Overview
Sequences
The following sequences are available for this feature:
Legend: five_prime_UTRexonpolypeptideCDS Hold the cursor over a type above to highlight its positions in the sequence below.GATGATATCATGAGTCCATAACGTCAACTTTGCGTGTCATCTATTAACATATGATTAGTTTTGTAATTTGTTTCTTTTTCTTTGTTGTTGTCGTATCATAATCCCGTGTCCGAAAACTAAAGGTATTTTTATTTTGTCGTTGTCGTATCATAAATCATAATCCCATGTCAAAAAATAAAAAATAAAGTATAATTCATGTTTCTTTCAAAAAGGAAAAAAATTTGAGCTTCAACCCTTCGAACAATTGAATACCCGGTTAAACATCGTTATCCAGTGTTGATTGTTGAACTTCCGATGGTGTCGGGTGGAACTAGTTTGGTGGCAACGGTGTCAGTTACGGCGGCGCCGCTGTTAATCTTCGTATTCTTGTTCGCTCAAATTTCCTTCTCCTCTTCATACCTAAACCCCCGTCTTCTTCACCAATCTTCCACCGGAAACAACAATTACTTGACCACAGAACCCCACTGGTTCAACCAGACTCTCGATCATTTCTCTCCTTATGTATGATTCTCTTTCCTCGATTCTATTTTTTAAATTTCTTGCCTTCATAATATGATTATTATGTTTGTAATTGTGAAATTGATGTTATATAAAAGAGTTATCTAGTCATTTTTATTGCAATTTTTCATGGATTAGGTAAGTTTTCCAGATTTTCCAATTTGTCTGCAGGAAGCAATTTTATTATATTATGATTTTATGCGTAAAAAAGTATGATCAAGTATAGTTGCTGTTTGATTGTCATTTGAATACTGTTTTGTATAAGCTAAATGTGAAAAGATAAATCTTACTCCACAACAACAAACCAACAACCAAGCCTTAGTCCCAAAATGATTGGGGTCGGCTAACATGAACCGTCTGAGGATGGTGAAGTAAGAAAAATAAAAGGTTATTTTAGATGAATCTTACTCCAAATTTCCTAAATAAGTAGTAATGGGGGCTAGAGGAAAAACCCAGGATCTAAGACCCTTTTTGGTGAAGTTTTCGCGGATATTTGGGTTTCTTTTAGAATTTTTGGTAGTGTTGGATAGTACTCAAGACACACTAGTCTATGATCGCGCAATAATGTGTGCAAAGAAGCAAACAAACTCAATCTTCAATCTCAACAACACACACTAAAACCTGTAATGTAACAAGCATATAGGGAAACTACATGCCTTTTCTTGTTTAGTGCTAACCTAATTAGGAATTTAGAACTATAATGCAGCTACACTGTAATTACGAGTCCAACAAAACAATAACAACCTGGAAGCTCACGATGGCCCTTTAACCCAACAGAAGCCCTATGCTTAAGGAGGCAGGTAAAACCATATAAGTTCTTGAATAAAGTAAATTAACGTATGTACACCCAACTAGCTAAAACTAGCCCTTGGAACCAAGAACATAACATCACCCACTGTGCCACTGCAAGCCTTGATATTAAGCCACCTTGATTCCATAGAGACACTTTTGTAAGTACAAATTTAGACATGATTTATTTCCATACATGCCTACTACTACAAGCCAAAAACGAGGCAAGGTAAAATGTTTTTGAAGCACGAGCTCAGATTGGTTGTGAAGTTGCATATACTTGATAAGTTATTAAGGCAATGTTGTACCTCAATACTTTATAGTAATGCCATTTACATAACCTGGCTAAGTTGTTTTGGCATTTGACCTTCAATAGACATTTCAGTTGGCAGTTACAATGAACTTCTTTTAGAAACTTTCTACTCATCTGAGGTTGCAGTTCCCTATTTACTTGTCTTGAATGATTTGATGTCCAAGAGAATAATTTGATGTGGTATATGTTCACTAGTGGCACTAAGGCCACTAGGGTTCTGAGACCGGTATGAGTAAATACATTGTTATGTTTCATATATTGGCTCTATTCTCCATTCACTGACTAGCCTGGGAAAACTAAGCCTTTTACCCGTCTGTTGTCTAAGAAGTTCGAAAACGGAGATTTTCCTCTAGGTTATGTAGCAAACTAATAAATATTAATGAAGTCAATAATCTAGGATACTACCCCCTTCCCTTTATTTCGGGAACTATGAGGCTTCTCCTTCTGCAATACCAGTATCTTGAGTCATAAGCTATGTTACTCGTACTCGACAAGAAGTATCAGACATGGCCACTTTGTTTGCCTAATTTTGGACCAAAATAAAGTGTCTAAGAGTCATATCAAATTACCAATGTCTGAATGTGGGGTATTCAACATGGGTACTTGAGGTCAGATGAGGAGTAGGAGTAACATATATCATAAATGCGCCATACTGCTACTATCTTCCCCAAACACCACACCCCATTCCGTCTTGCTGGATCAAGTATGTCAACATGTAGGTTTTACAATTGGAATGACCTCACACTCTAAGGGAGTTGATTTATGATTCTGTACTCATGACCTTAAGCAGCTGACAACATATTGAGAGGAAGTGACAGAACTTTTAGGGTTCGTTTTCTTGGTTTGGCTCAATCCCCAATAAAGGAGCTCTTTTTGACGTATTAGTCATTCCTACGTTTTATAAATGGAAATGACACCTGTACTGCTGATGTGTGGTAGAGGCCGTTACAGTCCCTTTTTTATTTCCTTTATTCATAATGACTGTATCTAGGCTTTGCTGTTTTGATATTGGGTTAATTTGTTTCACTTTAAAAATTCTTCTTGCCATTTAAATTATGGTACTCTAAAAATCTTGAGATGCAAAGTGTTAACTTGTTTAAAAATTCTTCTTGCCATTTAAATCGTACTCGAAATTTCCTAAATAAGTAGTAATGGGGGCTAGAGGAAAAACCCTTTGTGATAAGGATGAAAGGATCTAAGACCCTTTTTGGTGAAGTTTTCGCGGATATTTGGGTTTCTTTTAGAATTTTTAGTAGTGTTGGATAGTACTCAAGAAACACAAGTGTATGATCTGCTATAATGTTGTGTGTAAACAAGTATGCAAACGCAATCTTCAATAACACACACTAAAACCTGTAATGTAACAAGCATATAGGCAAACTAGGTGCCTTTCTTTTGTTTAGTCCTAACCTAATTAGAACTATAACACAGCTACACTGTAATTAAGAGTCCAACAAAAAAATAACAACCTGGAAGCTCACAATGGCCCTTGAACCCAACACAAGCCCTATGCTTAAGGAGGCAGGTAAAACCATATAAAACCATATAAGTTATTGAATAAAGTAATTTAACGTATGTACACCCAACTAGCTAAAACTAGCCCTTGAACCCAAGAACATATCATCATTCACTGTGCCACTGCAAGACTTGATATTAGACCACCTTGATTCCATAGAGACACTTTTGTAAGTACAAATTTAGACATGATTTATTACGATCCCTATTAGCCTACTACTAAAAAATGAGGCATGGTAAGATGTTTTTGAAGCACAAGCTCAGATTGGTTGTGAAGTTGCATATACTTGATAAGGTATTAAGGCAATGTTGTACCTCAATACCTTATAGTAATGCCATAAGCCATTTACATAACCTGGCTAAGTTGTTTTGGTATTTGACCTTCAATATACATTTCAGTTGGCAGTTGCAATGAACTCCTTTAGGAACTTTCTAATAACTCACCTGAAGTTGCAATTCGCTATTTACTCGTCTTGAATGATTTGATGTCCAAGAGAATAAGTAAGCGTAAACAGCTAGAACGTGTACCGAGAGAATTGAAAATTAGAAGAGATGGAGAATGATTTCTTTACATTGGGCCTGTGGGGGTGTATGATGCATACTTTAGTCTAGTAACTATAATAAATCACAGTGTACTCTGTCACTGAGCACTTATGATTTGTCCCGTGGTCTAGTTTTGCCTTCATACGTGGCTTGCAGTGATGGAGATCCTTGGATTCAAAAGAGAGTCATTAACTTACGAGAGCTAGAGCCTGGAAGTACTATGATCATCTTACTAGCTCTGTTATAACAGCCATTTACACTAGTCATTACACACCATGATCGCTTTGATTTAAAATCATCTCAGTAACCCAAAAATAAGCCATAAAGACAAATATTAAGAGCAAAGTATACATAAGATTCTCAATTTTGTGTGAGTTTGAAGCTAACTTGTGGGTTTGTTGAGCCCCTAGAGGATGCATTGTTGGTTACAGAAGTACTTGGCATCATCATTCAGTGTCTAAGTGTAAATGTCTCCAAGTATTTTAATCCAAAATTTCAAATGGGAGTGAAAAGCTTATCTTGCTTCCTCTCTATCTACAAATCATTATTCATTACCATGCAACATTGAAAAAAAGGGCTGTATTTGTAAGTTGGAGTTGTGGTATATGTTCACCAGTCGCACTAAGGCCACTAGGGTTCTGAGACCGGTATGAGTATGGGAGTATGTACTGGTAAGGTAACTACTACATTGTTATGTTTCACATCTTGGCTCTACTCTCCATTCATTGACTAGCCTGGGAAAACTAGGCCTTTTCCGTCTATTGTCAAAGAAGTTCGAAAATGGCAAACTAATAAATATTAATGAAGTCAATAGTCTAGGATGCTACCCCCCCTCCCTTTATTTCGGGAACTATAAGGCTTCTCCTTCTGCAATAACAGTATCTTGAGTCATAACCTATGTTACTCGTACTCGACAAGAAGTGTCAGACATGGCCACTTTGTTTTGCCTAATTTATGACCAAAATGAAGTGTCTAAGAGTCATACCAAATCAATGTCTGAATGTGGGGTATTCAACATGAGTACTTAAGGTCATATGAAGAGTTGGAGTAACATGTATCATAAATGCGCCATACTGCCACTATCTTCCCCAAACACCACACCCCATTCCGTCTTGCTGGATCAAGTATGTCAACATGTAGGTTTTACAATTCGAATGACCTCACACTCTAAGGGAGTTGATTTATGAATCTGTACTCATGACCTTAAGAAGCTGACAATATATTGAGAGGAAGTAACAGAACTTTTAGGGTTCGTTTTCTTGGTTTGGCTCAAGCCCCAATAAAGGAGCTCTTTTTGACGTATTAGTCATTCCTACATTTTATAAATGGAAATGACACCTGTACTGCTGATTTGTGGTAGAGGCCATTACAGTACCTTTTTTATTTCCTTTATTCATAATGACTGTATCTAGGCTTTGCTGTTTTGATATTGGGTTAATTTGTTTCACTTTACAAATTCTTCTTGCCATTTAAATTATGGTACTCTAAAAATCTTGAGATGCAAAGTGTTAACTTTTATTCTGTTCTGCTTTTACACCCTGGTCCTTGGGTTAGCTATTCAGTTCTATTCTATCTTGAAACAAGTTATAGAATTTGTTAACAGTTTTGTAGTACTTTTATTTTATAAAAGCAGGTGCTCCGTGCTTGTGTGTTTTCAAAGATATTGGTGCTTAACCTTCTTTGACATTGATTGTACAGGACCATCGGCAGTTCCAGCAGAGATACTTCGAATATCTGGACCACTTCCGATCCCCCAATGGACCAATATTCTTGAATATTTGTGGTGAATCTTCATGCAATGGGATAGCCAATGACTATCTAAGTGTGAGTTCATACTTAACTATTTCAATTCATTTTATCTGCATGCTATTTTTAAACCTGCATGAGATGCACTCTTATTGCAATCGAGCTCAGGAACTGTTCTGTTGGTATGTAACAAGTGCAGAAAATACAATCAGGCTGTGTAAAGGCATACTTATGAGGGGAAAGCTCAAGATTAGTTTACAAGGGGAGAGAGAGGTAGATGGTTTATATTTATACTGCTGTGATGCTTCCATCTTGGACTCCTGGATCGGCTGGATGTGAGCAACCATTACAAGAATATAGCATACAGTTTATAGGGGGGGGGGGGGGGGGGGGNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNGGGGAGGGTTGTTTTCTTTAGGAATCTGACAATATATGACTTTATTTTGGTATAGCTCTGCATGAAGCATTTTTTTGATGTCCATAGTTTTTTCCTTTCTTTGAAAGTCTAGCGCATTCTTAGATATGGTTTCTTCTGGCTCTGCGTATTGCTATTAAGCCTTACTTATCTTTTGAACAATTTGCCTATGTTTGCATCAAATATATAACCCATGTGCTTTCAAAATTCTGTTTAGTGACCCCCTCTGATTTATCTAATCACGGATTTCTAAAAGTTATTATGTGCGTAGTAGTATCTTTCTTGTTATGCCAAAAAGACAAAATTTGGAATGCTCTATTCTAAGTGTAAGTCACCTTCTTTCTTTCAGTATCAGTTTAAAATCAATATTTGTTATCGGCTTCAGGTTTTAGCTAAGAAGTTTGGAGCTGCTATTGTTTCCCCGGAGCATCGGTACTATGGAAAAAGCTCTCCCTTTGAATTACATACTACAGAAAATCTTAGATATCTTTCTTCTAAGCAGGCGCTTTTTGATTTGGCTGCTTTCCGCCAATTTTACCAGGTCAGATATTTATTCCACTTTTTATGTTATTTTAATTTTAGTAATTATTGTGCGTGGTAGCTTGTAGACTTATAGTTCTGACATACTTTGTTTTATTTACGTGACACATAACCCCTTGGCACACTGTTTGAGAAAGAGATTAGAGAAGGTAAACAAACACTAAATTAATTCCCTAAAATCTTAATTCACCCCTCTTATTTATTTATTTATTTATTTTTAACATTAATTGTCCGTTTACTTTCTCTAATCTCTTCCTTAAACTACGTTCCATGAGACTATATGAAGTGAAAAAGAACGGAGGAAGTAACTAGAAGTAGTTCAGATTCGATGATTTAGAGACTTATTTAACATTAATATCAATGGCAAACTAGTCGATTCTGATGACATCAGGCTAGGGATGTTAAGATGTACTGAGCCTTATGCCTTATTCCATGCAATAAGACAGCTGTTTCCAAGACTCCAAGAGTTTGATTGCATTTAGTTAATTATTATTATCTATTTCCAATAAGGGTACCCATGAGATTCAACTTTTGCCTTAATTTTCAGTTTCCACCAAAATATATCAATAACTTAAAAAGATAATACTATGAATTTATGATAGTACCTTTAAGACGAATATATACGATCACGGTAATACATGGGCCACCTCGCAAAAAGTGAAAACAAATGACCTGAAAATTTGAGTTTGTACAAGAAATTGCAAACCAAACTTGAAATTAACCGGTAAATAATGGGTCAAAGTCAAACCCAACTCCTTTTGGGTTGACCTGTGGGGTGGAGGCTTTCAAAATCGACGCATATTAGTTTGAAAAACTAATTATCAGAACCTTAAATACAAAGTACTCCATCTATTCCATACTGCTCCTCTCTTTTCCATTATGCGCGGTCTCCAATGCATTACTTTGACCATTAATAGCTTTTAATTTTGAATTAGTAAAAATTATAAATTTTTGATATTTAGAAAATTTACATCAAAAGGAATCCAATGAGATTTTGTGTGCATAACCTTAATGACTCTTATTGAAGATATCCCAGCATGTATCCTAGTCTTCTCATTGACCAGTATGCCAACATGCATCCTTGGTATGCTAGTATCCTACTGTCTCTCTGATAAATTACATCCTTCAGCCTGACCTGATGTTATCCTCTTATTCGTGCTTATTGGTCAAGTGAATTTCAAATGCTGAAAAGAAAGGTGATGTCATTCTAGGGCACTAGGTTCTCTACAGCCTTTGGTTTATTTTTGGATGATGGTGATGAACTGTGTCTTCTTTCTTATGTCCTTGATAATTCGAGTTATCATTGTCATTAATGAGGCTACTGTTGGGTGGTTGTAATTTGACAGCTCTTTAAGCTGCTCAGAAAATCTTTCAATGTTCTGCTGAAGTTTTATTTTAGACTCTGATTCATGTTCGTCTCAATGTTGTGAATTGCTCTTAATGTCTGTCTCAAGGTTTAACAGTAGTCACTTTATGTATGTCTGCAACATACCGAGGACCCGGTTTATTCTTTGTGCTATTTGTTCCGTGTTCTTATGATACTCCTTTGTCAGTGTAGGTGTTTGTTACAAAGTCTTGTTTCCGATGGTCGGGAGTTGGGAGCTTATGTCTTAATTTCTGTTTTCTGCATTTATCCGGAACTTTTTCTCACAAATTGATTTTCTTGATTTTAAGGAATCCCTGAACAAGAAGCTCAATAGGTCGAATGTTGAAAATCCATGGTTTGTGTTCGGTATCTCGTACTCGGGAGCTCTTAGTGCTTGGTTCCGCCTGAAGTTTCCTCATTTGACTTGCGGAAGTCTTTCAAGTTCTGGTGTGGTTCTTGCTGTTCACAACTTTACAGAATTTGATCAACAGGTGGGTATTCTTGGTTTGTGTTTCACCAATCTCTGTGGATCTTTATTTCACTACTCTCATTTTATGGATCTTGTCTCTGACGAAGCAGCATGCTTGAATAAGTTTAATTCCATATGCATCTGTATGCAGATAGGCATCTCAGCTGGCCCAGAATGTAAAGCTGCATTACAAGAAGTTACACAACTTGTTGAAGAAGGATTGAACTCAAACCGGACAGCAGTAAAGTCAGCCTTTGGCGCTTCTGAGGTAAGAGCTTATAATTTTCTTGACAATGGGTTGATTATCATATATGCTAAATTCACTTTATTTTTATTTTTATCACCTGACTTGGGTAGTTGGGTTGGGTATTGCTGGTTTTAATTTGAAATCTCTCCTTAATTTTCTTGTAGCTAACCATTGACGGGGACTTCCTGTATTTTCTGGCTGATGCTGCCGTTACTGCTGTAAGGATATTCTACAACCTATTAAATACGCTAATTACGTTTTCCTATCATACCTTGTTATGTTGTCAGTGGCTCATTAGTTTTAGAACCCTGCAGTTTCAGTATGGAAATCCTGACAAGTTGTGTTCTCCTCTCGTTGAAGCAAAGAACGCGGGTCAAGATTTAGTGGTATGCTTTCCCCCTTTCCTTTCACCGAGCATATTCTGGTGCTCTATCTTCGTGTATTTTGTCATTTCTACCATAAAAAAAATTCTTTTCTTTATTTTTTGTGAATATCTTGGTGACATACTTTCTCCAGTTTTCCAACTTCAGTTACAGGTCAAAGTAAGCAAATGTAGTTAGTTTAAGTCTTGGTCATTGCTTTTGTCAGTCTCTGTTTCTGAGTTTCTGCTATATTGAGCTGGATCCTTCATGCAGGATGCTTATGCCGCATATGTGAAAGACCATTTTAATAGTGTTGGTACATATAATCAAGAAAACTTGAAGAACACTGCTTCTGGTAGTTCTGATAGATTGTGGTGGTTCCAAGTGTGCAGTGAAGTTGCATATTTCCAGGTAGCACCAGCAAACGATAGCATTCGGTCATCCAAAGTCGACACCAGGTTTGTTTTATTTTTTCTTTCTTTTAACTGCATGTTCCATTACAGGTCTACCATAGTACCACCTATCTTCTAACTGTCATTATTATTATTTTTCCCTTCTCTTGTTCTCTATTGGTTTATGAATGATTTTTAGTCATTAACTAAGGGGATTATGGTATTGCCTATTTATCATTATTTGCGTGGTTATATACTTCTATGTACAGTTACCATTTGGACCTTTGCAAGAATGTCTTTGGAGATGATGTATACCCTGAAGTTGATGAAACTAATCTGTACTATGGAGGCACAAAAATAGCTGGTTTGTATACCTTTCTTTCTCAATGATATAATTTATTCCATAAGGTCAACTGTGTGGATCTGATGCTTCATAGACATCTTGTCGGTTCGTAACTTGTACTCTCTCCGCCCCAATTTATTCTTTACGGTTTCCGTTTCTAGTGTCCCATTTTAATATTTACACTTAGAATCTTTCCTTTTATATTGTAGCATAAAAGTCCATCATATTTGTCAAAATCGTGTCAAATGATTATTTTAACCAATCAAATTCATTGGGTCATTTTGACCATTAAATCTCTCGCACTTTCCCATTGAAACATTAAATCTTTCTCATTTTTCCAATGTCAGATTTTTGAAAAAAGTGAAAATGTTGTTAATAAACGTAATTTGCATTGTTAAGTTAAACAATCGTGTACATTAAATCTGGCGAAGTGTTGGTTGAAATTCATGCTTGAAGCTCTTAAAAAGATCCTGTGGCCTACTTCACAGAACTCGGGCCTGGATATTGAAAACCTTATTCATTAGTAATATGATAAAAAGAGAAGATAACTTGTTAATTCTTAAGTTAAATCATTTAGGTTTTCCGTTTCTTTCATTGACAGGTACCAAGATAGTATTTACAAATGGCTCACAAGACCCTTGGCGACATGCATCCAAACAGACTTCATCTACTGAAAGTGAGTTGCCTTTTCTTTAAGAGGTCACCTATGTTTACATACTTGGCAACAGAGTAGGCTGGTTTTAGGTATAACTGTGGATGTCAGAATTGTTTTTCATTTTTTATCATTATGATTTTATTTATTTTTAAAACGATCACCAGACGGGCAGACATATACTCCTTCCGTCCCTAAAAGATTGTGCCAAGTGCGTTTGTTCTTTTTTTTTTTTTTTGACATATGCTTAACTTACATAAAACAAGAGTAAACAAATTANTTTATTTATTTTTAAAACGATCACCAGACGGGCAGACATATACTCCTTCCGTCCCTAAAAGATTGTGCCAAGTGCGTTTGTTCTTTTTTTTTTTTTTTGACATATGCTTAACTTACATAAAACAAGAGTAAACAAATTACAACCTAAAACTCATTAGCAAAGCTTTGGGGCCAAAGAAGACCCACATACATTCAAAGCTTCCCATATGAGTTCTATTATGTAATACAAACTGCTTGCAAGTACCAAAATAAACTACGGAGATAGTAGCCTCCTTATCCGTTGGCCGTTGAATGATGGCCTCATCTTGCACATTCCCATTCCCTTTTCCACTTGTGTTGCGGCTTGGGCAAATAACACCTCGAAGACCCTTTAACCTTGTGGAACTTATAAGACGAAGAAAGAGACAGAAGGGTGGTAAAAACACGAACTGGTTGACCCGATACTGTGAGCAAAAACTCACACACAAACTGAGCCACCACAGATGACTCCGTACCCAAAAAAATGGATACGCATGAACAGATCAGATGATTCCCGATGAGAAGAACGCCCACTTTAGAGGAGGTGGAAGCTACCGGCGGCGGCGCTTGGCTCCTTCTTCTTCTCTCCCGGAAAAACCTTATATATTAACTAGAGGATCCAAATTAAAAAACCTAGGTTTTGTGATTTGGAAAGAAAATTCCTCTATAACTACCGCTGATGAACTAGATACGAAGACGAGATACAAAAAACACGAAATCCGTTGGCCGGCGACCCGAGCTAGCCACCAAACTCAGGCCGCAGACAACGGTGGTTTAGGGTTTTTTGGGTTTTTTTTTTGTAGAGAGAGGGCAGAGGATTTGTGTAGAGAGAGAAAGTTTTGTTTTGGAGCTAGCCACCAAAAAACAAAAGTGCGTTTGTTCACTTTTTAAAGAATTGTGCATACTCAAAAGCAAATTGGTAGGTAGATTTGTTTTTTAGTTAGATTAAATAATTGTGTGTGAGGAGAAACATGTGGGGACCATATACCAAATAAGGTATGGGGCAAACAAATGGGGACATCCATTTATAGTATACGGGAAATCTTTTAGGGACGGAGGGAGTAGTGTGTAGTAGAAGTCGAATCTGACTGGTTTTATAGGCGTACTACTGTCTTAAATATGAATTGTCCTCACACAATCCAGAATTACTTTGTTTCAAAAGTTCAATACATCTGTAACGAAATTTGTTTACTTTCCATTTGTAATTTGAATTTCCTGATATAGGTACCAGGCCCTTCTTTAATTATCCCAAAAAAAAAGTGGTAGATATTGTGATACAGTTCACCACCATGTTTTGTTTTCTCTAATGATCTATTCCGAATCTTTCAGTGCCTTCTTATATCGTCACTTGTGACAATTGCGGCCATGGGACTGACTTGCGGGGCTGCCCTCAATCACCATTGAGTATCGAAGGTGTGTACTGCACAAAGATGCTATATATTCATCTCTTTTTTTCAGTCCTAAATTCCATTATCCAAAAATGATAGTACTGCATATGTTGCTTCATTCCCTAAAATCTAAACTACATTAGCGGCCCGTTTGGTAGCTAGTAATAAATGGTGGGAAAGAGAATAAAGCCAAGTGTTATTTGACAAGAAAATAATATCATGATGTCCATGGTAATGAAATTTGTCACAAACTTGGTGTTTTTCTTCATAAATTGCATTCATATCTAATACCACTCCCAAAATGGTAATAGAAAATTATAAAGAAAAAGAGATAATATTGAGTGAACTAACATTACCATGAGAATGAATATTGAATTTCCTTACAAATTTACATACAAATTCATTTCCCATTGACACCATTTTATGGCCGGCTACCAAACAGGCCGTAGGGGTTATAACTTATATGTATGAATTAGGGTTTATGCAAGGAGTAAATTAATTCGGTATCCTATATAAGAAATTAAGAATGAGACTTCTTTTTTCTTTTACTCAACATACTCACAATTTTCTGAATCAGGCGATGCCAAAAGATGTAGCTCTCCTGATGCTGTCAACAAAGTGAGACAACAGGTTTCAGAGCACATTGATCTTTGGTTATCTGAGTGCAGAAATGATGCTAGGGGTTGGAGCTCTGCATAATGTGTGGATGCTTATAGCCTTATATAGCTGGAAGTATTTAACTTGTCCGAAGATACGTGGTTTTACGGTTTTACCCATCTTAAGCTACTAA GATGATATCATGAGTCCATAACGTCAACTTTGCGTGTCATCTATTAACATATGATTAGTTTTGTAATTTGTTTCTTTTTCTTTGTTGTTGTCGTATCATAATCCCGTGTCCGAAAACTAAAGGTATTTTTATTTTGTCGTTGTCGTATCATAAATCATAATCCCATGTCAAAAAATAAAAAATAAAGTATAATTCATGTTTCTTTCAAAAAGGAAAAAAATTTGAGCTTCAACCCTTCGAACAATTGAATACCCGGTTAAACATCGTTATCCAGTGTTGATTGTTGAACTTCCGATGGTGTCGGGTGGAACTAGTTTGGTGGCAACGGTGTCAGTTACGGCGGCGCCGCTGTTAATCTTCGTATTCTTGTTCGCTCAAATTTCCTTCTCCTCTTCATACCTAAACCCCCGTCTTCTTCACCAATCTTCCACCGGAAACAACAATTACTTGACCACAGAACCCCACTGGTTCAACCAGACTCTCGATCATTTCTCTCCTTATGACCATCGGCAGTTCCAGCAGAGATACTTCGAATATCTGGACCACTTCCGATCCCCCAATGGACCAATATTCTTGAATATTTGTGGTGAATCTTCATGCAATGGGATAGCCAATGACTATCTAAGTGTTTTAGCTAAGAAGTTTGGAGCTGCTATTGTTTCCCCGGAGCATCGGTACTATGGAAAAAGCTCTCCCTTTGAATTACATACTACAGAAAATCTTAGATATCTTTCTTCTAAGCAGGCGCTTTTTGATTTGGCTGCTTTCCGCCAATTTTACCAGGAATCCCTGAACAAGAAGCTCAATAGGTCGAATGTTGAAAATCCATGGTTTGTGTTCGGTATCTCGTACTCGGGAGCTCTTAGTGCTTGGTTCCGCCTGAAGTTTCCTCATTTGACTTGCGGAAGTCTTTCAAGTTCTGGTGTGGTTCTTGCTGTTCACAACTTTACAGAATTTGATCAACAGATAGGCATCTCAGCTGGCCCAGAATGTAAAGCTGCATTACAAGAAGTTACACAACTTGTTGAAGAAGGATTGAACTCAAACCGGACAGCAGTAAAGTCAGCCTTTGGCGCTTCTGAGCTAACCATTGACGGGGACTTCCTGTATTTTCTGGCTGATGCTGCCGTTACTGCTTTTCAGTATGGAAATCCTGACAAGTTGTGTTCTCCTCTCGTTGAAGCAAAGAACGCGGGTCAAGATTTAGTGGATGCTTATGCCGCATATGTGAAAGACCATTTTAATAGTGTTGGTACATATAATCAAGAAAACTTGAAGAACACTGCTTCTGGTAGTTCTGATAGATTGTGGTGGTTCCAAGTGTGCAGTGAAGTTGCATATTTCCAGGTAGCACCAGCAAACGATAGCATTCGGTCATCCAAAGTCGACACCAGTTACCATTTGGACCTTTGCAAGAATGTCTTTGGAGATGATGTATACCCTGAAGTTGATGAAACTAATCTGTACTATGGAGGCACAAAAATAGCTGGTACCAAGATAGTATTTACAAATGGCTCACAAGACCCTTGGCGACATGCATCCAAACAGACTTCATCTACTGAAATGCCTTCTTATATCGTCACTTGTGACAATTGCGGCCATGGGACTGACTTGCGGGGCTGCCCTCAATCACCATTGAGTATCGAAGGCGATGCCAAAAGATGTAGCTCTCCTGATGCTGTCAACAAAGTGAGACAACAGGTTTCAGAGCACATTGATCTTTGCTGGAAGTATTTAACTTGTCCGAAGATACGTGGTTTTACGGTTTTACCCATCTTAAGCTACTAA ATGGTGTCGGGTGGAACTAGTTTGGTGGCAACGGTGTCAGTTACGGCGGCGCCGCTGTTAATCTTCGTATTCTTGTTCGCTCAAATTTCCTTCTCCTCTTCATACCTAAACCCCCGTCTTCTTCACCAATCTTCCACCGGAAACAACAATTACTTGACCACAGAACCCCACTGGTTCAACCAGACTCTCGATCATTTCTCTCCTTATGACCATCGGCAGTTCCAGCAGAGATACTTCGAATATCTGGACCACTTCCGATCCCCCAATGGACCAATATTCTTGAATATTTGTGGTGAATCTTCATGCAATGGGATAGCCAATGACTATCTAAGTGTTTTAGCTAAGAAGTTTGGAGCTGCTATTGTTTCCCCGGAGCATCGGTACTATGGAAAAAGCTCTCCCTTTGAATTACATACTACAGAAAATCTTAGATATCTTTCTTCTAAGCAGGCGCTTTTTGATTTGGCTGCTTTCCGCCAATTTTACCAGGAATCCCTGAACAAGAAGCTCAATAGGTCGAATGTTGAAAATCCATGGTTTGTGTTCGGTATCTCGTACTCGGGAGCTCTTAGTGCTTGGTTCCGCCTGAAGTTTCCTCATTTGACTTGCGGAAGTCTTTCAAGTTCTGGTGTGGTTCTTGCTGTTCACAACTTTACAGAATTTGATCAACAGATAGGCATCTCAGCTGGCCCAGAATGTAAAGCTGCATTACAAGAAGTTACACAACTTGTTGAAGAAGGATTGAACTCAAACCGGACAGCAGTAAAGTCAGCCTTTGGCGCTTCTGAGCTAACCATTGACGGGGACTTCCTGTATTTTCTGGCTGATGCTGCCGTTACTGCTTTTCAGTATGGAAATCCTGACAAGTTGTGTTCTCCTCTCGTTGAAGCAAAGAACGCGGGTCAAGATTTAGTGGATGCTTATGCCGCATATGTGAAAGACCATTTTAATAGTGTTGGTACATATAATCAAGAAAACTTGAAGAACACTGCTTCTGGTAGTTCTGATAGATTGTGGTGGTTCCAAGTGTGCAGTGAAGTTGCATATTTCCAGGTAGCACCAGCAAACGATAGCATTCGGTCATCCAAAGTCGACACCAGTTACCATTTGGACCTTTGCAAGAATGTCTTTGGAGATGATGTATACCCTGAAGTTGATGAAACTAATCTGTACTATGGAGGCACAAAAATAGCTGGTACCAAGATAGTATTTACAAATGGCTCACAAGACCCTTGGCGACATGCATCCAAACAGACTTCATCTACTGAAATGCCTTCTTATATCGTCACTTGTGACAATTGCGGCCATGGGACTGACTTGCGGGGCTGCCCTCAATCACCATTGAGTATCGAAGGCGATGCCAAAAGATGTAGCTCTCCTGATGCTGTCAACAAAGTGAGACAACAGGTTTCAGAGCACATTGATCTTTGCTGGAAGTATTTAACTTGTCCGAAGATACGTGGTTTTACGGTTTTACCCATCTTAAGCTACTAA MVSGGTSLVATVSVTAAPLLIFVFLFAQISFSSSYLNPRLLHQSSTGNNNYLTTEPHWFNQTLDHFSPYDHRQFQQRYFEYLDHFRSPNGPIFLNICGESSCNGIANDYLSVLAKKFGAAIVSPEHRYYGKSSPFELHTTENLRYLSSKQALFDLAAFRQFYQESLNKKLNRSNVENPWFVFGISYSGALSAWFRLKFPHLTCGSLSSSGVVLAVHNFTEFDQQIGISAGPECKAALQEVTQLVEEGLNSNRTAVKSAFGASELTIDGDFLYFLADAAVTAFQYGNPDKLCSPLVEAKNAGQDLVDAYAAYVKDHFNSVGTYNQENLKNTASGSSDRLWWFQVCSEVAYFQVAPANDSIRSSKVDTSYHLDLCKNVFGDDVYPEVDETNLYYGGTKIAGTKIVFTNGSQDPWRHASKQTSSTEMPSYIVTCDNCGHGTDLRGCPQSPLSIEGDAKRCSSPDAVNKVRQQVSEHIDLCWKYLTCPKIRGFTVLPILSY Relationships
The following mRNA feature(s) are a part of this gene:
Homology
BLAST of Spo18043.1 vs. NCBI nr
Match: gi|902193119|gb|KNA12217.1| (hypothetical protein SOVF_128040 [Spinacia oleracea]) HSP 1 Score: 972.6 bits (2513), Expect = 2.600e-280 Identity = 476/476 (100.00%), Postives = 476/476 (100.00%), Query Frame = 1
BLAST of Spo18043.1 vs. NCBI nr
Match: gi|731337554|ref|XP_010679849.1| (PREDICTED: probable serine protease EDA2 [Beta vulgaris subsp. vulgaris]) HSP 1 Score: 798.9 bits (2062), Expect = 5.100e-228 Identity = 390/464 (84.05%), Postives = 417/464 (89.87%), Query Frame = 1
BLAST of Spo18043.1 vs. NCBI nr
Match: gi|590702959|ref|XP_007046746.1| (Serine carboxypeptidase S28 family protein [Theobroma cacao]) HSP 1 Score: 737.6 bits (1903), Expect = 1.400e-209 Identity = 351/462 (75.97%), Postives = 408/462 (88.31%), Query Frame = 1
BLAST of Spo18043.1 vs. NCBI nr
Match: gi|255581402|ref|XP_002531509.1| (PREDICTED: probable serine protease EDA2 isoform X4 [Ricinus communis]) HSP 1 Score: 730.3 bits (1884), Expect = 2.200e-207 Identity = 355/462 (76.84%), Postives = 401/462 (86.80%), Query Frame = 1
BLAST of Spo18043.1 vs. NCBI nr
Match: gi|728828650|gb|KHG08093.1| (putative serine protease EDA2 -like protein [Gossypium arboreum]) HSP 1 Score: 728.8 bits (1880), Expect = 6.400e-207 Identity = 350/467 (74.95%), Postives = 406/467 (86.94%), Query Frame = 1
BLAST of Spo18043.1 vs. UniProtKB/TrEMBL
Match: A0A0K9QY78_SPIOL (Uncharacterized protein OS=Spinacia oleracea GN=SOVF_128040 PE=4 SV=1) HSP 1 Score: 972.6 bits (2513), Expect = 1.800e-280 Identity = 476/476 (100.00%), Postives = 476/476 (100.00%), Query Frame = 1
BLAST of Spo18043.1 vs. UniProtKB/TrEMBL
Match: A0A0J8C740_BETVU (Uncharacterized protein OS=Beta vulgaris subsp. vulgaris GN=BVRB_6g129890 PE=4 SV=1) HSP 1 Score: 798.9 bits (2062), Expect = 3.500e-228 Identity = 390/464 (84.05%), Postives = 417/464 (89.87%), Query Frame = 1
BLAST of Spo18043.1 vs. UniProtKB/TrEMBL
Match: A0A061DLP4_THECC (Serine carboxypeptidase S28 family protein OS=Theobroma cacao GN=TCM_000245 PE=4 SV=1) HSP 1 Score: 737.6 bits (1903), Expect = 9.700e-210 Identity = 351/462 (75.97%), Postives = 408/462 (88.31%), Query Frame = 1
BLAST of Spo18043.1 vs. UniProtKB/TrEMBL
Match: B9SZU0_RICCO (Catalytic, putative OS=Ricinus communis GN=RCOM_0291690 PE=4 SV=1) HSP 1 Score: 730.3 bits (1884), Expect = 1.500e-207 Identity = 355/462 (76.84%), Postives = 401/462 (86.80%), Query Frame = 1
BLAST of Spo18043.1 vs. UniProtKB/TrEMBL
Match: A0A0B0N123_GOSAR (Putative serine protease EDA2-like protein OS=Gossypium arboreum GN=F383_35146 PE=4 SV=1) HSP 1 Score: 728.8 bits (1880), Expect = 4.500e-207 Identity = 350/467 (74.95%), Postives = 406/467 (86.94%), Query Frame = 1
BLAST of Spo18043.1 vs. ExPASy Swiss-Prot
Match: EDA2_ARATH (Probable serine protease EDA2 OS=Arabidopsis thaliana GN=EDA2 PE=2 SV=2) HSP 1 Score: 624.0 bits (1608), Expect = 1.400e-177 Identity = 307/472 (65.04%), Postives = 373/472 (79.03%), Query Frame = 1
BLAST of Spo18043.1 vs. ExPASy Swiss-Prot
Match: TSSP_MOUSE (Thymus-specific serine protease OS=Mus musculus GN=Prss16 PE=2 SV=1) HSP 1 Score: 166.8 bits (421), Expect = 6.100e-40 Identity = 130/422 (30.81%), Postives = 188/422 (44.55%), Query Frame = 1
BLAST of Spo18043.1 vs. ExPASy Swiss-Prot
Match: TSSP_HUMAN (Thymus-specific serine protease OS=Homo sapiens GN=PRSS16 PE=2 SV=2) HSP 1 Score: 124.8 bits (312), Expect = 2.700e-27 Identity = 79/206 (38.35%), Postives = 113/206 (54.85%), Query Frame = 1
BLAST of Spo18043.1 vs. ExPASy Swiss-Prot
Match: DPP2_MOUSE (Dipeptidyl peptidase 2 OS=Mus musculus GN=Dpp7 PE=1 SV=2) HSP 1 Score: 120.9 bits (302), Expect = 3.800e-26 Identity = 119/427 (27.87%), Postives = 178/427 (41.69%), Query Frame = 1
BLAST of Spo18043.1 vs. ExPASy Swiss-Prot
Match: YM9I_CAEEL (Putative serine protease F56F10.1 OS=Caenorhabditis elegans GN=F56F10.1 PE=1 SV=2) HSP 1 Score: 119.8 bits (299), Expect = 8.600e-26 Identity = 88/233 (37.77%), Postives = 119/233 (51.07%), Query Frame = 1
BLAST of Spo18043.1 vs. TAIR (Arabidopsis)
Match: AT4G36195.1 (Serine carboxypeptidase S28 family protein) HSP 1 Score: 653.3 bits (1684), Expect = 1.200e-187 Identity = 320/468 (68.38%), Postives = 373/468 (79.70%), Query Frame = 1
BLAST of Spo18043.1 vs. TAIR (Arabidopsis)
Match: AT4G36190.1 (Serine carboxypeptidase S28 family protein) HSP 1 Score: 645.6 bits (1664), Expect = 2.500e-185 Identity = 316/468 (67.52%), Postives = 371/468 (79.27%), Query Frame = 1
BLAST of Spo18043.1 vs. TAIR (Arabidopsis)
Match: AT2G18080.1 (Serine carboxypeptidase S28 family protein) HSP 1 Score: 624.0 bits (1608), Expect = 7.900e-179 Identity = 307/472 (65.04%), Postives = 373/472 (79.03%), Query Frame = 1
BLAST of Spo18043.1 vs. TAIR (Arabidopsis)
Match: AT2G24280.1 (alpha/beta-Hydrolases superfamily protein) HSP 1 Score: 133.3 bits (334), Expect = 4.200e-31 Identity = 127/464 (27.37%), Postives = 200/464 (43.10%), Query Frame = 1
BLAST of Spo18043.1 vs. TAIR (Arabidopsis)
Match: AT5G65760.1 (Serine carboxypeptidase S28 family protein) HSP 1 Score: 131.3 bits (329), Expect = 1.600e-30 Identity = 138/487 (28.34%), Postives = 204/487 (41.89%), Query Frame = 1
The following BLAST results are available for this feature:
BLAST of Spo18043.1 vs. NCBI nr
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. NCBI nr) Total hits: 5
BLAST of Spo18043.1 vs. UniProtKB/TrEMBL
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. UniprotKB/TrEMBL) Total hits: 5
BLAST of Spo18043.1 vs. ExPASy Swiss-Prot
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. ExPASy SwissProt) Total hits: 5
BLAST of Spo18043.1 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
Co-expression
|