Overview
Sequences
The following sequences are available for this feature:
Legend: polypeptideCDSexonthree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.ATGAAACTAAGGTATGTTCCAAAGCTCATGAACCAGTGAAAAAACATGAATCTTGGCACAAAGATTTGCCTCCAAACTCAAGATTTTCACATCATGAATCCAAGTTGAAATCGAGGTTGTGATAAAAATGTATGTGTTATTGAACTTGATTTCTTAGTTTCTTTACCATTCGGACAATAAGAAAATTAAGGTGTTAGCTTTAGATTGATTACTTCAGCTTCACTTACATAAGATCCCTTTGAAAATGAGTTTTTTTGGCCTTTTGCTCAGCTAAAGTGCATTGTCTTTACTGGATGAGGCCTGGACTTATTGGATCATAATTGAAACTTACTGAGTGTTGTATCGGAGCCTCAGATGGAAATTTCCTCCCATAATATTAGAAATTGTTTGGGACTCTTACATATGTGGATTCATGGGTGTGGATGATGATTTTGAAAGAAAACTCATGACAAAAATGATATGAAATTAACAAAACAATAGAAAAACTACAATAAATAGTCAGAAAAGGGGTTTTTATAAGCAAACAATAAGCAACGGCTAATTTTCAAACATAAAAACTAGCCGCTGAGCATCAAAATGGGTAATTTTAAGTTATGTGTATTTGGTGAATTAAGTTTCAGAATAGGGGTATTATATGAAATAAGTAATAAAATAGGGGTATTTGGTGAATTTAAAAATTAGGCTAACGGAGGACTAACGGCGCGTCATTAGTAAGGGTATTTTGGGTATTAAGTCATTTGTGAGGGGCATTTGGTGAATTTCTGAAAGTCGAGGGGCATTTGGTGAATTACGCCATAATTCGGGGGTATTTCATGAAAAATCCGTAATAAAAACTTACTATATCTCATTTGCAGGATCCTAGAATTTCAAAATCCGGCTCTAGTCGATTTCTTGAAATATTTCAATAAAATAAATACTCATTTAATTACAAGATAATTAATATGCGTAAAGAGATATTTTTTAAAAATAAAGGTTCATTTTGAGCATATAAAAATATCAGTTAATTTTGCCTTCATTAAAATGCTTATCTATTTTAAAACTTATAAAAGTAGATATCAAAACTTTAGAACCAACTTTCTACCAATGAGCCAAGAAAATAACATGGGTATTTAATGCGTTGTTTATAACTAGTACTAAATTACTGGATAGACAATTATTTTGGGGCCCTTTTCGCCTTGGGCCCTAGGCGGTCGCACCCCTCGCCTACCCCCCTAGGGCCGGGCCTGAGATGAAGACATACAGATTCTTGGATGATGCTAAATGCATGCCAAGTATATCGTTATTTAGCTGAATATATACTCCGTAGCTTAGTAGGATAGAGTCCGTTGAATATGGATTCTGGTCCAACCCTCGGGGTTGGGATCAATCTGTGTATGTACAGTTGTACACTTGTACAAAGTATGATGTTTCTTCCTGGTTATGACTTACATTTATGAATTATGAGGACATAATCACTCGTTGTTTTTAAGAAATGACCTTATAATAAAATCCATTGTGTATTTTCTATATATATATATAAAATAAAGAACCGAATGTTGTAAATCTTGTGGATTTTTTACAAAAGAAACTTGTACCTATATTTTGAGATCTTAATGTAGTACAAGAATCTTCATGGGCAAAGAACTAACGATCCTTTTTTACGTACGAAGTCTCAAATTGGAAAAGGACATCTTGCCAATTTTATTAATTTCTTTGTTGCTCATTCATTATCCAATATTTTGTTCATCAAGTTCATGGGACTATTGTGTTTGTGGAAAATAGAGGTCACTAATAGAAGTTGCCCTAGGTTTGGTATGAGGTTGACAATATATGATAATTAATATCATTAATGTGTTTGTCTATTAATTGAGAACTTTTTCTTCATTTATTTTCAAAAAATAAATAGTTGTGGATGATGTCTTATTGGAATGTTAATTAGATATATGATCCATCAATCTATTACTAATTTAACCGGTATATATTCACTTTCTACAAATACTAAGATCTTAATTAAAAGTTGAGATCGAGTTTCAACAAAGAGTTCGTGGCTAATGGACTTTTTGTTATGCCTAAACGATGTAGGCTCAGTTATATTCGATTTATTTTAACTGAACTTATATTATTTGAATTTAACTAAACTTAACTGAATTTATATGAACTTATTTTATCTAAAAAATTTATTTTGTCCGATATAAACTTATTTGTCTGTGAAAATGCATGAAAATAACTTATTTTTTATGAATTATACTATATGAACTTATTTTGTCTGAAATAAGTAAAAATAAGTCGAACAAAACAAAACCTTAGATATACTCCATATAACATGTGCATACAAGCAAGACTTGACCTAGTAAGGTTTTCAACTTAGGTTATGAGAACAAATCTCTTCTAAGACTACCATGATCACTTTGTGATACGTTGGAATACTGTAAAAGGGCATTGTCCATGATTTCCAATCTGGTTAATCTAGGCGAGATTTCGCGAAATATAACCTTTCTTTTACTTTCCTAAAAGAGAAATTGATGCACACATCATTCACGCACTAACACCTACCAAAAATACAACTATTCATATCTCAATTTTCCAAGGTGCAACCTTTATTTAGTCAAATTAAGCCAACCAAACATATAACCAACACTAAAATCACAATAGTAGATACCATTCCCCTAACTTCTTAACACAAAAGTAATCTTTTACATAAAAACCTTTAACTCTAAGTGCTCATCTGCCGACAAAACATGGAATTTTTTTCTACAATTTTATATTAACCCTCTTAACCATCTTGGAAAAAGGTTTGATTAGTTTGATAATCCAAAAATTAATTAATTTAGCACTAACTCCAATTACTAGTTTAATAATCATGGAAAAACCCAAACTTTATATAAAGAGGAAACCATAAATAGATTCACGTGGCATAAGCTGATTAGTTGAGCTCCATACACGGGGATCTTTCCAAAACTAGTTTCTCCTTCCTCTTGTCTTTTTCAGGGTGCCTATTCTTCTCTTCTTCCCACACTCTCCTCTTTTGACTCCCTTCATTTCTTCACTTCGCTTCTTTTATTTTGAAGTTTGAAATCCGTAGCTTTTTGTTTTTTTGTTCACTTTATCTTTACATTTTCCTCTCAATTTTATCTCTTTCCCATTTATACTTGAAGAGCGGGAATAAGAAGACTAGAACAGCACCAAGAGATCTGTTTTACCTGATAATGCTCCATTTTTAGGTACTCTCCTCTATTTATTTTCTTTAAAGTTTTAATCTTTTTCTTTTGTTCAAAATGTGTGCAATGTAGTGTATTTTTTCTGTTTTTTTTGGGGTTTAATTCTGGGGTTTTGATGTTTTGAGGTTTTAGTTTTGACTTTTTGTTGGGATTTTGGTTTCTGGGTTTTGTTTGCTGTAAATGTATGCTTAATAATACTGGGTTTCTAATGTTTTGGGGTTTTAGTGATTTTTTGTTTTGGATTTTGGTTTTGTTTCTTGTTTTTGCAGGTTTAATGGGTACTTTATAAAATTTTTCTCTTTGTGTAGAAATTTGGTAAGTAAAGACCATAATTAGAGGGGAGAAATGCAACCTTTTTACTTAGAATTGAAACAAAATGAGGGTTTAAAGTTGCTTAGGAAGGTGGAAAAGGGTGATTATTTTTTTTGCTATTTTTGGATGTTAGTATCTCAATAATGCTTGTTTGGAATTTGCTGTACAAACCTAGTTGAACTTTTTATTCTGTATTTATGTGGTGGATTATTGGATAGCTTTTCTGAGGATATTTTAAACCTTTTTGTGTTAGGGTTTTAGCATATGTTATGATTTATGAATAATTGAACTTTTTATTCTGTATTATGTGGTGGATTAGGAGGATAAGTCACTTTCATTTCATGTTATCTTGAAGTTTAGCAGCACTGAGAGGCATATTAAAGGTTGTGAAAGTAAGATGTTGTTTCTCTTTTACTTCCCTTTACTAGTAAGAAAGATTTGACTTAGCTTTCCACACTACCTGCTTCGTTCAATCGTTCCCTTGTTAAAAGGGAATATTGGGATGCTATATTTTTTCGGGAATTAAGAAAAAATATATTGGTATCCACGTTTCTGAGACGAGTTTGAGGCTGAATATTGCTATGAAGAATTCTAGTCACTTATAGTTTGAGGCTGTTCTGGTCTTTTGGCTATTTGCAATGTTTAAATGACGAGGTTTTGTTCCACTATAATACTTGCTAGTCACTACATGTCTATGCTTAGATTTAACATAGATCATTTATAGAATGCTGAAGTTATGGACCATTTAATTTATTGGTTACTAATAACAGATGAATTCTAGACTAAGTAAATGCATTTCGCATACTTTCTGCCTTGGTTTTTTCTGTTTATGTTTGTGGTTTATGGGAATGTAATGCATATTATTAGTTTGTTTTAAATTATCAGGAATAGAATTTGTTTCTGAAGTTGCAAGAAGTGAGAGGTACCGGCTGTAGAAATGGATCAGTATGAGATACTAGAACAAATCGGCAAGGGGGCTTTTGGTTCAGCCCTTCTTGTGCGGCACAAACTTGAGAAAAAGAAGTGAGTACATTTACTAGGATTTTCTTTGAAAACTGTGTTTGAGTTTATAGCGATACAAAGTTTATGGCCTATTCTAGTCGTTTTCTTAATCTAACATCCCCTTCTTCCTAGGTATGTCCTGAAGAAGATCCGACTTGCTCGTCAGACTGACAGAACACGCAGATCTGCTCATCAAGAGGTCAGTTCCAGATGTGCATTTTTTATTGTTATTAGATTTTCCTATGAAATAGCTCTGTTCTTTGTAGGAAAGTGAGTTATGCTTGATAAGATATGTAATTCAGGCATTATTTAGAGCTGTTTTGCCAGAGCTAAAATATGAGGAATATAGGTGCAACTACAAAGACGCTTATTTTTCTTAAATTTTCTTATTGGTATATGTGAGAGACTTTATTAAGTGAAGGGGACAAGTAGCTTCTTTTCTCTAAAATTTGGAGTATTTTATAACCCCCTTGCTTGAAACTGCAAGTAAATTGTTGCATGTTATTCTTTTTCTCACTATTGACTATAATGTCTTATGTGCCCTATGATTTGCAGATGGAGCTGATTTCTAAAATAAGGAATCCATTCATCGTGCAGTATAAAGACTCGTGGGTGGAGAGGGTTAGTAGTTTCCCCCTTTGATAGCTTTATAAAAGGTCTCTAAATACATCAATCATTCTGATGTCATATGTTGTGAAGGTTAAATCCTTAACCATTTCGTGTTCATAATTTTCTCAATTCTCTATGGTGTTCATGTTTGAAGTTGGCTGATGAGTTGGCAGGAACATTATCTTTCTATTTCTTGAAAATTCTGTAACAATCTGCTACCTGTGATTGACCTTGAAACTTTCATCTGCATTATGTTGTTGACCAAAAAGCACTTTGTCCCCAAACTGTTTCATGATAAATTCACCAAGTGCAGTGTCGCCCCTTTCTGTATGAACTGAGGGGAAACATATTTTGACTTTCTTATCCGTAGACGATTCTTCATTAAAGTCAATAAGTCATAATCTATTTTCTTTTTCCTTATATATATATATATGTCTTGAAGCATTTTTGGACATTCTAGAAGGTAGCAATTGTCTATTGCTTTGGTGATCATGTTCTATAGTTGTTCATGGTCTCTATACTCTTAGTAATTCTGTTAATTTTACTATTGCTGGATTACAGGGTTGCTATGTCTGCATTATTATTGGTTACTGTGAAGGAGGTGACATGTAAGTTATCATACTTCTCTTCCATATATGCCTGTGCTACTAAATTGTTTTGGCCTTAGATTTGTAACCCTTGTTTATTATCTTGGTGTCCTTGTAGGGCAGGTGCCCTTAAGAGAGCTAACTGCATTCATTTCTCTGAAGAGGTAGATAGTAAGCTACAAATTTAGTTTCTTTTGCTTGAGTTTTCACTTGAAAGTACCATAATTGATCTTGTTTATCCGCCCACATTATGTTTTCTCATATATTGAACTTTTGTAGAAACTCTGCAAGTGGCTTGTTCAGCTTCTAATGGCGCTTGATTACCTGCATATGAACCATATTCTGCATCGAGATGTTAAGGTGAGGCAGGCTTTTTTAGGACTTTGCCCCGATCTTGGTCATTTTTGTGTCATGCTATTAGTTTTTTCTCGTGCTAACCTTGTTCTTCTCTTGCTACAGCTTTCAAACATATTTTTGACGAAAGAGCAAGATATACGTCTCGGTAAGATTACGTCTATATCATTATCACCTCTTGTATAATGACATGTTTTACTGTTAAAGCTTGACATGTTTAATACTAAATCTTGACATGTCAACTGATGAACACAGGTGATTTTGGTCTTGCCAAACTGTTAACTTCAGATGATCTTGCTTCTTCTGTAAGTAGCCCTTTTTTTTGTGTGTGTGTGTGTGTTGGTTAACTTAACAAAACAATGTTTTTAAATGTGTCTGAAATCATTGGCTCGTCTTCTTTAAATGTAGGTGGTTGGAACTCCAAGTTATATGTGTCCTGAACTTCTCGCTGATATACCTTATGGCTCAAAGTCTGACATTTGGTCATTAGGTCTGTTAAATATGTTTAAGGCTTCTTGACACTTTAGATTTCTCTTTTCCTTTCTATATGTTGGGTGATGGAAAACTGACATGTCTCTGTTCCAGGTTGCTGCATCTATGAAATGGCGGCTATGAGACCTGCATTTAAGGCTTTTGTGAGTTCCTTCCATCCATTTTCCTGCATTAATTTTTTTGATAAAGTTTCTGGATGACATCATGATATATGCGACTCAGAATTATGAATAAATATTAAAAATAACTCGAAAAAATATTTTTCGTGTCGCCTATTAAATATAAATGTTAGAGGCGACTCATAATGGTTAATTAATATCTTTCTTGATCTTTGCGCCTCTGAAATATTCTTTGAGAATCTTCAATCTATGTTAGTAAAACAATTTCTACAAAATAAACAAGTCGATTGTTTCTTTCTTGTGTAAACAATCGACATTTTAATAAACAATTATAATTATGAAATATTTCTACATAGCCTAGACATTTTAATTATGAAATATGTTTACAATCTTTGTGTAATTTGTTCCTTTCTTGCATGTGTGATTCTGCAATCAATACTTTTGGTAGTGACTTTGTTTATCTTCTTGTTGTGCAGGACATGCAGGCACTGATCAACAAAATAAACAGATCGATTGTCTCCCCACTTCCAACCATGTATTCTGGCCGATTGTAAGTTCCTTCTTTACAGGGCGTTACAAAAATTTCTTGTGCATTTTGTGTTGCATAGTAGGACTTAGCTCCTCGTATTTGCTTGAGGTTTTTAACTTTATTCTCATATTTTCTACATATTATATTGGTTATATTGGTTGCTCATGAATATGGATTTTCTCACTTCAGTTTGTCTTCTGATTTTGCAGTAGGGGTCTTGTTAAGACAATGCTTAGGAGAAACCCTGAACTCCGGCCTAGTGTATGAATTCTCTTCTCTCTGAAAATTTTCATACTTATGCTGCTGAATGCCCACTTTGCTGTGATGTTATATTCTCATTAAGGCTCCGTTTGGTTTGGTGTAAAATATTTTCCATGAAAATGATTTTCTCTTTCTCAATCATTTTACGTTGTTTGGTTTGACAAGGTATGAAAAACAAATTTCCATAACTCTCTCAAAGGTGGAAAACCCTTTTCCATTTGAAAGGAAGGGAAACCGCTTTTCCACCTTTCCTCCTCTTCCTTCTTTCACTCAATCTTCACCCATCTTCTCCCTCTTTTTTTCTATTAATTTTCTTTTAAGGAACCAAACAAAGTAAAACTAGTTTGGAATTCTGTTTTCCCTTGAAAAATGTTTTCCATGGAAAATTATTTTTCACTGAAAACGTTTTACACTAAGCCAGACGGATCCTAACTCCTAAGACCCAGTTAGCTTCAAGTGAAAGAAATAATATTGAAAAAAAAAAATCAGTAACTGCATTTGAGGGAAAAAACATTACAGAATCGACTAAAATCATGTAAAAATCAATTTATCAGCAAAAAATCAATATTTACCTAAAAAAAAACAAGTTTAGTTGCCATAAGTCTTGCAATCATTTGCCAGTTAGAATGATTTGTGTCCTTCCATCTGAAATTTCGTTTGATATTCCGACTACAGTTCTGATGACTTGGATAGAAAAAATTGGGAAAAATTGATGAGTTGAATTGAACGAAAATTTTATGCGGAATTGAAGAGCTAGGATCGTCCCGCTCTGATACCAGGTTAGAGTTAGGAGAAGAAGGAAACATGGAAAGCCATTGTTGTTAGAGCTTGAGAGCTCGCAACTTCGAGAGAGAAAGTAAAGGACTATATTGTATTAATGTTGTGATAAATGAAAATAGTACAAACTTTGGTATTTATACTACCTATTTACAAGCTAATTACAAGCTAATGTTCTATATTCCAACAGTTTTTACTTCATTGTTTCAGGCAGCTGAGCTTCTCAGGCATCCTCATCTTCAACCATATGTTTTCAAAATAAATCTCAAGTTTGATAACCCAAGAAGAAACACTTTACCAGTATCCTATTATGACAACCCAAGAAAACCTAGATACCTCGAGGCCGAGGAGATTCCAAAGCGTTGTATTGACAGAGAGAAACGAAGATCATCATACAGTAATGACCGAACCCAGAATCCGAGCATCTCCGGGCCTGAACCGGACTCCCCGTATTCTATCAGACAGCAACCCGGATATTCAACTTATATGAATAGAAAGTTTGAGGAGTTGTCCATTGGTAGCTCACACAAGGAGATTGGAGTTGATAAGCCTATAATGGCTAAGGGTTCTTCCACTGTTGCAAAAACTCCTAGGTTATCAACAACACCTTCAAAAGGTACTGCTGCTTTTAGGAGGCTTTCAACACCCTCTCAGATCTCTACTAATGGCTCCAATCGCACCTCTGTAAGTTCATTCATCCGATTACAATTCAGTTTATGAGCTAGATTTTATATATTGGTTGTTTATAATAGGCTGCAATTCTGTTTTGGGACACTTGCATGATTGTTAACTATATGTTGCCCATGCTATTCTTAAAGATATGTTAATTAAAATCTCTAATGAAAGACTATTACTTGCATGGTAGCAACTCAAAAACTTACGAACTACATATAGAAGGATACTTATCGTATTTCAATTTACTTGCAATTTAACTTTAAAACTAGGAAAAATTGTTTTTTTACCACCTAAACAAATTGAAAAATTATTTTTTACCACCTAAAGAATTAAAACTTGTATTTTACCACCTAATAAAATGTTAGAACTTGTTTTTTACCACCTGAAAATGGAAAAAAAAAGAAGATGAAGCCGTTATGTCAGGGTGCACAATAACTGCAATATTTCTGATATGTACTTTTCTTCCACGATTTCATGTATTTAACTCCATTTTGGTGAATGAGTTAAAGAAAATTACAGAGGGAGTGCAAACAGATGGAGGGAAATTGAATTAGTAGGCTCACATAACGTTTTCATCCATGTTTTCGTTTTCAGGTGGTAAAATACAAGTTTTAGTTTTTTAGTTGATAAAAAACAATTTTTCGAATTTTATAGGTGGTAAAAAACAATTTATCCTTAAAACTAACCACGGTCAAATGTGGCCTGTTAAATTGGGATGAACGGAGTACATTGGTAAACACTAAACAGTAACTAATATGTTTTGAATTGTTTCCCTTGTGCAGCTTCCCATGTCTCATACTCCGGCCACCAAATACTCTAGGTCAACACGTAGAGCTTCCTTACCGTTACCAATGTCAAGCAACAAAAGCAACAAGGCAGCAGCAGACAATGAGACTCGATATAACTCCCACACGGGTTTCCTTCACAGTGTAATGTCACCTGATGTATCAGTCAACGCCCCACGTATTGACAAGATGGCCGAGTTTCCATTAGCATCTTCAGAGAGCCCTCTTTACCAACCTGTAAACAGAACCTCATCAACCTCTGCTCAGTGTTCTTCCACCTCCCCAACAAACGTTCCTGATCGTTCAATGATGAAGGACAAATGCACGGTACAATTAGTAGACCGAGCCTTGAACAAGAACAAGACTAATTTGGTTAATGAAAATTCGGAGCAGAATCAAGTAATCAGTGGTGGTTTATCGAGCAAATCATCGTCAGAATCAAGGCAACGGCGTTTTGATACCAGTTCGTTTCAACAACGAGCTGAAGCGTTAGAAGGTTTGCTTGAGTTTAGTGCTCGGCTTTTGCAGCAGGGGAGACACGATGAGCTTAGTGTGCTGTTGAAGCCTTTCGGTCCTGAGAAAGTTTCTCCTAGAGAAACTGCTATTTGGTTGGCTAAAAGCATCAAAGAGACTGGTGCATAGCTAGTACTTTCTTCCACGACTAGCCCAGCCCGACCCGTTAAGTTTCAGCCCGTCCCAGACCTAACACGACCCGTTGAACAGGTCTAGTACTCCCTTGTACATTGGCTAGTGATTTTTAATTTAAAATTGCGTGAACTTTATTTAGTTTAGGGCCTCGGATCAGAATCCTTAGTTAGGATTAGACGTGTTCAATGGGCTGGGGGCCTATTAAAAGCCTGAAACCAGTTTTTTTTCAAAAGGCCCAGCCCATTTAATTTAGGCCCGACCCGACCCTAACCTGGCCCAATGAACAGGTCTAGTTAGGATTATGGTTTTTGTGTGATTTGTCGCGGAGGTTTGGAAGCTGTTGTTTAGAGTTGTTGCAGCAGCTTCTAATTCTGTTGATCCTCGCGATAACCATTACCGGTGCAAGCGAAAGGTGCTAGTGTGCTACATGTACTTGTATAATGTCTATATTGTGATTCTAACAAGTGCTCTTAAGGATGAGTTGTAAGCTATTTCTTCCCCCTTTTTCCTTGGGAAAGAAGTGTTTCTGAAATCTGAATGCATGAGTTGCTGATGAGTGGGTTATACACTTATACATATCTTTCATGTAGTTTAGGAAATGATTTTTGGCACGCTAAAAAGTTGATTCTGGCACATCCCTTGTGAGTAGAGCACGGAAAATTGTCTCTTAATGGTGTGCCAAAATCAATGTTTTGGAGTGCGAAAGTAAATTTCTTGTAGTTTATCGTGTTGGGGTTTGTGTGTGTAGAATTTTTGTGCAGTTTTGATCATTCACCAAATAGAGCAAGTGGATCATGGTCATGTACTCATGTTGGTCCATTAGTGAAGAGTTAAGACCCTTGAGGCCTTGATAGGAGTCCTGGCAGGATAAACCAACATTGTCAAAACAATATGCATGCGAACTAGTAACTGCACACGAGATAGAAGATACTGTCGTGAACTACTCGCGAACAAG ATGAAACTAAGCACCAAGAGATCTGTTTTACCTGATAATGCTCCATTTTTAGGAATAGAATTTGTTTCTGAAGTTGCAAGAAGTGAGAGGTATGTCCTGAAGAAGATCCGACTTGCTCGTCAGACTGACAGAACACGCAGATCTGCTCATCAAGAGATGGAGCTGATTTCTAAAATAAGGAATCCATTCATCGTGCAGTATAAAGACTCGTGGGTGGAGAGGGGTTGCTATGTCTGCATTATTATTGGTTACTGTGAAGGAGGTGACATGGCAGGTGCCCTTAAGAGAGCTAACTGCATTCATTTCTCTGAAGAGAAACTCTGCAAGTGGCTTGTTCAGCTTCTAATGGCGCTTGATTACCTGCATATGAACCATATTCTGCATCGAGATGTTAAGCTTTCAAACATATTTTTGACGAAAGAGCAAGATATACGTCTCGGTGATTTTGGTCTTGCCAAACTGTTAACTTCAGATGATCTTGCTTCTTCTGTGGTTGGAACTCCAAGTTATATGTGTCCTGAACTTCTCGCTGATATACCTTATGGCTCAAAGTCTGACATTTGGTCATTAGGTTGCTGCATCTATGAAATGGCGGCTATGAGACCTGCATTTAAGGCTTTTGACATGCAGGCACTGATCAACAAAATAAACAGATCGATTGTCTCCCCACTTCCAACCATGTATTCTGGCCGATTTAGGGGTCTTGTTAAGACAATGCTTAGGAGAAACCCTGAACTCCGGCCTAGTGCAGCTGAGCTTCTCAGGCATCCTCATCTTCAACCATATGTTTTCAAAATAAATCTCAAGTTTGATAACCCAAGAAGAAACACTTTACCAGTATCCTATTATGACAACCCAAGAAAACCTAGATACCTCGAGGCCGAGGAGATTCCAAAGCGTTGTATTGACAGAGAGAAACGAAGATCATCATACAGTAATGACCGAACCCAGAATCCGAGCATCTCCGGGCCTGAACCGGACTCCCCGTATTCTATCAGACAGCAACCCGGATATTCAACTTATATGAATAGAAAGTTTGAGGAGTTGTCCATTGGTAGCTCACACAAGGAGATTGGAGTTGATAAGCCTATAATGGCTAAGGGTTCTTCCACTGTTGCAAAAACTCCTAGGTTATCAACAACACCTTCAAAAGGTACTGCTGCTTTTAGGAGGCTTTCAACACCCTCTCAGATCTCTACTAATGGCTCCAATCGCACCTCTCTTCCCATGTCTCATACTCCGGCCACCAAATACTCTAGGTCAACACGTAGAGCTTCCTTACCGTTACCAATGTCAAGCAACAAAAGCAACAAGGCAGCAGCAGACAATGAGACTCGATATAACTCCCACACGGGTTTCCTTCACAGTGTAATGTCACCTGATGTATCAGTCAACGCCCCACGTATTGACAAGATGGCCGAGTTTCCATTAGCATCTTCAGAGAGCCCTCTTTACCAACCTGTAAACAGAACCTCATCAACCTCTGCTCAGTGTTCTTCCACCTCCCCAACAAACGTTCCTGATCGTTCAATGATGAAGGACAAATGCACGGTACAATTAGTAGACCGAGCCTTGAACAAGAACAAGACTAATTTGGTTAATGAAAATTCGGAGCAGAATCAAGTAATCAGTGGTGGTTTATCGAGCAAATCATCGTCAGAATCAAGGCAACGGCGTTTTGATACCAGTTCGTTTCAACAACGAGCTGAAGCGTTAGAAGGTTTGCTTGAGTTTAGTGCTCGGCTTTTGCAGCAGGGGAGACACGATGAGCTTAGTGTGCTGTTGAAGCCTTTCGGTCCTGAGAAAGTTTCTCCTAGAGAAACTGCTATTTGGTTGGCTAAAAGCATCAAAGAGACTGGTGCATAGCTAGTACTTTCTTCCACGACTAGCCCAGCCCGACCCGTTAAGTTTCAGCCCGTCCCAGACCTAACACGACCCGTTGAACAGGTCTAGTACTCCCTTGTACATTGGCTAGTGATTTTTAATTTAAAATTGCGTGAACTTTATTTAGTTTAGGGCCTCGGATCAGAATCCTTAGTTAGGATTAGACGTGTTCAATGGGCTGGGGGCCTATTAAAAGCCTGAAACCAGTTTTTTTTCAAAAGGCCCAGCCCATTTAATTTAGGCCCGACCCGACCCTAACCTGGCCCAATGAACAGGTCTAGTTAGGATTATGGTTTTTGTGTGATTTGTCGCGGAGGTTTGGAAGCTGTTGTTTAGAGTTGTTGCAGCAGCTTCTAATTCTGTTGATCCTCGCGATAACCATTACCGGTGCAAGCGAAAGGTGCTAGTGTGCTACATGTACTTGTATAATGTCTATATTGTGATTCTAACAAGTGCTCTTAAGGATGAGTTGTAAGCTATTTCTTCCCCCTTTTTCCTTGGGAAAGAAGTGTTTCTGAAATCTGAATGCATGAGTTGCTGATGAGTGGGTTATACACTTATACATATCTTTCATGTAGTTTAGGAAATGATTTTTGGCACGCTAAAAAGTTGATTCTGGCACATCCCTTGTGAGTAGAGCACGGAAAATTGTCTCTTAATGGTGTGCCAAAATCAATGTTTTGGAGTGCGAAAGTAAATTTCTTGTAGTTTATCGTGTTGGGGTTTGTGTGTGTAGAATTTTTGTGCAGTTTTGATCATTCACCAAATAGAGCAAGTGGATCATGGTCATGTACTCATGTTGGTCCATTAGTGAAGAGTTAAGACCCTTGAGGCCTTGATAGGAGTCCTGGCAGGATAAACCAACATTGTCAAAACAATATGCATGCGAACTAGTAACTGCACACGAGATAGAAGATACTGTCGTGAACTACTCGCGAACAAG ATGAAACTAAGCACCAAGAGATCTGTTTTACCTGATAATGCTCCATTTTTAGGAATAGAATTTGTTTCTGAAGTTGCAAGAAGTGAGAGGTATGTCCTGAAGAAGATCCGACTTGCTCGTCAGACTGACAGAACACGCAGATCTGCTCATCAAGAGATGGAGCTGATTTCTAAAATAAGGAATCCATTCATCGTGCAGTATAAAGACTCGTGGGTGGAGAGGGGTTGCTATGTCTGCATTATTATTGGTTACTGTGAAGGAGGTGACATGGCAGGTGCCCTTAAGAGAGCTAACTGCATTCATTTCTCTGAAGAGAAACTCTGCAAGTGGCTTGTTCAGCTTCTAATGGCGCTTGATTACCTGCATATGAACCATATTCTGCATCGAGATGTTAAGCTTTCAAACATATTTTTGACGAAAGAGCAAGATATACGTCTCGGTGATTTTGGTCTTGCCAAACTGTTAACTTCAGATGATCTTGCTTCTTCTGTGGTTGGAACTCCAAGTTATATGTGTCCTGAACTTCTCGCTGATATACCTTATGGCTCAAAGTCTGACATTTGGTCATTAGGTTGCTGCATCTATGAAATGGCGGCTATGAGACCTGCATTTAAGGCTTTTGACATGCAGGCACTGATCAACAAAATAAACAGATCGATTGTCTCCCCACTTCCAACCATGTATTCTGGCCGATTTAGGGGTCTTGTTAAGACAATGCTTAGGAGAAACCCTGAACTCCGGCCTAGTGCAGCTGAGCTTCTCAGGCATCCTCATCTTCAACCATATGTTTTCAAAATAAATCTCAAGTTTGATAACCCAAGAAGAAACACTTTACCAGTATCCTATTATGACAACCCAAGAAAACCTAGATACCTCGAGGCCGAGGAGATTCCAAAGCGTTGTATTGACAGAGAGAAACGAAGATCATCATACAGTAATGACCGAACCCAGAATCCGAGCATCTCCGGGCCTGAACCGGACTCCCCGTATTCTATCAGACAGCAACCCGGATATTCAACTTATATGAATAGAAAGTTTGAGGAGTTGTCCATTGGTAGCTCACACAAGGAGATTGGAGTTGATAAGCCTATAATGGCTAAGGGTTCTTCCACTGTTGCAAAAACTCCTAGGTTATCAACAACACCTTCAAAAGGTACTGCTGCTTTTAGGAGGCTTTCAACACCCTCTCAGATCTCTACTAATGGCTCCAATCGCACCTCTCTTCCCATGTCTCATACTCCGGCCACCAAATACTCTAGGTCAACACGTAGAGCTTCCTTACCGTTACCAATGTCAAGCAACAAAAGCAACAAGGCAGCAGCAGACAATGAGACTCGATATAACTCCCACACGGGTTTCCTTCACAGTGTAATGTCACCTGATGTATCAGTCAACGCCCCACGTATTGACAAGATGGCCGAGTTTCCATTAGCATCTTCAGAGAGCCCTCTTTACCAACCTGTAAACAGAACCTCATCAACCTCTGCTCAGTGTTCTTCCACCTCCCCAACAAACGTTCCTGATCGTTCAATGATGAAGGACAAATGCACGGTACAATTAGTAGACCGAGCCTTGAACAAGAACAAGACTAATTTGGTTAATGAAAATTCGGAGCAGAATCAAGTAATCAGTGGTGGTTTATCGAGCAAATCATCGTCAGAATCAAGGCAACGGCGTTTTGATACCAGTTCGTTTCAACAACGAGCTGAAGCGTTAGAAGGTTTGCTTGAGTTTAGTGCTCGGCTTTTGCAGCAGGGGAGACACGATGAGCTTAGTGTGCTGTTGAAGCCTTTCGGTCCTGAGAAAGTTTCTCCTAGAGAAACTGCTATTTGGTTGGCTAAAAGCATCAAAGAGACTGGTGCATAG MKLSTKRSVLPDNAPFLGIEFVSEVARSERYVLKKIRLARQTDRTRRSAHQEMELISKIRNPFIVQYKDSWVERGCYVCIIIGYCEGGDMAGALKRANCIHFSEEKLCKWLVQLLMALDYLHMNHILHRDVKLSNIFLTKEQDIRLGDFGLAKLLTSDDLASSVVGTPSYMCPELLADIPYGSKSDIWSLGCCIYEMAAMRPAFKAFDMQALINKINRSIVSPLPTMYSGRFRGLVKTMLRRNPELRPSAAELLRHPHLQPYVFKINLKFDNPRRNTLPVSYYDNPRKPRYLEAEEIPKRCIDREKRRSSYSNDRTQNPSISGPEPDSPYSIRQQPGYSTYMNRKFEELSIGSSHKEIGVDKPIMAKGSSTVAKTPRLSTTPSKGTAAFRRLSTPSQISTNGSNRTSLPMSHTPATKYSRSTRRASLPLPMSSNKSNKAAADNETRYNSHTGFLHSVMSPDVSVNAPRIDKMAEFPLASSESPLYQPVNRTSSTSAQCSSTSPTNVPDRSMMKDKCTVQLVDRALNKNKTNLVNENSEQNQVISGGLSSKSSSESRQRRFDTSSFQQRAEALEGLLEFSARLLQQGRHDELSVLLKPFGPEKVSPRETAIWLAKSIKETGA Relationships
The following mRNA feature(s) are a part of this gene:
Homology
BLAST of Spo02259.1 vs. NCBI nr
Match: gi|902151428|gb|KNA05533.1| (hypothetical protein SOVF_189550 [Spinacia oleracea]) HSP 1 Score: 1151.7 bits (2978), Expect = 0.000e+0 Identity = 590/593 (99.49%), Postives = 592/593 (99.83%), Query Frame = 1
BLAST of Spo02259.1 vs. NCBI nr
Match: gi|731336164|ref|XP_010679108.1| (PREDICTED: serine/threonine-protein kinase Nek2-like [Beta vulgaris subsp. vulgaris]) HSP 1 Score: 914.1 bits (2361), Expect = 1.400e-262 Identity = 479/592 (80.91%), Postives = 537/592 (90.71%), Query Frame = 1
BLAST of Spo02259.1 vs. NCBI nr
Match: gi|359479671|ref|XP_003632328.1| (PREDICTED: serine/threonine-protein kinase Nek2 [Vitis vinifera]) HSP 1 Score: 767.7 bits (1981), Expect = 1.600e-218 Identity = 422/603 (69.98%), Postives = 489/603 (81.09%), Query Frame = 1
BLAST of Spo02259.1 vs. NCBI nr
Match: gi|296085239|emb|CBI28734.3| (unnamed protein product [Vitis vinifera]) HSP 1 Score: 755.0 bits (1948), Expect = 1.000e-214 Identity = 414/595 (69.58%), Postives = 473/595 (79.50%), Query Frame = 1
BLAST of Spo02259.1 vs. NCBI nr
Match: gi|645259459|ref|XP_008235371.1| (PREDICTED: serine/threonine-protein kinase Nek2 [Prunus mume]) HSP 1 Score: 746.9 bits (1927), Expect = 2.900e-212 Identity = 415/599 (69.28%), Postives = 478/599 (79.80%), Query Frame = 1
BLAST of Spo02259.1 vs. UniProtKB/TrEMBL
Match: A0A0K9QFR7_SPIOL (Uncharacterized protein OS=Spinacia oleracea GN=SOVF_189550 PE=3 SV=1) HSP 1 Score: 1151.7 bits (2978), Expect = 0.000e+0 Identity = 590/593 (99.49%), Postives = 592/593 (99.83%), Query Frame = 1
BLAST of Spo02259.1 vs. UniProtKB/TrEMBL
Match: A0A0J8C938_BETVU (Uncharacterized protein OS=Beta vulgaris subsp. vulgaris GN=BVRB_5g119860 PE=3 SV=1) HSP 1 Score: 914.1 bits (2361), Expect = 9.400e-263 Identity = 479/592 (80.91%), Postives = 537/592 (90.71%), Query Frame = 1
BLAST of Spo02259.1 vs. UniProtKB/TrEMBL
Match: F6HI67_VITVI (Putative uncharacterized protein OS=Vitis vinifera GN=VIT_07s0151g00310 PE=3 SV=1) HSP 1 Score: 767.7 bits (1981), Expect = 1.100e-218 Identity = 422/603 (69.98%), Postives = 489/603 (81.09%), Query Frame = 1
BLAST of Spo02259.1 vs. UniProtKB/TrEMBL
Match: M5VNX8_PRUPE (Uncharacterized protein OS=Prunus persica GN=PRUPE_ppa002991mg PE=3 SV=1) HSP 1 Score: 743.0 bits (1917), Expect = 2.900e-211 Identity = 416/601 (69.22%), Postives = 476/601 (79.20%), Query Frame = 1
BLAST of Spo02259.1 vs. UniProtKB/TrEMBL
Match: W9RA00_9ROSA (Serine/threonine-protein kinase Nek2 OS=Morus notabilis GN=L484_002347 PE=3 SV=1) HSP 1 Score: 740.0 bits (1909), Expect = 2.400e-210 Identity = 411/603 (68.16%), Postives = 480/603 (79.60%), Query Frame = 1
BLAST of Spo02259.1 vs. ExPASy Swiss-Prot
Match: NEK1_ORYSJ (Serine/threonine-protein kinase Nek1 OS=Oryza sativa subsp. japonica GN=NEK1 PE=2 SV=1) HSP 1 Score: 615.5 bits (1586), Expect = 6.200e-175 Identity = 364/603 (60.36%), Postives = 431/603 (71.48%), Query Frame = 1
BLAST of Spo02259.1 vs. ExPASy Swiss-Prot
Match: NEK2_ORYSI (Serine/threonine-protein kinase Nek2 OS=Oryza sativa subsp. indica GN=NEK2 PE=3 SV=1) HSP 1 Score: 613.6 bits (1581), Expect = 2.400e-174 Identity = 350/593 (59.02%), Postives = 422/593 (71.16%), Query Frame = 1
BLAST of Spo02259.1 vs. ExPASy Swiss-Prot
Match: NEK2_ORYSJ (Serine/threonine-protein kinase Nek2 OS=Oryza sativa subsp. japonica GN=NEK2 PE=2 SV=1) HSP 1 Score: 612.1 bits (1577), Expect = 6.900e-174 Identity = 349/593 (58.85%), Postives = 422/593 (71.16%), Query Frame = 1
BLAST of Spo02259.1 vs. ExPASy Swiss-Prot
Match: NEK1_ARATH (Serine/threonine-protein kinase Nek1 OS=Arabidopsis thaliana GN=NEK1 PE=2 SV=2) HSP 1 Score: 588.2 bits (1515), Expect = 1.100e-166 Identity = 338/598 (56.52%), Postives = 417/598 (69.73%), Query Frame = 1
BLAST of Spo02259.1 vs. ExPASy Swiss-Prot
Match: NEK2_ARATH (Serine/threonine-protein kinase Nek2 OS=Arabidopsis thaliana GN=NEK2 PE=2 SV=1) HSP 1 Score: 572.0 bits (1473), Expect = 7.900e-162 Identity = 341/600 (56.83%), Postives = 413/600 (68.83%), Query Frame = 1
BLAST of Spo02259.1 vs. TAIR (Arabidopsis)
Match: AT1G54510.1 (NIMA-related serine/threonine kinase 1) HSP 1 Score: 588.2 bits (1515), Expect = 6.000e-168 Identity = 338/598 (56.52%), Postives = 417/598 (69.73%), Query Frame = 1
BLAST of Spo02259.1 vs. TAIR (Arabidopsis)
Match: AT3G04810.1 (NIMA-related kinase 2) HSP 1 Score: 572.0 bits (1473), Expect = 4.400e-163 Identity = 341/600 (56.83%), Postives = 413/600 (68.83%), Query Frame = 1
BLAST of Spo02259.1 vs. TAIR (Arabidopsis)
Match: AT3G63280.1 (NIMA-related kinase 4) HSP 1 Score: 569.7 bits (1467), Expect = 2.200e-162 Identity = 324/595 (54.45%), Postives = 391/595 (65.71%), Query Frame = 1
BLAST of Spo02259.1 vs. TAIR (Arabidopsis)
Match: AT5G28290.1 (NIMA-related kinase 3) HSP 1 Score: 548.5 bits (1412), Expect = 5.300e-156 Identity = 328/593 (55.31%), Postives = 398/593 (67.12%), Query Frame = 1
BLAST of Spo02259.1 vs. TAIR (Arabidopsis)
Match: AT3G44200.1 (NIMA (never in mitosis, gene A)-related 6) HSP 1 Score: 372.5 bits (955), Expect = 5.200e-103 Identity = 168/242 (69.42%), Postives = 209/242 (86.36%), Query Frame = 1
The following BLAST results are available for this feature:
BLAST of Spo02259.1 vs. NCBI nr
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. NCBI nr) Total hits: 5
BLAST of Spo02259.1 vs. UniProtKB/TrEMBL
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. UniprotKB/TrEMBL) Total hits: 5
BLAST of Spo02259.1 vs. ExPASy Swiss-Prot
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. ExPASy SwissProt) Total hits: 5
BLAST of Spo02259.1 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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