Overview
Sequences
The following sequences are available for this feature:
Legend: exonfive_prime_UTRpolypeptideCDSthree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.TATTAATTTAAAATACGGAAAAATGAGGCGAAAATAAATTTGGAAAAACACCGGAGTACGAAATTACGAAGCATATACTGTGCATTCTATTCAATTAAATCCACATACCACCAGCAGTCTAGCACAAGCCTCTGCTCTACTAGCTCTCCGGCCACCGGCACCGCCACAAATAATCCATTGTTTCAATCAACTCTCTTCGGCAATTAGTAACCCTAACTTCCCTTTATCTTCTCAGTATTTGATCCCTCAAAATTTCAATTTAGGGGTTTTCGATTGATCCCCTTGCTAGATCTGATAAAAGAAATCTCTAAATTACTCCACAATAAAGTGAAATTCTCGTCTGGTTTTCGGCTGAATTCAGAGGAAGACGACTCAATTTTTTTCTCGGTGTTCCAATTAATTGAAGTTGAGGTAAGCTCTAAATTATATTAAATTTGAATAATGTGAGAATTAATTCCATATGAAATAGGTTTTAGCTGAACAAAAATGTTGATTTGCTGTGTGTTTCTCTGCTGTAGATCAATTTTGAGAACCACTGAACTATTGAGTGTAATCAAGTAGCATTTTTTTGGGTGAAATGTTGCCATTATGATGTTTTGTTGGATGATAATTTGTCTCAAGTTTGTGGGAAATGAGCCGTTCCCCATCATTTTCATTAAAGTCGGAACCGAGTCCGGAGGTCGATAATGATTCGTTGCACCGATGGATTGTGGCCTTTTATGTTATTAGGTTTGATCTTGAGCAAGGTCAGGTGGTAGAGGAATGTTTCCCGCCAGGTTGTTTATCAGAAGATGAGGAACTTGGGACAGCTTTTAGTTCGTTCCCAGATTCTGTATCCCAGAACCATAATCGTTCCAGTATCCATGATTGCATATTCTTCTTTAGGATCCGAAGGCGTGGATTTGTTGATGCAGCCAATGTACTTACTTCTGAGATAGTTGAGATAGAGAGAGATACTCCTCAGAAGTCTGCCACAAATTGGCAGGTTTTGAGCAAACAATCTAGTGATGAAGGTTCACGGTTCTTGTACGGCTTTGTCTTCAATAGGCAAAGGCATGATGAGAGGCTTAAGCGAGGTGGGGAACAAAAGTCGGTGGTTATCTTGTCTCATAGTCCATTTTCTAGTGTGTTCAGGCCTTTGTTACAAATTATGGGTCCATTGTTCTTTGACATAGGAAAGAAAGCCCTTGAACATGTTGCTGCTTATGTGTCATTATGGCCGCCTCCTGTTCCAGGGAAGCTAATGGAACTTCCCATTGGTAATGCTACCCTGAAGGTGAACCTGCCTCCTGTTCAAAGTTTGCCTTTGGATGAGAGAATGATGCTTGAAGAGTCTGCCACTCTTATGGTTCCTTTGCTTGCAACAAATCAGTCAATCCCGTTAGGTCTATTCCATGAAGCAGACCTTTTTGGAATTTTTCGTGGAATTCTCTTGCAGCTTTGGATTCTGTGGGAGTTAGTACTTGTTGGCGAGCCCATCCTTATCATTGCCCCAACTCCTCCTCAGTGTTGTGAGGCTGTTGCAGGCCTTGTGAGTTTAGTTGCTCCACTACTTTGTAGTATTGACTTCAGGCCTTATTTCACCATTCACGATCCAGAATTTGCGCAGTTGAACTCACTTCAAGATGGTGGTTCTTTTCCTCCAATGATACTTGGTGTAACAAACCTCTTTTTCTTGAAAGCGTTGCGCAAATTTCCTCACATTGTGTCTGTTGGAAGTCCTGTTGCTAATTCAAGCCGTGCTAACATTGCTTCTGGGTCCTCTTCTGGTAGACCAACTGGTCGCTTAGAAGGATTGGGTGTTCAACAGCTCTCCTTGAGGAAATTTTCTCCCTCAAGCTTGTTAAATGCAGTCAAGTTAAGGAGGGAGGGTCCTCTTTGTCTGATGACAGATCACAAAGAAGCTGTTTGGACCAGTTATGGAGCAACTACCAAGCCTGATACATCTATCTTGAACAGGCTGGTTGATGCAGGGGCGTTAACAAGGGTTGAGGAATCTATGTCTGTTGTGAACAACGAGATTCTACGTCGCCATTTTTTGGAGCTGACCACCAACTTTTTGTCTCCTTTTGGCCCTTATTTCAAGATCAATACCCCGTCTGAAGGGACTTCACCATTTGTTGATCCACCACCTCTTCCTCCATTTAATGCAGAAGAATTCCTTTATACTTTAGCAGCAAGAGGTCCAGGGAAATTTTTATCAAAGAGGATGAGATCAAACTGGCTTGATTTATACAGGTGAGAAGTGCAAGTGTATGTTAAAGTTAACTTTTGACTTGGCCGTTTTATTACAACACTTGTTGACACTGACTTTGTGGTTATACAAATAGGCGTTTTCTCAAGGGGGAGAATTTTATGCCATGGTTTACTAGAAGACGTGCAGTTGCTGAACAAGAGCAGCACAGGTTATGGAAACAAGCAAGACTGAAGACTGACATCCAACAGTTCTTATCTAAGATGGCTGAATTAGAAGTTGTGGACTCCTTCAATGCTATTGAAAGGCATCTTCTTGGGGAGCTGCAGGTGACTTCATAAATCCTTCTTAAAATCTGACTAAAATTAAACTCTTGTTACTAATCAAGAACTTTTTTGAAGTTGATGGTTAGGTAAAGTTAAATTAGTTAATTTATGAACTATGAAAGTGCTAATACGATAGAGATTCACTAAACCCTTTTGTTAGAATTTTTTCCATATGCAAATATCAGAGCGTATGTTTACAGGTTGATATTTTGTATTATGTGTGCCTTTGCAGTTTGCATCCTATAATTTTCCTACAATTTTATTTGCTCAATAATTATACTCGATTTGGGTTCATTAGGAGAGAAAAGATGATATGAAAATGTCTATTTTCAAAAAATTAGAAATTTATTATTCTAGTACGATTTTAATATAGATTAGACATTATTTTTACTCAGCCTTCAAAATGAAAAATTGGATGGATCTTGGGTATGAATTTAATTGTCAGATTAATCACAAGCTGATCATTTTGAGGTAAAAGTTAAAAGTTAAATATTGCTTGATAGTTTGACATGTAGTGTAGAGGCTCCTGCTCTACAATGAAGGCTCCTGTTTGAAAATAACAGTATTGATAAGGCCAAGACATGGAGAGGTCGGCTATCCCGAGCGTCAATATGTAAATTGGAACTCCAAAAATTCTTTCAAATCAAGTCTCTGTGTTTTGTCTCTTTCCCTTTGCCTCTAGCATCTACTCCCTCCGTCCCAGAATACTCGACCCGGTTTGACCGGCACAGAGTTTAAGGGACTTGAATTGACTTATTTAATTTAATAGGTAGTAGTTGATAGTGGGGTATTATTTTAATGTAGTTAGTGAGAGGTGGGTTAAGAGGTGGGGTTGGGGTAGAGTAGGGGTTGAATTTTTAATTATTTTTTGTATGGAGTATAGGGTAGGTGGGTTAATAGGGGTGGGGTGAGAAATAATATAATATTGTTAGAATATTTCCATTTTTAGAAACAGGTCAAGTATTAAGGGACGACCCGATAAGGAAAACAGGTCAAGTATTCCGGGACGGAGGGAGTATATTTTTCTTGATGGAGAATTTATTATCCAGCAGCAAAGCTTTGAGGTAGCCACTCTACTCCCAGGCTCTCGGCCCCTAGAAAATTTCGTATATTGAGATGATTGCCCGAGGATGTTGCTTCCCTCAGAGGTCCATGCTTTAAACACCTAACGTCAATCTTTGCCTATATTAGAATAGTCATGTAAAATTATTGACGAGGATGAAATGTTCAGGAGATTACACCAATCTATATAAGTGCTCCTTCGGTGGACTATGTTATTTTCCTCTTTGAAAGATTGGAGTCTGAGATTTTGGATAGAGGTGATTAGGTCCTATAACTATTCAGCATCAAGAGTGTTTGAACTATAAGGAGACCATTTGAAAAGAGGTTTTGTCAAAGGTGTTTCACTATGATATTCTTATAGGAATAATGGGAGCATATTAGAGAAGATCTTGTGACTTTTAGTTTTATCTTTTCGTTTTTTCAACTCTTTTTATTTCCCCTTACCGAGCTTTTATGGATTGGAATGACCTGGAGGAGCATGAATTTTGTCATCGTGACCAGTGTCCCAAACTCCCAACAGAGGTTATGTTGTTAATGTTAGATTTTTGCTTCTTCACCTGATTCTCTGCTTCACCAGCAGTCGTGTGCTTAGGTTTTTAAGGGAAAGGGTTTTGGCATAATTGAGAAGACTGATTAGAGGTTTTTCTGCTGCTTCTCTTTCTGTTCTTATTGATGGATCTTCAAGAGATTGGTGTTCTGATCTAGGAGAATGAGGCTATAAATCATCTGTCCTCATTTTGTTAGCTCTGGCTAACATTATTGTCTCAACTGGGACCCTAGAAAATGAATTACTTTATGTATCTGATCCTCATTATGCCAATGACACTATCTTCATTTTGTGCGGTTTAGGAAATTCTTCTTCTTTCATTGAAATACATTATACGAAGTATAATAGTTGGTGTTTAAGTTCCCAAATTAATAAGATAGCTTTGCTTCTGCAGCCAGGTATTGGATCCAATCAGCCAATATTGACTTCTTACTTTTTTGATGTGCTGTTTTTTGTTTTTTTTTTTGTTTTATTGCCCGAGAATCTTATTTCTTCCATTTTAGCTTTGTCGTGGCATGTGTGTAGATACTGTTAAATTTAAGATATTTTTTGTAAACTGTGTTACAAAGTTTAGTTATATATGTATACATCATTTTAGAATATATGTTATGGATTAGGGATTAGGCAAGGATGCTAGTCTAAATATTTTGTGATGGTAAAGAGGAGGAGAAACTCTAAAAGGACTCTAAGAGACCGTGCGTTCCTATTCTTTCAGTTTTGTGCTAGATCAAGCGCTAAATTAGTAGGGATATAACTGTATTAATCCACTAATAGACACCAAAATATAGGGCCAAACTAATTCAGAGGGCTTGATATTTAAAATGGTTTTCTTAAATATGCTTTCCTAATATGATTTCTATTTTCTCAATGGGCCTAAATTAAGAATTTCCCCCCCTTTTAATCTGGTCAGTACGACGAGTAGGCTTGATAATTGTCTGGAGGCTCCTTTACTACAAAGTTGAAGAATAGACTTTCTTTAGTTGTGCCTTAGTGTGAATGCGTGATACATATTTGTATCTATAAATTTGTAATGGATCAAGTATAGGGGAAGCTGGAAAGGTCATTTTAGGTGATACAAATAAGCAAGTCATTCTTAGCTTGGGGTAGGAAGGCAACTAGGGAGTTGTATACAGATGAGTTCAATTAGAGAGGGGTATGATAAATATAGGTGAGAGTTCTATTTTGCTTTGTTTAGGGAGTGTCCTGCTACGCAAAGGTCTGGGATTGTAGCGATCATTTGGTGATTTAATGGGATCAAATTACAATCAACTATCAAGTTTCCCCCCAAAATTATCTACTTCTTCCTTAACTTTTTTCTTCTGTTTATGCAATCTATTACAAAATTTCCCTGTGATCTTCCCTGCTAATGAAAACTTGAAGGCAAGTCATCATACATTGGCAGCAGAGGATGTTAATTAGAAAAGGATTTTTTACCCACGCAAGCTTTCATACTTTATGTCGTAGGGAGGACTTGTTTATCATTTTGTACTCTTCGGCATTTCAGTTGTCTTTGACATTTGTCATTAATCTTGTGAGTGCGACCTTGTTCTGCCAAAAAAATGCTTATGTAGATTGGAAAAGAAGAAAGATTTTCCTTGATGTATGGTTCTTTGGGGCAGACACACTGATTTGTTATTTAAACATATTCTGGTGAAACAACTTTCACTGTCTATTAAAACGTTATTTCAGCATCTTTTGGTTGTGTTACAAGTTTAGTTTTTCAGCCGTTCCAGAATACTCGCAACACTTGCCTTTTTCAGCCGTTCCTGAATACTTGCAACACTTTTATTTTTGGTAAGGGACCACACTTATTTTATTATTTCTCCCTCTCCAATGGTCCCCACAAATATTTAGTAAGTTGTGCAACAATAATAAAAAAAAAAGATTAAAATATCCCTCAAACACCCCCTTCAAACCAACAAAAGTAAATGACCCAATGTCCTTGTGAAACAATAAAAGAACCCCCACTCATCCACTTGCAACTTAGTTATTCATTTCCTTGAACATTCAACTCTCCTCCTAAAACTACCCGGTCAACTGTTGCGAGTATTGTGGAACAGAATAGCGATGGATTTTGATAGAGCATCCAGGAACAAGCACGGTGAGAGTAGATTCTGATAGTGGAAACAACAGGGAAAAACTGTCATTCTCAGAATTTTAATTTCTTCTATCATCAAATCTGACTTGTCCACCTTAAATGTGAGGGATCTCAATTTGATGCAATCATTGCATATACTTCCATCATGTTGCCAACTGTTTACGGCTAACCGAGCATTAGTTTGGAGTATCTGGATAGGCTTACTTTATTTTGTCTAATAAGCAACTAAATTGCTTTACACTATATTATTGCGTAACACAAATGAGAATTGAAACCATCTTCCCTAGCCTTACTTTTCACTTCGCCTAGAGGATAACTCCAATTCCATCGAACTTCAATTCCACTGCTTCAAGCTTGCTACGAGCAGTGTTCTTCAATGTTTTCACATCCTTCCAAGTGGAGGTCTTCCAAATCTGATTTTGCGTTGTAATTGTTTGAATCAAAGACTAAACCCATTTGAATACCCATCTCTCTCCCAATATTATCAACCTGCTAATAGAACACTCATACCAAATATTAGAATTACGAACCCACAAAAATGGGTAAAAAACTCACAGATGGAGAGAACAAGACGAAGAAAACCATTGAAATGAAACAAATAACCCTAAAACTAAGGAAAACGGTCGGAAACAGTATATTTCCAAAGAAATTAAACTATATTCGGCGTAAACAACCAAGGAAAAAGAAAACCTAGAAAGAGAATTTTGGAGAGAGGAGAGGAGAGGGCGGCTAGGTCGTATGAGTTGTATGATTTATTTGGGGATGAAGGAAGCTTATAAATTTTCTCTCTTAGGATTTTTGTAAAACTTTACTTTGTTAAAATTTTCCTCTTTGATCTTAAATGAGATTACTGTGTGTGAGATTTTGGTTTCAGATTACCCCTTTCCTCTGAAACTTTAATGTTTGTGGTTGAATGTTCAAATCTGAACTGGCTTTAAGATCTGATTAGTATGCGAGGGTCTCCATCATGGATCAGAAAGTAATGAACTTGAAGAAATGTGGGCGCTATTATTAAGTGTCTGAATTTAAAGTAGGACATTATGAATATGGGAGCAACAACTATTGCCAATCTACTGGCTGAGACATAATTTTGGGAGAATGGTATGTGGATGCAATTCGATACCAACAATTTTTAATTAGTCCAAAAGTGGACCACTGGCATACCAATTCACATGTTTCGGGTTGTAGTTTGTGGAGAGTTCTGCAAATTGTGCAGGCACATGTTTGGGGAAGAATAAGAAATGGGAATAAATATGGGACCAGTAATAAATTGGAAAGAGATTATATAACACTAGAGTTGGTACCATGCATTATATATGCTCTGAAGGCTCTTTATTATGTGTTAATGAAGTAATGGGAGCCTGAAGCAGGAAGTAGCTAGAAGTAATTTTGCTGTGGGAAATCGGATTTTGATTTGGTTTATTCGCTTTGTTTGACATGTTATCATAAGGGGGAATGAAACGACCCTGCCTTATCCCACATTTTAAAACCCCATCTTCCCTTTGGCTTAAAAATGTAGGAATCTAAACGTGTAAAATTCCTTTTCCCCTTACCAAACCCATAAAGTTGTGAATTACCACTTTATTACTTTTACTCCCTCCTCGGTTATCAATTTGGTGTCTAATAATTACTCCCTCCGTCTCTTTTTGTTTTTTACGTTTGATGTTTTTCACGCGATTAAACGACTATTTAATGTGCATTGAGATTCCTCTATTTTTTTTTTATTTAAACAAGAAAAATTACGTTTATTTATAATGTTTTCACTCTTATCAAAAATCTGACATTGGGAAAATGAGAAATATTTAATGTCCAATGGATTTAATTGGTTAACATAATATTTGGGCACAAATTTTGTTAGAATATTAATGCATTATGTGACAATATAAAAAGAAATGTAAAGAACAAAATGAAACACCCAAAATGGAATACGTAAAAAACAAAAAGAGACGGAGGGAGTAGTTTTCAGTAATTATTTGCATTCAATCATTGTGACCTCTGGTAATTAGTCTGGCAGTGAGTTGGTGAAACCTATGCGTTTTGTTGTTTATTATGAATTTATGTACCATTATTGCGTTGATGGATTCAACACATGGTAAATCAACATAGACCTTATATTTCTGTATGGTGTAAACTTCATAATCAAACTTTTGAATTCGGCTGCAGAAATATGGAACAAGTCGACAGGACTCTATGAAAAGTTGCCAGAAGCTGCAGGAAGATCTGCAGGCAGTATTTAATGTTCTGCCAAAGGACATGCAACAGCTGCTACTTATGAATCCCGAGCGAGCAGCTCTTGTACAGGGAACTTAGGAATGTTTTCTCCTTACAATTTTGGAAGATGTTCTTGAGCTAGAATGGGCGGTGCACTATTATCTATTGAATTATGTTGGAGAAGTTCTCTTGTGCAGATACATGTTTATTTTTTTATTCATCCGTCACAGAACAAGTAGACTTATGGCTGGTGTTCAAGGTGAGGCTTGATTAGATTATCAGAAAGAAGTTACTCTGTACTGAATAATTAATTGATCATCAGAAAGAAGTTACTCTGTGCTGATGAATTTCTGTTTCTCCAGCTTGCATGTATCTTGACTGAGAAGATTGATGTTTGGATGATGATTAAGGGTTCAAGAAGCACGAACTTACCACACCTGTAAATGGTGGCAGGAGGGTTATATGACTTATTTAAGGAAGATTTTTGGCCATTTTCGTCGCAGATTTAATGAGCAACAGCCCATACTTGTAATCAATGTGTATACATCATTCTCTTGTTTTATTACCCCCTTTAGTTATACGAAATATATTTTTGTTTCATACAAGCATGATTCATCTGATCGGAGTATTTTACTGTCCCACTTCATAATTCATTAAATATGGAGGGCCAAACATCCTAGGATGCCATTAAGGGGGAAAAATAGAAATTTAAATGTCAGAGTACAGAAATACCTGTGCTCAATCCCATTTCAAAATGATTTCAATTAAGAATGAACTGCTTGTGGAGTAAATTAAGAATTCCGTTAAGATGCACCACAAATTTGCTCAATCCTACTATCCTAGTTCGTGTGATGAACTCGGGCAATATAG TATTAATTTAAAATACGGAAAAATGAGGCGAAAATAAATTTGGAAAAACACCGGAGTACGAAATTACGAAGCATATACTGTGCATTCTATTCAATTAAATCCACATACCACCAGCAGTCTAGCACAAGCCTCTGCTCTACTAGCTCTCCGGCCACCGGCACCGCCACAAATAATCCATTGTTTCAATCAACTCTCTTCGGCAATTAGTAACCCTAACTTCCCTTTATCTTCTCAGTATTTGATCCCTCAAAATTTCAATTTAGGGGTTTTCGATTGATCCCCTTGCTAGATCTGATAAAAGAAATCTCTAAATTACTCCACAATAAAGTGAAATTCTCGTCTGGTTTTCGGCTGAATTCAGAGGAAGACGACTCAATTTTTTTCTCGGTGTTCCAATTAATTGAAGTTGAGATCAATTTTGAGAACCACTGAACTATTGAGTGTAATCAAGTAGCATTTTTTTGGGTGAAATGTTGCCATTATGATGTTTTGTTGGATGATAATTTGTCTCAAGTTTGTGGGAAATGAGCCGTTCCCCATCATTTTCATTAAAGTCGGAACCGAGTCCGGAGGTCGATAATGATTCGTTGCACCGATGGATTGTGGCCTTTTATGTTATTAGGTTTGATCTTGAGCAAGGTCAGGTGGTAGAGGAATGTTTCCCGCCAGGTTGTTTATCAGAAGATGAGGAACTTGGGACAGCTTTTAGTTCGTTCCCAGATTCTGTATCCCAGAACCATAATCGTTCCAGTATCCATGATTGCATATTCTTCTTTAGGATCCGAAGGCGTGGATTTGTTGATGCAGCCAATGTACTTACTTCTGAGATAGTTGAGATAGAGAGAGATACTCCTCAGAAGTCTGCCACAAATTGGCAGGTTTTGAGCAAACAATCTAGTGATGAAGGTTCACGGTTCTTGTACGGCTTTGTCTTCAATAGGCAAAGGCATGATGAGAGGCTTAAGCGAGGTGGGGAACAAAAGTCGGTGGTTATCTTGTCTCATAGTCCATTTTCTAGTGTGTTCAGGCCTTTGTTACAAATTATGGGTCCATTGTTCTTTGACATAGGAAAGAAAGCCCTTGAACATGTTGCTGCTTATGTGTCATTATGGCCGCCTCCTGTTCCAGGGAAGCTAATGGAACTTCCCATTGGTAATGCTACCCTGAAGGTGAACCTGCCTCCTGTTCAAAGTTTGCCTTTGGATGAGAGAATGATGCTTGAAGAGTCTGCCACTCTTATGGTTCCTTTGCTTGCAACAAATCAGTCAATCCCGTTAGGTCTATTCCATGAAGCAGACCTTTTTGGAATTTTTCGTGGAATTCTCTTGCAGCTTTGGATTCTGTGGGAGTTAGTACTTGTTGGCGAGCCCATCCTTATCATTGCCCCAACTCCTCCTCAGTGTTGTGAGGCTGTTGCAGGCCTTGTGAGTTTAGTTGCTCCACTACTTTGTAGTATTGACTTCAGGCCTTATTTCACCATTCACGATCCAGAATTTGCGCAGTTGAACTCACTTCAAGATGGTGGTTCTTTTCCTCCAATGATACTTGGTGTAACAAACCTCTTTTTCTTGAAAGCGTTGCGCAAATTTCCTCACATTGTGTCTGTTGGAAGTCCTGTTGCTAATTCAAGCCGTGCTAACATTGCTTCTGGGTCCTCTTCTGGTAGACCAACTGGTCGCTTAGAAGGATTGGGTGTTCAACAGCTCTCCTTGAGGAAATTTTCTCCCTCAAGCTTGTTAAATGCAGTCAAGTTAAGGAGGGAGGGTCCTCTTTGTCTGATGACAGATCACAAAGAAGCTGTTTGGACCAGTTATGGAGCAACTACCAAGCCTGATACATCTATCTTGAACAGGCTGGTTGATGCAGGGGCGTTAACAAGGGTTGAGGAATCTATGTCTGTTGTGAACAACGAGATTCTACGTCGCCATTTTTTGGAGCTGACCACCAACTTTTTGTCTCCTTTTGGCCCTTATTTCAAGATCAATACCCCGTCTGAAGGGACTTCACCATTTGTTGATCCACCACCTCTTCCTCCATTTAATGCAGAAGAATTCCTTTATACTTTAGCAGCAAGAGGTCCAGGGAAATTTTTATCAAAGAGGATGAGATCAAACTGGCTTGATTTATACAGGCGTTTTCTCAAGGGGGAGAATTTTATGCCATGGTTTACTAGAAGACGTGCAGTTGCTGAACAAGAGCAGCACAGGTTATGGAAACAAGCAAGACTGAAGACTGACATCCAACAGTTCTTATCTAAGATGGCTGAATTAGAAGTTGTGGACTCCTTCAATGCTATTGAAAGGCATCTTCTTGGGGAGCTGCAGAAATATGGAACAAGTCGACAGGACTCTATGAAAAGTTGCCAGAAGCTGCAGGAAGATCTGCAGGCAGTATTTAATGTTCTGCCAAAGGACATGCAACAGCTGCTACTTATGAATCCCGAGCGAGCAGCTCTTGTACAGGGAACTTAGGAATGTTTTCTCCTTACAATTTTGGAAGATGTTCTTGAGCTAGAATGGGCGGTGCACTATTATCTATTGAATTATGTTGGAGAAGTTCTCTTGTGCAGATACATGTTTATTTTTTTATTCATCCGTCACAGAACAAGTAGACTTATGGCTGGTGTTCAAGCTTGCATGTATCTTGACTGAGAAGATTGATGTTTGGATGATGATTAAGGGTTCAAGAAGCACGAACTTACCACACCTGTAAATGGTGGCAGGAGGGTTATATGACTTATTTAAGGAAGATTTTTGGCCATTTTCGTCGCAGATTTAATGAGCAACAGCCCATACTTGTAATCAATGTGTATACATCATTCTCTTGTTTTATTACCCCCTTTAGTTATACGAAATATATTTTTGTTTCATACAAGCATGATTCATCTGATCGGAGTATTTTACTGTCCCACTTCATAATTCATTAAATATGGAGGGCCAAACATCCTAGGATGCCATTAAGGGGGAAAAATAGAAATTTAAATGTCAGAGTACAGAAATACCTGTGCTCAATCCCATTTCAAAATGATTTCAATTAAGAATGAACTGCTTGTGGAGTAAATTAAGAATTCCGTTAAGATGCACCACAAATTTGCTCAATCCTACTATCCTAGTTCGTGTGATGAACTCGGGCAATATAG ATGAGCCGTTCCCCATCATTTTCATTAAAGTCGGAACCGAGTCCGGAGGTCGATAATGATTCGTTGCACCGATGGATTGTGGCCTTTTATGTTATTAGGTTTGATCTTGAGCAAGGTCAGGTGGTAGAGGAATGTTTCCCGCCAGGTTGTTTATCAGAAGATGAGGAACTTGGGACAGCTTTTAGTTCGTTCCCAGATTCTGTATCCCAGAACCATAATCGTTCCAGTATCCATGATTGCATATTCTTCTTTAGGATCCGAAGGCGTGGATTTGTTGATGCAGCCAATGTACTTACTTCTGAGATAGTTGAGATAGAGAGAGATACTCCTCAGAAGTCTGCCACAAATTGGCAGGTTTTGAGCAAACAATCTAGTGATGAAGGTTCACGGTTCTTGTACGGCTTTGTCTTCAATAGGCAAAGGCATGATGAGAGGCTTAAGCGAGGTGGGGAACAAAAGTCGGTGGTTATCTTGTCTCATAGTCCATTTTCTAGTGTGTTCAGGCCTTTGTTACAAATTATGGGTCCATTGTTCTTTGACATAGGAAAGAAAGCCCTTGAACATGTTGCTGCTTATGTGTCATTATGGCCGCCTCCTGTTCCAGGGAAGCTAATGGAACTTCCCATTGGTAATGCTACCCTGAAGGTGAACCTGCCTCCTGTTCAAAGTTTGCCTTTGGATGAGAGAATGATGCTTGAAGAGTCTGCCACTCTTATGGTTCCTTTGCTTGCAACAAATCAGTCAATCCCGTTAGGTCTATTCCATGAAGCAGACCTTTTTGGAATTTTTCGTGGAATTCTCTTGCAGCTTTGGATTCTGTGGGAGTTAGTACTTGTTGGCGAGCCCATCCTTATCATTGCCCCAACTCCTCCTCAGTGTTGTGAGGCTGTTGCAGGCCTTGTGAGTTTAGTTGCTCCACTACTTTGTAGTATTGACTTCAGGCCTTATTTCACCATTCACGATCCAGAATTTGCGCAGTTGAACTCACTTCAAGATGGTGGTTCTTTTCCTCCAATGATACTTGGTGTAACAAACCTCTTTTTCTTGAAAGCGTTGCGCAAATTTCCTCACATTGTGTCTGTTGGAAGTCCTGTTGCTAATTCAAGCCGTGCTAACATTGCTTCTGGGTCCTCTTCTGGTAGACCAACTGGTCGCTTAGAAGGATTGGGTGTTCAACAGCTCTCCTTGAGGAAATTTTCTCCCTCAAGCTTGTTAAATGCAGTCAAGTTAAGGAGGGAGGGTCCTCTTTGTCTGATGACAGATCACAAAGAAGCTGTTTGGACCAGTTATGGAGCAACTACCAAGCCTGATACATCTATCTTGAACAGGCTGGTTGATGCAGGGGCGTTAACAAGGGTTGAGGAATCTATGTCTGTTGTGAACAACGAGATTCTACGTCGCCATTTTTTGGAGCTGACCACCAACTTTTTGTCTCCTTTTGGCCCTTATTTCAAGATCAATACCCCGTCTGAAGGGACTTCACCATTTGTTGATCCACCACCTCTTCCTCCATTTAATGCAGAAGAATTCCTTTATACTTTAGCAGCAAGAGGTCCAGGGAAATTTTTATCAAAGAGGATGAGATCAAACTGGCTTGATTTATACAGGCGTTTTCTCAAGGGGGAGAATTTTATGCCATGGTTTACTAGAAGACGTGCAGTTGCTGAACAAGAGCAGCACAGGTTATGGAAACAAGCAAGACTGAAGACTGACATCCAACAGTTCTTATCTAAGATGGCTGAATTAGAAGTTGTGGACTCCTTCAATGCTATTGAAAGGCATCTTCTTGGGGAGCTGCAGAAATATGGAACAAGTCGACAGGACTCTATGAAAAGTTGCCAGAAGCTGCAGGAAGATCTGCAGGCAGTATTTAATGTTCTGCCAAAGGACATGCAACAGCTGCTACTTATGAATCCCGAGCGAGCAGCTCTTGTACAGGGAACTTAG MSRSPSFSLKSEPSPEVDNDSLHRWIVAFYVIRFDLEQGQVVEECFPPGCLSEDEELGTAFSSFPDSVSQNHNRSSIHDCIFFFRIRRRGFVDAANVLTSEIVEIERDTPQKSATNWQVLSKQSSDEGSRFLYGFVFNRQRHDERLKRGGEQKSVVILSHSPFSSVFRPLLQIMGPLFFDIGKKALEHVAAYVSLWPPPVPGKLMELPIGNATLKVNLPPVQSLPLDERMMLEESATLMVPLLATNQSIPLGLFHEADLFGIFRGILLQLWILWELVLVGEPILIIAPTPPQCCEAVAGLVSLVAPLLCSIDFRPYFTIHDPEFAQLNSLQDGGSFPPMILGVTNLFFLKALRKFPHIVSVGSPVANSSRANIASGSSSGRPTGRLEGLGVQQLSLRKFSPSSLLNAVKLRREGPLCLMTDHKEAVWTSYGATTKPDTSILNRLVDAGALTRVEESMSVVNNEILRRHFLELTTNFLSPFGPYFKINTPSEGTSPFVDPPPLPPFNAEEFLYTLAARGPGKFLSKRMRSNWLDLYRRFLKGENFMPWFTRRRAVAEQEQHRLWKQARLKTDIQQFLSKMAELEVVDSFNAIERHLLGELQKYGTSRQDSMKSCQKLQEDLQAVFNVLPKDMQQLLLMNPERAALVQGT Relationships
This mRNA is a part of the following gene feature(s):
The following polypeptide feature(s) derives from this mRNA:
The following exon feature(s) are a part of this mRNA:
The following five_prime_UTR feature(s) are a part of this mRNA:
The following CDS feature(s) are a part of this mRNA:
The following three_prime_UTR feature(s) are a part of this mRNA:
Homology
BLAST of Spo08060.1 vs. NCBI nr
Match: gi|902222802|gb|KNA19273.1| (hypothetical protein SOVF_063050 [Spinacia oleracea]) HSP 1 Score: 1287.7 bits (3331), Expect = 0.000e+0 Identity = 647/648 (99.85%), Postives = 647/648 (99.85%), Query Frame = 1
BLAST of Spo08060.1 vs. NCBI nr
Match: gi|731367653|ref|XP_010695725.1| (PREDICTED: protein DENND6A isoform X1 [Beta vulgaris subsp. vulgaris]) HSP 1 Score: 1151.3 bits (2977), Expect = 0.000e+0 Identity = 578/652 (88.65%), Postives = 609/652 (93.40%), Query Frame = 1
BLAST of Spo08060.1 vs. NCBI nr
Match: gi|731367656|ref|XP_010695726.1| (PREDICTED: protein DENND6A isoform X2 [Beta vulgaris subsp. vulgaris]) HSP 1 Score: 1087.4 bits (2811), Expect = 0.000e+0 Identity = 541/621 (87.12%), Postives = 578/621 (93.08%), Query Frame = 1
BLAST of Spo08060.1 vs. NCBI nr
Match: gi|731426283|ref|XP_010663553.1| (PREDICTED: protein DENND6A [Vitis vinifera]) HSP 1 Score: 986.9 bits (2550), Expect = 1.700e-284 Identity = 483/651 (74.19%), Postives = 565/651 (86.79%), Query Frame = 1
BLAST of Spo08060.1 vs. NCBI nr
Match: gi|645277990|ref|XP_008244029.1| (PREDICTED: protein DENND6A [Prunus mume]) HSP 1 Score: 982.6 bits (2539), Expect = 3.200e-283 Identity = 485/652 (74.39%), Postives = 567/652 (86.96%), Query Frame = 1
BLAST of Spo08060.1 vs. UniProtKB/TrEMBL
Match: A0A0K9RIE9_SPIOL (Uncharacterized protein OS=Spinacia oleracea GN=SOVF_063050 PE=4 SV=1) HSP 1 Score: 1287.7 bits (3331), Expect = 0.000e+0 Identity = 647/648 (99.85%), Postives = 647/648 (99.85%), Query Frame = 1
BLAST of Spo08060.1 vs. UniProtKB/TrEMBL
Match: A0A0J8B852_BETVU (Uncharacterized protein OS=Beta vulgaris subsp. vulgaris GN=BVRB_5g126800 PE=4 SV=1) HSP 1 Score: 1151.3 bits (2977), Expect = 0.000e+0 Identity = 578/652 (88.65%), Postives = 609/652 (93.40%), Query Frame = 1
BLAST of Spo08060.1 vs. UniProtKB/TrEMBL
Match: A0A067FB06_CITSI (Uncharacterized protein OS=Citrus sinensis GN=CISIN_1g006037mg PE=4 SV=1) HSP 1 Score: 980.7 bits (2534), Expect = 8.500e-283 Identity = 482/651 (74.04%), Postives = 554/651 (85.10%), Query Frame = 1
BLAST of Spo08060.1 vs. UniProtKB/TrEMBL
Match: A0A061FUK1_THECC (Uncharacterized protein isoform 1 OS=Theobroma cacao GN=TCM_012260 PE=4 SV=1) HSP 1 Score: 980.7 bits (2534), Expect = 8.500e-283 Identity = 486/650 (74.77%), Postives = 552/650 (84.92%), Query Frame = 1
BLAST of Spo08060.1 vs. UniProtKB/TrEMBL
Match: A0A067JBI3_JATCU (Uncharacterized protein OS=Jatropha curcas GN=JCGZ_05857 PE=4 SV=1) HSP 1 Score: 979.9 bits (2532), Expect = 1.500e-282 Identity = 493/653 (75.50%), Postives = 563/653 (86.22%), Query Frame = 1
BLAST of Spo08060.1 vs. ExPASy Swiss-Prot
Match: DEN6A_HUMAN (Protein DENND6A OS=Homo sapiens GN=DENND6A PE=1 SV=1) HSP 1 Score: 287.3 bits (734), Expect = 4.000e-76 Identity = 205/619 (33.12%), Postives = 305/619 (49.27%), Query Frame = 1
BLAST of Spo08060.1 vs. ExPASy Swiss-Prot
Match: DEN6A_MOUSE (Protein DENND6A OS=Mus musculus GN=Dennd6a PE=1 SV=1) HSP 1 Score: 280.8 bits (717), Expect = 3.800e-74 Identity = 206/620 (33.23%), Postives = 302/620 (48.71%), Query Frame = 1
BLAST of Spo08060.1 vs. ExPASy Swiss-Prot
Match: DEN6A_CHICK (Protein DENND6A OS=Gallus gallus GN=DENND6A PE=2 SV=1) HSP 1 Score: 280.4 bits (716), Expect = 4.900e-74 Identity = 202/620 (32.58%), Postives = 303/620 (48.87%), Query Frame = 1
BLAST of Spo08060.1 vs. ExPASy Swiss-Prot
Match: DEN6B_MOUSE (Protein DENND6B OS=Mus musculus GN=Dennd6b PE=2 SV=3) HSP 1 Score: 250.8 bits (639), Expect = 4.200e-65 Identity = 189/614 (30.78%), Postives = 298/614 (48.53%), Query Frame = 1
BLAST of Spo08060.1 vs. ExPASy Swiss-Prot
Match: DEN6B_HUMAN (Protein DENND6B OS=Homo sapiens GN=DENND6B PE=2 SV=1) HSP 1 Score: 249.6 bits (636), Expect = 9.300e-65 Identity = 187/634 (29.50%), Postives = 296/634 (46.69%), Query Frame = 1
BLAST of Spo08060.1 vs. TAIR (Arabidopsis)
Match: AT1G73930.1 (unknown protein) HSP 1 Score: 896.3 bits (2315), Expect = 1.100e-260 Identity = 446/647 (68.93%), Postives = 532/647 (82.23%), Query Frame = 1
The following BLAST results are available for this feature:
BLAST of Spo08060.1 vs. NCBI nr
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. NCBI nr) Total hits: 5
BLAST of Spo08060.1 vs. UniProtKB/TrEMBL
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. UniprotKB/TrEMBL) Total hits: 5
BLAST of Spo08060.1 vs. ExPASy Swiss-Prot
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. ExPASy SwissProt) Total hits: 5
BLAST of Spo08060.1 vs. TAIR (Arabidopsis)
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. TAIR) Total hits: 1
InterPro
Analysis Name: InterPro Annotations of S. oleracea
Date Performed: 2018-06-29
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