Overview
Sequences
The following sequences are available for this feature:
Legend: five_prime_UTRexonpolypeptideCDS Hold the cursor over a type above to highlight its positions in the sequence below.TCCTTGTAGAATCAAAATAAATCAATAATAAGATTATCATTTTAAAATTAACTCAAAGTTGATGTGGTTTGACCACAAAAGTCGAACATAGGTAAGCAAGAACAAGGGGTTTAGCTTCAGTTTAGGCCAAAGGTAGTTACGCCACTTTATAAGGTCAAAAAAGGGACGCCGCACCGGAGTCGGAGAGCCACCCTAAAAAGTCAGTGTTAAGAGAGAGAAAATGGAGAGCATCGGCGCCACCGCCCTAAGGCAAACTACCTTTCTCTCTCCTCTCCCGTCGCCGCCGCTGCCTTCTAACGACGTTTCCAGTCTCTCTCATTTCTCCCCGTTTCTCTTCTCCAGTAGGAAACACTCCGCTGCTTTATCTCTCAAGGTTTCCTCTTTCTCTCTCTAGACTCTTTCGATTGATTCGTTTTCATGAATTTCCGGAAAGTTTTTCTTGTTAATGTGATGCAATAGTATTATTATGCTTTGATTTTCAAGACGCCTTAATTGCAATTTGTCGGATATTTTTGAGTAATTTTTGTAAATTTGCTGTTATTAATGTTATTGTTGATCAATAGTTAGTGTTAAATGGTTGTGTGCATGATTACAGCTTCAGAAGCAATTACGAATCGGCGATAACAATGTCCGAGCTACTAATTGGGCGAAATGCAGTGCTACATTGTCCGATACTTCCAGGTATACTCTTGCTTCATATGAGTATTAACGTATATTTGATATGAGAAAATAGATAATTGGTACTGGAAAATTAGGTTACTTATTTAGAGAGATTGAGAATTTTGAGTGAGACAGTTGCTTTTCTGGTCCGCAGTGCTACATTGTCTGATACTTTCAGGTATACTTTTGCTTCATATACGTATATTTGATATGTGAGTTAGGTTACTAGAAAATTAGGTTACTTAGAGAGATTTTGAGTGAGACAGTTGCTTTTCTGGTCCCAAACTATTGTTTTACACGTGTTCCATGACTCCATGAAGCATTGTAGACTTGTAGACTTGTAGTGATTGATTGTTTGTCTCTTTGTATTCGGTGAAAGATGTCAAAACTTGTCAAATCTCATTTGGAAGTTCGAGATCATTGAAGGTGGCCTATATCCGTAGTTTTCAAATGATATCCTTAGTGTGCTCGAGCCTTTTTAAACAATCCAATGGGTTTAGAGCATGATCGCTTGGACATGGGATTCCTCTATACAGTACAAGTAAAAAGGTGATTGTTTTTGCCTGTTTGGAGTGGCGAAGGTTATATTGTATCTTGGACTCGTTCTAGTTCTATTGTTCTACTGTGTAAGTGTGTTTCTTTGTATGGACGTGAAGAGTAAAATGAAAGCAATGCAACAATAAGATTTGACAGCTAAAAGGTTTTGTGTATTAGAATCATAGCCTCATTACATTGCCCTAATTGCTTATATAGTGCAGCCTTGTGCACTCACCACCACACAATACTGATTGCCAATGATGGGTGACATCACATGCTATAATGTCACCATACTACAGCTTGTTTGTTACATATAAAAACAGTTAGATTGACAGCTAGAAATTAGGAAATTAGGAAACAGACGAAGTAAGAAAACGTAAAGAAACAGAAGATCGGCTACTGATGGGGTTGTTGTGATTGTGGGCTTCATTCTTCAACACTCCCCCTCAAGCTAGTAGTTGTGCTTGCAGGAACTGATAGCCTGGACATCAGTTGAGTATGTTTAGCTAGATCATGGCTAGGAATGTACTGAGGTTTGACAGTCCCATCGGTGACCTTATCCCCGATGAAATGGCAATCAATTTCCATGTGTTTAGTTCTCTCATGGTGTACTGGATTGACTTTGTTGTCGCATTTAAGGACTGCTGGTTGCAGTTTTTTCAAGTTTAGGTCTTTGAGCAGGTGATGTAACCAAGTTACTTCACAAATTGTTAGAGCCATTGTTCTATGTTCTCCCTCTGCAGTGTTTCTTGGATTTCCATGATATAGGTGATGAACCCAAGAGGATACTTAACATGTGACACCCAGCCAATCACTGTCACAGAATGCTGCTAGGACGGCAATAGAGTTGGATGCCAGTAGGATAACTTGCCCAACACTTCCTAATAGGTACCTCAAGACTCTTTTGGCAGGTTGCATATGAGATGTAGTTGGGTTGTGCATAAATTGACTTAGGGTATGCATACCGAAGTTAATATCTAGCCTAGTTATGGTTAGTGTATAAAAATGCGCAATAAGGCGATAGGGGTCCTGGTACCTAGGCGCTCGCCTCATCGACGTCAGGCACATTTTTTATGAAATAAACATTTCTTGACTCATATGCATACACATCTCACTAAAATAGACTATAAAAACACATAATTGTTCAACAGAAGATCTGCATTTCATTCATTTTACTATAAACAACATAAAACATCGTCTTTTATCATGCATTAGGAAAAAAAGATGCTACAAAATAAACAAAGCTAGCTTCATTGATCATATCAAAAGTTTATGGCTTGATTTGATTATATTATATCATCATCTTCGGCTATAAAAACATCACCCTCCAAATCATCTCCGTCAAGTGACTGATAGCCTTCGTCGTCGTATTCTTCCTCTTCTTGTCTTATGGCCTGCCTTTGTATAGTAACCTCACTTGTATTGCCATCACCTCCTCCAAGCCTATTTTCTCTTGATCTAAACTTAAATCTTTCTTCATGTACTCCAGAAGCTCTAGCAACTTGTCCTCATGTAAGACCCTCGTCCTCCTCAAATACCAAATCATCTTCAACATCTTCTGCTGTCCTCCCAGTCAACCATTCACTAGAGTCATTATCTTTCAAAGCTATTGGGTCAATTTTATCACGCAACTTGTATCGTTCAAGCAATGCCCGGTTATATTTGACAAACACCAAGGAGTTTAGTATGAGCCTATTCCTCTTCTTGGTGTGAATCTATGAGAATGATAAAACAAATTCAGTATATAAGTAAGAATTAATATAATTATAAAGCACTTAACTAGCTACAACACTACTTACATGCTCAAATGTACTCTAGTTTCTCTCACGTCCTGACGCGCTACATGTAAGGCTTAAAATCTTTATGGCAAACTGTTGTAAAGTAGGTGTTAAAGTACCATAATACGCCCACCATTCAGCTGCAAATAAATAAATTAGGTTGTAGTATTTGTAGTTAATGAATAAATTATTAGAGATTAGCAGATTTCAATAGAGGAAAATGTCAATTACCCGGCCTTGCTTTTCCCGTATCTAATAGCCATTGGATTACCAAACAAACCATGTGCTTCCTTGTAAGATGTAAGCTCTTGCATAATTTTATCTTGCTTTTCAAGGATCGGGACCAACCTTAGAACACATTCATACAATCCACTTACTAATTCTTCACATTCTTCAATTTGAGGATTGTCATAAAAAACTCAGGGTTCAAGAAGTGTCCAGCAGCATGTAAAGGGCGATGTAGTTGACACTCCCATCTCTTATCGATGATCTCAAATACTTGAGAGTACTTGGACTCATTACCATTGAATGATGTGGAAATAGCTTTTTTAGCACGGTCCATAGCCTCATATATATATCCCATGGCAGGTTTTCTCTCTCCATCAACCAACTTAGTGCACGAACTAGAGGACCACTTAATTTTAATGCATACACAGTTCCATTCCAAAAGGAAGCCATCAACATAATATCAACAACTCTTTTTCCCTCCAGGTTCCTTAGCCCATTTACTAGTTCTCCATTCTTGAGAGGTAAACATCTTTCTTAGGTTATCTTGCTGTTTGTGAATGGATGAAAGTGTGATAGAAGCAGTGGAGGCCTTAACAGATTTCTTTACTTAGTAAATTCCCTCATCATATTCAACAAGCCCGGGCATTGATAAATGAAGCTGTTAACTTGAACTGCTCTCTTCAAGACTTCATCAATGATGGGAATGTGACAGGCTAAAGTCGTATCACCTAATAAAAAATAACCTAAGTCCACTAGCTAGGTAGCAAGGGAAGTCAGGATCCAATCCACAGGGAAACAGGCGTTCTTTCTACTATCAATTAATTAAACTAGACTATTGGGAACAAGAGTTGGTTGGTGATTTGTATACTAAGGCTACGAACGATAATTAAACGAATATGAATCAATATATTAAGGAATCTAGGGCATAAGTTCACCAACAAATAACAACCCAGGACAACGAACAATCACGATAATCAACAAAGTAATTAATTAGACTAGCATGCTCTCTCGAATCGATACTAATCATAGACTTAGAATTAACGGGCTCTCGCTACGTATTAATCCTAATTCCACCTATTGACACAAGCCTAAACATCAAGTTGCATCTCTCGAATCTTAATTTGATATTGCATAACTACCACAATTAAACCTGCGCAAATCTAATTGTATAGTGAAATAAACCAATCAATAGTAATTAATTACAATGCCAACAATCACAATTATTCAATATCCCTTCATATTAATCATGGATCCCCAAACCCTAGAAATTAGACTACTCAAGCATATTAACAATAAACAAAGCAATTAGCATGATTGAAAACATAATTAAAGCAAAACAAAGGATTGAAATAAAGAACAATACCTAATTGAAGAACAATGGCAAAGGAAAGCTTGAATTTTGGATTGAAAATAAACTAAGTGTTTGGAACAAATTAGAGAGAAAAAACTAAGGTTAGGGAAATAAAACTAAGTGTTTAATACTAGAATGTGAGATAATAAGATGTCCAACTAAATTAACTAAGGGCTATATTTATAGTTCTGCCCAAAAAACCCAACAAAACTCGGAAATACTAAAGTAAACCGCGCGCAAAAAAGCCCCAGGGTTGTCGTCGCCCGGTCGGGCGGCCTTCCGCCCGACGGGCGGGAAGCTCAAAATCCGCCCGACGGGCGCAGGTCTGCCCGACGAGCGGAGGGAGAAACTTTGGAAAACATCGTCACGCGCCCGGTCGGGCGCCACTCGCCCGTCCGGCGGTTGGAGATTGCTCGCTGCTGCTGCTCTGCTGGGCGCCCGGTGGGCACCGGGTAGAAGTCCGCCCGTCGGGCGCCGGGCGACTGCTCGTTCCTTTGGCTTGCTCGCCCGGTGGGCGATGGGAGATCATCCGGGCGGAAGGCTAAATGTGTTCGCAACACCGAGTCTAACTTCTGGGGCTCAATCATGAACATCTCAGGCTCCCGTAAGTCGACAGTAATCGTTCCGAATCCCCTCGGGATCGAGTAGTGGCCTAAATCATCTTGAAACGGGTCTAAAAAGACCAATTTCTCACTTAGTAGTCCTGAAACCCAAGGCACACTCAAATACACAGATTAGTACTAAAAATGGCTCCTAAGAGCTCATTTAACACATAAAAAGTACTAAGGGACGGGGGTAGAATACTATATAAAACATGCATATCAGAATGCGTCCAATATCATCAAGTATAAGATCAATGCAGTGAGCAGCACATGGAGTCCAATAAATGCTTATACTTTGCCATCAATAGTGCACCGGCAGCCAAAATTGCTCCCATTGTCAAAAAAATTGCTCTCATTGTCAAATATAACTTGCACAACATTACTTTCTCCGACTTGCTCCACAACTTTGCTTAGCAGCATAAATAGCTTATCTCCTATCTTTGAATAGCTTGATGCATCAATAGACTCTAGGAACATGCTTCCTTTTGAACAATTAACAAGGAAATTAATGACCGTCCTTCCACACCTATCTGTCCAACCATCAGACTTCACTGAAAAACCTGTTTTGAACCATTCTTGTCTGTGACTTCTCATTTTCTCATTAGTGCTATCAACTTGTTTCAAGAATGGAACTCTTTCTTCATATGCACTTGGTGGCTTCATTCCAATTCCAGCTCTAGTTATGCAATCAATTGCAACTTCAAAGCTTGGATAACCGAGAGCATTGAAGGGTATTGCTGCATCATGCATCCATTTACTAAATTCAACACATGCCTTCTTCCTTTGTTCTTTCTTGTAGGATTCATTAAATTTTTTTGCTTGCCCGTTGTTTGTGTGTGGGGTACTTTACGAAAGCATCCATTGGTCCAACTTGTTTAGCTATTTTAATACTGCTTGTTGGGGAAGAATTCTGTTTTCTGTTCCCTGTTGGGTCAGTTCCCTATAGCATCTTATCTTCATCATCATAATCAGTCATATCATGCTCATGTGTCATATCTATTGTCTCTCGAGCATTCTTCTTTTGGGCCATGAACTCAGTGATCTCGTCTCTCACATGCTCAAGACACTTTCTACACTCTGTTATGTTATGATATCCACCGGCTAGATGTAGTTTGAGCCTGCTAATCCCACCTTTGGCTACTTTCCCACAATATTTGCATGTCACATCATTTTTGTTTTTTGGATCAGCTAAATACCCATGCTTCCAACCCAAATCAGTCTTTCTTCTAACATTGGCATCACTTTCCATGCTAGAAAATAAAGATTAGTAGGCATTAATTTATCGGCCATGTTTTGTTTTACCTGTTGCATAACAAGTGTAGTTACAAAAAGAATAATAAATGTAGATAAATGTTTTCACAAATGTGTTACTGTGTTAGTAGATGTGTTAAAAATGCTGAGATTATGAAATGATACAGTTGAAAGATTGATTATTAACTGTTGATTGGAAGATTATTTAATGATATTATTGAAATATAAAATAATCAATACATCCTTCTTTTTTGGTAGAACGTGACAAGTGAAAGGTAAAAATAACCAGTTTATTTTTTCCATAAAAAAAGATCTTTAAGAATCAAAAAGATAAATCTAATGAGAGAGAAAGAGAGGTAGAGATAAGATTTGATGATAGAGAAAAGAGGTAGAAGATAATTATAAGATCTGATGAGAGAGAAAGAGAGTGTACCTGGGCAACAACGTTTCTTCAAGGAGAGTTGATGATGATGATGCTACTAGGGACGGTTCTTCTTCTTTTTTTCTTTTCTTTTTGGACTCTTGGCCCACCATCTGTTGTTAAGGGAAGTGTATTGTGTGGTCCAGTGCATGATAAGGACTATCAAAAGTCCATCAAAAACAGAAAAAAGCAGAAAATACATTTTAAAACAAATTTGATTCAAGCGCACAAAGGCGTCGCCTTAGAGCCTTCTACGCCTTTTGCTCGCCTTATTCAAATCGCCTCGCCTATTATAACCTAGGCGAATCTGCTCTGTGCCTTGAGCCTTATCGCCTAAGCGCTCCTTTTTATACACTGGTTATGGTTAGGTATATCAGTTTACCAGTCAGCCTTTGGTAAACTGTGACATTCTGCAGATTTTCACCTAAATCATGAGTGAGCTTCACCATGGGGTCAATTGGGAGTTTCAGGGGCCTTGAGTTCTGCATTCCATATTTTTTGATCAAGTCTTAGTGCATATTTCTTCCATGACAAGAAGAAACGTTGAGCATTTCAATCAATTTCAATGCCTAGGAAGTTTCTGATTTCGCCTAGGTCTTTCATATGGAAGTTGGAAGAGAGGAACTCTTTTACTTCTCTTATCATTGTCTCATCATTTTCTTGCCACCATTAAGTCATCAACATAGACTAGTATTGCAATGAATCTCTTCCCCCTTACTAAAGTAAAAACTGAGTAATCTGTTTTTGACTGATTGAATTCAAATTGCTTCAAAGCACTTGACAGTTTTGCAAACCATTGAGCTTGCATACTTTTCTAGAGATGCTTCCACTTTCTTCTGCCCATAGCCTTGATAACTAGTACAATCTGTGGACTATGGACCGTGGTGCACATGACACTACGGCAAAAGAACATGCGATATAATTTTTCACTTTTTTGTTATAAAAATAATATATTAGTTTACTATTTATTAAAAACCTAAATGTAAAAAAATAATCATGTTCTTTTCTCGTAACTAGATGTTCTTTCAATTATATACTAGTGTTCTTAAGGTGCACCATGCTCTATGTGCACCATGCTCCACCTTCTAAATTGCATAACTAGTAGGAAGTGTCATATAGACATCTCCAATTGAGTCTCCATGGAAAAACACATTTTTTTACTTCCATTTGACTCACAAACCAGTCTTCCGTTGCTGCTATGGCCAACAAAGACCTCACAGTTGTCATTTTTGCAACAGGTGCAATCAGACCTGGTTATTGGACAGGGTAGTCCAATAGATATAGGGTTAGGGTCAAGTTAATAGGGCTTTTATTGGGCAGGGCTCTTATTAGACAGGGCCTTTATTGGACAGGGTCATTATAGGGTCAAACTTAAACTACAATTATTTTGAAAATTAAAATAGTAATGATACAAAAAATTACGTGTATAGCTTCGTATTTACTTGTACTTGCACATGACTCTTTTATTTTTCATTTTTCATTGCTCGTTTATTGACCAGCCTACTAATGACCCGCGACCTGCTTTTGACCCGTTCATTATCGACCCGCTAAAAATGACCCTTTCAATACCCGACCCTATTTTGACCCGCACCGACCCTGACCCGCCCCGCCCGATAACCAGGTCTAGGTGCAATCTTCATAATCTATGCCAAATTTCTGTCTGTATCCCAACACCACCAGTCTAGCTTTGTGTCTCTCAATAGTTCAACCTCGACGATACTTGGTTTTGTAGAGCCATTTGCACCCTATTGCCTTCTTGCCATGGCAGCTCATGTTGTTGCTTTCCAAGGCCCTTAACTCTTCACCCATGTTTGACTACTTTCCTGAAGTTGACGGGTCTTGAATAGGGCTGACTAAACTCAGGAACGCAACAAACTCTTTTTGCAATTCTGTGTACACCTGATTTTCATCCGGTGTTGGATTTGCGTTGTGTATAGCATCCGCATTATGCTGACATCCACTTAACCATCCAGTTAGTTGGTGGCGTTGTTCAGGTATAATAGAGATGAGGTTGCAGGTGGTGTTTGCACCCTAGGTTGAGTGTTTACCTTAGAGTTGGTTTCATTTTCCTCTTTCGAGTCTGTGTCTTGTAGAAATCATCGGTTTCTGACACTTGAGTTGTCATACTTATAGGCAAAGGTGACCGATAAGTTATGCTTGTATCAGGGTTGTTGAAAGGGAACACATGCTCATGAAATTTGACATCGCTTGACACAAAACTCTGCTTACTGCTTAGTGACTAGGTTGAGTAGCTTGTACCTTTTCTGTGCTAAGGGATAGCCCATGAATACACTGGAACACCTCTTGCTGAGAATTTATCCCTTTGAGTTGCAGGATTGTATGCAATTGCCAAGCATCCAAAAGTTCTCATGTGACTGTAGTTAGGTTTCTTCTCGTGTAGCTTCTCATAAGGTGATATATTTCCTATCACCGGGCTAGGTAATCTGTTGATGATGTGTGTTGCAGTGAGCACGCTATCACCCCAATATTTCAAGGTCAATCTAGCTTGAAATCTCAATGCTCTAGCCATTTCGAGCACATTTCTATGTTACCTCTCAACTCTGCCATTTTGTTGAGGCTTGTCCACACAAGAGGTTTGGTGTACAATACCTAATTCCCCAAAGTATCTTCTCTGCATATATCATCTTGAAACTCTAAGACATTTTCCGACCTTATAGTTTTTACACTTGCATGGTACTGTATTTTTTGCAAAGAGTATTCCTGATGGCTAAGTAGGCGTCAGATTTCAATCTCAAAAGATTTACCCAAGTTGACCTAAAGTAGTCATCGACAATTGTGAGGAAGTATTTATAATCTCCCTTGGAAATATGGAACATATCAAATCTCTTCTCTACACAAGACTTGCTTTGAGTGTAAGGTAACTTTGTAAACTTCGCCATAGGGCAAGTTAAGCATACAACCTCATCTTTCCCACTACCCTTGCTGGATATATACCCAGCAAGTCTGATTTTGGTTAGTGGTGCATGCCCTTACCTGTTTTATGCCAAAAAACATCCTCATTGATGCTCACTGCATTGCAACTCATTTTTTCCTGTACACATTCTTCTTTGGTTTGGTAATGCAAGCCTTTACCTGTCTTGCCTACACCGTTAAGGGGACGTTTGGTTGGGGGTCATTAGGAAAGGGAAAGAGAATCAATACCCCTCATTCTCTTTGTTGTTGTTTGTTTGTCCATTTCAATCATTCCCTTTACCCCTCTTATTCCCCCAATTTCCTCTACCATGATTCCCTATACCCTCAGGGAATCAAGCTTACCCCTAAACTCCTCTACACTCATCTTCCTTGACCAACCCTTTGACCAACTTATTACACCATAGCACCACCCGACTCTACCATTCCACCTACCAAGATCACCATATTGCCAGAATCCACCACCTCAATCACCGGGAAAACCAACACACCACCCAAAAAATTATCCAACGCCACAAAACCCACCCACAAACACGAAAAACTACCAACACGAGGATGTAGCCTTTAGGCGTTGTTGAGCCTGAGGTCGAGGGAGGAGCTGTTGAGGCGGAAGGGCGAGAGGAATTGGAGGTCGAGGGAGGAGCGAAGGAGGCGGAAGGAGGCGGGAATAATTGTAGGTGGAGGAAGTGTGAGGTGAGGATGGAATACGGTGGTTCTGGTTGTTGTATGAAGGAAGATGAGTCAGTATTTTTTCTTTGTTTCCCTTTCTGCCCAATAATGGGTAAACAAACATGTGAAATTTGGGTCTTTTTCATTCCTTTCCCCTTCTTTCCCTTTCTTGATTCCATTCCGTTTACCCTATGCGAACCAAACGCCCCCTAACTTTCTTTTTGTATCTATCACGGATTGTACATGAATTAGGCTGAAATACCACATCACAATTTTCATTTTGACTGAGTTTACTAACAGACATCAACTTGTGTTTAAACTCAAGTACATACAAGACAAGTTGTAATTCCTAGGTGTTGTTTACCCTAACACAATCTATATGGGACTCTGCAGCTGTTTTCCAATTAGGTAGGTTTATGCTAGGTTGGTTATATGCAACAATAGGGTTCATTAGGTGCTCAAAACATGCTATCATATTAGCGGATGCCCAGAGCCTATGATCCAAGCATCATTTTTTGAAACAACGTTGCAATATTAGATCATACCTGCAAAAGTGGGATCCAGTTCTTCTGTATCATATCCAGTGGATTTTGAGTTAGGGGGAAGCAATTTCAGCAGTGCTTGCACTTGACTGGTGGTGAGAGGTGCTACTTCCTCATTCTGAGCAGTAGCGACAAACTTTCTGCTCTGAGTTGTTCCTGGTTTGGCTTTACGCCATTTGCTCTCACCTTTTTGCATCTGTTTTTGTGTTGGGGATGCCATTTTGGGTACCCAATCACCCTCCAACACTTTTCTGCAGGGTGACCCCTTGATCCACAAGCCGTGCACAAAGCTCCCGCATTTCCCTCTTTGCTGTACATTGCTGATACTTTAGCTTCTTCTTTGTGAGGTTTTAGAATTTTCCTTTGAGCTTCTTCTTGCTGAAGAATTCCGCACACTGTCTCTACACTAGGTAGTGTAGTCCTCATCAATATTAGGCTTTTGATGGAGCTAAATTCCTCATCCAATCCATTCAAGAGTTGAAATAGGTGTTGTGCTTCTCTCAACTTGTTCAACGCCTTCAAGAATGCAGTGATTTCAGGTGAAGACTGGGTGATTGTTGGTAATACACTGAGTGCATCTATTTCTTGCCATAAGACTTGCATTTCAGTGTAGTAATCACTTACATACTTCGCTTTCTGCTTGAGACCATAAACTTCTCTATTCAATTTGTATTTCCTTGAGCCACTAGACTGAGAAAATCTAGTCATAAGTTGTTTCCAAATCTCAGCTGAATTTGTTATGAACAAGATTGACTTTTAATGCTAGCCATTATCCAAGATTGCACCACACTGTTGCAGCAGGTTTGGTTACATCAGTTGTATCTTTTTCAAGGGTGCCATTCACAAACCCTTGCTTTCTCTTTGAGGAGAGTATGATCTCCATGGAACGCCTCCACTCTAAAAACTCCAAGAGAAAGGATGAATCTTTTACAATCAGTTAATCACAAGATTGAATCTTGATGATTTCAGCTAGTGAAATCAATGTCAGTGTGTTTAGTCTGGAGCTCTGATTCCATATTAGAGGGCCAACTCAACCAAAAGTTTAAGGCGATGGTTGAAGCCCCAAAATTAGTTTTGTACTCTATCACTCCCCCTCACATGAAAGCCTTTTGGGTTTTGAAGTGTTGATGCAGCATAGGCCTCCTCATACCCAACACTAAATATTCCACTTTGAAACGAGGGGTGGATGAGATTTGAACCCGTGACCTTTGTTTAACACTGACTCTGGTACCATGAAGAGTAAAATGAATGCAATGCAACAATAAGATTTGACGTCTAAAATGTTCTGTTTATTAGAATCATTTCTTCATTACATTGCCTTAATTGCTTATATAGTGCAGCCTTGTGCACTCACCATCACACAATACCGAGAGGCAATGATGGGTGACATCACATGCTATGATGTCACCATACTACAGCTTATTTGTTACACATAAAAACAGCTAGATTGACAGCTATAAATTAGGAAACAGACAAAGTACGAAAACGTAAAGAAACAAAAGATCTGCTATTGATGGGCTTCATTCTTCAACAGGACGGTATGCTATTTGTATCGACAATTTCTTTTCTGAGAGGGTGGGATATGATTCACATGAGAATTTATCTATTTTTGCTTGTTTCTTTTTCTTTTTTTATTTGCCAAAAATGGAGGTTATGCTGACAATATTTAGTTACAGTTAAAGTTAAAGCTAGAACTTCTATTTGCTGCTTTTCTTTCTTCTCTTACAAGTTACATCTACTCAATAAATTCATAAATTTTATGTTAACTTTGATGATGATTGCCACCTTAGTTTCTTTATACTAAATTTCAGCACCATTGCAGTGAAACCTCCACATTGGCCGACATAGATTGGGACAACCTTGGATTTGGATTTTTGCCTACTGATTACATGTATGTTATGAAATGTGCTCGAGGTGAAAGCTTCTCCGGAGGTGAATTAAGGCGATATGGAAACATTGAAATGAGCCCTGCTGCTGGGATCTTAAATTATGGTCAGGTTGGTCACTTAATCTTACACCATCTCAAACAATGTTACCTGTCTTTACAAGAGTAAGGTTGTGTGTATTATACTGTTATTTCATTTTTAGATCTTCCTTCTTTCCTTCCATGTTACACCAAGAATTTTGTAGTTCTGTCTCCAATTCTTGTCCCAAACATTTGATGATAGATTCTTATCGACTCGAGCCATTTTCAATGTTGTGATTTTTTTAGTGATATAGGGATTCTTCTTCCTATGATGGTGGTAATTTTGCTATGAGATTATCATATGTTCAGGGCTGCAGATGCAATTTGCAAGGGAGAAACAAGTAA TCCTTGTAGAATCAAAATAAATCAATAATAAGATTATCATTTTAAAATTAACTCAAAGTTGATGTGGTTTGACCACAAAAGTCGAACATAGGTAAGCAAGAACAAGGGGTTTAGCTTCAGTTTAGGCCAAAGGTAGTTACGCCACTTTATAAGGTCAAAAAAGGGACGCCGCACCGGAGTCGGAGAGCCACCCTAAAAAGTCAGTGTTAAGAGAGAGAAAATGGAGAGCATCGGCGCCACCGCCCTAAGGCAAACTACCTTTCTCTCTCCTCTCCCGTCGCCGCCGCTGCCTTCTAACGACGTTTCCAGTCTCTCTCATTTCTCCCCGTTTCTCTTCTCCAGTAGGAAACACTCCGCTGCTTTATCTCTCAAGCTTCAGAAGCAATTACGAATCGGCGATAACAATGTCCGAGCTACTAATTGGGCGAAATGCAGTGCTACATTGTCCGATACTTCCAGTGAAACCTCCACATTGGCCGACATAGATTGGGACAACCTTGGATTTGGATTTTTGCCTACTGATTACATGTATGTTATGAAATGTGCTCGAGGTGAAAGCTTCTCCGGAGGTGAATTAAGGCGATATGGAAACATTGAAATGAGCCCTGCTGCTGGGATCTTAAATTATGGTCAGGGCTGCAGATGCAATTTGCAAGGGAGAAACAAGTAA ATGGAGAGCATCGGCGCCACCGCCCTAAGGCAAACTACCTTTCTCTCTCCTCTCCCGTCGCCGCCGCTGCCTTCTAACGACGTTTCCAGTCTCTCTCATTTCTCCCCGTTTCTCTTCTCCAGTAGGAAACACTCCGCTGCTTTATCTCTCAAGCTTCAGAAGCAATTACGAATCGGCGATAACAATGTCCGAGCTACTAATTGGGCGAAATGCAGTGCTACATTGTCCGATACTTCCAGTGAAACCTCCACATTGGCCGACATAGATTGGGACAACCTTGGATTTGGATTTTTGCCTACTGATTACATGTATGTTATGAAATGTGCTCGAGGTGAAAGCTTCTCCGGAGGTGAATTAAGGCGATATGGAAACATTGAAATGAGCCCTGCTGCTGGGATCTTAAATTATGGTCAGGGCTGCAGATGCAATTTGCAAGGGAGAAACAAGTAA MESIGATALRQTTFLSPLPSPPLPSNDVSSLSHFSPFLFSSRKHSAALSLKLQKQLRIGDNNVRATNWAKCSATLSDTSSETSTLADIDWDNLGFGFLPTDYMYVMKCARGESFSGGELRRYGNIEMSPAAGILNYGQGCRCNLQGRNK Relationships
The following mRNA feature(s) are a part of this gene:
Homology
BLAST of Spo09259.1 vs. NCBI nr
Match: gi|731339333|ref|XP_010680793.1| (PREDICTED: branched-chain-amino-acid aminotransferase 5, chloroplastic-like [Beta vulgaris subsp. vulgaris]) HSP 1 Score: 189.9 bits (481), Expect = 3.200e-45 Identity = 98/134 (73.13%), Postives = 108/134 (80.60%), Query Frame = 1
BLAST of Spo09259.1 vs. NCBI nr
Match: gi|902233355|gb|KNA23014.1| (hypothetical protein SOVF_028710 [Spinacia oleracea]) HSP 1 Score: 154.5 bits (389), Expect = 1.500e-34 Identity = 80/82 (97.56%), Postives = 80/82 (97.56%), Query Frame = 1
BLAST of Spo09259.1 vs. NCBI nr
Match: gi|658051323|ref|XP_008361390.1| (PREDICTED: branched-chain-amino-acid aminotransferase 5, chloroplastic-like isoform X2 [Malus domestica]) HSP 1 Score: 137.1 bits (344), Expect = 2.500e-29 Identity = 74/117 (63.25%), Postives = 87/117 (74.36%), Query Frame = 1
BLAST of Spo09259.1 vs. NCBI nr
Match: gi|658033954|ref|XP_008352497.1| (PREDICTED: branched-chain-amino-acid aminotransferase 5, chloroplastic-like [Malus domestica]) HSP 1 Score: 137.1 bits (344), Expect = 2.500e-29 Identity = 74/117 (63.25%), Postives = 87/117 (74.36%), Query Frame = 1
BLAST of Spo09259.1 vs. NCBI nr
Match: gi|658051321|ref|XP_008361389.1| (PREDICTED: branched-chain-amino-acid aminotransferase 3, chloroplastic-like isoform X1 [Malus domestica]) HSP 1 Score: 134.8 bits (338), Expect = 1.200e-28 Identity = 75/118 (63.56%), Postives = 88/118 (74.58%), Query Frame = 1
BLAST of Spo09259.1 vs. UniProtKB/TrEMBL
Match: A0A0J8CAL5_BETVU (Branched-chain-amino-acid aminotransferase OS=Beta vulgaris subsp. vulgaris GN=BVRB_6g137390 PE=3 SV=1) HSP 1 Score: 189.9 bits (481), Expect = 2.200e-45 Identity = 98/134 (73.13%), Postives = 108/134 (80.60%), Query Frame = 1
BLAST of Spo09259.1 vs. UniProtKB/TrEMBL
Match: A0A0K9RVR0_SPIOL (Uncharacterized protein OS=Spinacia oleracea GN=SOVF_028710 PE=4 SV=1) HSP 1 Score: 154.5 bits (389), Expect = 1.000e-34 Identity = 80/82 (97.56%), Postives = 80/82 (97.56%), Query Frame = 1
BLAST of Spo09259.1 vs. UniProtKB/TrEMBL
Match: G5DWR0_SILLA (Branched-chain-amino-acid aminotransferase (Fragment) OS=Silene latifolia PE=2 SV=1) HSP 1 Score: 138.3 bits (347), Expect = 7.800e-30 Identity = 64/71 (90.14%), Postives = 67/71 (94.37%), Query Frame = 1
BLAST of Spo09259.1 vs. UniProtKB/TrEMBL
Match: G5DWR1_SILLA (Branched-chain-amino-acid aminotransferase (Fragment) OS=Silene latifolia PE=2 SV=1) HSP 1 Score: 137.9 bits (346), Expect = 1.000e-29 Identity = 64/71 (90.14%), Postives = 66/71 (92.96%), Query Frame = 1
BLAST of Spo09259.1 vs. UniProtKB/TrEMBL
Match: F6HJR6_VITVI (Putative uncharacterized protein (Fragment) OS=Vitis vinifera GN=VIT_00s0558g00010 PE=4 SV=1) HSP 1 Score: 130.2 bits (326), Expect = 2.100e-27 Identity = 67/114 (58.77%), Postives = 84/114 (73.68%), Query Frame = 1
BLAST of Spo09259.1 vs. ExPASy Swiss-Prot
Match: BCAT3_ARATH (Branched-chain-amino-acid aminotransferase 3, chloroplastic OS=Arabidopsis thaliana GN=BCAT3 PE=1 SV=1) HSP 1 Score: 97.8 bits (242), Expect = 1.000e-19 Identity = 55/110 (50.00%), Postives = 70/110 (63.64%), Query Frame = 1
BLAST of Spo09259.1 vs. ExPASy Swiss-Prot
Match: BCAT5_ARATH (Branched-chain-amino-acid aminotransferase 5, chloroplastic OS=Arabidopsis thaliana GN=BCAT5 PE=1 SV=1) HSP 1 Score: 90.1 bits (222), Expect = 2.200e-17 Identity = 40/70 (57.14%), Postives = 52/70 (74.29%), Query Frame = 1
BLAST of Spo09259.1 vs. ExPASy Swiss-Prot
Match: BCAT2_ARATH (Branched-chain-amino-acid aminotransferase 2, chloroplastic OS=Arabidopsis thaliana GN=BCAT2 PE=1 SV=1) HSP 1 Score: 88.2 bits (217), Expect = 8.300e-17 Identity = 36/53 (67.92%), Postives = 44/53 (83.02%), Query Frame = 1
BLAST of Spo09259.1 vs. ExPASy Swiss-Prot
Match: BCAT7_ARATH (Putative branched-chain-amino-acid aminotransferase 7 OS=Arabidopsis thaliana GN=BCAT7 PE=5 SV=1) HSP 1 Score: 85.9 bits (211), Expect = 4.100e-16 Identity = 38/62 (61.29%), Postives = 45/62 (72.58%), Query Frame = 1
BLAST of Spo09259.1 vs. ExPASy Swiss-Prot
Match: BCAT1_ARATH (Branched-chain-amino-acid aminotransferase 1, mitochondrial OS=Arabidopsis thaliana GN=BCAT1 PE=1 SV=2) HSP 1 Score: 80.9 bits (198), Expect = 1.300e-14 Identity = 36/65 (55.38%), Postives = 44/65 (67.69%), Query Frame = 1
BLAST of Spo09259.1 vs. TAIR (Arabidopsis)
Match: AT3G49680.1 (branched-chain aminotransferase 3) HSP 1 Score: 97.8 bits (242), Expect = 5.900e-21 Identity = 55/110 (50.00%), Postives = 70/110 (63.64%), Query Frame = 1
BLAST of Spo09259.1 vs. TAIR (Arabidopsis)
Match: AT1G10070.1 (branched-chain amino acid transaminase 2) HSP 1 Score: 88.2 bits (217), Expect = 4.700e-18 Identity = 36/53 (67.92%), Postives = 44/53 (83.02%), Query Frame = 1
BLAST of Spo09259.1 vs. TAIR (Arabidopsis)
Match: AT1G50090.1 (D-aminoacid aminotransferase-like PLP-dependent enzymes superfamily protein) HSP 1 Score: 85.9 bits (211), Expect = 2.300e-17 Identity = 38/62 (61.29%), Postives = 45/62 (72.58%), Query Frame = 1
BLAST of Spo09259.1 vs. TAIR (Arabidopsis)
Match: AT1G10060.2 (branched-chain amino acid transaminase 1) HSP 1 Score: 80.9 bits (198), Expect = 7.400e-16 Identity = 36/65 (55.38%), Postives = 44/65 (67.69%), Query Frame = 1
BLAST of Spo09259.1 vs. TAIR (Arabidopsis)
Match: AT1G50110.1 (D-aminoacid aminotransferase-like PLP-dependent enzymes superfamily protein) HSP 1 Score: 77.0 bits (188), Expect = 1.100e-14 Identity = 35/71 (49.30%), Postives = 46/71 (64.79%), Query Frame = 1
The following BLAST results are available for this feature:
BLAST of Spo09259.1 vs. NCBI nr
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. NCBI nr) Total hits: 5
BLAST of Spo09259.1 vs. UniProtKB/TrEMBL
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. UniprotKB/TrEMBL) Total hits: 5
BLAST of Spo09259.1 vs. ExPASy Swiss-Prot
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. ExPASy SwissProt) Total hits: 5
BLAST of Spo09259.1 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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