Overview
Sequences
The following sequences are available for this feature:
Legend: exonfive_prime_UTRpolypeptideCDSthree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.GTCGTTTTTAACTTTTTAACAAACTTACTTTGAGAATCGTGCAAGCAAGTACGAAAACTTCGTAATGCAACAAAACTTTTGCCCACAACTGAAAACTAATTGTTGTTCAATTCTGCCCAAAACCAGGACAAGACCTCCAAATTAAACAACCAACCCATTCCCCCCTAAAACCTCAAAATTCATCATTATCCCACAAATGCCTCCATCTACACCTCCACCATCCCCCCACCCACCTTCCAACTCCGACCCCATCGATAGCGCCGCTGAAATCCGCCTTCGCGAGGCAGAAGAACGGCTCAAGGATGCCATTGAGGAGCTCCAGCGCCGCCAGCTCAGTCGCGCCGCGGCAGCGCGTGGGCCTCACTGCCCTCCCTGCGATCACCCTGACGATTCCTGCGTTGCTCACGCCATCGGTAACCTCTGCCAGAGCTTCCTCCTCTCATATGGCGTTCGTGTTGGTATCGGCATCCTCTTGCGCGCCTTCAAGCTTGCTCGCGGTCATTCTTACTCCTCCCTCCTCGATCTCAAGGTATCAATTTATGCTCAATTTTGACATTTTTTTAATCTGAATTCTTAGTTAATTGGCATGCAAATGTGCAATGCGTCATTGTTGGTTTCTATTATGCAATTATAACTTCTCGAGTTTAGGGTCTAGATTTAGGTATTAGCGATCAAAATTAGGGTTATGACGAGTATAGACATCCTAGATGACTGTTCTATAATCAATATGGACAACGAACACGCGTAGTGTATGTTGCAGGAGCTTAGCTCAACTGCTGATATTCTCCAATGGCGATGACAGAAAATAGAAAGAAAGATTGAGAGAGATAGAAAGAGAGAATCAGATTCAGAATAGAGAAAGAATTGTAGAGAGAAAGTAGGAATGTTGTAATGTTATTGATGATTTGATCCCAATGATCTGTACAAGTATTTATAGTGCTAAGAACTAAGGATCGAAGGCTTGATCAAACAGCTAAGGCTAACAGAAAGGCTAACTGAAATCTGTTACACCAACACTAACTGATTACATGTATCTAACTGACGAAAGAATGTTGATCAAGTTCTGATGATCAATTAGGTGGATTATGGTTTAGTTTTGTTGAAGATCGGGTAGAGTGCATATGTTGTAAGTGGAATATGGATTTTTAGATTGCTGCTCATGTTAGGGATTTACGGTGTTCTTAGTGATTGTGTCTTTGAGCAAGGATATACATATACGTGATAATAGTTCTGCTATTAGTCGAGGGATTGAAGTAGGCGAGAGAGTAAACACTACTTGATTTTATCGTAAAGAAGAGTCGTTTCCGTTTCTGTCAAATATGGACTTCAACTTGATGGTATGCCATATTGTAAAAGTAGGTGAGATTATCAAAGACAGTTGATCTAGTCAATTACTGATACGCCAATCAAGAAAATTGCTCATTTTTTAAGTCCTTGGAGCTTCTCTTCCTGCAAGTTGGAGTGTATTGGTGATGAACTGATGATATTTGGAGGTTGTTTATGAGAATATTCTAGCACAGATGTCAATTGGGTAGAAGTATGCCTTAAAAAGTAAGCAGATTATCTTGCAGGATTATCTTGACATATTTTTTTCTTTCATCAGGTGGTACATATTTTTTTCCCAAGGTTAAATTTAGGGTTCCAATCACATTTGATTAAGCCTAGTTAGGAAAAAGCATGTTAAGCACGTGTCTCTGTGACAGATTTGTGTTACTTCCCCATCCTTGTTGTCTAACCTTATTGAACTGTTTTTAAATATGGCAATCATTTTAGCATCTTTGATATGGTCCCGAAACAAGCTCTTGGAAAATACTCTGTATGTCGGATTTTTTTTTACGAAAATTACCCCAGCTGAATAGCTGATCATAGAGTCAACTCGTGAGCTGCAAGTATCCTTTTCAAAGAAAGACATACAGTTAATCCAATGTAATACAGAACTCATTTGTCTCTACATCGTGGACAAAGGGCCAATTTCTGCAGCAATTACTTAAAAGTTGGTTTCCCTCTATGGCGATAATGTAAACTGTAAAGAACACTCTAGTTTTGTTACTCTGTCTTGGATTGAAATTTTAGACTGAGGATTACGGTGGATTAGGATTAAGAAAATAGAATATATAAACGGTGAATATTTTACGTAAGAATTTAGTACCTATTTAATATTTTTAATTTTTATTTTGATCTTATATGCTCGTAGCTGTATACAGAGTACTATTTTGTACTTCATTGCCTTTAGATTTTACTTACTGATCTTTTAAAGTGCTTATTCGTTATATTTTCACTTGTTTTTATCATTGGCCTAGATCTTTTTTGATTTTCCATTGTTTTTTAAAATCTTTTTTTATCTTATTTGCCCCAATATCATCTTTTGGAGGGTATTATTGGAAACATTTGGGGTTTGTGTTGGCTTTTTCTTGGCCCTATGAATGTGTGTGGAGGAGATGGACGATGATGCAAACTGTGTTTTAAGTTCAGAGTTTTGGTTGTCAATGTTCTTACGTCAATTTAGAGAATCATGGGTGTGAGTTCTAGTGCTCGCACGTTTGTAGAAGTAATGACAGCCGAAGGCTGTTTGCTAAGTCCGTGTCCTTGTCTCACTACTTGGAATGTGCCTCGCTCTTTGGCGAGTTGTTTCTCTTTATCTGGATTGTGAAGAAGACAACTATAAGGCTCAGCCAGACCCGACTGATGCAGTTAGGGGGGTGCACCGGTCCAAAACCGGTCCGGTCCGGACCGGAACCGGAATGGACCGGAAACGGAATCACCAAATTCCTAGATCCGGTGTCCGGACCGGTATAATTCCGGACAAACCCGGTCCGGACCTGATTATTCCGGTTTGTTCCGGTTTTAGACCGGTTGGACCTGATTTGTCAATAAATTAAAAATAAATAAATTATTCCTCTCAATTTGAAAATTAATTAATCTGAAACATTTACAATCAAACTCACGAATCCAACAAATAGACAAATCAATATCAAAATTTGAAATTACCAAAACAAAACTAATCACCTAAACACAAAGTACAAATTTTCCATGACAAACCCTCCATTCGAGATCTATCCAATTCCAGATCCATAGTTTATGAGACCTTTGAGTTTCATTCGATCTCCCTCCGAAACTTCTCAAAAGAAGTTAGAAGTTAAACCCTACAAAAAAAGTTTACTAATCCATTTATATGATCCATTAAGAGAGAGGGGAAGGAGAGTTTGAGAAGGAGAGAGCAGAGGAAATGAGATGTGAAAATGAGGAGAGAGAAAGAAGGGGGCATGGAGCCAAGGGAAGAGTGCCGAGTAAATGAGTCATGGAAAAATGGGGCAAATAAATGTGTTGGGTTGACCTCATTAAAAATGCCAGTGTTGGCGTGTTGTTCTTTGCCCCTTTCCCAGGAAAATTTTGAAAAAGCAATTTAAATCGGGTTCCGGATTTGACCGGATTTTTCCGGGTTTTATCCGGTCCTGTCCGGAATCCGGATTCACTAATTTTCACCGTCCGGAGTCCGGACCTGAATCAACTGGACCGGTCCGGACCGTACCGGATTCCGGACCCGGTCCAATTATGCACACCCCTAGATGCAGTTGGGATGTTAGCGGCCTAGTTTTAAGCTGAATCTTTGTTCCCTCTGGCTGATCATGTTGGCCTCAAATTTGGCTGGTTATAAAGAAGCAGTTTTTGCTTGATGTTAATCTGTTATCGGTGGGCCACTTGTATTGTTTAGCTCAAGTTTTGCATTTTCTGTGTTACGTGGCGTCTTTTGTTTTCTTTTATGATCCATGAGACTAGGCACCCCAATTGTTGTAACCTTTCGTTTTCTCAAAATTAAAAAGAAAAGAACTAATTTTGATTACTATACATTACTTGATTTTTGGTTGTTTTAATTGGGGGTTAATATTGTTAATTGTAAGAAAATTTCTTTACATTGTTAGTGGGATCATAGATCATACGGAAATAGGATGAAGGAGAATTATCCTGGGCTATTGCACTATGGTATATCCCTTTTACCCAATAATAATAACCATTTAGGGAAGATCAATACTACCCTAGCTGTAGTTGCTGACCATATTCAAGTTTTGTTGTGTTTGGTACACTTTGTGAGGAAGACTATGTAACCTATACTATATGTAGAAGTGGAACATAGTTGGGGGCAATCTTACATGTTTTTTGGGTGCAATTGCATTATGGCATAGGCCTCTTACTTGGTATCATTATCAATACTAACCATTACCTAGATAAGGAACTTTACCCTAGTTGTAAACCAACTATTACCTGATTCGCCAGTATAAGACCGGGTACGGGTATGCAATTCGCTACCTAATTTGCTAAACTAGACCAAAATTGTACCATTTTCATGTTATAATTCGCTTATTCGGTACGCGGTTCTTGGGGTGATTAGAAAGTTATCACTGTGTAGACCTTGTCATTGGCGACCATGAACTTAAGTTTTCTTGTGTTTGATACAACTTCGTGAGGGTGAAGACTATGTAATCTGTACTATATGTAGAAGTGGAACTTATTTGATGCTTTCTTACATGTATTTTGGATACTCTATATGTGGATTAATGTAACAAACCCCAACTTATGGTTGTAGCTTGATAGGTTGCTTGGTCAGATTCTAGCTCTATGCCTCTAGATGCTTAGAATAAGCAAATTGGGAAATCTGAGTAACTTCTACATTGTAACACCAAGCAGGCTGTAGAAGATCCAACCAGTCATAAATTACATCATTGATGACAGCTAATTTATTTCTGTGGATGTTTATGACACGCCAAGTGATTTGAAAGATGCTATGGGAGATGTGAGTGCTCGTTTAGGCTTTCAGTTGGGGGAAGCTGAATAAAGGTTAGGGACCCTTGATTTATGTATAACTAGCACCACATAAGACTATAAGAGATACAATTGGTCCCATAAAATAGATGAAAAAATTAGTGGCGACTACTGGCTGGGCCATTCGCCATCAGATAATTAGGAAAGTGGGAGGGAAAAAGCTTTAGATACAAGTATTACCAATGGTTTTACCTATTTTGATCGTCACAGTAAAGTAAGTGTGCTATTACTATTTTGCTTTTTTTGTATAATGAATTGCTATGCACATGGAAGCATATCAGTGATATACTGAACTACTGATGTGTAATACTTCATCAAACCAACTTACCAGTGAGGTATTTTACTATTGCTGTGTGCCCGCCACCCACCCTACTTTTGACTTGGATGTACTACAAAGTAGGTTGGGTCTGATGATCGGATTTGGTATTCCAGAATTATAATTAGAAGCAATAATTTCTGTGGCCAAAAAGGGAAAAGAACTAGAAGCTATGCAACTCATGTTTCCACAGAGACAACATCAATATGATCTGGCATGATCAGTTAATTTTTTGAAATGTTATTGTGAGACTCGAGAGTCGTAAGTCTCGTAACTGCTGGTAATCTTGTAATATCGTTCTTAGTGTTTTTTTTTGAAGTTCTTTTTAATGATTTAGAGTGCTCAAGTTACTCAAGTAGTCAAGTTAGAGTCACAAAATAAGCTATTTGTTTTGCTGAAGCGATACGTGTCTCCTCTTTGATGAGTTGTATCTTTGTGACTGAAGTTCCAAGCTTGTTGTATGCTGCTGTGGGTAATTTTTCTGCTTTTGCCTGTCATGGATTAAGCATAAGGACTATCTTTTTATTTTAGTCGTGAGCTGCATGGGTTAAACTGTACTTCACTAGATTCATATGGGAGCCTCATTTACTGATGTTTGTGGTGGTTTCTTTTATTCTGTACATATCCTTAATCTTGTCTGAGTTGGAATCTTCTTGGGTGCTCTTCTCCAGCAACTTGTCTCAGAGAAGGATCTGATTGTTAGAGAGGAAGCTTGCCGTGTTGGGTTGCTTTTTGGTGGTTTTACAGGATCCTATCATGCCCTAAGATGTATACTGAGGAAGTGGAGGAGAAGGGAAACCCCCCTTAACGTGTAAGTTTGTAAAGTGAGCTATTTTGTGTGTGATTTTACTGTTCATTTTAGTTGTCACATGTATTGGTGTTTAACAAATTACTGTCAAATTACATATTGATAACCTTGTTAAAGCTGATGATGGAGCAGAATCTTAGCAGGTTCTGTTGCAGGCTTGTCGATCTTAGCATTAGGTGATCCCAACCAAAGGCGTACTCTAGCTTTGTATCTTTTTGCTAGGGTAGCTCAGGTACCTTAATCAAATTGATTGTTTTCTTTTATGTTGCATTAAGAAAGGCAGTCCCTGTTAATATATGTTACCGATCGTAGGTGATTATCTTACAACAACACGAGCTTTTAATGGCAACTCACAATGTTTTCTTTCTTCTATTACTGTCTAGTGTGCTTATAACTCTGCTAAATCCAAGAACAAATTTCATCTATGGGGAAGCCACTGGAAGCATGGAGATTCCTTACTTTTTGCTTTGTCATCTGCACAGGTAATTATGGATTTGTGGTTGACCTGTATTATTAATATTACTAATATATGTAAAATACATCTTTCATTTCCACCTGAAAATTTTATTTAAAACTTTTCTTGCCCCTTTTTCATTTCACATTAAACCTTGTAACTTTTTTTTTTTTAATAATTTACTGTCTGAGATTCTCCTTCCCCGCTTCTCCTACTTGTTTTACTAGTTTACTGCATTCAATGCATTTGTGGAAAAGCACCTACATAATTAATTCATCATATGCACCACCCTGTAAGTAGGGCTGTAAAAAACTGACCCGATCCAACCGATTTCTAACAAAAACCGAAGTGACCCGAAAAAAAATCTCACCTTCAATCCGCGTAAGCATAATGGCCCCGTACAACTACATTATCCGATTATACCCGAACCGATTATACCCGAACCGTAACCGACCGATGACCCGATTTGACACCCCTACCTGTAAGTATGACCAACCATTTGGTGTTGTGACTCTTATAGCAAATGCGTCCTAATGACATCATTAACATGTTTCTTTTTCTTGGAGCGAGCACCTAGTATTGATGATGCATGTTAACATGAAATGCTGCAGTTGTATATGATGCCATAATAGCATTAGCTGATTCATCTGATGAATTTTATCTTGTATTTTCTTTGTCTATTCAATAACAAAGCCATCAAATATCATGTTATTTTTACTGGAATGTCGTTTCCAACTAAAACTGACATAAAATGTTATTGGATTTATCTAACTTGGAGGTAACTTTGCTCAGGTCATGTATTCTTTCATAATGCGTCCTGAGAGCTTACCAAAATCCTATCAAGATTTCATTCAGAAAACAGGGCCAGTGGCACAACCTGTATACAAGGCTGTCCGAGATTGTTGTAGAGGTAGCGCAGTGGATGTGGCTTCATTGTCAGCATATTTGTTGAGTAGAGGGGTCCAAAATTCAGTGCCCCTGGACGAGTTCCCCTCCATTATTCCCTGCTCCGTCATTCATCCAAACACCCAGTCATGTTTAGCTCATGATATGAATGCAGCATCGGCTACTTTCAAGAAAACCTTTCCTCTCTATTTCTCGCTGACCTTTGTACCTTTCGTGGTTCTGCATCTACAGAAGGTACTGCTATCTTAAGCACACTTTTTCCACAATTGTGATTAGTTCACAGAAAAAGGAAAATAAATTCAACCTTGTTGTGATATACTCCACGAATTAGTTATTTCTCATGTGTATACTTTAGAAAGTAAAGACATGTTGCAACAACAATTAAATGTTACTTGGACTCGGGTAGAGTGTCGGACACGAGTACGTGTCAAGTGTCCGACTCGGCTACATTTTGAAATATTCCATATGTTTAGCCCAGAATGAATTATCGGAGTGTCCATTCCCATGTCCGTTTGTCGAGGGTCCGACACGGGTACTTGAGGTAAAATGAAGAGTCCGAATAACATAGTGGATTATCTAGATAAATCTTGTTATGCTGCTAGTTTTGTTCAGCATAGAGATTGGAAGCTGTGGGAAGAGTTTTGCTGGGTTGGGTATCTTGCTTCTGTAACATCTGTGTTAGCATTCATCATTTGGGTCTGGTTTTGTGTAATCTCTGTTGAAGACTGCCCACAGTACTATCTGAACATGTGTGTTATTATTGTTGTTGATGGACCTGTATTACTTCATGCGTTACACAGAGATGCTTTTTAAGAATAGTGATCATTGGATGCTAAAATGTTAATATATATATAGGGACTGTATTTATCTCCTAGGCAGGATATGTTAGTTTGAAATATATCAAGGATGGACTTTTTTAAACATTTGGCTATATAATACTCAAGAAGTCAAGAGGCATATTTTAATATCTCGATTATTGAGCCCAGTTCTTGAGGTTAATATACTTCTTGGATGTGATTTCAGCATTATGTTTTAAGCAGCTTTTGAGGTGATCATTTTTTTTAATTAAATTGGCTGTATCGCCGTTACCTGAAGCAAATTTGCCATCTTTGTAGTTCTTGGAAACACCAGCTCAAACTTGTTGGCGTGCTTCTAAAGAGGCTGTTCGCTCAACTACATTCTTGTCAGCATTTGTTGGGATCTTTCAGGTAACCTTTTCTCTCACTTCCGTGGAAATGTATTCTGGATCCTCTTGTCACACACCTCTGATTTCATTCTGGAATTGCAGGGTGTTATTTGTTTGCACAGAAAAGTGGCGTCAAAAGACCACAAACTTGTATATTGGATTTCAGGTGGACTTGCTGCCCTTTCTGTGCTGTTTGAAAAGAAAAGTAGGCGGAGTGAACTTGCTTTATATGTTCTTCCGCGTGCCGGGGATTCTTTATGGTACATATTGGTAAATCGCCATTTACTTCCACGTATTAAGAATGCTGAGGTAACCTTCAATTCTCTTCTTTTTCTGGCTTCTGCATTTCTATTTGCTTGATTTTGGCTAAGACTTTAAATCCACTATTTTCCATCCATTTTGAGATGAATAACCTTTTTTACAACTATTTTTTCCGCTTCACTAAAAAAAGGGAACTCCAAAGTATCAAACTCTGTCCCTCAGTACCAACCATTTTCAGTTTGATCCGTGGTTACATCGTATATGTCATCTGAATAGTCTTCAATTTGATTTCTAAATTGCCAAAGTTCTGCAGAGTCTACATTTGTCTAATTGTCCACTGTAAGCAGCTTCCTGTGTTTAATCTATGGATAAGAGTAAGACTATTCACATCTCCCCCACCCCCACCCCCACCCCCACCCTCACACCAAAAGAACCCGTTTGACCAAATCTTTTCATGGGTGATTCTGAGTCTCTGACTGTCAAAGTCTTTTTTTTTTTATTTCATCATTGCACTGTAGTTGGTTGGAAGCTTGATTTTGGGCTTGTTTATATTAATAACCAGTTACAATCCCTTTTTCTGTAAACAGGTGGCTTTATTTTGTGCTTGTATGGGTGGGATCATGTATTATTTAGAGCATGAGCCTGACACGATGGCTCCATTTTTGCGTGGCATATTACGCCGCTTCTTGGCAAGCCGAATTAGTAATCCTAGCCCTCCGCCAAATCGTAATGCTTCATATGCATATCTACAGACTCTCGAGGTCATGGAAAAACCGAGATTACAGACAAAGAAGGAAGAAGCTACCGACAAGTCTTCTGCTAAGTATAACCTTGAGTCTATTTCAGGACTCTGATAATCTTTAAATGATAACCCAACTTATCCGATGATTATTCAACACATTGTTTTTAGCCATCTGGGCCACTATATCAGATGCTTGAATTAGTGTTCCACCACCCTATTGATTAGGTTTAGCTCTTTAGAATAGAGTTTCTCTTCCTCTCAACTTTTTTGCAAAGTAGGTTACGTTTCAGAATACGAAAGGGAGATTCATGTGCTTGATTAAAATGGGGAATAATCTATGGTAACCCCGTTTTGTTGCGCGATAGGTTATTTCCGAAATGACCCCATCAACTGCAATGAAGTCTGTTTAAGGTTTAATCTCCGATCCTGGAGTGTTTCTTGAAGTTCAGGGTTATTTAGAGAACGTCAAAGAAATGGAGCATGACACCAGGAAAACATGTCATGTTGGAAAATGGCTTATGGTAGACTAGCAGAGGGTTACTAACTTACTATGATTTTTTATTTTTTTTTCCAAAATTAAGAAATTCGGAAATTTAACTTGGTCGTGTAACTGTATAACTTTTGGTTATCTTTCACAGTTGTATCCTGTGTAATCTATGAGTATTATGGAGTATTTTTAATGCTTCTCATTCAATATCAAGATGTACGATTAAAT GTCGTTTTTAACTTTTTAACAAACTTACTTTGAGAATCGTGCAAGCAAGTACGAAAACTTCGTAATGCAACAAAACTTTTGCCCACAACTGAAAACTAATTGTTGTTCAATTCTGCCCAAAACCAGGACAAGACCTCCAAATTAAACAACCAACCCATTCCCCCCTAAAACCTCAAAATTCATCATTATCCCACAAATGCCTCCATCTACACCTCCACCATCCCCCCACCCACCTTCCAACTCCGACCCCATCGATAGCGCCGCTGAAATCCGCCTTCGCGAGGCAGAAGAACGGCTCAAGGATGCCATTGAGGAGCTCCAGCGCCGCCAGCTCAGTCGCGCCGCGGCAGCGCGTGGGCCTCACTGCCCTCCCTGCGATCACCCTGACGATTCCTGCGTTGCTCACGCCATCGGTAACCTCTGCCAGAGCTTCCTCCTCTCATATGGCGTTCGTGTTGGTATCGGCATCCTCTTGCGCGCCTTCAAGCTTGCTCGCGGTCATTCTTACTCCTCCCTCCTCGATCTCAAGCAACTTGTCTCAGAGAAGGATCTGATTGTTAGAGAGGAAGCTTGCCGTGTTGGGTTGCTTTTTGGTGGTTTTACAGGATCCTATCATGCCCTAAGATGTATACTGAGGAAGTGGAGGAGAAGGGAAACCCCCCTTAACGTAATCTTAGCAGGTTCTGTTGCAGGCTTGTCGATCTTAGCATTAGGTGATCCCAACCAAAGGCGTACTCTAGCTTTGTATCTTTTTGCTAGGGTAGCTCAGTGTGCTTATAACTCTGCTAAATCCAAGAACAAATTTCATCTATGGGGAAGCCACTGGAAGCATGGAGATTCCTTACTTTTTGCTTTGTCATCTGCACAGGTCATGTATTCTTTCATAATGCGTCCTGAGAGCTTACCAAAATCCTATCAAGATTTCATTCAGAAAACAGGGCCAGTGGCACAACCTGTATACAAGGCTGTCCGAGATTGTTGTAGAGGTAGCGCAGTGGATGTGGCTTCATTGTCAGCATATTTGTTGAGTAGAGGGGTCCAAAATTCAGTGCCCCTGGACGAGTTCCCCTCCATTATTCCCTGCTCCGTCATTCATCCAAACACCCAGTCATGTTTAGCTCATGATATGAATGCAGCATCGGCTACTTTCAAGAAAACCTTTCCTCTCTATTTCTCGCTGACCTTTGTACCTTTCGTGGTTCTGCATCTACAGAAGTTCTTGGAAACACCAGCTCAAACTTGTTGGCGTGCTTCTAAAGAGGCTGTTCGCTCAACTACATTCTTGTCAGCATTTGTTGGGATCTTTCAGGGTGTTATTTGTTTGCACAGAAAAGTGGCGTCAAAAGACCACAAACTTGTATATTGGATTTCAGGTGGACTTGCTGCCCTTTCTGTGCTGTTTGAAAAGAAAAGTAGGCGGAGTGAACTTGCTTTATATGTTCTTCCGCGTGCCGGGGATTCTTTATGGTACATATTGGTAAATCGCCATTTACTTCCACGTATTAAGAATGCTGAGGTGGCTTTATTTTGTGCTTGTATGGGTGGGATCATGTATTATTTAGAGCATGAGCCTGACACGATGGCTCCATTTTTGCGTGGCATATTACGCCGCTTCTTGGCAAGCCGAATTAGTAATCCTAGCCCTCCGCCAAATCGTAATGCTTCATATGCATATCTACAGACTCTCGAGGTCATGGAAAAACCGAGATTACAGACAAAGAAGGAAGAAGCTACCGACAAGTCTTCTGCTAAGTATAACCTTGAGTCTATTTCAGGACTCTGATAATCTTTAAATGATAACCCAACTTATCCGATGATTATTCAACACATTGTTTTTAGCCATCTGGGCCACTATATCAGATGCTTGAATTAGTGTTCCACCACCCTATTGATTAGGTTTAGCTCTTTAGAATAGAGTTTCTCTTCCTCTCAACTTTTTTGCAAAGTAGGTTACGTTTCAGAATACGAAAGGGAGATTCATGTGCTTGATTAAAATGGGGAATAATCTATGGTAACCCCGTTTTGTTGCGCGATAGGTTATTTCCGAAATGACCCCATCAACTGCAATGAAGTCTGTTTAAGGTTTAATCTCCGATCCTGGAGTGTTTCTTGAAGTTCAGGGTTATTTAGAGAACGTCAAAGAAATGGAGCATGACACCAGGAAAACATGTCATGTTGGAAAATGGCTTATGGTAGACTAGCAGAGGGTTACTAACTTACTATGATTTTTTATTTTTTTTTCCAAAATTAAGAAATTCGGAAATTTAACTTGGTCGTGTAACTGTATAACTTTTGGTTATCTTTCACAGTTGTATCCTGTGTAATCTATGAGTATTATGGAGTATTTTTAATGCTTCTCATTCAATATCAAGATGTACGATTAAAT ATGCCTCCATCTACACCTCCACCATCCCCCCACCCACCTTCCAACTCCGACCCCATCGATAGCGCCGCTGAAATCCGCCTTCGCGAGGCAGAAGAACGGCTCAAGGATGCCATTGAGGAGCTCCAGCGCCGCCAGCTCAGTCGCGCCGCGGCAGCGCGTGGGCCTCACTGCCCTCCCTGCGATCACCCTGACGATTCCTGCGTTGCTCACGCCATCGGTAACCTCTGCCAGAGCTTCCTCCTCTCATATGGCGTTCGTGTTGGTATCGGCATCCTCTTGCGCGCCTTCAAGCTTGCTCGCGGTCATTCTTACTCCTCCCTCCTCGATCTCAAGCAACTTGTCTCAGAGAAGGATCTGATTGTTAGAGAGGAAGCTTGCCGTGTTGGGTTGCTTTTTGGTGGTTTTACAGGATCCTATCATGCCCTAAGATGTATACTGAGGAAGTGGAGGAGAAGGGAAACCCCCCTTAACGTAATCTTAGCAGGTTCTGTTGCAGGCTTGTCGATCTTAGCATTAGGTGATCCCAACCAAAGGCGTACTCTAGCTTTGTATCTTTTTGCTAGGGTAGCTCAGTGTGCTTATAACTCTGCTAAATCCAAGAACAAATTTCATCTATGGGGAAGCCACTGGAAGCATGGAGATTCCTTACTTTTTGCTTTGTCATCTGCACAGGTCATGTATTCTTTCATAATGCGTCCTGAGAGCTTACCAAAATCCTATCAAGATTTCATTCAGAAAACAGGGCCAGTGGCACAACCTGTATACAAGGCTGTCCGAGATTGTTGTAGAGGTAGCGCAGTGGATGTGGCTTCATTGTCAGCATATTTGTTGAGTAGAGGGGTCCAAAATTCAGTGCCCCTGGACGAGTTCCCCTCCATTATTCCCTGCTCCGTCATTCATCCAAACACCCAGTCATGTTTAGCTCATGATATGAATGCAGCATCGGCTACTTTCAAGAAAACCTTTCCTCTCTATTTCTCGCTGACCTTTGTACCTTTCGTGGTTCTGCATCTACAGAAGTTCTTGGAAACACCAGCTCAAACTTGTTGGCGTGCTTCTAAAGAGGCTGTTCGCTCAACTACATTCTTGTCAGCATTTGTTGGGATCTTTCAGGGTGTTATTTGTTTGCACAGAAAAGTGGCGTCAAAAGACCACAAACTTGTATATTGGATTTCAGGTGGACTTGCTGCCCTTTCTGTGCTGTTTGAAAAGAAAAGTAGGCGGAGTGAACTTGCTTTATATGTTCTTCCGCGTGCCGGGGATTCTTTATGGTACATATTGGTAAATCGCCATTTACTTCCACGTATTAAGAATGCTGAGGTGGCTTTATTTTGTGCTTGTATGGGTGGGATCATGTATTATTTAGAGCATGAGCCTGACACGATGGCTCCATTTTTGCGTGGCATATTACGCCGCTTCTTGGCAAGCCGAATTAGTAATCCTAGCCCTCCGCCAAATCGTAATGCTTCATATGCATATCTACAGACTCTCGAGGTCATGGAAAAACCGAGATTACAGACAAAGAAGGAAGAAGCTACCGACAAGTCTTCTGCTAAGTATAACCTTGAGTCTATTTCAGGACTCTGA MPPSTPPPSPHPPSNSDPIDSAAEIRLREAEERLKDAIEELQRRQLSRAAAARGPHCPPCDHPDDSCVAHAIGNLCQSFLLSYGVRVGIGILLRAFKLARGHSYSSLLDLKQLVSEKDLIVREEACRVGLLFGGFTGSYHALRCILRKWRRRETPLNVILAGSVAGLSILALGDPNQRRTLALYLFARVAQCAYNSAKSKNKFHLWGSHWKHGDSLLFALSSAQVMYSFIMRPESLPKSYQDFIQKTGPVAQPVYKAVRDCCRGSAVDVASLSAYLLSRGVQNSVPLDEFPSIIPCSVIHPNTQSCLAHDMNAASATFKKTFPLYFSLTFVPFVVLHLQKFLETPAQTCWRASKEAVRSTTFLSAFVGIFQGVICLHRKVASKDHKLVYWISGGLAALSVLFEKKSRRSELALYVLPRAGDSLWYILVNRHLLPRIKNAEVALFCACMGGIMYYLEHEPDTMAPFLRGILRRFLASRISNPSPPPNRNASYAYLQTLEVMEKPRLQTKKEEATDKSSAKYNLESISGL Relationships
The following mRNA feature(s) are a part of this gene:
Homology
BLAST of Spo12179.1 vs. NCBI nr
Match: gi|902206758|gb|KNA15571.1| (hypothetical protein SOVF_096910 [Spinacia oleracea]) HSP 1 Score: 1053.9 bits (2724), Expect = 9.300e-305 Identity = 527/528 (99.81%), Postives = 527/528 (99.81%), Query Frame = 1
BLAST of Spo12179.1 vs. NCBI nr
Match: gi|731331569|ref|XP_010676728.1| (PREDICTED: uncharacterized protein LOC104892477 [Beta vulgaris subsp. vulgaris]) HSP 1 Score: 919.5 bits (2375), Expect = 2.700e-264 Identity = 460/528 (87.12%), Postives = 494/528 (93.56%), Query Frame = 1
BLAST of Spo12179.1 vs. NCBI nr
Match: gi|802770046|ref|XP_012090525.1| (PREDICTED: uncharacterized protein LOC105648671 [Jatropha curcas]) HSP 1 Score: 835.9 bits (2158), Expect = 4.000e-239 Identity = 418/527 (79.32%), Postives = 465/527 (88.24%), Query Frame = 1
BLAST of Spo12179.1 vs. NCBI nr
Match: gi|255539941|ref|XP_002511035.1| (PREDICTED: uncharacterized protein LOC8289682 [Ricinus communis]) HSP 1 Score: 835.9 bits (2158), Expect = 4.000e-239 Identity = 423/526 (80.42%), Postives = 465/526 (88.40%), Query Frame = 1
BLAST of Spo12179.1 vs. NCBI nr
Match: gi|568863169|ref|XP_006485030.1| (PREDICTED: uncharacterized protein LOC102609314 [Citrus sinensis]) HSP 1 Score: 830.9 bits (2145), Expect = 1.300e-237 Identity = 407/510 (79.80%), Postives = 457/510 (89.61%), Query Frame = 1
BLAST of Spo12179.1 vs. UniProtKB/TrEMBL
Match: A0A0K9R7V0_SPIOL (Uncharacterized protein OS=Spinacia oleracea GN=SOVF_096910 PE=4 SV=1) HSP 1 Score: 1053.9 bits (2724), Expect = 6.500e-305 Identity = 527/528 (99.81%), Postives = 527/528 (99.81%), Query Frame = 1
BLAST of Spo12179.1 vs. UniProtKB/TrEMBL
Match: A0A0J8F8S3_BETVU (Uncharacterized protein OS=Beta vulgaris subsp. vulgaris GN=BVRB_5g102530 PE=4 SV=1) HSP 1 Score: 919.5 bits (2375), Expect = 1.900e-264 Identity = 460/528 (87.12%), Postives = 494/528 (93.56%), Query Frame = 1
BLAST of Spo12179.1 vs. UniProtKB/TrEMBL
Match: A0A067JF66_JATCU (Uncharacterized protein OS=Jatropha curcas GN=JCGZ_26323 PE=4 SV=1) HSP 1 Score: 835.9 bits (2158), Expect = 2.800e-239 Identity = 418/527 (79.32%), Postives = 465/527 (88.24%), Query Frame = 1
BLAST of Spo12179.1 vs. UniProtKB/TrEMBL
Match: B9RA10_RICCO (Putative uncharacterized protein OS=Ricinus communis GN=RCOM_1502640 PE=4 SV=1) HSP 1 Score: 835.9 bits (2158), Expect = 2.800e-239 Identity = 423/526 (80.42%), Postives = 465/526 (88.40%), Query Frame = 1
BLAST of Spo12179.1 vs. UniProtKB/TrEMBL
Match: V4VD29_9ROSI (Uncharacterized protein OS=Citrus clementina GN=CICLE_v10031244mg PE=4 SV=1) HSP 1 Score: 829.3 bits (2141), Expect = 2.600e-237 Identity = 407/510 (79.80%), Postives = 457/510 (89.61%), Query Frame = 1
BLAST of Spo12179.1 vs. ExPASy Swiss-Prot
Match: TM135_BOVIN (Transmembrane protein 135 OS=Bos taurus GN=TMEM135 PE=2 SV=1) HSP 1 Score: 66.2 bits (160), Expect = 1.200e-9 Identity = 48/201 (23.88%), Postives = 94/201 (46.77%), Query Frame = 1
BLAST of Spo12179.1 vs. ExPASy Swiss-Prot
Match: TM135_HUMAN (Transmembrane protein 135 OS=Homo sapiens GN=TMEM135 PE=2 SV=2) HSP 1 Score: 64.7 bits (156), Expect = 3.500e-9 Identity = 47/201 (23.38%), Postives = 93/201 (46.27%), Query Frame = 1
BLAST of Spo12179.1 vs. ExPASy Swiss-Prot
Match: TM135_MOUSE (Transmembrane protein 135 OS=Mus musculus GN=Tmem135 PE=2 SV=1) HSP 1 Score: 63.9 bits (154), Expect = 5.900e-9 Identity = 47/201 (23.38%), Postives = 97/201 (48.26%), Query Frame = 1
BLAST of Spo12179.1 vs. ExPASy Swiss-Prot
Match: TM135_RAT (Transmembrane protein 135 OS=Rattus norvegicus GN=Tmem135 PE=2 SV=1) HSP 1 Score: 63.9 bits (154), Expect = 5.900e-9 Identity = 47/201 (23.38%), Postives = 97/201 (48.26%), Query Frame = 1
BLAST of Spo12179.1 vs. ExPASy Swiss-Prot
Match: TM135_XENLA (Transmembrane protein 135 OS=Xenopus laevis GN=tmem135 PE=2 SV=1) HSP 1 Score: 58.5 bits (140), Expect = 2.500e-7 Identity = 42/160 (26.25%), Postives = 78/160 (48.75%), Query Frame = 1
BLAST of Spo12179.1 vs. TAIR (Arabidopsis)
Match: AT5G51150.1 (Mitochondrial import inner membrane translocase subunit Tim17/Tim22/Tim23 family protein) HSP 1 Score: 789.6 bits (2038), Expect = 1.200e-228 Identity = 398/527 (75.52%), Postives = 448/527 (85.01%), Query Frame = 1
BLAST of Spo12179.1 vs. TAIR (Arabidopsis)
Match: AT1G34630.1 (BEST Arabidopsis thaliana protein match is: Mitochondrial import inner membrane translocase subunit Tim17/Tim22/Tim23 family protein (TAIR:AT5G51150.1)) HSP 1 Score: 141.4 bits (355), Expect = 1.600e-33 Identity = 111/420 (26.43%), Postives = 186/420 (44.29%), Query Frame = 1
The following BLAST results are available for this feature:
BLAST of Spo12179.1 vs. NCBI nr
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. NCBI nr) Total hits: 5
BLAST of Spo12179.1 vs. UniProtKB/TrEMBL
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. UniprotKB/TrEMBL) Total hits: 5
BLAST of Spo12179.1 vs. ExPASy Swiss-Prot
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. ExPASy SwissProt) Total hits: 5
BLAST of Spo12179.1 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
|