[:,[c for c in C.columns if '_numerical' not in c]] - C_numerical = C.loc[:,[c for c in C.columns if '_numerical' in c]].values - C_categorical_one_hot = pd.get_dummies(C_categorical.astype(str),drop_first=True).values - C_covariates = np.hstack([C_categorical_one_hot,C_numerical]) - - if not self.fit_tag: - raise AttributeError("reComBat has not been fitted yet.") - if data.shape[1] != self.alpha_.shape[1]: - raise ValueError("Wrong number of features.") - if batches_one_hot.shape[1] != self.gamma_star_hat_.shape[0]: - raise ValueError("Wrong number of batches.") - if X is not None: - if X_covariates.shape[1] != self.beta_x_.shape[0]: - raise ValueError("The feature dimensions of fit X design matrix and transform X design matrix are different.") - else: - X_tmp = np.matmul(X_covariates,self.beta_x_) - else: - X_tmp = 0 - if C is not None: - if C_covariates.shape[1] != self.beta_c_.shape[0]: - raise ValueError("The feature dimensions of fit C design matrix and transform C design matrix are different.") - else: - C_tmp = np.matmul(C_covariates,self.beta_c_) - else: - C_tmp = 0 - - Z = (data.values.copy() - self.alpha_ - X_tmp - C_tmp)/np.sqrt(self.sigma_) - - data_adjusted = self.adjust_data_(Z,batches_one_hot,X_covariates=X_covariates if X is not None else None) - - if self.reference_batch is not None: - data_adjusted[self.reference_batch_idxs] = data.values[self.reference_batch_idxs] - - logging.info("Transform finished.") - - return pd.DataFrame(data_adjusted,index=data.index,columns=data.columns) - - def fit_transform(self,data,batches,X=None,C=None): - ''' - Fit and transform in one go. - ''' - - self.fit(data,batches,X=X if X is not None else None, C=C if C is not None else None) - return self.transform(data,batches,X=X if X is not None else None, C=C if C is not None else None) - - def fit_model_(self,data,batches_one_hot,X=None,C=None): - ''' - Fit the linear model. - ''' - num_batches = batches_one_hot.shape[1] - Covariates = batches_one_hot - - # Create the design matrix - if X is not None: - if X.isna().any().any(): - raise ValueError("The design matrix X contains NaN values.") - X_categorical = X.loc[:,[c for c in X.columns if '_numerical' not in c]] - X_numerical = X.loc[:,[c for c in X.columns if '_numerical' in c]].values - X_categorical_one_hot = pd.get_dummies(X_categorical.astype(str),drop_first=True).values - X_covariates = np.hstack([X_categorical_one_hot,X_numerical]) - X_covariates_dim = X_covariates.shape[1] - Covariates = np.hstack([Covariates,X_covariates]) - else: - X_covariates_dim = 0 - if C is not None: - if C.isna().any().any(): - raise ValueError("The design matrix C contains NaN values.") - C_categorical = C.loc[:,[c for c in C.columns if '_numerical' not in c]] - C_numerical = C.loc[:,[c for c in C.columns if '_numerical' in c]].values - C_categorical_one_hot = pd.get_dummies(C_categorical.astype(str),drop_first=True).values - C_covariates = np.hstack([C_categorical_one_hot,C_numerical]) - C_covariates_dim = C_covariates.shape[1] - Covariates = np.hstack([Covariates,C_covariates]) - Covariates = Covariates.astype(float) - else: - C_covariates_dim = 0 - - # Initialise the model class - if self.model == 'linear': - model = LinearRegression(fit_intercept=False,**self.config) - elif self.model == 'ridge': - model = Ridge(fit_intercept=False,**self.config) - elif self.model == 'Lasso': - model = Lasso(fit_intercept=False,**self.config) - elif self.model == 'elastic_net': - model = ElasticNet(fit_intercept=False,**self.config) - else: - raise ValueError('Model not implemented') - - model.fit(Covariates,data.values) - - # Save the fitted parameters - # Note that alpha is computed implicitly via the contraints on the batch parameters. - if self.reference_batch is None: - self.alpha_ = np.matmul(batches_one_hot.sum(axis=0,keepdims=True)/batches_one_hot.sum(),model.coef_.T[:num_batches]) - else: - self.alpha_ = model.coef_.T[self.reference_batch_numerical] - self.beta_x_ = model.coef_.T[num_batches:num_batches+X_covariates_dim] - self.beta_c_ = model.coef_.T[num_batches+X_covariates_dim:] - - # Compute the standard deviation of the reconstructed data. - data_hat = np.matmul(Covariates, model.coef_.T) - if self.reference_batch is None: - self.sigma_ = np.mean((data.values - data_hat)**2,axis=0,keepdims=True) - else: - self.sigma_ = np.mean((data.values[self.reference_batch_idxs]-data_hat[self.reference_batch_idxs])**2,axis=0,keepdims=True) - - # Standardise the data. - Z = (data.values.copy() - np.matmul(Covariates[:, num_batches:num_batches+X_covariates_dim], self.beta_x_)\ - - np.matmul(Covariates[:, num_batches+X_covariates_dim:], self.beta_c_)\ - - self.alpha_)/np.sqrt(self.sigma_) - return Z - - def parametric_optimization_(self,Z,batches_one_hot): - ''' - Perform parametric optimization. - ''' - gamma_hat,gamma_bar,delta_hat_squared,tau_bar_squared,lambda_bar,theta_bar = compute_init_values_parametric(Z,batches_one_hot) - n = batches_one_hot.sum(axis=0) - - gamma_star = gamma_hat.copy() - delta_star_squared = delta_hat_squared.copy() - - for i in range(batches_one_hot.shape[1]): - if not self.mean_only: - gamma_star[i],delta_star_squared[i] = parametric_update(gamma_star[i], - delta_star_squared[i], - n[i], - tau_bar_squared[i], - gamma_hat[i], - gamma_bar[i], - theta_bar[i], - lambda_bar[i], - Z[batches_one_hot[:,i]==1], - conv_criterion=self.conv_criterion, - max_iter=self.max_iter) - else: - gamma_star[i] = self.new_gamma_parametric_(1,tau_bar_squared[i],gamma_hat[i],1,gamma_bar[i]) - delta_star_squared[i] = np.ones_like(delta_hat_squared[i]) - self.gamma_star_hat_ = gamma_star - self.delta_star_squared_hat_ = delta_star_squared - - if self.reference_batch is not None: - self.gamma_star_hat_[self.reference_batch_numerical] = 1 - self.delta_star_squared_hat_[self.reference_batch_numerical] = 1 - - def non_parametric_optimization_(self,Z,batches_one_hot): - ''' - Perform non-parametric optimization. - ''' - gamma_hat,delta_hat_squared = compute_values_non_parametric(Z,batches_one_hot) - - gamma_star = np.zeros((batches_one_hot.shape[1],Z.shape[1])) - delta_star_squared = np.zeros((batches_one_hot.shape[1],Z.shape[1])) - - for i in tqdm(range(batches_one_hot.shape[1])): - if self.mean_only: - delta_hat_squared[i] = np.ones_like(delta_hat_squared[i]) - weights = compute_weights(Z[batches_one_hot[:,i]==1],gamma_hat[i],delta_hat_squared[i],n_jobs=self.n_jobs) - - gamma_star_numerator = np.vstack([weights[j]*np.delete(gamma_hat[i],j) for j in range(Z.shape[1])]) - gamma_star[i] = (np.sum(gamma_star_numerator,axis=1)/np.sum(weights,axis=1)).T - - delta_star_numerator = np.vstack([weights[j]*np.delete(delta_hat_squared[i],j) for j in range(Z.shape[1])]) - delta_star_squared[i] = (np.sum(delta_star_numerator,axis=1)/np.sum(weights,axis=1)).T - - self.gamma_star_hat_ = gamma_star - self.delta_star_squared_hat_ = delta_star_squared - - if self.reference_batch is not None: - self.gamma_star_hat_[self.reference_batch_numerical] = 1 - self.delta_star_squared_hat_[self.reference_batch_numerical] = 1 - - def adjust_data_(self,Z,batches_one_hot,X_covariates=None): - ''' - Perform the final adjustment step. - ''' - tmp = np.zeros_like(Z) - for i in range(batches_one_hot.shape [1]): - tmp[batches_one_hot[:,i]==1] = (Z[batches_one_hot[:,i]==1]-self.gamma_star_hat_[i])/np.sqrt(self.delta_star_squared_hat_[i]) - data_adjusted = np.sqrt(self.sigma_)*tmp + self.alpha_ - if X_covariates is not None: - data_adjusted += np.matmul(X_covariates,self.beta_x_) - return data_adjusted diff --git a/utils/AnalyzerUtils/reComBat/src/utils.py b/utils/AnalyzerUtils/reComBat/src/utils.py deleted file mode 100644 index 0c55980..0000000 --- a/utils/AnalyzerUtils/reComBat/src/utils.py +++ /dev/null @@ -1,89 +0,0 @@ -import warnings -import numpy as np -from joblib import Parallel, delayed - -def compute_init_values_parametric(Z,batches_one_hot): - ''' - Compute the starting values of the Bayesian optimization. - ''' - gamma_hat = np.array([np.mean(Z[batches_one_hot[:,i]==1],axis=0) for i in range(batches_one_hot.shape[1])]) - gamma_bar = np.mean(gamma_hat,axis=1) - tau_bar_squared = np.var(gamma_hat,axis=1,ddof=1) - delta_hat_squared = np.array([np.var(Z[batches_one_hot[:,i]==1],axis=0,ddof=1) for i in range(batches_one_hot.shape[1])]) - V_bar = np.mean(delta_hat_squared,axis=1) - S_bar_squared = np.var(delta_hat_squared,axis=1,ddof=1) - - lambda_bar = (V_bar**2+2*S_bar_squared)/S_bar_squared - theta_bar = (V_bar**3+V_bar*S_bar_squared)/S_bar_squared - - return gamma_hat,gamma_bar,delta_hat_squared,tau_bar_squared,lambda_bar,theta_bar - -def compute_values_non_parametric(Z,batches_one_hot): - ''' - Compute the starting values of the Bayesian optimization. - ''' - gamma_hat = np.array([np.mean(Z[batches_one_hot[:,i]==1],axis=0) for i in range(batches_one_hot.shape[1])]) - delta_hat_squared = np.array([np.var(Z[batches_one_hot[:,i]==1],axis=0,ddof=1) for i in range(batches_one_hot.shape[1])]) - return gamma_hat,delta_hat_squared - -def compute_weights(Z_i,gamma_hat_i,delta_hat_squared_i,n_jobs=1): - ''' - Compute the weights w_{ig} of the non-parametric Bayesian optimization. - ''' - out = Parallel(n_jobs=n_jobs)(delayed(compute_weights_util)(g,Z_i[:,g],gamma_hat_i,delta_hat_squared_i,Z_i.shape[1]) for g in range(Z_i.shape[1])) - return np.vstack(out) - -def compute_weights_util(g,Z_ig,gamma_hat_i,delta_hat_squared_i,n_genes): - # Always delete the current gene as the parameters are confounded. - tmp = (Z_ig.reshape(-1,1) - np.delete(gamma_hat_i,g))**2/np.delete(delta_hat_squared_i,g) - return np.prod((1/np.sqrt(2*np.pi*np.delete(delta_hat_squared_i,g)))*np.exp(-0.5*tmp),axis=0) - -def new_gamma_parametric(n_i,tau_bar_squared_i,gamma_hat_i,delta_star_squared_i,gamma_bar_i): - numerator = n_i*tau_bar_squared_i*gamma_hat_i + delta_star_squared_i*gamma_bar_i - denominator = n_i*tau_bar_squared_i + delta_star_squared_i - return numerator/denominator - -def new_delta_star_squared_parametric(theta_bar_i,Z_i,gamma_star_new_i,n_i,lambda_bar_i): - numerator = (theta_bar_i+0.5*np.sum((Z_i-gamma_star_new_i)**2,axis=0)) - denominator = (0.5*n_i+lambda_bar_i-1) - return numerator/denominator - -def parametric_update(gamma_star_i, - delta_star_squared_i, - n_i, - tau_bar_squared_i, - gamma_hat_i, - gamma_bar_i, - theta_bar_i, - lambda_bar_i, - Z_i, - conv_criterion=1e-4, - max_iter = 1000): - ''' - Perform the optimization for one batch at a time - ''' - gamma_star_new_i = gamma_star_i.copy() - delta_star_squared_new_i = delta_star_squared_i.copy() - - iterations = 0 - convergence = conv_criterion + 1 - while (convergence > conv_criterion) and (iterations < max_iter): - gamma_star_new_i = new_gamma_parametric(n_i, - tau_bar_squared_i, - gamma_hat_i, - delta_star_squared_i, - gamma_bar_i) - delta_star_squared_new_i = new_delta_star_squared_parametric(theta_bar_i, - Z_i, - gamma_star_new_i, - n_i, - lambda_bar_i) - - convergence =np.max([np.max(np.abs(gamma_star_new_i-gamma_star_i)/gamma_star_i),\ - np.max(np.abs(delta_star_squared_new_i-delta_star_squared_i)/delta_star_squared_i)]) - gamma_star_i = gamma_star_new_i - delta_star_squared_i = delta_star_squared_new_i - iterations += 1 - if (iterations >= max_iter): - warnings.warn("Maximum number of iterations reached", RuntimeWarning) - return gamma_star_i,delta_star_squared_i diff --git a/utils/BaiduTranslate.py b/utils/BaiduTranslate.py deleted file mode 100644 index 47b502f..0000000 --- a/utils/BaiduTranslate.py +++ /dev/null @@ -1,104 +0,0 @@ -# coding=utf-8 - -import http.client -import hashlib -import urllib -import random -import json -from time import sleep - -class BaiduTranslate(): - def __init__(self , appid , secretKey): - self.appid = appid - self.secretKey = secretKey - - def translate(self, q_list:list): - - httpClient = None - myurl = 'http://api.fanyi.baidu.com/api/trans/vip/translate' - - fromLang = 'auto' - toLang = 'zh' - - q = "\n".join(q_list) - - - salt = random.randint(32768, 65536) - sign = self.appid + q + str(salt) + self.secretKey - sign = hashlib.md5(sign.encode()).hexdigest() - myurl = myurl + '?appid=' + self.appid + '&q=' + urllib.parse.quote(q) + '&from=' + fromLang + '&to=' + toLang + '&salt=' + str( - salt) + '&sign=' + sign - - try: - httpClient = http.client.HTTPConnection('api.fanyi.baidu.com') - httpClient.request('GET', myurl) - - # response是HTTPResponse对象 - response = httpClient.getresponse() - result_all = response.read().decode("utf-8") - result = json.loads(result_all) - # print(result) - - res_str_list = result.get("trans_result") - - out_list = [] - for res in res_str_list: - res_str = res.get("dst") - out_list += res_str.split("\n") - - - - return out_list - - except Exception as e: - print (e) - finally: - if httpClient: - httpClient.close() - - def trans_long_list(self, q_list:list): - MAX_BYTES = 6000 # 设置最大字节数 - out_list = [] - current_chunk = [] - current_bytes = 0 - - for q in q_list: - q_bytes = len(q.encode('utf-8')) # 获取当前字符串的字节长度 - if current_bytes + q_bytes <= MAX_BYTES: - current_chunk.append(q) - current_bytes += q_bytes - else: - # 当前批次已满,先翻译它 - print("translating chunk of size: {} bytes".format(current_bytes)) - out_list += self.translate(current_chunk) - sleep(2) # 休眠2秒 - - # 开始新批次 - current_chunk = [q] # 当前字符串开始新批次 - current_bytes = q_bytes - - # 翻译最后一个批次(如果有) - if current_chunk: - print("translating final chunk of size: {} bytes".format(current_bytes)) - out_list += self.translate(current_chunk) - - return out_list - - - - -if __name__ == '__main__': - import os - script_path = os.path.dirname(os.path.abspath(__file__)) - api_path = os.path.join(script_path, "../data/baidu.api") - with open(api_path, "r") as f: - test_list = f.readlines() - appid = test_list[0].strip() - secretKey = test_list[1].strip() - - test_list = ["hello world", "hello universe", 'hello earth'] - - translator = BaiduTranslate(appid, secretKey) - print(translator.translate(test_list)) - - \ No newline at end of file diff --git a/utils/PeptableAnnotator.py b/utils/PeptableAnnotator.py deleted file mode 100644 index 2e04b9c..0000000 --- a/utils/PeptableAnnotator.py +++ /dev/null @@ -1,199 +0,0 @@ -# This script is used to call the function proteins_to_taxa_func in pep2taxafunc.py -# input: table of final peptides from MetaLab_MAG -# output: table of final peptides with taxonomic and functional information - -from .pep2taxafunc import proteins_to_taxa_func -from .convert_ID_to_name import add_pathway_name_to_df, add_ec_name_to_df - -from concurrent.futures import ThreadPoolExecutor - -import pandas as pd -import re -from tqdm import tqdm -import time -import argparse -import os - -# run the function proteins_to_taxa_func -def run_pep2taxafunc(proteins, db_path, threshold, genome_mode) -> dict: - protein_list = str(proteins).split(';') - #print(protein_list) - try: - re = proteins_to_taxa_func( - protein_list=protein_list, - db_path=db_path, - threshold=threshold, - genome_mode=genome_mode, - ) - except Exception as e: - re = "" - print(f"Error: {protein_list}") - print(e) - return re - - -def stat_length(seq): # count the length of peptide sequence - pattern = re.compile(r'\(.*?\)') - return len(re.sub(pattern, '', seq)) - -def count_protein(proteins): # count the number of proteins in a protein group - return len(proteins.split(';')) - -def apply_run(row, db_path, threshold, genome_mode) -> dict: - result = run_pep2taxafunc(row, db_path, threshold, genome_mode) - return result - - -def add_additional_columns(df): - try: - print("Trying to add 'EC_DE', 'EC_AN', 'EC_CC' and 'EC_CA' to the dataframe...") - df = add_ec_name_to_df(df) - print("Additional EC columns added!") - except Exception as e: - print('Error: add additional EC columns failed!') - print(e) - - try: - print("Trying to add 'KEGG_Pathway_name' to the dataframe...") - df = add_pathway_name_to_df(df) - print("Additional KEGG_Pathway_name column added!") - except Exception as e: - print('Error: add additional KEGG_Pathway_name column failed!') - print(e) - - return df - - -def run_2_result(df, db_path, threshold, genome_mode): - tqdm.pandas() - df_t = df.copy() - # print('Counting protein number and peptide length...') - # df_t['protein_count'] = df_t.loc[:, 'Proteins'].progress_apply(count_protein) - # df_t['peptide_length'] = df_t.iloc[:,0].progress_apply(stat_length) - print('Running proteins_to_taxa_func...') - - with ThreadPoolExecutor() as executor: - futures = [executor.submit(apply_run, protein, db_path, threshold, genome_mode) for protein in df_t['Proteins']] - results = [future.result() for future in tqdm(futures, total=len(futures))] - - # convert the results to dataframe - df_t0 = pd.DataFrame(results, index=df_t.index) - # try to add pathway name and EC name - df_t0 = add_additional_columns(df_t0) - # add the columns of None and None_prop - df_t0['None'] = 'none' - df_t0['None_prop'] = '1.0' - - - # change the column names of 'Description' 'Description_prop' to 'eggNOG_Description' 'eggNOG_Description_prop' - if 'Description' in df_t0.columns: - df_t0.rename(columns={'Description':'eggNOG_Description', 'Description_prop':'eggNOG_Description_prop'}, inplace=True) - if 'Preferred_name' in df_t0.columns: - df_t0.rename(columns={'Preferred_name':'Gene', 'Preferred_name_prop':'Gene_prop'}, inplace=True) - else: - print('Warning: column name "Description" does not exist!, skip renaming...') - - df_t = pd.concat([df_t, df_t0], axis=1) # concatenate the annotation results to the original dataframe - # reorder the columns - cols = df_t.columns.tolist() - sample_cols = [col for col in cols if col.startswith('Intensity_')] - for col in sample_cols: - cols.remove(col) - cols.append(col) - df_t = df_t.reindex(columns=cols) - return df_t - -def save_result(df, output_path): - dir_path = os.path.dirname(output_path) - if not os.path.exists(dir_path): - os.makedirs(dir_path) - print(f'Output directory did not exist, created: {dir_path}') - - if os.path.exists(output_path): - counter = 1 - base_name = os.path.splitext(os.path.basename(output_path))[0] # get base name without extension - ext = os.path.splitext(output_path)[-1] - new_output_path = os.path.join(dir_path, f'{base_name}_{counter}{ext}') - while os.path.exists(new_output_path): - counter += 1 - new_output_path = os.path.join(dir_path, f'{base_name}_{counter}{ext}') - output_path = new_output_path - print(f'Output file already exists, saved as: {output_path}') - - df.to_csv(output_path, sep='\t', index=False) - print(f'Output file: {output_path}') - print(f'Output shape: {df.shape}') - -def remove_human(df): - print('Removing human proteins...') - print(f'Original shape: {df.shape}') - df = df[~df['Proteins'].str.contains('HUMAN')] - print(f'After removing human proteins: {df.shape}') - return df - -def remove_reversed(df): - print('Removing reversed proteins...') - print(f'Original shape: {df.shape}') - df = df[~df['Proteins'].str.contains('REV_')] - print(f'After removing reversed proteins: {df.shape}') - return df - -def peptableAnnotate(final_peptides_path, output_path, db_path, threshold=1.0, genome_mode=True): - threshold = round(float(threshold), 4) # round to 4 decimal places to avoid float precision problem - print('Start running Peptide Annotator...') - print(f'Input file: {final_peptides_path}') - print(f'Database: {db_path}') - print(f'Threshold: {threshold}') - print(f'Genome mode: {genome_mode}') - print(f'Output file: {output_path}') - print('-----------------------------------') - - # check if the input file exists - if not os.path.exists(final_peptides_path): - raise FileNotFoundError(f'Input file not found: {final_peptides_path}') - if not os.path.exists(db_path): - raise FileNotFoundError(f'Database file not found: {db_path}') - - df = pd.read_csv(final_peptides_path, sep='\t') - # df = df[:10] #! for testing - # modify the column names - df.columns = [col.replace(' ','_') for col in df.columns] - - # filter the peptides with intensity 0 in all samples - print(f'Original shape: {df.shape}') - df = df.loc[:, ['Sequence', 'Proteins'] + [col for col in df.columns if col.startswith('Intensity_')]] - print(f'After filtering Intensity 0 in all samples and removing other columns: {df.shape}') - - # remove human proteins and reversed proteins - # df = remove_human(df) - df = remove_reversed(df) - - # run the function proteins_to_taxa_func - df_res = run_2_result(df,db_path, threshold, genome_mode) - - save_result(df_res, output_path) - - return df_res - - -# if __name__ == '__main__': -# final_peptides_path = 'C:/Users/Qing/Desktop/Example_final_peptide.tsv' -# output_path = 'C:/Users/Qing/Desktop/1.tsv' -# db_path = 'C:/Users/Qing/Desktop/MetaX_Suite/metaX_dev_files/MetaX-human-gut_20231211.db' -# threshold = 1 -# t0 = time.time() -# peptableAnnotate(final_peptides_path, output_path, db_path, threshold, genome_mode=True) -# print(f'Running time: {time.time() - t0} seconds') - -if __name__ == '__main__': - parser = argparse.ArgumentParser(description='Run Peptides to Taxa and Function') - parser.add_argument('-i', '--input', help='Input file path (final_peptide.tsv of MetaLab)', required=True) - parser.add_argument('-o', '--output', help='Output file path', required=True) - parser.add_argument('-d', '--database', help='Database path', required=True) - parser.add_argument('-t', '--threshold', help='Threshold of the proportion of taxa in a protein group', default=1.0) - parser.add_argument('--genome_mode', help='Whether to use genome mode', action='store_true') - args = parser.parse_args() - - t0 = time.time() - peptableAnnotate(args.input, args.output, args.database, args.threshold, args.genome_mode) - print(f'Running time: {time.time() - t0} seconds') diff --git a/utils/version.py b/utils/version.py deleted file mode 100644 index 7510d50..0000000 --- a/utils/version.py +++ /dev/null @@ -1,2 +0,0 @@ -__version__ = '1.107.8' -API_version = '1' \ No newline at end of file