Overview
Sequences
The following sequences are available for this feature:
Legend: polypeptideexonCDS Hold the cursor over a type above to highlight its positions in the sequence below.ATGTCCCGTGTACAATTAGTATATCACCTGAAATTAAGCTGATATTTCTTTTCTTGGTGGTAAGAAAATTAAATTGCATATGGGAGGTCTGAAGTTCAAGACCCACTAACCACTACTATTATGAATAATGTGCGTTGTGTGTGTGTGTGTGTGTGTGGAGGGGGGGGGGNGGGGGGGGGGGGGGGGGGGTGAAGTGGCAGAAAACTTCTTCTCTTGACCTTTGTATCTCTTGTACAGTTGTACTCTTTCTCTTTTCTTGGATGTACTGCTGGAATCCCATATATTGGCATTTTATCCAAGACTTGTATCATTTGATGATGCCATGTGAATCTATGGATGGGAAACATTTCGATAGTTATTGTCTTATGATTTATATGATGTCTGTCTGGAAAGCATAACTGCTTGAATATTAGGTAGTTAGGTACTGATTGGTGTATTGCTGGGGTTTAGGCAAGAGTTGCTCTGTGACTGGCTACTTATGTTGGATATTGAGTCCAATGACGAGCATAAGTCAACTTCTTGCAATACCAGGCTACACTTATCAATAGATTCATTGGTTGTTGTCCTTGACTCCTTGTACTTATCTTCTCATACTGTGCATTGGCTTTTTGGCTGTGATAAAAATATAAAATATAGAACCATGATCCAGAGCATGATTAAGGAAGGAAAGATTGTGCCTTCAGAGATTACTGTTAAGCTTCTCCAGCAAGCGATGCAGGAAAGTGGAAATGATAAGTTTCTTATTGATGGGTTCCCTCGCAATGAAGAGAACCGTGAAACCTTTGAATCTGTTGTGAGTCCCAGTTTTCTGTATGTTCCACTGAGCTCATTAAAGTCTGTTCAACGCTGTGCAATCTATTTGATCAAATTTTTTATGCGCTGCAGACTGGTATAGCACCAGAATTTGTTCTTTTTTTTGATTGTCCAGAAGAGGAGATGGAGAAGCGTCTTTTAAGTAGAAAGCAGGTTCCAAATGCTGAACTTGTCGATCTCTGTTTTCTAATTTGATCAGCCAAGTTCTCTCTTGGCCTAATCTGGTTTGTACATGCACTGATTCTTTCTAGCCATGAAGGGTAGGGAAGATGATAACATGGAGACCATCAGGAAGCGTTTCAAGGTATACATGGAGTCTAGTCTACCAGTTGTTGAGTACTATAGCTCGAAGGGAAATGTTAGAAAGGTCAGACGCTGTCCATGCTTTTCCTAGCCAGAGAGCTTTGGTCAGGTCCTTTTGTACGTTTATTTCTTTCTAACTGACTGAAATGCTGGTATACATTTGTTTTAAGATTGATGCAGTTAAACAAGTTGACGCTGTATTTGAGGATGTCAAAGCTATATTTAATTCAACAATAGAGAAGGTAGTTTTTCTCTCTCTCTTATTTGGAAAGGGATGGAAAGGAAAGGGAGGGGAACAAGTTCCGTTTTTTGGAAAAGGGGTTGGGGTAAGAAGGGCAGGGAGAGGGATAAAATATTTTCTCTCCCTCTTTAATAAACACTATCCCTCCAAAATTGAATAGTTTAGAGGGAAAATGAAGCGCTCACCTTTCCCTCCCTTTCTTCCGCTCCCTTTCTTCCGCTCCCTTTCATCCTCTTTCCCTTCCTTCCGCTTCCTTTTTATCTTGCTATCCAAACAAAATGTTAATGAAAAGATTAAAATGACCGATTTCCGATATGTTCAACCATGACGAATTCTCACTCTAAGAACCCTCATAGCACCATTCCCTCGGAAAAGACACCATTGGTAGTTGGAGATTCATAGGAAGAAGAGATGGGTCAAATTTATACTCTATGTACAGAGCGCTTGAACGATAAGGACTACCACCTTTTTTTTTGGGTATAGCATCTTGGGATGAGACATCCACCACCTTAAAGTCTATCAGACCTCGTTCAACCAGAAATTCCACCAAAGCTGTACCGAATGGGTAACTAAGAGAGTCATTAGAACGCTTTTGATTACTACGGGTACCTCCTTTAACAACTTGCTCTTGAAGCAATGTTTGTGCGTTTCGACGCACCAGCGAGTCAATCCTTTCGACCAGATAAGCGCACCTTACAACTGAGATGCTAGAAGATGTCACATTCCTGAAATATACCCTTTTTCATAAAATTCTCATTCTACTACTCTCTCTGTTCTTGAATATTAGTCTTCTTTTCGTATGATGTCTTTTTTACTAGTCCCTTTTGGAATATTTCCTTACTTGTCCTACATTTATCCCCACTATACCTCATAAATATCCAAATAGTGCACTTGTTTACTCCAAGTAAACCTTTATTCCCATTAAACCCCTTAATTATTTCTTTCTCCTACCCACATGAGTGGGATTCATGTGACAAGTATACTTATATTGGATTGTCTTAGAATTCAAAAGTGACTAACATTCAAGAGCGGAGGGAGTATTTATTTCCGCAAGAAAGCTGGTCTATTTTTCTTTCATGGCTCAGCACAAAATTTCCAACTCAACTAGCGGCTTACTTTGGATAATTCACTAATTAATTTAGCGATGTATGAGTTATTGATTGCCAACTCATAGGTAATTTTATGGAAAGGACACATTTTGAGAATTTTTACATCTTTCTGCATTTTAGCTCAAAACTGGTCGATAAAAATAAAAGATCCTTTATGTAGTTTTTTAAGTTGAATAGAATGATCCTTCATTGAATAGTGAAGGTATAATTTTCTTCATTCCCTGATTTAGCACCCATAATTTGATTTCCAATTCAATATTTTATATTTTCCCACTCCTCAACTAAGCTAACACCAAGTATCTGGTCTTCCAAAGTGTCGGGAAAATTTATCAAATACAGCTCTTTAATGTGTTCACTTTGCAAATTGCAGCTTTTTGGAAAAAAATATGTAATTGCAGCATAAAAAGTAGTACTTGTTAATTGACACTTCATACCCATTTTCCAAATGACGTAACATTTTTCTCCGGTTTTCTCTATCAACCACATTGAGTTTAAATTCAGGTTAAATGTAACTAAAAAAGAAAACGTGATAAAAGCTCAAGCGGTATCAACAACAACAACAACAACAACAACAACAAAGCTTTAGTCCCAAAATGATTTGGGGTCGGCTAATGAATCGTCGTAGGAGATCGTCATTGTCACCAATCAAACCAGAAAAGAGCAGGAAGTAAAAAGAAAAAAGCAAGGAAAAGAAGGTGAAATTAATGAAAGTAAGATAAGAAAAAAGCTCAAACGGTAAGGAAATGCAAAATTATAGGAGGGGTCTTTCTCGTGTTTGACAAAAAATGTTATGTAATTTTCAGGTTTGGTTTACTGGAAAATGGTGTGGGTGTTAATTAACAAGTAAATAATACTTTTTAAACTGCAGTTTGTAACTTTCTTTAAAAGGTTTAATTTTGCAAAGTCAGTACTTTAAAAGGTTGCATTGAACGAATTTTCCAAAATGTTTTCATGAACTCATTTTCCCTCTTGGCGTCCATCTTTCTTCTTTTTTCTCTCCTCTCTCTCATTACTTTTTAGTATTTTTAATAGATTCTCTCTTCTCAAGTCTAAACGTTAGGATGTTGCTAAACATGAGTATGCTACTTCGTATATGTTTTCTTTGCAGGTTGCTCCTTATGAGGATTTTCCAACATCATTGAATACCAAGATGCCATAACTATGTAACTTTACCGAGGTTAATCGTTTTCAAGTTTTGTAGATATTCTCGCTTGTTTTTACATAATCGTGTTGCTCTTCAGAATTGAAGTGCTATTAATTCTTGCTGACGATCTTGTAAATGATTCTTCTCCAATTAAATAGTTATCCTAGCTTGGACTCTTTTCAGCTGAAATTGACCCTTCTGATTGATTAAGAATTTAGGATGTTGAAGTTTGTTGGTGCCGGTTAAGTTATACTTCTAAGTTTTTTTTTTGATTGAAGTTATACTTCTAAGTTGCACACTTGCACTTATCAATTGTAATTTTTAAAATACAGTATTGCTTGGGAAGTATTTATATGGGCCTTGGACGGGTACAGTTGGAATTATATCTGAGGTATTACAGAGTATGATGTACGTGTATGCTCTAAATTTCCTTGTACTTTTTATGTTTCTTTTATGGATGAAAATGCAAATATTGGGTAACTTCAGTTTCGTGAAAAGATGTAAACAAGTTGTGAGTCTTGTGACTTGTGAGGGTTCTGTGTATTATTTTCTTTGACACTTATTCAAATGTCTCTGCAGGTTGTGATGGGCTGTGCTTGCAAAATGCTCCACTTTACTTATTCCTTCTGTTTATCGATGGAATTTTGGCAACGAGAATATGAACTATGAAGCTATTGCTCGTAGAACACAATGCGTTATATGCCAGTCTTTTGTTGCTTTCTACTGTTTGATGATTTTGTAATGGGTTTGAATGCCTCTAATATGTTTTTTTGGTATTGGCAATCGTATACGAAGCCTAAAGAAACCTTTTAAGTAAAATATGCTACGTAATTTTTTTGGTAAAGCAAGAGTCTTACTCTGATGTTGATTATAATTACCTACTCTATAAAAGTTGATTTTTGTATCCAATGTATTATTTTTAACTATATTGTCTACACGGCGGAGACTATTTTTGTGGGTAAAGAGCTTCTACTCTTCTAGTAAGTTGGTGAATGGTGATAATTGAGAGGTAAGTCAGGGTTCAGAATTGTTTTCAATTTTAAAACAAATGGTGACGGTGTTCATTTTGAAAATTTGCAAAGTTTTTTTGATTCAAAAGCAGAGAGAAGCTCCAAATAAAGAGAAAAAACTAGCTAAAAGCAATAACAAAATAAGTCTAGGTAAGAGCTAGAATATCCTCATCTAAAATTCTATTAAGTTCATCAATCTACCGTCCTATTAACCCCTCGGTAAATGTAAATTACCGTGATTTGCACATTTGATAGACAGTGATTTGCAAAGTGATTGAATGTTACTGATTACTTGTTTATGAATTTGGAGCTCTTTGAAGTTTGAATTGATGTTAAAAGTTAATGTCAGGAAACAATACTCGATACTTAGTATTTAATTTAATTAATAAATTAATAATTAATTTGGAAATAGGGATAATGATAGATAACAGTACTCATAAGTCATATCATAACAATGTGTAGTGTGTAGTGTGTAGTGTGTACTGTAGAGTGTAGTGTGTGTCCACCGGAAGCAACGATGGGCGACCTCAAATGCATTTCAATATCCATGAATATGATCCTCTTCCTAATCATCATCGCCTCTCCTCATCTGGCCTCGTCGTTGTTGTCGTCGTCTCAGCAACAGCAGCTAAAACATCAAGAAAAAGAAGAAGACGAGCAGATCATCAGCCGATTCCAAAGCTACCTCCGTTTCAAAACAGCCCACCCCAACCCTAACTACACTGCACCTGTCTCCTTCCTTATCTCCCAAGCTCACTCCATCGGCCTCCAGACCCGCATACTCGAGTTTGTTTCCGGAAAACCCGTACTCATTGTCACCTGGCCCGGTTCTAGGCCCGACCTCCCTTCTATCCTTTTCAACTCCCATCTCGACTCCGTCCCGGCTGAGCCTGATAAGTGGCTTCATCCTCCATTTTCTGCTGTACAAGCTTCTGATGGAAAGATATATGCCCGCGGGGCCCAAGACGACAAGTGCATCGGTTTACAATATCTGGAGGCCATCAGGAACCTTCGCCAACTCCGACAATTTCAGCAGCCTATCAGAACAGTCCACCTGTCCTACGTACCCGACGAGGAGATTGGAGGCTTTGATGGAGCGGCCAAGTTAGTAGAGTCCAAGGAGTTCGAGGAATTGAATGTAGGGTTTGTGATGGATGAAGGCCAGGCTTCTCCAACCGATCAATTTAGGGTTTTCTACGCTGATCGATCGCCGTGGCATGTCACCATTACGGCCAGTGGAGTCCCAGGGCATGGGTCCAGGATGTATGATCATAGTGCCTTGGAGAATTTGATCATCAGTTTTGAGATGATTTCTAAATTTAGGGACTCTCAATTTGATTTGGTAAAGAGAGGATGGGCTGCTAATTCTCAAGTCATCTCTGTTAATCCTGTGTTTTTGAATGCTGGAATTCATACCTCTAATGTCAGTACCCCCTCTCTCTCTCTCATTTCACTTATGTCAGTGCCTTGTTGATTGTTTTGTTTGTGAATACAACAATTTCTGTATGGATACAGGGGTTTGCCATGAACATGCAGCCATCCGAAGCTCAGGCAGGGTTTGATATTCGGTTGCCTCCCACTGTGGATCCAGAACTTATTAGAAACAGAATTGCTCATGAGTGGGCTCCTGCATCAAGGAACATGTCATTCCAGGTTTTTCTTTTTTCTCCACCCATGAGTTTGTTTCACTGGCTCACTACTTTCTGGTTTCTGTTGGAGTAACTGTTTGTCCTGCTACTTTTAATTAACTTACATTCAGATTGCTGCACAACTATCTACTATCTGCTGTTTTTTTTTCCTGTTGATTTAGTGACTTTTTTCCTTCGATTTTCACTTATTGTTTGCTGGTACTTTAGGTTTTCTGTTGCACTATGGTGGCATAAGTCTTCCCTCTTTTCTCCGACTAATTTGCACTCTCACTTTTTTTTTTCCCCCCTGGGTTGATACCTGTGTGGTAACCACCAGAACTTGGGCAAGGAGTTTGTAGTTGCAAGTAAATATGATTGTCAATCTCTCCTTCCTTTGAGTTAGATTTCTCTACAAGTGAGAAATGGAAGGGTTATGGACTTGTGGTGGTAAATTTGTCTACTTGTTGATTGCATTTACACCATGTTTGGATAGCAAGATAGAAGGAGAGAGGAAGAAGGAAAGGGGGAAGGTGGAACTCCATTTTTCCTCCAAATATTTCCAATTTGAAGGGACGAATCCCTTCCTCTCCCTCCCTCCCCTTCCATCCCCTAACCCCTTATCCAAACATAGTGTTAGTCCAGGGTGGTGAAATTCAAGATTCCATAATTACATTAGGGATGCCCACACTTGATCATATAAACTAAGCTCTTCAATTGATATTAGATGGGCTTTTGGTAATTTTTGTGTCATGCCCCTTAATTCTAACAGAAGACTAATTTTTTATATCTTTTTCCGTGCATCCTTTTCTTTTTTGTTCACAAAGAACTCAATGATGGGTTCTTAACCACTAGATTTGTTGACTTAGGAAAACGAAGTATATAGGCTTGAAAAGTTACTGGAACACTTTGATTCAAGTAAAATAAAATTTACCCCACTACTTAGAGCGAAAAGATGTTAGTACCAGGTGCTGGCTTACCTCCACCACAAAGGCTCATATATAGGAGTATAGGAGAGTGAAAAGGAAGGGCTTTGAAGTATAAGATGAGAAAACAGATATTGCTTGCGAACCCGGAAATATCATCTTCTTGTAGGAAATTTTGGTGTAGGAGACAATGGTCTACTGGTAAATAAATTATCTTATGTTGCTGAACTTTTGAACTTTTGGGTTTGGTTTATCATGCAAGTAAAAGTTGCAAAGGTTGTAGTTTATTAGGGTAGTCTTCAACTAACGTAATGGGGATAGGTGCATTGGAGTTGAGATTGTACAGTGAAGGAGATATTTTATTTAGCCTAGGAATGCTAGCTTTGGTGTTTTTTACTTTTAATAACCAAATGCGTGAGACATTGTCTGTTGTATTAAAAGTTCCATTTTTGTTATTCCTATATGCAACAAAACAAATGACTATTTCGTAGAATAAGTCTATTTTGGATTTTCGCGTCATAGATGGTGTTCCTAGGTGTGGAAACTAGGGGATGATCTGAAGTTCTGTCAAGCAGATCAAACGTTAGCTATACTCCGGGGGTTTATCCAAGGAAACCCCCTCTGATGCTCAGTAACTAGCTGAACCGAGCACAATTTAGAGAGAGAAGTAGAGTAGTTTTAGAGAGAAGTGAGAGCATGTACCAATATGTCAGGAGACTCCCCTAATGAATGCTCAAAGGGGTATTTATAGGCGTACTATTTGGTAGTACTTGGTTAAGTCAGATGCTGGTACGTAGTCTGCTTGGCTAGGTCGTGGGATATGATATTGACGTTCTCTTGTCTTGCTGTTTCTCTACTTGTTGATTTGACTTGCCCTTGTGGTCTAGCGTCATATGTTCTGGAAGACACCATCCCTTAGTCCCGTATGGATGGCATTAGATTGATAATCTGTTATAGCCTTATAGGAAATCGTTTTTGATAATTGTAATTTATGTTTTTGAGATCCTTGATGAAGGCAGTGAATTAGTTAGGTTTTGCAGAGCTCTTCAGCTAGTGTTTTCTATTTATCACCTGATGCCAAACTGCCTTTAGAATCCCACTTTAAAGATCATACATCACCGTACTCGTAGGAGACCAAAAGGTGGAGTTTTAATCTCTGACCAAGGCCAAAATTATGTTAGGCTGTGGAAAAACTTGAATGAAATTTATAGGCGAATGCTAGTTCGCTAAGATATGTGAAGGTTACTGTGTTCGTATAACCATACATGATATCACTATACGACATGTACATGTGGGCCGGATAGCAACTAATATCGTGTGTCATGACTTAAGAGCAATTATACAATAATTGGAAGTTTCTTTGTGTAATAGCATGTGAATTCTTTAGATCAAGTTCTCTGGAAAAGTTCACGTCATATCCGAAGTTATCTTAGAGAGTCCCGAAAGTGATGGAAATCTGGGGTAAAAAGAACCGTTGAGTTTCCCGGTTACCAAGCAGGACCTGAGGTGATGTCAATAATTGGCAAATGAAGCACGTTCTTAGGGTGATAAAACTTATAGAAATTCCTTGTAAGTTGTAAGGGAAAATGTATGGTTGGTAAAGGATTTGGATACATATTACCCGCAATTTGTGGCATTCATCTTGTCGAGACTTATGCGTGTGTTGCTAATTTGCTATTACTTTTAGGTTCCTGGAGCACTTTAG ATGTCCCGTGTACAATTAAGCATGATTAAGGAAGGAAAGATTGTGCCTTCAGAGATTACTGTTAAGCTTCTCCAGCAAGCGATGCAGGAAAGTGGAAATGATAAGTTTCTTATTGATGGGTTCCCTCGCAATGAAGAGAACCGTGAAACCTTTGAATCTGTTACTGGTATAGCACCAGAATTTGTTCTTTTTTTTGATTGTCCAGAAGAGGAGATGGAGAAGCGTCTTTTAAGTAGAAAGCAGGGTAGGGAAGATGATAACATGGAGACCATCAGGAAGCGTTTCAAGGTATACATGGAGTCTAGTCTACCAGTTGTTGAGTACTATAGCTCGAAGGGAAATGTTAGAAAGATTGATGCAGTTAAACAAGTTGACGCTGTATTTGAGGATGTCAAAGCTATATTTAATTCAACAATAGAGAAGAATGATCCTTCATTGAATAGTGAAGTATTGCTTGGGAAGTATTTATATGGGCCTTGGACGGGTACAGTTGGAATTATATCTGAGAGAGAAGCTCCAAATAAAGAGAAAAAACTAGCTAAAAGCAATAACAAAATAAGTCTAGTGTGTACTGTAGAGTGTAGTGTGTGTCCACCGGAAGCAACGATGGGCGACCTCAAATGCATTTCAATATCCATGAATATGATCCTCTTCCTAATCATCATCGCCTCTCCTCATCTGGCCTCGTCGTTGTTGTCGTCGTCTCAGCAACAGCAGCTAAAACATCAAGAAAAAGAAGAAGACGAGCAGATCATCAGCCGATTCCAAAGCTACCTCCGTTTCAAAACAGCCCACCCCAACCCTAACTACACTGCACCTGTCTCCTTCCTTATCTCCCAAGCTCACTCCATCGGCCTCCAGACCCGCATACTCGAGTTTGTTTCCGGAAAACCCGTACTCATTGTCACCTGGCCCGGTTCTAGGCCCGACCTCCCTTCTATCCTTTTCAACTCCCATCTCGACTCCGTCCCGGCTGAGCCTGATAAGTGGCTTCATCCTCCATTTTCTGCTGTACAAGCTTCTGATGGAAAGATATATGCCCGCGGGGCCCAAGACGACAAGTGCATCGGTTTACAATATCTGGAGGCCATCAGGAACCTTCGCCAACTCCGACAATTTCAGCAGCCTATCAGAACAGTCCACCTGTCCTACGTACCCGACGAGGAGATTGGAGGCTTTGATGGAGCGGCCAAGTTAGTAGAGTCCAAGGAGTTCGAGGAATTGAATGTAGGGTTTGTGATGGATGAAGGCCAGGCTTCTCCAACCGATCAATTTAGGGTTTTCTACGCTGATCGATCGCCGTGGCATGTCACCATTACGGCCAGTGGAGTCCCAGGGCATGGGTCCAGGATGTATGATCATAGTGCCTTGGAGAATTTGATCATCAGTTTTGAGATGATTTCTAAATTTAGGGACTCTCAATTTGATTTGGTAAAGAGAGGATGGGCTGCTAATTCTCAAGTCATCTCTGTTAATCCTGTGTTTTTGAATGCTGGAATTCATACCTCTAATGGGTTTGCCATGAACATGCAGCCATCCGAAGCTCAGGCAGGGTTTGATATTCGGTTGCCTCCCACTGTGGATCCAGAACTTATTAGAAACAGAATTGCTCATGAGTGGGCTCCTGCATCAAGGAACATGTCATTCCAGGTTCCTGGAGCACTTTAG ATGTCCCGTGTACAATTAAGCATGATTAAGGAAGGAAAGATTGTGCCTTCAGAGATTACTGTTAAGCTTCTCCAGCAAGCGATGCAGGAAAGTGGAAATGATAAGTTTCTTATTGATGGGTTCCCTCGCAATGAAGAGAACCGTGAAACCTTTGAATCTGTTACTGGTATAGCACCAGAATTTGTTCTTTTTTTTGATTGTCCAGAAGAGGAGATGGAGAAGCGTCTTTTAAGTAGAAAGCAGGGTAGGGAAGATGATAACATGGAGACCATCAGGAAGCGTTTCAAGGTATACATGGAGTCTAGTCTACCAGTTGTTGAGTACTATAGCTCGAAGGGAAATGTTAGAAAGATTGATGCAGTTAAACAAGTTGACGCTGTATTTGAGGATGTCAAAGCTATATTTAATTCAACAATAGAGAAGAATGATCCTTCATTGAATAGTGAAGTATTGCTTGGGAAGTATTTATATGGGCCTTGGACGGGTACAGTTGGAATTATATCTGAGAGAGAAGCTCCAAATAAAGAGAAAAAACTAGCTAAAAGCAATAACAAAATAAGTCTAGTGTGTACTGTAGAGTGTAGTGTGTGTCCACCGGAAGCAACGATGGGCGACCTCAAATGCATTTCAATATCCATGAATATGATCCTCTTCCTAATCATCATCGCCTCTCCTCATCTGGCCTCGTCGTTGTTGTCGTCGTCTCAGCAACAGCAGCTAAAACATCAAGAAAAAGAAGAAGACGAGCAGATCATCAGCCGATTCCAAAGCTACCTCCGTTTCAAAACAGCCCACCCCAACCCTAACTACACTGCACCTGTCTCCTTCCTTATCTCCCAAGCTCACTCCATCGGCCTCCAGACCCGCATACTCGAGTTTGTTTCCGGAAAACCCGTACTCATTGTCACCTGGCCCGGTTCTAGGCCCGACCTCCCTTCTATCCTTTTCAACTCCCATCTCGACTCCGTCCCGGCTGAGCCTGATAAGTGGCTTCATCCTCCATTTTCTGCTGTACAAGCTTCTGATGGAAAGATATATGCCCGCGGGGCCCAAGACGACAAGTGCATCGGTTTACAATATCTGGAGGCCATCAGGAACCTTCGCCAACTCCGACAATTTCAGCAGCCTATCAGAACAGTCCACCTGTCCTACGTACCCGACGAGGAGATTGGAGGCTTTGATGGAGCGGCCAAGTTAGTAGAGTCCAAGGAGTTCGAGGAATTGAATGTAGGGTTTGTGATGGATGAAGGCCAGGCTTCTCCAACCGATCAATTTAGGGTTTTCTACGCTGATCGATCGCCGTGGCATGTCACCATTACGGCCAGTGGAGTCCCAGGGCATGGGTCCAGGATGTATGATCATAGTGCCTTGGAGAATTTGATCATCAGTTTTGAGATGATTTCTAAATTTAGGGACTCTCAATTTGATTTGGTAAAGAGAGGATGGGCTGCTAATTCTCAAGTCATCTCTGTTAATCCTGTGTTTTTGAATGCTGGAATTCATACCTCTAATGGGTTTGCCATGAACATGCAGCCATCCGAAGCTCAGGCAGGGTTTGATATTCGGTTGCCTCCCACTGTGGATCCAGAACTTATTAGAAACAGAATTGCTCATGAGTGGGCTCCTGCATCAAGGAACATGTCATTCCAGGTTCCTGGAGCACTTTAG MSRVQLSMIKEGKIVPSEITVKLLQQAMQESGNDKFLIDGFPRNEENRETFESVTGIAPEFVLFFDCPEEEMEKRLLSRKQGREDDNMETIRKRFKVYMESSLPVVEYYSSKGNVRKIDAVKQVDAVFEDVKAIFNSTIEKNDPSLNSEVLLGKYLYGPWTGTVGIISEREAPNKEKKLAKSNNKISLVCTVECSVCPPEATMGDLKCISISMNMILFLIIIASPHLASSLLSSSQQQQLKHQEKEEDEQIISRFQSYLRFKTAHPNPNYTAPVSFLISQAHSIGLQTRILEFVSGKPVLIVTWPGSRPDLPSILFNSHLDSVPAEPDKWLHPPFSAVQASDGKIYARGAQDDKCIGLQYLEAIRNLRQLRQFQQPIRTVHLSYVPDEEIGGFDGAAKLVESKEFEELNVGFVMDEGQASPTDQFRVFYADRSPWHVTITASGVPGHGSRMYDHSALENLIISFEMISKFRDSQFDLVKRGWAANSQVISVNPVFLNAGIHTSNGFAMNMQPSEAQAGFDIRLPPTVDPELIRNRIAHEWAPASRNMSFQVPGAL Relationships
The following mRNA feature(s) are a part of this gene:
Homology
BLAST of Spo10824.1 vs. NCBI nr
Match: gi|902234867|gb|KNA23621.1| (hypothetical protein SOVF_023370 [Spinacia oleracea]) HSP 1 Score: 703.7 bits (1815), Expect = 2.500e-199 Identity = 348/349 (99.71%), Postives = 349/349 (100.00%), Query Frame = 1
BLAST of Spo10824.1 vs. NCBI nr
Match: gi|731364571|ref|XP_010694046.1| (PREDICTED: aminoacylase-1-like [Beta vulgaris subsp. vulgaris]) HSP 1 Score: 558.1 bits (1437), Expect = 1.700e-155 Identity = 277/351 (78.92%), Postives = 310/351 (88.32%), Query Frame = 1
BLAST of Spo10824.1 vs. NCBI nr
Match: gi|641862021|gb|KDO80708.1| (hypothetical protein CISIN_1g013641mg [Citrus sinensis]) HSP 1 Score: 469.5 bits (1207), Expect = 7.900e-129 Identity = 230/326 (70.55%), Postives = 267/326 (81.90%), Query Frame = 1
BLAST of Spo10824.1 vs. NCBI nr
Match: gi|568837483|ref|XP_006472753.1| (PREDICTED: aminoacylase-1 [Citrus sinensis]) HSP 1 Score: 469.5 bits (1207), Expect = 7.900e-129 Identity = 230/326 (70.55%), Postives = 267/326 (81.90%), Query Frame = 1
BLAST of Spo10824.1 vs. NCBI nr
Match: gi|720053646|ref|XP_010272799.1| (PREDICTED: aminoacylase-1 [Nelumbo nucifera]) HSP 1 Score: 469.2 bits (1206), Expect = 1.000e-128 Identity = 225/335 (67.16%), Postives = 270/335 (80.60%), Query Frame = 1
BLAST of Spo10824.1 vs. UniProtKB/TrEMBL
Match: A0A0K9RVT3_SPIOL (Aminoacylase-1 OS=Spinacia oleracea GN=SOVF_023370 PE=3 SV=1) HSP 1 Score: 703.7 bits (1815), Expect = 1.700e-199 Identity = 348/349 (99.71%), Postives = 349/349 (100.00%), Query Frame = 1
BLAST of Spo10824.1 vs. UniProtKB/TrEMBL
Match: A0A0J8E630_BETVU (Aminoacylase-1 OS=Beta vulgaris subsp. vulgaris GN=BVRB_3g070150 PE=3 SV=1) HSP 1 Score: 558.1 bits (1437), Expect = 1.200e-155 Identity = 277/351 (78.92%), Postives = 310/351 (88.32%), Query Frame = 1
BLAST of Spo10824.1 vs. UniProtKB/TrEMBL
Match: A0A067GLY3_CITSI (Aminoacylase-1 OS=Citrus sinensis GN=CISIN_1g013641mg PE=3 SV=1) HSP 1 Score: 469.5 bits (1207), Expect = 5.500e-129 Identity = 230/326 (70.55%), Postives = 267/326 (81.90%), Query Frame = 1
BLAST of Spo10824.1 vs. UniProtKB/TrEMBL
Match: A0A0A0LRI1_CUCSA (Aminoacylase-1 OS=Cucumis sativus GN=Csa_1G005600 PE=3 SV=1) HSP 1 Score: 458.8 bits (1179), Expect = 9.700e-126 Identity = 223/340 (65.59%), Postives = 277/340 (81.47%), Query Frame = 1
BLAST of Spo10824.1 vs. UniProtKB/TrEMBL
Match: A0A078JFE7_BRANA (Aminoacylase-1 OS=Brassica napus GN=BnaC06g40730D PE=3 SV=1) HSP 1 Score: 456.1 bits (1172), Expect = 6.300e-125 Identity = 211/306 (68.95%), Postives = 254/306 (83.01%), Query Frame = 1
BLAST of Spo10824.1 vs. ExPASy Swiss-Prot
Match: ACY1_PIG (Aminoacylase-1 OS=Sus scrofa GN=ACY1 PE=1 SV=2) HSP 1 Score: 243.8 bits (621), Expect = 4.400e-63 Identity = 123/306 (40.20%), Postives = 176/306 (57.52%), Query Frame = 1
BLAST of Spo10824.1 vs. ExPASy Swiss-Prot
Match: ACY1_PONAB (Aminoacylase-1 OS=Pongo abelii GN=ACY1 PE=2 SV=2) HSP 1 Score: 238.4 bits (607), Expect = 1.800e-61 Identity = 125/300 (41.67%), Postives = 173/300 (57.67%), Query Frame = 1
BLAST of Spo10824.1 vs. ExPASy Swiss-Prot
Match: ACY1_MOUSE (Aminoacylase-1 OS=Mus musculus GN=Acy1 PE=1 SV=1) HSP 1 Score: 238.0 bits (606), Expect = 2.400e-61 Identity = 121/309 (39.16%), Postives = 176/309 (56.96%), Query Frame = 1
BLAST of Spo10824.1 vs. ExPASy Swiss-Prot
Match: ACY1_HUMAN (Aminoacylase-1 OS=Homo sapiens GN=ACY1 PE=1 SV=1) HSP 1 Score: 237.3 bits (604), Expect = 4.100e-61 Identity = 124/300 (41.33%), Postives = 172/300 (57.33%), Query Frame = 1
BLAST of Spo10824.1 vs. ExPASy Swiss-Prot
Match: ACY1B_RAT (Aminoacylase-1B OS=Rattus norvegicus GN=Acy1b PE=1 SV=1) HSP 1 Score: 236.5 bits (602), Expect = 7.000e-61 Identity = 122/306 (39.87%), Postives = 173/306 (56.54%), Query Frame = 1
BLAST of Spo10824.1 vs. TAIR (Arabidopsis)
Match: AT1G44820.1 (Peptidase M20/M25/M40 family protein) HSP 1 Score: 445.3 bits (1144), Expect = 5.600e-125 Identity = 213/341 (62.46%), Postives = 272/341 (79.77%), Query Frame = 1
BLAST of Spo10824.1 vs. TAIR (Arabidopsis)
Match: AT1G44180.1 (Peptidase M20/M25/M40 family protein) HSP 1 Score: 443.7 bits (1140), Expect = 1.600e-124 Identity = 205/308 (66.56%), Postives = 256/308 (83.12%), Query Frame = 1
BLAST of Spo10824.1 vs. TAIR (Arabidopsis)
Match: AT4G38220.2 (Peptidase M20/M25/M40 family protein) HSP 1 Score: 363.2 bits (931), Expect = 2.800e-100 Identity = 171/304 (56.25%), Postives = 218/304 (71.71%), Query Frame = 1
BLAST of Spo10824.1 vs. TAIR (Arabidopsis)
Match: AT5G26667.1 (P-loop containing nucleoside triphosphate hydrolases superfamily protein) HSP 1 Score: 214.2 bits (544), Expect = 2.100e-55 Identity = 107/146 (73.29%), Postives = 125/146 (85.62%), Query Frame = 1
BLAST of Spo10824.1 vs. TAIR (Arabidopsis)
Match: AT3G60180.2 (P-loop containing nucleoside triphosphate hydrolases superfamily protein) HSP 1 Score: 192.2 bits (487), Expect = 8.500e-49 Identity = 92/131 (70.23%), Postives = 112/131 (85.50%), Query Frame = 1
The following BLAST results are available for this feature:
BLAST of Spo10824.1 vs. NCBI nr
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. NCBI nr) Total hits: 5
BLAST of Spo10824.1 vs. UniProtKB/TrEMBL
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. UniprotKB/TrEMBL) Total hits: 5
BLAST of Spo10824.1 vs. ExPASy Swiss-Prot
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. ExPASy SwissProt) Total hits: 5
BLAST of Spo10824.1 vs. TAIR (Arabidopsis)
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. TAIR) Total hits: 5
InterPro
Analysis Name: InterPro Annotations of S. oleracea
Date Performed: 2018-06-29
GO Annotation
GO Assignments
This gene is annotated with the following GO terms.
RNA-Seq Expression
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