Overview
Sequences
The following sequences are available for this feature:
Legend: five_prime_UTRexonpolypeptideCDSthree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.ACAACTTCTCAAGATTTTGTGTATTGATAGATTAGGAATTCTCCTCGAGAGGAGGGGCCTCCTAATCTTTTTTTCTTATCTAAAAAAAAAAAAAAAAGTGACATTTTTTAAACCCCCTTAATCTACCCTCACAAACGAAGTTACAAAACCAACACAACTCGGAACTTCCTTTCTCTCCTTTCTCTCCTATATTCAGTGAAGTTGATCGGAGTTAGCCGGAAAAATGTCATCGATATACGTCTTGGAGCCGCCGACGAAGGGGAAGGTCGTCATTCACACGACGTATGGACCCGTCGACATCGAGCTTTGGCCAAAAGAAGCTCCTAAAGCTGTTCGTAATTTCGTTCAGCTTTGCCTCGAAGGCTACTATGACAGCACAATTTTTCATCGCATTATCAAGGGTTTCCTCATTCAGGGCGGTGACCCCACTTCCACCGGCGTCGGTATTTCTCCGTTCCTCCCTTTTGCCTTATCAATAATTTGTCTTTTTATTTGTTTGGGTAATTTTTGCTCTAATTTTACTTGTTACTTGAGCTTGTAATCATTGAATTAGGGATTTGTATCATTTTTTAGTAGGAATACTGAGATGGGGTTTCGATTGATTGGCGGAATTGCGGAAATGAGTCGGTAAGGCATGAGTTTGTAATGGGTACTCCAAACTTGAGCGATTTTTTGTGGGTTTCTGAATAATTAATTTCTTCGTAATTTTTGGCTTCAATTTACTTGTTATTCAAGGCCGTAAACTCAATTATAGAATGATTAGGGTATGGATTTTTTTAGTAGTAATATTGAGAAGGATGGGTTTTCAATTTGATGGTTGAATAATAGAAATTGAGTTTGGATTTGTAGTAGGTAGCTTAAAATTGTAATCTTTGTTATTTTATTTGTATTTAGTTGAGCTCATGAAGTCTAATACTCTAGTATGGTTGTATTTCATGATAACAGAATTCCAATAGGCTAATGACTGTAATGAGCATAACAAACTGGGTTTAGTTTATGTTTGAATGGAAGAATTTGAACAATGATTGGGGTTAGGTTATTTTTCCTGCATTGGATGGAAATTGTTATAAGAAACATACTTCGTATATTATTTATGTATGTTTTAACACCAGATTTCAGACAGGGTCATGGAAAAGTATACTTGAAAAAAACCCTATAATTAGGTCAAGCTGTCAAGGACCAGATGATTGATTGAGTTAAAATTGTAGATATATATGCAAACTTAGAAACTTAAGTTGCTGAGTGGATGATGTTGAATTTCATTATTTATACATCTTGAAGCAAAATGCTGTGAAGATATTTGCATCTACGTGATGTTAAGATATAGACATTATAAGAAATTCCTCCTCTTTGAATAGTGAAATTTTCATCTATTTTGTTCTTTAATCTTTACGGAATATACGTTAGTAGTACTTAGTTGCCATTATGATCACTTGGATTCGAGTGCAGCTCCTTGTGATTTTATTCCGCAAAGTGCTGATTAGATCAACAATTTGTTTTGGTTAGGTGGTGAAAGCATATATGGTGCAGCATTTTCTGATGAATTCCACTCTCGTCTACGTTTCAACCATAGGGGCTTGGTTGCGTGCGCAAATGCTGGTTCACCACATTCAAATGGAAGCCAATTCTTTATGACATTAGATCGCTGTGATTGGCTTGATAAGAAGAATACGATCTTTGGAAAGGTACTTTAGTTTATTTATTTTCTATGGTTTTGTGATAATTATTCTCCATACTCATAACCATGAAGACCGTCCATGAGCTCTGTTTTCTTCTTTTCTACTCCTTATTTAGTTTCTTTTCCTTTCCTTTTGTTGCTGTGGTAGTGGTTGGTAGCATACGACATAAGGTAAAACATACAGGCAAAAAACTTGAAGAATGAGATGTACTTGAAATGAGTTGAAAACTAGAGGATGAAGTTAATGGAAGAAGATAAAGATTTTGATTACTAAATTGAAAAACACAATCTGAAGATAAATTCCAAGTAATTTGAATGGCTTGATACTGCCCAAGCTAAACAACTAAAACTAAAATGAACTCTCAACAATTCTCTTCATATTTCTCTCCCTACGCACTATTTGTAAAAAATTTATGTTTTCCTTTTGCTCTCTAACGAACTCTCTGCCTTCTTCCTCGAACTAATTCCTAAGTAGTATAAATTTTATGTTTAATATTTTTTAATAGCTACATTTTTTAATGTTGAGTAGTTTCCTTAATAAATGAAAAGATTTTATTTTTTTGATTTGATTTTGTCCCCTAAGGAGGAAGTAGGATATATGAGTTGTTTTTTTCATTAATTTTTTTTTACTTGTTAGTAAGGGTATAATAGTAATTCGAAAAGGGGGCACCAAGTCTTCAAGAGTTAGCTTATAACACGGATATATACTCGTAAGGAAATTCCTACCATGCCAACTCCCCTTTTCCGTTTCATTACAGAGCTGTGCATCTTCTTTAAGGAACTTGCGAGTTGAGAACATAACCCTAACTTTAAAATATGCAAACACGATTCAGGAAGAAAGAAATAAGCAACCTTTGTACAGCGTTAGACTTGAGACTTGTTGTTTAGGCTAAGTGGTTTACACCTGAAGTTGATATGCTGCATATTGCTATGTTCTTTCTGGTCGCTAGCTGATAAGTGCATTTGAGAGTACACCCTTAACGTGTTGATCATTGAATCCTAATGGATGACTCATGTTTGAATTTGGAATTAATCATCCTTTGAATCATTAGCTTCTAGTATTTTGGTGCAAATCATTCAATTTTTTGGCTGGCCTTTCCAGGTGTTGCTATTATTTGTTCATTGTAGCTATTCTGAATCCCAAAGGAAGCTGATAATATATCTAAGATAGCATTTCTCTCTCTCCCAGGAATATGAGATTATTGAAACAAAAAATGATCTGCCAACTGTTTCCACTCTTAGCACACCTAGTGTGCATCAATTAGGAAAAATCAATTGGCAGTTGGGGTTATTGAAATAATCTTTGTAGTATATTAGACTAGTAGTTAAATATCGAAAGTGACCAAATTTGTGGGCTTTAAATGAGTTACTTGGAGAAAAATCAATGTGGTTTATTTATCAGTGGTTTATTTATCAATACATTCATACTGAGTATCTACTGTGTAGTCCAATTGGGGATGTGTTATAACTTATAAGGCCACTTATCAGTCGAGCATGCACAAAGTAAGATATTATGCTTTGTCAAAGAATTGAACATATACAAAACATAAAACTACCTCCGTTCCTAAGTAAGCTACAATAACAATAGATACATATGTTCAGGACTATCAGGAGGGTAGTTGGGTACGAGAGAGTTAGATACACATTTAGGAGGATAGGAGAGAGGTTAAGAAGTAAGAACTAGGAAGTGGGACATGTGCAAGAAAAAGTTGGGGAGAGAGTGCTGTTGTGGGACTTGTGTGAGAAAACTGGAAAGATAGTGGTTTTGTAAGAAAAAGTATGAAAAAGTGTGTTGCATAATAGAAGTTTGTCAATGTAAGGAAAAAGTAAAAGTGTAGTCAACAAAAACAAGATTGTAAATAGCAAGTGTAAACATCATTAAGGAGCGGAGTAGTATGTTTGAAGCTCATTTAATCCTGCGATGCTTCATATCTTTCATAAACACCCCCTTTTACCAAAATATATGTCTGGTTACTGACATGGAAAAGCCTCAGTCAGAGATTGCATTACAATTTTGTTTAAGAAAAGCGGACATTATCCCAAGAGGCCAAGATATTGAAGTCTGACAGTGGCATGATATGAGATGGAGTTGGTTTGCTTTGCAACTGTGTCTTTCCTGGAAGTTTAGATGCTGCAGTGATACCTCCATCCAAAGGATGAGGGCAGTACTCGTCCTGCTTAATTTGATCTTTACAGGTGTGTCATGTCTTATAGTCTTGCGCACTCTTGCCTAAGAAATAAAAATAAAATAAAAATCAGTGTTCCATTACACCCTAAGTCCTGACCTTGTTGCATTTAACTCAAGCATGTTAAAGGTTGCCAAGTATAAGATTAAGACACTAAACTTGTGGCGGGTGCATAATTATTGGAAAGAGTGACAGAAACCCTTCACTAAGTTCTTAGGTCATGATAGTAACACATTAAGTGCTAGATATTGCTATGTTCAGTTTTCTTGCAAGTTACATCTGTATGTTTTTGTTGCAGGTTACTGGAGATTCTATATACAATCTTCTCAGGATAGGAGAAGTTGAAACTGATAAGGATGACCGACCCATGGACCCTGCTCCTAAGATAACTTCTATTGAGGTTTGATTCTGTTCATGAATGCCAGATTATTTGCCAGATTATTTGCCAGCTATTTCTTTTTATTTGCATGTACTATTTCCCCTTCTTCAGAACCTTGTGGTTGGACACTTGAACATACTCTATCAATTGCGAGGCTTAAATTATGACATCTCAATTTGTATTCAATTTCTGAGGCTATGTGAACTCGTCGCTCCCCATATCTTTCACATGTGCGATCACACACCCAGAACACTCTTCCTCCTTTCAGTTGTGCTCCTTTTTTTATTTGTGCTTCGTCTCTGTTTGAGAATATTTGCTGAGACAAACAGCAAATGTATGATCTCTCAGTGTACTTTTTTTCTAATAAAGAAAAAAACTCCTTCAAACTTACTCTTCTTCTCAGCGGGCAAGGGAGTTATAGATCAAATGAAGGACTTTTGTAATGCTGGAAAGATGGCGTACATGATTACAACGTTGGAATTTTGTTTTTAGTTTTTATTTTTAAACGCATCATTTTTTGCTTCTTTTTAACCTTAACTCCTTTATTTTGGGGGTAAAACAGGTTATATGGAATCCCTTTGACGATATCGTGCCCAGAGATGTGAAGAAGTCGCCCCAGCCGGTTACTGATAATGAGAATAAAGATCTGAAGAAGAAAGCTGTGAAGTGAGTTTCTTGGGCGTTAAATTTTGCTTTCATATTAGTGTATTTACGCCTCATTTCATAAGTTGTATTTTTCTGACGCAGAAAGCTGAACTTACTTTCATTTGGCGAAGAAGCTGAAGAAGATGAGAGGGATTTGACGGCGGTAAAACAAAAAATAAAGAGCAGTCATGATGTATTGGATGATCCTCGTTTTCTGAAGGAACAAAATCTCAATGAAGAAACGGTAAAATATGTCCTGGTATCTTCTTCAATTGTGAAATTATATGTATGCATCTTTATGTCTTTAAGAGTTGAGAACTTGAGACCACTGCCTTTTAAAGTAATAAAACTGTTTATGAAGTTAGCTTCCCAACTTATCTTATTTATTTTGGTTCTTGAGCAAAGATAAATACTATCTACATTTACATGGGCCCACGTGGATATAGAGGTGAACACTGTTTGCTCTTTCTTTCTTTTTTGGTATTAGGAAGGCCTTAGAGCTTTTAAGTAGGAGACGGAATTATCGTACCCTGTGACCTGTGTCAAAGTTTTGGTGAAATCATGGAAGGAATGACATGGTGTGGAGCACTGGATTAAAGAGACTCTTAGATTCAGTCTGTAACAGACTTCTGTAAGTGAAGAAAACAAAGAAGAAATGATTAGTCCTGAATTGTGATTTTTTACGGTATGTAACGAGTAACATGTTTTTAGCTTTTTTATGGGTTTGTGGCATTAACTAGTCCATGGGCTTCCTTCTTCAGATTCTTTTTCTTTGTTTTGTTATTTATTTCTTATTTAATCTTTAGAACTTTGAAAACTTGAAGGATCTCTAAGTTTGCGCTTTAAAACAAATGCTAATATTTGGCTTGGCAAATACTTCTCTCGGGGATTCAAATATTCATATACTTCGTATATGTTTAAAGTGATCATGGGCCCTGGATCCTGCCACATATATACATCCTTGTTTTAAATCGTCTTATTTTATCTTATCTTGTTTTGTTATCTTAACTAAACTTTTGTCTATCAGGATCCAGATGAACTCAAGAGTGCAAGGAATTTGCAATTATCTGTGAGAGAAGCTTTGAGCTCAAAAAAACAGGAGTCGCAGAAAGGGACAGCTGATGTGTTACCTGATTCTCATGCTCGAAGTGACAGTGAAGATGATGAAATAAGTTTTGATGCACGAATGCGTGAGCAGATTTTAAAGAGAAGAATGGAGATTGGTGATCTCCCTACTAAGCAAAAGTCTCGAAGGGGTATGAGTGTATGACATATTCAGCTGCTAATTTGAATTTAGTTTGACATATTGGCAAACTTTTGTCACTTTGGCCTCAAATTCTATACAGTTACACATACATAAACACAAGCGTTACATTTATATTATAAGTACCTAAGTAGTTGTATATTCGTGGTTTGCAACTATGCTATTTTTCTTTTCTTTTTTTCCCACCGTATAAGCATCTCTAACCATTTTGCTGTCTCTTTTTACTAGAGGGATCAAAGTCCAAGGATCAACAGAAGTCAGCCCCAAGGTACAAACTAAAAAGCCTAGAACTGATTTCTTGCTCTTTTTTTCATTTAAAAGTTTCTGGACACCACATTTTATGCACTTCATATTAGATGTCAATTGATGAGATCAGGCTAGAAATTTAGGCGAGATGATAGACATGTCTGTCCTTTTCCTGCTCAAACCGTAACAAAACATGCCGATGTAACTTGCAAGAAAAATTGAAGAAGGAAATATGTAGCACTTTAGGTGTTACTATAATGAACCACATAGTCAACACTTCTCTTACAACTCTATCGCTCATTCCAATAATCATGCACACACCCCAAATTTTAGTATTACCTGGCGCAAAAGATGCTTTTGATACGTTTTGCTGGGCCGTGAGGCCGAATAGCTGAAGTTTGAAGTTAGTGATCTGATGATAACCGATATATACTGGGCTGTTTGTATTCCACGATCCTTAACACAATATGAATGTTGCAGACTGAAATCCAACAAAGTTTCCATATATTCTTCACCTTTTCTCTTCTTAATGGCTGTTATAGACAGAGCTCTCAGGAAGTCAGGAGTGAGGACTGCTTAGAGAACTGTTACTTTTTACCTTCTCTCTCTCTTTTTTTTTGCTACATCTTGAACAATATATATAGATAAAGAGGCGCAATGAGATGGAGAGAGTAATGAATAGGGGAATATAATGTTTTTCTAGGAATTTTCCATTTATGCCACTCTGGAACCCGAGTATCCGGTTTCCTACTAATTTCTGGTTTAACGATGAGGGCTGGTGTGTTAACTGTGGTTACTGAACTATATCTAATTTGTCTACATTGTCTGGGGAAAATGTGCTTCTGGAGGAGAATTTTTTACATTTATTTAATTGGAATCTCTGTTTTTCAAGGAAATGAATTGATGGTGTACTTTCTTTGGGAAGACTCGTGGTTTGTGGGATTTGGTGAAATAGCAATAAAAATGTCTAGTAGTAAACTAGTAACCACCAGCCCCTCCTCCCAGGGCTCCCACTAATGGAGGTTGAACTAAGAAGATAATTATTCTTTTGCTGGAATGCTTTGCATCTAAGATGATTATCTTAGCTATTGGATCCAGATCCCTAACAAGTTACTGTTTTCTTTGGTAGATTCGTGTTAGGCTGGTAGCATAATGTTCACTTCCATCCCGCAGTTAAAAAGAGTGATATTCTTAGGCTTGCCAAGTTTTCCCTTTGAATCTTTGATTGAGGAGATTGGTGAGAGAACATCCATGTAGTTGACCCTTTCAGCAAAACCCTTGGTTCTGCTTGTTTAAGTAGGCTGCAATGCATCTTTGATAGTTGGTTGCCTTTCTCTTTGTTAATGTTGAGATCTTGCAAGAATAGGGTAAGTTTCACTTTTGATTTGATATTGGTTCTGCTAAGTAGGTTGACATGTCAAGTAAGATTTGAAGTGTGATGCTTTGACATTTTTGAAGAATGATGGTAGGGACAAGATGTATTGCAATCATTAATTATTTAAGAACGTGGTCTCTGAAGTCAATTGCGTAAACATTAATTAAAACTCTATCTTTGAGTTCCCCTAGTTCAGCGTTGTTATGATTACAAGCATTGTTTGAACTAGGTTTATGTTTCATTCTCTTTTAGAAGTTTCCTCGTGAGTTTCTGTACTTGTGTCGTTGTATGTCATTTTCACGATATTGCAATAATGCCTTGAGCTCTATGTATTATAAGGAGGTATACTTGCCTACCACCTATCTTAAATTATCCATTTCTATGACACATAACTCTGGTGTTATATTCAGCAGGTCAGATCCTGAAAGTTCAGATGACCAAAGAAAAGTGGCGAAATTGTCGATCAGGAAAAAGGGAATTGGATCAGAAGCTAGAGCAGAACGTACGGCTAATGCTGACACGGACCTGCAGTTATTAAATAATGCTGAACGAGAAAGATTGTTGCAGAAACAAAAGAAGCGGAGACTGAAGGGGCGTGAAGAAGATGTATGTTGTCTCCGCTCTAATCTTCTATTCTCTTGCACCTTCATTTCTGCAGTTTGATAAAGAAAATATTATATGTTAGATGTCCTCAATGTAAGAAGCATCTGTGAGAAAACACAGTTTATTCACAAGTTAACATTTTTTTAGTCACACTTAAATATGTAAAATCGTTTTATCCTTGGGCATATAAAAGTATGTTGCTATATTTTCTGAGAGCATTAAGAATTATTTTTTTAATGTTTTAAGATATAGAGTAGCATCTTGAAGTGGAAACTCCATATGTTGCTGCAATTTCTGAGAGCATTAAGATTTTTGGAAAAAGAATACCCATTTTTGGAAATTGGATACCATATCCATCAGTCATGTTCAATGGGAAAAAAGATAGGGCAAAGAGGGATGGGAATATATTTTTGTTCTTTATTGTTATTTTCTTCTCTATTAAGTCATTCCTTGTATATATCTTTTGTTCTGGTTATGTGGGTGCTGCACTGCATCTTGCTAAAGAGGCTGATCTTTGTTTCGTCTCAAAATTGTATGGTAACTTAATACTGTTCATTGATTTGCATATGCGTTGTCCAGGTACTTGCCAAACTTGACAGGTTCAAAAGTTCAATTTCTTCGAAGCATGTTGAACCACGAGCTGAATCCGAAGGGAGAACTAATGAAGATCTATCTGACTGGAAAACTGTCCGCCTGAAGTTTGCACCTGACCTAGGAAAGGTAATCCTTCCTCTCTCCTCAAGCTACTACTAGATTCTTTTCCTAGCAATAAAATGTTCCAATTTCGCCAATTTGAGACTCGGGAAACAAGCGTCCTTTAAGCATGAATCTGGAAACCGTGATGCATTTCTCACTTGAATCAAATTTGATGAAGGTTCTTATAAGTGGAAAATTTCTGCAATTCCTCCTAGAACAGTAGAACAATATCTCCCATTAGAAATTGTTAAACAACAATATATGTTACGTTAAGTTTTGTGTTGAACTAGCATAACTGGAGTGTAATCGATTGAAGATGTAAAGGAAGAAGATGATAGTTGTGATTAATATTCTCGAAAACAAAACAATTGATTGGTAGATACAAGCTTCCGAATGGCTTGTTTCTTACATACTTACCAGTTACCATCCCAAATGCTAAACAAAGCTAAAATGGTAATTAAATATTCTTGATACCTATTCTCCCTTATACATTTCATTGCATTTCTTAATCTCCTTTTTCCTCTAAAACTACCAACTATCTTCCTCCTCAAGATACTACTACAAGATTTATATTGCACTACCTATAACGCCCGTCCCCATATGCCGATTCATTACATTTTGGTAGCAATTGGAGCAAATTTAATGACCCAAGGGGTGACTGTTTCTCTTTGCTCATTCAATATCTCCTTGGAATTATAAAAATCCATCATTGTTCTAAAAAATGGAGGAAGTAAAGTTTCATAAGCCAATGCACTAAATATTTCATTACTGTATGACTGTATGAGTACGGCCACATTTGATATTTGAAACTAAATAACTAATGTATTAGAACCTTACTCTTACTCTTAAGTCTTACTGCTAGGTTAAGATGTCGGTGATTATTATTCTATGAATTCTGAATCTCAAATATTGGCATGGACCTGAATTCGCTGAAATATTTTTCTTAGCATTGATATTGAGAAGCTAATCCCTTTGAAAAATGGCTGTCCATGAATATCATGTGTAAATTTACATGCTTCTTTAAAGATCTAATTTATGTCTGATTTGATTCCAGACATTTGCCTATTTGCTTGTTAGAAAATAAAATTATCCATATGTTGGGTAGGTTTACACCTAAAGTTAAAATGTGAAGAAACAAGCTGATGAATGATGACAGACCTAGGAGATTGTTCAACTACATGCCATTCTGTGCAAGTTGAGCTTGAATTCTGTGATAACGGATTCATATTTTGTGTACTTAAGCAGAATAACATGACACGGAATGAAGATGCCAACGACTATGCAGTGATTGATCCTCTTCTGGAGAAAGGGAAACAGAAATTCAATAGGATGATAGCAAAGGAAAAGCGACGAGAGCGCGAATGGGCTGGGAGATCCCTTACTTGATTCATTCTTTCTGGCTACTTCCTCATATCATAACAAAGGCTAGCTCGATCGCTCCACTTAATTCCTATTAACCCTGCTTTGCTTGATGAATATGTTATTTCAAGCAGCTGTTAATATGTAAATGTACGATAAACAATGAGGAACGAAAGGTCTTCTATATTTCGTATTTGGACATCACGAGCTAGCTCTAGGCCTTTTGTGAGTGCCATTATTTATACGCGTTATAGCTTGTGTTTAGATGAGGATATGGCTTAGCAATGGTTACTACTCTGTATAAACTTCGCAAATGTGGCAAATTAGCCCCATTACAGTAATGTGCAACTAAATACCAGCTATCAATTTTCAACCAATTTTCATCAGAAATTAAAATTGCACTCTCTAACCCGACTCCTCTCCTTCTA ACAACTTCTCAAGATTTTGTGTATTGATAGATTAGGAATTCTCCTCGAGAGGAGGGGCCTCCTAATCTTTTTTTCTTATCTAAAAAAAAAAAAAAAAGTGACATTTTTTAAACCCCCTTAATCTACCCTCACAAACGAAGTTACAAAACCAACACAACTCGGAACTTCCTTTCTCTCCTTTCTCTCCTATATTCAGTGAAGTTGATCGGAGTTAGCCGGAAAAATGTCATCGATATACGTCTTGGAGCCGCCGACGAAGGGGAAGGTCGTCATTCACACGACGTATGGACCCGTCGACATCGAGCTTTGGCCAAAAGAAGCTCCTAAAGCTGTTCGTAATTTCGTTCAGCTTTGCCTCGAAGGCTACTATGACAGCACAATTTTTCATCGCATTATCAAGGGTTTCCTCATTCAGGGCGGTGACCCCACTTCCACCGGCGTCGGTGGTGAAAGCATATATGGTGCAGCATTTTCTGATGAATTCCACTCTCGTCTACGTTTCAACCATAGGGGCTTGGTTGCGTGCGCAAATGCTGGTTCACCACATTCAAATGGAAGCCAATTCTTTATGACATTAGATCGCTGTGATTGGCTTGATAAGAAGAATACGATCTTTGGAAAGGTTACTGGAGATTCTATATACAATCTTCTCAGGATAGGAGAAGTTGAAACTGATAAGGATGACCGACCCATGGACCCTGCTCCTAAGATAACTTCTATTGAGGTTATATGGAATCCCTTTGACGATATCGTGCCCAGAGATGTGAAGAAGTCGCCCCAGCCGGTTACTGATAATGAGAATAAAGATCTGAAGAAGAAAGCTGTGAAAAAGCTGAACTTACTTTCATTTGGCGAAGAAGCTGAAGAAGATGAGAGGGATTTGACGGCGGTAAAACAAAAAATAAAGAGCAGTCATGATGTATTGGATGATCCTCGTTTTCTGAAGGAACAAAATCTCAATGAAGAAACGGATCCAGATGAACTCAAGAGTGCAAGGAATTTGCAATTATCTGTGAGAGAAGCTTTGAGCTCAAAAAAACAGGAGTCGCAGAAAGGGACAGCTGATGTGTTACCTGATTCTCATGCTCGAAGTGACAGTGAAGATGATGAAATAAGTTTTGATGCACGAATGCGTGAGCAGATTTTAAAGAGAAGAATGGAGATTGGTGATCTCCCTACTAAGCAAAAGTCTCGAAGGGAGGGATCAAAGTCCAAGGATCAACAGAAGTCAGCCCCAAGCAGGTCAGATCCTGAAAGTTCAGATGACCAAAGAAAAGTGGCGAAATTGTCGATCAGGAAAAAGGGAATTGGATCAGAAGCTAGAGCAGAACGTACGGCTAATGCTGACACGGACCTGCAGTTATTAAATAATGCTGAACGAGAAAGATTGTTGCAGAAACAAAAGAAGCGGAGACTGAAGGGGCGTGAAGAAGATGTACTTGCCAAACTTGACAGGTTCAAAAGTTCAATTTCTTCGAAGCATGTTGAACCACGAGCTGAATCCGAAGGGAGAACTAATGAAGATCTATCTGACTGGAAAACTGTCCGCCTGAAGTTTGCACCTGACCTAGGAAAGAATAACATGACACGGAATGAAGATGCCAACGACTATGCAGTGATTGATCCTCTTCTGGAGAAAGGGAAACAGAAATTCAATAGGATGATAGCAAAGGAAAAGCGACGAGAGCGCGAATGGGCTGGGAGATCCCTTACTTGATTCATTCTTTCTGGCTACTTCCTCATATCATAACAAAGGCTAGCTCGATCGCTCCACTTAATTCCTATTAACCCTGCTTTGCTTGATGAATATGTTATTTCAAGCAGCTGTTAATATGTAAATGTACGATAAACAATGAGGAACGAAAGGTCTTCTATATTTCGTATTTGGACATCACGAGCTAGCTCTAGGCCTTTTGTGAGTGCCATTATTTATACGCGTTATAGCTTGTGTTTAGATGAGGATATGGCTTAGCAATGGTTACTACTCTGTATAAACTTCGCAAATGTGGCAAATTAGCCCCATTACAGTAATGTGCAACTAAATACCAGCTATCAATTTTCAACCAATTTTCATCAGAAATTAAAATTGCACTCTCTAACCCGACTCCTCTCCTTCTA ATGTCATCGATATACGTCTTGGAGCCGCCGACGAAGGGGAAGGTCGTCATTCACACGACGTATGGACCCGTCGACATCGAGCTTTGGCCAAAAGAAGCTCCTAAAGCTGTTCGTAATTTCGTTCAGCTTTGCCTCGAAGGCTACTATGACAGCACAATTTTTCATCGCATTATCAAGGGTTTCCTCATTCAGGGCGGTGACCCCACTTCCACCGGCGTCGGTGGTGAAAGCATATATGGTGCAGCATTTTCTGATGAATTCCACTCTCGTCTACGTTTCAACCATAGGGGCTTGGTTGCGTGCGCAAATGCTGGTTCACCACATTCAAATGGAAGCCAATTCTTTATGACATTAGATCGCTGTGATTGGCTTGATAAGAAGAATACGATCTTTGGAAAGGTTACTGGAGATTCTATATACAATCTTCTCAGGATAGGAGAAGTTGAAACTGATAAGGATGACCGACCCATGGACCCTGCTCCTAAGATAACTTCTATTGAGGTTATATGGAATCCCTTTGACGATATCGTGCCCAGAGATGTGAAGAAGTCGCCCCAGCCGGTTACTGATAATGAGAATAAAGATCTGAAGAAGAAAGCTGTGAAAAAGCTGAACTTACTTTCATTTGGCGAAGAAGCTGAAGAAGATGAGAGGGATTTGACGGCGGTAAAACAAAAAATAAAGAGCAGTCATGATGTATTGGATGATCCTCGTTTTCTGAAGGAACAAAATCTCAATGAAGAAACGGATCCAGATGAACTCAAGAGTGCAAGGAATTTGCAATTATCTGTGAGAGAAGCTTTGAGCTCAAAAAAACAGGAGTCGCAGAAAGGGACAGCTGATGTGTTACCTGATTCTCATGCTCGAAGTGACAGTGAAGATGATGAAATAAGTTTTGATGCACGAATGCGTGAGCAGATTTTAAAGAGAAGAATGGAGATTGGTGATCTCCCTACTAAGCAAAAGTCTCGAAGGGAGGGATCAAAGTCCAAGGATCAACAGAAGTCAGCCCCAAGCAGGTCAGATCCTGAAAGTTCAGATGACCAAAGAAAAGTGGCGAAATTGTCGATCAGGAAAAAGGGAATTGGATCAGAAGCTAGAGCAGAACGTACGGCTAATGCTGACACGGACCTGCAGTTATTAAATAATGCTGAACGAGAAAGATTGTTGCAGAAACAAAAGAAGCGGAGACTGAAGGGGCGTGAAGAAGATGTACTTGCCAAACTTGACAGGTTCAAAAGTTCAATTTCTTCGAAGCATGTTGAACCACGAGCTGAATCCGAAGGGAGAACTAATGAAGATCTATCTGACTGGAAAACTGTCCGCCTGAAGTTTGCACCTGACCTAGGAAAGAATAACATGACACGGAATGAAGATGCCAACGACTATGCAGTGATTGATCCTCTTCTGGAGAAAGGGAAACAGAAATTCAATAGGATGATAGCAAAGGAAAAGCGACGAGAGCGCGAATGGGCTGGGAGATCCCTTACTTGA MSSIYVLEPPTKGKVVIHTTYGPVDIELWPKEAPKAVRNFVQLCLEGYYDSTIFHRIIKGFLIQGGDPTSTGVGGESIYGAAFSDEFHSRLRFNHRGLVACANAGSPHSNGSQFFMTLDRCDWLDKKNTIFGKVTGDSIYNLLRIGEVETDKDDRPMDPAPKITSIEVIWNPFDDIVPRDVKKSPQPVTDNENKDLKKKAVKKLNLLSFGEEAEEDERDLTAVKQKIKSSHDVLDDPRFLKEQNLNEETDPDELKSARNLQLSVREALSSKKQESQKGTADVLPDSHARSDSEDDEISFDARMREQILKRRMEIGDLPTKQKSRREGSKSKDQQKSAPSRSDPESSDDQRKVAKLSIRKKGIGSEARAERTANADTDLQLLNNAERERLLQKQKKRRLKGREEDVLAKLDRFKSSISSKHVEPRAESEGRTNEDLSDWKTVRLKFAPDLGKNNMTRNEDANDYAVIDPLLEKGKQKFNRMIAKEKRREREWAGRSLT Relationships
This mRNA is a part of the following gene feature(s):
The following polypeptide feature(s) derives from 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:
The following exon feature(s) are a part of this mRNA:
Homology
BLAST of Spo06095.1 vs. NCBI nr
Match: gi|902205648|gb|KNA15225.1| (hypothetical protein SOVF_100210 isoform A [Spinacia oleracea]) HSP 1 Score: 960.3 bits (2481), Expect = 1.300e-276 Identity = 497/497 (100.00%), Postives = 497/497 (100.00%), Query Frame = 1
BLAST of Spo06095.1 vs. NCBI nr
Match: gi|902205649|gb|KNA15226.1| (hypothetical protein SOVF_100210 isoform B [Spinacia oleracea]) HSP 1 Score: 954.5 bits (2466), Expect = 7.200e-275 Identity = 496/497 (99.80%), Postives = 496/497 (99.80%), Query Frame = 1
BLAST of Spo06095.1 vs. NCBI nr
Match: gi|731317772|ref|XP_010669364.1| (PREDICTED: peptidyl-prolyl cis-trans isomerase CYP57 isoform X1 [Beta vulgaris subsp. vulgaris]) HSP 1 Score: 847.4 bits (2188), Expect = 1.200e-242 Identity = 437/498 (87.75%), Postives = 467/498 (93.78%), Query Frame = 1
BLAST of Spo06095.1 vs. NCBI nr
Match: gi|731317774|ref|XP_010669365.1| (PREDICTED: peptidyl-prolyl cis-trans isomerase CYP57 isoform X2 [Beta vulgaris subsp. vulgaris]) HSP 1 Score: 841.6 bits (2173), Expect = 6.800e-241 Identity = 436/498 (87.55%), Postives = 466/498 (93.57%), Query Frame = 1
BLAST of Spo06095.1 vs. NCBI nr
Match: gi|802630645|ref|XP_012077246.1| (PREDICTED: peptidyl-prolyl cis-trans isomerase CYP57 [Jatropha curcas]) HSP 1 Score: 692.2 bits (1785), Expect = 6.700e-196 Identity = 359/499 (71.94%), Postives = 418/499 (83.77%), Query Frame = 1
BLAST of Spo06095.1 vs. UniProtKB/TrEMBL
Match: A0A0K9R6T9_SPIOL (Uncharacterized protein OS=Spinacia oleracea GN=SOVF_100210 PE=4 SV=1) HSP 1 Score: 960.3 bits (2481), Expect = 9.200e-277 Identity = 497/497 (100.00%), Postives = 497/497 (100.00%), Query Frame = 1
BLAST of Spo06095.1 vs. UniProtKB/TrEMBL
Match: A0A0K9R6T6_SPIOL (Uncharacterized protein OS=Spinacia oleracea GN=SOVF_100210 PE=4 SV=1) HSP 1 Score: 954.5 bits (2466), Expect = 5.000e-275 Identity = 496/497 (99.80%), Postives = 496/497 (99.80%), Query Frame = 1
BLAST of Spo06095.1 vs. UniProtKB/TrEMBL
Match: A0A0J8D0P0_BETVU (Uncharacterized protein OS=Beta vulgaris subsp. vulgaris GN=BVRB_2g034330 PE=4 SV=1) HSP 1 Score: 847.4 bits (2188), Expect = 8.700e-243 Identity = 437/498 (87.75%), Postives = 467/498 (93.78%), Query Frame = 1
BLAST of Spo06095.1 vs. UniProtKB/TrEMBL
Match: A0A0J8CW10_BETVU (Uncharacterized protein OS=Beta vulgaris subsp. vulgaris GN=BVRB_2g034330 PE=4 SV=1) HSP 1 Score: 841.6 bits (2173), Expect = 4.700e-241 Identity = 436/498 (87.55%), Postives = 466/498 (93.57%), Query Frame = 1
BLAST of Spo06095.1 vs. UniProtKB/TrEMBL
Match: A0A067KP51_JATCU (Uncharacterized protein OS=Jatropha curcas GN=JCGZ_07641 PE=4 SV=1) HSP 1 Score: 692.2 bits (1785), Expect = 4.700e-196 Identity = 359/499 (71.94%), Postives = 418/499 (83.77%), Query Frame = 1
BLAST of Spo06095.1 vs. ExPASy Swiss-Prot
Match: CPY57_ARATH (Peptidyl-prolyl cis-trans isomerase CYP57 OS=Arabidopsis thaliana GN=CYP57 PE=1 SV=1) HSP 1 Score: 595.5 bits (1534), Expect = 5.300e-169 Identity = 315/509 (61.89%), Postives = 398/509 (78.19%), Query Frame = 1
BLAST of Spo06095.1 vs. ExPASy Swiss-Prot
Match: CWC27_XENLA (Peptidyl-prolyl cis-trans isomerase CWC27 homolog OS=Xenopus laevis GN=cwc27 PE=2 SV=1) HSP 1 Score: 327.8 bits (839), Expect = 2.100e-88 Identity = 215/508 (42.32%), Postives = 300/508 (59.06%), Query Frame = 1
BLAST of Spo06095.1 vs. ExPASy Swiss-Prot
Match: CWC27_RAT (Peptidyl-prolyl cis-trans isomerase CWC27 homolog OS=Rattus norvegicus GN=Cwc27 PE=1 SV=1) HSP 1 Score: 323.2 bits (827), Expect = 5.100e-87 Identity = 206/503 (40.95%), Postives = 291/503 (57.85%), Query Frame = 1
BLAST of Spo06095.1 vs. ExPASy Swiss-Prot
Match: CWC27_MOUSE (Peptidyl-prolyl cis-trans isomerase CWC27 homolog OS=Mus musculus GN=Cwc27 PE=1 SV=1) HSP 1 Score: 323.2 bits (827), Expect = 5.100e-87 Identity = 214/499 (42.89%), Postives = 286/499 (57.31%), Query Frame = 1
BLAST of Spo06095.1 vs. ExPASy Swiss-Prot
Match: CWC27_MACFA (Peptidyl-prolyl cis-trans isomerase CWC27 homolog OS=Macaca fascicularis GN=CWC27 PE=2 SV=1) HSP 1 Score: 322.0 bits (824), Expect = 1.100e-86 Identity = 210/507 (41.42%), Postives = 291/507 (57.40%), Query Frame = 1
BLAST of Spo06095.1 vs. TAIR (Arabidopsis)
Match: AT4G33060.1 (Cyclophilin-like peptidyl-prolyl cis-trans isomerase family protein) HSP 1 Score: 595.5 bits (1534), Expect = 3.000e-170 Identity = 315/509 (61.89%), Postives = 398/509 (78.19%), Query Frame = 1
BLAST of Spo06095.1 vs. TAIR (Arabidopsis)
Match: AT5G67530.1 (plant U-box 49) HSP 1 Score: 154.1 bits (388), Expect = 2.300e-37 Identity = 83/190 (43.68%), Postives = 117/190 (61.58%), Query Frame = 1
BLAST of Spo06095.1 vs. TAIR (Arabidopsis)
Match: AT3G44600.1 (cyclophilin71) HSP 1 Score: 151.4 bits (381), Expect = 1.500e-36 Identity = 73/154 (47.40%), Postives = 103/154 (66.88%), Query Frame = 1
BLAST of Spo06095.1 vs. TAIR (Arabidopsis)
Match: AT2G36130.1 (Cyclophilin-like peptidyl-prolyl cis-trans isomerase family protein) HSP 1 Score: 150.6 bits (379), Expect = 2.600e-36 Identity = 74/156 (47.44%), Postives = 106/156 (67.95%), Query Frame = 1
BLAST of Spo06095.1 vs. TAIR (Arabidopsis)
Match: AT1G01940.1 (Cyclophilin-like peptidyl-prolyl cis-trans isomerase family protein) HSP 1 Score: 137.9 bits (346), Expect = 1.700e-32 Identity = 68/144 (47.22%), Postives = 94/144 (65.28%), Query Frame = 1
The following BLAST results are available for this feature:
BLAST of Spo06095.1 vs. NCBI nr
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. NCBI nr) Total hits: 5
BLAST of Spo06095.1 vs. UniProtKB/TrEMBL
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. UniprotKB/TrEMBL) Total hits: 5
BLAST of Spo06095.1 vs. ExPASy Swiss-Prot
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. ExPASy SwissProt) Total hits: 5
BLAST of Spo06095.1 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 mRNA is annotated with the following GO terms.
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