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.ACGGTGTCGTGTTCTTGTTTTCCTCCTGAAACGGCTCGCGCGCTCACCACAATCACCAACGTAAACCAGAGAGAGAAAGAACGCACAAAAAAGAGAAGAGTTGCAAAAATGGGGTTACAGATTGTGGAGCCAAACACTTGCATAAGAGGGTGCTGTCATAGCAACACCATCCCTCTTCATCTCCCCCCTTCTTCATTTTCTCTCTCCTCCCCTATTGCTCGAGGTATGTCTTCACCTGTAATTTTGGTTTTTCTGGGTTTTTTTGTTTGTTTTGTTTGTTGAATTTCTGATTATGGGTAATTCTTCCATAACGCAGGGAGTGAGAGTGTTGTGTATGAAGGCCGACTAGATGGCCGGAGAGTCGCAATTAAGAAGCCCATTTTGTCAACTTCCGATGCTATTGATAAGTTCCACAAGCAATTGCAGTTGTTATGGTTTGTCTCTTATGTTGCCATTTATTTGATTGCTTATTTGATTGATATTACTCCGTACATGGTGCGCCCCACTTTAATCGGCAACACATCTATAAATTATTGTGTGGTGTTAAGATACGATGTAAGGGTAATTATTGTAGGTCTAATGTGGCCTATTAAAGTGCTATTGGATAGAGAGTAACATTTTTTGTTCTTGGGTGTTGGAATTTGATGAAGACCTTTCTATGTTTGCATTATAACTACGTTATGAGTTTGAATCAAAAATTCCGAAAGAAAGGAAATATTTTTTACAGGAAATTATAAAGGAGAATAGGATGATCAGTTGTGGAGTAGAAGCAGGTTGTATGCATTATAAGTATGACATGAGTTTGAATCAAAAATTCCGAAAGAAAGGAATTTTTTTGACAGGAAATTGTAAAGGAGAATAGGATGATCAGTTGTGGAGTAGGAGCAGGTTGTTTGCCTTTTGTGTTTATTTAAGAATGAAGCACTACAATTACTATTTTCACTCATTGTGTTTTTTTACTATTGTTGTATGTATGGGTTGTATGAAGCAAACTGGATCATCCGGGACTCGGAAAGTTAATAGCAGCTCACGCGAAGCCACCCAATTACTTGTTCTTTTTCGAGTTCTACGAGCTGGGTAGTCTTGCTCATAAACTACATGTGGAGGAGTGGATCCCAAGTATTGATCGGGCTCTTGCTATCGCTCTTGATTTAGGTACTACTTTTTGTGTTTCCATGTAATTTGGCATTAAGCATCTCTGTTGTCATCAGAAAGTACTAATTGCTTTAAACTTGTGCTGAGAACTTGACTATTCTGTCATTATGTTCATTAGTGATTAGTGCTCAATGGAATGTTAGTATTCCTTGATGTGAGAGGATAGTCCAAGAGGTGAAATGTACTATAAAGCAGAGTTATACATGTACATACAGAATCAGTTAGCCAAGCTTGGTTTAGTACTTTGTAATAACCTTTTTTGTTGAGTTTTTTGGTTGTTTCAGGCTGCTTGTTGCCTGATGATGTACAACCCCTTTGGTGATAGGGGAGTCCTTCCTAGAGGGTTAACATTGTAAATTGTTTCTTGGATGAAATATATTATTTTTACTTACCCCAGAAAGAAAAAAGTTTATTTCATTGCTTGAAAGTGGATGGACTGGTTGACTAGTTCATTATCCTACATAAAACTATAAAAGTGCTTGATTGTGATTTTTGATAAATGATCTGTTTGAAATGGTGATGTTTTATCTAGGAAGAGATTTTGCCTAAATCACTTGTACCATAATTTTTAGTAAGGGAATAGGTAATATAGCTGAGTATGGCTTCAAATTAATTTTTTTTGTATTGTGTTACTAGAAGTCAAGGTTGTAGGATGCCCTGTTAAATTATAAGCTTCAGATCATTTCCATGAAGGAAATGTTGCAATCATTACCTAAAACTGTTTTAGGCAATTCCAGGCAACTGTTTTACCGCACCGCAATTCGACCGGCTTTGTTATACGGCACAGAATGTTGGGCAGTGAAACATTGTCACGTGCACAAGATGAATGTGGCGGAGATGCGCATGTTACGTTGGATGTGTGGGCATACAAGAAAGGATCGTTTGAGGAATGAGATTATTAGGAAGAAAGTAGGGGTTACACCGATTGAGTTTAAGATGATGGAAAATCGTTTAAGATGGTTTGGACATGTGAGCAGAAGACCAAGTGATGCCCCGGTTAGGAGGATAGAAGGGTGGCAAAGTGATAGAATTGCAAGGGGTAGGGGAAGACCTAAGAAAACTTGGAGGAAGGTGATTGAACACGATATGAGCTTTCTTGGGATTGAGGAAAATATGGCGTTGGATAGGACAGAGTGGAGGGAGAGAATATACATTGATGACTTCANNNNNNAATTTACATGCTATTTTGAAATATACTTGTTATACTTATTCATTTATTTTAAACTTTACTTATTTTTATTATCTCTTACAATATTTCTTCTATNCTTATTATACTTATTCATTTATTTTAAACTTTACTTATTTTTATTATCTCTTACAATATTTCTTCTATAATATATATACATTTTTCTCTTATCTTACTTTCATTAATTCCACTTTCTCTTCCTTGTTTTTCTTATTACTTCTTGCTCCTTTTTGGTTTGATTGGTGACAATGACGATCTCCTACGACGATTCATGTTAGCCGACCCCAAATCATTTTGGGACTAAGACTTTGTTGTTGTTGTTGTTGAATGATGGGTATTCTGTTGAGGCTTTGAGAACAGAAGTGATTGATCATTCAGTCGTTAGTAAGATTCAAACTTCTACCTATATAATGACAGCATTCTTAGGATTGTAATTCATGTTTTCTTTTATCCATCTCCTTCGGTTAACACGGTGAAGTTGTTACCTTACCCTTCTGATGGTAATTGGTAATAGTCACAAGATTTTTATTCTTTAAATTCATAGTAACATGTTTAGGTTCAGACTTCAGAGCATGCATGCTCTACAGTTGGATATTCATGAATCCCTGTTGCTCTTGTGCAAACTTTCCAAGGCTCAGCTCACAGGATTAGACTTGAGATAGATAAACAGAACTAGTATGGGAGCTACAGCTGCCCCTCATTGGGATGGATTACGAATTCAAATTTGGGGTTATCCACTTAGAACTATGGTCAAGTGGCTGATGAATCTTCTTGACGGACTTGATGTCATAGAAGATGAAAACATAAACTCCCACTCACTGCTGCATTGGTGAAATTATAGGGCTTTGTTTGAGTGTTTATGCTAGGGACATGCAAAGAAATGATAGCCAGGGCTGTATTTTTCAGAGAATTGGGTGGTTTGTTTCATAAATGCATGACAACTTAACAGGGGGGGGGGGGTACCATAAAGGGGAAATTAGGAATGGGAATCATCTTGAAGTATTTATAAAGAAGTATTGCAAGATTTGCATCCTTGAAAACAGTAAATTTTATTATAAAGACATGGATGATTGAGATTTAAGAGGTAAGGGTTAGTTACTCACTATATACTGGTCTAAGCGTATCCAATGATTGAATGTTACTTCAATGGTCATGTATGTTTATTGTTCCTTTTTTTGTGTGTGATCAATGTCGGGAGTAAGCCTGGTTTATTTGTTTGCGGGCATATTATTCTACAACTCATAGACAATTACTACCTCCGTTTCAAAATGATCTTTACGCTTTCCGTTTTAGTCCGTTTCATAATGTTCTTTACATTGTGCTTTATTCTATTTTTGGACATGAAAATTTACTATCTTACCCCTCTTCCCCCACAACATTTATCATTTTCCACTCACTTTCTCTTATTTTATCATTTTTCCTTACATCCACCCACCTTTTTAGTTATGTCAATCATGTTAGTTCACGAGCTATTCCATAACTCAGAGTATTTTAATTGTCCTGTATGCTGTCTACATGGCAAAATCATGTCATCTTGTATGCTGTTTTGTAACTGTGCTTTTATGCTGCATCTGCTCAGCTAGTGCTATTCTGCTATTTTTTTTATTGAAGTGTTAAAGGACCTGATTTTAATTCTGAAAATAGATATTTCTTATGATACTCAGTCTCTCTCTCTCTCTCTCTCTCGCTATACACTAATAATGCTTCTAAAAAGGCTTCCCCCCTAAANTAGATATTTCTTATGATACTCAGTCTCTCTCTCTCTCTCTCTCTCTCTCGCTATACACTAATAATGCTTCTAAAAAGGCTTCCCCCCTANAAATAGATATTTCTTATGATACTCAGTCTCTCTCTCTCTCTCTCTCTCTCGCTATACACTAATAATGCTTCTAAAAAGGCTTCCCCCCTAAANTCTCTCTCTCTCTCTCTCTCTCGCTATACACTAATAATGCTTCTAAAAAGGCTTCCCCCCTAAACAGTACAAGAGGGTTAATCTTGGGATACAGAAATGATGTTTCTAATTGGCCTTTGATCTAATATGCACCTCACAAAAGACAACTTCATGATGCAATTCAATCTCGTCCGTTGTTATAATAAGTAAAAGAAAAATGAATCTTTACCTTTCCTAGCGTGTGTACACGCACATTTTGATTTCATGAATACTCCACTTTGAATGGTTATTTTCACTGTACAGCGGAGGCTCTGCTGTATCTACACAACCTTGGGATTGTACACAGGGATGTCAAACCTGCAAATATTCTTGTAATCATCAACCATTTCAAAATTGTTCCACTTAATCGGTATCATTTTTAATTAACATGAACCGAGTTATTTATTCCCCCAACTTAATAGTTATCTGACTAATTTTTTACCCATACTGTTGTATTGTGGTGTGTAAACGAAGATGGGAGAAAATCTTTCTCCACACCTAGCAGATTTTGGCCTGGCAGAGTATGGCAAAGATCTTAAAAAATCTTCTTTCCTGAACTGGAAATCATCTGGAAAGCCGACTGGGGGATTTCATAAGAAAAATATGGTTGGGACTCTTATTTATATGGCTCCTGAAATTCTGAGGACGGAGATACACACTGGAAAATCAGATGTCTACAGTTTTGCAGTATCAGTCAAGTGAGTATTGGTATTTAGTTGCATGTTGTTGTTCATATTGGCTTGCTACAATTTCTCTTCTATTCTTAAACTAAAAACAGTTTGAGTTGAAGTGTTACTCAATTGCTTGCTTGCGTGGATGGCCTATATAGTTACAAGTTTCTATTTTGTTAGAAGTTTGAACCAATAGTCTATCACTCTATTGATACTTGAATAGGTCGAATCGAACTCCGTATTCAGTACAATTCATTTCCTTCCCCTTTGTGTTGTTAACCTACATTATTTGCAGTGAGCTTCTCACAGGGGTTGTTCCATACACTGATCTTCGTGCAGAAGCTGAGGTTAGCCTTTATTACTTAGTCCTTTGTATGTTATATGGACTCATTGTTTTGTACTTTTGTACAAGTCTTTGTGGTGCTAAATACTTCGACTTGGGATATGAACTTGGATATTTTATGCAAGGGAAGAAAGCAAACAATTTTTTTGGGCAAATGGCGGTCTTGGAAATTTACTTATATTGTATAGTTCCCTGAGACTGTTATGTAGACTATTATATACCTTTACAAATGCATCATTTTTGTCTTCTATTTTCCTTAATAATATTGTCTACCATGCTAGTATGTTTATTAATGTGTCCAAAGTCGCCACGGCTTCTTATCATGCATGCTGACTGATATCTCTTACCAGAAGGCATTTGTGTGTCAACTGGCAAGTACATTAGGGCTCATGACTAACTGGATAAGTATTATGTGTTTTGCACTAGATAACATTCTTCTTTTTCTACAGCTTATGTAAACTAATAACTCTAGTTTCCTATTTCCGATTCGTCCTTTGAATACTATATTTTCCCTTAATTGCACATGGAAGGTTTTGTAGTAATCCTTCAAAAGTCAACTATTTTGGAACTTAAGCAGTGCTTCTATCAAGATGAGGGTTTCATATAGTTCAATTCATGGTATCTGTAACTGGGGTATGAGCTTTAAGACTTAAGAGCATGCAATTGATGCAAGTGGTCTGGGCGAGGTTCAGTTTACTACGATCTTATTGTTCGTTCCTTTGGTTGCCATGTTAGAGATAGAAAAACTAGATAAACATGGTATACTGTGCTACTGGTGGAAATCTTGATAGTTTTGCTGACTACTTATATGAATAACTCCCTAATTTCAGGCATGCATCTATGGTATGATTGATTCTTTGTGAATAGGTGATAAATAGGTGCCTGATTGTTGCAAAATGCCTGCGATTCTTGTAGGCCCATACTGTATTGGAAATGAGTTATACAGAGCAGAAACTCATTGCGGCAGTGGTGTCTGATAGATTGCGCCCTGCTCTGGTTGGTACTGAATCAGGTGTTCCTTTGAGTTTATTGTCATTGATTAAGCGGTGTTGGGATGCAGATCCCGACACTAGGCCTTCTTTCACAGACATAGTTTCTGTGCTTAAGTCAATTTGTGAGGAGGTAAAAAATATGGATGAAAAGACAAATATATCCGTTGAACGTACTGCTTCTTCTCAGCAATTCACGGAGCAGAGCTCCAATTCTCAACTTTATGGAGAGAGTATTAACTGGTCTAATCAGGGAGCAGAAATCTCCAATACGATTTATCTTGGTGTCAGTTCTAGAACTCGAACTTCATTTGATTTTCCAAATGGTATATCTTCTTACAACCCAGTGCTGTGTTGGGGTTCCTTTGCTGCATGTGGCCAAAGGGAGACGATGGAAGATACTCATTTTCTAATGCCTTGGATATGTGATCAGAAGGATATCTACGTTTTTGGTATCTTTGATGGTCATCGAGGTGAGCAATTTGTGATCTAAACCTCTACTTCTTGTCTACTTATGCATCTCTGATGGAATTTGCTTTGGCAGTTTTTATTATGTTTTGATTGAAGGGACGTACTTACTCTTCTTTGAATCTTAGAATCTTAGTTTCCATCAATATGTTGAACAACCTCTTTGCAAAATCTAATGTTAAAGCTGCATATATGATATATCTAGTTTCTTGGTCTGTTGCTAGCAGGAATCACTATTCATTTTTCGTCCTCTCCACTGCTGTTTCTGTTGGTCATTGTGTTCGTTGAGCTTATCTTTTATGTTATCACGGTCTTAATTGTTTAGATACTGCTTTATGCTTATGAAGGGTATTAAGTTATCTCAGCATGTAGCCGTCATCTATTATTTTCTTCATGCTAATTTCTTTCAGGTGTGTACCCAACGTTATCAGGGTTCTTAATTGCCTTTTTCCTTTCTCAAAACTTGAGATCAGAAGTTTTCAACTTCCTTTTCGATTCTTTTTTCCCCCCTATGTAAAGTGGGATCGATAGAAAGTTTTATTTTACGAGTCTTACAATGTTCATCCCCTTACCCCGCTTGTTGCTGTAGCCTCTTTGAAGGGACTGGAGCAACGATAGTGAATGAAGTCTTTCAATGTTCAGGATATTTTACTTGACTAGTTCAGAAGCTGCTGTCCAATGGTTAGAAACTTGTACAATATTTCACAGCTACTGCCACCACTGCCTCCTCATATGAATGTTTCACTAAGAGATTTCACTCACTTTTTACTAGTCTCATTTTCTCCTCACAGTACAAAGCTCTAGTGTCAACTTACATAAAAGGCTAAAGGATTGTGTGTTGTAAAGGTCTAAGGGCTAGTCAAAGGCTACAATTTGAAACGAGGTGTGGTGTCACTGTAATAGGAGCAAGTCTTGCATAATTGCATAAGACTGGGGTACACTGAAATTAAGGTGACTTTTTATGAGAAATGCAGGATATGGGTGACATTGGCTTTCTTAAAACGAATGGGTAGGGGTGATATGTGTTCTATATTAACTTTCCCATTAATAGATAGGGGTTGCGTGATGATTTTTAGTTGTCTTTTTGAATATATCCTAGTAGCTTGTGCATGAGTTGTAGTGTGAATAGTATAATGAGTGTATGTTGTGATCGACACTGCACGCTATGTGTATATAAACTATTATGTCTTCTATGTTGTGTGCATAACTTAAAAGCTTGTACAGGAGCTGCTGCTGCTGAGTTTTCTGCACAAGCCTTGCCAAAATTACTCCAGAGTTCCCATTCCAGTGGTAGCAGGTCATTTGTCTCTTGTTATTTTTCTTTCTGTCTATCTGCCCAAACTTTTGAAAATATGAACTTTGAACTGCAGTCCTGCCGAGTCTCTTGTAAGAGCATTTGTCGAGACTGATCTTGAATTTAGAAATGCATTGGATTCCCATCGTAAATCCAAAGGTTTGATTAAGAAAGATTGGCATCCTGGTTGTACAGCAATAGCTGCCTTTCTTGTGAAAAACAAGCTTTACATTGCAAATGCTGGGGACTGTAGAGCTATTTTGTGTAGGGATGGCCATGCTATTGCTCTAAGCAGGGTGAGTAGAAATCATATTAGATATAAACTCAAGAAAAATAACTTCTAATAATTGAAATTAACATGATAGGATCATGTTGCCAGCTGTCTTGAGGAGAGAGACCGTATAGTTAAGGCCGGGGGTGTAGTGAAATGGCAACTGGATACATGGAGGGTCGGCGCAGCAGCTCTTCAGGTTGTAAAAACATATTCTATCTTTTAATACTTGGAAACTTATTGATGCTTCTCATAATAACTAGAACTTGTGTTGGGATTGCATTTGGTATTTCATCAGAGCACTGTTATTGCTGCTGTGGTTGTTTACTCTTTTTTTTATTTTTCTTATGGGATGGGTTAACCTTGGTAGAAATAGGGGTGTACATTGAACTTGAAACTAATTGCTAATTGTATGACCCTTGGTGAAGGTTACACGATCTATTGGCGATGATGATCTGAAGCCTGCTGTGACTGCAGAACCCGAGATAACAGAGACAGGTTTATCTTCAGAAGATGAATACCTGGTAAATCCATTCTCATTTAAAGTTTTTACTTCCACAATTCTTGTTCCCTTTTATTTTTGTCTGTAAAAACCTCAAATGTGTGATGATGTTATGAGGGCGGAGAGGCCAATATCGGATATGTATTTCAAGATACATATCGCCTCACTAAACGACAAAATAGAGATAAGACAAAATGAAAGCAAGTGCCATTTTTCAAAGAACCGATGTCATTTTGGAAAAATGGATGCCATAAAAAACCAATGCCATTTTCCAAAAACGGATGCCATTTTCAAAAAAAAATGATTTTGTCCTTTAACGTTTGTCTTATCCCTATTTTGTTGTTTAGTGGGTGATATGTATTTGTGAAATACATATCAGATATTGATTTATACTTCCTCATGATGTTATATCACAAGTTACCCCAAGTCTGAATTTGTGCAAATTCTTACGTAGTATACTCATGTGAGCTTTATCTAGTTTATGCTAAAGGCTGCTTTTCAACATACTCATATAAGATATCTTATGAAGTTGAGTTTTGCACTTTTCTGTCTCGTGCAATGAAGGCATCGTGGAAGGAACAACGTAACACGTAACACCTCAACCAATGTAACAAGTCACCCCCTGAAAAAAGGTCTCATAAACATAATACTGAGTAGTGAGTAGAAAAAGTCACTCCTTAATACTATAACACATCAAAACTAGGCGGGTTGATTAAATTATGATAAAATTTTCCTTGAAAACTTGTGTACTTGAATATGTATCTTTGCCTAAGCGTCTCTTATGTAAACTTCTTAGTATATTTTTTATAATATATGTATATCCTGAATTATTTAGGTCATGGCAAGTGACGGGTTATGGGATGTGATAAGCAATGAAGAGGTTTTGAGCATCATTAGGGACACGGTCAAAGAACCAAGTATGTGCTCCAAAAGATTAGCAACAGAAGCTGCACAACGTGGAAGCAAGGACAACATCACAGTCATCGTGGTGTTTCTGCGGCCAGTCACTACAGCTGAGAGGATTTATTAGCACAAATTAATGCTCATTTTATCAGAAACATAACAGAAACTATTCAGAGTTTTTAAAAAATGATATATTCCTTATAGAAGATCTGGCAAAACAATGATACCAACATATACAATATTGTCAAAATACAATATGATTCAGTAGAAAACTAAGTGTTATGTCTTGTATAATATAATATATTCTGTATAAAAAGAATTAAGGGGCCGTTTTAGAGATACTAGGAATAATATTATGCTTTAACAGCCACTTCGCCATGACTTTGTACGCGTGTTGAGTCATATGAACTCCATCCCAGCTTACACTCTTGTAAGGATGTTCACATGCTGGAACTCCTCTTCCGCACATTTTAGCAGCATCGTAATTGTATGCATTGTTACCCATTCCGCAACAAGCCCTTTGTGTTTCATCCTTGTCAAATCCTGAATTAATAAAATAAATATTGTCAATGATTTCTTCAAGTTAATTTTCTTAAAAACTACTTTGAATATAAACATGTAATTAAATTTGAAGAATATATTATACT ACGGTGTCGTGTTCTTGTTTTCCTCCTGAAACGGCTCGCGCGCTCACCACAATCACCAACGTAAACCAGAGAGAGAAAGAACGCACAAAAAAGAGAAGAGTTGCAAAAATGGGGTTACAGATTGTGGAGCCAAACACTTGCATAAGAGGGTGCTGTCATAGCAACACCATCCCTCTTCATCTCCCCCCTTCTTCATTTTCTCTCTCCTCCCCTATTGCTCGAGGGAGTGAGAGTGTTGTGTATGAAGGCCGACTAGATGGCCGGAGAGTCGCAATTAAGAAGCCCATTTTGTCAACTTCCGATGCTATTGATAAGTTCCACAAGCAATTGCAGTTGTTATGCAAACTGGATCATCCGGGACTCGGAAAGTTAATAGCAGCTCACGCGAAGCCACCCAATTACTTGTTCTTTTTCGAGTTCTACGAGCTGGGTAGTCTTGCTCATAAACTACATGTGGAGGAGTGGATCCCAAGTATTGATCGGGCTCTTGCTATCGCTCTTGATTTAGCGGAGGCTCTGCTGTATCTACACAACCTTGGGATTGTACACAGGGATGTCAAACCTGCAAATATTCTTATGGGAGAAAATCTTTCTCCACACCTAGCAGATTTTGGCCTGGCAGAGTATGGCAAAGATCTTAAAAAATCTTCTTTCCTGAACTGGAAATCATCTGGAAAGCCGACTGGGGGATTTCATAAGAAAAATATGGTTGGGACTCTTATTTATATGGCTCCTGAAATTCTGAGGACGGAGATACACACTGGAAAATCAGATGTCTACAGTTTTGCAGTATCAGTCAATGAGCTTCTCACAGGGGTTGTTCCATACACTGATCTTCGTGCAGAAGCTGAGGCCCATACTGTATTGGAAATGAGTTATACAGAGCAGAAACTCATTGCGGCAGTGGTGTCTGATAGATTGCGCCCTGCTCTGGTTGGTACTGAATCAGGTGTTCCTTTGAGTTTATTGTCATTGATTAAGCGGTGTTGGGATGCAGATCCCGACACTAGGCCTTCTTTCACAGACATAGTTTCTGTGCTTAAGTCAATTTGTGAGGAGGTAAAAAATATGGATGAAAAGACAAATATATCCGTTGAACGTACTGCTTCTTCTCAGCAATTCACGGAGCAGAGCTCCAATTCTCAACTTTATGGAGAGAGTATTAACTGGTCTAATCAGGGAGCAGAAATCTCCAATACGATTTATCTTGGTGTCAGTTCTAGAACTCGAACTTCATTTGATTTTCCAAATGGTATATCTTCTTACAACCCAGTGCTGTGTTGGGGTTCCTTTGCTGCATGTGGCCAAAGGGAGACGATGGAAGATACTCATTTTCTAATGCCTTGGATATGTGATCAGAAGGATATCTACGTTTTTGGTATCTTTGATGGTCATCGAGGAGCTGCTGCTGCTGAGTTTTCTGCACAAGCCTTGCCAAAATTACTCCAGAGTTCCCATTCCAGTGGTAGCAGTCCTGCCGAGTCTCTTGTAAGAGCATTTGTCGAGACTGATCTTGAATTTAGAAATGCATTGGATTCCCATCGTAAATCCAAAGGTTTGATTAAGAAAGATTGGCATCCTGGTTGTACAGCAATAGCTGCCTTTCTTGTGAAAAACAAGCTTTACATTGCAAATGCTGGGGACTGTAGAGCTATTTTGTGTAGGGATGGCCATGCTATTGCTCTAAGCAGGGATCATGTTGCCAGCTGTCTTGAGGAGAGAGACCGTATAGTTAAGGCCGGGGGTGTAGTGAAATGGCAACTGGATACATGGAGGGTCGGCGCAGCAGCTCTTCAGGTTACACGATCTATTGGCGATGATGATCTGAAGCCTGCTGTGACTGCAGAACCCGAGATAACAGAGACAGGTTTATCTTCAGAAGATGAATACCTGGTCATGGCAAGTGACGGGTTATGGGATGTGATAAGCAATGAAGAGGTTTTGAGCATCATTAGGGACACGGTCAAAGAACCAAGTATGTGCTCCAAAAGATTAGCAACAGAAGCTGCACAACGTGGAAGCAAGGACAACATCACAGTCATCGTGGTGTTTCTGCGGCCAGTCACTACAGCTGAGAGGATTTATTAGCACAAATTAATGCTCATTTTATCAGAAACATAACAGAAACTATTCAGAGTTTTTAAAAAATGATATATTCCTTATAGAAGATCTGGCAAAACAATGATACCAACATATACAATATTGTCAAAATACAATATGATTCAGTAGAAAACTAAGTGTTATGTCTTGTATAATATAATATATTCTGTATAAAAAGAATTAAGGGGCCGTTTTAGAGATACTAGGAATAATATTATGCTTTAACAGCCACTTCGCCATGACTTTGTACGCGTGTTGAGTCATATGAACTCCATCCCAGCTTACACTCTTGTAAGGATGTTCACATGCTGGAACTCCTCTTCCGCACATTTTAGCAGCATCGTAATTGTATGCATTGTTACCCATTCCGCAACAAGCCCTTTGTGTTTCATCCTTGTCAAATCCTGAATTAATAAAATAAATATTGTCAATGATTTCTTCAAGTTAATTTTCTTAAAAACTACTTTGAATATAAACATGTAATTAAATTTGAAGAATATATTATACT ATGGGGTTACAGATTGTGGAGCCAAACACTTGCATAAGAGGGTGCTGTCATAGCAACACCATCCCTCTTCATCTCCCCCCTTCTTCATTTTCTCTCTCCTCCCCTATTGCTCGAGGGAGTGAGAGTGTTGTGTATGAAGGCCGACTAGATGGCCGGAGAGTCGCAATTAAGAAGCCCATTTTGTCAACTTCCGATGCTATTGATAAGTTCCACAAGCAATTGCAGTTGTTATGCAAACTGGATCATCCGGGACTCGGAAAGTTAATAGCAGCTCACGCGAAGCCACCCAATTACTTGTTCTTTTTCGAGTTCTACGAGCTGGGTAGTCTTGCTCATAAACTACATGTGGAGGAGTGGATCCCAAGTATTGATCGGGCTCTTGCTATCGCTCTTGATTTAGCGGAGGCTCTGCTGTATCTACACAACCTTGGGATTGTACACAGGGATGTCAAACCTGCAAATATTCTTATGGGAGAAAATCTTTCTCCACACCTAGCAGATTTTGGCCTGGCAGAGTATGGCAAAGATCTTAAAAAATCTTCTTTCCTGAACTGGAAATCATCTGGAAAGCCGACTGGGGGATTTCATAAGAAAAATATGGTTGGGACTCTTATTTATATGGCTCCTGAAATTCTGAGGACGGAGATACACACTGGAAAATCAGATGTCTACAGTTTTGCAGTATCAGTCAATGAGCTTCTCACAGGGGTTGTTCCATACACTGATCTTCGTGCAGAAGCTGAGGCCCATACTGTATTGGAAATGAGTTATACAGAGCAGAAACTCATTGCGGCAGTGGTGTCTGATAGATTGCGCCCTGCTCTGGTTGGTACTGAATCAGGTGTTCCTTTGAGTTTATTGTCATTGATTAAGCGGTGTTGGGATGCAGATCCCGACACTAGGCCTTCTTTCACAGACATAGTTTCTGTGCTTAAGTCAATTTGTGAGGAGGTAAAAAATATGGATGAAAAGACAAATATATCCGTTGAACGTACTGCTTCTTCTCAGCAATTCACGGAGCAGAGCTCCAATTCTCAACTTTATGGAGAGAGTATTAACTGGTCTAATCAGGGAGCAGAAATCTCCAATACGATTTATCTTGGTGTCAGTTCTAGAACTCGAACTTCATTTGATTTTCCAAATGGTATATCTTCTTACAACCCAGTGCTGTGTTGGGGTTCCTTTGCTGCATGTGGCCAAAGGGAGACGATGGAAGATACTCATTTTCTAATGCCTTGGATATGTGATCAGAAGGATATCTACGTTTTTGGTATCTTTGATGGTCATCGAGGAGCTGCTGCTGCTGAGTTTTCTGCACAAGCCTTGCCAAAATTACTCCAGAGTTCCCATTCCAGTGGTAGCAGTCCTGCCGAGTCTCTTGTAAGAGCATTTGTCGAGACTGATCTTGAATTTAGAAATGCATTGGATTCCCATCGTAAATCCAAAGGTTTGATTAAGAAAGATTGGCATCCTGGTTGTACAGCAATAGCTGCCTTTCTTGTGAAAAACAAGCTTTACATTGCAAATGCTGGGGACTGTAGAGCTATTTTGTGTAGGGATGGCCATGCTATTGCTCTAAGCAGGGATCATGTTGCCAGCTGTCTTGAGGAGAGAGACCGTATAGTTAAGGCCGGGGGTGTAGTGAAATGGCAACTGGATACATGGAGGGTCGGCGCAGCAGCTCTTCAGGTTACACGATCTATTGGCGATGATGATCTGAAGCCTGCTGTGACTGCAGAACCCGAGATAACAGAGACAGGTTTATCTTCAGAAGATGAATACCTGGTCATGGCAAGTGACGGGTTATGGGATGTGATAAGCAATGAAGAGGTTTTGAGCATCATTAGGGACACGGTCAAAGAACCAAGTATGTGCTCCAAAAGATTAGCAACAGAAGCTGCACAACGTGGAAGCAAGGACAACATCACAGTCATCGTGGTGTTTCTGCGGCCAGTCACTACAGCTGAGAGGATTTATTAG MGLQIVEPNTCIRGCCHSNTIPLHLPPSSFSLSSPIARGSESVVYEGRLDGRRVAIKKPILSTSDAIDKFHKQLQLLCKLDHPGLGKLIAAHAKPPNYLFFFEFYELGSLAHKLHVEEWIPSIDRALAIALDLAEALLYLHNLGIVHRDVKPANILMGENLSPHLADFGLAEYGKDLKKSSFLNWKSSGKPTGGFHKKNMVGTLIYMAPEILRTEIHTGKSDVYSFAVSVNELLTGVVPYTDLRAEAEAHTVLEMSYTEQKLIAAVVSDRLRPALVGTESGVPLSLLSLIKRCWDADPDTRPSFTDIVSVLKSICEEVKNMDEKTNISVERTASSQQFTEQSSNSQLYGESINWSNQGAEISNTIYLGVSSRTRTSFDFPNGISSYNPVLCWGSFAACGQRETMEDTHFLMPWICDQKDIYVFGIFDGHRGAAAAEFSAQALPKLLQSSHSSGSSPAESLVRAFVETDLEFRNALDSHRKSKGLIKKDWHPGCTAIAAFLVKNKLYIANAGDCRAILCRDGHAIALSRDHVASCLEERDRIVKAGGVVKWQLDTWRVGAAALQVTRSIGDDDLKPAVTAEPEITETGLSSEDEYLVMASDGLWDVISNEEVLSIIRDTVKEPSMCSKRLATEAAQRGSKDNITVIVVFLRPVTTAERIY 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 Spo10271.1 vs. NCBI nr
Match: gi|731324678|ref|XP_010673097.1| (PREDICTED: protein kinase and PP2C-like domain-containing protein [Beta vulgaris subsp. vulgaris]) HSP 1 Score: 1143.3 bits (2956), Expect = 0.000e+0 Identity = 569/659 (86.34%), Postives = 606/659 (91.96%), Query Frame = 1
BLAST of Spo10271.1 vs. NCBI nr
Match: gi|902160391|gb|KNA06438.1| (hypothetical protein SOVF_181100 isoform A [Spinacia oleracea]) HSP 1 Score: 1038.9 bits (2685), Expect = 3.900e-300 Identity = 523/525 (99.62%), Postives = 523/525 (99.62%), Query Frame = 1
BLAST of Spo10271.1 vs. NCBI nr
Match: gi|902160392|gb|KNA06439.1| (hypothetical protein SOVF_181100 isoform B [Spinacia oleracea]) HSP 1 Score: 995.0 bits (2571), Expect = 6.400e-287 Identity = 501/503 (99.60%), Postives = 501/503 (99.60%), Query Frame = 1
BLAST of Spo10271.1 vs. NCBI nr
Match: gi|255570496|ref|XP_002526206.1| (PREDICTED: protein kinase and PP2C-like domain-containing protein [Ricinus communis]) HSP 1 Score: 956.1 bits (2470), Expect = 3.300e-275 Identity = 474/660 (71.82%), Postives = 550/660 (83.33%), Query Frame = 1
BLAST of Spo10271.1 vs. NCBI nr
Match: gi|590634006|ref|XP_007028254.1| (Kinase family protein / protein phosphatase 2C ( PP2C) family protein isoform 1 [Theobroma cacao]) HSP 1 Score: 943.3 bits (2437), Expect = 2.200e-271 Identity = 467/661 (70.65%), Postives = 548/661 (82.90%), Query Frame = 1
BLAST of Spo10271.1 vs. UniProtKB/TrEMBL
Match: A0A0J8CTG2_BETVU (Uncharacterized protein OS=Beta vulgaris subsp. vulgaris GN=BVRB_3g063620 PE=4 SV=1) HSP 1 Score: 1143.3 bits (2956), Expect = 0.000e+0 Identity = 569/659 (86.34%), Postives = 606/659 (91.96%), Query Frame = 1
BLAST of Spo10271.1 vs. UniProtKB/TrEMBL
Match: A0A0K9QIB6_SPIOL (Uncharacterized protein OS=Spinacia oleracea GN=SOVF_181100 PE=4 SV=1) HSP 1 Score: 1038.9 bits (2685), Expect = 2.700e-300 Identity = 523/525 (99.62%), Postives = 523/525 (99.62%), Query Frame = 1
BLAST of Spo10271.1 vs. UniProtKB/TrEMBL
Match: A0A0K9QGL4_SPIOL (Uncharacterized protein OS=Spinacia oleracea GN=SOVF_181100 PE=4 SV=1) HSP 1 Score: 995.0 bits (2571), Expect = 4.500e-287 Identity = 501/503 (99.60%), Postives = 501/503 (99.60%), Query Frame = 1
BLAST of Spo10271.1 vs. UniProtKB/TrEMBL
Match: B9SJN7_RICCO (Protein kinase, putative OS=Ricinus communis GN=RCOM_1106730 PE=4 SV=1) HSP 1 Score: 956.1 bits (2470), Expect = 2.300e-275 Identity = 474/660 (71.82%), Postives = 550/660 (83.33%), Query Frame = 1
BLAST of Spo10271.1 vs. UniProtKB/TrEMBL
Match: A0A061EVD4_THECC (Kinase family protein / protein phosphatase 2C ( PP2C) family protein isoform 1 OS=Theobroma cacao GN=TCM_023874 PE=4 SV=1) HSP 1 Score: 943.3 bits (2437), Expect = 1.500e-271 Identity = 467/661 (70.65%), Postives = 548/661 (82.90%), Query Frame = 1
BLAST of Spo10271.1 vs. ExPASy Swiss-Prot
Match: P2C31_ARATH (Protein kinase and PP2C-like domain-containing protein OS=Arabidopsis thaliana GN=At2g40860/At2g40870 PE=2 SV=1) HSP 1 Score: 855.9 bits (2210), Expect = 2.900e-247 Identity = 427/662 (64.50%), Postives = 528/662 (79.76%), Query Frame = 1
BLAST of Spo10271.1 vs. ExPASy Swiss-Prot
Match: P2C04_ORYSJ (Protein kinase and PP2C-like domain-containing protein OS=Oryza sativa subsp. japonica GN=Os01g0541900 PE=2 SV=1) HSP 1 Score: 849.7 bits (2194), Expect = 2.100e-245 Identity = 434/668 (64.97%), Postives = 519/668 (77.69%), Query Frame = 1
BLAST of Spo10271.1 vs. ExPASy Swiss-Prot
Match: P2C10_ORYSJ (Probable protein phosphatase 2C 10 OS=Oryza sativa subsp. japonica GN=Os02g0149800 PE=2 SV=1) HSP 1 Score: 190.3 bits (482), Expect = 6.800e-47 Identity = 118/271 (43.54%), Postives = 156/271 (57.56%), Query Frame = 1
BLAST of Spo10271.1 vs. ExPASy Swiss-Prot
Match: P2C59_ARATH (Probable protein phosphatase 2C 59 OS=Arabidopsis thaliana GN=WIN2 PE=1 SV=1) HSP 1 Score: 182.6 bits (462), Expect = 1.400e-44 Identity = 111/263 (42.21%), Postives = 154/263 (58.56%), Query Frame = 1
BLAST of Spo10271.1 vs. ExPASy Swiss-Prot
Match: P2C59_ORYSJ (Probable protein phosphatase 2C 59 OS=Oryza sativa subsp. japonica GN=Os06g0698300 PE=2 SV=1) HSP 1 Score: 181.8 bits (460), Expect = 2.400e-44 Identity = 109/263 (41.44%), Postives = 150/263 (57.03%), Query Frame = 1
BLAST of Spo10271.1 vs. TAIR (Arabidopsis)
Match: AT2G40860.1 (protein kinase family protein / protein phosphatase 2C ( PP2C) family protein) HSP 1 Score: 855.9 bits (2210), Expect = 1.600e-248 Identity = 427/662 (64.50%), Postives = 528/662 (79.76%), Query Frame = 1
BLAST of Spo10271.1 vs. TAIR (Arabidopsis)
Match: AT4G31750.1 (HOPW1-1-interacting 2) HSP 1 Score: 182.6 bits (462), Expect = 8.000e-46 Identity = 111/263 (42.21%), Postives = 154/263 (58.56%), Query Frame = 1
BLAST of Spo10271.1 vs. TAIR (Arabidopsis)
Match: AT5G24940.1 (Protein phosphatase 2C family protein) HSP 1 Score: 180.6 bits (457), Expect = 3.100e-45 Identity = 106/263 (40.30%), Postives = 153/263 (58.17%), Query Frame = 1
BLAST of Spo10271.1 vs. TAIR (Arabidopsis)
Match: AT5G10740.1 (Protein phosphatase 2C family protein) HSP 1 Score: 172.2 bits (435), Expect = 1.100e-42 Identity = 105/263 (39.92%), Postives = 151/263 (57.41%), Query Frame = 1
BLAST of Spo10271.1 vs. TAIR (Arabidopsis)
Match: AT1G43900.1 (Protein phosphatase 2C family protein) HSP 1 Score: 166.8 bits (421), Expect = 4.600e-41 Identity = 113/288 (39.24%), Postives = 157/288 (54.51%), Query Frame = 1
The following BLAST results are available for this feature:
BLAST of Spo10271.1 vs. NCBI nr
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. NCBI nr) Total hits: 5
BLAST of Spo10271.1 vs. UniProtKB/TrEMBL
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. UniprotKB/TrEMBL) Total hits: 5
BLAST of Spo10271.1 vs. ExPASy Swiss-Prot
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. ExPASy SwissProt) Total hits: 5
BLAST of Spo10271.1 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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