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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.AAAGAAAAGGAAAGAAAAAGAAAAAGAAAGTAAAACCCAAATGAATTTTCTCTCTCCTCAAACTCTGCTCTTCATCTCCTTCCTCGTTCTGATTGCCATCTCCTCTTAAAGTCTCCGACAAAACCACCATCTAACCACTCTCCCCCAACAAAACCACCATCTTCTATCTGCATCATCACCTCTACTTCGAGGTGCCTCTCCTTCCCCGCCGTTGCTACTCCCGGTGTTGACGACAGTGTATAGCTTCTTTTCCTCATGTATTTTCTTTACTTTTCTATATATTTTTTTTAATATCGATTTTATTGAATTTTCTGTTGATTTTATTTGTATCTGAAGATCCAATAAGTGTTTAGTTCATCAATCTCATTTGGGGATGATGGATTTCGCTTGATATGATATTTCAAATGATCAAATCTTGTTAAATATAGTCTGTTACGTTTTCTGTTTGCTTTGCTGTACCCAGTTCATAATTGAAGTTGAAAAATCATATTATCCTTTTTTCACTTTGTTTTTGGTAAGATACTATGTTTAGGGGGTTGATTTGTTTGTTTTTTTTTAAGGAGGGAGCACAGTAGAAAAGAGCAATAGTTTAAGGGTATATTAATGTTTAGTTTGATTGAATTGAATTAATGTATGTACGGAGTATAATTTATGAGTTTGATTGAATAAGAATTTAGGCAATTTTTGTTATTTTTGGAAAATTGAATGACGGTGCTTGAGGAAATGTAAATGGTGCTGGATTTTTTGTTTATGAGAAGATTAGGTTTGAACCCCTGATGCATTAAGAAGTTTGATTATTATCAAGGCCTCAATGCCATTGAACCACTTCAACCATTCAACCTATTTTTGCGCTGATTTTTATTAGTTTATACCCTTTATGTAGGGTAGAAAACAATTAAAATGGGCGCTCTTCCTGTCCTTGCTTAGGGATTGGCCTGATTTTGGATTGTGTATTATGTGTTTCTCAATTTGGTTTGAATACCAAATACTATTAGAATATCCATTTATTCTTTTGCAATCATGTCCGTTTTTGTTTTTTTGATGAGAGATGTTATCTTGCAGGTTAAGTAAAAGGCCATTGGTCCATAGCTGATGAACTATGGAGCAACTTGTGAACTTCATTATTCGACCACCAAGGTGTGACATTAAATTACTTTCCTTTCTCTGTTTTAGTTATTCCATTTTGCATTCCATTTTTGGAAATTTTAGTGGTTGGGTTTTATTAGTTAGATTTGCTTACTCTTGCTCAATGAAATATTTTATTTCCATAATTAGGTTAGGGATTTATCCACGGAAATATATCTACCGAACACTTGTATTGATTTTGTATACAAGCAAGCGAGCAATAACGGGTAAGAAAACAATTTAAGTCGGGAAGCTGAACTTTAGGCAACAGTTAATGTCTTAATGATATCTACCTTGGTTGTGCTGTAAATATCTTGCTGGGATCCTCTTAACATTTAAACTATTTTAGTTTCATGTATGTTAGATTATACTCTCATGCTGCTAGCCTGTGAAGCATAAATTCATTAGTATGTGGGACTTTATGTTTTGGGGTTTTGAGGTTTGACGGCTTTGACCTAGTGTATGTAGCTGCTTAGTGAACGACTGAACGTTTAGAGTATTGGAGGTGTCTTGAAAAGGCAACGAAAGGAGAGAAAAGGTGGAGGAGTGACTTTATGTTTTGGGGTTTTGAGGTTTGACGGCTTTGACCTAATGTGCACAGCTGCTTAGTGAACGTTTAGAGTACTGGAGGTGTTTTGTCATCATCCATGGTGACTCACAAAAGGCAACGGATGGTGAGAAAAGGTGGAGAGGCGCTGGTTTTGGTGAAAACCAAGGGAGGTCCACAGCTTAGAGAGAGAGAGAGAGAGAAGATAGAAGAAAATATAGGTTAGGAGCTTTGGCCTCGATTCCATGCTAGAATATGAAGAAGTCCCTGATTAGGGCTTGCGTATTATTCACGTATATAGCAGTCAGATTACAGTGTGAACACGTAACGAACCCTGATACACAAGGAATCCTAATTATACACCGCTGAGGAAACGTGACATGAATAAAGTATTTACCTTATTATATTGTTTGTTATCATCTTCTGAACACTTGTTGTGAAACTAGTGCATATTGTTGAACTTGACCAACTGTACAGAGGATTTTTACCAGTAGTTTATGGTTTCACAAGAGCATATAAATAAGCAAAGAGTTTTCCATTTAAGTTTGATAAGAAGAAATGAAGCTGCAAAACGCCCTTAAATACGGAGATTTTAGCTTTAATGACAACTTGATATTATAAGCAAAAGTGAAGTAGCCCTGCCCAGTGTGTTAGAAATTCTATGTTCTATAATCGTCTATATGTGCTTGAGAGAACGATCAATAATGTGTGCAATACATAATTTGTTTAACTTTTATGCAGAGCTGAATATAACCCTGAGCATGACCTTTTAGATCAAGAGTTCATGCTAAAAGGGAAATGGTACAAGAGGAAGGACGTTGAGGTAAGCTTTTGGTTTATGCTATTTGATTCTTTTATTGTATAAATGTATAGCACAAACGTGTGAAAATCCATAGTATTGAATAGAAGTAATATGTCAAAAACACTTTTAACTATTTCCCAAGATATTGCTAGGCAAGAAACAAAACTCCCAGTATGCTTTGGTTTATATAATGATTCCCACATTACCATCCATGTAGGATCTGATTGGGGATGTTCTTTTTTTCTTTTAAATAAACGGTGAATGATGTTACCTGTTCTATAATTAAAACTGCTTATGGTTTTATCAGTTTTGTCAGTGGTGCTGTGTGCTGTTTTGAATTGAAAAATCAAAATGGCGTTGGTATTTTGTTCTGCACCGAGAAAATTATCCCTGATCCCATCCTTTGCGGACGCCGGATGGTAAATGTGGGAATGTTCTGGTAAACCAAAGCATATTGGAACTTGTCCAGCATTCGGGGAGCTGTTCCATAAGTTACATGCATGTGGGCGTTGCACGCATTGCCTGAATTTCATTTTTTTCTTTTCTTTTCTCCCTTCTGATCTTAATCAGTCTAAAAATTGATGAACTATGTTTGCAGATTAAGAACAGTCGAGGGGATGTTCTTCAATGCAGTCATTACGCCCCCCCTGTGAGTCCTGAAGGGAAGCTCCTACCTTGTGTAATATACTGCCATGGTAACAGGTTAGTTGGAACATTGTGTTCAGAGTTCTTTTTGTATAGTAGTGACTTTATCTTGTATTTTGTGTGCACTTTGTTGATGTTTGTATACTTGTCAATGAAATCTGAAAGATTGGGAATTGCAAAGCAGATCTGGTCCAACCTTCTTATCTGCACACTAAATTATATGACATAATAGATATTTTATGATCTGGTTTAACGCTGCCTAGCCTGAAAGGAAATTCTTGTAGGATTTTTGAGTGCTTCTTTGGATAAATGGATACTTGTCTTTATCGTCTTCCTTTCCCGTCACAGCAGTTAATGTTCTACAGTAAATATCATTATTGACAATCCTTGTTTTATTTGAGACGTCTTCCTATAATTATAAGACAATCTAGTAAACTGTTTATAATACAATAAGGAGATGGTACATATTACAAAAAATATGGTATAAGAAACACAAAAGTTACTCTTTATAACATGATATACTTGCGTTTCACGGTCTTACCATGTGAGTCAAATGGTCGGTGGAGGAAATATAACGTCAGGGTTACGAGTGAGTGGGTTGAGTGAGTCAGCTTTAACTTGATGAATGGGGCAAGACAGGCTCCAGATAAAGCTTATGGTCCATGGTTTACGAAGCATTTGTGTGGAATAAAATAAAGAGAAAGATAATTTTGACTGACTAAGTTTACTTTCGCCTTTTGACAATCTTACTGACTGAAAGGGGTATCCGCTCGTTTGGTTGGCAGTACTAGTAATAAATTTATATGTAATTCTGTACGGAGAGTCACATGTCAATGCCCACGATGAATTGGTGATACAAATTCATTCCATTCATGTGTTTTTCTTCATAAATTTATATTGAAACTTAGAGGTGGTATTGACCATTGAAAGGTAATGAAGCGTTATGAAGAAAAAGGAAATACTTGGGGGTGGAAAAACATTACATTTGATTATTGGAATGAGACTTTCCTTTGATTGGAAATAGATTTATTCTGATTATCACCCAAGAAACAAGCCACTAGTGTCTAGCGCTAATCCTACAGTCAAGAAGCTTGTCTTCTAGAATGCATTGAGCTATATTATTGATTAGTAAATTTATGAACTGGTTATTTGTATTTTTTGCAGTATATTTAATCTGCTGCCTTTTGTTGTATGTTAACTTTACTGACTACGGTTCATGTCAACTGGCACGCCAGTGGGTGCAGGGCAGATGCCAGCGAAGCTGCTATAATATTGCTGCCCTTAAACATTACAGTTTTCACCTTGGACTTCTCAGGTTCTGGACTTTCCGGAGGGGAGCATGTTACTCTAGGGTGGAACGAGGTAAGTTTCCATATATGCTTCACTTGAGTTGAGAATATCCAAATTTTTTGTTCTTCATTAAATTGGACTTTACCCCTGTCAATATATGTGATTGTGACTGATTCTTCTGGAGAACTACGAAATTACGAATAGTCTTTTGATCTTTTCTTGATATTCCAACAGTTTAAAAGATGTACTCTAACGAAAGGAAAACTTCCCACTTACATCCTTATAAAGTGGTCACTTTGTAAGTTATAGCCTTTTAAAAAAGTTATTAATTTATTGTAAATTACAGTCTTTATTCTCATTTTTCTTATAAATTGCGACCAAACTCATTCTCTGGCGACAAGAGCCTTCAGTTCTCATTTTACTTATAAGGTGCGACCAGTTCTCATTCTCTGGTGACATCAGAAAATGAGAACTAATGGCAATATATAAGAAACATGGGTTTAAAGGCTGTAACTTACAATAATTTTTTTAAAAGGCTCTAAGTGACAAATTTTCTCCAAGGAAAACCAAGAAAATGGTGTTTTTTTTAAAACTGCAGAAATAGTGATTTTTGTTTGTTGGTAGCTTGTTTATTTTTCTTGTGAATGAAGCTTTGGACAGTTTGCAATTGAAATTAAGGTATAATATTTTAACTCTTTTCCTGTGGGTTTTACAGAAAGATGACCTGAAAGCTGTTGTTGATTATTTACGTTCAGATGGGAATACATCTATGATTGGCTTATGGGGTCGTTCTATGGGTGCAGTTACCAGGTTCCGTTATGCGTTTTATTTATTTTGGCAGTTAAATTTTTATTAATAACCAAAAGTATGAGAGAACATCTCACAGAAGACCGTAGAAAAGCGATCTAGGACAACCTCTAAATTCACAAAAACCAGCTTACTATTTGGTTCCTCCATGCAATTTCAAGTTTCCTAGTATACTACTACCTCCGTTCCTTAATGTTCTTTATGCTTACTATTTGCACGGACTCCGATGCAATATTTAATCACTAATATATCCAAATTTGTATGTGAAAAAATTATAAATAAAATAAAATACCGAGACTAATTTAACAAAGTCTTACTCCACCTGATAACGTTTTGATGCATATAATAGTGAGCCTTTACGGTCAAATTTTTCATACTTTGGACACATATTCCAAGGCGTAAAGAACTTTAAGGAGCGGAGGTAGTATATTACAATCTTGTTATTTTAAGTATTTGTCTTTCGAAGATGCTTTTCGAGCTGCATTCCTATTTTGAATGAAAAAACTGTCGGTATTTTGCTGGTTGTTTTACCTAACAGTATCAGCTACTGTTTCTGAAGCTTAATGTGTGGAGCCGAGGATCCTTCAATTGCTGGAATGGTTCTTGACAGCCCCTTCTCAGATTTGGTTGACTTGATGATGGAGCTTGTGGATACCTACAAAGTCCGACTTCCTAAATTTACTGTGAGTAATTCTGAATTGAGCTTAACACAATGTCTATATGTAATACCTAGTCAGATATTGATGCATTACCAGAATGAATTTCACGAAGTTTCTTTGTTTTACTTGACTTGTAAATTGTAATTGTAAGTGATGAAGTTGCTGTTTTGTTTACATAGTTCACCGTTTCTCCTGTGACCTGTCTCTGGTGTTCTTAGTGTTCGAGAAGGGTGATACATTGTGTTTGTAAAAAAAATTCAAGGGATGGAGAGTATTTTAAACTCAGTGAACAACATCCATTATGACATGATTGATGCAGGAATTCGAAATTTGTGCATCGCCAAGTAGCATATACATTTGTTGTGAACTGTTATAGAAGGGAATGGAGGGAGAAGATCGTGGTTGACGATCACAGGAGATAAAATCTTGGTTCCTATAGCTGACCCCATACTTGGGGTTAAGGCTTCATTATTTTAATTGTAAATATATGAACTATTATTCAGATGAATACATTGTATGCTTTTGAAATGTGCCTTTACATGTTATTAGAATGCAGATCTGTTAGTGGCTTCTGAAGTATGTGTGCATAAAGTAGGTTTATGACTATTGAAATGACATCTAATGCTGCCACTTTTGGTAAAATACATTTTCCTGCATTATATAACTTGTAATATGAAAATAACGTATTGTTTCGTTCCCTGTCCTCTTTCTTTAAACAGATGTGATAATAATTGCCGTCGTAGCTTATTTATTTTCTGCAAACTATTAATTGACAGAGTGACATTTATGTTGATATATTTTCTGTTATAGGTAAAATTTGCCATCCAATATATGCGAAGAGCGATCTTGAAGAAAGCAAAATTTGATATTATGGACCTGAACACCATTAAGGTTCTATTGCTTTCAATACTTCACAAATTGGTTGTGATTAGATTTACAGTTAAATTTTGTTGTTATGTAAATTTAAATTCCTCCATCTGTGTTAGTCTCTTAAAACTGTTCAAAAGGGTCTACTTCATCTAAATAGCCTTCTTACCAAGGAAAAAGGTGCTTTGAGTGATGGATCCGTAATTTTTTTAAAAGTTATTACAAATGACAGACACCACCTTAGCAGAAATGTTTACGTTTACTTCTCTTTGGAGATATTTACATGTCTTGTATGAATTATGTTAAATCAAACTTTCTGAGTTAAAAGTCTCAAAACAGTACTGGAAGGTCTCTACGGGCTCTATCTGGTCAAGGAACTAAATTATTACAGTGATTTATGATTCATGAAGTTTTGTAGGGAAATTATCTTCCCCTAGTTCTGTTTGACGTTATGCCGTTATGGTAAAGGACACCTTCTACTTTGGTGTATGGCCTAGGCTAGATGAGTTACCTGATATATTCAGGTTCTTGTATTAGTTTGTATTAGATTGATTACCCTTGTGATTATATAATTATATTGCAAATCCTTTAGTCCCTTTGTTCTTCTGATGATGGTTGATTTTGATTGGTTTAATTTCCTGTTTCTGCAAGACTAGGTAGCAAAGTCTTCCTTTGTACCAGTGTTGTTTGGCCATGCAATCGATGATGATTTTATACAGCCTCACCATTCAGAACGTATATATGATGTGTACATGGTAAGTTTTAAGTTTTTCTTCTTTTTTAAGATAAGAAACAAGCCAAAAACCATTAACAGTTTCTATTTGACACCTATTTTTTTTTATTTTTATTAATTGGATATATAAATCTATAATCAAGGTAGCATGTGGCCATGGAAATATTTCCCTTATTATTTACCACTTGAAGTGGTGAAGTAATTCTTAAAGTTGCACATGGCCACATGCTACCTTGATTATAGATTTATAGCTTAGACATTAATCAAAGAAGTACCTGATTTAGCAAAGTACGTGACAAAAAGAACTTGGAAGTTGGAACAGCATCTAATTCACTGCCGAATAGACAACTAACGCACGTTAGCTAAATAAACTGGGAACCTCCAAATTTATTATAAATTCAGATTTCGTATTTGTTTGTGTGATTCGGTTAGGAGAGAGTTAAAATATTCATGTGAGTTTGCTATTAGCCTATTGCCACTATACCTGTTTATCTGCTGATTTATCCTGTCAAGGGATTATTTAATGTCCCTGTTTTTTGAAGGTTTATCTAAAAGGAGTATTGGTTTTGTGGCTAGATTATGTGCTGACTGACATTAGATAAACCTGCACTTGTAGCTTTTTATTTCTTAATTTAGAGCTACTTTTGACTTCATTCTTCTTCGAAACTTAAATGTTAAGTTAATTCTGACAGGGAGACAAGAATATTATCAAATTTGAGGGTGATCACAACTCTCCGCGGCCTCAGTTTTACTTCGATTCCATAAGTATATTTTTTAATAATGTTTTGCAACCTCCAGAGGATGATGTTCCAGTAAGGTTGTTTGACCCAATGCATGAATACATTGACAAGGTAGATTCAGATTAATACCAATAATGATTGGATCTGATTAAAAAGAACTTATTGATGAATTAACTTGTTCATTCTTATAATCTCCAGGCTTCTTGGAATGCATTGCATGGACTGGGATATGCAGGCAGCAATTTTTCAGGTGGATTTAGAGGCATGCCTCTAGTATCTTATCTTTTTTGTGTAAATTTGGATGATTAACTTACTATCTTCAATATTTAGTGTTCTGTTTCGGTTTCCTAAAATTTCTATTTTATTCAGATCCTGCCAGGAGTAGCACTGGAGATGCTATTGAGCAACTCCGATCCAAACGGCCCATGAGCCGAATGGAGGTTAGTGTTGATGGGTAACTCTCTTGTTTAGATGTCGGTACTGGCTAATATAAAGATGTACATGCAGTAAATGGTCTTAAAAGGCTACATTTTTGCATATTCAGTGTTAAACATGTGTTTTGAAATTATGGAACATAGCTAAAGTGTTTCTGCAGACTTGATCTCTTATAATGTATTTGTTGGTACATGGTTGATTTTATTTCCAATTTGTATGTTCCTAGGTACCCCCTACTATTCCTGCTGGAGATGAACAATCTGAAGCAAAGGTATACAAATATATATTGGCTACACCTTATTGTCATAGTTGTTTTTGATGCACTTGGTCTAGTTTCATAAAGAGCATACTTGTATTGACATTGGACAAGTATTGAGAAAATTGGGGATAGGGAGATGACTTCTCGCAAAGATATATGGGAAAAAGAATTCCTAATGCCCCTGAACAACCTATATTTTCTTGATAAAACATTGACCTTTGATCAAGAACGTAATCTACCATTGACTTGAGATCTGATAAAATATGTTAAAGATAGTTATGATCAATGAATACTGAAATTCAAGGTAGGATTATTGTCTTTTGGTGAGTGCACAGGATTGTCTTCCGTCAATTTAATTTTTGATGCTGCAAAATTTCACATTTACAAAAGACACTCGCCTAGTTATATCAGCAGCCTTACCATCCTACAATTTTTTGGGGGGGGTATATCATTTGCTCCGGCATTCCTTGGTCATATTTTAAAGCGCCCAGTTTCTGGAATCTGAACCCTTTCTTTCAGGACGAGTTATCAGTCTTTTTTTTTTGGAAATTTTTGCTCCTCTAGTTGAGTTCTGAGAGACCCCTAAAACTTGGAACTTTTTTGGTTCTATTACTACTTTTCTAGCTGAAATGGGAGAGGGAAAAAAGTTTAGATCATCTATAGAAAATTTATTTTCTTTCTTCTTAGCACTGTTGCATTTTATCTTCTGTCTTTTCCTTCATGACAAATTTTCTCTCTTGGTAAGTCTGTGTCGTAGAGGAAGAATCAATAGGGAAAAAGAGCGAAGTAAGGGAGAGAATAGATGAAGGGAAGGAACGAGGGAAAGGGGGGAAGAAAATCGTATATCAAATGAATATTAGTTAGGCTCTCATCATTCTCTTTTAGTTTACATCTTTTTCTACCAATTGATTCTGTGAAGATCAGGGGTTTCTTTGTTATTGTTCGCCATCTATGCTTTAAGGACTTGGGTTCCTAGTAAACTTTATTTTCTCTTATCATAAAATAACGAATCTTTCCTTTTCAAATATCTGGCTTTCACCACAATTAATCTATGAGCTGGGAAATTGTTAAATCTGCTTGCAAAAGTAGCTTATGTTTTAGAGATTTTCTTAATTCTCTCTCACCTTTGGTTAAAGTGCTTACTTCACGCTTTGCTCTGCTCCAGGAAGAGGCAGTTGCAACTGCATCACCTTCCTCAAGTTCTGGAATGATTAGCTTTGAACTAACAAATGGTCAACCCTTTGGTCCTCATGTTCCAATTGCCATTGATGATGATCAATACGTAGAATACTCTCTTGACAACATGGCAGAATTTCCCCGTGATATGGAGGAAGAAGAAAGGGTGGGTCCCAGTTACTATATTTATACATACATTTGACTCACTTTTTTGTTTGTTTTATTTGATTTACTCTTGTGGTATTGCTTGAATTAGATGGTCATGGAAGCCATTGTTAAGTCTTTGAAGGACATGGGTACAGGTGAAGAGACACCCTCCCGTGCAAACTCCAATGTTCTCGAATCTAACCAAGAAAATCTCAAACCAATTACTCCTACATATAAAGAGAACTGTGGACCATCCAAGTCAGATTCAACTTTGCTCTCATCAACCAATAGTGATCCTTCCACTTCTGATACCAACGATCCTTCTTCTGAACGTCGATTAGATAAATCTTCCAGAATTCCTGAAACTGATTCAAAAATAGATTCATCACCTGTTCAAGTTGCAGAGTCATCTGGCAAGGAATCCAGTGATGGTACGAAAGCGACAGTGACTGTTGAAAAAAATTCTTCAGGAAGCAATATTATGGATGGGTTCTTTCGTCGTTGGGATCGAAGCTTCTTCAAAAGCACGCGGTAAACATAACCTAATTTTGTTGCAGCTGCATACGCTTGATGTTTGTGACAAAAGCAGGCTAGATTTAAGGGCAACATAGTAACAAAAGGAGATCACCATTTGCATTTATATTGCAGTAATTTCTTACTGACCTATTATTGGTCCTGTGTAGATTTGTTCCTGAAAGCTGAAAGCTGAAAAGAAAAGGTAATTGGATAGGTGTGAATATTCCGTTCCCGGTAATGCAGATATCGGCAATTCTTTATTGTGCATAAAGTTTCCGGCTTTAATGTAAATCCCTATTGCAAGTTTCTTCATTTCCCACTGTCATTTGTATATTTTTTCGTTCTTTCTAGTCTGGATAATGATCATAACCAAAATTTGGGTGATGTTGAATGGTGATATTCTTGTAAAGTTCTCCAAATACAGAAAGTGATTTGTTGAGATGGGAGACTAATATTGAAGTTAATGAAGATTTGACGAAATGTTGCCTTTTTTCTAATCATAATTTCCTTTTCCT AAAGAAAAGGAAAGAAAAAGAAAAAGAAAGTAAAACCCAAATGAATTTTCTCTCTCCTCAAACTCTGCTCTTCATCTCCTTCCTCGTTCTGATTGCCATCTCCTCTTAAAGTCTCCGACAAAACCACCATCTAACCACTCTCCCCCAACAAAACCACCATCTTCTATCTGCATCATCACCTCTACTTCGAGGTGCCTCTCCTTCCCCGCCGTTGCTACTCCCGGTGTTGACGACAGTGTATAGCTTCTTTTCCTCATGTTAAGTAAAAGGCCATTGGTCCATAGCTGATGAACTATGGAGCAACTTGTGAACTTCATTATTCGACCACCAAGAGCTGAATATAACCCTGAGCATGACCTTTTAGATCAAGAGTTCATGCTAAAAGGGAAATGGTACAAGAGGAAGGACGTTGAGATTAAGAACAGTCGAGGGGATGTTCTTCAATGCAGTCATTACGCCCCCCCTGTGAGTCCTGAAGGGAAGCTCCTACCTTGTGTAATATACTGCCATGGTAACAGTGGGTGCAGGGCAGATGCCAGCGAAGCTGCTATAATATTGCTGCCCTTAAACATTACAGTTTTCACCTTGGACTTCTCAGGTTCTGGACTTTCCGGAGGGGAGCATGTTACTCTAGGGTGGAACGAGAAAGATGACCTGAAAGCTGTTGTTGATTATTTACGTTCAGATGGGAATACATCTATGATTGGCTTATGGGGTCGTTCTATGGGTGCAGTTACCAGCTTAATGTGTGGAGCCGAGGATCCTTCAATTGCTGGAATGGTTCTTGACAGCCCCTTCTCAGATTTGGTTGACTTGATGATGGAGCTTGTGGATACCTACAAAGTCCGACTTCCTAAATTTACTGTAAAATTTGCCATCCAATATATGCGAAGAGCGATCTTGAAGAAAGCAAAATTTGATATTATGGACCTGAACACCATTAAGGTAGCAAAGTCTTCCTTTGTACCAGTGTTGTTTGGCCATGCAATCGATGATGATTTTATACAGCCTCACCATTCAGAACGTATATATGATGTGTACATGGGAGACAAGAATATTATCAAATTTGAGGGTGATCACAACTCTCCGCGGCCTCAGTTTTACTTCGATTCCATAAGTATATTTTTTAATAATGTTTTGCAACCTCCAGAGGATGATGTTCCAGTAAGGTTGTTTGACCCAATGCATGAATACATTGACAAGGCTTCTTGGAATGCATTGCATGGACTGGGATATGCAGGCAGCAATTTTTCAGGTGGATTTAGAGATCCTGCCAGGAGTAGCACTGGAGATGCTATTGAGCAACTCCGATCCAAACGGCCCATGAGCCGAATGGAGGTACCCCCTACTATTCCTGCTGGAGATGAACAATCTGAAGCAAAGGAAGAGGCAGTTGCAACTGCATCACCTTCCTCAAGTTCTGGAATGATTAGCTTTGAACTAACAAATGGTCAACCCTTTGGTCCTCATGTTCCAATTGCCATTGATGATGATCAATACGTAGAATACTCTCTTGACAACATGGCAGAATTTCCCCGTGATATGGAGGAAGAAGAAAGGATGGTCATGGAAGCCATTGTTAAGTCTTTGAAGGACATGGGTACAGGTGAAGAGACACCCTCCCGTGCAAACTCCAATGTTCTCGAATCTAACCAAGAAAATCTCAAACCAATTACTCCTACATATAAAGAGAACTGTGGACCATCCAAGTCAGATTCAACTTTGCTCTCATCAACCAATAGTGATCCTTCCACTTCTGATACCAACGATCCTTCTTCTGAACGTCGATTAGATAAATCTTCCAGAATTCCTGAAACTGATTCAAAAATAGATTCATCACCTGTTCAAGTTGCAGAGTCATCTGGCAAGGAATCCAGTGATGGTACGAAAGCGACAGTGACTGTTGAAAAAAATTCTTCAGGAAGCAATATTATGGATGGGTTCTTTCGTCGTTGGGATCGAAGCTTCTTCAAAAGCACGCGATTTGTTCCTGAAAGCTGAAAGCTGAAAAGAAAAGGTAATTGGATAGGTGTGAATATTCCGTTCCCGGTAATGCAGATATCGGCAATTCTTTATTGTGCATAAAGTTTCCGGCTTTAATGTAAATCCCTATTGCAAGTTTCTTCATTTCCCACTGTCATTTGTATATTTTTTCGTTCTTTCTAGTCTGGATAATGATCATAACCAAAATTTGGGTGATGTTGAATGGTGATATTCTTGTAAAGTTCTCCAAATACAGAAAGTGATTTGTTGAGATGGGAGACTAATATTGAAGTTAATGAAGATTTGACGAAATGTTGCCTTTTTTCTAATCATAATTTCCTTTTCCT ATGGAGCAACTTGTGAACTTCATTATTCGACCACCAAGAGCTGAATATAACCCTGAGCATGACCTTTTAGATCAAGAGTTCATGCTAAAAGGGAAATGGTACAAGAGGAAGGACGTTGAGATTAAGAACAGTCGAGGGGATGTTCTTCAATGCAGTCATTACGCCCCCCCTGTGAGTCCTGAAGGGAAGCTCCTACCTTGTGTAATATACTGCCATGGTAACAGTGGGTGCAGGGCAGATGCCAGCGAAGCTGCTATAATATTGCTGCCCTTAAACATTACAGTTTTCACCTTGGACTTCTCAGGTTCTGGACTTTCCGGAGGGGAGCATGTTACTCTAGGGTGGAACGAGAAAGATGACCTGAAAGCTGTTGTTGATTATTTACGTTCAGATGGGAATACATCTATGATTGGCTTATGGGGTCGTTCTATGGGTGCAGTTACCAGCTTAATGTGTGGAGCCGAGGATCCTTCAATTGCTGGAATGGTTCTTGACAGCCCCTTCTCAGATTTGGTTGACTTGATGATGGAGCTTGTGGATACCTACAAAGTCCGACTTCCTAAATTTACTGTAAAATTTGCCATCCAATATATGCGAAGAGCGATCTTGAAGAAAGCAAAATTTGATATTATGGACCTGAACACCATTAAGGTAGCAAAGTCTTCCTTTGTACCAGTGTTGTTTGGCCATGCAATCGATGATGATTTTATACAGCCTCACCATTCAGAACGTATATATGATGTGTACATGGGAGACAAGAATATTATCAAATTTGAGGGTGATCACAACTCTCCGCGGCCTCAGTTTTACTTCGATTCCATAAGTATATTTTTTAATAATGTTTTGCAACCTCCAGAGGATGATGTTCCAGTAAGGTTGTTTGACCCAATGCATGAATACATTGACAAGGCTTCTTGGAATGCATTGCATGGACTGGGATATGCAGGCAGCAATTTTTCAGGTGGATTTAGAGATCCTGCCAGGAGTAGCACTGGAGATGCTATTGAGCAACTCCGATCCAAACGGCCCATGAGCCGAATGGAGGTACCCCCTACTATTCCTGCTGGAGATGAACAATCTGAAGCAAAGGAAGAGGCAGTTGCAACTGCATCACCTTCCTCAAGTTCTGGAATGATTAGCTTTGAACTAACAAATGGTCAACCCTTTGGTCCTCATGTTCCAATTGCCATTGATGATGATCAATACGTAGAATACTCTCTTGACAACATGGCAGAATTTCCCCGTGATATGGAGGAAGAAGAAAGGATGGTCATGGAAGCCATTGTTAAGTCTTTGAAGGACATGGGTACAGGTGAAGAGACACCCTCCCGTGCAAACTCCAATGTTCTCGAATCTAACCAAGAAAATCTCAAACCAATTACTCCTACATATAAAGAGAACTGTGGACCATCCAAGTCAGATTCAACTTTGCTCTCATCAACCAATAGTGATCCTTCCACTTCTGATACCAACGATCCTTCTTCTGAACGTCGATTAGATAAATCTTCCAGAATTCCTGAAACTGATTCAAAAATAGATTCATCACCTGTTCAAGTTGCAGAGTCATCTGGCAAGGAATCCAGTGATGGTACGAAAGCGACAGTGACTGTTGAAAAAAATTCTTCAGGAAGCAATATTATGGATGGGTTCTTTCGTCGTTGGGATCGAAGCTTCTTCAAAAGCACGCGATTTGTTCCTGAAAGCTGA MEQLVNFIIRPPRAEYNPEHDLLDQEFMLKGKWYKRKDVEIKNSRGDVLQCSHYAPPVSPEGKLLPCVIYCHGNSGCRADASEAAIILLPLNITVFTLDFSGSGLSGGEHVTLGWNEKDDLKAVVDYLRSDGNTSMIGLWGRSMGAVTSLMCGAEDPSIAGMVLDSPFSDLVDLMMELVDTYKVRLPKFTVKFAIQYMRRAILKKAKFDIMDLNTIKVAKSSFVPVLFGHAIDDDFIQPHHSERIYDVYMGDKNIIKFEGDHNSPRPQFYFDSISIFFNNVLQPPEDDVPVRLFDPMHEYIDKASWNALHGLGYAGSNFSGGFRDPARSSTGDAIEQLRSKRPMSRMEVPPTIPAGDEQSEAKEEAVATASPSSSSGMISFELTNGQPFGPHVPIAIDDDQYVEYSLDNMAEFPRDMEEEERMVMEAIVKSLKDMGTGEETPSRANSNVLESNQENLKPITPTYKENCGPSKSDSTLLSSTNSDPSTSDTNDPSSERRLDKSSRIPETDSKIDSSPVQVAESSGKESSDGTKATVTVEKNSSGSNIMDGFFRRWDRSFFKSTRFVPES Relationships
The following mRNA feature(s) are a part of this gene:
Homology
BLAST of Spo06767.1 vs. NCBI nr
Match: gi|902239473|gb|KNA25611.1| (hypothetical protein SOVF_005020 isoform B [Spinacia oleracea]) HSP 1 Score: 1111.3 bits (2873), Expect = 0.000e+0 Identity = 561/563 (99.64%), Postives = 561/563 (99.64%), Query Frame = 1
BLAST of Spo06767.1 vs. NCBI nr
Match: gi|902239472|gb|KNA25610.1| (hypothetical protein SOVF_005020 isoform A [Spinacia oleracea]) HSP 1 Score: 1097.4 bits (2837), Expect = 0.000e+0 Identity = 557/563 (98.93%), Postives = 557/563 (98.93%), Query Frame = 1
BLAST of Spo06767.1 vs. NCBI nr
Match: gi|731318639|ref|XP_010669834.1| (PREDICTED: uncharacterized protein LOC104886965 [Beta vulgaris subsp. vulgaris]) HSP 1 Score: 909.8 bits (2350), Expect = 2.300e-261 Identity = 474/568 (83.45%), Postives = 502/568 (88.38%), Query Frame = 1
BLAST of Spo06767.1 vs. NCBI nr
Match: gi|731389056|ref|XP_010649852.1| (PREDICTED: uncharacterized protein LOC100257995 [Vitis vinifera]) HSP 1 Score: 717.6 bits (1851), Expect = 1.700e-203 Identity = 381/600 (63.50%), Postives = 448/600 (74.67%), Query Frame = 1
BLAST of Spo06767.1 vs. NCBI nr
Match: gi|297736965|emb|CBI26166.3| (unnamed protein product [Vitis vinifera]) HSP 1 Score: 714.9 bits (1844), Expect = 1.100e-202 Identity = 382/602 (63.46%), Postives = 450/602 (74.75%), Query Frame = 1
BLAST of Spo06767.1 vs. UniProtKB/TrEMBL
Match: A0A0K9S1K4_SPIOL (Uncharacterized protein OS=Spinacia oleracea GN=SOVF_005020 PE=4 SV=1) HSP 1 Score: 1111.3 bits (2873), Expect = 0.000e+0 Identity = 561/563 (99.64%), Postives = 561/563 (99.64%), Query Frame = 1
BLAST of Spo06767.1 vs. UniProtKB/TrEMBL
Match: A0A0K9S1K3_SPIOL (Uncharacterized protein OS=Spinacia oleracea GN=SOVF_005020 PE=4 SV=1) HSP 1 Score: 1097.4 bits (2837), Expect = 0.000e+0 Identity = 557/563 (98.93%), Postives = 557/563 (98.93%), Query Frame = 1
BLAST of Spo06767.1 vs. UniProtKB/TrEMBL
Match: A0A0J8CUY6_BETVU (Uncharacterized protein OS=Beta vulgaris subsp. vulgaris GN=BVRB_2g037280 PE=4 SV=1) HSP 1 Score: 909.8 bits (2350), Expect = 1.600e-261 Identity = 474/568 (83.45%), Postives = 502/568 (88.38%), Query Frame = 1
BLAST of Spo06767.1 vs. UniProtKB/TrEMBL
Match: G5DW94_SILLA (Esterase/lipase domain-containing protein (Fragment) OS=Silene latifolia PE=2 SV=1) HSP 1 Score: 736.1 bits (1899), Expect = 3.200e-209 Identity = 380/497 (76.46%), Postives = 422/497 (84.91%), Query Frame = 1
BLAST of Spo06767.1 vs. UniProtKB/TrEMBL
Match: G5DW95_SILLA (Esterase/lipase domain-containing protein (Fragment) OS=Silene latifolia PE=2 SV=1) HSP 1 Score: 733.0 bits (1891), Expect = 2.700e-208 Identity = 373/487 (76.59%), Postives = 417/487 (85.63%), Query Frame = 1
BLAST of Spo06767.1 vs. ExPASy Swiss-Prot
Match: YQKD_BACSU (Uncharacterized protein YqkD OS=Bacillus subtilis (strain 168) GN=yqkD PE=4 SV=1) HSP 1 Score: 76.6 bits (187), Expect = 9.500e-13 Identity = 66/226 (29.20%), Postives = 107/226 (47.35%), Query Frame = 1
BLAST of Spo06767.1 vs. TAIR (Arabidopsis)
Match: AT4G14290.1 (alpha/beta-Hydrolases superfamily protein) HSP 1 Score: 671.8 bits (1732), Expect = 3.800e-193 Identity = 363/578 (62.80%), Postives = 427/578 (73.88%), Query Frame = 1
BLAST of Spo06767.1 vs. TAIR (Arabidopsis)
Match: AT3G23540.1 (alpha/beta-Hydrolases superfamily protein) HSP 1 Score: 646.0 bits (1665), Expect = 2.200e-185 Identity = 348/576 (60.42%), Postives = 423/576 (73.44%), Query Frame = 1
BLAST of Spo06767.1 vs. TAIR (Arabidopsis)
Match: AT4G17150.1 (alpha/beta-Hydrolases superfamily protein) HSP 1 Score: 417.9 bits (1073), Expect = 9.800e-117 Identity = 198/285 (69.47%), Postives = 233/285 (81.75%), Query Frame = 1
The following BLAST results are available for this feature:
BLAST of Spo06767.1 vs. NCBI nr
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. NCBI nr) Total hits: 5
BLAST of Spo06767.1 vs. UniProtKB/TrEMBL
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. UniprotKB/TrEMBL) Total hits: 5
BLAST of Spo06767.1 vs. ExPASy Swiss-Prot
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. ExPASy SwissProt) Total hits: 1
BLAST of Spo06767.1 vs. TAIR (Arabidopsis)
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. TAIR) Total hits: 3
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
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