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.ATGGAACGCCCTACCGGTCACACCACTCATGTAGACGATCCTCATATTCATGGTCAAGATGTTGGCATCAATGGTAAGAAATACTTCCTCCATTCTTTATTAAATGATACAATTTTTTTGTCACGTTTGCCAATGCAACATTTCAACCATTAATACCTTTTATTATCAATGGTTAAAAATTATAAAAATTTGATATTATAAAACTATAGGATGAGACGATTTTAATAAGACCCCAAATGACTATATTTTTTATTAAGTATAAATCACAATTGATGGTCAAAGTATATTATATGAATAGTGTCAAAAGTGTAATTGTGTCATTTTAAAAAGATTGGAGGAAGTACTTTACTTAATTCAACCTTTTGTTTTTGATGTTAGCACCCGGTTCACCCTTAGGGCTAATTCGGATTTGGGGCGAGTTCTGAGTGGATATGTTCCAGTCCCCTCCCAATCCTTATAATTAAGGATATAACATGCTTTCATAATTAAGATATAGTATAACATGATTTTATTCGGATGTGATTGTTGTTATTTACTTGTCATGTTTTGATTTAAATAATGGCATATATTTTACTAAGTAAAATCAAGGTTTTGCTTATTGATTAAGCCTTAAGGTTTGACGTCATAATCTCCATTTATCATAAGATTAGAGGGGATGCTAATGAGATTAGAGGGGATTTCTCTTTATCATCCCCCTTGCTTCTAATGGGTATGGCCTTTAAGAACACGTGATACATGTTTAGTGGGTTATTTATTTCATAACAGAAAATGGGGTTAATATTGTTGTTTTAACCTTTTATGGGTGTATGTAAGTGAGTTCATAGAGTGAACCTATTACTAAGGAAATTGAACAATCTTTAAAGGACAGACTGAAATAAACAAATAGGGGCATACAGAATATTGCATTGCAAATAGTATCAAATTGATCAATCTGTGGACCAATTATCATACCAATAAAGTCTTGATCTAGTGGTTAAGATTGATAACCTGTATGATCCCCTTATTCTATACAATAAGGTCATAGGTGCGATTCTCCTGCATCTATTTATAATTTGTATTGGCTCATTTGTATCAAAAAATACCAACGAGGTCTTGACTCAGTAGTTAAGATTGATAACTTGTATAACTATATTGTTCTATACTATAGGGTCATAGGTTCGACTCTCCTACATCCATTTATAATTTGTATTGGCTCATTCATATAAAAGAAAAATCAAAAAGAAAAATGAGGTTTTGGCCTATAGTTAAGACTATAGGGTCTCAGGTTCGATTCTCAATTTCTCATACATCTATTTCACTATTTGTAATTTGTATTATATTTATGGCTCATTCGTATTAAAAGAAAAATGAACAAAATGGAATTTTACAATTAGTCTGTTTAATTACCGTACGATATGGGAGTTAAGCTAACATTTAGGGAATAACATTTGATTTTTTTTAGTATGGTTTTAGTATTCACAAATTCTTATTTACAATGGGTGACATATTTTACACCGGAGTAAAATTTAACTTAAAATACTTAAAAGTTAAGTTTATATAGGTAAAAATTATCTATTTTTAAGTGATAAATTTTTTCATTTTAGTAAAACTTATTTCTTCAAAATTACTAATAATGTATAAAATTAATCATTTAACCCTTTAAAATATTTATCTATAATTTTTTTTTACTAATATAAAAATTAATCAAAACTAGAATAAAGTAAAAAAAAAAAAAAAAAAAAGGGTTAAAGTTACATTGGTGTACGCCCAAGACCTTTTGTTTAGTATCAGCAATCTCACTAAACTAAATAAATAGGGACATACAATCTTTAACGATATGGTTTTACCGTTTTACTTTGTGTTGTCCGTGCAAATAGTAAGTGTAAAGATCTTTTTGAAACAGAGTAGTATTAGCAATCCCACGGAGCCGTGGTTAATTGGTTATTCTTATTCATGGTGAAGGTCAAAATGAAGAGCATCATGGTGAGAAGAAATCAGTGCTAAAGAAAGTAAAGGCGAAAGCGAAGAAGATTAAGGACACTATAAAAGATCATGTTGGACATGGTCATGATCATCACGAGGAAGACGACGACGAAGATGATGAGATGGATATGGACCCTGAAATCCACGGCACTCACAGTATGTCACTTTCTCTTCTCCCTCGTTCATTCCCTGTAAATTACTGTATTTATTATTTCTGTATGAATTTCCTCCCCAAATTACCATTTTTAACCTAAAATAATAATAATTAGATTTCAGATATGTTAAACAATTTCAAATAGTTAGTTCAATTTACTATACTGTCAATTTAACCGATTACAGTATTAAAGCAAGATCAATTGAGGCGGTGTCAATTGAACCGATTGTAGTATTGAAGCAAAATCAATTGAATCGGCCGCACTGTCGATTGACCCGATTTCATTGAATCGGCCATCGCCAATTGAATGATTTACAGTATTGAAGCAAAGCCCATTTAATCGGCCTCACTGTCAATTGAACGGATTTCAGTATTAGAGCAAAATCGGAATCGCCCGCACCATCAATTGAACCGCTTACACCAATCCTTAACTTATTTCAAAGTTTGAGCTAGTAAGCTAGATAATTTTAGATATTTAATTAAGATAGAGAAATGCAAGATAAGAGAGTGCACTGTGTTAATGGAACCCTAAGTGAACATCTGAAATTGTGCCTATTGAAGGGTATGCTCAAACTCGATCATGGACATATGTGTGTAGGCTCATTGTGTACTTGAAGAATATAAGTGGAATACTTAAACGAATGTAGTAGAGAAAACAGAAGGGTAGGGGTTGAAATATGGAATACTACTACAAATGTGCTTTGAAGAAACAAAAGGGGTACGAATTACAGCAAAGAGCAGGCAGCAATGGTGCCAACTTGTGTGTTTTGTTATAAACCGAGGGAATGGGGGATGTACTGCAAGTCTGCAAATGTGATACTAAAACAATGTAGTAGTAAATCAATAAAACGTAGGCAGCAATGTTGCCAATGTGTTTGTGTCATAAACCGGGGAAACGGGGGGAATGCATTGCAAGTCTGTAAAATGGAATTCTAAAACAATGTAGCAGGGAAAACAGTAAATCTATTTTTGAATTATGTAATTCCGCTAAATGGATGATTTTGCAGCTGCACAAAGCACCATGCCAGGGCAAGAGGGAGTTGCAAGGCAGCAAATGCACGAACCAATAATCGGTGAAAGAACTGCAGGTGAAGGTGCCCACGTGATGAGTAAGCCAAGGCAGCAAATGCATGAACCAACATTCGGCGAAAGAACTGCAGGTGAAGGTGCCCCACACGCGATGAGTAAGCCGGGTGATTATCAGACATTTGATCCTACAACTGCGAGATATACCCCTGGACAGGATGAGACCTTGGGTTGGTCGAGGACCGATGCCAGAAGGCCACAGGACTTTGAGGAAAAACCTTATGCACCAAAGAACACTCCTGTTGCTATGTATTCTGGTGGAGGTCATAGTGCTAGTACTGGAGCTTTGGATATGGGGAAGAAAGGAGCTCCTGTGAAGCTTGGAGGTGTTGTTGGGGGAGTGGAGAGAGATCCTCAGGCCCCGAAAGATGTAGGGGTAGATCGTCATCCTGCCAATTATCAAGCCAAAGTCACTGACCCAACAGCCACTGGTAAGATTGTATCTCAAGTTAGTTGGAATGTTTTATGTACTGTACTCTAAATTAATGTGTACTTGTGTTTGGATTCTTCATCTGGCTTCAAGTTTTATGTACTGTACACTGGTTCCTCGATTCTGTGACGTGGGTTTTGAATATCCAACTACTACTTTATTTTTGTTCAACATGTTGGAAGCATGCTTTTATAAGGGGTTACATGGCCTTTGTGTTCAAAGGAAACTGAATGCATAACATTGATATACTTGATCATGGAAAACTGTTTTTTTTTTTTTTGCACAATCATTCACTTCATTGTTACACTTGAATATTGAATATGGAATATAATATTCAGCTTCCATCTTGAGAAAGGGTCTGAATTTTCTTTGTGCCTGCTGAAAATTAATGTTTTAGCACTTCAGCCATCATTTAGTATTGGAACTTATAAGTGTGATTTTGTCAAATTGGTGAAGATTTCTCTGCATATACTATATTCCATTCAACAAAAAATAAAATTAACCATTGATTTATTATTGTATAGGAAAGGATCCCCTAGTTGCTCAGAGCTTCATGGCAGGGCTTCATACAAGTAAAATCGATGAAAGATCAGTCGAAGGGGTGATTAACGCCCCAGCAAGCAAGCCACACGGAGATTTAAGGACCTTTGATCTTACTACTACAGATTATGTCCCAGGACAAGAGGAGACCTTAGGTTGGTCTAGGGCTGATACTGGAAGGCTAAACAGGTCAGAGGAAGTGTCCAACGCATCATATAATACACCAATAGCAGCCCATTCAGGTAGATTACTTGTTTGTGCTTTTTTACACACTGATTGTTCCATTTGCAATACTGAGAATAGCCGGAAATGCTGGACTACAGACTGTTTATAGAGGAAAACGTGAATGTGCTTTGTGCGTGATGTATGTTAATGGTTTAGCTATATCTTGCATGGGAAACATGTATGTTAATGGTTTAGCTATATCTTGCATTGGAAACTTATTGAATGTAATTTGCATTATAAACTTATTAAATGTGATTTTGTTGAATTGTTATATATATTTTTTGCTTCTTCACTTGCAAAGAAAAAAAAAGGTTCTTTTCAGAATGTAGGAAAAATTTAATCATTAATTGTTCTTTTAATTTATAGGACATGAATCACATGATTCCACAGCTGCTCAGAGATTCATGCCAGGGCTACATAGACGTAACATGGGTGAAGGAACTGCAGTACAAGGGGTGGTTCATTCCCCGACAACCAAGCAGCAAGGCCACTATCAGACCTTTGATCCTACTAGTGCAAGTTATGTTCCGGGGCAAGAGGAGACTTTGGGTTGGTCTAGGACTGATACTGGTAGGCAACACGGATCAGAGAAACTGTCCTCTGCAATAAAGAATACACCAACGGCAGCTCATTCAGGTAAACAAAATTCTGCCTAAACAATTTTATTTTCCTCCACATTGAGTTTGTCACTTGCAAAATGGCTAGAAAAACCTGAATTTTCTTGGTGCCTGCTGAAATTTACCTCTGGCTAGCATTGGAAAAATTTCTGCATTTGCTATAGCTGTCTGAAATTTTTGTATGCATAGAAAACTTGTTAATTCAAAGTTTACCGTTGATTCATTTTACAACTGCGAATCTGTACAGGAAATGAATCACATGATCCCATGGCTGCTCAGGGCTTCATGGGAGGGCCACATAGAAGTAAAGTGGATGAAAGAACTGCAATGGAAGGGGTAATCCATTCCCCGGAAAGCAATCCGAAAGGAGATTATCACACCTTTGATCCTAATGCAACGAGTTATTTTCCGGGGCAAGAAGAGACCTTGGGTTGGTCTAGGACTGATACCGGAAGGACTCATACAGGTAGAATTCATGGTATGGGAGCTGAAGAGGAGAGAGGGACTGGGAAGCTTGGTGGCTTAATTCAGAATCCAGGATTCTTGGAGAAGGATCCTAATACTGCAAGAGTTCCAGGGGAAAGACATCATGCTGGAAATTATGAGACCAAAGTTTCAGACCCAACAGGCAAGGGTAAGAGATTTTATTCAAAATTGTGCATGTATATATGGTTGCGAATTAAACCATTCTTATTTTTCTTCTGCGTATGAGAAGACCTGTTTTGATCTCCAATATATTACTCTCTGATCTTGTTTGTATTATATGGTTTGGTACTATTACCAGCAGTTCAGAGTAGTGGTTTTGGATCAAAAAAATTAGAATGGTTGTGAATTAAATCATTCTTAATTTCCTTCTACATATTATATGACTTGTTTTTGCTCTCCAATATATTACTCTTTGATCTTGTTTGTTTTATATGGTTTGGTATTATTACCAACAGTTCTGAGTAGTGTTTTTGGATCAATAATTGTTTTTCTATATATTACTCTTTGATCTTGTTTTTTTATATGGTTTGGTATATTACCAACAGTTCTGAGTATTGGTTTTGGATCAAGAAGACTTGTTTTGCTCTCCAATATATTACTCTTTGATCTTGTTTTTTTAATATGGTTTGGTATTATTACCAACAGTTCTGAGTAGTGGTTTTGGATCAAGAAGACTTGTTTTGCTCTCCAATATATTTACTCTTTGATCTTGTGTTTTTTTATATGGTTAGGAATATTACCAACAGTTCTGACTTCTGAGTAGTGGTTTTGGATCAAGAAGACTTTGTTTTGCTCTCCTATATATTACTCTTTGATCTTGTTGTTTTATATGGTTTGGTATTATTACCAACAGTTATGAGTAGTGGGTTTGGGTCAAAAAAATTTAGAAGATCTGAAAAGTGAATGCTAGTACTACACGAGTCGTGTTGCTTACATGCTTCTACTGTCACTTTCAGGCGGTGAAGAAGTAGGGGTTACTCCAATCCTGCATCAGTTAGATAAGATGAATATTTTCGATGAATCACAGCAAAAACCAAGAGCAGACAATGTTCACCTGAACAGAACAGAACACACTCCACAATCTGAGAAGATCACCACTGGAAGCCATAATCAATTCTATCCAGAGCCAGTCACTTCCGAGACGAGCACATTTCTCCAACAATCTACCAGTCCAATCAGCGAGGGACCACGTGACATGTCAGAACAGAAACAAGGAAGTTACACCGGAAAGGTCTCGTCTGCAGCTGCGATGGTGGCTGATAAAGCAAAGCAGGCCACTAATTCTGTTACATCAAAGTTAGGGTATGGTGGAAATTCTGATCAGCACCCAACTTCTGTATCTTCAGCAATGCATGACAAGTCGTCTGAGCCAAGGGGCTATGGGGAGAAGATAACAGGTGCCACAGCTGCTATTACAAACAAGGCTGTACAAGCCAAGGATGTTGTGGCCTCTAAACTAGGCTATGGCGGGACTCACGAGAGACAGCCACCTGTACAAGAAGGGGCCTCCAAGGGAGGAGGATCAATTGTGGGGACAGTGAAAGAAAAAATGGCCCCGGTTTACGATAAAGGGGCAACGGTGGGTTCAACCATGGCCTCAAAGGTGCAAGGTTCAGGGACGGAGCATGAGGTCCAGTTTACTGGGCCTACTACCGGTCCAACTGCTGGGGTGGATAAGGGAGTGTCGATGAAGGAGTATCTGGTCGAGAAACTGAAGCCCGGGGAAGAAGATAAGGCGTTGTCTGAGGCTATAACTGCAGCGTTGCCGGTACACAAACGTAGGGAAGATGTAAGCAAATCCGGGGAGTTCGGGGAAGGTGAAGCGAGGAAAGTGACGATAATAGGAAGAGTGACGGAGTCTGATGAGGTGGCGCAACGGCTTGGAAGGAGTGACGAGAAGAATTATGATAATGCTGGTACAGGGATGGCTAGTCCAGGGAAGGGTGTAATGGACAGGATTAAAGAAGCTGCTACTTCTTGGTTTCAGAGTAGTGGTGAGTTTCCATCGCAGTATACCACTACACAAGGTAAGAATAATCGACTTCTCTGTGAGAACTAGAAACTTTGTTTCAGATTGTAGACAATAGAACATATTTTGTTGATTTTTGGTGTGTTTTCTTTTGTAACAGGAACTGAAGGTTCTACTATAATTTCCAGCACGGAAAGTGAGCAGAAAAGAGCCGATGAAGCAGGATTTCAGTAATAACTTGAGCTTAGATATGTTATGCTATATGTTAATCTGGGATTTTGTGTTTGTCATGTCATGTGTGCACAATAGTTTGCTCCAGGTGATAAGAGTAATGTGGGCTAATGTACTTCAAGTTAGCAGCTGTTGTAAATAAAGATTCTGGACACTTTTTGGTGTTTGTGAATGTTTGTAATGTGTTATCTTTGGTGCACTTACTCGTATTGTCAAACCGTTCTTTTACCATCGGTGCTGGGGTTATACCAGTAACC ATGGAACGCCCTACCGGTCACACCACTCATGTAGACGATCCTCATATTCATGGTCAAGATGTTGGCATCAATGGTCAAAATGAAGAGCATCATGGTGAGAAGAAATCAGTGCTAAAGAAAGTAAAGGCGAAAGCGAAGAAGATTAAGGACACTATAAAAGATCATGTTGGACATGGTCATGATCATCACGAGGAAGACGACGACGAAGATGATGAGATGGATATGGACCCTGAAATCCACGGCACTCACACTGCACAAAGCACCATGCCAGGGCAAGAGGGAGTTGCAAGGCAGCAAATGCACGAACCAATAATCGGTGAAAGAACTGCAGGTGAAGGTGCCCACGTGATGAGTAAGCCAAGGCAGCAAATGCATGAACCAACATTCGGCGAAAGAACTGCAGGTGAAGGTGCCCCACACGCGATGAGTAAGCCGGGTGATTATCAGACATTTGATCCTACAACTGCGAGATATACCCCTGGACAGGATGAGACCTTGGGTTGGTCGAGGACCGATGCCAGAAGGCCACAGGACTTTGAGGAAAAACCTTATGCACCAAAGAACACTCCTGTTGCTATGTATTCTGGTGGAGGTCATAGTGCTAGTACTGGAGCTTTGGATATGGGGAAGAAAGGAGCTCCTGTGAAGCTTGGAGGTGTTGTTGGGGGAGTGGAGAGAGATCCTCAGGCCCCGAAAGATGTAGGGGTAGATCGTCATCCTGCCAATTATCAAGCCAAAGTCACTGACCCAACAGCCACTGGAAAGGATCCCCTAGTTGCTCAGAGCTTCATGGCAGGGCTTCATACAAGTAAAATCGATGAAAGATCAGTCGAAGGGGTGATTAACGCCCCAGCAAGCAAGCCACACGGAGATTTAAGGACCTTTGATCTTACTACTACAGATTATGTCCCAGGACAAGAGGAGACCTTAGGTTGGTCTAGGGCTGATACTGGAAGGCTAAACAGGTCAGAGGAAGTGTCCAACGCATCATATAATACACCAATAGCAGCCCATTCAGGACATGAATCACATGATTCCACAGCTGCTCAGAGATTCATGCCAGGGCTACATAGACGTAACATGGGTGAAGGAACTGCAGTACAAGGGGTGGTTCATTCCCCGACAACCAAGCAGCAAGGCCACTATCAGACCTTTGATCCTACTAGTGCAAGTTATGTTCCGGGGCAAGAGGAGACTTTGGGTTGGTCTAGGACTGATACTGGTAGGCAACACGGATCAGAGAAACTGTCCTCTGCAATAAAGAATACACCAACGGCAGCTCATTCAGGAAATGAATCACATGATCCCATGGCTGCTCAGGGCTTCATGGGAGGGCCACATAGAAGTAAAGTGGATGAAAGAACTGCAATGGAAGGGGTAATCCATTCCCCGGAAAGCAATCCGAAAGGAGATTATCACACCTTTGATCCTAATGCAACGAGTTATTTTCCGGGGCAAGAAGAGACCTTGGGTTGGTCTAGGACTGATACCGGAAGGACTCATACAGGTAGAATTCATGGTATGGGAGCTGAAGAGGAGAGAGGGACTGGGAAGCTTGGTGGCTTAATTCAGAATCCAGGATTCTTGGAGAAGGATCCTAATACTGCAAGAGTTCCAGGGGAAAGACATCATGCTGGAAATTATGAGACCAAAGTTTCAGACCCAACAGGCAAGGGCGGTGAAGAAGTAGGGGTTACTCCAATCCTGCATCAGTTAGATAAGATGAATATTTTCGATGAATCACAGCAAAAACCAAGAGCAGACAATGTTCACCTGAACAGAACAGAACACACTCCACAATCTGAGAAGATCACCACTGGAAGCCATAATCAATTCTATCCAGAGCCAGTCACTTCCGAGACGAGCACATTTCTCCAACAATCTACCAGTCCAATCAGCGAGGGACCACGTGACATGTCAGAACAGAAACAAGGAAGTTACACCGGAAAGGTCTCGTCTGCAGCTGCGATGGTGGCTGATAAAGCAAAGCAGGCCACTAATTCTGTTACATCAAAGTTAGGGTATGGTGGAAATTCTGATCAGCACCCAACTTCTGTATCTTCAGCAATGCATGACAAGTCGTCTGAGCCAAGGGGCTATGGGGAGAAGATAACAGGTGCCACAGCTGCTATTACAAACAAGGCTGTACAAGCCAAGGATGTTGTGGCCTCTAAACTAGGCTATGGCGGGACTCACGAGAGACAGCCACCTGTACAAGAAGGGGCCTCCAAGGGAGGAGGATCAATTGTGGGGACAGTGAAAGAAAAAATGGCCCCGGTTTACGATAAAGGGGCAACGGTGGGTTCAACCATGGCCTCAAAGGTGCAAGGTTCAGGGACGGAGCATGAGGTCCAGTTTACTGGGCCTACTACCGGTCCAACTGCTGGGGTGGATAAGGGAGTGTCGATGAAGGAGTATCTGGTCGAGAAACTGAAGCCCGGGGAAGAAGATAAGGCGTTGTCTGAGGCTATAACTGCAGCGTTGCCGGTACACAAACGTAGGGAAGATGTAAGCAAATCCGGGGAGTTCGGGGAAGGTGAAGCGAGGAAAGTGACGATAATAGGAAGAGTGACGGAGTCTGATGAGGTGGCGCAACGGCTTGGAAGGAGTGACGAGAAGAATTATGATAATGCTGGTACAGGGATGGCTAGTCCAGGGAAGGGTGTAATGGACAGGATTAAAGAAGCTGCTACTTCTTGGTTTCAGAGTAGTGGTGAGTTTCCATCGCAGTATACCACTACACAAGGAACTGAAGGTTCTACTATAATTTCCAGCACGGAAAGTGAGCAGAAAAGAGCCGATGAAGCAGGATTTCAGTAATAACTTGAGCTTAGATATGTTATGCTATATGTTAATCTGGGATTTTGTGTTTGTCATGTCATGTGTGCACAATAGTTTGCTCCAGGTGATAAGAGTAATGTGGGCTAATGTACTTCAAGTTAGCAGCTGTTGTAAATAAAGATTCTGGACACTTTTTGGTGTTTGTGAATGTTTGTAATGTGTTATCTTTGGTGCACTTACTCGTATTGTCAAACCGTTCTTTTACCATCGGTGCTGGGGTTATACCAGTAACC ATGGAACGCCCTACCGGTCACACCACTCATGTAGACGATCCTCATATTCATGGTCAAGATGTTGGCATCAATGGTCAAAATGAAGAGCATCATGGTGAGAAGAAATCAGTGCTAAAGAAAGTAAAGGCGAAAGCGAAGAAGATTAAGGACACTATAAAAGATCATGTTGGACATGGTCATGATCATCACGAGGAAGACGACGACGAAGATGATGAGATGGATATGGACCCTGAAATCCACGGCACTCACACTGCACAAAGCACCATGCCAGGGCAAGAGGGAGTTGCAAGGCAGCAAATGCACGAACCAATAATCGGTGAAAGAACTGCAGGTGAAGGTGCCCACGTGATGAGTAAGCCAAGGCAGCAAATGCATGAACCAACATTCGGCGAAAGAACTGCAGGTGAAGGTGCCCCACACGCGATGAGTAAGCCGGGTGATTATCAGACATTTGATCCTACAACTGCGAGATATACCCCTGGACAGGATGAGACCTTGGGTTGGTCGAGGACCGATGCCAGAAGGCCACAGGACTTTGAGGAAAAACCTTATGCACCAAAGAACACTCCTGTTGCTATGTATTCTGGTGGAGGTCATAGTGCTAGTACTGGAGCTTTGGATATGGGGAAGAAAGGAGCTCCTGTGAAGCTTGGAGGTGTTGTTGGGGGAGTGGAGAGAGATCCTCAGGCCCCGAAAGATGTAGGGGTAGATCGTCATCCTGCCAATTATCAAGCCAAAGTCACTGACCCAACAGCCACTGGAAAGGATCCCCTAGTTGCTCAGAGCTTCATGGCAGGGCTTCATACAAGTAAAATCGATGAAAGATCAGTCGAAGGGGTGATTAACGCCCCAGCAAGCAAGCCACACGGAGATTTAAGGACCTTTGATCTTACTACTACAGATTATGTCCCAGGACAAGAGGAGACCTTAGGTTGGTCTAGGGCTGATACTGGAAGGCTAAACAGGTCAGAGGAAGTGTCCAACGCATCATATAATACACCAATAGCAGCCCATTCAGGACATGAATCACATGATTCCACAGCTGCTCAGAGATTCATGCCAGGGCTACATAGACGTAACATGGGTGAAGGAACTGCAGTACAAGGGGTGGTTCATTCCCCGACAACCAAGCAGCAAGGCCACTATCAGACCTTTGATCCTACTAGTGCAAGTTATGTTCCGGGGCAAGAGGAGACTTTGGGTTGGTCTAGGACTGATACTGGTAGGCAACACGGATCAGAGAAACTGTCCTCTGCAATAAAGAATACACCAACGGCAGCTCATTCAGGAAATGAATCACATGATCCCATGGCTGCTCAGGGCTTCATGGGAGGGCCACATAGAAGTAAAGTGGATGAAAGAACTGCAATGGAAGGGGTAATCCATTCCCCGGAAAGCAATCCGAAAGGAGATTATCACACCTTTGATCCTAATGCAACGAGTTATTTTCCGGGGCAAGAAGAGACCTTGGGTTGGTCTAGGACTGATACCGGAAGGACTCATACAGGTAGAATTCATGGTATGGGAGCTGAAGAGGAGAGAGGGACTGGGAAGCTTGGTGGCTTAATTCAGAATCCAGGATTCTTGGAGAAGGATCCTAATACTGCAAGAGTTCCAGGGGAAAGACATCATGCTGGAAATTATGAGACCAAAGTTTCAGACCCAACAGGCAAGGGCGGTGAAGAAGTAGGGGTTACTCCAATCCTGCATCAGTTAGATAAGATGAATATTTTCGATGAATCACAGCAAAAACCAAGAGCAGACAATGTTCACCTGAACAGAACAGAACACACTCCACAATCTGAGAAGATCACCACTGGAAGCCATAATCAATTCTATCCAGAGCCAGTCACTTCCGAGACGAGCACATTTCTCCAACAATCTACCAGTCCAATCAGCGAGGGACCACGTGACATGTCAGAACAGAAACAAGGAAGTTACACCGGAAAGGTCTCGTCTGCAGCTGCGATGGTGGCTGATAAAGCAAAGCAGGCCACTAATTCTGTTACATCAAAGTTAGGGTATGGTGGAAATTCTGATCAGCACCCAACTTCTGTATCTTCAGCAATGCATGACAAGTCGTCTGAGCCAAGGGGCTATGGGGAGAAGATAACAGGTGCCACAGCTGCTATTACAAACAAGGCTGTACAAGCCAAGGATGTTGTGGCCTCTAAACTAGGCTATGGCGGGACTCACGAGAGACAGCCACCTGTACAAGAAGGGGCCTCCAAGGGAGGAGGATCAATTGTGGGGACAGTGAAAGAAAAAATGGCCCCGGTTTACGATAAAGGGGCAACGGTGGGTTCAACCATGGCCTCAAAGGTGCAAGGTTCAGGGACGGAGCATGAGGTCCAGTTTACTGGGCCTACTACCGGTCCAACTGCTGGGGTGGATAAGGGAGTGTCGATGAAGGAGTATCTGGTCGAGAAACTGAAGCCCGGGGAAGAAGATAAGGCGTTGTCTGAGGCTATAACTGCAGCGTTGCCGGTACACAAACGTAGGGAAGATGTAAGCAAATCCGGGGAGTTCGGGGAAGGTGAAGCGAGGAAAGTGACGATAATAGGAAGAGTGACGGAGTCTGATGAGGTGGCGCAACGGCTTGGAAGGAGTGACGAGAAGAATTATGATAATGCTGGTACAGGGATGGCTAGTCCAGGGAAGGGTGTAATGGACAGGATTAAAGAAGCTGCTACTTCTTGGTTTCAGAGTAGTGGTGAGTTTCCATCGCAGTATACCACTACACAAGGAACTGAAGGTTCTACTATAATTTCCAGCACGGAAAGTGAGCAGAAAAGAGCCGATGAAGCAGGATTTCAGTAA MERPTGHTTHVDDPHIHGQDVGINGQNEEHHGEKKSVLKKVKAKAKKIKDTIKDHVGHGHDHHEEDDDEDDEMDMDPEIHGTHTAQSTMPGQEGVARQQMHEPIIGERTAGEGAHVMSKPRQQMHEPTFGERTAGEGAPHAMSKPGDYQTFDPTTARYTPGQDETLGWSRTDARRPQDFEEKPYAPKNTPVAMYSGGGHSASTGALDMGKKGAPVKLGGVVGGVERDPQAPKDVGVDRHPANYQAKVTDPTATGKDPLVAQSFMAGLHTSKIDERSVEGVINAPASKPHGDLRTFDLTTTDYVPGQEETLGWSRADTGRLNRSEEVSNASYNTPIAAHSGHESHDSTAAQRFMPGLHRRNMGEGTAVQGVVHSPTTKQQGHYQTFDPTSASYVPGQEETLGWSRTDTGRQHGSEKLSSAIKNTPTAAHSGNESHDPMAAQGFMGGPHRSKVDERTAMEGVIHSPESNPKGDYHTFDPNATSYFPGQEETLGWSRTDTGRTHTGRIHGMGAEEERGTGKLGGLIQNPGFLEKDPNTARVPGERHHAGNYETKVSDPTGKGGEEVGVTPILHQLDKMNIFDESQQKPRADNVHLNRTEHTPQSEKITTGSHNQFYPEPVTSETSTFLQQSTSPISEGPRDMSEQKQGSYTGKVSSAAAMVADKAKQATNSVTSKLGYGGNSDQHPTSVSSAMHDKSSEPRGYGEKITGATAAITNKAVQAKDVVASKLGYGGTHERQPPVQEGASKGGGSIVGTVKEKMAPVYDKGATVGSTMASKVQGSGTEHEVQFTGPTTGPTAGVDKGVSMKEYLVEKLKPGEEDKALSEAITAALPVHKRREDVSKSGEFGEGEARKVTIIGRVTESDEVAQRLGRSDEKNYDNAGTGMASPGKGVMDRIKEAATSWFQSSGEFPSQYTTTQGTEGSTIISSTESEQKRADEAGFQ Relationships
The following mRNA feature(s) are a part of this gene:
Homology
BLAST of Spo12971.1 vs. NCBI nr
Match: gi|902235452|gb|KNA23922.1| (hypothetical protein SOVF_019660 [Spinacia oleracea]) HSP 1 Score: 1859.0 bits (4814), Expect = 0.000e+0 Identity = 938/939 (99.89%), Postives = 939/939 (100.00%), Query Frame = 1
BLAST of Spo12971.1 vs. NCBI nr
Match: gi|731322569|ref|XP_010671967.1| (PREDICTED: low-temperature-induced 65 kDa protein-like [Beta vulgaris subsp. vulgaris]) HSP 1 Score: 599.4 bits (1544), Expect = 1.100e-167 Identity = 358/661 (54.16%), Postives = 428/661 (64.75%), Query Frame = 1
BLAST of Spo12971.1 vs. NCBI nr
Match: gi|2654206|gb|AAC49998.1| (cold acclimation protein [Spinacia oleracea]) HSP 1 Score: 332.4 bits (851), Expect = 2.500e-87 Identity = 274/721 (38.00%), Postives = 357/721 (49.51%), Query Frame = 1
BLAST of Spo12971.1 vs. NCBI nr
Match: gi|902235451|gb|KNA23921.1| (hypothetical protein SOVF_019650 [Spinacia oleracea]) HSP 1 Score: 327.4 bits (838), Expect = 8.200e-86 Identity = 274/722 (37.95%), Postives = 356/722 (49.31%), Query Frame = 1
BLAST of Spo12971.1 vs. NCBI nr
Match: gi|743857173|ref|XP_011030111.1| (PREDICTED: low-temperature-induced 65 kDa protein-like [Populus euphratica]) HSP 1 Score: 188.0 bits (476), Expect = 7.700e-44 Identity = 203/621 (32.69%), Postives = 274/621 (44.12%), Query Frame = 1
BLAST of Spo12971.1 vs. UniProtKB/TrEMBL
Match: A0A0K9RYJ3_SPIOL (Uncharacterized protein OS=Spinacia oleracea GN=SOVF_019660 PE=4 SV=1) HSP 1 Score: 1859.0 bits (4814), Expect = 0.000e+0 Identity = 938/939 (99.89%), Postives = 939/939 (100.00%), Query Frame = 1
BLAST of Spo12971.1 vs. UniProtKB/TrEMBL
Match: A0A0J8CWS0_BETVU (Uncharacterized protein OS=Beta vulgaris subsp. vulgaris GN=BVRB_3g055530 PE=4 SV=1) HSP 1 Score: 599.4 bits (1544), Expect = 7.800e-168 Identity = 358/661 (54.16%), Postives = 428/661 (64.75%), Query Frame = 1
BLAST of Spo12971.1 vs. UniProtKB/TrEMBL
Match: O50054_SPIOL (Cold acclimation protein OS=Spinacia oleracea GN=CAP160 PE=2 SV=1) HSP 1 Score: 332.4 bits (851), Expect = 1.800e-87 Identity = 274/721 (38.00%), Postives = 357/721 (49.51%), Query Frame = 1
BLAST of Spo12971.1 vs. UniProtKB/TrEMBL
Match: A0A0K9RWN1_SPIOL (Uncharacterized protein OS=Spinacia oleracea GN=SOVF_019650 PE=4 SV=1) HSP 1 Score: 327.4 bits (838), Expect = 5.700e-86 Identity = 274/722 (37.95%), Postives = 356/722 (49.31%), Query Frame = 1
BLAST of Spo12971.1 vs. UniProtKB/TrEMBL
Match: B9I491_POPTR (Stress-responsive family protein OS=Populus trichocarpa GN=POPTR_0012s13180g PE=4 SV=2) HSP 1 Score: 185.3 bits (469), Expect = 3.500e-43 Identity = 190/569 (33.39%), Postives = 256/569 (44.99%), Query Frame = 1
BLAST of Spo12971.1 vs. ExPASy Swiss-Prot
Match: LTI65_ARATH (Low-temperature-induced 65 kDa protein OS=Arabidopsis thaliana GN=LTI65 PE=2 SV=2) HSP 1 Score: 132.1 bits (331), Expect = 3.200e-29 Identity = 139/440 (31.59%), Postives = 201/440 (45.68%), Query Frame = 1
BLAST of Spo12971.1 vs. TAIR (Arabidopsis)
Match: AT5G52300.1 (CAP160 protein) HSP 1 Score: 132.1 bits (331), Expect = 1.800e-30 Identity = 139/440 (31.59%), Postives = 201/440 (45.68%), Query Frame = 1
BLAST of Spo12971.1 vs. TAIR (Arabidopsis)
Match: AT4G25580.1 (CAP160 protein) HSP 1 Score: 112.8 bits (281), Expect = 1.100e-24 Identity = 126/439 (28.70%), Postives = 190/439 (43.28%), Query Frame = 1
BLAST of Spo12971.1 vs. TAIR (Arabidopsis)
Match: AT3G46750.1 (unknown protein) HSP 1 Score: 51.6 bits (122), Expect = 3.100e-6 Identity = 36/109 (33.03%), Postives = 50/109 (45.87%), Query Frame = 1
The following BLAST results are available for this feature:
BLAST of Spo12971.1 vs. NCBI nr
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. NCBI nr) Total hits: 5
BLAST of Spo12971.1 vs. UniProtKB/TrEMBL
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. UniprotKB/TrEMBL) Total hits: 5
BLAST of Spo12971.1 vs. ExPASy Swiss-Prot
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. ExPASy SwissProt) Total hits: 1
BLAST of Spo12971.1 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 gene is annotated with the following GO terms.
RNA-Seq Expression
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