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.CAGATACCGATAGTACTCGGCTCAGGTGGTGCACCCCTGCTAATTTTTCGTTAGTTTGGTCCAACCACTGAAGAACAAACAAACCATTGAAGCAGCAAAAGCTCAGCCCCATTTGCTCTCACAGTCTCTCTCTCCGAATCTCCGGTCGCATTGGCGATGGAAGACATCGAAGATTTATTGGCAGGAGATGGTGGCGTTGCACCTGGGTTTCGATTGCCCGTTACTTCTGTTGGGTTAAACCCTAAGAAAAAACCCATGAAATCTAACCTTTCTGTAGTTCAACACCCACTTCAATCCATCAGAATTCCCGGCACCCAGGTCTTTCTCTCTCTCTCATAATCTTTCTTTCCTGTAAATTTCTTAGCTTGTCGTATAATTGCAGAAATTCACTATTGTGTAAATTCTGTTGTTTTTGCAGACAATTTATATTAAAACTTTTGGGTGCTCTCATAATCAGGTCAGTATTACAATTGGATTTCTCAGTTTGTTCCTTGTTTCTATGTTGCAACGGTTGGAGTTTATGGGAAGCTGTAGGTGTTGGATATATTGGTGTTTGTTAATAGTTATTTTGATTTTGACTGTTCTTAATTAATGCTTGCTATAAGTGAACTTGGTTTATGCTTCTATATACGAGTATATGTTAAGAGTATGTGGGAATTGCTTTCAGAGCTCGAATGTGAATTCAATGTGCTTTGTTTCGATTATGTTGAGGGTTGGCTGAATGGGGCTGTGGTCAGACATTTTCGAAAGTACTTTCATGTATCTGGTGGTGGGTGTAGCAGTGATTATCCATTTGTTGGTCATTAACAGGAATGCTTTGCAAAGTCCATAGCTTGGGGGTATGTATGATTTAGTTCATGTGTTTGTGAAAAAGTACTAGGCTGGTTGGAGCGTGGAATTTTGGAACACCTTATTCATTTCTCTACTGTGATATTCGTGAGTGACATTTCTATTTTTAGAAGTTTTCGGTGCTTTTGGTGTTTACATATGCACGAGATTGCGTTCAGCTTACAGCATTTCCACCATGTCTTTGACCAATAATATTGTGTAGGCAAACCCAAAAATCACTACCTATACCAACAATTCTTTTGGAGTTGAAATGTGTTTGGATTTTCCCTTTCTAAGGGGATGTAGAATTTGTTTATTCAAAAAAGAAACTTAACATGCCTTCTTACCAGAAGACCAAATATGTTTTGATCTATTAAAATCAAATCAATAATCTAGGTAAGGGCTTTGACCTTGAGGAACATATAGGAGAAAGCTAAGTAACTAAAGATTAATGATGGAGGCACAAATGTCCATGGGCTTGTTCTTTTCACCTTAACCAAAGCAATAATAGTATCAGAAAGATTAATTTCAGATAAAGGCTACCAAACTCATTACAAAATCAGAATTAAGTTTTTGGTTGGTTCAGATTAGGAAATTTGGGGAGAAAAGAATGAAATCGAATAGTACTTGACTCTTTCCAATGTACAGAGTTTGAGCCTTCCACCTCTTTGTCACAAAAACTTGTGGTAAATTTGAAGTTCTGACCTGTTGGATCTCAATTACTGACTAAAAAACAGATATAAGAGTGCCTTTTCATTCTTAGACCTGAAAGATTGAAATTATGAGGAAGCCTACTAGCCTAGTAACCAAGTGCGCCTTCAGTTTCTTATAATTCTTACATAAATGATGTCTGTAGCGCATCAGTCTACTGAGTATGAAATACTTTAGCTTCAGATTGTAAGACTATCACGATTCATGTATATCAATCTCCATTAAAGGCATACAGAGTTCCAGACAGTAAGTTCAAGACCATAGCTTGATGAGTGATGACTATGGAAAATACCATAGCCATCCTCTTCTAGAGTTTCTTTTAGGTAGCAATTCACCACGAGTCCATGGCCCAAACCATTCCTCATCTTAGGTCTGCATAGTACCCCAGCCATTCTCAAGCTGAAGTTCTTGTTTGGCGTTGGCATTAGCGACACGAAAAACACTACTATCAAGAAGAAATAAATTCTTTTACTTTTAATATCGTGAGTTAAAATGGATGTATGATAGTTTCAGATATCCTTAGACAACATGCGGTGGCATCTGTTTTTCTGTACGATGACAAAGTTCTGTAGATGTAGAACAAAACAATGTAATTTTCCCTTAGTTCAACCTTCATTTTCCCTTCTTATGTGTGATGTGTTGAGGATGTCTTGCAAAGTTTTGTGCCTGATCAAATGAGTAGGAGTATGTGTTCTTAGTACGAAGTTACTGTTTTTACTTTACCAGGATACAGGTTTCATCATGCTCAAAGACTGATATGATATCCTTGAGTTACTCGAACTTGCTACTGTAGTTTCTGCATCTTACTATTGCTTATAGGCATATCTTGATGTATCAGAGTGACAGTGAGTACATGGCTGGGCAGCTGTCAGCCTATGGATATACCTTAACTGACTTTCCCGAGGAGGCAGACTTGTGGCTGATAAATACGTGAGGATATCTTCTAACTCGTTTTCATATAATTTTGATTATTAGGGGCTTCTTTCTCTTGATTATAAAGTCCAATAATATTTTGTAACTTTTGATTTATTTCAGGTGCACTGTCAAAGCACCTAGTCAATCTGCCATGGATACTCTCATTTCAAAAGGTAAAGGTGCGAACAAACCCCTGGTCGTGGCAGGGTGTGTCCCGCAAGGAAGTCGGAACATAAAAGAGCTTGAAGGAGTTAGTATAGTTGGTGTGCAGCAAATTGATCGTGTCGTAGAAGTTGTAGAAGAGACCTTGAAAGGCCACGAGGTGCGGCTTTTAAATAGGAAAACATTGCCTGCTCTTGATCTCCCAAAGGTAATGGCCTGATTGTTTTCTGCGGCTCAGTAGTCAGTAGTAGAACTGAGTTCTGTGTCTGCTTACACCAAACCAATTGAGCTAAAATGAGAATTATTACCCTTTGAGCAACTGAAAAAGGTTTGCTATAACGTTTTATACAGGTGAGGAAGAACAAGTTTGTTGAGATTCTTCCTATTAACGTTGGTTGTTTAGGTGCTTGTACTTATTGCAAGACAAAGCATGCACGTGGTCATTTAGGAAGCTATACAGTGGACAGCCTTGTAAGTACCTTAGACTATTTGACATAGCTGCTTGATTTGACGTTGGTCATTGTCCCGAGGTCTGATGTTTTGTGATGCTTCAGGTTCAGCGTGTGAAAACTGTCATAGCAGATGGAGTTAGGGAGATATGGTTGAGCAGTGAAGATACTGGAGCATATGGTACTTATTGATATCTTTTTCTTGATGTAATCTAAATTATGAAAGAGTAGGACCAGGACTACTTACCTTTACAATAATTCCTCAATTTGTCAGGTTTTGTAACTTGATATTGTGCTATAGCTTTAACATTGGAACTTTTCAGGCCGTGATGTTGGAGTTAATCTTCCTATTCTTTTGAACGCGATGATTGCGGAGCTCCCCTCCACTGGAAGTACAATGCTTCGTGTTGGGATGACTAATCCCCCTTATATACTTGAACACCTGAAAGAAATAGCTGAAGTATTGTGCCATCCTTCTGTGTACTCCTTTCTTCACGTTCCTGTTCAATCTGGGAGCAATGCTGTCTTAACTGTATGTGGAAGCATTTCTTGTTAGGCTCCTTTTCCTTTTGTTGAGTTAAATTATCCTTTTATATTGCCAGTATCTTCTTTTATTTATCTGTAAAAGTAGATAACAGCAAAGGTCTGAGTTTTGCGTGCTCTAATATACTGATTGCTGATTTCTTTAAAAAAATATATAATTTGGTTCATGACATTGTTTCAGGGCATGAAACGTGAATACACTGTAGAAGAGTTCAGGATTGTGGTGGATACGTTGACCAAACTGGTACCTGGGATGCAGATTGCAACAGATATAATATGTGGTTTTCCTGGTAACTATGAGATTTCTTCTATGCCTACCTTTTATGCACCCTTTTTTCTCAGGGGGTGATGTGAATGCAATGCAATTGTAGTAGTTGTACCGGGAAGTCTGTTGTCTTTTGTGATGACATTGTCATGTTCTAATATTTGCAAAGTACATTTTATGTTAATTTGTGGGGACTTGAAGATGCACACTTTTTCATTATTTGGGGTGGAGACCAAGGGAAAGAATTGTCTAGACTACTTGTGATCTCTTGTAATTGAAACGTAAGGTATGTCAGGGCTTGCAGTACATCTAGTACTTAGGTACACATCCGTTGCATTCTGGTATGATGGAATTCATGATCATCCCATACAAACTTTTTTGTGGTTTCCGTTACCTAAAATTTGGTGATTTTTTTCCTCTCCAGGTGAAACTGATGACGATTTTTCTCAGACTGTTGAGCTTATCAAGGAGTATAAATTCGCTCAAGTTCATATTTCACAATTCTATCCTCGGCCTGGTATGCTGGTCTTGACTTCTGTGCATTTTCAATTTATAAACACAGTCTCTCACCATGCTATTGTGAATTTGTGCATGTTCTATGTTAGCCCATCTGAGCATGTGTATTTCTCAGGACTGAGTGTCTCTTGTAGGATAGTCGAGCTCCCTCATACATGAATCTATAAAACTTGGTTAAGTATGAGAAAGTAGGGCTTAAACCAAAAGAGTCCTAATTCGTAGAAAGTGTAGCTAATGAAGTATGGTATCTACTAGGTTGTCCTAATTCTTCAACTTCTGAACGGTCCTTATGTGCTCAAGTTTCTTGAGGTTTAAGGAACGCTGAAGGCTTTCCATAATGTTAATATAGGGGACCAATGTTTAATCTTCCATGGAATTCTGGGGGTAGTTTGCGTGAGCAACACTGGAAGGTACTTTGATGCAAACTTGGGTGAATTTTTGGTGAAATGGATCTATCGAGCCCGTAAAGGAAGTTTTATAGTTTTCATTTGATGGATGATTCTGAGAAAATACTTAAAAACATAGGTTTTGGGTGCAGGCAGGGACCGTGAAACTCAAGGCAGCATTATGGGAAGTGCTTGAATGCAGTTACAACCTCATCATAAAAGATAACTACTAATGCTCGATAGGTGGTCAAATCTTGAGCGCTCTTTAGGAAATGTGATAATGTAAGTGACATGGTGATACAGATGACTGTATGAGAATGTAGGAAAACAACCAAGATAATTAAGCACTAAAGCTTAATTAAAATAGAAATCTATGTTGGCTTTTAGATTAATTAGCTAGTATTCATTTGCCTAAAAGCAATCAATCTTAGAAGGTTGCACTTGGTTTAGACTCCACTCATTTAAACCTGTTTTTTTTTTTAGTTTGCTTCACTGACTAATTACAGGAAGTATCATGTATGTTATTGCTCAAATCTCTGAAATAACCTTGTGCAAGGCTTGCCTTATGTGGGTTTTATTTTTGTCTCAATTATCCGGAAAAAGAACCAAAAAATAAGACTCCAATCTTATGCAAGTATAAAATAAAATTATAACAATCCTAAGTTCCCTTGAATTGGGCTTCCATTAAACTAGAAGAATCTTGAAAATCATGGTCCCAAATAGGCTAGAAACAATACCAAAATCAAAGTTGGCACAACAGCTAGATAAAAATGTGTGACATGGCAGGAATATAGTAACTCTGATCTTTATCTATTACCTCCGTTTTCCTGATCTTTATCAACTTCCTGCGTTTTTCTCACCCAATCATTGTAGCAAGAAAAACCGGGGAGAACTCAAGTTTTATTTTTTCTTTTGGGAGGAGAGATAGAGAGTAAGGTTGCGTACACCCGACCCCCCCTTACCCCGCTTCTTGCGGGAGCCTCTTTGAGGCAATGGGGTAATGATAATGATAATGATGAAGGAAAGATAGAGAGTAAGAGAATCATTAGATATATTTGGGTTTCATAAATTGGGGGGAAGATGATGAAATATGAATAAAAGGTTGACATAAAATAAATAAAGTAAATTTAGAAAAACAGATGATAACGGAAAATGAGTAGTGAAGCATATGTTTTCAAAGAACTATCCCGGATAAGCTTATCTAGGACAATTACTTGCTTAACTGAAATCAAATCCTAATTGAAAACAACATATGGTTCTCACACTTCAATTCCAGGTAAAAATACAAGCACAAGTGAAAAGGTAAAGGGAACTTGTTGTCTTCATCTAAAAGTTTTCCTATTAAAGGGGATTATGGATTGAGAGTTTGGAAGAGTTAATTGCTTTGTGTGACCACTTGACTGTTCAGTTAATAAGGGATGTAAAGGATTTCAGGGTATAGATTGGGGATCCAACAGGAGGTGTTTGCTTGACTATATACCCAGCCTTCCCATAGAAAATTTTACCCGGTGGGCAAAAACTCCTCTAAAGGTTAGAAATTTCGCATTAACGCTAGCTTTGGGAAGAGTTAACTCGAATGATATGCTCCAGAAGCAGAGGCCAGGAAGGCCAATCTCACCTGATATTTGTTTGCTCTGTCGAGCTAATAGTGAGTCCACTTCCTATATTTTCCTTCATTGTGATTTGGCATGTTATCTATGGAGAATACTTTTTGCAGTGGAGAGAACAGTGGGCTTGTCCTTTGAATATAATTGATTGGTTACAAATTCAATTTGTGGTTTTGGAAAGGCGAAGGAGAAAAAGGAACTATGGCGAAATGCTGCATTCGCAATCCTTTGGACAATTTGGGTGGAACGGAATGCTCGGATTTTTAAAGGAGTATTTGTTTCACGTGATTTACTATGGGATAAAATATCTTTGTTGGCATCCTTGTGGACTAAGTAACTAGGGCAGTTGGGATATTAAAAAATTTCCCGATTGGGGAGTTACCACAGACTAGGCTAATTTGTAATTATATTCTTTTGTTTCCTTATGAGGACACCTTGTCCTCATGCTTCACTTCTTTCTTTTTCTAATAAAACTTTTCCTATAAAAAAAAAAAGAATGAGACAAGCTTAAATGGAATTCCAACTGGTGCCTCAGAGTCCAAGCAAGAGGTTATAATTCAAGCCACCTGATCATAAAAGGATTGAGAAAATATATCTTTTAGGAAAGCTTATGGGCTGGGTGTCATGCCCAAAACTTATGGTATAATTCACGTTTGAATTTTTTGAAATAGGAACCCATTAAATGCTAAAATAATTGCTATAAACTCATTGCAGTTGACTGTTTTTTAGTTTATTAATATTTTGTCTATAAAATGATATTGGATGCGCTAAACATTTCATCCGAGATGTGACAACCACCAGTTAACATTGCACCCACCATTGTGACATTTTTTTGTTTACTTTACTTGGTCTGATTTAGATCCATGTCATTCAGAATACTATCATTACATATTCGTCTTTTGTTGAAGTGATAGCAGCACATTGAACAGAGTCTTCCACTGTGTTTTACTCTACCAGTATAAGTATGAATGTAAAATTTCCATCTCGAAAAGCTGAACTTCTGTTTGTAGTAGATTGAAATTGTTTTTTCTGACCAAGCTTCATAGACATCGTGGAGCCACTTAATCAAGCTTTAGTAGAATTTGGATCACAACCCCTTTTCTCCCATTTCAAGTCTTTTTGAAGTCATATTTTGCCAGTTAAACGCATTTTGGACGTATATTCTTAAATAGTTAATAGCTGCAACTACTGAGGAAGTGTTTTGGAGATTTGATCTTATTGACATGAGTAAAATATATAATAAATATTCTATTTAGATGATGTGGGGTTTTCAACTAGGCTAATTAGAGCAGGTTGATGATCTGTATTTATGCTGCTTTGGTTAATAAGAATTCTGTATGGGAAATTTTGTGTACTTTTTGGTTACTGGGCCCCCCCGAAAAGGCCATGTCCTAGTTTGTGGACGAATTTGAGTAGGACCTGTGGACTGTGGAGCACCCAAATTGAAGGTTTTGACTCATTATTTTTCCTTTATGTGTGTTTTTCATTGATTCTCTTTAAAGGGTCCTGATGATGTACTCTTTTCTGTATTCTAATTAAACATTTATTCATATGTGATAAAGAAAATAGCGTTCTGAACTTCTGATAATTGAACTGGGATTCGTGAAATTTTTGAATCCCGGATTTAAGATTCTCCTTATAAGCACCGAGGGATGGGTGAATGCCTGAATGGTATATAGGACTGCAGAGTGTCTCTTAAGACTAGAATTTTGGGGAAATTAATCCAAGACATGGACATTAGAGGGAACTTGGAGAATATTCTTAGGGAGAAATGTTGGTGTGAAGGGTTGTGTCAACCCCAAGATTCAAGGTCTACGTAAAGAGTTATGGGCCCAAATAACGGAAATCCAAGGGGCCCTATGAGCGCCTGTATCATATTGTATAACACCCGGTGAAGTATCTGGCTTGCATAAAACATTTTAATGTATGGGATGATTTTGAGAGGCCTAGGCATTTTGATAAAAGATGTAGTGGCTGTAACAGTAAACTGTTGTGCATATTTTACTGGCGTTTAATTATTGTGCCTGCACTTTGAATTAAACATGCTACGACTATGTATGTGACTTGTTAGAAATAATTTATGTTAAGCCTTCCAACGTATTTTGGTGTTACTGAAAATGAACATTTACTTTTTGCATGGAATCTCTATATTAATTTCCAAATCGGAAGCCAGTGTAGAATGATTTTGTCTTCCATGACAAACGACTCACTTGTATGTTGCAAAGGCCATTAGGATTTAGGACCATGGTTACTTGTCCTTATGCCTCTTTTTCCTTCGTAATCTATGAATTCAGGTACTCCTGCTGCAAGGATGAAGAAGGTTCCAAGTGCTATCGTAAAGAAGCGAAGCCGTGAATTAACTGCTGTTTTTGAATCCTTCACCCCATATAATGGAATGGAAGGGCTAGTTGAGAGGATATGGATAACAGATATTGCTGCTGATGGAACTCACTTGGTAAGATGGCAGCAAGGTTTTTGCTTATTTTTCTGTTTTATTACCTATGTTGCTTTGCTGACTGGAACTAGAAGCTGCATTCCTCTTGTCAAAAAAAAAAAAAAACTAGAAGCTGCATTAAGTTTGACCCTTGACTTTCTTGCATCTACTGTAATTGGTAGTTCACTAGTTATTATTTCTCCAAGTGTTGTTGATTATGTTAGTGTTGACTATTGAGTTTTAACTGTAAAGCTTTTTATCTGGTAATTGCTTAGTGTTTACCGCGAATATCTTCATTTAATTTGAGACTTTCCTTTCTTAGGTGGGACACACCAAAGGATACATACAGGTATTGGTCAATGCTCCAGAAAGCCTTCTGGGTTCATCAGCTACTGTAAGGATCACTTCTGTTGGAAGATGGTCAGTTTTCGGTGAAGTGATCCAGGTTCTAAGTTATAATGCTCAAGATAGAACTTTGAATAAGGATGAATTGAGTTGCAGTAGATTTTCTCCAAGTGGTGTTAGCGATGAATCTTGTGCGTGCTCTAAAGATCCAGATTCATGTTGTAGTGCAGCAAAGTGTGCTGATACTTCAGAAGTTCCCATCAATAGCAACCAAGGAAAAGATGATCAAAACTTTGACGGACCGTGGAAGCGGAATAGCCTTACATTTAAGGCCTCGGAGAATACAAAATTTCAGGAACCTAATCCAGAGGAACAATCCGGCAAAGCAAGAGCAAGAGCAAGCATGGCGCAGTGGAATATTATCGATAAATCTCTTGTTGCTGGTATTTTTCTTAGTTTTTTAATCGCTGTAGCTTGCTTTTCTCAACTATGGGCAAGGAAGGTGATGTCTAGTTAACACATTGATTTCATTTTCTTGCAAACTAGAGTGGTTGTCACCAGACAAAATGACACAAATTTTGCTACACTGTATTGGTGAACTCATTTTTCTAGCATATGATGTTTAAAACTAGAGTGTTTCATTTTCTTGTTGGCATTCAGATTATATCTTTTGCATTCAGATTATACTCGTTGATTGCCAAAATTTGACGTTACTCATCAATTTATGACTAAATTGTACAAAATATAGAATAATAACATAACAGAAAAGAATCGCTAGGTTCTTTACATTACAAGAAGATAAAAGAAAAGAAAAAAAGCGAAGCGAAGC CAGATACCGATAGTACTCGGCTCAGGTGGTGCACCCCTGCTAATTTTTCGTTAGTTTGGTCCAACCACTGAAGAACAAACAAACCATTGAAGCAGCAAAAGCTCAGCCCCATTTGCTCTCACAGTCTCTCTCTCCGAATCTCCGGTCGCATTGGCGATGGAAGACATCGAAGATTTATTGGCAGGAGATGGTGGCGTTGCACCTGGGTTTCGATTGCCCGTTACTTCTGTTGGGTTAAACCCTAAGAAAAAACCCATGAAATCTAACCTTTCTGTAGTTCAACACCCACTTCAATCCATCAGAATTCCCGGCACCCAGACAATTTATATTAAAACTTTTGGGTGCTCTCATAATCAGAGTGACAGTGAGTACATGGCTGGGCAGCTGTCAGCCTATGGATATACCTTAACTGACTTTCCCGAGGAGGCAGACTTGTGGCTGATAAATACGTGCACTGTCAAAGCACCTAGTCAATCTGCCATGGATACTCTCATTTCAAAAGGTAAAGGTGCGAACAAACCCCTGGTCGTGGCAGGGTGTGTCCCGCAAGGAAGTCGGAACATAAAAGAGCTTGAAGGAGTTAGTATAGTTGGTGTGCAGCAAATTGATCGTGTCGTAGAAGTTGTAGAAGAGACCTTGAAAGGCCACGAGGTGCGGCTTTTAAATAGGAAAACATTGCCTGCTCTTGATCTCCCAAAGGTGAGGAAGAACAAGTTTGTTGAGATTCTTCCTATTAACGTTGGTTGTTTAGGTGCTTGTACTTATTGCAAGACAAAGCATGCACGTGGTCATTTAGGAAGCTATACAGTGGACAGCCTTGTTCAGCGTGTGAAAACTGTCATAGCAGATGGAGTTAGGGAGATATGGTTGAGCAGTGAAGATACTGGAGCATATGGCCGTGATGTTGGAGTTAATCTTCCTATTCTTTTGAACGCGATGATTGCGGAGCTCCCCTCCACTGGAAGTACAATGCTTCGTGTTGGGATGACTAATCCCCCTTATATACTTGAACACCTGAAAGAAATAGCTGAAGTATTGTGCCATCCTTCTGTGTACTCCTTTCTTCACGTTCCTGTTCAATCTGGGAGCAATGCTGTCTTAACTGGCATGAAACGTGAATACACTGTAGAAGAGTTCAGGATTGTGGTGGATACGTTGACCAAACTGGTACCTGGGATGCAGATTGCAACAGATATAATATGTGGTTTTCCTGGTGAAACTGATGACGATTTTTCTCAGACTGTTGAGCTTATCAAGGAGTATAAATTCGCTCAAGTTCATATTTCACAATTCTATCCTCGGCCTGGTACTCCTGCTGCAAGGATGAAGAAGGTTCCAAGTGCTATCGTAAAGAAGCGAAGCCGTGAATTAACTGCTGTTTTTGAATCCTTCACCCCATATAATGGAATGGAAGGGCTAGTTGAGAGGATATGGATAACAGATATTGCTGCTGATGGAACTCACTTGGTGGGACACACCAAAGGATACATACAGGTATTGGTCAATGCTCCAGAAAGCCTTCTGGGTTCATCAGCTACTGTAAGGATCACTTCTGTTGGAAGATGGTCAGTTTTCGGTGAAGTGATCCAGGTTCTAAGTTATAATGCTCAAGATAGAACTTTGAATAAGGATGAATTGAGTTGCAGTAGATTTTCTCCAAGTGGTGTTAGCGATGAATCTTGTGCGTGCTCTAAAGATCCAGATTCATGTTGTAGTGCAGCAAAGTGTGCTGATACTTCAGAAGTTCCCATCAATAGCAACCAAGGAAAAGATGATCAAAACTTTGACGGACCGTGGAAGCGGAATAGCCTTACATTTAAGGCCTCGGAGAATACAAAATTTCAGGAACCTAATCCAGAGGAACAATCCGGCAAAGCAAGAGCAAGAGCAAGCATGGCGCAGTGGAATATTATCGATAAATCTCTTGTTGCTGGTATTTTTCTTAGTTTTTTAATCGCTGTAGCTTGCTTTTCTCAACTATGGGCAAGGAAGGTGATGTCTAGTTAACACATTGATTTCATTTTCTTGCAAACTAGAGTGGTTGTCACCAGACAAAATGACACAAATTTTGCTACACTGTATTGGTGAACTCATTTTTCTAGCATATGATGTTTAAAACTAGAGTGTTTCATTTTCTTGTTGGCATTCAGATTATATCTTTTGCATTCAGATTATACTCGTTGATTGCCAAAATTTGACGTTACTCATCAATTTATGACTAAATTGTACAAAATATAGAATAATAACATAACAGAAAAGAATCGCTAGGTTCTTTACATTACAAGAAGATAAAAGAAAAGAAAAAAAGCGAAGCGAAGC ATGGAAGACATCGAAGATTTATTGGCAGGAGATGGTGGCGTTGCACCTGGGTTTCGATTGCCCGTTACTTCTGTTGGGTTAAACCCTAAGAAAAAACCCATGAAATCTAACCTTTCTGTAGTTCAACACCCACTTCAATCCATCAGAATTCCCGGCACCCAGACAATTTATATTAAAACTTTTGGGTGCTCTCATAATCAGAGTGACAGTGAGTACATGGCTGGGCAGCTGTCAGCCTATGGATATACCTTAACTGACTTTCCCGAGGAGGCAGACTTGTGGCTGATAAATACGTGCACTGTCAAAGCACCTAGTCAATCTGCCATGGATACTCTCATTTCAAAAGGTAAAGGTGCGAACAAACCCCTGGTCGTGGCAGGGTGTGTCCCGCAAGGAAGTCGGAACATAAAAGAGCTTGAAGGAGTTAGTATAGTTGGTGTGCAGCAAATTGATCGTGTCGTAGAAGTTGTAGAAGAGACCTTGAAAGGCCACGAGGTGCGGCTTTTAAATAGGAAAACATTGCCTGCTCTTGATCTCCCAAAGGTGAGGAAGAACAAGTTTGTTGAGATTCTTCCTATTAACGTTGGTTGTTTAGGTGCTTGTACTTATTGCAAGACAAAGCATGCACGTGGTCATTTAGGAAGCTATACAGTGGACAGCCTTGTTCAGCGTGTGAAAACTGTCATAGCAGATGGAGTTAGGGAGATATGGTTGAGCAGTGAAGATACTGGAGCATATGGCCGTGATGTTGGAGTTAATCTTCCTATTCTTTTGAACGCGATGATTGCGGAGCTCCCCTCCACTGGAAGTACAATGCTTCGTGTTGGGATGACTAATCCCCCTTATATACTTGAACACCTGAAAGAAATAGCTGAAGTATTGTGCCATCCTTCTGTGTACTCCTTTCTTCACGTTCCTGTTCAATCTGGGAGCAATGCTGTCTTAACTGGCATGAAACGTGAATACACTGTAGAAGAGTTCAGGATTGTGGTGGATACGTTGACCAAACTGGTACCTGGGATGCAGATTGCAACAGATATAATATGTGGTTTTCCTGGTGAAACTGATGACGATTTTTCTCAGACTGTTGAGCTTATCAAGGAGTATAAATTCGCTCAAGTTCATATTTCACAATTCTATCCTCGGCCTGGTACTCCTGCTGCAAGGATGAAGAAGGTTCCAAGTGCTATCGTAAAGAAGCGAAGCCGTGAATTAACTGCTGTTTTTGAATCCTTCACCCCATATAATGGAATGGAAGGGCTAGTTGAGAGGATATGGATAACAGATATTGCTGCTGATGGAACTCACTTGGTGGGACACACCAAAGGATACATACAGGTATTGGTCAATGCTCCAGAAAGCCTTCTGGGTTCATCAGCTACTGTAAGGATCACTTCTGTTGGAAGATGGTCAGTTTTCGGTGAAGTGATCCAGGTTCTAAGTTATAATGCTCAAGATAGAACTTTGAATAAGGATGAATTGAGTTGCAGTAGATTTTCTCCAAGTGGTGTTAGCGATGAATCTTGTGCGTGCTCTAAAGATCCAGATTCATGTTGTAGTGCAGCAAAGTGTGCTGATACTTCAGAAGTTCCCATCAATAGCAACCAAGGAAAAGATGATCAAAACTTTGACGGACCGTGGAAGCGGAATAGCCTTACATTTAAGGCCTCGGAGAATACAAAATTTCAGGAACCTAATCCAGAGGAACAATCCGGCAAAGCAAGAGCAAGAGCAAGCATGGCGCAGTGGAATATTATCGATAAATCTCTTGTTGCTGGTATTTTTCTTAGTTTTTTAATCGCTGTAGCTTGCTTTTCTCAACTATGGGCAAGGAAGGTGATGTCTAGTTAA MEDIEDLLAGDGGVAPGFRLPVTSVGLNPKKKPMKSNLSVVQHPLQSIRIPGTQTIYIKTFGCSHNQSDSEYMAGQLSAYGYTLTDFPEEADLWLINTCTVKAPSQSAMDTLISKGKGANKPLVVAGCVPQGSRNIKELEGVSIVGVQQIDRVVEVVEETLKGHEVRLLNRKTLPALDLPKVRKNKFVEILPINVGCLGACTYCKTKHARGHLGSYTVDSLVQRVKTVIADGVREIWLSSEDTGAYGRDVGVNLPILLNAMIAELPSTGSTMLRVGMTNPPYILEHLKEIAEVLCHPSVYSFLHVPVQSGSNAVLTGMKREYTVEEFRIVVDTLTKLVPGMQIATDIICGFPGETDDDFSQTVELIKEYKFAQVHISQFYPRPGTPAARMKKVPSAIVKKRSRELTAVFESFTPYNGMEGLVERIWITDIAADGTHLVGHTKGYIQVLVNAPESLLGSSATVRITSVGRWSVFGEVIQVLSYNAQDRTLNKDELSCSRFSPSGVSDESCACSKDPDSCCSAAKCADTSEVPINSNQGKDDQNFDGPWKRNSLTFKASENTKFQEPNPEEQSGKARARASMAQWNIIDKSLVAGIFLSFLIAVACFSQLWARKVMSS Relationships
The following mRNA feature(s) are a part of this gene:
Homology
BLAST of Spo17360.1 vs. NCBI nr
Match: gi|902183610|gb|KNA10153.1| (hypothetical protein SOVF_146970 [Spinacia oleracea]) HSP 1 Score: 1228.4 bits (3177), Expect = 0.000e+0 Identity = 616/616 (100.00%), Postives = 616/616 (100.00%), Query Frame = 1
BLAST of Spo17360.1 vs. NCBI nr
Match: gi|731310933|ref|XP_010682255.1| (PREDICTED: threonylcarbamoyladenosine tRNA methylthiotransferase [Beta vulgaris subsp. vulgaris]) HSP 1 Score: 1033.5 bits (2671), Expect = 1.500e-298 Identity = 524/620 (84.52%), Postives = 562/620 (90.65%), Query Frame = 1
BLAST of Spo17360.1 vs. NCBI nr
Match: gi|565367324|ref|XP_006350322.1| (PREDICTED: threonylcarbamoyladenosine tRNA methylthiotransferase isoform X1 [Solanum tuberosum]) HSP 1 Score: 856.7 bits (2212), Expect = 2.500e-245 Identity = 445/626 (71.09%), Postives = 510/626 (81.47%), Query Frame = 1
BLAST of Spo17360.1 vs. NCBI nr
Match: gi|460410020|ref|XP_004250429.1| (PREDICTED: threonylcarbamoyladenosine tRNA methylthiotransferase [Solanum lycopersicum]) HSP 1 Score: 855.5 bits (2209), Expect = 5.700e-245 Identity = 442/624 (70.83%), Postives = 508/624 (81.41%), Query Frame = 1
BLAST of Spo17360.1 vs. NCBI nr
Match: gi|970062792|ref|XP_015058303.1| (PREDICTED: threonylcarbamoyladenosine tRNA methylthiotransferase [Solanum pennellii]) HSP 1 Score: 855.1 bits (2208), Expect = 7.400e-245 Identity = 444/624 (71.15%), Postives = 508/624 (81.41%), Query Frame = 1
BLAST of Spo17360.1 vs. UniProtKB/TrEMBL
Match: A0A0K9QTY7_SPIOL (Uncharacterized protein OS=Spinacia oleracea GN=SOVF_146970 PE=4 SV=1) HSP 1 Score: 1228.4 bits (3177), Expect = 0.000e+0 Identity = 616/616 (100.00%), Postives = 616/616 (100.00%), Query Frame = 1
BLAST of Spo17360.1 vs. UniProtKB/TrEMBL
Match: A0A0J8D6Z8_BETVU (Uncharacterized protein OS=Beta vulgaris subsp. vulgaris GN=BVRB_1g001450 PE=4 SV=1) HSP 1 Score: 1033.5 bits (2671), Expect = 1.100e-298 Identity = 524/620 (84.52%), Postives = 562/620 (90.65%), Query Frame = 1
BLAST of Spo17360.1 vs. UniProtKB/TrEMBL
Match: A0A0V0IKC1_SOLCH (Putative threonylcarbamoyladenosine tRNA methylthiotransferase-like OS=Solanum chacoense PE=4 SV=1) HSP 1 Score: 858.6 bits (2217), Expect = 4.700e-246 Identity = 446/626 (71.25%), Postives = 514/626 (82.11%), Query Frame = 1
BLAST of Spo17360.1 vs. UniProtKB/TrEMBL
Match: K4D787_SOLLC (Uncharacterized protein OS=Solanum lycopersicum PE=4 SV=1) HSP 1 Score: 855.5 bits (2209), Expect = 3.900e-245 Identity = 442/624 (70.83%), Postives = 508/624 (81.41%), Query Frame = 1
BLAST of Spo17360.1 vs. UniProtKB/TrEMBL
Match: A0A0A0KSZ4_CUCSA (Uncharacterized protein OS=Cucumis sativus GN=Csa_5G652200 PE=4 SV=1) HSP 1 Score: 850.5 bits (2196), Expect = 1.300e-243 Identity = 439/636 (69.03%), Postives = 507/636 (79.72%), Query Frame = 1
BLAST of Spo17360.1 vs. ExPASy Swiss-Prot
Match: CDKAL_XENTR (Threonylcarbamoyladenosine tRNA methylthiotransferase OS=Xenopus tropicalis GN=cdkal1 PE=2 SV=1) HSP 1 Score: 504.6 bits (1298), Expect = 1.500e-141 Identity = 248/485 (51.13%), Postives = 341/485 (70.31%), Query Frame = 1
BLAST of Spo17360.1 vs. ExPASy Swiss-Prot
Match: CDKAL_XENLA (Threonylcarbamoyladenosine tRNA methylthiotransferase OS=Xenopus laevis GN=cdkal1 PE=2 SV=1) HSP 1 Score: 503.1 bits (1294), Expect = 4.500e-141 Identity = 250/485 (51.55%), Postives = 341/485 (70.31%), Query Frame = 1
BLAST of Spo17360.1 vs. ExPASy Swiss-Prot
Match: CDKAL_DROPS (Threonylcarbamoyladenosine tRNA methylthiotransferase OS=Drosophila pseudoobscura pseudoobscura GN=GA19679 PE=3 SV=1) HSP 1 Score: 500.4 bits (1287), Expect = 2.900e-140 Identity = 260/491 (52.95%), Postives = 341/491 (69.45%), Query Frame = 1
BLAST of Spo17360.1 vs. ExPASy Swiss-Prot
Match: CDKAL_DROME (Threonylcarbamoyladenosine tRNA methylthiotransferase OS=Drosophila melanogaster GN=CG6550 PE=2 SV=1) HSP 1 Score: 498.4 bits (1282), Expect = 1.100e-139 Identity = 260/491 (52.95%), Postives = 336/491 (68.43%), Query Frame = 1
BLAST of Spo17360.1 vs. ExPASy Swiss-Prot
Match: CDKAL_MOUSE (Threonylcarbamoyladenosine tRNA methylthiotransferase OS=Mus musculus GN=Cdkal1 PE=2 SV=1) HSP 1 Score: 493.8 bits (1270), Expect = 2.700e-138 Identity = 245/484 (50.62%), Postives = 332/484 (68.60%), Query Frame = 1
BLAST of Spo17360.1 vs. TAIR (Arabidopsis)
Match: AT1G72090.1 (Methylthiotransferase) HSP 1 Score: 801.6 bits (2069), Expect = 3.400e-232 Identity = 419/624 (67.15%), Postives = 485/624 (77.72%), Query Frame = 1
BLAST of Spo17360.1 vs. TAIR (Arabidopsis)
Match: AT4G36390.1 (Methylthiotransferase) HSP 1 Score: 109.4 bits (272), Expect = 8.100e-24 Identity = 101/444 (22.75%), Postives = 184/444 (41.44%), Query Frame = 1
The following BLAST results are available for this feature:
BLAST of Spo17360.1 vs. NCBI nr
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. NCBI nr) Total hits: 5
BLAST of Spo17360.1 vs. UniProtKB/TrEMBL
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. UniprotKB/TrEMBL) Total hits: 5
BLAST of Spo17360.1 vs. ExPASy Swiss-Prot
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. ExPASy SwissProt) Total hits: 5
BLAST of Spo17360.1 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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