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.ATACTAGAGAACCCAACTACCCAAGTGCCATCAGGGGGCACTCTAAAACTTCCGCTGCATCGCCATCTGTCCATCTCCTGTTTTCGGATCTCAAAACCCAAATCTGATCTGACCATTGCTTCATTGGAGGGGCAATATCTCCAATGAGTTTGAGTCTGAACAGTGAACACCCATCAAGTATTCCACAATCTACATATCTCCGGAATAAGCCAGTTGCCAATAGTCGACAAGTCCTTTTTGGAATACAAAACTACCAATGCACCCTTTAAGAATACTTTCAGCACCCCAGACAGTCACTGCCGCCAGCATTACTCAGCCCCAAACATCAAGGGCATATCCGGTACTAAATAATTGTTGTCAACCCTTGAGTAATACTCACACACCAAAGTTGTCACTGTACTCCTCCCTTTTTTCTCTCTCCTCTTCCCTCCCTTACCGCCGTTGCCATCTTCGTTCTAACTGTGTTAGTCCGATCAATATGGCGTTGGATTCAGAAGTTCCTCAGGATGATAGAATCTCAAGAATCGCTTCTTCTATTCGTATCATCCCTAACTTCCCTAAACCTGGTATGCTTTTATTTTTAAATTTTGAATTTTATCATTTCGATGTGACATTCAAATTATTCAGGTTACTGGGTTGATTTTTTGTTGTTGTTCAATGATGTGAGTTTCTTTTTCAGTATAATTTATACGAAGTATTAAAATATGATTTTTTTTATGGGGCGATCGATGAACTATGTATAACTTTAATAGAAAATTTCTGGGTTTATTTTCTACTTTTTTTTATTTGATTTTAAGTTTTGATCTGATTTTCTTTTTGTATGTGCGTATAATTTTTTTTCTTTGGGGGTGTGTGTGTCTGTGTGTGTGGAGGGCAGGCATTATGTTTCAGGATATCACTACCATGCTCTTGGATCCAAAGGCTTTCAAGGACACCATTGATTTGTTTGTTGAAAGATACAAGGGGAAAGACATCTCGGTTGTTGCAGGTAATACATTTTCGGTTTAATGGATGTTAATACTTGTATGATGATTGTTGTTCCATACTCTATTATGGGTTGGATTGTTTTCGGGGTATTCATCTCGGATATAGGTACATGTTAAAATGTCAGACATGCCAATTTTATGGAAAGTTTTCATGATTTTTGCAAAAATAAGTGTTTAGTGTGCGCCATTGGCAGGTGTTGAGGCATGGGTATTCAAAATAAAATGAACAATTGAATGTGTTTGGATTGATGAGTTTTGTTAAGTGGCGAAATATGAGAATTATTAGCTTGTAGGTGGTTTTCAGGTTGGATAAATATGGATTTGTATTACTTGACCCCTTTACTAGATAAAATTAGTAGGCAACTTGTTAATTTATTTTGGAAAAAATTATAATAAATAATACAACCTTTGGATGGTTCACTATAAATAATCCACATATCATATATCCTTTTAATAATCCAAACTTTTGGAATACCTTCCAATGTTGGTCCCATCAACTTGAACAACTAGTGAACTTTTTACTTCTATTACTCCAAATCCCACCAACTCATCGGAGAACTACCATTGCGATTTTCACCCTTAGTCCCTCACCGAGTCACCGCCATATTCACCAACATTAACCATCACCCTCCCAGCCTGCTACCTTAACCAAAACTAACCACCACCCTCAACAATAAGCAACAATTACACCATAAATTATAGCATAATCAACAAGTAAATATCAATAAAACAAAGGAGATTTTCAATATCACGAAACAAACTCCATTAGTTTTCCACATACATAATGCTTTGTACAATTATACCCAAGACAACAAAAAAAACTGAAAATTTAAGGGAAATTCTACGTGGTGACCTCCAGGTTTCACAAATTTAAACGGTGAAATAAACCATAGTTCTAAGAAAAAAACCATAGTTTTAAAAATGGCCATCTGATTTTAATTAATTGATGGTTTAACTGTTAATGTGTCACTAACTCTTGATTTATACACCTAATAACTACCCTACCCTCAACTTAGTGTGCTTCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNCCCCCCCCCCCCCCCCCCAAAGTTCCGTGCCTAACACCTCTGTTATATAACCATAGCCACCAAAGTTTCCTTCTTCATCTTTAAAACAATTAAGGAAGCCAAATTCCATCCGATTTTTTTACTTGCACCATAATTGTTTGACACAAACAATAAAAAGGAAGTAAATATCAAGAATGCTCTTGTGATAACAAACAAATTAGCTAGAAAATGATAGATATTAATGGTAAATATAAAATATGTTTAAGGGTAAAATGATTATTTGTTGTGTAAAGTGTAAACACACCAAAAAGCATGTGAATGCATACCATAAAAGGAAATGGTGCAACTAATATGCAACTTCCGATAAAGAAAAATGGTGCAACTAAAAAAAATCTATGTATTCTCGCCAAATTAAAAGAACCCCTTCAAGGACAACCATTGAAGGTCCGAGTCTGCAACTTCCATCCTCCAAAATATACAGGGTTGAGACTCTCTCTAATAGGAAGACATACCACATTAGCAAGAGCAAGACAAGATAAGAGTGTCTAAGTGTCAAACCCGCGTCCGAGTGTCCAGTGTCCGACACTGGAAACACATAAACTTGATGAAAATTGAGGATTCCGAGTATCATCTTTACGGACCTGAAGGATACAAAATTCATCCCAAATCAATAATCCTCTGCACATAAAAATTCACATGCAAATAATGTAGTGCAATTGATGCACATAAAAATGCACATGCAAATAATGTAGTGCAATTGATGATGGATAGATTTATAGAAAATGTCCCGTAAATATGTTGAGATTTTGCTATCATTGTATCACTCAATCTTAGTTTTAAAAGGCGCATAAAGGCGCAAAAGTCCCTTTGAGCCTATGCGAAGGCGTAAGGGGAATGCCCATGCCTTTCTTACACAAGGCGCACAATTTTTTTTTCTTTGGTACTTGTTTTCTGGATAAAAAATCAAAATGTATTACTTGTTGTCACAAAGGGGTAAAGTATAAATTAAAGCCTTTTTAAGGGAAAAAACCAAACAAAAAGGGGACTAAGAAAGGTTCAAGTAACTTTTTAGTTATTGGCTATGCATTTAGGCTCTCAAAAGAAGTGCGCCACACCTTACATAAAATAATTACATTAACATAGAAAAAAGAGGAGTTTACATGACCTGTCGTTGAAAGTGACAAGGAAAAAATGGAAAAATTTGGGTTTTCTCTTCTCTTTCCAACATAGTAAATTCTAACCGTTAGGGACCCATTAAAATCATGTTGTTTTGGCCTTTTTTTAAAAATAAAAATTAGAGCCTTATATTAAGGCGCATACGGCGTTGTGCCTTCGGCCTTTCAGAGGGTGCCTTCTTCGCTAGGCGCTGGGACGTGCGCATTGAGCCTAGGCGCGCGTTTTAAAACTAAGCTCTCTCAATATCAATTAGAAATCACCGTAATTGAGAATGAGTTATGTACCGAAGGAATACAAACTACCAAAGCATGGGTTAGTAGTTCGTCAAAAGTTTTATGTACCGATCAGCGTTAGTCCATTTTAATATTGAAAAACAGTTATGCAAATATGCTTATCATCGTCATTTTGTTTCTACGACCAAGTGAGGTCTTCAAGTGGTCATCAAGCAAAAGTTCTGCCACAAAGCTCAAGGTTGAATATGTGACAAGGCTTTCAAGCAAACAACAAACTTGAACAAAAATCACTGTCAACCAGATATTTTTTCTTAAATCTTGATATCTTGAATATAGTCTGCAAGAAAATAAAGTGAAAATGTATCTAAATATGAGGACGAGTTAAAAGGAAGTTTAGTAATTAGATTACTTAACCCCATAGACTAAGATTCTACATCAGTTTAAAAGCTAATCCATAGTTAAGGCCAATTAATCAATTAAAACCACAGGGCCATTTTTAAAACCATGGTTTTTTTTTTTCCACCGGTTGGAATTTGTGACATGTGGAGGTCATCACCTAGAATTTTCAACATTTAAAGCTTTCATACAAGACCCACAAATCAAAACCCATTAAGTTAATCATAAAACTATGATCATACCCATAATAATAATATAAAGTTTCAAAAATAACCAAAGAAAGAGAAACTTATGTCCGAACAACCAAAATAGTTGATAATTTGAAGCTTTCCAACAAAAGGTACTAGTAAAGAGGTCATAAATACCACCATTGTCAAGAAAAGTGATGTCTGAAAAAATGGCACGAGGAGTAAGGGCAATCATCTTATCTTCTAGCATTGTATATCAGGATATACGTGGAGGAAGCATCATGAATATCGAACAACATAATCAACACATTCACCATCATCTTCTCTGTCCTCCATCTTCATCTCCGATTTTGATGATTTCCATGGATGTTGAGACTATTGTTAATCATGGGCGAAAAAGGTCCTCTATTGCTCTCTATCTACCCACTTTATCACTCATCGTTTTTCATCTTTTCCATGAGCAAAAAAAAATTCGCCACCCCTCTTATCCATGAGCAAAAGAAAAACCCCCCACCCCTTTCTCTCTACCACTACTTCTCTCTCTCTACCACTGCTCTCTCTAGCAACAACAAAAATAATAGAAACTAAAAAATGAATAAGTTTTTGGTAATCTATACTATTATTACATGTCGCCACCATTAAATGGCAAGTGACATGGCATAGCCACATTGACATATAATGTTTTCTTACAAAAAGATGAAGAAATGCAAACATCAATGCTTGAACCCATGACCTCATGTTCATAAGTTTTGACTTTAACCACTAATCCAATAATACAACTTATGATATTTAAGCAATTCAAAACATATAAGTTATGTTTATTAATGACTTGTATTAAAAATTTAATGCCTACCATAATTATACATTTAAATAACTTTCTTATGAAACTAAACTATTCTTAATTTCTTTTTTTCATCTTCATTTTCATTTTCATTTTAATTTAGGTTTATTTATGATTACGTTTTTTTAGCATGCCAGTTCATGTAAATTTACCTAGAGCAATAAAAAAAATAGTATTACACATAACAAAAGACTACTCCATTTCAAACTTAAATTTAGTTTACTAAGATGTTTAACCAAATTTTATATTGAATCACCCTTACATAAATAAAATATAAAAATAAATTATGCACAAATATTTATATCATTTTATATGTAAGTATTTAATATCTAAATATGATTATGTAAGTATTTAATATCAAAATATTGTAATTATTTTTATTTAACCCAAATTTTATCAAGATTAGTTCTCAAATTACATATAGTCACCGGGGCATCGCCCGGGGCAATAACTAGTTATAGTTGCAAATAAGTAAATTAGAAAGAGAAATGAGAATTATTTTTTGTGTTAAATTATCAAAATGAATCTCCACTTGTAGGTCTCGAAATTTTATGAGTATTGGTAATTCATTTTATGAATCGGAAATGTAAAAAATTGGCCGTTAGCAAAATAATCGTTACAAGATGCTCATGTCAGGCCACATAGTCTGCAAGGTTGGCCGAAATTTCCCCATCAAAAAGCAAAGAAATCACAATGCCAATGCCATAGGCATTTTTTTATTTTTCCCCATCCCATGAGAAAAATCTCCCCACTGTTAGTAAACCAACTTTTTTTCCCCAATTGTTTTTCCTCTTATAAAAAATTTCCTCACCATTGACAATGCTCTTAGGGGGAGAAGCGGAGGAAGGTGGTGGAGAAAGGAAGAGGAAGGGGGGGATCTCGAGGTCTGCTGGAGGGTGATGGGGGGAAGGAGGAAAGAGAGGGGATCTGGAGGGCGATGGCTGGAGGAAGGTGGAGAGAGATAGGTCTGCCGGAGGCGGTGGAGGAAGGAGGGGAGAAAGGGTCTACCAGAACGTGGAGGGGCGTTGGAGGAAGGAGAAAGAAGGGAGATAGGGTTTTCATAAAATATATCTAGACCATTGGGAAAGCGACATATGGCATATTTAGCCTCTAATAATGGTTACCGACAAGTCAAGGACCATTTTATGAAAATACCAACCAAAGGTTGAATTATTTAAAAAATATTTGATATGGGGGATAATTTATGGCTAACCGCCCAAAGGTTGGATTGAGTCAATTTATCATTTATTTTTTGTTTTCGCAGCGCCTGTGTTTTGTGATTTAGGTTGGTGAATTTCATAGCCTATAATGGTTTTCATGACTTATAAACAAAGAAGTTACCCAGGATATTAAGAATTATTCTACGTTGTCCATATATTTATTTGTGATTATTGGTGGTTTTGTTTATACTTCTGGTCGACATTTTTCTTATTGATGACTGAGTGATATAACCTGCTACAGGGGTCGAGGCTAGAGGCTTCATTTTTGGTCCTCCCATTGCATTGGCCATTGGAGCTAAATTCGTTCCAATGAGGAAGCCTGGGAAATTACCTGGTTTGTCCCTGAAACTTTATATATATGTTTGTTACTATACATAATTGATTGTGTAAGTAGTATCCTTGGCTACCTTTGCTTTAAAACTGATGAATCTGTTGATTTCTGTTGCTCACTTTATTGAGTCTAGTCACACAATCTAGCAAGCTCATGGATAATTTTTTTTTTAGTGCTTGTCATCCTATAACATCCTTCAACAGGTTAACTACCTATTGCATTATGAAGAGGGGTGTTTTTGTTAGGCCCATTTGACCTACAGGTGCTTTTACACCAGTATCTTACAGAAGACAACTCTTTTATACCAATATCCATCAGGGTGAGATGAGAAAGTGAGGGACTCATCTGCCCTAGCTTATATTACTTGGGGGAGAGGGGAGGGAAGAGAATTGGACTATCGGAGGGAACAATATTCCTTTCCCTTTCGTTCGCTTGAATTGGCACGTGCAAATAATAGACCAAATTTGCAATAGTTTTCTCATACTTTTAGTGTCTCTTTCGATTTACTTTTACTAAAATGGGAGTTGAGTTAAGAGAGAAAAGGTTAGAAAGGAATCCATTGTTTAGGTTCGTAGAGGGAAAGGGAGGTTGGGGAAGAAGTAGCCACTGAGAGGGAAGGGGAAGGAAAGTAAAAGAAAGGAGGGAAGAAGTGCTTTATGTCTCCATATATATACAACATATAAAGGGAAGGAAAACGATACCTGTAGGCACAAAATTGGTTAAGTGTACTACATTCAATTAAATAATTAAATTTGGTTGAAATTATATTTTTAGCCCGTTTTAATTAATTCAACCCACCTAAATAAAATTCTCAAATTAATCAAATACAATCCGGATCATAAATATTTGGGTCAGTCGATAATATTGGCCAAAACAAAGCAAATTAAATGGACCACGTGGACACTCTTAAGTCACGGATGGGTCGAGCCCATGCCTTTCAAGTCCAAGAAAGGATTCTCCATCTCCTATACATACTACTCTTCTACTTCAGTTGTAAGTATCAGAAATTCATTATTCCCACGAGCTCATAAAATTCTCTCTAAAAGTAGTCAATAAACACAGACAAATCGTGTTGGCTACCTAGTCAAACACTTCATCAAGTGAACATCTCCCTAAACTCAAACTTAGGTTGACCACGTCAAGCGGACGTCACCTTGAGCTCAAACCCAACTTGACGTCGTCAAACCACCGTCACCACCATGGTATAAAAACTCGCCCGAGTTTACTCGTTTCGTCCGAGTTAACTCGGATTTTGAGTCTGCCGATACGAAATATGCCGATTTATCGCGCCTTCTTACAAAAGGGTGATATTTTGCCCGATTCGACCGATACGGTCCAAAATCGGCCGAGACAAGCGATATCACTTAGGAGTCTGCCGCATCCTTGAGAATTAGTTGAAAAAAGGAAAAATAAAGCGAAGAAGAAGAAGAAACAAATTCGCGGTCGAACGTGATGAACCAAACAATAGATCTGAGAACCTAAAGATTTTATATTTCTTGAGTAATGCTTGATTTAGTTTTTGGTTTCTATATGAGCCTATGAGGTTGAATTTTGAAGCTTCTTCTTTGTGAATAGAGGCGGCATATTGAAGAAGATGAAGAGCAGAAAAAGGCGTCTTATTTTTGTATTTCTCACATGCGGTATCTCTGTAAATGTTGAGTCTTTTTTATTTGTTTCTTTAATATTTTTTGGTCAAATTTATTTATTTATAAGTGAGAGGCCATGGTGACAGCTGTTACAGTGTTTGAAAAAGGTTACAAAAAGGTTACAGCTGTAGAGGGTTAGTATTACTGTTAAATAGACCTTTCCCCTTTTATTAATCTTTTAATATTTTTATTTTTATTTTATATATTATATTTCTGTACAACTAGTTTTAGTGGGTATGTATTTCCTCATAAAAAATAAAAGTACGATATATTTCTTTATTTATTTATTTTCTTTATTCATTTTTTCCAAAATAAAAATTCGTGAACGATCCGATCTTTACAACGACAACCGTTCCATCACCGCGACGATACCGCAACCGCGACCGATACCGCATTTTCGATCTATGGTCACCACCCTACTAGCAGGATCACGAAACTTAGTTTATTCCTTGTAAACTATCAAATACAGATATTGTACCCAAATATTCAAATATCAATAAAATTGCTTTGTTATAAATTTGTGTATACAATACCTTCCACTCTTCCAGCAGTTCTGTTCCATACCATTCCCCCATGTGATATTCCTACAAGGCTACAAAGGAGAATAAATCCCTCAATTCCTTTCTCTCTCTTACTCTCCAATTCCCTTATCCAAGTACACGGTTAAAGTTTTGAAAAGTGGGATGAGAAAAACGAGGAGTTGGGAATATGAAAGAAAAATATTTTGCATGACTAAAGTTGATGGTAAACTCTAAAAGTTAGCTAAACAATGGGAATTCTCAAATACATTGAACTTACTTAGAGGTGATATTGTGAAGATTATGGTACTTCCTCCGTTCTAATATTATTGGACCATTTACCTTTTAAGGAAGTTTCACAAATATTGCACCATTTCCATTATACTCCCTCCGTTCCCTTATGTCCTTCCCAGTTGGATTAAGAAAAATGGAATCTTGGTATGATTGGGTCTAAGAATAATGATTAAAGTTTGAGGATTCTACTTTTAGAATAAATTAAAGAGAGAGAAATGATTAAAGAAAGAAAGAAAGGGGAAATATTTTATTAGAAAAATCATAAAATAAGGAGTGTGAATGAGTTAAATAAGGTGGGTGGGGAAATCAATGAGAATAATTGGGTAGGTGAATGTAATAAAGGTAGGATATGGTGTGAAATTAAATTGTAGAATGAGGGTATTTTGGGGAAATTTTTTTGTCAAAAAAGGAAAAGATTCACAATGGGAAGAACAAAAAGGAATGTGAATTCAGGAAATGGGAAGAACTTTTAGGAACAGAGGGAGTAGGAAATAAAATAGTTGTTTTCACACCACAAATATCCAATATACCCTTACATCTTAAGCCTTCTTGATTTATTTCATGCATGCAAGCACATGGACAAGTTTGTATTTTTGTCTCTCTCTTCTTTTACCCACTACCAAAATTCTTTGACATAACTTACATAGTGCAATAGTATTGGAACGGAGGAATATTTATTTATTGGGCAAAATGAGAGAGTTTAACTTCATTTTACTCTTAGTGTTTTACATTGGTGACTTTTTTTAGTTGATTTCATCAATCTTGCTATGGTGTTACGCTGTGATCTTTGTGTGCCACTAGCAAGTGTGCATTTTATGTCAAGACTTGGAACTATATTCTTAGGTTTTGGTATAATATTTGATAAAATGTGCAAAACCAAAAAGAAAATTTTACAAATTAGGTTGTGGTTTCATGGCAAATCCGGGTAACATTTTATGCTCACTTGATCTCCTTTTTTTTATTTTTTTAATATACCATGTGGTTTGAGTACTTATTGTTAATGTGGCAATGGCTTTATATTGTTATACCAGCGTGTAAATTTCGCCAATATTTATTCTTGTGGCTTCCCTGGAGCCAATGACACCTTCTGCCTTACTCAATGAACGTTGCAATATGTTGAGTTACGTTTATCTTAACATTGGAATCACACATCTGTACACATGCCTAACAACACGAAAGCAACCACTCGCTAGTGTTTATGAGATTGTCACCTGGCAGCGACTGTCACCCGCCAGGTTGCACTCCCATGAGCTATCACAAGATCCTCATTATGGACGTTATTGCCACTCAATTTGTTCTCCTCGTATCTTGTTTTCCTGGCGTTTAGAGAGTTTGTGGGGTAGAAAGTTAGAAACAGAATCAAGTGTCAATGAGGGCACTCAAGTGTTGAAATGTTTCCATTCTTCCTCTATTTTTTTTTCTATGGTACAAATGAATCTTCCTCTTCCCTATATATTTATTTAGGGTTCTTTGACCAGGCTAACTAGCATACTGCATGACATTGTTGCAAGCCGTACAAATAGGCATGTCTACCAGTCATATTGTCTAATTGCCACTCTCCATAGTTCAGAAATACACTTAAACTAATGTTCTGGAAACATCTCACCAAACCACTATGGATCTCGTGCTGACAGATTGGATTCTCTGTAGGTGACTACCTTGTGTGCACTAAAATGGAGCCCCATCCACCAAGTAATGCTCCTAAAATCCCAGTGTCTTTGATGTCTGCTCCAATTCAGTTCAGAATTATCAAATAAGCCTTTTAAGGGGAAGTCCCTCTTGAAGGGACACACAAACATTGGGTAACTCTATGATGTTACCATAATGCTAACTGGTGGGTTAGGACAACCTGTTTCAGTTTACTGGTGGCTTAGTAATTGCGTGTAACCTGTTTCAGTTTACTGGTGGCTTAGTTATTGATCAATTTTTGTGACTTTTAGGACTTTAAGTTGGGCAAGTATATTGCTTAATATGTGTATGTGATGGACCATACACTTTCCTACTGGTTTTATTTGAACTGTAATCGGTCAGTTCTTGTGTATTTGTATGTTCCAGTTGTCTTTTGCTTTCAAGAGTATTTTCTAGCAAAGTTTCAGGAAAGAAGAAATGAACTTGACAACCTAGAATCATGTTAACAGTGTAGAATAGCTTTTCATTTAAATCATACATGTTTTAATAACTGTTGAATGCTATATAACAGGGGCTGTCATTTCGGAGGAGTACTCATTGGAATACGGAACAGACAAAATGGAGATGCATGTTGGTGCGGTAGAAGCAGGAGAGCGAGCTATAATCATTGATGATCTCATAGCTACTGGAGGGACCTTGTCTGCTGCACTTAAGCTGCTTGGTAATGCTTTTATTTAAACAACTTCTGTGATATAACTTACTGTTACTTTGCTCCCTTTACTGCATTTTGCTGTTGCTGAAAAGCCGGTCAGATTTCAGTATAAACAACTCCGCACATTGTTAAAGAGTCGATATCGATCATTTTCTAACATTCTGCTTGGACATAGATGATTAGATCCACTTGCCTCCTGTGCATGCGTCTAATTTTATGTGATGGTTGAATTGCAGAGCGTGTAGGAGTGCAGGTTGTCGAGTCTGCCTGTCTTATAGAGCTTCCAGAACTGAAGGTATGGCACTGCTGTCAATAGCTATTGACGTTCTTGCAATTATGTTTTCCAAAATTTTAAGCATTTAACCACACATTTCAAGTTTTTTTTGCTCTGTTAAAGGGAAAGGGTTGGAGCATCGAGTTCTTTGTGTGTGTGCATCCTTCCATAAATTGAATTGGCTGTGCTCCAAAAAATTGATTTACATTTTAAACTGATAAATTTTGCTTTGTGACTCGCCCCCCTTTTAATGCTCTACATGACGACATGAATTTGTCATTTCCTTCTTTCACCAAAGACATTTCAAAAATATGGCAGTAAGATATTGTTTAGTGGCATGGGTACATGTTTTAATATTTAACCCGTTATAATTTGGGATGTAATAAGATAAATTGGTATGGTTGATCATGTCTGAGGTAAACAGGATTCCCATGCCTATTATCAAAGCTCAGTTGTTTTCCGGTAGGTCTAATTTTCTTTAGAAACATTCTATAACCAGCTATTTGCCTTTGTGCAGGGTCGAGAACGGTTAGGTGACAACCCTCTATTTGTTCTTATTAAATCAGCTTGATCGAAGCCTTCTCTGTAATTGAGAAGTGACTTCTCAAGATCACAAGTTTTCCACATCTCCTTTACATGAAACTCTTTCAAGCTCGCCATGAAAGGTTATACTAATTAAGGAAGATGTTTGATTTCTGTGTATCTTTTGATTTGTATTCCATTGTTGCTTAATAAGACTCGGGTGGTTTGCTCTGGGATGATGCATTGTTATAAGCCTGCAGAATGTAGAGGATGACCACATTTTCTTTATCGTAGGGAATACAATGATGTTGAGATTGTTGATTTGATTGAAAATTTCGAATCAGGTGAATTCCAGATTAAGAACTAATTTTGTTGCAAACTTGCTTTGTGAGATGTATCGCAATCTTGTTTTTGTGAGATGTTCGTCATACGAATTCAACACCATTGTACTTTTCATCTTCTTAGAAAGTGTATTTTTTTTATTTGGTAAAATAGAGATTTATTTCGTACCAGGTTTTTTTAAGTCTTGTCTTGGGGACTGTGAAAAGTTAAATAGGGCAATATTTTAGGGGCACAGGGAGTAATAATGTACAAAATACAGTGAACAGCAACACCAAACCAAACAAACAAGGTCAATGGACCGAAACAAATCTTACTGCTAATAGGCACCAAAAGAAAACAAAAA ATACTAGAGAACCCAACTACCCAAGTGCCATCAGGGGGCACTCTAAAACTTCCGCTGCATCGCCATCTGTCCATCTCCTGTTTTCGGATCTCAAAACCCAAATCTGATCTGACCATTGCTTCATTGGAGGGGCAATATCTCCAATGAGTTTGAGTCTGAACAGTGAACACCCATCAAGTATTCCACAATCTACATATCTCCGGAATAAGCCAGTTGCCAATAGTCGACAAGTCCTTTTTGGAATACAAAACTACCAATGCACCCTTTAAGAATACTTTCAGCACCCCAGACAGTCACTGCCGCCAGCATTACTCAGCCCCAAACATCAAGGGCATATCCGGTACTAAATAATTGTTGTCAACCCTTGAGTAATACTCACACACCAAAGTTGTCACTGTACTCCTCCCTTTTTTCTCTCTCCTCTTCCCTCCCTTACCGCCGTTGCCATCTTCGTTCTAACTGTGTTAGTCCGATCAATATGGCGTTGGATTCAGAAGTTCCTCAGGATGATAGAATCTCAAGAATCGCTTCTTCTATTCGTATCATCCCTAACTTCCCTAAACCTGGCATTATGTTTCAGGATATCACTACCATGCTCTTGGATCCAAAGGCTTTCAAGGACACCATTGATTTGTTTGTTGAAAGATACAAGGGGAAAGACATCTCGGTTGTTGCAGGGGTCGAGGCTAGAGGCTTCATTTTTGGTCCTCCCATTGCATTGGCCATTGGAGCTAAATTCGTTCCAATGAGGAAGCCTGGGAAATTACCTGGGGCTGTCATTTCGGAGGAGTACTCATTGGAATACGGAACAGACAAAATGGAGATGCATGTTGGTGCGGTAGAAGCAGGAGAGCGAGCTATAATCATTGATGATCTCATAGCTACTGGAGGGACCTTGTCTGCTGCACTTAAGCTGCTTGAGCGTGTAGGAGTGCAGGTTGTCGAGTCTGCCTGTCTTATAGAGCTTCCAGAACTGAAGGGTCGAGAACGGTTAGGTGACAACCCTCTATTTGTTCTTATTAAATCAGCTTGATCGAAGCCTTCTCTGTAATTGAGAAGTGACTTCTCAAGATCACAAGTTTTCCACATCTCCTTTACATGAAACTCTTTCAAGCTCGCCATGAAAGGTTATACTAATTAAGGAAGATGTTTGATTTCTGTGTATCTTTTGATTTGTATTCCATTGTTGCTTAATAAGACTCGGGTGGTTTGCTCTGGGATGATGCATTGTTATAAGCCTGCAGAATGTAGAGGATGACCACATTTTCTTTATCGTAGGGAATACAATGATGTTGAGATTGTTGATTTGATTGAAAATTTCGAATCAGGTGAATTCCAGATTAAGAACTAATTTTGTTGCAAACTTGCTTTGTGAGATGTATCGCAATCTTGTTTTTGTGAGATGTTCGTCATACGAATTCAACACCATTGTACTTTTCATCTTCTTAGAAAGTGTATTTTTTTTATTTGGTAAAATAGAGATTTATTTCGTACCAGGTTTTTTTAAGTCTTGTCTTGGGGACTGTGAAAAGTTAAATAGGGCAATATTTTAGGGGCACAGGGAGTAATAATGTACAAAATACAGTGAACAGCAACACCAAACCAAACAAACAAGGTCAATGGACCGAAACAAATCTTACTGCTAATAGGCACCAAAAGAAAACAAAAA ATGCACCCTTTAAGAATACTTTCAGCACCCCAGACAGTCACTGCCGCCAGCATTACTCAGCCCCAAACATCAAGGGCATATCCGGTACTAAATAATTGTTGTCAACCCTTGAGTAATACTCACACACCAAAGTTGTCACTGTACTCCTCCCTTTTTTCTCTCTCCTCTTCCCTCCCTTACCGCCGTTGCCATCTTCGTTCTAACTGTGTTAGTCCGATCAATATGGCGTTGGATTCAGAAGTTCCTCAGGATGATAGAATCTCAAGAATCGCTTCTTCTATTCGTATCATCCCTAACTTCCCTAAACCTGGCATTATGTTTCAGGATATCACTACCATGCTCTTGGATCCAAAGGCTTTCAAGGACACCATTGATTTGTTTGTTGAAAGATACAAGGGGAAAGACATCTCGGTTGTTGCAGGGGTCGAGGCTAGAGGCTTCATTTTTGGTCCTCCCATTGCATTGGCCATTGGAGCTAAATTCGTTCCAATGAGGAAGCCTGGGAAATTACCTGGGGCTGTCATTTCGGAGGAGTACTCATTGGAATACGGAACAGACAAAATGGAGATGCATGTTGGTGCGGTAGAAGCAGGAGAGCGAGCTATAATCATTGATGATCTCATAGCTACTGGAGGGACCTTGTCTGCTGCACTTAAGCTGCTTGAGCGTGTAGGAGTGCAGGTTGTCGAGTCTGCCTGTCTTATAGAGCTTCCAGAACTGAAGGGTCGAGAACGGTTAGGTGACAACCCTCTATTTGTTCTTATTAAATCAGCTTGA MHPLRILSAPQTVTAASITQPQTSRAYPVLNNCCQPLSNTHTPKLSLYSSLFSLSSSLPYRRCHLRSNCVSPINMALDSEVPQDDRISRIASSIRIIPNFPKPGIMFQDITTMLLDPKAFKDTIDLFVERYKGKDISVVAGVEARGFIFGPPIALAIGAKFVPMRKPGKLPGAVISEEYSLEYGTDKMEMHVGAVEAGERAIIIDDLIATGGTLSAALKLLERVGVQVVESACLIELPELKGRERLGDNPLFVLIKSA Relationships
The following mRNA feature(s) are a part of this gene:
Homology
BLAST of Spo12122.1 vs. NCBI nr
Match: gi|731314744|ref|XP_010688209.1| (PREDICTED: adenine phosphoribosyltransferase 1-like [Beta vulgaris subsp. vulgaris]) HSP 1 Score: 382.5 bits (981), Expect = 5.900e-103 Identity = 204/260 (78.46%), Postives = 220/260 (84.62%), Query Frame = 1
BLAST of Spo12122.1 vs. NCBI nr
Match: gi|870868277|gb|KMT19129.1| (hypothetical protein BVRB_1g015260 [Beta vulgaris subsp. vulgaris]) HSP 1 Score: 342.0 bits (876), Expect = 8.800e-91 Identity = 173/184 (94.02%), Postives = 179/184 (97.28%), Query Frame = 1
BLAST of Spo12122.1 vs. NCBI nr
Match: gi|703079745|ref|XP_010091232.1| (Adenine phosphoribosyltransferase 1 [Morus notabilis]) HSP 1 Score: 312.4 bits (799), Expect = 7.500e-82 Identity = 168/236 (71.19%), Postives = 192/236 (81.36%), Query Frame = 1
BLAST of Spo12122.1 vs. NCBI nr
Match: gi|1009135608|ref|XP_015885077.1| (PREDICTED: adenine phosphoribosyltransferase 1-like [Ziziphus jujuba]) HSP 1 Score: 310.1 bits (793), Expect = 3.700e-81 Identity = 160/207 (77.29%), Postives = 181/207 (87.44%), Query Frame = 1
BLAST of Spo12122.1 vs. NCBI nr
Match: gi|698480303|ref|XP_009787204.1| (PREDICTED: adenine phosphoribosyltransferase 1-like [Nicotiana sylvestris]) HSP 1 Score: 308.1 bits (788), Expect = 1.400e-80 Identity = 152/188 (80.85%), Postives = 174/188 (92.55%), Query Frame = 1
BLAST of Spo12122.1 vs. UniProtKB/TrEMBL
Match: A0A0J8D490_BETVU (Uncharacterized protein OS=Beta vulgaris subsp. vulgaris GN=BVRB_1g015260 PE=3 SV=1) HSP 1 Score: 342.0 bits (876), Expect = 6.100e-91 Identity = 173/184 (94.02%), Postives = 179/184 (97.28%), Query Frame = 1
BLAST of Spo12122.1 vs. UniProtKB/TrEMBL
Match: W9QXV7_9ROSA (Adenine phosphoribosyltransferase 1 OS=Morus notabilis GN=L484_005256 PE=3 SV=1) HSP 1 Score: 312.4 bits (799), Expect = 5.200e-82 Identity = 168/236 (71.19%), Postives = 192/236 (81.36%), Query Frame = 1
BLAST of Spo12122.1 vs. UniProtKB/TrEMBL
Match: A0A0V0HWN4_SOLCH (Putative adenine phosphoribosyltransferase 1, chloroplastic-like (Fragment) OS=Solanum chacoense PE=3 SV=1) HSP 1 Score: 304.3 bits (778), Expect = 1.400e-79 Identity = 150/186 (80.65%), Postives = 172/186 (92.47%), Query Frame = 1
BLAST of Spo12122.1 vs. UniProtKB/TrEMBL
Match: A0A061FGD2_THECC (Adenine phosphoribosyl transferase 1 isoform 1 OS=Theobroma cacao GN=TCM_034718 PE=3 SV=1) HSP 1 Score: 304.3 bits (778), Expect = 1.400e-79 Identity = 163/239 (68.20%), Postives = 188/239 (78.66%), Query Frame = 1
BLAST of Spo12122.1 vs. UniProtKB/TrEMBL
Match: K4BUN4_SOLLC (Uncharacterized protein OS=Solanum lycopersicum PE=3 SV=1) HSP 1 Score: 304.3 bits (778), Expect = 1.400e-79 Identity = 153/189 (80.95%), Postives = 173/189 (91.53%), Query Frame = 1
BLAST of Spo12122.1 vs. ExPASy Swiss-Prot
Match: APT1_ARATH (Adenine phosphoribosyltransferase 1, chloroplastic OS=Arabidopsis thaliana GN=APT1 PE=1 SV=2) HSP 1 Score: 294.3 bits (752), Expect = 1.300e-78 Identity = 160/235 (68.09%), Postives = 189/235 (80.43%), Query Frame = 1
BLAST of Spo12122.1 vs. ExPASy Swiss-Prot
Match: APT1_WHEAT (Adenine phosphoribosyltransferase 1 OS=Triticum aestivum GN=APT1 PE=2 SV=1) HSP 1 Score: 283.9 bits (725), Expect = 1.800e-75 Identity = 138/174 (79.31%), Postives = 159/174 (91.38%), Query Frame = 1
BLAST of Spo12122.1 vs. ExPASy Swiss-Prot
Match: APT3_ARATH (Adenine phosphoribosyltransferase 3 OS=Arabidopsis thaliana GN=APT3 PE=1 SV=1) HSP 1 Score: 267.3 bits (682), Expect = 1.700e-70 Identity = 128/174 (73.56%), Postives = 153/174 (87.93%), Query Frame = 1
BLAST of Spo12122.1 vs. ExPASy Swiss-Prot
Match: APT4_ARATH (Adenine phosphoribosyltransferase 4 OS=Arabidopsis thaliana GN=APT4 PE=1 SV=1) HSP 1 Score: 261.9 bits (668), Expect = 7.200e-69 Identity = 125/174 (71.84%), Postives = 153/174 (87.93%), Query Frame = 1
BLAST of Spo12122.1 vs. ExPASy Swiss-Prot
Match: APT5_ARATH (Adenine phosphoribosyltransferase 5 OS=Arabidopsis thaliana GN=APT5 PE=1 SV=1) HSP 1 Score: 251.5 bits (641), Expect = 9.800e-66 Identity = 123/181 (67.96%), Postives = 150/181 (82.87%), Query Frame = 1
BLAST of Spo12122.1 vs. TAIR (Arabidopsis)
Match: AT1G27450.3 (adenine phosphoribosyl transferase 1) HSP 1 Score: 278.1 bits (710), Expect = 5.500e-75 Identity = 156/242 (64.46%), Postives = 178/242 (73.55%), Query Frame = 1
BLAST of Spo12122.1 vs. TAIR (Arabidopsis)
Match: AT4G22570.1 (adenine phosphoribosyl transferase 3) HSP 1 Score: 267.3 bits (682), Expect = 9.700e-72 Identity = 128/174 (73.56%), Postives = 153/174 (87.93%), Query Frame = 1
BLAST of Spo12122.1 vs. TAIR (Arabidopsis)
Match: AT4G12440.2 (adenine phosphoribosyl transferase 4) HSP 1 Score: 261.9 bits (668), Expect = 4.100e-70 Identity = 125/174 (71.84%), Postives = 153/174 (87.93%), Query Frame = 1
BLAST of Spo12122.1 vs. TAIR (Arabidopsis)
Match: AT5G11160.1 (adenine phosphoribosyltransferase 5) HSP 1 Score: 251.5 bits (641), Expect = 5.500e-67 Identity = 123/181 (67.96%), Postives = 150/181 (82.87%), Query Frame = 1
BLAST of Spo12122.1 vs. TAIR (Arabidopsis)
Match: AT1G80050.1 (adenine phosphoribosyl transferase 2) HSP 1 Score: 243.8 bits (621), Expect = 1.200e-64 Identity = 119/181 (65.75%), Postives = 151/181 (83.43%), Query Frame = 1
The following BLAST results are available for this feature:
BLAST of Spo12122.1 vs. NCBI nr
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. NCBI nr) Total hits: 5
BLAST of Spo12122.1 vs. UniProtKB/TrEMBL
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. UniprotKB/TrEMBL) Total hits: 5
BLAST of Spo12122.1 vs. ExPASy Swiss-Prot
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. ExPASy SwissProt) Total hits: 5
BLAST of Spo12122.1 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
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