Overview
Sequences
The following sequences are available for this feature:
Legend: polypeptideCDSexon Hold the cursor over a type above to highlight its positions in the sequence below.ATGTTCCCTTCTTTTTTAAATCTGCCTCACTGGAGGCCTTCAGGTCTTACCACTCCGAAGACGCACCAAGATAGTGAGCTTTTTACTAATGCGGTTATTCAAGATGGATCAGAGGCTGAGCTTGATGGTATGGAAGGAAGTTCAACTTCCTAATATGGAGTGTGATAGTGTCACACAACTTGATGGGGCCTAAATAATACTTCGTACAAAGTTGTACTAGTAGTATTTAGATAAGTAATTTGGGCTAAATTCCTTACATTTGACGGCCATGCACTTTTGCCTTTTCGGTGTAAGTGCTAACGATGCTAAGCAACCAATGATTGTAAATGGATGAGTATTAATGTATTACATTGTTACACTATATAATAGAGATTTTTTTAATATAAATGATGTTTAATGTTTCTTTAAATGGTCGGGCTTTGTGAAGTTTTTGCCTATTATGTGTGGTAATTTTTAGTTTGTATACACTCACAGCATCACGACTAGTAACTTATACGTAGTAAGTTATAAGTGCCTATAAGTCATGGCCGAGACTCTAGGGTTTACAAACCAAAAATCTAGGCGTATCTAATTAAAATTGATACTACGTAACTGCCAATATGCGGTTACACTTAATTTCCTTCATTAAATTCTACCAAATATTTTAAATTCCTAAAATTGGCGCTTTTAAACTTAATCTAGGGAGGTTAATCGCCAGTAACCAAAAGGTCAATTTCTTGCAGTATAATTACGATTCGCATTCCATATTTCAACCAAATATGTTAGTTATATAACCCAATTATTTCTACTTCGGAAATTAGGAGTAGTAAATTCAAGCGACGGCTTCGAATTGTGTGAGCAAAAACCCTAGGCGTCGAAACTTGGTGGTTGTAGATATTCGGCGCAGTACAATGGCACCCATCAGTAATGGTAATCCATTTCCTCTCTAATTTGTGTTTTTTTACTCATTTTCATACCCTTCTAGTAGTAGTATTGTTGGTTGTTCTTGTTAAAAACATTCGATATTAGGCTCCGTTTGGTAGGGCGTAAAATTTTTCATGGAAAACGGTTTTCCCATTTTCAATCATTTTACGTTGGATTGGGCAATGAATGGAAAATAATTTTCCATAACTCCCGCAAAGGTGGAAAACCTTTTTCCATTTTAAAGGAGTGAAACCACTTTTCCTCCTTACCTCCCTCTCCTTTCTTGCCCCCAATCTTCAACATTTCTCCCATTTTCTTTTACTGTTTCTCTTGGAAAATGTTTTACATGTAAAATCATTTTACACTGAAAACGTTTAACCCCGAACCAAACGGAGCCTTAGTGGTATTTGCCAATTTATTTTATGGGCTCGTTCACGAATTTAGAACTTGAATGTTGCTGTCAATTGTTTCTTATTAATAATGCGAAAATATTTACACAACAATAATAATGAAATGGTAGTAATGTCTACGGAGTATATAATTGTAGAACTCTTGCTTTGATTTGTTTTTGCAATGCCCCTCCATTGCAAAAACAAATCTTTTATTTTCTATATTTTATTATTGAGATTTTAAAAATTAAAATGGTGATCTTTTATTTAAAAAACATTTACGGTTCTATTTTTTTATTATTGAGATTTAAAAAAATAGTCTTGTTAAATTTTATCTTAATTTGGAGAGATAACAGAGTTCATGGACTCTATACACTATAAAACAGACCTAAATGGTGATACATCTGGAATGACTAAAAGTCCACAATGGTTGCACAATCTTGGCAGAGTGATCTTTGGATCACAACGTCTCCAATCGAATATGGTAGGTAACTTTCATAACTTCCTCGATATTGTTAACAGAAAAACTTTTGGTAGATGGGAATCGTAAGTAAAAGTATAGAAAGGAAAAGAAAAATATGATTTATCATGTTTGGTTCCAAAAATCTTTAATTTTCCTGTTAAAACTTGTTTAATAATTTTCCTGTTAATAATTTTCTAATAATTTTCCATCCAGCATATGATATGATAGGGATTTATCTTAGAAACTTTTTTTTATAACTTTTTTACTGCGTAAACAAAAAGTCTATAATTGTAAGTAGTATTGTTAATTATAATTTTAATATGATTGTATCTTAAATTTCTGGTTTGTATGTGACTGAGACTGTTATTTTTGTTGCTAATAGTACAGTATGGAATATATAAGTGTGTTGTTGATTTTTCCAACGATGTTGAAAAAGAGGAATCACATCGGGATGAAATTTGTGTTTTCTGTTTTTGTTTTTTTGAACTCGTAGGGTACGTAGTCCAAAGCCCGAACCCGTATCCTTTCCCAAGCTAACATTCTAACAAGTACTCTCCTTCCTCCGCATGCAGTAGCGTACCATGGTAGAACCAAATTTTGTGATTCTGATCTAAAACCTCGCCGTTCCACAATACTAATAGACGGAATACTCGAATCGGAGAACAAAACTCGTGGAACATTCCGTTCCACGAAAACGATTCGTAACGGCACACTCCATGCCACTAGGAGTATAGTTAAACGATTACATTCTTATAATCGTTTTAACATTTCTGATAATGATCAGAAAGGTGTAGACCTTATAGTAAGGTCTAACCCTAAAATCCCAATGAGTAGGAATGCATATCTTGGTCATCATGCCAAGATGATGTCTCCTACGTCAATTGGTCTTGGTGTGCACGAATTGACAAAATCATTCGTCAAATCGATGGAGGCCAAGATGATGTCTCGTACATCTGCTGGTGTTGATTTAAATGATTATGTGAAGCACAAATTGTACCTCGTTAGGTGCTTGGACGAATTGTACAAGAAGTTTAGTAGGCAAGAAGGAAACATGCCTAACTTGAGGATTGACTTGAAGGCATGGAGAATTATAAAGAAAAGAGAAACGATGATGAAGAAGCTGCTTAAAACACCCAAGAACATTGGACCAGTACCCGGCGTTAATATTGGGGATACGTTTGATTTAAGGCTTAAGCTTGTGATAATGGGCATCCACTCTCCTTTAATTGATGGTATCGATTATACAAGAGTGAGAGGTCAATTAATAGCAATATCTATCGTTGCTACGGATAGTTACTATAATGATTTGTCCAAGGCGAATGAGATTTTATACACCGGTGTAGGAGGAACATTTGAACCCAATGGTAAATATGCTAAAGATCAAGAGCTTAAAAGGGGTAATTTAGCATTGAAGAATAGCATGGAATTTCAAAATGTTGTGAGAGTTGTTCGTGGAATGAAGAACAAGGGAGTCAAAAACACAGAATTTATTTATGATGGCTTGTACAAAGTTGTTGCATGCTACAAGATAATGGGACCATATGGTAAGATGCACTTCCACTTTAAGTTAATGAGGTGTCCCGCTCAGGAACCCATTATTTGGAATTCGTATTACTGTTAATTTGGTGATTAGTTGCATGGAAACGTCTTAGCATGATTAGTGGGCTAGCTTGGATGATCACTATCTACCATTGCTATGGAGAAGCTAACCAAGTTACAAATTGTTTTTTTTTTTTTGGTGCAAATGAGCCACAAAGGTGGGGATGAGAATCGATCCCAGGATCACCTGGAACCGGGATGGAAGCTCTAACCAACTGAGCTATCCATCACTCTCACCAAGTTACAAATTGTGGTGTTAGCTATGATTGGTTCTTGCAAAGTTTGCCTAGGTTACGATCGAATTTATTAGATAGTTTGTAGTTTATTTCCCTTTGTGTGTGTTTTACGCTAGATTTCTATGTTAATTCATAGATAGGTGTTAGTGGATTAAAATATTTACTCCCCCTGTTTTCTTTTAATAATTTTATTTCAAGTTTAGAATTGGTTTTGAAACAATATTTACATGTAAATATATCCTTACACCTATAAAAGTTTAACCACTTTCTCTCTTCCATAAATATTGCACCATTTAATTTTTTACTCTATTCTCACTACGACTTTGGCCCTTTTTTGTGATTTATGCGTAAGAAAATTGTAGTCATGTGAGTTCATGTTAGATTCGTATTGAGATATATATTTTCCAGATGTCAATTTTTTATAATTTTATAGTTGTGAAAAATTTATGTAGAATCCAAATTCTGGGTTGCCTGTTAAACCATATTGTTCCTCCATTCCAAAAGGATCTTTACACTTACTGTTTGCACAAACTCCGGTGCATTGTTTGACCGTTAATGTATCCAATTTTGTATGACAAAAAGTTATAAAAAGTTGATATTTATAAATTACATTTTGTGACGAATTTAACAAAATCTCTCATGATAATTTTTTATAGACATAATAGTGAGAATTTATGGTCAAAGTTTTGATTGTTGGACACATTTTTCAAAGCGTAAAGAATTTAATGAAATGGATTTAGTATAAGATAATTATTCGATTGCAGTTATACCAAAGTTATTCATTAAATTTATATATATTTTCATACTCTTTACGTACCATAATGTTTTTCACAATTCATTTTTTATATAAATCTTAGTACTGAAGTAAAGTTGTTAAACATATAAAATAGTGGGTATCACTTTCTTTTCTTGATCGCAATATACTTACTTAACCACATGCACTCAACAGTATAAGAACGTTCTAGATTAAAATTTTCAATTGGTGGAGGTAGCACCCATAAAAAAGATTTGTTTCCAAGAATGAGAAAACTTTTTTCATGATCCGATTGCGTTCTTTAGGTTGCACGATTGCAAAAAATATATTTAAATGTAAAAACATGAGCTAATTAATTCAGAAATTTATGTAGTCAACTACATATCAATAGACGACTTTAAAGAAAATGTCGACGAACGAAATCAAGCTCTCTTTATCTTTGCCAATTTTTTGATTTATACTATAAGTGAAAACACTTTTAAGAAAAATGCTTAAGGTTATATTGTACATGAATTTAGCGAACTTGTTCATAACATGTAGATAAGGTTGTAGTTTTTCATTAACCGGGCTAACATAAACCCTAGTGTTGCATCTTGTGTTAAGATGTGTACCTGGTTGTAGATATCAATTAGAAATATTATCACATATGAATATTATACTTTGAAATACATATTAAAAAGACTGCACGTGTAATGATACTTTAATTTGAACGATGTACCATAAAAGCTCTTGACATGCAGGCTACATGCTACAATTATTGGACAAATGTCAATTTGATTAAAATTTTCATCACCAAGTACGTGCACAAATTCATTGCAAAGTGTTGATTTAATAACATTCCATCTGCAAATAGAAAGTAAAACAATATTAAGACAAATGTTCATGAAATAAAGGTAAATTCGATAAGTAAATAACATTTTAATGATTTAAAGGATTTATATTGTATCCATTATTGACACGCTTCTTTTGACTGAATTTACTCCAATATGCTCAATTGGTGAAACATATAGAACCAATCCCATTGCATCTAAAACATTGTCAATGTTTCAATTAATAAACCGCATATGTAAGATAACTAAATATTGAAAAAAGGTGAACAAAAGTACCAAACACTATTGGTACAGTCGATGTGGTAACTCAATCGGTTCAAATCAACCAAATTATAGTGGAATGAAGGTATGAAAATGTCATCCTTCACTTCACATATCACATTTGTTTCTTCTTTAATGATCATTTGTTTTCAATTTGGGACAATTTTATTTTTCTGTTCTGCAAAAATCCCTCTTGAAACCTTCCTATGAGTTTTTCAATCGCAGGCCCGAAAACATTGCATTGTATATATGCCCTCACCCTACAAAAGAAACCATAAGAAAAAGTTATGATATAGGTCAGACCATATGAAAAATTGAATGAGGAGTATGGTCATTTACCTTAACATTGACAAAACAAACATTTTCCATGTTAGCAAATGTCATAATTGCGAATCAGTCGGACTCTTACATCATATCGTTGTACCCCGTTAGGAAATAAATGCATAAATGGTGGATAAAATAGCGAAATTTATTACCAAAAGGTAGAAACAATAAAAAACCAATCAAAGAAACACAGAAACACGAAAATAAAAGAAAAAAAAGGGTGCACAGCCCGCAACCCGAACAAAATACACACAACAGACTACAAACAACACGCAGCTAGCGCACAACAGACCTGCAACAACAAGACAACCTAATGCATCAGCCATCTAGCAATTGAAGAACCCACAAACCTATGACAAACAACCCACAATTTTAGACACATTAAGGCCTCTAGCATAATCAATAAACTTGGCCTCATGCACTATACTATCAGGACTTTGCTTCAAGGATCTGAATTTTCTTTGGTTGCGCTCCTTCTATAACAAATAAACCGCAATAGAAATCATCAATCTATAAAACTGATGCTTCCCCAAATTAGTATTGACCTGAGTTTCCAGAAAATGCATCTCATCGGCCCATTTACAAGGTCTCCTTATGACACGTACCCAACCAATGAAGCAATTGGCTCCAAACAGAAGCCGAGAACATACACTCAAAAAATAGATTATCAACACTCTCTGTATCCATTTCACATAGGCAGCACACAAGATCACAAACGACCCCTATTTACAGAAGACGATCACAAGTTACCAACCTATTGAGGGCAGACAACCAAATGATAAAAGTGCACTTCCGAGGAGTAGGATTATTACACAAGAGTTTCTTCCAGCTTACCTTCTGTATGTCACCCCGAAGTTTATGATAAACTTTACTGATAGAGCAATGTGTAGCAGAAAACACATCTACTCCACCAGAAAAGCTTTGAAGGTACTGTAATACCCCGAATTTTTAAAACTCGATTAATTATGCTTAATTATTTTTATTTAATTTAAAAATATTTTAAAACCTAATTTCGAACTTTATTTTAACTACAAATTTTTATTTCGCTTGAATTTTTAATATTGTTACACGAATTACTATTTTTTAGATTTTATAATTTCATAATTACGAGCTTAACAACTTTTTTTTTTTTAAATCTTAATATTTTCGGATTTTTAATGATTTCATAACGTTCTTATTTTATTCGAAAAATTTAATTTATTTTTCGTTAACGATACTTCTTTTTTTTTAGAATTATTTCAAAACTTGTTTTTAATTAAACATTTTCCTAAAATAGAAACCAATTTTCAGAAATCTTGCCTAACTATGTGAAATGACCAAAATGCCCCTAAGGAACAAATAAGCATCTTTTTTTTCCTTCCTTGCCATTCACGTACAAACAATAGCATACAAACAAGAACAAGAATGAAGGAATTCCTTCATTCCTCTCCACCCACAATTCAGACTACATTCATGCCTTGATTCCCAATGATTTCACTCAACTCAACACTATAAATAAGCCACAAGTTGTCACCATTTTTCCAACCAAAATCAGTTATCAAAACTGGAAACCATCACCACTATCGAACCACCAACAACCACCACCACTGCCGTCCCCTTCTCCCCTTCGCTGCACCACCGTGCTGCGCCCCCATTCCTAGCCACCATCACCACCATCTCCGGCGCAACCTCGACCCAACACCCACCCCCTAATTCCTCTTACCTTTCGGCAGCCACCCACTCCCCTGTTCCCTCCACCTTTCTTCCCTTGCGGCACCATCAGCGTCGCACCACCGCTCCCAACCACCTTCGCCACCGTGTGTACCCACCTCCTGCCCCAATCCCCGGCGAGACGCCGCCCAGAACCGCCCCAAGAACACCCCCAAACTCCCCTGTTTCCTTCTCCCTCGCTCGCACTACTCCTCCTTCCCTCGCCTGTAACACCACCGCACAACCACCACCATCAGTACCGCACCCCGGCGCTGCACCGAGCCACCCTGCCACCTCCTCCCTTGGCCTCTCTCCTTCCCTTCGTGCTCCCTCGTACCCTCCTCTGCTTCGTGTTTCCATTCCCAGGAAACCGAAAATCAGATTTCAAAGTGAAATCTTGATTTTTGTTTCCTCAAACCCAATTTTAAAGTTGGGCCATTTTAGTTGGGCTTTTGGGTGAGTTAAAATTTGGATAGTTGATTTCAGATTTTCTATTTAGTCATATTAATGTTTTAATATTTTCTTTTTTATGATATAATTATTCACTAATAAATCATTATTACTTTTCAGGTTTGATTATCGATTTTACTAAAGTAAATTACTAGCTTTATTTAACAAAAAATGGAATTTAAATGATATTTTGTGTAAATCGACTTATGGAATATAAATATATATATTTTTATTGATATTTCGATTAATAATTAAATTAGGAAAACATATGTTTTATTGAAATTCGTTAATTATAAATGAATTTATATAAAACATATTATTTATAAGATGTTGATTTTAAATTATTTATCGTTTTAATAAATAATTCAATAATTTAATATTTTGAAAGAATTCGGACTCGGAGCTCAGAAAGAACGAACCAAGGGCAACGCTTAACAATCGTGGAATTGAGGTAACGGTTATTGCTAGTACCCGCAATCCCTTCGAAATATATTTATGAATGATGTTATGAATGATTGATGTTTTATAATGATGTTTTATGATTTGCGGGATTACAAGTATGATTTGATTGAATTGATTTACGATATTGCAGCTTTATGCAAAGTATTGATTTAACGAATTATTATTCCTGAAAGAAATGATTTTATGAAATAATGAGATTTAATGGTTTTATTGAACCACCTTGAATGAATGAGATTTTTCCTGATTAATGTTCAATTAAAAGAAATGTAAACATGATAAATGAAAGTGTAAGAACTGGTCAAGTTCCCCTGTTATGGAGCCCAGGCTCCCCCTGATAAGAAGCACTGGCTTCCCCTGATATGGAACCAAGGTTCCCCCTGATAAGAAGCACTGGCTGCCCCTGTTATGGAGCACTGGCTCCCCCTGTTATGAAGCACTGGCTTCCCCTGTTCGTAGGAGTCGTCCTACCATGTTTTCCTGTAAAGTCCTGACGACCAGAATAATACTATTAAAAAGGAAAAAGGTTAAAGAATGATGTTCCTGAAACGATATTAATGAAATGATGTTACTGAAATGATGTTTCCAAAATGATGCTTCTGAAATGATGATTTATTAAATGTTTTACTATATTCTATTCTCCCTGTTTATTAAATAAAATGAATTGAAACGATGTTACGATGCTAGGGTAACTCGTTACTTAGTCTTCGGCTCACCGTTTTGTTTTCTGTTTTAGGTACTGCTGGGGACCACGGAAACGAGTAGTGGCGAGGATTTCAATATTACAATGTTCACCTAAGTTAATGTTAAGATGTAACAAGTTTAAGTAAAGATTCTTGATTAAGTTACGTACTTTTATTAAGGAATTAAAAAGGATTATTATGTTAATTTTGGAGTTTAATAGCTTATGATTGATGGTTGCCTTGTAATTCCCAGGAGGGAGTTACGGCAGGTAATGTCCCGTCCGAATTAGGTTATTTCCGCTGCTAAGTATGCCTTAATAAGTGATTTCGAGGTCGGGGTGTTACATGTACTCTCTTGCATTTAGGAATTTTCTCACCACCTATGAAGCTTGAGAAGGTATTGGAATAGTGGTGAGATCCCTACCCTTTAAATAGTAGTCATGAATCCAACGTACCCATGTTTTGTCTTTCTTTTGAGCCACACACCACAGAAGTTTACAAACTGCGGCTTTGTTCCACATTTTAACACAAGTGATGTTGAACCCTCCTGCAGACTTAGGAAGACAAACAAACTCACATGCCACCAATTCCTTCTTAGACACACCTGCAGCTAGGTCCGGCCCGGAACCGGTCTATATCCGGCCCGGTCCGGACCGGAACCGAAATAGACCGGATCCGGAATCCTTGTTTTTTCGTGTCCGGAGACCGGTCCGGAATTATTCCGGACACGACCGGTCTTGTCCTGAAAAATCCGGACCGGACCGGTTCGAGACCTGTTAGATCCGGTTTTGTAGTTTGTATAAATTTCTTTTAAAAAAAATGTTGTACATTTCTAGAATAGTCGTGAGCGGTTCTAGAATCTGTTGTTTTTTCCCTTGTATGTCCTGTATCATACGCCCACTCAATTGGATTTCACATCAGTGAAGAACACATAAATGTTTCCCAGTGAATAAACTAATAAAAACTGATACTTAAATTAAACTATAGTAAGAACACAAAAAATAGGTAAAATTGGGAAAATTGAAAAAATAATACCACCATATAAAAATAAAATCAAGAAGAAAAGGAGTATTAAATCTTCAGCATTACGTCAATTAGCAGAAGCAGCCAGAGGCAAAGACATAGGCGGCATTCGCGACGGTAATTTGACGGCGGCGACACTCTTCAAGGTCGATGAAGCAGAAGCCGATGGTGGAGGTGACGATGCAATTAATGGAAGGAAGGTGGTCAAGGATGTTGGCGGCGGTAATCCGAAGGCCAAGGCTGGTGATGAATATATGATAAAAATATACGGAGTAACCCACAAAAATTTCAAGATCTGGAAGAGAGGCTCTTGA ATGTTCCCTTCTTTTTTAAATCTGCCTCACTGGAGGCCTTCAGGTCTTACCACTCCGAAGACGCACCAAGATAGTGAGCTTTTTACTAATGCGGTTATTCAAGATGGATCAGAGGCTGAGCTTGATGTAGCGTACCATGGTAGAACCAAATTTTGTGATTCTGATCTAAAACCTCGCCGTTCCACAATACTAATAGACGGAATACTCGAATCGGAGAACAAAACTCGTGGAACATTCCGTTCCACGAAAACGATTCGTAACGGCACACTCCATGCCACTAGGAGTATAGTTAAACGATTACATTCTTATAATCGTTTTAACATTTCTGATAATGATCAGAAAGGTGTAGACCTTATAGTAAGGTCTAACCCTAAAATCCCAATGAGTAGGAATGCATATCTTGGTCATCATGCCAAGATGATGTCTCCTACGTCAATTGGTCTTGGTGTGCACGAATTGACAAAATCATTCGTCAAATCGATGGAGGCCAAGATGATGTCTCGTACATCTGCTGGTGTTGATTTAAATGATTATGTGAAGCACAAATTGTACCTCGTTAGGTGCTTGGACGAATTGTACAAGAAGTTTAGTAGGCAAGAAGGAAACATGCCTAACTTGAGGATTGACTTGAAGGCATGGAGAATTATAAAGAAAAGAGAAACGATGATGAAGAAGCTGCTTAAAACACCCAAGAACATTGGACCAGTACCCGGCGTTAATATTGGGGATACGTTTGATTTAAGGCTTAAGCTTGTGATAATGGGCATCCACTCTCCTTTAATTGATGGTATCGATTATACAAGAGTGAGAGGTCAATTAATAGCAATATCTATCGTTGCTACGGATAGTTACTATAATGATTTGTCCAAGGCGAATGAGATTTTATACACCGGTGTAGGAGGAACATTTGAACCCAATGGTAAATATGCTAAAGATCAAGAGCTTAAAAGGGGTAATTTAGCATTGAAGAATAGCATGGAATTTCAAAATGTTGTGAGAGTTGTTCGTGGAATGAAGAACAAGGGAGTCAAAAACACAGAATTTATTTATGATGGCTTGTACAAAGTTGTTGCATGCTACAAGATAATGGGACCATATGCACACAAGATCACAAACGACCCCTATTTACAGAAGACGATCACAAGTTACCAACCTATTGAGGGCAGACAACCAAATGATAAAAGTGCACTTCCGAGGAGTAGGATTATTACACAAGAGTTTCTTCCAGCTTACCTTCTGTATGTCACCCCGAAGTTTATGATAAACTTTACTGATAGAGCAATGTGTAGCAGAAAACACATCTACTCCACCAGAAAAGCTTTGAAGTTATCAAAACTGGAAACCATCACCACTATCGAACCACCAACAACCACCACCACTGCCGTCCCCTTCTCCCCTTCGCTGCACCACCGTGCTGCGCCCCCATTCCTAGCCACCATCACCACCATCTCCGGCGCAACCTCGACCCAACACCCACCCCCTAATTCCTCTTACCTTTCGGCAGCCACCCACTCCCCTGTTCCCTCCACCTTTCTTCCCTTGCGGCACCATCAGCGTCGCACCACCGCTCCCAACCACCTTCGCCACCGTGTGTACCCACCTCCTGCCCCAATCCCCGGCGAGACGCCGCCCAGAACCGCCCCAAGAACACCCCCAAACTCCCCTGTTTCCTTCTCCCTCGCTCGCACTACTCCTCCTTCCCTCGCCTGTAACACCACCGCACAACCACCACCATCAGTACCGCACCCCGGCGCTGCACCGAGCCACCCTGCCACCTCCTCCCTTGGCCTCTCTCCTTCCCTTCGTGCTCCCTCGTACCCTCCTCTGCTTCGTGTTTCCATTCCCAGGAAACCGAAAATCAGATTTCAAAGTGAAATCTTGATTTTTGTTTCCTCAAACCCAATTTTAAAGTTGGGCCATTTTAGTTGGGCTTTTGGGAGGGAGTTACGGCAGAAGAAAAGGAGTATTAAATCTTCAGCATTACGTCAATTAGCAGAAGCAGCCAGAGGCAAAGACATAGGCGGCATTCGCGACGGTAATTTGACGGCGGCGACACTCTTCAAGGTCGATGAAGCAGAAGCCGATGGTGGAGGTGACGATGCAATTAATGGAAGGAAGGTGGTCAAGGATGTTGGCGGCGGTAATCCGAAGGCCAAGGCTGGTGATGAATATATGATAAAAATATACGGAGTAACCCACAAAAATTTCAAGATCTGGAAGAGAGGCTCTTGA ATGTTCCCTTCTTTTTTAAATCTGCCTCACTGGAGGCCTTCAGGTCTTACCACTCCGAAGACGCACCAAGATAGTGAGCTTTTTACTAATGCGGTTATTCAAGATGGATCAGAGGCTGAGCTTGATGTAGCGTACCATGGTAGAACCAAATTTTGTGATTCTGATCTAAAACCTCGCCGTTCCACAATACTAATAGACGGAATACTCGAATCGGAGAACAAAACTCGTGGAACATTCCGTTCCACGAAAACGATTCGTAACGGCACACTCCATGCCACTAGGAGTATAGTTAAACGATTACATTCTTATAATCGTTTTAACATTTCTGATAATGATCAGAAAGGTGTAGACCTTATAGTAAGGTCTAACCCTAAAATCCCAATGAGTAGGAATGCATATCTTGGTCATCATGCCAAGATGATGTCTCCTACGTCAATTGGTCTTGGTGTGCACGAATTGACAAAATCATTCGTCAAATCGATGGAGGCCAAGATGATGTCTCGTACATCTGCTGGTGTTGATTTAAATGATTATGTGAAGCACAAATTGTACCTCGTTAGGTGCTTGGACGAATTGTACAAGAAGTTTAGTAGGCAAGAAGGAAACATGCCTAACTTGAGGATTGACTTGAAGGCATGGAGAATTATAAAGAAAAGAGAAACGATGATGAAGAAGCTGCTTAAAACACCCAAGAACATTGGACCAGTACCCGGCGTTAATATTGGGGATACGTTTGATTTAAGGCTTAAGCTTGTGATAATGGGCATCCACTCTCCTTTAATTGATGGTATCGATTATACAAGAGTGAGAGGTCAATTAATAGCAATATCTATCGTTGCTACGGATAGTTACTATAATGATTTGTCCAAGGCGAATGAGATTTTATACACCGGTGTAGGAGGAACATTTGAACCCAATGGTAAATATGCTAAAGATCAAGAGCTTAAAAGGGGTAATTTAGCATTGAAGAATAGCATGGAATTTCAAAATGTTGTGAGAGTTGTTCGTGGAATGAAGAACAAGGGAGTCAAAAACACAGAATTTATTTATGATGGCTTGTACAAAGTTGTTGCATGCTACAAGATAATGGGACCATATGCACACAAGATCACAAACGACCCCTATTTACAGAAGACGATCACAAGTTACCAACCTATTGAGGGCAGACAACCAAATGATAAAAGTGCACTTCCGAGGAGTAGGATTATTACACAAGAGTTTCTTCCAGCTTACCTTCTGTATGTCACCCCGAAGTTTATGATAAACTTTACTGATAGAGCAATGTGTAGCAGAAAACACATCTACTCCACCAGAAAAGCTTTGAAGTTATCAAAACTGGAAACCATCACCACTATCGAACCACCAACAACCACCACCACTGCCGTCCCCTTCTCCCCTTCGCTGCACCACCGTGCTGCGCCCCCATTCCTAGCCACCATCACCACCATCTCCGGCGCAACCTCGACCCAACACCCACCCCCTAATTCCTCTTACCTTTCGGCAGCCACCCACTCCCCTGTTCCCTCCACCTTTCTTCCCTTGCGGCACCATCAGCGTCGCACCACCGCTCCCAACCACCTTCGCCACCGTGTGTACCCACCTCCTGCCCCAATCCCCGGCGAGACGCCGCCCAGAACCGCCCCAAGAACACCCCCAAACTCCCCTGTTTCCTTCTCCCTCGCTCGCACTACTCCTCCTTCCCTCGCCTGTAACACCACCGCACAACCACCACCATCAGTACCGCACCCCGGCGCTGCACCGAGCCACCCTGCCACCTCCTCCCTTGGCCTCTCTCCTTCCCTTCGTGCTCCCTCGTACCCTCCTCTGCTTCGTGTTTCCATTCCCAGGAAACCGAAAATCAGATTTCAAAGTGAAATCTTGATTTTTGTTTCCTCAAACCCAATTTTAAAGTTGGGCCATTTTAGTTGGGCTTTTGGGAGGGAGTTACGGCAGAAGAAAAGGAGTATTAAATCTTCAGCATTACGTCAATTAGCAGAAGCAGCCAGAGGCAAAGACATAGGCGGCATTCGCGACGGTAATTTGACGGCGGCGACACTCTTCAAGGTCGATGAAGCAGAAGCCGATGGTGGAGGTGACGATGCAATTAATGGAAGGAAGGTGGTCAAGGATGTTGGCGGCGGTAATCCGAAGGCCAAGGCTGGTGATGAATATATGATAAAAATATACGGAGTAACCCACAAAAATTTCAAGATCTGGAAGAGAGGCTCTTGA MFPSFLNLPHWRPSGLTTPKTHQDSELFTNAVIQDGSEAELDVAYHGRTKFCDSDLKPRRSTILIDGILESENKTRGTFRSTKTIRNGTLHATRSIVKRLHSYNRFNISDNDQKGVDLIVRSNPKIPMSRNAYLGHHAKMMSPTSIGLGVHELTKSFVKSMEAKMMSRTSAGVDLNDYVKHKLYLVRCLDELYKKFSRQEGNMPNLRIDLKAWRIIKKRETMMKKLLKTPKNIGPVPGVNIGDTFDLRLKLVIMGIHSPLIDGIDYTRVRGQLIAISIVATDSYYNDLSKANEILYTGVGGTFEPNGKYAKDQELKRGNLALKNSMEFQNVVRVVRGMKNKGVKNTEFIYDGLYKVVACYKIMGPYAHKITNDPYLQKTITSYQPIEGRQPNDKSALPRSRIITQEFLPAYLLYVTPKFMINFTDRAMCSRKHIYSTRKALKLSKLETITTIEPPTTTTTAVPFSPSLHHRAAPPFLATITTISGATSTQHPPPNSSYLSAATHSPVPSTFLPLRHHQRRTTAPNHLRHRVYPPPAPIPGETPPRTAPRTPPNSPVSFSLARTTPPSLACNTTAQPPPSVPHPGAAPSHPATSSLGLSPSLRAPSYPPLLRVSIPRKPKIRFQSEILIFVSSNPILKLGHFSWAFGRELRQKKRSIKSSALRQLAEAARGKDIGGIRDGNLTAATLFKVDEAEADGGGDDAINGRKVVKDVGGGNPKAKAGDEYMIKIYGVTHKNFKIWKRGS Relationships
The following mRNA feature(s) are a part of this gene:
Homology
BLAST of Spo28239.1 vs. NCBI nr
Match: gi|902210602|gb|KNA16489.1| (hypothetical protein SOVF_088810 [Spinacia oleracea]) HSP 1 Score: 477.2 bits (1227), Expect = 5.000e-131 Identity = 240/244 (98.36%), Postives = 240/244 (98.36%), Query Frame = 1
BLAST of Spo28239.1 vs. NCBI nr
Match: gi|731371525|ref|XP_010666068.1| (PREDICTED: YDG domain-containing protein At5g47150-like [Beta vulgaris subsp. vulgaris]) HSP 1 Score: 216.5 bits (550), Expect = 1.600e-52 Identity = 112/189 (59.26%), Postives = 136/189 (71.96%), Query Frame = 1
BLAST of Spo28239.1 vs. NCBI nr
Match: gi|870843158|gb|KMS96393.1| (hypothetical protein BVRB_9g225690 [Beta vulgaris subsp. vulgaris]) HSP 1 Score: 215.3 bits (547), Expect = 3.600e-52 Identity = 111/186 (59.68%), Postives = 135/186 (72.58%), Query Frame = 1
BLAST of Spo28239.1 vs. NCBI nr
Match: gi|922358639|ref|XP_013453447.1| (histone-lysine N-methyltransferase, suvh protein [Medicago truncatula]) HSP 1 Score: 139.4 bits (350), Expect = 2.500e-29 Identity = 86/259 (33.20%), Postives = 147/259 (56.76%), Query Frame = 1
BLAST of Spo28239.1 vs. NCBI nr
Match: gi|357482201|ref|XP_003611386.1| (histone-lysine N-methyltransferase, suvh protein [Medicago truncatula]) HSP 1 Score: 139.4 bits (350), Expect = 2.500e-29 Identity = 86/259 (33.20%), Postives = 147/259 (56.76%), Query Frame = 1
BLAST of Spo28239.1 vs. UniProtKB/TrEMBL
Match: A0A0K9RBU6_SPIOL (Uncharacterized protein OS=Spinacia oleracea GN=SOVF_088810 PE=4 SV=1) HSP 1 Score: 477.2 bits (1227), Expect = 3.500e-131 Identity = 240/244 (98.36%), Postives = 240/244 (98.36%), Query Frame = 1
BLAST of Spo28239.1 vs. UniProtKB/TrEMBL
Match: A0A0J8B8T5_BETVU (Uncharacterized protein OS=Beta vulgaris subsp. vulgaris GN=BVRB_9g225690 PE=4 SV=1) HSP 1 Score: 215.3 bits (547), Expect = 2.500e-52 Identity = 111/186 (59.68%), Postives = 135/186 (72.58%), Query Frame = 1
BLAST of Spo28239.1 vs. UniProtKB/TrEMBL
Match: G7JYL0_MEDTR (Histone-lysine N-methyltransferase, suvh protein OS=Medicago truncatula GN=MTR_5g013420 PE=4 SV=1) HSP 1 Score: 139.4 bits (350), Expect = 1.700e-29 Identity = 86/259 (33.20%), Postives = 147/259 (56.76%), Query Frame = 1
BLAST of Spo28239.1 vs. UniProtKB/TrEMBL
Match: A0A072UEG5_MEDTR (Histone-lysine N-methyltransferase, suvh protein OS=Medicago truncatula GN=MTR_5g013420 PE=4 SV=1) HSP 1 Score: 139.4 bits (350), Expect = 1.700e-29 Identity = 86/259 (33.20%), Postives = 147/259 (56.76%), Query Frame = 1
BLAST of Spo28239.1 vs. UniProtKB/TrEMBL
Match: W9S0E6_9ROSA (Histone-lysine N-methyltransferase, H3 lysine-9 specific SUVH6 OS=Morus notabilis GN=L484_024045 PE=4 SV=1) HSP 1 Score: 138.7 bits (348), Expect = 3.000e-29 Identity = 78/199 (39.20%), Postives = 121/199 (60.80%), Query Frame = 1
BLAST of Spo28239.1 vs. ExPASy Swiss-Prot
Match: SUVH5_ARATH (Histone-lysine N-methyltransferase, H3 lysine-9 specific SUVH5 OS=Arabidopsis thaliana GN=SUVH5 PE=1 SV=1) HSP 1 Score: 119.8 bits (299), Expect = 1.300e-25 Identity = 89/266 (33.46%), Postives = 138/266 (51.88%), Query Frame = 1
BLAST of Spo28239.1 vs. ExPASy Swiss-Prot
Match: YDG1_ARATH (YDG domain-containing protein At5g47150 OS=Arabidopsis thaliana GN=At5g47150 PE=2 SV=1) HSP 1 Score: 118.6 bits (296), Expect = 2.900e-25 Identity = 65/151 (43.05%), Postives = 92/151 (60.93%), Query Frame = 1
BLAST of Spo28239.1 vs. ExPASy Swiss-Prot
Match: SUVH1_ARATH (Histone-lysine N-methyltransferase, H3 lysine-9 specific SUVH1 OS=Arabidopsis thaliana GN=SUVH1 PE=2 SV=1) HSP 1 Score: 111.3 bits (277), Expect = 4.600e-23 Identity = 60/144 (41.67%), Postives = 87/144 (60.42%), Query Frame = 1
BLAST of Spo28239.1 vs. ExPASy Swiss-Prot
Match: SUVH1_TOBAC (Histone-lysine N-methyltransferase, H3 lysine-9 specific SUVH1 OS=Nicotiana tabacum GN=SUVH1 PE=1 SV=1) HSP 1 Score: 104.4 bits (259), Expect = 5.600e-21 Identity = 58/148 (39.19%), Postives = 93/148 (62.84%), Query Frame = 1
BLAST of Spo28239.1 vs. ExPASy Swiss-Prot
Match: SUVH6_ARATH (Histone-lysine N-methyltransferase, H3 lysine-9 specific SUVH6 OS=Arabidopsis thaliana GN=SUVH6 PE=2 SV=2) HSP 1 Score: 104.0 bits (258), Expect = 7.300e-21 Identity = 77/221 (34.84%), Postives = 114/221 (51.58%), Query Frame = 1
BLAST of Spo28239.1 vs. TAIR (Arabidopsis)
Match: AT2G35160.1 (SU(VAR)3-9 homolog 5) HSP 1 Score: 119.8 bits (299), Expect = 7.200e-27 Identity = 89/266 (33.46%), Postives = 138/266 (51.88%), Query Frame = 1
BLAST of Spo28239.1 vs. TAIR (Arabidopsis)
Match: AT5G47150.1 (YDG/SRA domain-containing protein) HSP 1 Score: 118.6 bits (296), Expect = 1.600e-26 Identity = 65/151 (43.05%), Postives = 92/151 (60.93%), Query Frame = 1
BLAST of Spo28239.1 vs. TAIR (Arabidopsis)
Match: AT5G04940.1 (SU(VAR)3-9 homolog 1) HSP 1 Score: 111.3 bits (277), Expect = 2.600e-24 Identity = 60/144 (41.67%), Postives = 87/144 (60.42%), Query Frame = 1
BLAST of Spo28239.1 vs. TAIR (Arabidopsis)
Match: AT2G22740.2 (SU(VAR)3-9 homolog 6) HSP 1 Score: 104.0 bits (258), Expect = 4.100e-22 Identity = 77/221 (34.84%), Postives = 114/221 (51.58%), Query Frame = 1
BLAST of Spo28239.1 vs. TAIR (Arabidopsis)
Match: AT5G47160.1 (YDG/SRA domain-containing protein) HSP 1 Score: 101.3 bits (251), Expect = 2.700e-21 Identity = 60/180 (33.33%), Postives = 98/180 (54.44%), Query Frame = 1
The following BLAST results are available for this feature:
BLAST of Spo28239.1 vs. NCBI nr
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. NCBI nr) Total hits: 5
BLAST of Spo28239.1 vs. UniProtKB/TrEMBL
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. UniprotKB/TrEMBL) Total hits: 5
BLAST of Spo28239.1 vs. ExPASy Swiss-Prot
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. ExPASy SwissProt) Total hits: 5
BLAST of Spo28239.1 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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