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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.CTGAAAATAGGCCATGGTCGAATAAACTTCCATTGGTAGCTAAAGCTGGGTCGAAACTGCTCTCAATTTTCTTCGAATATGTCGTTGATATCATGCAAAAGCCTCACAATATGGACGATATTTGCCATGGCGTTGCAAATAGCAGGTCTATATCTCTTCGTCCTCGGTTTCTTCCCGGTCAAGCCTGCTCTCTCCGGTGCCAGGTTCATTTTTTCATTCTCTATCTCTATGTAAATCTTAATCCTGTTTTTCTATTCTAAATGTTTTAATTTTCCTGTAATGTAGTGGTCCTGAGAGTTATCGACCTCCTGGAAATGAGTCCTTTGAAGATTTCGACGTTTCCTCGATGAACTCCGATGATCTCCGATCTCTTTATCTGGTTTGATCCTTTCTTCTATCTGATTTGTGATAACCTCTACTTTTTTTTTATTGATATCTGTGTTGAAATTTTTGTGTATTAGAGAACTGAATCTGACTTCTCTGAACTTAGGGTGTATATTCTTCTCCTGATTTTTCACTTATTAGCCATCAAATTAACTATCCGAACTTATTAGAACTAATTGTAGTTGTGAATTGAACTTATTGGAATTTAGTTCCTACTGTAGGAACTATGACTAATAAGAACAATAATTAGAACAAGCTTATCTGTAACAATGTCGTGGCGTGACACCAATCACTGCCCTAAAGTCGAATTTGCCCCGCTAAGTACACGCGGACTCGTAGCAACCGACCCCCAGGGATACACGACTCCAATCCTTCGGTGTACGACGAAGAACTAGATTGAGAACACCCTTAAGCAATGCCCAGAACAATGTAGGTTTTGTGTTTTTTATTTCGGAGAAGAGGAAAAGAACAATTTTTCTGTGGAAAAAGATGATGAATTTATAGAGAGGTTTTTGGGAAACTGTAACCGCCATAAACGGCTAGTGGAGCAGTTACCGGAGTAATGGGGAACTGCAACAGTCATAAAACGGCTAGTGGGGTTAATGGAGCAGTTTCCAGAGTTAGTGGGTTGATTAAGTCTCCTGACTTAATCAAACCGCCCTTGACCAAAAAGAATAACCCGGTCCACAAAACCCACCCCACGCCCGCGAACCGCATTCGCCAAGTACCAAGGCCCAAGGCCCTCGCCCGAGCCCAGCCCGGCGCGCGCGTGTGTGTGTTGTGACCACCCATGCCACTCTCAAGCACTCTTAAACAAATAATTAAAGGGTAGTGCAATATATAAAGAAGGTAGTATGTGGGTTTTTTATCAATGTGGGACAATTGGTTTTTCATTCTTTTGAAGCATTCCTTTTTTGAGGAACAAACTCCAACACCTACACCATTGTACCAAGTGGCTTTTTCACCTTGAGTTGGGTAAAATAAAAGCAGATGGGTTTGGGAAGTTTTTCTTTTTCCGAACATCAAATAATCGAGTATAGAGGAGAGACAAGTGAGGAGTACATACCAAAAAATGGTCATGTGCAAACTCAAAGTGTCAAATCAAAATGGAAACTGTGGAAATCTTAGGGACGAAGGGAGTATTGTATTACTTTCTGATAATTGTGAGTATAAATTATATGAACTTATTTTAACTGAACATAACACATCCTAAAAATTGGGATAAAAATAGTTTTACTCCATTTAGTTCATCCTGCAATTTGTTCATATAAACATTTCCCAATATTTTTAGTCTAGGTAATTTGAATTGGGTTGAACTTGACTAAAACTGGTGTTAACACTACTGAAATGAACTTATCTTAATTAACTGAAAGTAGTTTTTCAGAACTTATTTTTGCAAAAAGAAATTGCTTGTTTGTTAAAATGGTCGGAAAAAACTTATTTTTGTTGAATTTATTTTGTATGAACTTATCTGAACAACTAAATTGGACTGAAATTAACTTATCTGTACTTAACTTTGTAGAAAAGAACTTATTTGTGTGTTAGAATGTCCGGAAAAAAACTTACTTTTGCTGAAGTGATGTGAATTAAACTTATCTAAACTTATATTTCTATTAACGTATCTGAACTTATTTTTGTTGAAATAAAGTCTAAATAAGTTAAAATAAATTGAAACAAACAAACCTCTATTTGAACTTACTTTTTTCTGAAATAATTAACATAAGTTGAAACAAACAGACCTTTATTTGAACTTATTTTTTTCTGCAATAAGTTAAAATAAGTTGAACAAACATATATAATGAATTAAGTGCAAGGGAAGGACAGAATAGGTAGTAAGTGATATTATGTAGAAGACAAATTAGGTAGGTTTAGTAGAATGGTTATAAATAGTGGCACATTAGGTTATGGGAGGTATGTTGAGAATTTGGTAAAGCTTAGGCTTTGGAGAGTGGTGACTTCAAGTCACTAAACTTAGAGATTGGTGGCCTAAAGTCACTACTTTTGTATCCCCTTTTGTGTTCTTCATCCATCAAGCAAATTAGTATAATTTATGCCATTATTTTTATGCCCAAATTTATCAGTTCATCTCAACATACTCTTATAATGGGTTTTTATCTGAAAGTTGAATTTTATTGTAATGTTATGATCATATTTTCTTGGTGCAGGAGCTGTCTGAAGTCCCTCCATTGTATAGCCGGTTAATTCTCTTGGTATTTTCTTCTACTTGCCTTGCCTTTTTTTTTTTTTTTTGCATTTATAATNTTTTTTTTTTTTTTTTTTTTTTTTTTGCATTTATAATTTGCTCATTTTTGTGCCCAAATGTATGGGGGTTTTGCGGGTGGAGTGTTGAAGGTGAAATGTGCTTCTTTTATTTACGTAATACAAGCATGGCATTCTAGGTTGTTGATGGTCTTCCAGCAGAATTTGTCCTCGGGAAGGATGGAAAACCTCCTACCAAAGCCTTTGTAGATGCTATGCCCTACACTCGTTCGTTACTAGCAAACGGGATGGCAACTGGGTATCATGCCAAGGCTGCACCACCAACTGTTACGATGCCTCGCTTGAAGGTCAATGGTATTGCTTATATTGCTTAATTGTTGTCCAGTAGTCCCCTTCTAGGTTTACCTTTTGCTCACCTTGGTGCTAATTTAACAGGCTATGGTTTCTGGTGCTATTGGTGGATTCCTGGATGTAGCATTGAATTTCAATACACAAGCTTTTTTAGATGACAATCTTCTGGGTTAGTTTTGCATGACCTTGTATCTTTTATTGCATGATGATGTCGGAGCAGAATTGTGGGGTAACTTTTGCTTGCCTGTCATTCTTTATATTGCAGGGCAGTTTTTTAGAATTGGCTGGAAAATGACGATGTTTGGTGATGAAACTTGGTTAAAGTTGTTTCCGAAGTTATTCACTAGGAAAGATGGCGTTAGTAGCTTCTTTGTAAGTCTCTCTCTTAAAATGATATGGTAAATTTGTTAATCAAGTATTCAAGTGCATAGTTAGAATTATAGGAAAAGAAACGTTAAAAGGGGAAATTTGCTGTTCCAGTGCGCTTTCTGTTCGTGGATTTATTATTTTACTTGAGGTGGCCATGTGCATTCTCAAGTCTGAGTTGCTCATACCTTTATTATTTGGGAAGCTGTCCAGTCATTATCATCATAAAAAATGAAGATAGGAAACAAAAAAAGTGGAAAGTAATTAACATGAGAGAGAAAGCTGTAAATTTTGTTTTGAGGCAAGTGTTCATATAGGCATATAGCTGCTCTATTTTCTTTTACAGTTTTTCTTACTTTTACCAGTCATTACTCATTAGTGAGGCAGTTGGAATTGATAATGATGCTGTGTTTCTTTTCATTTTTTTAATCTTTTCCTTGTTTTTTTGGTCTTTGGATGGTCATAGGTCAAGGACACTATAGTAGTGGATCTCAATGTGTCTCGACATATGCCTGAAGAACTTAATCGGGATGATTGGCATCTCATGGTAATATACGAGCCCTTCACTTTTTTGGTAGTTTTTGTTCATCTGGAAAAAGTCATAGTTGAAGTTCTTCGATGGTTGGTAATTTAGATAGCAAAGGCTAATTTATAATTCTCTTTTCTTTGTGAAACATAATATCTTGTTAGCTGTTATTAAAATAAGGTTACTAGTTGCACACATGTTACTTGTGGTGTAAGGTTGTCTATCACTTCCTTATTAGGTATAATGGTTCATGCCCTGATATATTTCTTAGAAACGTGAAATCAAAGTGGATGATTAATTAAATGGAAGATGTGGACTGGTGGACTATTAAGAGTACATTCATGATTGAATGTAGATATCTGAATTCTTCTTCATTGAACACACAGCTCAGGCACAATACAATCTGAACATGGGATTAGCCTTCCATCTCTGAAAATTAATAATCTTGTCTGATCCTTGCAATATCTGTGCCTTTTCTCATAGATATCTGTTGTGTACTGGTATAATTGGTATGCTTCTTAAGGTTGTGTACAACTGTACGCCCCCCAATGTTTTGCTGCTGCGTTGTTATGCTGTTTCTTGGGAATGGTAGCAGACTGGTGGCAATGGTTCAATTCCTTCTTACCCTCTTTTTCCCAAATTTTATTTGGTTCCCCAAAGAAAAGGGTGAAAGTGGCGAGGTGTAGTCCCTCTGGATTGTCAGGTGGGATTTTGGCATGTTTACGAACTATTGCTATTTATTGATGCATAGAACAACTTGGGTTGTAAACATTAAAAAAGAGGTCTTACTGAGTGCACAAGCCTCCCGTTGTTTAGCGCATCCAGGGATCAAACACCTGATCTATCAGATAGCAAGTAGACACTTGATCATCGCGCCAAGGCAAGATCTTCATTGTAAACATTAAATGACCTTTTTTTAATACGTTTGGCCCGTAACGGGATTGCGTTCTTTCACATGGTTGTTTATTTTTTTTATTTTTTTTATCTATGGTGTTTAGGTTGAGTAGAGATCTTGATATTAATTTTGTGTTCCTTTACAATATATTTCCAGATCCTTCATTATTTGGGATTGGATCATGTCGGACATATTGGTGGACGGAAAAGGTAGTTCTTCCCTTAATGTCTGAGTTGTTGCACGTGTGCTTAGCTGTTTGGATTCTGATTTTATCCTTATCAAACAATGTCAGCGTCCTGATGCCACCAAAGCTTAGGGAGATGGATGATGTGATCAAGATGATTCATTTGGATAGCATTCTTTCCAATGACAGCAAGCAAGGAGATACCCTTCTGGTTTGTTCTTATACTTGCCTTCCTGCTTTCCTTTTTGATAGCTATCCAATTAATGAATGATTTAATAGTTTGTGGGGTTGTCATTCTGTATTGTTATCTGTAAGATTATTGTGGAAGAATCTGAAATGTGCCACAAATCTACCCCCGTATTATTCATGTGTCACACCCATTAGTTATTAACTAATGAACGTGGTACATGACGAGCCTGTGAACATCAGAGTGAACCAGAATATGTTTACAGGGCTGCTTATGGAGAAACCTACTGACATGTATAGCCGTATAGGGATGAGATTGTAGTCTATCTAAAGACCAAGTCAAGGGGCATGCCTCATCACATGATTGTGCTAGCTCTACTTTGTCCTCAATGCCACCACCTCAAAGAACGTTAAGAAGTTGATCAGGCCAAGGGTGTGATATGCAAGGACCATGGGAATGCCGCTGTTCTAGTTAGGACATGTCCATGGATAAAGGGCGTAAAGCCATAAATAACGTTTTGGGAATTTGATGACCTTTGCTTCATAGAAATATTGTAGTTAAGTAGTGTTACCTAATTCTCTAACCACCCCACGAACCGTGAACCGGAAAAGGGAAAAAACATGAAAATGGTACAATTTTGGTCTAATTTAGCAAATTAGGTAGCGAATTGCGTACCCGCACCCAGTCTCATACTAGCAAATCGGGTAACAGTGAGTGGGACTAAGAGCGCAACTAGCCCCATGACAGGACCACGGGGATGATCTAATTGATTTGTAGGATAAGCGGGGGCTGTGAGCCTGTGAGTGTTTGTTTATGCCACGTAAGAAAATTTAAATAAGCCTCGTACTAGTTACTGTGCTCATCCTAGGCGCGAGCATCTCCTATTACATAAGAGCAAATCATTAGATGTGTTAGAGAGGCCACGGGTACTATTTTGAAAGTTTCAATACCCAATAATTCTCTCCAATCCGGTTTTGTTTTTTGAAAGGATTCCAAAATATTTAAGTTGAAAATTTTCCCCTGTTTTCTTTTCAATGTAGTATTTGTCCTTTTTATCTTGAGCGTTTCATGTAGGAATCATATTCATTAAAAGGTGAGAGACGACACCCATTTGTTGATTTATTCTTTTCCATCATTGTATACAAGTAACTAATGCAATTCTCATTGTCCATAATTACTGTTAATCTGCTTAACACTTAATCTCTTTTTCTGCATGTACATTATTTATTTGTATTTACACTGCTACATTCTTGTTCTTGAGTGATACATGAAGCTATGATAAACTGTTATAGAGCAGCTATTCATTCTTAATTGTCTCAATGATGATCCTCTTTTTCTGATGATATCCGAGTCTTCCAAATCTTTGTTAGCAGTCGGCACAGTAGTACTCCCTGTTCTTTTTCGATTAAAAGTTGTATCTACTTACAGATCTGCCCATAAATTTACAGCTTGTGGTCAGTGATCATGGCATGACTGAGAGTGGGAATCATGGTGGCTCTTCATATGAAGAAACTGATTCTTTGGCTCTTTTTATCTATCCCAGTTCAAAAGCTCCTAGTGATGATGTGTCAGTAATTAAAGACACAATGAATCAGGTAACAGATCTCATCATCGTGTCCTGTCATAACAGATATCATGTTGGTAACCATTTATATGCAGAGATTTTAGAAGTAGCCCTCACTCAAAATCTGTTCGTAATTACTTCATATATTCTCATTTCTATGTTTGACGGTTAGTGAAAAATTTGTTTTCTAATTTGATGCTTATCCTACTTGAAATAATGTTTTGCTTCTTCCGATCTTGTGTTTATGGTTACTAGTTAATTTTAATTTAGTGTATAACTCATTAACTATCACATGTTTCTCCATTCTAGGTTGATATTGCTCCAACACTAGCTCTTCTTTTTGGTGTGCCAATTCCCATGAACAATGTTGGAGTCATCGTTGTGGACTGTTTGCTATCTTTAACAGGTAGTTCTTGCAACAGTTTACCAGGAATCTCTAGTCACTTCACTTGATCTTGATGGGGATATGCTTCTTTTTTCATATAGAGATGCTTTTAATGCTTTGTGGATCATTTTTCTTGCACCTTAGACCTTGTCTTGCTGACCAGATGGCCAACTGCTAAGGGCGCTTGAGTTGAATTCATGGCAACTGTTGAGGTTACTTAAAGCCCAGTTGCCTGGTCTATCTTGTGTGGTTTCCGCTTCTGGCTACCCTGCTGATACTAGATGGTCCAAAGTGAGTCTGTGTAGTGGTACAGTTGAAGAGATGTTTTGTTGCTTATACTCTAAAGCTGCTTCTCTTCACACTTTCTGGAAGTCGTCTACAACTTCAAGGTTGGTCCAGATGCTGTATTAAATGAGATAGATATTGGTTCACTATTGCAGGAACTTTGTGATCTGTGTTCATAGACTTTTTTTAGGTTACTATAACAGAAAAATTTCTGATCTGTTTATCCTCTTGTTGTACAAAATTTCCTTAACAGGTCTGACAGTGGTCTTCATTACAATCACACTGTCAATGCATATCATGACTTTCTGATGACTGCAAGTGAATGGTTAACTCGCAAAGTCACTGATGTAAGTCATTTCCTCTGCACTGCATCTTAAGTAACATTCAGCGACTTTGCAAGAAAAATAGAGTTGTTTATACCTGAAAAGGGGGACCCGGGGGGGGGGGGGGNGGGGGGGGGGGGGGGATGGAGTCAACATACAAATTTAAGAGGCAATTTTCCTTTCCTTTCTGTGGTTGGACCCATCCTAAGGCCCCAGATTAACGAAGGGCCTCTGGAATAGATCTTCCAGAAGAACAATTAATCTGCTTATTTTTATTGTTCAGAAGAAAAAAAGACATAAAGTTAGTAAAGACAATAGTTTCCTTGTTTCTTCCATGTTTCGTTTATTAATATAATAAACTGCTCTCTTACTTTCAGAAACCTTTTGGTCAACTTGCTTTTGGTATTCTTGCAATGGTCCTTTCTTCTCTAGTATTTCTGAGACTTCTGTTCTGTTTGCGAATAGAGGAATGCCTTAAAGAGAATCAAGGATGTGCAGAGATGAAGAGTTGGAGTCTAGAGGAAATTTTCGTTGTGGTTGTGGTTGTCTTTCTTGTTGTGAGCATGGGATCTAGTTCTATGGTTGAAGAAGAGCAGTATATTTGGCATTTTCTGACAGCAACGTTATTCTGGATTATAATCCGTAAAGTGATGAAGTCACTTCCTCTAGGAGATCAAGACAGACTTAATAAAAGCAGCTATAACTCAAGATTCTCACAACTGTGTTCAATCCTTGTAATGCTGATTTGTGGAAGGATCATAAGAGCTTGGCATCAGGGTGGTGTTAATTGGACGCATCTACCTGACATTTCAAAATGGCTTACGCAAGCAGGAAGGAGTCAGGAAAAGGCAATCAGAGTGTTATCAGTAATCTCAGTGACCAGCTTGAGCTTGTTGGCATTTTCTAAGTCGAGGTTGAACAAACTTTTTAGCAACCTCCTCCAGTTCTTCTTTCTACTCTCAGGATACTTAGTTTTGCAACATGTAATGATACATCAGGATGATGAATTTCTGGTATCTGGTCATGGTGCAACTTTTATGGCTCAAATTATCTATGCTGTTCTGAGCATTGTGACGTGTTTTACAGTATTAGCCTCTCCGTGGCTTTCTCCTGTCACCACTTGTAAAGAATCGGCATCGAATAGACAGTTAGATTGTTCTCAATCAGTTAAGAATCGTATGATCTCTCTGTCTAAAGGATTAAATGAGTCTGCCTATTTGACTGGTTGGGCATATGTGATTTCCTGGTCCCTGCTGCAGCTTTTGTTGCAGAAACCAAGTAACTCGATGCCAGTTTTTCTATTACTGCTGCAGATCTCTGCAGCTATGACATACTTTTCCAGTAATGGAGCATATCGAAAGTCATGGGTAGAGGTAAGATAAAATAAGTATGTATTTATCCAAGTTCAAATTTTTTCAACCTTCGGAATTCTCATCAAAGCTTTGATCCCACCTTTGCTGAATGATCTCAGTACTGACATTTTCTGTTGTTTTCTTTCTGATTACTTTGTACTGATTTTGTCTTATTAGGTTTCAGCATTGTATTTTATTGGGATGGCTGGTCATTTTGGTCTCGGCAACAGCAACACTCTTGCCACCATTGATGTTGCTGGAGCTTTCATGGTAAATCATCTAATAAAACACGAGCCCACATATTTGTTTTTAGTTTCAATCTGCTTTCTGTTAACAGAACTTAAATCTCTGTAAAATTTTAGGGTATCTCAAGCCACTCAACTGTACTGTCTGGTATACTGATGTTGTGCATCACTTACGCATCACCAATATTGGTGCTTCTTTCTTTGACGATGTACGTATCTTTGAAGAATGAGAGTTATTATGGACTTGATCATACCTTGGATTTTGGGCTACTACTCAAGACAGTGCTTGCTGTTCCGTTTCTTGTTCCACTGGGCATAAATTCTGTTCTCTTAGTTGCATATACCATCGTATTGCTCCAGATGAGGAACCATCTTTTTATTTGGAGTGTCTTCTCTCCCAAGTAAGTATCACCTGAGCTATTAGAGTTTAATATATTTGTGGAAAAAGTAATTTATGCTAGTAATGGATATGGACTAAGAAATTATTACCAAAGGTAGTACACACCGGACCAAAAAAAATAAAAATAAAATTATAAAGCACAAGCACCTAGCTTGAATTTCCAGGTACAGAAGAAAGTGATTATACTTCAAGATGCTTTAGGTTGGCGCATGTAGTATTTCTTTGTTATATGCATGGAGTTACTTTCTTTCTTTGTTATATGCATGGAGTTACTTTCTTCGTTGTGAGCTTGTTATAATTGATGGGGTGCATGCTCTTATTAGGTACCTGTATGTATGTGCAACAACAGCTTGTGTGTATATTGGGACATTCATCCTGACTGCAAATGTGCTTTACATATCCTTGGTGTATACCCTGCGTAGGAAGAGGATGTCAGAAGTAGTACAGACTACAGAGAGGGAAGTCATTGACCAATAGTTCATCTCTATGGTTTCTTCAGATGTTTCCCATTTTAATTCGTAGTGAACCTCAAAAACTGTAATACTCGATCCTTTTCGCAATTAAATGCAAAGAGGGTTTTTGCTCAAGATTTTTCAGGCCAATGAAGACAACTTAAAAGGTCTAAGAGCATTGACACATTTTCACTATGGATTCTGCTAGCTTTTCAAATTTGATGTCGTATTCATTCTAGTTAGCCATTCTAGGACTAATGTATAGCATGTCGACAATGTGGTCAAGCTAAAAATAGCTCTTACTAGATTATTCAAGCATTTAATTGTCATAAGTTTATCTAAATACGAAGTAGTTAAGAACAAATGTGGTTAATTGGCTTCTTCTATAAATTCGACTGACTCTATTTACTGCTCGTAGTTACTCAGTAGCTATAGACTTGTAGTTATCTATAATACTCCGTAGTTTACTACCTTTGTAAGTTGTAATAGTACTCAGTAAACTATTGTACAAAACAAACGTTATCGCCTATTTGGGATTCTGAATTTCATTTGAAATTCTGGATTTGGCC CTGAAAATAGGCCATGGTCGAATAAACTTCCATTGGTAGCTAAAGCTGGGTCGAAACTGCTCTCAATTTTCTTCGAATATGTCGTTGATATCATGCAAAAGCCTCACAATATGGACGATATTTGCCATGGCGTTGCAAATAGCAGGTCTATATCTCTTCGTCCTCGGTTTCTTCCCGGTCAAGCCTGCTCTCTCCGGTGCCAGTGGTCCTGAGAGTTATCGACCTCCTGGAAATGAGTCCTTTGAAGATTTCGACGTTTCCTCGATGAACTCCGATGATCTCCGATCTCTTTATCTGGAGCTGTCTGAAGTCCCTCCATTGTATAGCCGGTTAATTCTCTTGGTTGTTGATGGTCTTCCAGCAGAATTTGTCCTCGGGAAGGATGGAAAACCTCCTACCAAAGCCTTTGTAGATGCTATGCCCTACACTCGTTCGTTACTAGCAAACGGGATGGCAACTGGGTATCATGCCAAGGCTGCACCACCAACTGTTACGATGCCTCGCTTGAAGGCTATGGTTTCTGGTGCTATTGGTGGATTCCTGGATGTAGCATTGAATTTCAATACACAAGCTTTTTTAGATGACAATCTTCTGGGGCAGTTTTTTAGAATTGGCTGGAAAATGACGATGTTTGGTGATGAAACTTGGTTAAAGTTGTTTCCGAAGTTATTCACTAGGAAAGATGGCGTTAGTAGCTTCTTTGTCAAGGACACTATAGTAGTGGATCTCAATGTGTCTCGACATATGCCTGAAGAACTTAATCGGGATGATTGGCATCTCATGATCCTTCATTATTTGGGATTGGATCATGTCGGACATATTGGTGGACGGAAAAGCGTCCTGATGCCACCAAAGCTTAGGGAGATGGATGATGTGATCAAGATGATTCATTTGGATAGCATTCTTTCCAATGACAGCAAGCAAGGAGATACCCTTCTGCTTGTGGTCAGTGATCATGGCATGACTGAGAGTGGGAATCATGGTGGCTCTTCATATGAAGAAACTGATTCTTTGGCTCTTTTTATCTATCCCAGTTCAAAAGCTCCTAGTGATGATGTGTCAGTAATTAAAGACACAATGAATCAGGTTGATATTGCTCCAACACTAGCTCTTCTTTTTGGTGTGCCAATTCCCATGAACAATGTTGGAGTCATCGTTGTGGACTGTTTGCTATCTTTAACAGATGGCCAACTGCTAAGGGCGCTTGAGTTGAATTCATGGCAACTGTTGAGGTTACTTAAAGCCCAGTTGCCTGGTCTATCTTGTGTGGTTTCCGCTTCTGGCTACCCTGCTGATACTAGATGGTCCAAAGTGAGTCTGTGTAGTGGTACAGTTGAAGAGATGTTTTGTTGCTTATACTCTAAAGCTGCTTCTCTTCACACTTTCTGGAAGTCGTCTACAACTTCAAGGTCTGACAGTGGTCTTCATTACAATCACACTGTCAATGCATATCATGACTTTCTGATGACTGCAAGTGAATGGTTAACTCGCAAAGTCACTGATAGGAATGCCTTAAAGAGAATCAAGGATGTGCAGAGATGAAGAGTTGGAGTCTAGAGGAAATTTTCGTTGTGGTTGTGGTTGTCTTTCTTGTTGTGAGCATGGGATCTAGTTCTATGGTTGAAGAAGAGCAGTATATTTGGCATTTTCTGACAGCAACGTTATTCTGGATTATAATCCGTAAAGTGATGAAGTCACTTCCTCTAGGAGATCAAGACAGACTTAATAAAAGCAGCTATAACTCAAGATTCTCACAACTGTGTTCAATCCTTGTAATGCTGATTTGTGGAAGGATCATAAGAGCTTGGCATCAGGGTGGTGTTAATTGGACGCATCTACCTGACATTTCAAAATGGCTTACGCAAGCAGGAAGGAGTCAGGAAAAGGCAATCAGAGTGTTATCAGTAATCTCAGTGACCAGCTTGAGCTTGTTGGCATTTTCTAAGTCGAGGTTGAACAAACTTTTTAGCAACCTCCTCCAGTTCTTCTTTCTACTCTCAGGATACTTAGTTTTGCAACATGTAATGATACATCAGGATGATGAATTTCTGGTATCTGGTCATGGTGCAACTTTTATGGCTCAAATTATCTATGCTGTTCTGAGCATTGTGACGTGTTTTACAGTATTAGCCTCTCCGTGGCTTTCTCCTGTCACCACTTGTAAAGAATCGGCATCGAATAGACAGTTAGATTGTTCTCAATCAGTTAAGAATCGTATGATCTCTCTGTCTAAAGGATTAAATGAGTCTGCCTATTTGACTGGTTGGGCATATGTGATTTCCTGGTCCCTGCTGCAGCTTTTGTTGCAGAAACCAAGTAACTCGATGCCAGTTTTTCTATTACTGCTGCAGATCTCTGCAGCTATGACATACTTTTCCAGTAATGGAGCATATCGAAAGTCATGGGTAGAGGTTTCAGCATTGTATTTTATTGGGATGGCTGGTCATTTTGGTCTCGGCAACAGCAACACTCTTGCCACCATTGATGTTGCTGGAGCTTTCATGGGTATCTCAAGCCACTCAACTGTACTGTCTGGTATACTGATGTTGTGCATCACTTACGCATCACCAATATTGGTGCTTCTTTCTTTGACGATGTACGTATCTTTGAAGAATGAGAGTTATTATGGACTTGATCATACCTTGGATTTTGGGCTACTACTCAAGACAGTGCTTGCTGTTCCGTTTCTTGTTCCACTGGGCATAAATTCTGTTCTCTTAGTTGCATATACCATCGTATTGCTCCAGATGAGGAACCATCTTTTTATTTGGAGTGTCTTCTCTCCCAAGTACCTGTATGTATGTGCAACAACAGCTTGTGTGTATATTGGGACATTCATCCTGACTGCAAATGTGCTTTACATATCCTTGGTGTATACCCTGCGTAGGAAGAGGATGTCAGAAGTAGTACAGACTACAGAGAGGGAAGTCATTGACCAATAGTTCATCTCTATGGTTTCTTCAGATGTTTCCCATTTTAATTCGTAGTGAACCTCAAAAACTGTAATACTCGATCCTTTTCGCAATTAAATGCAAAGAGGGTTTTTGCTCAAGATTTTTCAGGCCAATGAAGACAACTTAAAAGGTCTAAGAGCATTGACACATTTTCACTATGGATTCTGCTAGCTTTTCAAATTTGATGTCGTATTCATTCTAGTTAGCCATTCTAGGACTAATGTATAGCATGTCGACAATGTGGTCAAGCTAAAAATAGCTCTTACTAGATTATTCAAGCATTTAATTGTCATAAGTTTATCTAAATACGAAGTAGTTAAGAACAAATGTGGTTAATTGGCTTCTTCTATAAATTCGACTGACTCTATTTACTGCTCGTAGTTACTCAGTAGCTATAGACTTGTAGTTATCTATAATACTCCGTAGTTTACTACCTTTGTAAGTTGTAATAGTACTCAGTAAACTATTGTACAAAACAAACGTTATCGCCTATTTGGGATTCTGAATTTCATTTGAAATTCTGGATTTGGCC ATGTCGTTGATATCATGCAAAAGCCTCACAATATGGACGATATTTGCCATGGCGTTGCAAATAGCAGGTCTATATCTCTTCGTCCTCGGTTTCTTCCCGGTCAAGCCTGCTCTCTCCGGTGCCAGTGGTCCTGAGAGTTATCGACCTCCTGGAAATGAGTCCTTTGAAGATTTCGACGTTTCCTCGATGAACTCCGATGATCTCCGATCTCTTTATCTGGAGCTGTCTGAAGTCCCTCCATTGTATAGCCGGTTAATTCTCTTGGTTGTTGATGGTCTTCCAGCAGAATTTGTCCTCGGGAAGGATGGAAAACCTCCTACCAAAGCCTTTGTAGATGCTATGCCCTACACTCGTTCGTTACTAGCAAACGGGATGGCAACTGGGTATCATGCCAAGGCTGCACCACCAACTGTTACGATGCCTCGCTTGAAGGCTATGGTTTCTGGTGCTATTGGTGGATTCCTGGATGTAGCATTGAATTTCAATACACAAGCTTTTTTAGATGACAATCTTCTGGGGCAGTTTTTTAGAATTGGCTGGAAAATGACGATGTTTGGTGATGAAACTTGGTTAAAGTTGTTTCCGAAGTTATTCACTAGGAAAGATGGCGTTAGTAGCTTCTTTGTCAAGGACACTATAGTAGTGGATCTCAATGTGTCTCGACATATGCCTGAAGAACTTAATCGGGATGATTGGCATCTCATGATCCTTCATTATTTGGGATTGGATCATGTCGGACATATTGGTGGACGGAAAAGCGTCCTGATGCCACCAAAGCTTAGGGAGATGGATGATGTGATCAAGATGATTCATTTGGATAGCATTCTTTCCAATGACAGCAAGCAAGGAGATACCCTTCTGCTTGTGGTCAGTGATCATGGCATGACTGAGAGTGGGAATCATGGTGGCTCTTCATATGAAGAAACTGATTCTTTGGCTCTTTTTATCTATCCCAGTTCAAAAGCTCCTAGTGATGATGTGTCAGTAATTAAAGACACAATGAATCAGGTTGATATTGCTCCAACACTAGCTCTTCTTTTTGGTGTGCCAATTCCCATGAACAATGTTGGAGTCATCGTTGTGGACTGTTTGCTATCTTTAACAGATGGCCAACTGCTAAGGGCGCTTGAGTTGAATTCATGGCAACTGTTGAGGTTACTTAAAGCCCAGTTGCCTGGTCTATCTTGTGTGGTTTCCGCTTCTGGCTACCCTGCTGATACTAGATGGTCCAAAGTGAGTCTGTGTAGTGGTACAGTTGAAGAGATGTTTTGTTGCTTATACTCTAAAGCTGCTTCTCTTCACACTTTCTGGAAGTCGTCTACAACTTCAAGGTCTGACAGTGGTCTTCATTACAATCACACTGTCAATGCATATCATGACTTTCTGATGACTGCAAGTGAATGGTTAACTCGCAAAGTCACTGATAGGAATGCCTTAAAGAGAATCAAGGATGTGCAGAGATGA MSLISCKSLTIWTIFAMALQIAGLYLFVLGFFPVKPALSGASGPESYRPPGNESFEDFDVSSMNSDDLRSLYLELSEVPPLYSRLILLVVDGLPAEFVLGKDGKPPTKAFVDAMPYTRSLLANGMATGYHAKAAPPTVTMPRLKAMVSGAIGGFLDVALNFNTQAFLDDNLLGQFFRIGWKMTMFGDETWLKLFPKLFTRKDGVSSFFVKDTIVVDLNVSRHMPEELNRDDWHLMILHYLGLDHVGHIGGRKSVLMPPKLREMDDVIKMIHLDSILSNDSKQGDTLLLVVSDHGMTESGNHGGSSYEETDSLALFIYPSSKAPSDDVSVIKDTMNQVDIAPTLALLFGVPIPMNNVGVIVVDCLLSLTDGQLLRALELNSWQLLRLLKAQLPGLSCVVSASGYPADTRWSKVSLCSGTVEEMFCCLYSKAASLHTFWKSSTTSRSDSGLHYNHTVNAYHDFLMTASEWLTRKVTDRNALKRIKDVQR Relationships
The following mRNA feature(s) are a part of this gene:
Homology
BLAST of Spo00499.1 vs. NCBI nr
Match: gi|902201093|gb|KNA13901.1| (hypothetical protein SOVF_112460 [Spinacia oleracea]) HSP 1 Score: 949.1 bits (2452), Expect = 3.000e-273 Identity = 475/476 (99.79%), Postives = 476/476 (100.00%), Query Frame = 1
BLAST of Spo00499.1 vs. NCBI nr
Match: gi|731338446|ref|XP_010680333.1| (PREDICTED: GPI ethanolamine phosphate transferase 2 isoform X1 [Beta vulgaris subsp. vulgaris]) HSP 1 Score: 783.1 bits (2021), Expect = 2.800e-223 Identity = 391/476 (82.14%), Postives = 429/476 (90.13%), Query Frame = 1
BLAST of Spo00499.1 vs. NCBI nr
Match: gi|1009145851|ref|XP_015890563.1| (PREDICTED: GPI ethanolamine phosphate transferase 2 isoform X1 [Ziziphus jujuba]) HSP 1 Score: 621.7 bits (1602), Expect = 1.100e-174 Identity = 319/477 (66.88%), Postives = 373/477 (78.20%), Query Frame = 1
BLAST of Spo00499.1 vs. NCBI nr
Match: gi|595831336|ref|XP_007206255.1| (hypothetical protein PRUPE_ppa015757mg [Prunus persica]) HSP 1 Score: 615.1 bits (1585), Expect = 1.000e-172 Identity = 315/474 (66.46%), Postives = 370/474 (78.06%), Query Frame = 1
BLAST of Spo00499.1 vs. NCBI nr
Match: gi|568823800|ref|XP_006466296.1| (PREDICTED: GPI ethanolamine phosphate transferase 2 isoform X1 [Citrus sinensis]) HSP 1 Score: 608.6 bits (1568), Expect = 9.500e-171 Identity = 317/476 (66.60%), Postives = 370/476 (77.73%), Query Frame = 1
BLAST of Spo00499.1 vs. UniProtKB/TrEMBL
Match: A0A0K9R305_SPIOL (Uncharacterized protein OS=Spinacia oleracea GN=SOVF_112460 PE=4 SV=1) HSP 1 Score: 949.1 bits (2452), Expect = 2.100e-273 Identity = 475/476 (99.79%), Postives = 476/476 (100.00%), Query Frame = 1
BLAST of Spo00499.1 vs. UniProtKB/TrEMBL
Match: A0A0J8F133_BETVU (Uncharacterized protein OS=Beta vulgaris subsp. vulgaris GN=BVRB_6g133660 PE=4 SV=1) HSP 1 Score: 783.1 bits (2021), Expect = 2.000e-223 Identity = 391/476 (82.14%), Postives = 429/476 (90.13%), Query Frame = 1
BLAST of Spo00499.1 vs. UniProtKB/TrEMBL
Match: M5W160_PRUPE (Uncharacterized protein OS=Prunus persica GN=PRUPE_ppa015757mg PE=4 SV=1) HSP 1 Score: 615.1 bits (1585), Expect = 7.100e-173 Identity = 315/474 (66.46%), Postives = 370/474 (78.06%), Query Frame = 1
BLAST of Spo00499.1 vs. UniProtKB/TrEMBL
Match: B9SXG8_RICCO (Phosphatidylinositol glycan, putative OS=Ricinus communis GN=RCOM_0069700 PE=4 SV=1) HSP 1 Score: 608.2 bits (1567), Expect = 8.700e-171 Identity = 315/473 (66.60%), Postives = 365/473 (77.17%), Query Frame = 1
BLAST of Spo00499.1 vs. UniProtKB/TrEMBL
Match: B9HFR6_POPTR (Uncharacterized protein OS=Populus trichocarpa GN=POPTR_0007s14350g PE=4 SV=2) HSP 1 Score: 606.7 bits (1563), Expect = 2.500e-170 Identity = 316/468 (67.52%), Postives = 372/468 (79.49%), Query Frame = 1
BLAST of Spo00499.1 vs. ExPASy Swiss-Prot
Match: PIGG_HUMAN (GPI ethanolamine phosphate transferase 2 OS=Homo sapiens GN=PIGG PE=1 SV=1) HSP 1 Score: 258.8 bits (660), Expect = 1.200e-67 Identity = 151/380 (39.74%), Postives = 226/380 (59.47%), Query Frame = 1
BLAST of Spo00499.1 vs. ExPASy Swiss-Prot
Match: GPI7_ASPFU (GPI ethanolamine phosphate transferase 2 OS=Neosartorya fumigata (strain ATCC MYA-4609 / Af293 / CBS 101355 / FGSC A1100) GN=las21 PE=2 SV=1) HSP 1 Score: 234.2 bits (596), Expect = 3.100e-60 Identity = 150/396 (37.88%), Postives = 214/396 (54.04%), Query Frame = 1
BLAST of Spo00499.1 vs. ExPASy Swiss-Prot
Match: GPI7_KLULA (GPI ethanolamine phosphate transferase 2 OS=Kluyveromyces lactis (strain ATCC 8585 / CBS 2359 / DSM 70799 / NBRC 1267 / NRRL Y-1140 / WM37) GN=LAS21 PE=3 SV=1) HSP 1 Score: 230.7 bits (587), Expect = 3.400e-59 Identity = 150/391 (38.36%), Postives = 215/391 (54.99%), Query Frame = 1
BLAST of Spo00499.1 vs. ExPASy Swiss-Prot
Match: GPI7_ASHGO (GPI ethanolamine phosphate transferase 2 OS=Ashbya gossypii (strain ATCC 10895 / CBS 109.51 / FGSC 9923 / NRRL Y-1056) GN=LAS21 PE=3 SV=2) HSP 1 Score: 226.9 bits (577), Expect = 4.900e-58 Identity = 148/389 (38.05%), Postives = 205/389 (52.70%), Query Frame = 1
BLAST of Spo00499.1 vs. ExPASy Swiss-Prot
Match: GPI7_ASPOR (GPI ethanolamine phosphate transferase 2 OS=Aspergillus oryzae (strain ATCC 42149 / RIB 40) GN=las21 PE=3 SV=2) HSP 1 Score: 218.0 bits (554), Expect = 2.300e-55 Identity = 151/413 (36.56%), Postives = 212/413 (51.33%), Query Frame = 1
BLAST of Spo00499.1 vs. TAIR (Arabidopsis)
Match: AT2G22530.1 (Alkaline-phosphatase-like family protein) HSP 1 Score: 567.8 bits (1462), Expect = 6.600e-162 Identity = 300/483 (62.11%), Postives = 357/483 (73.91%), Query Frame = 1
BLAST of Spo00499.1 vs. TAIR (Arabidopsis)
Match: AT5G17250.1 (Alkaline-phosphatase-like family protein) HSP 1 Score: 161.0 bits (406), Expect = 1.900e-39 Identity = 104/323 (32.20%), Postives = 164/323 (50.77%), Query Frame = 1
The following BLAST results are available for this feature:
BLAST of Spo00499.1 vs. NCBI nr
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. NCBI nr) Total hits: 5
BLAST of Spo00499.1 vs. UniProtKB/TrEMBL
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. UniprotKB/TrEMBL) Total hits: 5
BLAST of Spo00499.1 vs. ExPASy Swiss-Prot
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. ExPASy SwissProt) Total hits: 5
BLAST of Spo00499.1 vs. TAIR (Arabidopsis)
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. TAIR) Total hits: 2
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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