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.TTTACTTATTAAAATATCTACCCAATGGAGTGAGTAACCAATTAACCATGTTATCTCATTTGCTCCCGAACGAACAGAGGGCAAGACAGGCACACACAGCAAGGAGTTCACTCTTCCTTCTTCAACACTGTAGGACAGAGAAACTTAAAGGTAGCAAAACGAGCTCAGAAGTTCATCCATGGCGGCGACCTCATCATCTTTGCACAGCCTCTTCACTTCTCCTCCACAGGAATTCATATCACTACTTTCACAGAACTTCCGTTCATTTCAGCCATGGCGTCCTCAACTTTCCGCAAAGCCGAAGCTTCCCGCCATTCCCGCCATTTCCTCGCCAAATACAAGGTCTGAACTTCAATTTCTTTTCCGGTTTCAGTTCTTTCTCAATATCTCGTCAATTCACATGCTGAAATTCATCCACAGTTTGTAATTATGCATTTCCAGTTGATTTTGAGTATGCAGTTATATTATCTGAACAATTTTCGGATTTCGCAGAAGTGCGAATTTTAGGGTTAGAGCTGGTTACAAGAAGAAGCCAATGGATACGCCGGGGGCATACGAGTTGATTGATGAGAAGAGTGGAGAGAGAGTGATTCTGTGGGGTGGAGTTGATGATGTTGAGCCTTCAATTCCATCAAAGAAAGTTCTTTCATGGAATCCTAGTAAGAATCAGAATAAATCCTCGAGTGCCAGGGAAAATCTAGGAGGTACATCTTTTCAGCTTGCAAAGTTTGTCTAATGAACTAGTGTTATGTTAAGCTTGTTTGATAAGGATAATATAGATTTTACGGAGTATAATTTATGCGGTTTTTCGGAATCTATACACTTTAGTTAATGTTTGCTGTAAAGTTTAACTTTTAGATGCCGGTAATCAGGAATTCCATGTTTGAGGTCAAGTGGTGTGAAGATTTGGGGACATCTCTATATGGAGACAAGGAAAAAAGGAAAAAGGGTGTTGGAGGTGTGACTTGAATAGTTGTTGTTAAAGGATGAACTAATGGAATTTTCTACTGAGAAAGTTAGGGTGTTTTTAAGGATGTATTGCATCGTTATTTGGGAGTTATTTCTGTACAATCATAACCTTTCGCCTATGGTGATGAATGAGAATTAACCTTAGAGTTTATTGTGTCGTTTGATGTTCTATTCCTATTGTAGTTGCAACACACCCCACACATTAAGCTGGTTTATGCAAAGATCCCTATTAATCGTTTAATTGGATTATTACAAAGTGTCTGATATGAGTTGTGATAGATCAAAGTACTACGCATTTTTATCTTAATCCTCGAGTTTATATTTCATTATAAACATTTTTATGCTTTTCTATGTATTATTATTTATAGGCAGTGGCCTCAGTGAGCCTCCATCTGTTGGTCATAAAAATGGTATTTCGTCTACTACTACTCTGAGATTGTCCAAGGGTGTTGGAAGGTTGAAAGCTGTCAAGATAAAAAGCATTGTAAGAAAGGTTTCAAAGGAAAAGGAGAAAACCAACGAGCATAGGTACGAGGAACCAGATATGGATGAACTAGATGATGATGACTCTGATGATGATGAATATGATGATGATGATGATGATCCTATTGTATCGTCGGCTCCTCAAGCCGTCTGGATCAGAAATAAAAACGTTTCTGTTAAGAGTGGCATTGAGCAGTTAATAGACAATAAATCATCAAATAAACCTTTCGAGTCTAAGGAAAACTTGACTTTTTCAAAAGGATGGAATGGTAGAGAACCTAGACGTAGTGATAGGGGTGAAATAAGAGACCCAAAACCTACTCGTAAATATGATGCTGGGAGTGACTTTTTCAGCCGAAAATCATTTAGGGAATTAGGCTGTGGCGATGACATGATTGAGGCTCTGAGAGCACAGGACTTTGTTCGCCCTTCACACGTTCAGGTACATCAATTTGATTGCTTGTAAAAGTTCATTTAGAGTTTTTAAGCTACTTGTCTTATTTAGAGAATTTGTATACCTGTTGTATATATATATTTTTTTTGATAATGTACACCTGTTGTATAACATCCAGTGAAGTTTGTGTTTTCTTGTTCTTGCAAACAGTAGATTTTTTGTCAATTGTGTCATTTATTTTAATGGTTCAAAGTGACTCCTTTTCATAATTGCTGAAGTTTGAACTTGAAAAAAGAAAATATGTTCTAATGCTTTTCTAGCAGATCTTCAGCTTATTGATCCTGGATGTGGAATCTTGTGTGCAAAAGGTCATGTGGGTTCAGTGGGTTTGATAGCTATTTTGAGTCTTTATTTGTAGGAACCTTGTGTTTTGGAGTTTTTCTTTTCAAATTTGAGATGCAAATTAATATGGATGGATGTATTTTCCATGCCCATGCCATACGATTACCCTAGTTCCTCTAAGAAACTCCAGCATGCAATATGTGTGCGTTCAAGGTCAGATATACAGATATTACCTTTGTGATTATGGTTAAGTTTGTGATGGACTTTTATTGGAAAGGCAATGGTTCATCTGTTATCTGTCATTAGAAAAGCACAGAAAAATTCAGTGTGTTATGAGTATTACGTTCTGTCCATTGATCGGTGGCTGTTGTGACCTTTTCAGTACTATAATTCTATTAAATACGTGGGATGTGAAGCCTTATTTAATGGAGATATGACATCCAACTTTTCTTTTCATCAATTATAAGCCGAAAGTCGGGAATGGGCAACTGGAATTTGATCATGGTACCATTAAGGATGACGACTGATACCTAGCAATTTCGGTGAATTAAGGTTTCTTTACGTTAGCTGAGAGCACAAGACTAGGGTGCTAAAAGGAAAAACTATCGTCTATTCAATGAGTCGGACAGTTAAATCAGTTTTACTTGTGTGAAGCTTGATTCCCCACGTCAAAAAAGAAGCATGGAAATTCAGGGTGCTGTGAGAAATTATTCAGTCCGTTAACAGATACCTAAGGTAACCTTTTTGGTTCTGTTAAAAAAGACAGATGTGAAGCCTTAAGGAGATAAGATATCTAACTGCCTTTCATCAATTCTAAGCTCTAGATTTGGGAGTGACTGAGAAAACTCCTCACATTTTATTTTAGTACCTAGAAAAATGACTAATGAGGCCCATAGAAATTTTTGTGAATAAATAGCTCTTTTTTTCCGCTAGCTTACAGCTCAAAAGATCTTTTATTCAACGAGATTAACTGTACAGTAAGAGTTGCTTGTGAGGAGCTTGGTTGAGGGGGAATTCAAACTTCTAAGAATGCTACCCTGAAAGCTATTGCCAGTTCATGATCTATGCCATGCCTGTGAACCTATGAAGTTAGGCTTTGTTCTATATCTATTCTCCTGAAATTTGTTTATGCAAACTTATTGGAACTAATCCGATATTTTAACTTACGAAACCTTGTTTTAGGTGTGAGTTGAACTTGAGCACCCCTTATGTTTACGTATTTTGAACTAGCTTTTCATGACACTGTTTGCATAGAGTCATAAAGGTGAAATGTTCAAAGCCTCAGTGTCCAAGTGGAAATGACAGAAAGTGATGCTCTTTTTTTTTGTTTTTTTATGGCAAAGCCAACTCTGTTTACTGAAAGTCTCAAACCCTTTAAAATACAAATTTTTGATGATTAGTCTATGGCCTATATTCATGGCCTAGACTAAAGAATCACACTCTAAGTATCTAGGTCTCTTTAGATCTCTTCTTTTCCGATTCAATGGCAATGTGGAATCCGATTCAACTCAAACATCATGATGTTAATCTTACTGTGATCCATCTTTACTGACTGGGCGAGTCATCATATTAGCTGATTTAATGTATCATAAAAATAGATAAATTACTTAAGTGACTCAGTAAGGGTTTCTAGACCTTTGCTGGTAATAAATTCTTGATCTTACTCTATGGAAGATTATTCTTCATTTAGCCATCCCTAGACAAAATTGGCAGGAAAAAGAAACAACTCACATATGGAGATCTTGAAATTTATTATAATAATCCTAAAGGGTAGACAAAAGACACAGTCAAGTACATCTTCTACATGATATTTTAGGTTTACTAGGGATTGAACAGCTGAAATGCAGCTTGACCATTGATGTCTCAAACAATATGCTCCCTCTGTCCCAAAGATATTGCTTACCTTCCTCATTCGGCTAGTTCAATTATAGTATCCTCCTTAAGTAATATTATAGGTTAATGCATATTTATCCTATCATCTTTTGTATTCTCACTGTACTTGCATAATATAGGTTAATACCAACTCATTTATTGTACTTCGCAATACTTGCGAAACACTCTTTAAACTTCACTCAACTGATGCTTTGGAAATACTTAAAAAGTGTACAACGGCCTTCTTCAAATTTTAGATTTTGATTGTTGTTCATTGTGTGTTGTGTACTAGATTTTTGCTATATACACTTTATTAGACTTACTATCACTTGGTATTTCTGAATGCAGGCAATGGCATATTGTTCTGTTGTAGAAGGGAAGAGCTGCATTATAGCTGATCAAAGTGGATCAGGAAAAACATTGGCATACCTTGCTCCAGTTATTCAACGTCTTAGACAAGAAGAGCTTGGAGGACATAGTAAGTCGGCACCAAAAAGTCCACGAGCTGTAATATTAGTCCCAACTGCTGAGCTTGCTTCCCAGGTAAGCTGATAATGTGCCATGACTCCCATCTTATTTTCTTGTGCATCTTTTGGTGTTTTATATGCTTATATTCTGTATTTTACGCCTGTGGCTGTTATTGCTCATTCATAACATAATGGTTTTTATAAGGCATTTCTTATGTTTCTAAGTTCTAATAATGATCACATATTGACATACATCCTCTAAAATATCCTTGTTTTTTTCCCGAAAACTACTCAAGAAACACATCCTTTTCTTTGTTTAATGGTTTTTTATCTCGATTATTTTTTTCATCAGGACATATGATAAGCATATACTCCTTATTAACTAAAGACTCACTAATTTATGTCAATTTCTGAATTGCATAAGGTAGGATATGCAGGAAGCATAGAGCATGTTTGGCTAAAATTAGAATAACTGGTCAGGTGTATTCTAAAATCCTGTTCTTGGCTGGTTCTATGACAATGGTTCTAGAGTATCTTGTTTTTGGGTGTTGTTAGACTGAGCCTGCGCTCTATTTCTCCTTTGTTTAAATGCAGGTTCTGCAAAATTGTCGATCCATCTCAAAACTTGGTGTTCCCTTCCGCTCTATGGTTGCAACAGGAGGTTTCCGACAGCGAACTCAGTTGCAGAGTCTTGAACAGGATTTAGACGTGCTTATTGCCACACCGGGTCGTTTCATGTACTTAATCAAAGAAGGGTTTTTGCAGTTAACAAATCTTAGATGGTATATTTCCTTACCTCTCTCTCTCTTAAGACGATATGATCTTTCTTCTGTGTAGTTTATTTTTCTAGACAAAAACAACCCAGTATACATTCTGTCAAGGCCGGTATGGGGTGGTTCAGATGCTGTAGACTTGCTACTGAATAGTCAAAAACTATTCGAAGTTTCTTCAAAAGTATTAAACTATTAATCAATATATTCCTTGTTAACTTTGTGTGTGTGTGTGTGTTTATGTGACAGTAAAAGGAGCATTTTTATAATATCATCTCTCGTAAAAGTAATGATTACACCTGCTTCTACGTGAGACAATCTATTATCTTGTTTACCATGTGGTCGATGAGGATTCACTTGAGATTTCTTGTGAAGAAACCAATTGGAGTTGCATTTATCTAAAGAGTAGAGAATCTTTGAAACCATTTAGGGGGCGTTTGGTAGGGGGGATCAGAAAAGGAAAAGGTAACTAACCCGCATTTCTGTTAATGACTGTTTGGTTAGGTACTTTGTATTTAATTTCTCTTTCCCCACTTTTCCTTTTGGAGTTCCCCGTAAACTCTTCCCATCAAGTGGAACTTGGGACCTGAGTAACACCCCATTTCCCTCTATCCTCTTTTACATTCCACAAGCCCCTAACCTCCTCACTGTTGGGAAATGAAGTAAAAAGCTTAATGGGAAAATAGAAAATAATCTCAACTAGTCAACTTCATTCCACTGAATTACGTACAAGCTACGATAAATAGAATAATGAATAACTGTAAAAGCTAAAAACTAGGACCACTTATTTACAAACAATCACATGTTTATTGACTAAACTACTGATGTTAAAGGCTTAAACTTAGGAACTTAACTGGCCACGAACTGACCCATTAAGCACTTCACTAGCCACTAACTCCTATTTAAGGAGTCTCAAGACTCTCAACACACCCTCTTCCGGGAACCTCCATTTTCCGACAACTAACCGTCCATTTTGCCGTGTATGGACTCATACCTGGATTGTACTTCACACTTGCATAGCTCAATATTTTTATCTTGACCATCAAACCATCAAGATCCTGAACACCATGAAGAGCTTGCTCTCTTCTTCAACATTTGAAACAACACTCACCAACCGCCACACTCCCACCACCTACAGCCTACCCGTTGCCACCTCACTCTCACCCCCACGGCCTAAGTTTCCGAACCCTGAACAACCGCCCAAATTTGACACCCTTATCTCACCATCACCACCACAACATCACCACCACAACATCACCACCAATTGGCATCGGTCCCAACAACCACCCCAACCCCAACCCCACCAGAACATGACCTAAAAGAGGAGAAGAGATTGGGGAAAAAATTGGAAGTTGACTAAGGTAAAAGGAAAATGGAGGAGTGAGAGATTAAAGGGTGGAGGGGAAGATATTGGGAAAAAAAATTAACTTTGAACAAATGTGGGAGAAGTGGCTGGGGTTGGAAGTCAGAAGATGACCTTTAATTTTTTTTTTCTTTTTTCTTTACCAAAGCTTGCATTCCTTTCACTTTCCTGAGCTTCGCCCAGTTAATCTTGTTGATTGGCGAGCAAAGCATATCAAGGGGCATTTTAGTAAATATATTATCAAAATATATAGTATGTATATCAGTATATCAAATATACAATCTCTTTTATAACAAAAATTATTCTTTTTAAAAAAAAATTAACAATTAAACTTTGTATATATTTTTAGATTGTATATTATTTCATTATATTTACGAAAATGCCACATGATTGGCATATTTCGCCAATCAAGGAGATTGTTTAGAAATTTCTCCACTTTCCCTACTGCGTTTTAAGGGGTTTTTATTTCTTTCGTTTTCTTTATCTTTCTTGATACCTCTCGTTCCCTTGCGCTGAACCAAACTGCCCCTAAAGTGCTTACAAACAAATAACACTCTTTTTCTTCTTGTTTAGTTTGTTGTCTGTGGCAAGGTTGTCTCAAGTCTCAACCACTTTTTAAAAAACATTAGCTATTGAATTACCAGTTTTGGAACTTTGTTGGCTGTGCTGTGGATTATAGATATGGGTATATGACTTATATCTGAGAAAATTGAATTATCCAGAATTAAACATTTTGACTCGACCCAATTCAAAATTTATTATTACTAATACTGATTAGTTTTTCAAAGCGTTTAAATTTTGTAACAGACCCAAATATGACCCCGACTGAATTGATGTTTAGGAAATGGAATGGCTCATCACCCGAATATGACCCAAACTGAATTAACCTAAATCAAACCCAATTTGAACGGCCAGTTTTCCACCTCTAGCATGAATGTTCACGATTGAGTTAGAAATAATGCAAAGCACACTCTTAACTTTTAGAGCACTCTGAAGAACATGACAGATGGAAGTTGTAATTATTTGCCTTTTGTTTTCCCTTATTTTCTGTTGATCTTGCTAGAGAAGAGAGTTGAAAGTACAATTTGCACTTGCAGCCATAATGCAAGTGAATGTCCTCTTTGTAAGGATTAGGTTATTAAAGCCTTAGAGGGAAATATGATCAAGTGATTATTTTAGAGCTTGTAGACAAACAAGAGAAAACAAATGAAAATTTTGCTCTGATGATGACGCACTGTGTTCGAAGTATATAAGGATATTTTTTTTATTAACATTGTCCTCCAATGCTGATGGTTTAACCTGTATGATAGAGTGAAAAACCATCATTACTAACTACTTGTATATATACACATCCTGGATTTATGAGACAAAAGTCTTGGGCAGGAACGAGTAATGAAATTCATTGCAAGGATTCACAAAAGATGGCAGCATAGTCTAGTAGTCTATTGATTGACTAACAGCTAACCCATCAACAAAGCTGTCAATATACCTTTCTTGCAGGCGGTATATTAGGTTTATAGATAAAATTGATGGAACAGTAATACAATTAGGTGCTTGCTTAATGGGATTAAAAGTTACTGTTATATATCAATTGTTAATGCCAAGGCCTCAAGTTTATATGATAACATCAAGCTTCCCATGAATAGAAAAAAGTGTTCTTTTTATAGGTGCAAGTTCCTTGCTTTCTATGTCTAACTTCTGAGTGGTTTTTAAATTCGTTGTTATGCCAAGTTTTCCTGTACACTTTCTTTTACATTTTATTCTGTTATATCTAAGAGATACACATGCAAACTTTTATGAACATTTCCCTTTCGTTACAATTACCTTTCGTCCTTTCTATCAGCACATCACAAGCAAACTTAGTCAATTTATATGAAAATTTAAGTTTAAAGTACATGGTCTTGTAATGTAAATTCACAATTAAGTCCTGGGGAATGTTTTTGTTGTGAATTCTCTGGTTGTTTCTTATTGGGTTAGTGGAATTTATTGAACAGGTGGCCTTAGTAAGGGCTTATTTTATTTGCCTTCACTTTGCTTTCGTTCTTCTAAGCTTACTCTAGTAATAGCTGAGTGGTTTCACTTTCATCTTACTCTTAAATTAATGTCACAGTGCTGTGTTGGATGAAGTTGATATACTCTATAATGATGAGGATTTTGAACAAGCTTTGCTGAGTCTAACTAACAAGGCACCAGTTACTACGCAGTATCTCTTTGTGACTGCCACATTACCTGTGGAAATTTATAACAAACTTGTTGAGACCTTCCCAGATAGTGAGGTAGTCATGGGACCTGGAATGCACCGGACGAGTTCTGGCCTTGAAGAGGTGGGTATTGTACTATCACATTTATTTCAGCAACCTCTTTGGGGACTATCTGTTGATTGTCATTCTTTAATTTATGCATCAGGCAGCTAGTAGTATCATACTATCATAGTATGCTAGATGGAAGCTTCAACTTTAATAACATAAATGAGGAGATTTTTGCTTTTAATTTTAAGAGAACCAAAAAGGCTCGACTAAAACGACTTGTTCATCTTTTGATTCTTAAAGGTAGAGAGATATTGCCTTGACTAAAACGTGAAAGTACTATTGCATAAGTTGGGACAGAGACTGTTCCTTGTAGGTTGTAACTTGTAAGTGAAATTACATGCCTCTAGAGTCAGCCTCATGGCCCCATTTCTTTTCCTATGTGATCTGAAATTTTCCAAAATAAATGAAAATGTGGCAGACTCAATCAGTTATTGTTGCTGAGCAGGTTCTTGTAGATTGTAGTGGAAATGAAGAGTCAGAAAAGACCCCAGAAACAGCATTTTCCAATAAGAAGTCTGCTCTTTTGAGGCTTGCAGAGGAGAGTCGAGTTTCTAGGACTATTATCTTCTGCAACAAGGTAACTTGGCTACTTTCATTTTCGGTGGCTCACACCTTGGATTCCTCTCTCATACCCTCTTTAATATTTGTAGATTGAGACTTGTCGAAAGGTTGAGAATGTCCTGAGGCGTCTTGATAGAAAGGAAAATCAGATACGGGTTCTTCCATTTCATTCTGCTCTGGAGCAAGAAACAAGGCTCAGGAATATGAAGGAGTTCCTCAGTCCGGTTACAGAAAACCGTTCTCTGTTTCTAATTTGTACTGACAGGTTAGTCACAGATACTTCTGAACAAAAATAAATTGACCCTTCTCTATTTAGGTTTTAGTTTAGTTAATTGGCCGAAACTAATTTTTGGGTGTTGGAAAATTGTTGAAGAGCATCTCGAGGAATAGACTTTCCCAGTGTGGATCATGTTGTACTATTTGACTACCCTCGTGATCCAAGTGAATATGTACGGCGTGTTGGAAGAACAGCAAGAGGTGCTGGAGGTGTAGGGAAGGCCTTTGTGTTTGTGATAGGTAAGCAAGTTTCTCTGGCAAGAAGGATCATTGACAGAAACCAAAAGGGACATCCTTTGCATGAAGTGCCTTCCTCTGCTTATGAATGGTGATAGATATGATTGGTAATGTAGGGGTTCTTGGGGGAACTTTTGCATCTTTTAACTTCAGGCTCCTCAAATTTTGAGTTGTAAAATAAATTTTAGTTATTATAATGGCTAATCAATGTAATCATTAGTTTTTATTTATTTATTGAGTTTCTGTTAAAATGGTAGAATCGTAAAGTAAACGATGAGAAATGAAAGAAAAACACTGAAGTTTTATTGATGCATTCATGGTGCAAGGGTCATGTGTGCAAGGGTCATGTGTGCAAGGTTTGGGTCAAAAAAGGACAAAGGATAACCATAAACGAAGGTTTTTTAGTTTCAAATTTTTGTTTTTTTTGTTTTTTTTGACATGAAACCATAAATTTATTTTCAAGGGAAAAAGTGTGAAAGAATTTGATGTAATTCCAGTTTTACAACTCCTGCTGGCTGCTACTACTAATGACGATTATGAAATATTCTTATGAGTAAACTATGTCAAGCAATTTTCACCTTAATTATGTTAACCTGAATTTTGATAAATCGGCCTTAATTTTCTCCTGCATCCCCCT TTTACTTATTAAAATATCTACCCAATGGAGTGAGTAACCAATTAACCATGTTATCTCATTTGCTCCCGAACGAACAGAGGGCAAGACAGGCACACACAGCAAGGAGTTCACTCTTCCTTCTTCAACACTGTAGGACAGAGAAACTTAAAGGTAGCAAAACGAGCTCAGAAGTTCATCCATGGCGGCGACCTCATCATCTTTGCACAGCCTCTTCACTTCTCCTCCACAGGAATTCATATCACTACTTTCACAGAACTTCCGTTCATTTCAGCCATGGCGTCCTCAACTTTCCGCAAAGCCGAAGCTTCCCGCCATTCCCGCCATTTCCTCGCCAAATACAAGAAGTGCGAATTTTAGGGTTAGAGCTGGTTACAAGAAGAAGCCAATGGATACGCCGGGGGCATACGAGTTGATTGATGAGAAGAGTGGAGAGAGAGTGATTCTGTGGGGTGGAGTTGATGATGTTGAGCCTTCAATTCCATCAAAGAAAGTTCTTTCATGGAATCCTAGTAAGAATCAGAATAAATCCTCGAGTGCCAGGGAAAATCTAGGAGGCAGTGGCCTCAGTGAGCCTCCATCTGTTGGTCATAAAAATGGTATTTCGTCTACTACTACTCTGAGATTGTCCAAGGGTGTTGGAAGGTTGAAAGCTGTCAAGATAAAAAGCATTGTAAGAAAGGTTTCAAAGGAAAAGGAGAAAACCAACGAGCATAGGTACGAGGAACCAGATATGGATGAACTAGATGATGATGACTCTGATGATGATGAATATGATGATGATGATGATGATCCTATTGTATCGTCGGCTCCTCAAGCCGTCTGGATCAGAAATAAAAACGTTTCTGTTAAGAGTGGCATTGAGCAGTTAATAGACAATAAATCATCAAATAAACCTTTCGAGTCTAAGGAAAACTTGACTTTTTCAAAAGGATGGAATGGTAGAGAACCTAGACGTAGTGATAGGGGTGAAATAAGAGACCCAAAACCTACTCGTAAATATGATGCTGGGAGTGACTTTTTCAGCCGAAAATCATTTAGGGAATTAGGCTGTGGCGATGACATGATTGAGGCTCTGAGAGCACAGGACTTTGTTCGCCCTTCACACGTTCAGGCAATGGCATATTGTTCTGTTGTAGAAGGGAAGAGCTGCATTATAGCTGATCAAAGTGGATCAGGAAAAACATTGGCATACCTTGCTCCAGTTATTCAACGTCTTAGACAAGAAGAGCTTGGAGGACATAGTAAGTCGGCACCAAAAAGTCCACGAGCTGTAATATTAGTCCCAACTGCTGAGCTTGCTTCCCAGGTTCTGCAAAATTGTCGATCCATCTCAAAACTTGGTGTTCCCTTCCGCTCTATGGTTGCAACAGGAGGTTTCCGACAGCGAACTCAGTTGCAGAGTCTTGAACAGGATTTAGACGTGCTTATTGCCACACCGGGTCGTTTCATGTACTTAATCAAAGAAGGGTTTTTGCAGTTAACAAATCTTAGATGTGCTGTGTTGGATGAAGTTGATATACTCTATAATGATGAGGATTTTGAACAAGCTTTGCTGAGTCTAACTAACAAGGCACCAGTTACTACGCAGTATCTCTTTGTGACTGCCACATTACCTGTGGAAATTTATAACAAACTTGTTGAGACCTTCCCAGATAGTGAGGTAGTCATGGGACCTGGAATGCACCGGACGAGTTCTGGCCTTGAAGAGGTTCTTGTAGATTGTAGTGGAAATGAAGAGTCAGAAAAGACCCCAGAAACAGCATTTTCCAATAAGAAGTCTGCTCTTTTGAGGCTTGCAGAGGAGAGTCGAGTTTCTAGGACTATTATCTTCTGCAACAAGATTGAGACTTGTCGAAAGGTTGAGAATGTCCTGAGGCGTCTTGATAGAAAGGAAAATCAGATACGGGTTCTTCCATTTCATTCTGCTCTGGAGCAAGAAACAAGGCTCAGGAATATGAAGGAGTTCCTCAGTCCGGTTACAGAAAACCGTTCTCTGTTTCTAATTTGTACTGACAGAGCATCTCGAGGAATAGACTTTCCCAGTGTGGATCATGTTGTACTATTTGACTACCCTCGTGATCCAAGTGAATATGTACGGCGTGTTGGAAGAACAGCAAGAGGTGCTGGAGGTGTAGGGAAGGCCTTTGTGTTTGTGATAGGTAAGCAAGTTTCTCTGGCAAGAAGGATCATTGACAGAAACCAAAAGGGACATCCTTTGCATGAAGTGCCTTCCTCTGCTTATGAATGGTGATAGATATGATTGGTAATGTAGGGGTTCTTGGGGGAACTTTTGCATCTTTTAACTTCAGGCTCCTCAAATTTTGAGTTGTAAAATAAATTTTAGTTATTATAATGGCTAATCAATGTAATCATTAGTTTTTATTTATTTATTGAGTTTCTGTTAAAATGGTAGAATCGTAAAGTAAACGATGAGAAATGAAAGAAAAACACTGAAGTTTTATTGATGCATTCATGGTGCAAGGGTCATGTGTGCAAGGGTCATGTGTGCAAGGTTTGGGTCAAAAAAGGACAAAGGATAACCATAAACGAAGGTTTTTTAGTTTCAAATTTTTGTTTTTTTTGTTTTTTTTGACATGAAACCATAAATTTATTTTCAAGGGAAAAAGTGTGAAAGAATTTGATGTAATTCCAGTTTTACAACTCCTGCTGGCTGCTACTACTAATGACGATTATGAAATATTCTTATGAGTAAACTATGTCAAGCAATTTTCACCTTAATTATGTTAACCTGAATTTTGATAAATCGGCCTTAATTTTCTCCTGCATCCCCCT ATGGCGGCGACCTCATCATCTTTGCACAGCCTCTTCACTTCTCCTCCACAGGAATTCATATCACTACTTTCACAGAACTTCCGTTCATTTCAGCCATGGCGTCCTCAACTTTCCGCAAAGCCGAAGCTTCCCGCCATTCCCGCCATTTCCTCGCCAAATACAAGAAGTGCGAATTTTAGGGTTAGAGCTGGTTACAAGAAGAAGCCAATGGATACGCCGGGGGCATACGAGTTGATTGATGAGAAGAGTGGAGAGAGAGTGATTCTGTGGGGTGGAGTTGATGATGTTGAGCCTTCAATTCCATCAAAGAAAGTTCTTTCATGGAATCCTAGTAAGAATCAGAATAAATCCTCGAGTGCCAGGGAAAATCTAGGAGGCAGTGGCCTCAGTGAGCCTCCATCTGTTGGTCATAAAAATGGTATTTCGTCTACTACTACTCTGAGATTGTCCAAGGGTGTTGGAAGGTTGAAAGCTGTCAAGATAAAAAGCATTGTAAGAAAGGTTTCAAAGGAAAAGGAGAAAACCAACGAGCATAGGTACGAGGAACCAGATATGGATGAACTAGATGATGATGACTCTGATGATGATGAATATGATGATGATGATGATGATCCTATTGTATCGTCGGCTCCTCAAGCCGTCTGGATCAGAAATAAAAACGTTTCTGTTAAGAGTGGCATTGAGCAGTTAATAGACAATAAATCATCAAATAAACCTTTCGAGTCTAAGGAAAACTTGACTTTTTCAAAAGGATGGAATGGTAGAGAACCTAGACGTAGTGATAGGGGTGAAATAAGAGACCCAAAACCTACTCGTAAATATGATGCTGGGAGTGACTTTTTCAGCCGAAAATCATTTAGGGAATTAGGCTGTGGCGATGACATGATTGAGGCTCTGAGAGCACAGGACTTTGTTCGCCCTTCACACGTTCAGGCAATGGCATATTGTTCTGTTGTAGAAGGGAAGAGCTGCATTATAGCTGATCAAAGTGGATCAGGAAAAACATTGGCATACCTTGCTCCAGTTATTCAACGTCTTAGACAAGAAGAGCTTGGAGGACATAGTAAGTCGGCACCAAAAAGTCCACGAGCTGTAATATTAGTCCCAACTGCTGAGCTTGCTTCCCAGGTTCTGCAAAATTGTCGATCCATCTCAAAACTTGGTGTTCCCTTCCGCTCTATGGTTGCAACAGGAGGTTTCCGACAGCGAACTCAGTTGCAGAGTCTTGAACAGGATTTAGACGTGCTTATTGCCACACCGGGTCGTTTCATGTACTTAATCAAAGAAGGGTTTTTGCAGTTAACAAATCTTAGATGTGCTGTGTTGGATGAAGTTGATATACTCTATAATGATGAGGATTTTGAACAAGCTTTGCTGAGTCTAACTAACAAGGCACCAGTTACTACGCAGTATCTCTTTGTGACTGCCACATTACCTGTGGAAATTTATAACAAACTTGTTGAGACCTTCCCAGATAGTGAGGTAGTCATGGGACCTGGAATGCACCGGACGAGTTCTGGCCTTGAAGAGGTTCTTGTAGATTGTAGTGGAAATGAAGAGTCAGAAAAGACCCCAGAAACAGCATTTTCCAATAAGAAGTCTGCTCTTTTGAGGCTTGCAGAGGAGAGTCGAGTTTCTAGGACTATTATCTTCTGCAACAAGATTGAGACTTGTCGAAAGGTTGAGAATGTCCTGAGGCGTCTTGATAGAAAGGAAAATCAGATACGGGTTCTTCCATTTCATTCTGCTCTGGAGCAAGAAACAAGGCTCAGGAATATGAAGGAGTTCCTCAGTCCGGTTACAGAAAACCGTTCTCTGTTTCTAATTTGTACTGACAGAGCATCTCGAGGAATAGACTTTCCCAGTGTGGATCATGTTGTACTATTTGACTACCCTCGTGATCCAAGTGAATATGTACGGCGTGTTGGAAGAACAGCAAGAGGTGCTGGAGGTGTAGGGAAGGCCTTTGTGTTTGTGATAGGTAAGCAAGTTTCTCTGGCAAGAAGGATCATTGACAGAAACCAAAAGGGACATCCTTTGCATGAAGTGCCTTCCTCTGCTTATGAATGGTGA MAATSSSLHSLFTSPPQEFISLLSQNFRSFQPWRPQLSAKPKLPAIPAISSPNTRSANFRVRAGYKKKPMDTPGAYELIDEKSGERVILWGGVDDVEPSIPSKKVLSWNPSKNQNKSSSARENLGGSGLSEPPSVGHKNGISSTTTLRLSKGVGRLKAVKIKSIVRKVSKEKEKTNEHRYEEPDMDELDDDDSDDDEYDDDDDDPIVSSAPQAVWIRNKNVSVKSGIEQLIDNKSSNKPFESKENLTFSKGWNGREPRRSDRGEIRDPKPTRKYDAGSDFFSRKSFRELGCGDDMIEALRAQDFVRPSHVQAMAYCSVVEGKSCIIADQSGSGKTLAYLAPVIQRLRQEELGGHSKSAPKSPRAVILVPTAELASQVLQNCRSISKLGVPFRSMVATGGFRQRTQLQSLEQDLDVLIATPGRFMYLIKEGFLQLTNLRCAVLDEVDILYNDEDFEQALLSLTNKAPVTTQYLFVTATLPVEIYNKLVETFPDSEVVMGPGMHRTSSGLEEVLVDCSGNEESEKTPETAFSNKKSALLRLAEESRVSRTIIFCNKIETCRKVENVLRRLDRKENQIRVLPFHSALEQETRLRNMKEFLSPVTENRSLFLICTDRASRGIDFPSVDHVVLFDYPRDPSEYVRRVGRTARGAGGVGKAFVFVIGKQVSLARRIIDRNQKGHPLHEVPSSAYEW Relationships
The following mRNA feature(s) are a part of this gene:
Homology
BLAST of Spo09461.1 vs. NCBI nr
Match: gi|902176764|gb|KNA08832.1| (hypothetical protein SOVF_159200 [Spinacia oleracea]) HSP 1 Score: 1185.2 bits (3065), Expect = 0.000e+0 Identity = 626/690 (90.72%), Postives = 632/690 (91.59%), Query Frame = 1
BLAST of Spo09461.1 vs. NCBI nr
Match: gi|731364720|ref|XP_010694129.1| (PREDICTED: DEAD-box ATP-dependent RNA helicase 50 [Beta vulgaris subsp. vulgaris]) HSP 1 Score: 1018.8 bits (2633), Expect = 4.300e-294 Identity = 551/698 (78.94%), Postives = 596/698 (85.39%), Query Frame = 1
BLAST of Spo09461.1 vs. NCBI nr
Match: gi|720095848|ref|XP_010246806.1| (PREDICTED: DEAD-box ATP-dependent RNA helicase 50 isoform X1 [Nelumbo nucifera]) HSP 1 Score: 703.0 bits (1813), Expect = 5.300e-199 Identity = 405/667 (60.72%), Postives = 480/667 (71.96%), Query Frame = 1
BLAST of Spo09461.1 vs. NCBI nr
Match: gi|297736840|emb|CBI26041.3| (unnamed protein product [Vitis vinifera]) HSP 1 Score: 694.1 bits (1790), Expect = 2.400e-196 Identity = 396/645 (61.40%), Postives = 472/645 (73.18%), Query Frame = 1
BLAST of Spo09461.1 vs. NCBI nr
Match: gi|567898902|ref|XP_006441939.1| (hypothetical protein CICLE_v10019165mg [Citrus clementina]) HSP 1 Score: 679.1 bits (1751), Expect = 8.100e-192 Identity = 382/630 (60.63%), Postives = 460/630 (73.02%), Query Frame = 1
BLAST of Spo09461.1 vs. UniProtKB/TrEMBL
Match: A0A0K9QNK1_SPIOL (Uncharacterized protein OS=Spinacia oleracea GN=SOVF_159200 PE=4 SV=1) HSP 1 Score: 1185.2 bits (3065), Expect = 0.000e+0 Identity = 626/690 (90.72%), Postives = 632/690 (91.59%), Query Frame = 1
BLAST of Spo09461.1 vs. UniProtKB/TrEMBL
Match: A0A0J8BCK5_BETVU (Uncharacterized protein OS=Beta vulgaris subsp. vulgaris GN=BVRB_3g070540 PE=4 SV=1) HSP 1 Score: 1018.8 bits (2633), Expect = 3.000e-294 Identity = 551/698 (78.94%), Postives = 596/698 (85.39%), Query Frame = 1
BLAST of Spo09461.1 vs. UniProtKB/TrEMBL
Match: V4VQE9_9ROSI (Uncharacterized protein OS=Citrus clementina GN=CICLE_v10019165mg PE=4 SV=1) HSP 1 Score: 679.1 bits (1751), Expect = 5.700e-192 Identity = 382/630 (60.63%), Postives = 460/630 (73.02%), Query Frame = 1
BLAST of Spo09461.1 vs. UniProtKB/TrEMBL
Match: A0A068BG41_COCNU (DEAD-box ATP-dependent RNA helicase OS=Cocos nucifera PE=2 SV=1) HSP 1 Score: 677.2 bits (1746), Expect = 2.200e-191 Identity = 370/656 (56.40%), Postives = 474/656 (72.26%), Query Frame = 1
BLAST of Spo09461.1 vs. UniProtKB/TrEMBL
Match: A0A067DZ34_CITSI (Uncharacterized protein OS=Citrus sinensis GN=CISIN_1g005837mg PE=4 SV=1) HSP 1 Score: 675.6 bits (1742), Expect = 6.300e-191 Identity = 381/630 (60.48%), Postives = 459/630 (72.86%), Query Frame = 1
BLAST of Spo09461.1 vs. ExPASy Swiss-Prot
Match: RH50_ORYSJ (DEAD-box ATP-dependent RNA helicase 50 OS=Oryza sativa subsp. japonica GN=Os03g0108600 PE=2 SV=2) HSP 1 Score: 643.7 bits (1659), Expect = 2.400e-183 Identity = 358/623 (57.46%), Postives = 445/623 (71.43%), Query Frame = 1
BLAST of Spo09461.1 vs. ExPASy Swiss-Prot
Match: RH50_ARATH (DEAD-box ATP-dependent RNA helicase 50 OS=Arabidopsis thaliana GN=RH50 PE=2 SV=2) HSP 1 Score: 630.6 bits (1625), Expect = 2.100e-179 Identity = 316/454 (69.60%), Postives = 375/454 (82.60%), Query Frame = 1
BLAST of Spo09461.1 vs. ExPASy Swiss-Prot
Match: RH39_ARATH (DEAD-box ATP-dependent RNA helicase 39 OS=Arabidopsis thaliana GN=RH39 PE=2 SV=2) HSP 1 Score: 214.5 bits (545), Expect = 3.500e-54 Identity = 136/409 (33.25%), Postives = 221/409 (54.03%), Query Frame = 1
BLAST of Spo09461.1 vs. ExPASy Swiss-Prot
Match: RH39_ORYSJ (DEAD-box ATP-dependent RNA helicase 39 OS=Oryza sativa subsp. japonica GN=Os01g0184500 PE=2 SV=1) HSP 1 Score: 210.3 bits (534), Expect = 6.700e-53 Identity = 137/411 (33.33%), Postives = 217/411 (52.80%), Query Frame = 1
BLAST of Spo09461.1 vs. ExPASy Swiss-Prot
Match: DDX18_DICDI (Probable ATP-dependent RNA helicase ddx18 OS=Dictyostelium discoideum GN=ddx18 PE=3 SV=1) HSP 1 Score: 164.5 bits (415), Expect = 4.200e-39 Identity = 123/412 (29.85%), Postives = 208/412 (50.49%), Query Frame = 1
BLAST of Spo09461.1 vs. TAIR (Arabidopsis)
Match: AT3G06980.1 (DEA(D/H)-box RNA helicase family protein) HSP 1 Score: 630.6 bits (1625), Expect = 1.200e-180 Identity = 316/454 (69.60%), Postives = 375/454 (82.60%), Query Frame = 1
BLAST of Spo09461.1 vs. TAIR (Arabidopsis)
Match: AT4G09730.1 (RH39) HSP 1 Score: 214.5 bits (545), Expect = 2.000e-55 Identity = 136/409 (33.25%), Postives = 221/409 (54.03%), Query Frame = 1
BLAST of Spo09461.1 vs. TAIR (Arabidopsis)
Match: AT2G42520.1 (P-loop containing nucleoside triphosphate hydrolases superfamily protein) HSP 1 Score: 145.2 bits (365), Expect = 1.500e-34 Identity = 129/419 (30.79%), Postives = 203/419 (48.45%), Query Frame = 1
BLAST of Spo09461.1 vs. TAIR (Arabidopsis)
Match: AT5G60990.1 (DEA(D/H)-box RNA helicase family protein) HSP 1 Score: 143.3 bits (360), Expect = 5.700e-34 Identity = 114/380 (30.00%), Postives = 179/380 (47.11%), Query Frame = 1
BLAST of Spo09461.1 vs. TAIR (Arabidopsis)
Match: AT3G58570.1 (P-loop containing nucleoside triphosphate hydrolases superfamily protein) HSP 1 Score: 140.6 bits (353), Expect = 3.700e-33 Identity = 120/409 (29.34%), Postives = 194/409 (47.43%), Query Frame = 1
The following BLAST results are available for this feature:
BLAST of Spo09461.1 vs. NCBI nr
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. NCBI nr) Total hits: 5
BLAST of Spo09461.1 vs. UniProtKB/TrEMBL
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. UniprotKB/TrEMBL) Total hits: 5
BLAST of Spo09461.1 vs. ExPASy Swiss-Prot
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. ExPASy SwissProt) Total hits: 5
BLAST of Spo09461.1 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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