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.ACTATCGGCAAAAAAAAATTGAATTATTTTTGACGCGAACTGGAAATTCAAAAAGTTGCTTTATTCGCCCTCAACGTGTCCTTTTTCAGATACCCAAAACAGACAGCCAAAAATCAAACATTCCCTACTTTCTCTCTCCTTTAATTCTCGTTGAACAAACTCCCAATTTGAAACCGTCACCCTCTCACCTTCCCACCATCTTAATTGTGACTCTTTCCCCGCATTTCTCGATTCTAGATTTCTAGGGTTTCCACATTTCTACCTATAATTGGTATATCTCCTCAAAATTGGCTATGGCGAACAATTCTGATCATTCTAGCCGGAGTTTGTCGATGAGTTCCGGCGACAATTCCGTTGACTTAGTCGACGATAATCACTCGGAGAAGAGATTTTCCGACGTTGCGATCGAAGGAGATGGTGAAGGTGTTGTTGATCATGGTGATAGTAATGGCGAGAGAGTTGCTGGTTCTGAAGGTGTTAGTAGGGAGTGCTCTTCTGCTTCTGGTGTGTTTCCATTTTCCTTTTTTAAGTCTGATTTTGACTGTTTTTTTTGTTTTTTTAATATTATGTTTGTGATGATGATTTGCTGAATTGAGAAAATTTGGTGAACTGAAATTTTGTAACTTATTGCAGGAAATTATAGTGTTAGGAATTTAGTATATGAGATCAATAAGAGAGGAATTGAGAAAGACTAATTCCGCATTTGACTAATTGTTTTCGTTCAACCTTGAATAAGGCTTGAATTATGTTGCGATTTAGACAGTTAGAATTTAGAATTAAGTGCATGTTTGATATGAATTTAGGAAAGAAAATGGAAACAAATAAGGAGAAAGAGTAATGTTAATTGTTACCATTGTAGTTGTTTGGTATAACTAGAAAACAAAGCCCTCGTATCAAGTTGGGGAATTTTAGTCACCGTGGAGTTGGAATGGTAACAATTACAAATGAGGGATAATGGTAAATTGGCAATGGCAGATTGACAGTAGTTTAGCGGTGTCCGATCTCTTATTGAATTTGTGGTTACATGAGTTAGAGCTTCGACACGAGGAACTCAACTATTATGTGTTTAGATATGTTGGAGGGGAGGGGAGGCAAGGGGAAGGAAGCGAATGGGAGGAGTAGGGATAGAAAGGGAAGGAAATATCCTATTGTTTTCATCTTTACTCTTCCGCAATCTATATACTTCCTCCGTTCCTTAAATATTGCACCATGATTGACTTTTACTTCTCCAACATGCTACTTTGACTCTTAATATCTCAAATTATGTAGGAGGATAAGTAAAAATTATCAAAAATTGATATTTAGAAAATATATATCGATACGAATCTAACATGATCACACATTACTACAATAATCACAAAAAATTCAAAGTCGTAGTATGAATAGTGTGAAAATCAAAATGGTGCGGTATTTACGGAACGGAGTAAGCATACATATCCAAACGGAGGTAAATGGATCCATCAACTTCCTTTCCTTTTCCATCAAACTTTTTCATAGATTAAATCAATCTGGTAGTAGTCCTTTGTTTGTACTGTAAATTTTGCGAACTGAATTTGAAATTTCCATGTGTTTATCTCCTTAATCTTGTACGTGCGGTGATAGGTAAATTTGGTTGGCAGAAGTGGCCAAGATATAAATCTCTGCCTACGCCCCTCTCTCCTCTTCACTTGTTCGGTGGATAAGTAGTAAAGAATTCAATTAACACTTAAATGGACACCCATCAGTTGTGAGACTTGTTACCCCTAGATAAAAGGATGGGTAGCACAAACATTATCCTCGTCCACGAAATGCAAAGTCAAGTGTTGCTCATGATGCAACGCCTCTAACTATGCAAAATCATTATAGAAGATTAATCCCTCAAAATCTGTTGCGCTTGTGCCTTGTGGGAAGGAAATTGCAAAAATGTGGGAATAGTTATAATATCAGATCATGCACAATGTGCTCATATGCCTGTTGATTGGACTATGAACCCTTATGCTTCAGAAAACTACACACCTTATACACCATTTGTTACACTGTAATGTGAGTTACATATGTTTTTGGTGTACAAAAAGCCACAAAGGGCAAGACGACAAATGGTGTAGACGGGCTCGATCTCAGTTTGGTCTTGGGTACCACTCCCTCAAGACTTTACCTTACCGATTAAGCTAGTTGACATCCACTGTGGTTACACACGTTGCTAGGGGGTACTAGGCCACTAGGGTTTAACATTATAAGTATGGGGTACATTTAGTGCATTATGTACCCCTAAATATCTAGCGTAGATAAAATGCTTCTTAAAACTTTATTATTGATGTATGAGATGGTTGTATGGAATTCCAGCACAACCAGGCAACCACCATACAGCCATTGCTTTGTAGACTTATCATGAATTTATCTAGTAGCATATGAAGGACATTTCTTATGGGTTTCAAAATGTCCACTTTTATTGGAACTTGGAAGTATATATCTAAAGTATGTATTTTTTTTAGGATCCTCTAGTGGAAATTGCTCTAATGGAAACAATAAATTCCTGGAATCATCAACTTCTAATCATCTTGCGAAAGTTGGAGAATCAAAACGTCATAACCCACTCAGTAAATTAGCAGCAAAGCTTTTTGATGAAACAGTGCCCCTGAAGAAAAAGGTTAGTATTAACACCCCCCCCCCTCAACCCATGCGTGGTAACGTTTCAATATTTTACAATGTCCTTTTTTCTAGGTATTGGTAGCTATTTGTATATTACCACATTTTAAGAAGTTTATAATTATTAATGAAACTAATCTCTATACTAGAGTAAACACATGGCCCAGTCTAGTTTTTTTAAGCTTCATTGGGCATTTGAGCATTCTTGTATTTCCAGCTCAAATGGCTGAACCGGATTGCAACTGTTAAAGGAGATGGAACTGTACAATTTGACGTTCCTGGAGATATGAAAACCTCAAGCCTTGATTTGGGAACTGGAGTGGCATCTGGTGGCAGTACAGAAGTAGAACAACTTGATTCACCTGACGTTGATGATTTGCCCCCAATGCAAATTGTGATTCTAATTGTTGGAACTAGAGGAGATGTGCAACCCTTTGTTGCCATCGGGAAGCGTTTGCAGGTATTTGTTCTTGGTTTTCTTCATATATTACATTTTTGGGCAACTAGTTTTAAGTTTCTAATAATACAGATGTCCTCTATTATAGTGCGGTGACTTTGCATAGTATACAGGATTAAAATGCAGGGTACAGAGAAGTACTTCATAGTTTCCTTAACAAACTGTTGTGTATATGATAGTTTGTGTGCTTGGTTTTTTTGGTTTTGTATATGGGTCATGGGTGACACCCTGTTGGTGTTCGTGTCTTTTTAGTACATTTCCTTATCACAGTACTTTGTAAAAAAAATGTTATTGCTTATGGGTGCTTTTGTTTCTGCAACTTCTTTAGTAAATTAAAACTAAATTTATATCTTGATTCTAGTTGGTATTCATGCTTCTGGTTTCCTCTTATTTTTCCTTCTTTGGTTGTCTTCTTGTTGCTTTAGTCTGTATTCTATTCTTATCAGGATGGAGATTATATTCTCCACGTTTTTTTGTTCTTGCTTCGTGAGTTTATATGGCAAGAGTTCCATCTTGATTATATGCATGACATAAATATACAAATATTTTTTTCCTTGGGAAACTTCATTTATTATGTTTTCTGTATTACTCTTCTCCATAATGTTTCGGGAACGAACCATAGATACCAGATGGTTTCTCTTTCTTTATTTGTTAGAAAGAGTATTTTATCATTGTGCTCTGCCAATCTGCTTTCTCTCCTTAGAAGAGGCCTTGTTTTCTCCAGCGAAAGGTTGTCATAAGCGTCCTAGAAATTTTCTGTTTGTGCAATTGTCCAAAGCTTAGGCACCCACTTTATCCGTCATTTATCCTCGTTATGCATCAAAGATCTTAGTAAATGCTGTTTTGTTCCACATATAGAGATCCATGATGTACTTGTCCCTAGCACATCTGGGTAAGTAAGGAAAGTGAAAGCTTTCATATTTATTTTGACAGACCTGCAAGTCACTTTGTTTTCTTTTTATGTTGACTTTGAAACTTAAAATTTTTAGTTGGTTCTGATTCTCTAAAATCTTAAGAACTTATTTTCTGTATTTTCATTTTTCTAGAAACCTAGAAGTAGTCATGGTTCCGAGTAGTTTATTGAATTTACTTGGAACCTCCGTTCAAGTGTTTTCTTCACGATGCTTTATATTTGTCCTTGATGCACACTTGGAGGTCAGAACAATTACCAGGAATATTGTCTGGTCCAATATTTTCGTGCAACAAAGATGAACAAACTGGGCTCTAACATTAATGTGGAGGATTCGATGATGTTGCTTATCAGTTCCTACAAGCTGGAGCTACTGTACCATTGATTTTTTATTACTCATTAGTGAACTTCCCTATTTTCCCTTTTCCCTCTTTGTTAGTCCTCTCTTTTATGAAGTCTATTCTTGGTTTTGTTAGTGGATGTGCTTGACCTTTTTCCATACTTGACAAGGTTCTTGTTATATTGTGTAATTGTTACTTATATATTGCTGGTTCTCGCTGATTTATTTCTGGTTTATATATGTGACCCTGGTTGTCCGACACTACCCATTCATTTTGTGTTTCTCTTCAGGAATATGGCCATAGGGTCAGATTAGCAACTCACCGAAACTTCAAAGAGTTTGTTTTGGCTTCTGGCTTGGAGTTCTTTCCTTTAGGAGGGGATCCCAAAGTTCTCGCTGAATGTAAGTTCCCTAAAAGGCTGATACGAGACTGCTGTTTTGGGTTATCTTTTTGCTAGAACTTAGAGGCTGTTGTCCCTTCGCGGAAGTTCTGAATAACCATGATATTGTTAATCACACCTATTCTTGTCTTAATTCTTAAATTGTAATATTTTCCACTAAAATATTGTGAGCGTAATCTCCATCCTTGTCATTTTGCACTGATGTTACGTTTTTACGTTGCGGTTTAGAGTGTTCCTGAAAACATTTTTTAACCTTCATTTGTTAGATATACGAGAACAATCAGTTGCTTTTTGCTATATCATTAAGAGATTAGCATGTTTGTTATCTTTCTTTTATTTTGAAAAGACTCGACATTAGCAAGCTTTCAGCTTCAGATTGCAAAGGATTAATATAAAATGACTAACTTTCAGCTAATTGCTGTACTCCTTGTTTGTTGCTACTTAGTAAGTCACTTAATATCCTTTCCACTACAAGTCACTTAATATCCTTCCCACTACAAGTCACTTAATCTCCTTCCCACTACAAGTCACTTAATATCCTTCCCACTACAAGTCACTTAATCTCCTTCCCAGTACAAATTGTAACAGAAACCTCTTTGCAACTGCTGTTTGGTCGTTTTCCTCATTGCTGTATGCCTGTTGGGTTTCTCTTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTCTGTGGGGATTGTTTTTAATTTTGTATCTAGATTGTTAAAAAATATTTTGTTTAATAATGAACTCTATGGTGGGACTTTCTATGTTTTGTTTGGAAATTGGTTTGACTTATGAATTTTTTATTTGGGGAATAGTGCAAAGTTTTTGGGAAGTCCAGCCACTTCCTTTTTTCTTGCTTACATTATGCCTAAAATGCATTTATTAACAACAAATTTGTAGCATTCATGCAGACATGGTGAAAAACAAGGGCTTTTTGCCTTCAGAACCTTCAGAGATACCTGTTCAGAGGAAACAGATGAGAGATATTATATTCTCTTTGCTACCTGCTTGCAAGGATCCTGATCCTGAAAGTCAGGTTCCATTTACTGCTGATGCAATAATTGCTAACCCTCCAGCATATGGTTAGGAATTGACTCTTCTCTATTTGAAATTTGAATCCCCCCCCCCCCCCCCCCCCCCCCNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNCCCCCCCCCCCCCCCCCTTTGTGTTCTATATTGAGTGCAATCCAACTATTTTTGGCTCTGCTTTTGGGTGAAGAAAGTAGCGGATATAATTTTAATGGTGAAAGAATTGAAGTGAGGTAGTGGCCTGGCAATTTTTTGGGTTCATGTTTTTAGACAGGAAAGATAAGGAAAAGTTCCTTTTTGATGTCAAATGTTGCTTTACGTTGGAGAGGGGTGATCGACACAATTTATTTTTTAAATCACTGAGAGATGTGTTTGAAAACTTCGAATGCTAAGGTTGTATTTTGTATATTAAAAGAAGGTGAGCTGAACTAGAGATATACAAAGCAGCAGAATTTCAACTGATCGTATGTGTAGACCATTGTATTGTGGTTAATGTTTTAAATATATATTTTGTTTTTGTTTGAGACTGGGCCTTATGCTTAAGTTTTGTTTCAGGACATACACATGTTGCGGAGGCTCTTCAAGTACCGATTCACATATTCTTTACAATGCCTTGGACGTAAGTGAGCTTGTGATATAAATCTAATGCTGGATTCTTACATGCCACAGCTAGTAACTTTTTGGTTTCTCCACTATTTTCTTAAGTTCATGGATCTTGGTTTTATGGCGCCCTTTGCCCGAGAATGAACATTTAAATTTTGAAACGAAAATTATTCTAAGTTTTTGCCACTATCTTGATTAAAAGATTTTACAGTCTGCTATGTTTGTTTGCTTTATCTGTGACCTTCATGACATGATGTTAGATCTGCAATTTTATAGGGTTCATGGGTACAATTGTTGTTTTGACTCTAGTTTTTTAAACTTGGATCAGACATATTTTTAATGATAGATGTGTTATAGCCCTTTTGTGTCCTGAATTTTGACGCATGAGTTGGGTTCCTGCGTCAAAACTCTAGCTTCAAACTAAGAGTGCTTAGTAATTGCTTATTCTTTGCAGGCCCACTAGTGAATTTCCGCATCCTCTGTCACGGGTTAAGCAACCAGTTGCATACAGAGTAAGTTGTTTTTTTTCTCAAGATTCCGCTATGTCAGTACAATCTACTGTACATACTTCGCACATTTGGTAGCCTTGTAGGCTATGTAATTAATGTTAACATATGCTTTCAGCTCTCCTACCAAGTTGTTGACGTACTGATTTGGCTTGGAATACGGGACCTGATTAATGAATTCAGGAAGAAAACGTTGAAGTTGAGACCTGTAACCTATTTAAAACCTTCATATAGTGCTCCCCCTGATACCCCTTATGGATATATTTGGAGCCCTCACCTTGTTGCCAAGCCTAAAGGTCAGTGATCTGTTTTGGTTGATAGTCTAGTATCTACTCCTTACTCATTTAAAAAAAGAAAAGAAAATGGTTTATAGAATTATAGGTGTCTCTTACACATATATGTTGTTCAACACTCTCCATCCTTTTACCTTTTTAACGTTTGGGTATGGAAATCAAGTGTAGTAAGCAGATTTTTTGAGAAAAAGGGATGATATGACGGAGAAATAAAAGTAAGATAGAACTTAAGAATTTTTGGGCCAACTCAGGTAAGTGGAGAAATCAAGAGACAGAGCCAGAGGGAGTGTTATACATTTGTTTCTTATTGTATGCTCTTCATTTTATCATATATACTAATCCAGCGGCGAGATGATCCTTCTCCTAGTTCTTGATTATGGATTTCAGTTTCATCTTTTCCTCTACGACCATAAACCTAAAACAAACTTCTTCTTCAGCTAGCAGAATTTTATTCTAATGGCCTTTTCTCTAGTCTGTTTCTTCTAGTTGAAAACAGGATGTTTCCATTCTCATGGGCGCTTTTACTTCCATAAGCAGACAATTGTATTTTTTGCTACCTGGTTGGTAATTTCTGGCAAAATCTGGACCTACAGGAGAATGATGTGCATTATACACTTGAATTCTGATTTGGACATTAATCTAAGAATGTGGGGTCTGTATCTTTTAGCTTCGCGTATCTTCACTTTTTTCTATAGGGTTCCATTGTAGACTTCTTCTCCCCTGGGACTCCTGTCTTATGTGGGAGGGAGCCTTCTTAGAGGTACTAGGCAATACTATGCTAGGAGCGTTTTCTCGTACCTTTATATTATTTGTAATGTTTATGCTTAATTGTCTTGCAGACTGGGGACCCAAAATTGACGTAGTTGGTTTCTGTTTCCTTGATCTGGCTTCAACTTATGAACCTCCCAAAGATCTCGTGGAATGGCTTGGAAAGGGTCAAAAGCCAATATATATTGGATTTGGCAGCCTGGTAAGTACTAAGTAGCTTTTTTGTACATTTATTCAAGACAAAATGCTGGGTATTTCAAAATTTCTTTTTACATAGATCCTTTTGAACCACTATGTTTCTTTGAACCCTCTAAAGATGTAATCAAGGTTTCAACATGATTAATTATGTACACTTGTTTATTGTCTTTAATTTTTCACTTTTAACGACACTCATATAATCTGTCCATTTCTATTTCCATTCTCCCAAACTAATCCTTGTAGTTTTCCTTACCAGCCTGTCCAAGAACCTGAGAAGATGACCAAGATAATTGTACAAGCTCTGGAACTCACTGGGCAAAGAGGAATCATCAATAAAGGATGGGGTGGTCTTGGCAATTGTAAGATACTAAGATGTTTGTGTTGTTTCAGTCTTTTTTGAAGTACGACTTGTCCTTTTTTCTTATTCCCCCCTCGTTTTTCATCCAATATCAAAGATTAGATTATGAGATACCATGATACCTTTCTCTAGTGGTTAGAGACTTAGAGTTTCCCTTAATAGATCTCTGTACAGTCTGAAAGAAAAAGGATAAGGGTAGGATACCCCAAATACAAGGTTCTTTTTTATTGGCTAGACATATGTTGTGATAGTGGGAAAATTGTCCAGTATTCCCTTTGTTTAATCAGGTTGAGTGACGCATTCTGCCTGCTTATTTATAGGTCTTAACCATTTGTGACGAGGCAGCTTATTTCTTTTTAATCTGTACTTAAGAAGATGGAAAGAAAATATTGCTTCCAACTTTATTGTTTTCTCATTATTTTCTGCTTCCCAGTGGCCGAACCGAAGGATTTTGTGTACCTGTTGGACAATGTCCCCCACGATTGGCTATTTTTACAGTGTGCTGCTGTGGTAAGACCTTTTTCAGTGATGTATTTTTTAAATATGTAATTTTGTTGATCAATATGATCATAATTATATTCCAGTTTTTAGTGTCACCACTGGGATTTAATTTATTGGAATTGAAGTTTTCCTTTTCTGTTGTGTACAAGCACGAACTTCCTTTTTTAGTATTCTGCAGATTATATTCCTTCCTAACTTGGACTTTTTAAAATAAAAATAAATGAAGGTGCATCATGGGGGTGCTGGGACAACTGCTGCTGGTCTTAAAGCTGCGGTAAATGCTCTCATATTAACCAGCCTTTTGTTTTTGATCGTTTCATTTTCTATATATATGCATATTTGTTACTAAAATAAATTTCTATAGTGTCCGACGGCGATTGTGCCGTTCTTCGGTGACCAACCCTTTTGGGGAGAACAAGTACATGCAAAGGGTGTAGGGCCGTCGCCTATCCCAATCGAGGAGTTTACACTTGAGAAACTGACTTCTGCAATACGCTTCATGCTGGATCCCAAGGTAAAGTTGCAACCCTGTTGTTGATCAAAATTTAAAGTTTCAATACAAGTCAATATCCACTGTATGCTTCCCCTTTGCAAATGCGAAATTGATACTCCCTCCGTCCCAATGTATTCTTTACGTTTTCTATTTCGAGTGTCCCATTTCAATCTTTACCCTTAGAATCTTTCTTTTTATATTGTAGCATAAAAGTTCTTAATATCCCGTCAAAAATCGTGTCAAATGATTATTTCAACCAATCAAATTCATTAGGCCATTTTAACAACCGAAAGCTTCGCTTAAGCTTGAAAACAAGCAAGGGCGAAGTTGCGCTAACGCGCAACCGTTTTCTTGGACCTTAAGCTTTGCTTTAGCTATTACATCCGTTGTAGTCTTATTACTCTTTTCGTTTACTTTTTCTAACATTTCTAGTACCAACTAATTCATTCGAGCGAGCTCTCACACTTTCCCATTGGAACATTAAATCTTTCTCATTTTTCCAATGTCAACTTTTTTGATAAAAGTGAAAATATTATTAATAAACGTTGCATTGTTTAAGTTAAACATAAAGAGAATCTTTATCCACATTAATTATTTGTTAAATCGCGTGCATGATACCAAACGTAGAGAATAAAAAGGGACAGGGGGAGTAGCTCTCTTGCTTCTTGATCGTAGTTTAGAAGGCTGACCAGAATTCTTTGGGAATATAGGTAAAAGAAAGTGCCGTGGAGCTGGCAAAAGCAATGGAAAATGAAGATGGAGTCGCAGGTGCTGTGAATGCCTTTCACAAGCAATTTCCCCGGAAAAAACCCGAGCCAGAACATTCAGAACTTCACAAGCCGCAAAAATCACATTTATCGATAAGAGGGTGTTTTTTGGGAACACATTAATTAAACCCTTTAATTACTTGACTAACCAGCAACCTCTCACCACCAAATCACCATAATCCTTTCAAGTTCAAGCAGTTTTGTTCATTCATTGCTTGTGTAGATACCAGATTATTGTGTGTTGATATGTATATATGCCCATGCTGCTTGTGCAGCTATATTATCATTGTGTTTTGACATGTAACTATCCAAATACTGGTACACTTTTTATTGCAAAATATTTGTGTAAGTTTTGTGAAGAAAATACTTCTGTTTAATATGTTCCCCTTGTATATAGAATTGATGTGTGGTTTAGCAAGAGATTGCTCTTAAAAATGAG ACTATCGGCAAAAAAAAATTGAATTATTTTTGACGCGAACTGGAAATTCAAAAAGTTGCTTTATTCGCCCTCAACGTGTCCTTTTTCAGATACCCAAAACAGACAGCCAAAAATCAAACATTCCCTACTTTCTCTCTCCTTTAATTCTCGTTGAACAAACTCCCAATTTGAAACCGTCACCCTCTCACCTTCCCACCATCTTAATTGTGACTCTTTCCCCGCATTTCTCGATTCTAGATTTCTAGGGTTTCCACATTTCTACCTATAATTGGTATATCTCCTCAAAATTGGCTATGGCGAACAATTCTGATCATTCTAGCCGGAGTTTGTCGATGAGTTCCGGCGACAATTCCGTTGACTTAGTCGACGATAATCACTCGGAGAAGAGATTTTCCGACGTTGCGATCGAAGGAGATGGTGAAGGTGTTGTTGATCATGGTGATAGTAATGGCGAGAGAGTTGCTGGTTCTGAAGGTGTTAGTAGGGAGTGCTCTTCTGCTTCTGGATCCTCTAGTGGAAATTGCTCTAATGGAAACAATAAATTCCTGGAATCATCAACTTCTAATCATCTTGCGAAAGTTGGAGAATCAAAACGTCATAACCCACTCAGTAAATTAGCAGCAAAGCTTTTTGATGAAACAGTGCCCCTGAAGAAAAAGCTCAAATGGCTGAACCGGATTGCAACTGTTAAAGGAGATGGAACTGTACAATTTGACGTTCCTGGAGATATGAAAACCTCAAGCCTTGATTTGGGAACTGGAGTGGCATCTGGTGGCAGTACAGAAGTAGAACAACTTGATTCACCTGACGTTGATGATTTGCCCCCAATGCAAATTGTGATTCTAATTGTTGGAACTAGAGGAGATGTGCAACCCTTTGTTGCCATCGGGAAGCGTTTGCAGGAATATGGCCATAGGGTCAGATTAGCAACTCACCGAAACTTCAAAGAGTTTGTTTTGGCTTCTGGCTTGGAGTTCTTTCCTTTAGGAGGGGATCCCAAAGTTCTCGCTGAATACATGGTGAAAAACAAGGGCTTTTTGCCTTCAGAACCTTCAGAGATACCTGTTCAGAGGAAACAGATGAGAGATATTATATTCTCTTTGCTACCTGCTTGCAAGGATCCTGATCCTGAAAGTCAGGTTCCATTTACTGCTGATGCAATAATTGCTAACCCTCCAGCATATGGACATACACATGTTGCGGAGGCTCTTCAAGTACCGATTCACATATTCTTTACAATGCCTTGGACGCCCACTAGTGAATTTCCGCATCCTCTGTCACGGGTTAAGCAACCAGTTGCATACAGACTCTCCTACCAAGTTGTTGACGTACTGATTTGGCTTGGAATACGGGACCTGATTAATGAATTCAGGAAGAAAACGTTGAAGTTGAGACCTGTAACCTATTTAAAACCTTCATATAGTGCTCCCCCTGATACCCCTTATGGATATATTTGGAGCCCTCACCTTGTTGCCAAGCCTAAAGACTGGGGACCCAAAATTGACGTAGTTGGTTTCTGTTTCCTTGATCTGGCTTCAACTTATGAACCTCCCAAAGATCTCGTGGAATGGCTTGGAAAGGGTCAAAAGCCAATATATATTGGATTTGGCAGCCTGCCTGTCCAAGAACCTGAGAAGATGACCAAGATAATTGTACAAGCTCTGGAACTCACTGGGCAAAGAGGAATCATCAATAAAGGATGGGGTGGTCTTGGCAATTTGGCCGAACCGAAGGATTTTGTGTACCTGTTGGACAATGTCCCCCACGATTGGCTATTTTTACAGTGTGCTGCTGTGGTGCATCATGGGGGTGCTGGGACAACTGCTGCTGGTCTTAAAGCTGCGTGTCCGACGGCGATTGTGCCGTTCTTCGGTGACCAACCCTTTTGGGGAGAACAAGTACATGCAAAGGGTGTAGGGCCGTCGCCTATCCCAATCGAGGAGTTTACACTTGAGAAACTGACTTCTGCAATACGCTTCATGCTGGATCCCAAGGTAAAAGAAAGTGCCGTGGAGCTGGCAAAAGCAATGGAAAATGAAGATGGAGTCGCAGGTGCTGTGAATGCCTTTCACAAGCAATTTCCCCGGAAAAAACCCGAGCCAGAACATTCAGAACTTCACAAGCCGCAAAAATCACATTTATCGATAAGAGGGTGTTTTTTGGGAACACATTAATTAAACCCTTTAATTACTTGACTAACCAGCAACCTCTCACCACCAAATCACCATAATCCTTTCAAGTTCAAGCAGTTTTGTTCATTCATTGCTTGTGTAGATACCAGATTATTGTGTGTTGATATGTATATATGCCCATGCTGCTTGTGCAGCTATATTATCATTGTGTTTTGACATGTAACTATCCAAATACTGGTACACTTTTTATTGCAAAATATTTGTGTAAGTTTTGTGAAGAAAATACTTCTGTTTAATATGTTCCCCTTGTATATAGAATTGATGTGTGGTTTAGCAAGAGATTGCTCTTAAAAATGAG ATGGCGAACAATTCTGATCATTCTAGCCGGAGTTTGTCGATGAGTTCCGGCGACAATTCCGTTGACTTAGTCGACGATAATCACTCGGAGAAGAGATTTTCCGACGTTGCGATCGAAGGAGATGGTGAAGGTGTTGTTGATCATGGTGATAGTAATGGCGAGAGAGTTGCTGGTTCTGAAGGTGTTAGTAGGGAGTGCTCTTCTGCTTCTGGATCCTCTAGTGGAAATTGCTCTAATGGAAACAATAAATTCCTGGAATCATCAACTTCTAATCATCTTGCGAAAGTTGGAGAATCAAAACGTCATAACCCACTCAGTAAATTAGCAGCAAAGCTTTTTGATGAAACAGTGCCCCTGAAGAAAAAGCTCAAATGGCTGAACCGGATTGCAACTGTTAAAGGAGATGGAACTGTACAATTTGACGTTCCTGGAGATATGAAAACCTCAAGCCTTGATTTGGGAACTGGAGTGGCATCTGGTGGCAGTACAGAAGTAGAACAACTTGATTCACCTGACGTTGATGATTTGCCCCCAATGCAAATTGTGATTCTAATTGTTGGAACTAGAGGAGATGTGCAACCCTTTGTTGCCATCGGGAAGCGTTTGCAGGAATATGGCCATAGGGTCAGATTAGCAACTCACCGAAACTTCAAAGAGTTTGTTTTGGCTTCTGGCTTGGAGTTCTTTCCTTTAGGAGGGGATCCCAAAGTTCTCGCTGAATACATGGTGAAAAACAAGGGCTTTTTGCCTTCAGAACCTTCAGAGATACCTGTTCAGAGGAAACAGATGAGAGATATTATATTCTCTTTGCTACCTGCTTGCAAGGATCCTGATCCTGAAAGTCAGGTTCCATTTACTGCTGATGCAATAATTGCTAACCCTCCAGCATATGGACATACACATGTTGCGGAGGCTCTTCAAGTACCGATTCACATATTCTTTACAATGCCTTGGACGCCCACTAGTGAATTTCCGCATCCTCTGTCACGGGTTAAGCAACCAGTTGCATACAGACTCTCCTACCAAGTTGTTGACGTACTGATTTGGCTTGGAATACGGGACCTGATTAATGAATTCAGGAAGAAAACGTTGAAGTTGAGACCTGTAACCTATTTAAAACCTTCATATAGTGCTCCCCCTGATACCCCTTATGGATATATTTGGAGCCCTCACCTTGTTGCCAAGCCTAAAGACTGGGGACCCAAAATTGACGTAGTTGGTTTCTGTTTCCTTGATCTGGCTTCAACTTATGAACCTCCCAAAGATCTCGTGGAATGGCTTGGAAAGGGTCAAAAGCCAATATATATTGGATTTGGCAGCCTGCCTGTCCAAGAACCTGAGAAGATGACCAAGATAATTGTACAAGCTCTGGAACTCACTGGGCAAAGAGGAATCATCAATAAAGGATGGGGTGGTCTTGGCAATTTGGCCGAACCGAAGGATTTTGTGTACCTGTTGGACAATGTCCCCCACGATTGGCTATTTTTACAGTGTGCTGCTGTGGTGCATCATGGGGGTGCTGGGACAACTGCTGCTGGTCTTAAAGCTGCGTGTCCGACGGCGATTGTGCCGTTCTTCGGTGACCAACCCTTTTGGGGAGAACAAGTACATGCAAAGGGTGTAGGGCCGTCGCCTATCCCAATCGAGGAGTTTACACTTGAGAAACTGACTTCTGCAATACGCTTCATGCTGGATCCCAAGGTAAAAGAAAGTGCCGTGGAGCTGGCAAAAGCAATGGAAAATGAAGATGGAGTCGCAGGTGCTGTGAATGCCTTTCACAAGCAATTTCCCCGGAAAAAACCCGAGCCAGAACATTCAGAACTTCACAAGCCGCAAAAATCACATTTATCGATAAGAGGGTGTTTTTTGGGAACACATTAA MANNSDHSSRSLSMSSGDNSVDLVDDNHSEKRFSDVAIEGDGEGVVDHGDSNGERVAGSEGVSRECSSASGSSSGNCSNGNNKFLESSTSNHLAKVGESKRHNPLSKLAAKLFDETVPLKKKLKWLNRIATVKGDGTVQFDVPGDMKTSSLDLGTGVASGGSTEVEQLDSPDVDDLPPMQIVILIVGTRGDVQPFVAIGKRLQEYGHRVRLATHRNFKEFVLASGLEFFPLGGDPKVLAEYMVKNKGFLPSEPSEIPVQRKQMRDIIFSLLPACKDPDPESQVPFTADAIIANPPAYGHTHVAEALQVPIHIFFTMPWTPTSEFPHPLSRVKQPVAYRLSYQVVDVLIWLGIRDLINEFRKKTLKLRPVTYLKPSYSAPPDTPYGYIWSPHLVAKPKDWGPKIDVVGFCFLDLASTYEPPKDLVEWLGKGQKPIYIGFGSLPVQEPEKMTKIIVQALELTGQRGIINKGWGGLGNLAEPKDFVYLLDNVPHDWLFLQCAAVVHHGGAGTTAAGLKAACPTAIVPFFGDQPFWGEQVHAKGVGPSPIPIEEFTLEKLTSAIRFMLDPKVKESAVELAKAMENEDGVAGAVNAFHKQFPRKKPEPEHSELHKPQKSHLSIRGCFLGTH 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 Spo27093.1 vs. NCBI nr
Match: gi|902223424|gb|KNA19446.1| (hypothetical protein SOVF_061640 isoform A [Spinacia oleracea]) HSP 1 Score: 1184.5 bits (3063), Expect = 0.000e+0 Identity = 586/586 (100.00%), Postives = 586/586 (100.00%), Query Frame = 1
BLAST of Spo27093.1 vs. NCBI nr
Match: gi|731327727|ref|XP_010674673.1| (PREDICTED: sterol 3-beta-glucosyltransferase UGT80A2-like [Beta vulgaris subsp. vulgaris]) HSP 1 Score: 1038.9 bits (2685), Expect = 3.700e-300 Identity = 525/641 (81.90%), Postives = 564/641 (87.99%), Query Frame = 1
BLAST of Spo27093.1 vs. NCBI nr
Match: gi|902223425|gb|KNA19447.1| (hypothetical protein SOVF_061640 isoform B [Spinacia oleracea]) HSP 1 Score: 955.7 bits (2469), Expect = 4.100e-275 Identity = 475/475 (100.00%), Postives = 475/475 (100.00%), Query Frame = 1
BLAST of Spo27093.1 vs. NCBI nr
Match: gi|568877509|ref|XP_006491778.1| (PREDICTED: sterol 3-beta-glucosyltransferase UGT80A2-like isoform X2 [Citrus sinensis]) HSP 1 Score: 844.3 bits (2180), Expect = 1.300e-241 Identity = 420/585 (71.79%), Postives = 482/585 (82.39%), Query Frame = 1
BLAST of Spo27093.1 vs. NCBI nr
Match: gi|697145943|ref|XP_009627107.1| (PREDICTED: sterol 3-beta-glucosyltransferase UGT80A2-like [Nicotiana tomentosiformis]) HSP 1 Score: 840.9 bits (2171), Expect = 1.500e-240 Identity = 421/588 (71.60%), Postives = 476/588 (80.95%), Query Frame = 1
BLAST of Spo27093.1 vs. UniProtKB/TrEMBL
Match: A0A0K9RIW1_SPIOL (Uncharacterized protein OS=Spinacia oleracea GN=SOVF_061640 PE=4 SV=1) HSP 1 Score: 1184.5 bits (3063), Expect = 0.000e+0 Identity = 586/586 (100.00%), Postives = 586/586 (100.00%), Query Frame = 1
BLAST of Spo27093.1 vs. UniProtKB/TrEMBL
Match: A0A0J8CNT3_BETVU (Uncharacterized protein OS=Beta vulgaris subsp. vulgaris GN=BVRB_4g080750 PE=4 SV=1) HSP 1 Score: 1038.9 bits (2685), Expect = 2.600e-300 Identity = 525/641 (81.90%), Postives = 564/641 (87.99%), Query Frame = 1
BLAST of Spo27093.1 vs. UniProtKB/TrEMBL
Match: A0A0K9RKR8_SPIOL (Uncharacterized protein OS=Spinacia oleracea GN=SOVF_061640 PE=4 SV=1) HSP 1 Score: 955.7 bits (2469), Expect = 2.800e-275 Identity = 475/475 (100.00%), Postives = 475/475 (100.00%), Query Frame = 1
BLAST of Spo27093.1 vs. UniProtKB/TrEMBL
Match: A0A059D2A3_EUCGR (Uncharacterized protein OS=Eucalyptus grandis GN=EUGRSUZ_B01378 PE=4 SV=1) HSP 1 Score: 835.1 bits (2156), Expect = 5.600e-239 Identity = 419/586 (71.50%), Postives = 479/586 (81.74%), Query Frame = 1
BLAST of Spo27093.1 vs. UniProtKB/TrEMBL
Match: M5WHU1_PRUPE (Uncharacterized protein OS=Prunus persica GN=PRUPE_ppa019814mg PE=4 SV=1) HSP 1 Score: 827.8 bits (2137), Expect = 8.900e-237 Identity = 406/579 (70.12%), Postives = 461/579 (79.62%), Query Frame = 1
BLAST of Spo27093.1 vs. ExPASy Swiss-Prot
Match: U80A2_ARATH (Sterol 3-beta-glucosyltransferase UGT80A2 OS=Arabidopsis thaliana GN=UGT80A2 PE=1 SV=1) HSP 1 Score: 781.2 bits (2016), Expect = 8.600e-225 Identity = 408/636 (64.15%), Postives = 474/636 (74.53%), Query Frame = 1
BLAST of Spo27093.1 vs. ExPASy Swiss-Prot
Match: U80B1_ARATH (Sterol 3-beta-glucosyltransferase UGT80B1 OS=Arabidopsis thaliana GN=UGT80B1 PE=2 SV=1) HSP 1 Score: 592.4 bits (1526), Expect = 5.700e-168 Identity = 282/503 (56.06%), Postives = 368/503 (73.16%), Query Frame = 1
BLAST of Spo27093.1 vs. ExPASy Swiss-Prot
Match: UGT52_DICDI (UDP-sugar-dependent glycosyltransferase 52 OS=Dictyostelium discoideum GN=ugt52 PE=2 SV=1) HSP 1 Score: 276.9 bits (707), Expect = 5.300e-73 Identity = 164/457 (35.89%), Postives = 248/457 (54.27%), Query Frame = 1
BLAST of Spo27093.1 vs. ExPASy Swiss-Prot
Match: ATG26_CRYNJ (Sterol 3-beta-glucosyltransferase OS=Cryptococcus neoformans var. neoformans serotype D (strain JEC21 / ATCC MYA-565) GN=ATG26 PE=3 SV=1) HSP 1 Score: 265.4 bits (677), Expect = 1.600e-69 Identity = 161/452 (35.62%), Postives = 239/452 (52.88%), Query Frame = 1
BLAST of Spo27093.1 vs. ExPASy Swiss-Prot
Match: ATG26_CRYNB (Sterol 3-beta-glucosyltransferase OS=Cryptococcus neoformans var. neoformans serotype D (strain B-3501A) GN=ATG26 PE=3 SV=1) HSP 1 Score: 265.4 bits (677), Expect = 1.600e-69 Identity = 161/452 (35.62%), Postives = 239/452 (52.88%), Query Frame = 1
BLAST of Spo27093.1 vs. TAIR (Arabidopsis)
Match: AT3G07020.2 (UDP-Glycosyltransferase superfamily protein) HSP 1 Score: 781.2 bits (2016), Expect = 4.900e-226 Identity = 408/636 (64.15%), Postives = 474/636 (74.53%), Query Frame = 1
BLAST of Spo27093.1 vs. TAIR (Arabidopsis)
Match: AT1G43620.1 (UDP-Glycosyltransferase superfamily protein) HSP 1 Score: 592.4 bits (1526), Expect = 3.200e-169 Identity = 282/503 (56.06%), Postives = 368/503 (73.16%), Query Frame = 1
BLAST of Spo27093.1 vs. TAIR (Arabidopsis)
Match: AT5G24750.1 (UDP-Glycosyltransferase superfamily protein) HSP 1 Score: 117.1 bits (292), Expect = 3.900e-26 Identity = 123/505 (24.36%), Postives = 202/505 (40.00%), Query Frame = 1
The following BLAST results are available for this feature:
BLAST of Spo27093.1 vs. NCBI nr
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. NCBI nr) Total hits: 5
BLAST of Spo27093.1 vs. UniProtKB/TrEMBL
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. UniprotKB/TrEMBL) Total hits: 5
BLAST of Spo27093.1 vs. ExPASy Swiss-Prot
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. ExPASy SwissProt) Total hits: 5
BLAST of Spo27093.1 vs. TAIR (Arabidopsis)
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. TAIR) Total hits: 3
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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