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.TTCCAAGTCAAGCCGTCAACCCCTCCCTCTTTCCACACTCTCTCCATTTTTGGCCCCTTTTTTTGTTTTCTATCTCCCCAAAAAGAATAAAATATTGCGCTCCTATATTTTCTCTCTCTAGAACTCTCATTTGACTTCAACTTTCACCCTTCTCTCTCCTCATATTCCCAATTAACTCCTCCAACATCCCACCAATTCAATGTCGGATTCCACTCTCTAATCCATCGTTTTCCGGCGAAATACTCCGCCGATGACGCCAGAGACGCCCACGATGATGGTGATAGACTCACGAACCGCCTTCTCCGACTCCAACGACATCAGTAATGGCAGCAGTATCTGTTGCGTCGCTACTACAACCACCACTGCCACCGGCGCTGAAAACTCTATCTCCACAACCGCCGATTCCGCCGCTCTCCTTCGCCTCTCCGAAAACCTCAACTCTCTATTCCAGCCCTCTCCCTCCCCCTCCGACTCCGACAACTACGCCGACGCTAAAATTGTCATCGCCGGCGATACTCGCGAAGCCGCCGTTCACCGCTGTATTCTCTCGTCTCGAAGCCCGTTCTTTAGGTCAGTATTCGCGTCGAGGAGAGAGAAAGAGAAGGAAAAAGGTAAGGACAGGGAGAGAATGGTGAAGCTCGAGCTTAAGGATATTGCAGGCGACTTCGAGGTTGGATTTGATTCGTTAGAAGCGGTTTTAGGTTACTTGTATAGTGGAAAAAGTAGGCAATTACCTAAAGGTGTTTGCGTTTGTGTTGATGATGATTGTTCTCATGTTGCTTGCCGTCCTGCTGTTGATTTTGCTGTTGAAGTTCTCTACTTATCTCAGAAATTTGAGATCGTTGAATTGGTTGCTCTTTATCAGGTAATTGTTTAATTTGATAGTTCAATTGAATTTCACTTGATTTTCAACTATGAATTGCTAATAATTGATGAAATGAGCTTTAATTGAAAATATGTTCATTTTTAGTTTATCTAAAATCATGAGAATTTCTGAAAGGACTTCCTCAGCCTGGAATTGATTCTCTCGATACTAGTTTAAGTTACACTATCGTCGCAGCTATTTCTTAATTCTGGACCGAGTGGAGGGAGTAATTTTTTTTTTGAAGTAGTATGGAGAGCTACAGGGTTTATCTTAGGATTGATGAAGTATGTACATTGTTGAAGCAAGTTCGATCTCAGTCTAAGTTTGTGTACCATTGCAACCCTTGTTTCCACTGACGTTTCTTGCCTATCGCTTCTCGTTAGGTGTAGCTTTTGCTTCAAATTTCTTATGGAGTAGGAATTTAATCCCCCTCCTTATATCACTGTATCAGTAACACGATTCATCCTTTTTTTGTGAAAAAGAAGACTTTGAGAACAACTGCGAATGTTAGGAAGGATTAGGACATTATGTATTAAATTCTGGTGGTGTAAGGATATTAGGCCTAATGTTTATCAGATAATAAGTTTTCTATTAGGGTGTTTCTTTGGGTAAGTAGTTTGTGGTCTGGGTTTATGAATATGTACTACAGGGATTTGGGGTTCAGTTTAAGGAATGCAGGTGCTTACCTTGGAGGTTTGTGGTTGGCAATTGACCATTTCCTGTATGGAACATCTCTGTGTTGCACTGTTGCTTTTAATCTGGAATATGTGTTTGAGTTGTTGACATTAGTTAACTGATTCATCTTAAGAAAGGGCTGAGTTTTGAATTGTTTTAGGATTAGTAGGCCCAAGAAATTAAGTCTAAAATGCAGCTTCAAAAGTAAGGTTATGGATTGACTTAAATGAAAGATTGTCTACATTTCCTAGCTTGGTGATTTTATGATTTAGCAAAATAGGAGGTGGACTTGTAATTCCGAGAAATGTTAAGGGAAGCCTTGTAGAGAACTAGATTTTTCTCATGAAGAAATAGAAAAGGGTACAGATTAGATCTGGCTGTAACTGCGGCCCCTATTCACATAATTATAGACTTGGAACAATGTTTAGGCAGGACCTTTTATAGTAGTGGAGGGTGAAATAGAGAATTGGAAATAGGTTGCACTTTATTCTTGTCCACTTATGATTGTGATTGACGAACATCATGTAGACTAGAGTGCTTCTCTTGTCAAGGTGGAGTGGTGGAGTTAAACTGAGTTTTGGTATGGGAATGTTAATGATTAATTTCCTTAAACACTATTTGATGACATATTTTTCCAATAGACGCACGTATAGAACATATGGGAGATGGATTCTAGGGCTCTGTTCTATTTCACTTGTTTTGTATATTATGCGAACTTATCTGAACGTATTCGGAGCCTATTTCAAGAGACTTACCAGATTTGTAGGACTTGCAGACATATGTCTCTAGCCAAACTTGATAACGGATGGTACTCTCAAATGTTGTCAAAATTATTGATAAGCAAGGAAAATAGAACTTTCCCCCATTGATGGATTGAAGTTGGGGAACCGCGAGCATGATAGGATAACTGGATAAGAGCTAATCCATAGTCTTCAAGTGAAGAATCATGTGGTCAACAACTTGAAGATGGACCTCATTAAGATGAGGGCCACTGACTTTTTAATCGTCGTCAAGTTGTATTTGGGTTGGTATTTTTGCACTGTTTTTAATCGTCGTCGAGTTGTATATGGGGTGGTATAAGATGAGTGCCACTGGGTGCTATAGTCTCTCGTTTTTCAATTTCCTCTTTTATTACATGTATGTCTCTTAACATACTGCAGAGAATACCTTTCAAAAAGCCCATTGGTTGTTGATGCTGTATTTTATTGTGGCCTAGAGGCTTTCCTGTTAAATGGAGATGTTGATCATATTTGAAGGGATATTGTAGTTCAGTTCTTTGGTTCTCCTGACATTGCTTCAGAGGTTGACCATGTTATGCTCTCGCTTTCTTATCCTTTTCCAGTAAATGTTGCATATAAGTTTACTACTTATAACAAAACTATAATAAGAACATACTAAATTCTCATTTGCAGAACTCCTTCATTAACACTATGTTTGGATAACTATTATATGGAAGGAAAGAGAGGGGAGGGGAGGATAAAGAAAAGAAAGGGAGGTGAAGGAAGGGGAGGGAAAATATGAAATTCAATTTTCCTTCAAATCTTTCAAACATAGGAAGGATTTGGTTAATTAAAAGGGAAGGAAAAAGGATCCCTCCAATTCTCTACCCTTCCCCCTCCCCCAAGTTATATCCAAACAAGGGAAGATGAATCTCCAACCCCCCCTCTTCCTGTCCATATTACTTTATCTAAACACAACCTAAGAGTACGGTAGAACCAAGGGCGTCCCTTAATAAAGCAATGTAAATAGTCATACTAAGAAGTAAGAAGGGACCTCGATTCACACGAGTTCTTTTATCAGGAAGTTGATTATGTTAAGCTGAAGTTTGCAATTGTGTGGGTAAAGCTTGTGTTCGCTCTTGAGATGTCCCCCACTTTGCCTAAGGGTGGAGCATGTTACACGCATTCTGATAGTGGTACATGTACAGTTATTTGACTTATTTACATGTAGGTGCTAAAAGTGTACAAAAGCCTGTCCCTATAGTAGGGTTCTTATCTTTCTGTTGTGTATGATGGTCAATATTTAATGTCCTCATAGAAGGGTGATAGTTGCTTCCAAAGTCGAGTCAAGAGTTGCTCAACTCAACTTCTTCAATTCTCCAATTGAGCTTGAACTTGAGTAGAGTTTAATTTTCGGTGTCGATTTACTTCCGAGTTTTCTTGTCTCATTATCACCCTTAGTCTATGGGCTATTTGACTATTGATATGTTTTTAAATGAACGAGGATGTAGAAGGAGCAAAATATTTCTCTGCATATTTGAATTTGTGTCTCACGTTTGAAATTCTGGATTTATAACTCTTTCTGGAAGTTCCACGAATAGAGACCGCTAAACTTCTTTTATCTTTACGGCCTTTAAAAATGAAAGTCTGTTAAAGCTCAATACAAGTAGAAGAATTATAGTTCACCACCCACTTAGAAATTAGCCTTGAATCATAATGGAGAATTAAAGTTTTCATACTAGATTTACAAGCTTGTTGATGGTATCATCATCTTTCCATATTTGCAAAAATACCTCGACGATTCCCGCTCGTTCCCACTGATGCAGGATTTGCACTTGTAGATTGGGGAACATGTTGCTTTTCAAGGCTTGTGCGATACTAACAGTTTGCATGCATTGATTGGTGCTCCCTGCGAAGCAAATATCATCTTTTTACCCACTCCAACTCAATCATTATTTAATTTGTGGGATTTCGAATGTTCTTCTACAGTTTAATTATAATTTCCTTTAATGTTTAGGACAATTATAGAAGGGAAATTAGTGTGCGGAGAGAGTAGTTTAGGGTTGAGTTGCTCTCTCAATGTTGAGTTTATTACTTCCATTTTTATGTTAGATTATTATGTGGCAATTGTAGTTTTTCATGACAAGTTTTCTCTGTGATGCTAGCCTCAGAAGATTTGTAGGCTAGGGATTTCACCAGGCATTATGAACTGTTAACGTAGCATTAGTTATTTTGTCTTGGAAATTTCCTTATAATCTTTTTGCTTGCAGAGGCACCTATTGGAGATTCTTGACAAGGTCGCACCAGATGACGTTCTAGTAGTGTTATCTGTTGCTGAATTGTGTGGAAATGCATGTGAAAGATTGCTGGGAAGGTGTGTTGACAAAATTGTGAGGTCCGATGTTGATGTTACCACTCTTGATAAATCTTTGTCACAGCCTATTGTAAAACAAATAATTGACACACGCAAGGAGCTTGGTTTAACTGAGCCTGGATATGTTGAGTTTCCTGATAAGCATGTGAAGAGAATACACAGAGCTTTGGAATCTGACGATGTCGAGTTAGTTAGAATGCTTTTAAAAGAGCGCCATACTACTCTAGATGATGCGTATGCCCTTCACTATGCTGTGGAACATTGTGATGCCAAAACCACCACGGAGCTTCTTGAGCTTGGTATTGCAGATGTGAATCTTAGGAATCAAAGGGGTTATACTGTGCTTCACATTGCAGCCATGAGGAAAGAGCCGAAGATAATTGTGTCCCTATTAACCAAGGGAGCCCAACCATCTGATACTACATCAGATGGAAGAAAGGCATTGCAGATAGCAAAGAGACTTACAAAATCCCTGGACTTCTTTAAACTTACAGAACAAGGAAAGGCATCGCCAAAGGATCGGTTGTGCATTGAGATATTGGAACAAGCTGAAAGAAGAGAACCATTGCTATGGGAAGGTTCTGTTTCTCTTGCAAAGGCAGGGGAGGATCTGCGTATGAAACTTTTATACCTTGAAAATAGAGGTATTTTTATGTTTGAATGAAGATTTTGTTTCCTCGTTATTAATACATACTCCGTATTTGGTGGTATGTGATTTTATGTTTGAATGAAGATTTTGTTTCCTCGTTATTAATACATACTCCGTATTTGGTGGTATGTGATTCAACGTCTATTTATTTGTGTAACAACACAACCCAACCCAACCCAACCCAACCCAACCCAACCCAACCCATACCCTTCATTGCGTCAGGGAAACAAAGGAGCACACAACCCAACCCAACCCAACCCAACCCAACCCATACCCTTCATTGCGTCAGGGAAACAAAGGAGCACATCTTCTAGGGGAGTTTACTCATATATTTGAAAACGAGGATATACTCGTAGCTACAACACCAAAATAATTTCTACTGAAAACTTTGCTTCACCATGTTGGCAGCAGTACCATACAAATCCTTGAAAGGCATAATTGCTGCTGCATTAACTGCTGGAAGTTAATGACTAGCTACCATGAATACATATTCCTCCTGCTAGTTGATAGAATATTAAGGAAAAAGCTAGAACCAGGTGATTACAAAACAAAATAGATTTGCAACAATAAATTATTTTTAGAACCCCCATAGGCCATAATCAGTGGCGGACCTTGAACGGTTTTATGAGGGGGGCCGGTAGAAAAAAATTAAGCAATATACTATGTAATTATATAATTATACACAAATTTTAGGGGGGCCGTAACTAAAATTACACTATAAAAATTTTCGGCAGGGGGGCCAGGCCCACCCCAGCCATACATAAGATCCGCCATTGGCCATAATAGTCTAATGGGGAAAGCACAGTTCAAGTTGATTTTAGTACCCAGGTTCTTTGTGCTCTCCGATTTCAGTTTATGCATGTGTTTTTGGCATCAAATTTGTTGTTGAACTCCTTAGTCCTTTGCTGGCCCCTAAACACTCCCCTCTAGAGACACCCATCCAAGGAAGAATATAGGATCATGGAATCTCTGCATGTCTTGCTCTTTTCTGAAATTTACTAACTTCATCACAACCTTGTCTTCTGATATTGTGTTAACTTTAGAGGAAATTTTCTTTGAACCTTCATATAGGGCCTTGAGGCTGTGCTCACGGATTATTTTTGTTTTTTGGATGAAATCCTTCTCGCTTACCATTTGTTCTTTTAATATTTTGTAAACTTTTGGATGTTAGTTTTTTTTGTGAGTGCTTAGATGACAACTGTAATTAGATGATAATTGATGGATTACTATCAAAGCGGCAAGGTTTTTCTGAGCAGCGAGCAGACATGGAGGCATGCACATTTGTGATATGTGATATGATATATGCCAATGCAACACAAATGCTTGATATAGTCGATTTATATGCAAGGGTTTCTTTCCCCAACATAACTGCGTTAGAACTCTTAGAATTTTGTACATCTTGTTGCCTGCTTTCTGCTGTTATGCTAAAATAAGATATTGTATTCTGTTTAATGGAAAGAAATCTATACAAGACAAAACTTTGTATTCTTGTTGCCTCTGGACATCACTTAGGTCTATAGGTTTATCAGTTTGGATTGTCTATTGCCGTGTGGTGAGTGATGTTAAGAAACTAGCAAACTTCACAGTTTATATTAAAGTGCAACCAAGGATTCTAGGGTATGGAGGGGAGATTGTTGAAGAATTGATTGGTGATTTCCTTTAAAATATCTAATTCAAGTATTCGTTTCCTTCTCTCTACCACCTTTTGGGACTGTTTTTAATCAATTTTTGCTCAGTTTGTGTATCTTACTCCCAGATCATCTTCTGTTTAGTTTTCCTCTTGTATATCGTGTCGTGACGGTGTTATGTAATTATCTAATGCTCAGTTGGATTTTTTTTACAGTTGCACTTGCACGACTGCTTTTTCCAATGGAAGCGAAAGTTGCTATGGATATTGCACAAGTGGATGGTACTTCTGAATTCACATTGTCAAAGAACATAGCTGATGCACGGAGAAATGCTGTGGACTTGAATGAGGCCCCCTTCATATTGAAAGAGGAGCATTTGCAAAGGATGAAAGCATTATCTAGAACTGGTAAACAAAATATCAAATACTCTTCATTGGCCTTGAGATATGCTACTTTTTCGGTTTCTTTTATACTCTTATTTGTTCAGTTAGAATCGATGACATGCTTGATCGATTGCTGTTCTTTAACGATCTTATGTTGGCAAATTTGAAAACCTTATCTGGGCAAGTCCCTGTAAAAGTATTTTAGAGGAGTTTTTAGAACTTGCAAGTTGCAAGCTATAATATTTTAGAATTACAAACACTAAGAAGCAACAAAAATTAGGGAACTGGTGTCCGTGGACACCTTCATGGACAATTTGATCTGCCATTGGTTACACACAAATGACATACTAAATACTCGCTCTTGTTAGCTCAAGGGGTGTTTGGTTAGGAGAGGTTTGACCGTTTGAGGGAAAAAGAGCTTGAGGTGAACTAGAGGGTTGACCTTTTGAAAAGGCTAATTCGAAGTGTTTGGTTAGGATAGGTTTAGAAGAGAGTTTTGGGGTGAAAAATCTCAACATATGAGTTTTTTGCAATTAGAGGTTTGAGAAAGTGAATGTAAATTGACTACTTTGTCCTAAAATTACAAACCTCAGTTTTAATGACTGTTTTTTGCTGTGCGTTTCGCGTGTCCGAAACGATTCGGAAACGACCAGCATCAATTTTTTGCCGTTTTCGTGCATCATAGTAAGCTAATATACACAACTGACATATAGTCAAACCAGCTAAAAACTCCTAACCAAACAGGGCCTAAGTTAATATGATGTTCAAGATTCTATACATGGAACTGAATTGGTTGGTCCTAAAATGATGTTATGTTTTTTGCAGTTGAGCTTGGGAAGCGTTTCTTTCCCCGGTGCTCTGACGTTCTTAATAAGATTATGGACGCAGAAGATCTATCACAGCTTGCATTCCTAGGAAAAGATACTCCGGAAGAACGGCAAAGGAAGAGAAAACGATACCTTGAACTACAAGACGCTTTAACTAAGGCCTTTTCAGAGGACAAAGAAGAGTTTGATCGTTCCACATTATCGTCATCATCGTCGTCCACACCAATGGGGAGGCCTTATGGTAAGACAAATTTCAAAAGGTAACTAAACTCCCTCGAAAGCTCTAATAAGTCTCACACGACCGCACTTGTATGTATGATATATATTTGTATGAATATGTATGATAATTATTCTTTCTTTTTTGTATCTTGGCCACTGTTCGCTCTCTTTTTGGTCTGTAAAATAATTTTTGACCGATTTATTAGCTATTACATGATAGAATTGTATTTTTATACCGTCTTTATAAGATCGGAGTTATACCAGACTTAGGAAGTACCAACTAGTTGTACTGCCATCGGAGACATTCTTTTGTGAGATGACTTATCAGATTACTCTACCAGAACCATTCATCGTTTGTTACCTCACCATACTGCAAGAAAATGAATCAAAGGTACACATTTTTGTTCTTTTCTTTGTTTTGTTTTATATTTCCCTAGCATTTCAATTTGAAATTATGATATTGGTGAAATCACAAATGGTAATTGAGTCAAGGCCATATCTTCAAAGTAATCTGGAACACTACTTCAGGGTAAAGATGGTTGTGGCCCGGGTTAGGCTTCGGGCCGAGCCACGGGTGTGGCTTGAACGGGACCGTCCACTCTGCATCGGGTCGGGTTGAAACTTACAAATATAGGGTCCAAGCCCTCGTCAGGCCATAGTGCCTAAGTCTAATTTTGTTAAATTTAGCATGTTTTGGTTTGTCGTGTTTTTTCCAAACAAAGGCGGCCCAGGCATGGCCCACGTCTTCGTGCTTGTGCCCGCGTTGGGTCGGGCCTCAGGGTGGTTTTTATCCATTTATTCTCATCTTTCTCACACAATTTGGAAGGACTAGTTAATCGATACCTCGACCCGAAGTTTATCATTAATTAGTACGGAGTAACTTTATTACTTCCTATGTTCCGGAAATATCGTACGATTTGTTTTTTACACTATTCACACTACCTTTGGCCATTTTTTGAGATTTGTACGTAAGAAAATTTTAGTCATGTGGGGCCATGTTGGATTCATATCGATATATATTTTCTGAAATATTAATTTTTTTTAATTTTTATTTGCACACAATTTGAGATATTAAGAGTCAAATTAATGGTTAGAGGAATAAAAGTCACCCATGGGGCCATGGTGCGATAGTGCGATATTTTGAAATGGAGTAAGTATTTATTATTTTTTTTTTGAAAACGGAGTAACTTTTTCTTAATGTATTGAAAAAAGATTAGACTAATTGTTGTTGAAGTACCAAATATTGAATTTGAAACTTTTTTCTCAGATTTTTCACTTCACAAACATATCATTTTGATACATATTACTGACTGTTTAAGGTTGGTTGCTTGAGTAAACAACTTCGATTCCTATGGATCCAAAAGTTCCATCATTCATCCAATTCGAGAGGTTTGAAGTATTTCCTATCTATAAGATATGTTCCAATGCTCAAACGGATAGCCCATACATCCATAGGTTTTCTAGATACAATCCTGCAATAATCACAAAGTCCATGTATAAATTCTACTGTATATATAGTATGTAATATCATAGAATTATAAAAATAAGCTATGTTGTAAGTTTCACATTCACTCTAATCTATACTATCGTTAGAACTCCAAGGCAAGAAATGACATCTAGTCACATATTATTTTCCTATATAAATATAGCATGATGAAGCGTCATATTTGACGTGTCATCTCATATAATTTTCTTGATCATGAAAAAAAAAGTTACGGAATAGTTAAAGGTTTGAAATCTGTAACCTCTTGTTTGTTAATCACATATTTTAACCATTATGCCACAACTCATTTTGTTGTTTCTTATACATACAAAATTTATTTAAGTCAATATAATTAGAAACATGATCTGGATCATTTCTTAATAGTCACACATTACTGATTAGTCATTACTTTTACAAGTTACTAATCCTTACATGATAAAATTTATTGGAAAATGTTTGGTTGACCCTAAAGGTTGGCAACCCC TTCCAAGTCAAGCCGTCAACCCCTCCCTCTTTCCACACTCTCTCCATTTTTGGCCCCTTTTTTTGTTTTCTATCTCCCCAAAAAGAATAAAATATTGCGCTCCTATATTTTCTCTCTCTAGAACTCTCATTTGACTTCAACTTTCACCCTTCTCTCTCCTCATATTCCCAATTAACTCCTCCAACATCCCACCAATTCAATGTCGGATTCCACTCTCTAATCCATCGTTTTCCGGCGAAATACTCCGCCGATGACGCCAGAGACGCCCACGATGATGGTGATAGACTCACGAACCGCCTTCTCCGACTCCAACGACATCAGTAATGGCAGCAGTATCTGTTGCGTCGCTACTACAACCACCACTGCCACCGGCGCTGAAAACTCTATCTCCACAACCGCCGATTCCGCCGCTCTCCTTCGCCTCTCCGAAAACCTCAACTCTCTATTCCAGCCCTCTCCCTCCCCCTCCGACTCCGACAACTACGCCGACGCTAAAATTGTCATCGCCGGCGATACTCGCGAAGCCGCCGTTCACCGCTGTATTCTCTCGTCTCGAAGCCCGTTCTTTAGGTCAGTATTCGCGTCGAGGAGAGAGAAAGAGAAGGAAAAAGGTAAGGACAGGGAGAGAATGGTGAAGCTCGAGCTTAAGGATATTGCAGGCGACTTCGAGGTTGGATTTGATTCGTTAGAAGCGGTTTTAGGTTACTTGTATAGTGGAAAAAGTAGGCAATTACCTAAAGGTGTTTGCGTTTGTGTTGATGATGATTGTTCTCATGTTGCTTGCCGTCCTGCTGTTGATTTTGCTGTTGAAGTTCTCTACTTATCTCAGAAATTTGAGATCGTTGAATTGGTTGCTCTTTATCAGAGGCACCTATTGGAGATTCTTGACAAGGTCGCACCAGATGACGTTCTAGTAGTGTTATCTGTTGCTGAATTGTGTGGAAATGCATGTGAAAGATTGCTGGGAAGGTGTGTTGACAAAATTGTGAGGTCCGATGTTGATGTTACCACTCTTGATAAATCTTTGTCACAGCCTATTGTAAAACAAATAATTGACACACGCAAGGAGCTTGGTTTAACTGAGCCTGGATATGTTGAGTTTCCTGATAAGCATGTGAAGAGAATACACAGAGCTTTGGAATCTGACGATGTCGAGTTAGTTAGAATGCTTTTAAAAGAGCGCCATACTACTCTAGATGATGCGTATGCCCTTCACTATGCTGTGGAACATTGTGATGCCAAAACCACCACGGAGCTTCTTGAGCTTGGTATTGCAGATGTGAATCTTAGGAATCAAAGGGGTTATACTGTGCTTCACATTGCAGCCATGAGGAAAGAGCCGAAGATAATTGTGTCCCTATTAACCAAGGGAGCCCAACCATCTGATACTACATCAGATGGAAGAAAGGCATTGCAGATAGCAAAGAGACTTACAAAATCCCTGGACTTCTTTAAACTTACAGAACAAGGAAAGGCATCGCCAAAGGATCGGTTGTGCATTGAGATATTGGAACAAGCTGAAAGAAGAGAACCATTGCTATGGGAAGGTTCTGTTTCTCTTGCAAAGGCAGGGGAGGATCTGCGTATGAAACTTTTATACCTTGAAAATAGAGTTGCACTTGCACGACTGCTTTTTCCAATGGAAGCGAAAGTTGCTATGGATATTGCACAAGTGGATGGTACTTCTGAATTCACATTGTCAAAGAACATAGCTGATGCACGGAGAAATGCTGTGGACTTGAATGAGGCCCCCTTCATATTGAAAGAGGAGCATTTGCAAAGGATGAAAGCATTATCTAGAACTGTTGAGCTTGGGAAGCGTTTCTTTCCCCGGTGCTCTGACGTTCTTAATAAGATTATGGACGCAGAAGATCTATCACAGCTTGCATTCCTAGGAAAAGATACTCCGGAAGAACGGCAAAGGAAGAGAAAACGATACCTTGAACTACAAGACGCTTTAACTAAGGCCTTTTCAGAGGACAAAGAAGAGTTTGATCGTTCCACATTATCGTCATCATCGTCGTCCACACCAATGGGGAGGCCTTATGGTAAGACAAATTTCAAAAGGTAACTAAACTCCCTCGAAAGCTCTAATAAGTCTCACACGACCGCACTTGTATGTATGATATATATTTGTATGAATATGTATGATAATTATTCTTTCTTTTTTGTATCTTGGCCACTGTTCGCTCTCTTTTTGGTCTGTAAAATAATTTTTGACCGATTTATTAGCTATTACATGATAGAATTGTATTTTTATACCGTCTTTATAAGATCGGAGTTATACCAGACTTAGGAAGTACCAACTAGTTGTACTGCCATCGGAGACATTCTTTTGTGAGATGACTTATCAGATTACTCTACCAGAACCATTCATCGTTTGTTACCTCACCATACTGCAAGAAAATGAATCAAAGGTACACATTTTTGTTCTTTTCTTTGTTTTGTTTTATATTTCCCTAGCATTTCAATTTGAAATTATGATATTGGTGAAATCACAAATGGTAATTGAGTCAAGGCCATATCTTCAAAGTAATCTGGAACACTACTTCAGGGTAAAGATGGTTGTGGCCCGGGTTAGGCTTCGGGCCGAGCCACGGGTGTGGCTTGAACGGGACCGTCCACTCTGCATCGGGTCGGGTTGAAACTTACAAATATAGGGTCCAAGCCCTCGTCAGGCCATAGTGCCTAAGTCTAATTTTGTTAAATTTAGCATGTTTTGGTTTGTCGTGTTTTTTCCAAACAAAGGCGGCCCAGGCATGGCCCACGTCTTCGTGCTTGTGCCCGCGTTGGGTCGGGCCTCAGGGTGGTTTTTATCCATTTATTCTCATCTTTCTCACACAATTTGGAAGGACTAGTTAATCGATACCTCGACCCGAAGTTTATCATTAATTAGTACGGAGTAACTTTATTACTTCCTATGTTCCGGAAATATCGTACGATTTGTTTTTTACACTATTCACACTACCTTTGGCCATTTTTTGAGATTTGTACGTAAGAAAATTTTAGTCATGTGGGGCCATGTTGGATTCATATCGATATATATTTTCTGAAATATTAATTTTTTTTAATTTTTATTTGCACACAATTTGAGATATTAAGAGTCAAATTAATGGTTAGAGGAATAAAAGTCACCCATGGGGCCATGGTGCGATAGTGCGATATTTTGAAATGGAGTAAGTATTTATTATTTTTTTTTTGAAAACGGAGTAACTTTTTCTTAATGTATTGAAAAAAGATTAGACTAATTGTTGTTGAAGTACCAAATATTGAATTTGAAACTTTTTTCTCAGATTTTTCACTTCACAAACATATCATTTTGATACATATTACTGACTGTTTAAGGTTGGTTGCTTGAGTAAACAACTTCGATTCCTATGGATCCAAAAGTTCCATCATTCATCCAATTCGAGAGGTTTGAAGTATTTCCTATCTATAAGATATGTTCCAATGCTCAAACGGATAGCCCATACATCCATAGGTTTTCTAGATACAATCCTGCAATAATCACAAAGTCCATGTATAAATTCTACTGTATATATAGTATGTAATATCATAGAATTATAAAAATAAGCTATGTTGTAAGTTTCACATTCACTCTAATCTATACTATCGTTAGAACTCCAAGGCAAGAAATGACATCTAGTCACATATTATTTTCCTATATAAATATAGCATGATGAAGCGTCATATTTGACGTGTCATCTCATATAATTTTCTTGATCATGAAAAAAAAAGTTACGGAATAGTTAAAGGTTTGAAATCTGTAACCTCTTGTTTGTTAATCACATATTTTAACCATTATGCCACAACTCATTTTGTTGTTTCTTATACATACAAAATTTATTTAAGTCAATATAATTAGAAACATGATCTGGATCATTTCTTAATAGTCACACATTACTGATTAGTCATTACTTTTACAAGTTACTAATCCTTACATGATAAAATTTATTGGAAAATGTTTGGTTGACCCTAAAGGTTGGCAACCCC ATGACGCCAGAGACGCCCACGATGATGGTGATAGACTCACGAACCGCCTTCTCCGACTCCAACGACATCAGTAATGGCAGCAGTATCTGTTGCGTCGCTACTACAACCACCACTGCCACCGGCGCTGAAAACTCTATCTCCACAACCGCCGATTCCGCCGCTCTCCTTCGCCTCTCCGAAAACCTCAACTCTCTATTCCAGCCCTCTCCCTCCCCCTCCGACTCCGACAACTACGCCGACGCTAAAATTGTCATCGCCGGCGATACTCGCGAAGCCGCCGTTCACCGCTGTATTCTCTCGTCTCGAAGCCCGTTCTTTAGGTCAGTATTCGCGTCGAGGAGAGAGAAAGAGAAGGAAAAAGGTAAGGACAGGGAGAGAATGGTGAAGCTCGAGCTTAAGGATATTGCAGGCGACTTCGAGGTTGGATTTGATTCGTTAGAAGCGGTTTTAGGTTACTTGTATAGTGGAAAAAGTAGGCAATTACCTAAAGGTGTTTGCGTTTGTGTTGATGATGATTGTTCTCATGTTGCTTGCCGTCCTGCTGTTGATTTTGCTGTTGAAGTTCTCTACTTATCTCAGAAATTTGAGATCGTTGAATTGGTTGCTCTTTATCAGAGGCACCTATTGGAGATTCTTGACAAGGTCGCACCAGATGACGTTCTAGTAGTGTTATCTGTTGCTGAATTGTGTGGAAATGCATGTGAAAGATTGCTGGGAAGGTGTGTTGACAAAATTGTGAGGTCCGATGTTGATGTTACCACTCTTGATAAATCTTTGTCACAGCCTATTGTAAAACAAATAATTGACACACGCAAGGAGCTTGGTTTAACTGAGCCTGGATATGTTGAGTTTCCTGATAAGCATGTGAAGAGAATACACAGAGCTTTGGAATCTGACGATGTCGAGTTAGTTAGAATGCTTTTAAAAGAGCGCCATACTACTCTAGATGATGCGTATGCCCTTCACTATGCTGTGGAACATTGTGATGCCAAAACCACCACGGAGCTTCTTGAGCTTGGTATTGCAGATGTGAATCTTAGGAATCAAAGGGGTTATACTGTGCTTCACATTGCAGCCATGAGGAAAGAGCCGAAGATAATTGTGTCCCTATTAACCAAGGGAGCCCAACCATCTGATACTACATCAGATGGAAGAAAGGCATTGCAGATAGCAAAGAGACTTACAAAATCCCTGGACTTCTTTAAACTTACAGAACAAGGAAAGGCATCGCCAAAGGATCGGTTGTGCATTGAGATATTGGAACAAGCTGAAAGAAGAGAACCATTGCTATGGGAAGGTTCTGTTTCTCTTGCAAAGGCAGGGGAGGATCTGCGTATGAAACTTTTATACCTTGAAAATAGAGTTGCACTTGCACGACTGCTTTTTCCAATGGAAGCGAAAGTTGCTATGGATATTGCACAAGTGGATGGTACTTCTGAATTCACATTGTCAAAGAACATAGCTGATGCACGGAGAAATGCTGTGGACTTGAATGAGGCCCCCTTCATATTGAAAGAGGAGCATTTGCAAAGGATGAAAGCATTATCTAGAACTGTTGAGCTTGGGAAGCGTTTCTTTCCCCGGTGCTCTGACGTTCTTAATAAGATTATGGACGCAGAAGATCTATCACAGCTTGCATTCCTAGGAAAAGATACTCCGGAAGAACGGCAAAGGAAGAGAAAACGATACCTTGAACTACAAGACGCTTTAACTAAGGCCTTTTCAGAGGACAAAGAAGAGTTTGATCGTTCCACATTATCGTCATCATCGTCGTCCACACCAATGGGGAGGCCTTATGGTAAGACAAATTTCAAAAGGTAA MTPETPTMMVIDSRTAFSDSNDISNGSSICCVATTTTTATGAENSISTTADSAALLRLSENLNSLFQPSPSPSDSDNYADAKIVIAGDTREAAVHRCILSSRSPFFRSVFASRREKEKEKGKDRERMVKLELKDIAGDFEVGFDSLEAVLGYLYSGKSRQLPKGVCVCVDDDCSHVACRPAVDFAVEVLYLSQKFEIVELVALYQRHLLEILDKVAPDDVLVVLSVAELCGNACERLLGRCVDKIVRSDVDVTTLDKSLSQPIVKQIIDTRKELGLTEPGYVEFPDKHVKRIHRALESDDVELVRMLLKERHTTLDDAYALHYAVEHCDAKTTTELLELGIADVNLRNQRGYTVLHIAAMRKEPKIIVSLLTKGAQPSDTTSDGRKALQIAKRLTKSLDFFKLTEQGKASPKDRLCIEILEQAERREPLLWEGSVSLAKAGEDLRMKLLYLENRVALARLLFPMEAKVAMDIAQVDGTSEFTLSKNIADARRNAVDLNEAPFILKEEHLQRMKALSRTVELGKRFFPRCSDVLNKIMDAEDLSQLAFLGKDTPEERQRKRKRYLELQDALTKAFSEDKEEFDRSTLSSSSSSTPMGRPYGKTNFKR Relationships
The following mRNA feature(s) are a part of this gene:
Homology
BLAST of Spo20195.1 vs. NCBI nr
Match: gi|902160589|gb|KNA06459.1| (hypothetical protein SOVF_180800 [Spinacia oleracea]) HSP 1 Score: 1159.1 bits (2997), Expect = 0.000e+0 Identity = 606/606 (100.00%), Postives = 606/606 (100.00%), Query Frame = 1
BLAST of Spo20195.1 vs. NCBI nr
Match: gi|731369369|ref|XP_010696528.1| (PREDICTED: regulatory protein NPR1-like [Beta vulgaris subsp. vulgaris]) HSP 1 Score: 1020.4 bits (2637), Expect = 1.300e-294 Identity = 531/603 (88.06%), Postives = 569/603 (94.36%), Query Frame = 1
BLAST of Spo20195.1 vs. NCBI nr
Match: gi|1000977058|ref|XP_015571778.1| (PREDICTED: regulatory protein NPR1 isoform X2 [Ricinus communis]) HSP 1 Score: 766.1 bits (1977), Expect = 4.400e-218 Identity = 408/599 (68.11%), Postives = 480/599 (80.13%), Query Frame = 1
BLAST of Spo20195.1 vs. NCBI nr
Match: gi|223546583|gb|EEF48081.1| (Regulatory protein NPR1, putative [Ricinus communis]) HSP 1 Score: 764.2 bits (1972), Expect = 1.700e-217 Identity = 406/590 (68.81%), Postives = 478/590 (81.02%), Query Frame = 1
BLAST of Spo20195.1 vs. NCBI nr
Match: gi|1000977055|ref|XP_002514127.2| (PREDICTED: regulatory protein NPR1 isoform X1 [Ricinus communis]) HSP 1 Score: 764.2 bits (1972), Expect = 1.700e-217 Identity = 406/590 (68.81%), Postives = 478/590 (81.02%), Query Frame = 1
BLAST of Spo20195.1 vs. UniProtKB/TrEMBL
Match: A0A0K9QGN4_SPIOL (Uncharacterized protein OS=Spinacia oleracea GN=SOVF_180800 PE=4 SV=1) HSP 1 Score: 1159.1 bits (2997), Expect = 0.000e+0 Identity = 606/606 (100.00%), Postives = 606/606 (100.00%), Query Frame = 1
BLAST of Spo20195.1 vs. UniProtKB/TrEMBL
Match: Q6GUF0_BETVU (NPR1 OS=Beta vulgaris GN=NIM1 PE=2 SV=1) HSP 1 Score: 1020.4 bits (2637), Expect = 9.100e-295 Identity = 531/603 (88.06%), Postives = 569/603 (94.36%), Query Frame = 1
BLAST of Spo20195.1 vs. UniProtKB/TrEMBL
Match: A0A0J8BAA2_BETVU (Uncharacterized protein OS=Beta vulgaris subsp. vulgaris GN=BVRB_8g199180 PE=4 SV=1) HSP 1 Score: 1020.4 bits (2637), Expect = 9.100e-295 Identity = 531/603 (88.06%), Postives = 569/603 (94.36%), Query Frame = 1
BLAST of Spo20195.1 vs. UniProtKB/TrEMBL
Match: B9RK83_RICCO (Regulatory protein NPR1, putative OS=Ricinus communis GN=RCOM_1047190 PE=4 SV=1) HSP 1 Score: 764.2 bits (1972), Expect = 1.200e-217 Identity = 406/590 (68.81%), Postives = 478/590 (81.02%), Query Frame = 1
BLAST of Spo20195.1 vs. UniProtKB/TrEMBL
Match: A0A061GTE3_THECC (Regulatory protein isoform 1 OS=Theobroma cacao GN=TCM_037633 PE=4 SV=1) HSP 1 Score: 757.7 bits (1955), Expect = 1.100e-215 Identity = 403/598 (67.39%), Postives = 482/598 (80.60%), Query Frame = 1
BLAST of Spo20195.1 vs. ExPASy Swiss-Prot
Match: NPR1_ARATH (Regulatory protein NPR1 OS=Arabidopsis thaliana GN=NPR1 PE=1 SV=1) HSP 1 Score: 543.5 bits (1399), Expect = 2.900e-153 Identity = 305/593 (51.43%), Postives = 415/593 (69.98%), Query Frame = 1
BLAST of Spo20195.1 vs. ExPASy Swiss-Prot
Match: NPR2_ARATH (Regulatory protein NPR2 OS=Arabidopsis thaliana GN=NPR2 PE=3 SV=1) HSP 1 Score: 524.2 bits (1349), Expect = 1.800e-147 Identity = 308/594 (51.85%), Postives = 398/594 (67.00%), Query Frame = 1
BLAST of Spo20195.1 vs. ExPASy Swiss-Prot
Match: NPR4_ARATH (Regulatory protein NPR4 OS=Arabidopsis thaliana GN=NPR4 PE=1 SV=1) HSP 1 Score: 386.0 bits (990), Expect = 7.800e-106 Identity = 241/576 (41.84%), Postives = 358/576 (62.15%), Query Frame = 1
BLAST of Spo20195.1 vs. ExPASy Swiss-Prot
Match: NPR3_ARATH (Regulatory protein NPR3 OS=Arabidopsis thaliana GN=NPR3 PE=1 SV=1) HSP 1 Score: 376.7 bits (966), Expect = 4.700e-103 Identity = 239/562 (42.53%), Postives = 339/562 (60.32%), Query Frame = 1
BLAST of Spo20195.1 vs. ExPASy Swiss-Prot
Match: NPR5_ARATH (Regulatory protein NPR5 OS=Arabidopsis thaliana GN=NPR5 PE=1 SV=1) HSP 1 Score: 136.3 bits (342), Expect = 1.100e-30 Identity = 111/374 (29.68%), Postives = 171/374 (45.72%), Query Frame = 1
BLAST of Spo20195.1 vs. TAIR (Arabidopsis)
Match: AT1G64280.1 (regulatory protein (NPR1)) HSP 1 Score: 543.5 bits (1399), Expect = 1.700e-154 Identity = 305/593 (51.43%), Postives = 415/593 (69.98%), Query Frame = 1
BLAST of Spo20195.1 vs. TAIR (Arabidopsis)
Match: AT4G26120.1 (Ankyrin repeat family protein / BTB/POZ domain-containing protein) HSP 1 Score: 524.2 bits (1349), Expect = 1.000e-148 Identity = 308/594 (51.85%), Postives = 398/594 (67.00%), Query Frame = 1
BLAST of Spo20195.1 vs. TAIR (Arabidopsis)
Match: AT4G19660.1 (NPR1-like protein 4) HSP 1 Score: 386.0 bits (990), Expect = 4.400e-107 Identity = 241/576 (41.84%), Postives = 358/576 (62.15%), Query Frame = 1
BLAST of Spo20195.1 vs. TAIR (Arabidopsis)
Match: AT5G45110.1 (NPR1-like protein 3) HSP 1 Score: 376.7 bits (966), Expect = 2.700e-104 Identity = 239/562 (42.53%), Postives = 339/562 (60.32%), Query Frame = 1
BLAST of Spo20195.1 vs. TAIR (Arabidopsis)
Match: AT2G41370.1 (Ankyrin repeat family protein / BTB/POZ domain-containing protein) HSP 1 Score: 136.3 bits (342), Expect = 6.100e-32 Identity = 111/374 (29.68%), Postives = 171/374 (45.72%), Query Frame = 1
The following BLAST results are available for this feature:
BLAST of Spo20195.1 vs. NCBI nr
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. NCBI nr) Total hits: 5
BLAST of Spo20195.1 vs. UniProtKB/TrEMBL
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. UniprotKB/TrEMBL) Total hits: 5
BLAST of Spo20195.1 vs. ExPASy Swiss-Prot
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. ExPASy SwissProt) Total hits: 5
BLAST of Spo20195.1 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
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