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.TAAAACAACATCGACAATTCGACATTGGAAACTACCACAAGTCTACGACACACCCGTAAATCCGTAATCACGTATCAGTGTATCACAATTTCATTTCCGGTTATTCGTATTTTCGTTTCTCCAACTTCTTTCTTCATTTCTTTAAAATCTGTTTCGGTCTTGTTCACATTTTCTGGGTCAGAACTTTTAGTCTTCTCTCCTGCATCCTGGAATCATCTCGAAGCTCTCTATATACAGAAACTGAAGAAGAGAGACTAAGATGTCACCAGCGGCGGCCTTGTCTGCGGTGGCCAAACAGGCGGAGCTACTGCGACAAGACGGCAATAACTGCTTCAAGAAATCCAGGTTTGGAGCTGCCATTGATGCTTACACTGAGGTATTTCTCTCATTTTCCCTCTTTTGATTTTTCATTTCTTATTGTTGATTTTTTTTTATAAACAAGATCATGTTTTACGTTCATTGAACACCAAAATTGAAAAATCAAAGCGATATTTTTTCGGTTGGAACATTTTGATTGATGAATTTGGTGGGAATTTTGTAGGCGATCGCTTTATGCCCTAATATCCCGATTTATTGGACCAATCGTGCACTATGCCATATGAAAAAAGAGTATGTATCTGTTAAAATTCATTAATTTTTGGTGATTTTATCGTCCATTTTCGTTTTTGTTTTGATTGCAGTTTTCCTTTTATTCTTGTAGTAATTGGGAAAGAGTTGAAGAAGATTGTCGAAAAGCAATACTACTTGCCAATGGCTCTGTCAAGGTTGTTAAATGGTTTTTCAGTAATTAGCTTCTTTTCTTCATTTTTCATGGCTGGCTTGCAGTTTGTGGTAATTTTGTCTCGGAATTCTGTTTCCGGAAAATGAGATAGTGTTCTCAAGACTCGAACTTTACTTGCCTTGGTTATGACTTTGTGACATTGCACCAAGAAAGAAGTTAGGAAATATTCTGTTTCTTCTTGGAATGTTAAACGAGTCACTTGTCTTGGTAGGATTTTGGAACACAACTAGAATTTATTCATCGTTGATGTGTTGGTTAGGAAATCAGCTGAACTCTCGTGGGGGGAAGTGGATGGAAGTTGTTTTTCTAAAGAAGCTTGGGGTGTATGATCTATATTCTTATTGTATTTCTGTATTGTTTATGGTCAAGTGTTACTTTGGTAAACTCGAGTCATTTTAAGGAGTGATTGTGATTAGGAATTGAGTAACAAGAAATATATTTTTAGTTACTCACCTCTTTTCAAAACAAAAAGCAACAAGGAAAGTGAGATTTATACATAGTATGGATTAGCTGCCAAGAGACATTTTGATTGGACCTTTAAGTTTTAGGATTCATTGCCCAAGCGGTTTGAGCTAACACTCACAACTTGAGGTGAACAAAAAAAGACGCTTTCCCCTGCATGTCACCTAGCCAACTAGCAGCCTCATCTCTAAAATGAACAATATTAGCAACTTTTAGGCTAAGTTTTATGGTGAGATTGTGATATTCCTTTCTTCCCACTTAGGCAAATACTTTTGGCAAGAAGTGTTCTGCATATTTGGAAGTATTCTATATTTTGCGTGGTAACAACGTAGTGAAGCATTTCATCCCAACAGAAAGAAGCAATGGGCTGTAACCACTATAACAGAACTTTCCACACAGCTGCAGAAAAGAAATATTTCTAAAAAATCTTCAAATGTGCAGCACTCCCTGGGAATTTCCTTACAAAGTTCTGTCTAAACTATCTTGGGTACCAAAATTTTGCATCCTGCTTTTGATTGGCAATCTATCTTGCACCGAAAGCCAAAGAATTAAATAAACAAATTAGCTGTTTCTCCTAGGAGAACCTTGTCCTCTTGCTGTTCTCCCCTGTGTGAGTTTTTAATGAAAATGTTATTCTTATGTAAAAGAAAGATGGAGTTTAGAGAGGTCACCGTCGAAGGCAAGTAAATTATTTGAACAAGATGAGCTGGTAGCTCCTAGACAAGAAAGCACTGTGCTGTATTTGGGAGTTACTTTTTGTAATGCGCTGCAACAATTAGTTAAAGATGTTCTGTGCTTGTAGTGAGAGGCTCATAGATGATGCAAATGACTTTCCCATAGGTTGCCCTATATACTCCAAACTATTGCTGTTGGTGACACAGAGATGGATGGGTTAACGCCTTAAATTGTTGAATGCTTTCTTTGGGTTGTTCGCTTTCCTCCACTACACTAGACAAGATATTACTCTTATAAGGGGGTTCCAGTAGTTGGATGCTTTTGAAAGTCCTTTGAGAGGAAAGGGAAGAGAATGGAGTCAAGCGTAATATTTTGTTGGGTTTATGGAGTCCCTTTTGATTAGAAAGCAAAGGGAGTATAATTAGTTTATGTTTACAGTGTCAGTATAACTTTCTAAATCCCTTGCCTCAAAAGACTGAACTTATTCTCTTCTTTATGCTGAAGGGAGGATTTGTCCTGTGTTAAACAATCATCAAGTCATGTAGCTATTTCCTTTCGTTCTTTGGTGTTCCCCATGCTCTTTTATGGACATGTTATGCAGGATAGAAAGTAGGAAACAGCTCATTAGATACATGGTAGGACATCTATGAGAACACTAGATCATGGAGTCAACACTTTCAACAATAAAGGGTTTTGCTTGGATGAGGAGGGTAAGAGAAAGAAAGCATGCATTTTGGTATTTTATTCTATTATTATTACTGCAATTATAGTCTGCTACGATTTACAAGAAACTTGAACATTCCATACGTGAATGTTGTATGTTATATGGGTTGAGAACTAAGGCGTTAATACCAGGCTTCCTTACTAAGAGGTTATCTTCCGAGGGTTAAAAAACCAAGGGTTCGGGGTTCCACTAGCAGATTTAAGATACATCTAAATTCTTGAATCTCTTTGTGTATGTCTGTAAGCTGGAGGTAGACAGGAGAGCCTAAGTCAGGTCCCCTGTCCTCCTGAGGAGATCCTGCTGAGTGCTTGGTTGGATGCATTTTTTGTTCTTTGTGCCTAGACTTTCGTTGGCTTCAGCTTTTTGTCAATAAGCTGGAGGCAGAAAGGAGTCACAGGAGAGCCTGAAATCCGAAACCCTCCCCTTTCTGAGGAGATCAACCTGTTGAATGCTTTTAGATTTTTAGTGTTTTCCATTCAGATTTAGCTGTTCTTTCTGCCTAGAGTTCGTCTGCCTTCAGCATTGTTAGGTAGGTTTTGTTCTGCTCATTATTTCAAAATAACTTGAAGGGTGGGGAGCTGAAAATAGAGAGCCAGTAATAGATTGGCACTCATTTGGAAGGGACACATTCCATAACGTTGAAGATTGTGCATAATGAGTTCTATCTAACTGGAATATTATGGTAGGCCTTGTGGGATTTGGAAAATGAGAGCATTTTTTAATCATTGGTAGATGGGATTGTGAGGGTGTAACGTGTAATTGTGTATTTTGAGTTTAAAAATGGTCACCCTATATACAGTATTATCAAGTAGTGGACACAGTATGGGAATATGTATCTCAGTGAGAAAATTAGTTGTGGGGCATTATGCATTATTAGTATGCTTTTCATGGGAGTTTGTTTTTCCTCCTTTGATAAACAAGGACTTGAATGTACTAACAGTAACTGTTCAGTTCAGTGACCCATAACACGGGTTAATCTGCCTTACAGCTTTTCGGGTTGAGCATCTCGAAATTCGGGGCATGTCCAACCACATAGTTTTAAAGTACAACTAAGCTTGTCTGACTTGTGGAGCAACCTTAAGTGTTGCCTAGGAGTTCTGGCATGATCAAGTCACAAATTGCTATGAGAAGTATTGAAATAAAGGAATTTCTTTCAGAACTAAGATTTGAGTGGGAAATTTTAAGATTTATAAATAGAAGAAGAATGGACAATGCGGTTCTCGTTTAGTTGGGGATGGCTAGTAGAACAACTTCCTTTATGCTGTCCATAGAGGTGGCTTGATGTCCCAGACTCCCAGCTATCTTCTTTGGTAGTGCTACAGATTTCAATATTGAAATTCACATGAAGCTTTGTTTTCTCTTCTATTTTTTGACTCAACTCTTGCCTTTTGTCTTGATTAAACTTATTTTGACCTATTTTCTGTTCCCCTTTCTATTTTCTTTGCACCAGTCATTGGTGTGGCACACTTACCACTAATAATTTATAGTTAGAACAAGATTGTTTTTAACATTTAATTATTCCAGCGCCTCTATCTTTCTGGGATAAGGGGGTTGCGGTGTATTTCTAATGTCAAATGGATTACATATACTCCCTCCGTTCCTAAATAAGTGTCACATTTGGGCTCCGGCGCGGTAATTAATAAAATTGTAAAGTGTGTAAGAGTTAATGATTGGGAATGTTTTTTTTTGGGAAAAGGATAAAGTAGATAATTGTTTAATTGAATAAAGTACAAAAAAAAAGTGGATGTGGGGATTGAAAAGTGGAAAAGTGTAGAATGTGTAAGTAAAAATAACGGATTTTTCATGAAATACCCCCGAATTTTGGCGTAATTCACCAAATGCCCCTCGACTTTCAGAAATTCATAAGATACCCTTATTCCAATACTTAATGTACCAAATACCCCTATGACGTCATCAACCCTAATTAATCCACTTAACCCACCCATTAACCCATTTTTCCCTTAATTACTTTTTCTTTTCTCTCACCCCTTTCCTTCTTCCTTTCCCATTAACCCACTGTAATACGATTTCACCGGCAGCCACCCCCATTTTCTCTCTCCTCGCCTTCCTCTTCCTCTCCTCCGCCGCCGCCGTAAAAGTCTCCCCATACACCTTCGGCTCGACCACCACCATTAATTATAAACACAAACAACTGTCTGATTTCCGGTAGTTCTCATATTTTCCGGCTTCTCTAATCAATTTTTCCGGTAAAAATCAATCAATTTTTTGGGCAAAAATCAACCAATTTTTTGTGCGAATTAGAAATTGAAATTCCGGAAACTCGGAATTGCCTATGTCGGAGACTCGGATCTTGGAATTGTGGATTAAAGATGAATTTGGGAAGATCAATAAAAAATACGAGTAGTTTATGCCTGAAAATTAGAGATTTTGGTAAGAAATCATATACTGAAGATGTAATTGCGAAAAATCTACAGTTGTGTGTCGAGATCCCTTTGCTGTACGTAATTGCTATGTTGTTCGTTTTTTCTACCTGGAATTCAGGAGTTTGGATTTTTTTTTATTATTATTTTGATTAATTTTGTGCAATCAATTGATTGAATTTCTGGGGAATTTGCGGAATAGGATGTGGATGTAATTGTGGGAGGAGAGAGAGTTGATAATTGACATAGACTTGAGGTCAGAATTCGAGGTTGCAAGATCAACAAAGACCTACAAATCAATCCTTTTGTATTCTCTATGAAGCAGCAAATCAAAGCCTTAAGAAGAAGGGTATGCACATCCCTCCCTGGAGAAAAGCTGATAATTATGTTCAATCCAATTGGCTCTCCCCACCTACCCGAATCTCCACCACCACAACTGCCATTGTTACCGCCACTCCACCACTGAGCCCACTCTCCCCAATGACCTTTATAACCAACTCCGACGGGCCGAGCCCATTTCTTAAAATCTATGTTGGAAACTCGGAATTTGGAATTTTGGATTAGAGATGAAGGGGAAAGGTCTGTAGGAAGGGAAGGGGTTAATTAATTAGGGAAGGAGGTAAGAGGAGATATGGTGTTGTTATTGTAGTTTGGTAGCGGAGCAGCTGGCGGCAGACATGGGTGAAAGAGGAGATATGGTGGTGTTATTGTTGGATATGATATCTTGATTTCTGGGTGGATTAGTGGGTTAATGGGTGGGTTAATTTGGTTTGTTAATGGGTGGGTTGATTATGGGTGTTAATTAGAGATTAGTTGGGTTAATGAGACGATAATGGGTTGATTATAGGTTTGATGACGTCATTAAATATATTTGGTGGATTAAGTTTTGAAATAGGGGTATTAAGTACATTTAGTATTGGAATAGGGGTATTTTATGAATTTCTGAAAGTCGAGGGGCATTTGGTGAATTACGGCAAAATTCGGGGGTATTTCATGAAAAATCCGTAAAAATAATCATGATTTATAAAAAAGTGAGAAAAGTGTATGGAAAAGTGTGAAAAGTGTATGGAAAAGTGGGAAAAGTATATGTTCAAAAATAGAAATGTGACACTTATAAGGGAACGCCAAAAAAGGAGATGTGACACTTATTTAGAAACGGAGGGAGTACCATTTATGACTAACAAATATAATCTTAAAGTTGAATAAACTGTCTACTAAAGAAAAACCAATTATACTTGTTTTTTTGTGGATAGGGTCTTATGTAACCATTCCGGTGCTACAAATCTATTTCAATAGCTATCCATGTAAATTTGATTTAAGTTATCGATATAGAAAACAAGGTTCATCAATGGGCAAAGACATGGATAGCCTCATTTCATGTATACGGTAAATATATTTTTGTTAGTAGAACTGTCTAAGACAAAGGGTTTGCAGGTTGATTGATTACGAATCATTTGAAACATCCTCACCCCCCACCCCACATCCCTTTCTACTCATCCGGAAAAGGGTTAAGATTCAAATAAAAAAATTATGCGTTGGCTTGTCTAGACCCAAGATAGCTGAAGCAGGTGGCTGAGTCACTGAGAACACATTGATTAATTCTTGGCACTTCCCACTGGAAGCCCCTAGCATGTTGCTTTTTATTTCTCATATTCATCCTTCCTTCTACAGTCAAGGGCTTTGCCATTTAAACCCTTAAAGATCGGTGGATTGTGACTTGTTGCACCACTCGTGAATATTTATCCTTAGGCATGGATAGATCATGTAGCTGGAGATAGAGATATGGACTTCTGTTGTTTAATATATGTTTTACGTTTTTATCAGAGATTTTTTTTGAGGGGTTTTATCAGAGACATTGTTGAGCTTTTTCGTTGATTTTATTTATCATTTATCGTCATCTTTTTTTCAATAACAGGCACATTATATGTTGGGTCTTGCGTTGCTACAGAGAACAGAGTATAAGGAAGGAGTGAAAGAACTGGAGAAGGTATGTTATTGGCTTTTCTTAAATGATGTGTATATGGTTTAACTCTATGATAGTTACTTGTCGGTCAACTGTTCTTCCTTTCTACCCCTTCCCTTATAATCTCATTACTTACCATCAGTTGAAGGCCTTGAAGCGCCTTTTACCTATTCAACTCCAGGCCTACAGACTTTGATCGTTTGTTGCTTCACATCTCAGATTTGTTATCTTTGTATGAGCGGTATATGAAATATAAAAAATAAGGAGCAACACAGGTGACAAGTGCAACTGTAAATACCATTCCGATAGTGTTGTTTACAAAGTGGGAAGACATTTTCATGTTTTATTCGTAAGCTGCTCAGCTTTTAAACTAATTGGTTCTTTGGGATTAATCTTATTTTCACATGTTCCCGGGAATGAACTTAGTCTAGCTTTTGCCCTCTCTGCAATTTTGCATGACCGCTCTGCTCAATGTGTTCTTGGCTCTAACTGGAATTTGAAATTATTATATGAAATGCTCCCTTCGTATGTTTTTAGGGGTCGCAACTACTACTTCAAGCCGTATTTTTTTAGGAGTCACAATTCCATTTTTGGTAACTTTTACACCCACTCCCTAATTGGTTATTACTTTTTATTTCTATAACCCCCCTGAAATCATAAATAATTCTATTTTTGGTAACTTTTACACCCTCTTGTTTTTTTTATATATTTCTTTATTGTCAACTACCCCACTTGCATCATTATTATATCAAATTCAACTATGTTTCCTTTGTGCCGGTCAACATGTGACTCCTAAAAAAATACGGAGGGAGTATATGTTTATTTCAGATTTTTGAGAACATTACCCTATGTCCCTATATATTCTTTTGAGGGTCTTCTGGTACATGTCACTCTTTCAAGGTTTGCTATTTGCACCTGAAAACGTTTAACTTATTGGCCCTTATGTAAACTTATTTTTTAGTTGTGACTTACACTTTTGAACCCTTGTGTGAATTTATTTGCACCTGTTATGAATTATTAGGACTTGTAAGACATGAAACTTATTGTTGTTAGGTCACTTAGGTGAAAAATGAAAAGAATAGGGCCTTAGGGTTAGGTAACACTTGAAAGAAAAACCGTGCATATCTTTGACCTTTTCACAACGTGTGTGAGGTCTGTATTAGATTTGTACTGTGTAATGGTGGTTGTGGACTTGTTTTAGTGCTCATGTGATCACTGCAAGAGCAATTTTTCTAAGATGGTTTGATATGAAGGCTCTTTTTTTTCAAATTCTTTGGTAAAGATTTTTTGGGATCTTCCTATTGATGTTGGGGGTCGTAAGACTTCTACCTGGTTATTGGGCGAGTTGGGTAAAAAGGGTCGTTCTTATGATGCGGTTTTTGTCAAGTTTGGACACGAGTCAATATCAGGTCAATAGTGAGAGGGCTAATAAACGAGCAAGAAAACGAAGAGGAGGGAGATAAAAGTTAGTACATTTGAATATGTAACTATACATTTAATTATTTTGACCTTGTCTATATTTTCTTTTACAAATTATAGGGCTATCACTTTAACCCTGTAATGAACTAATGACCCTTTCTAACAAAGAACATGTCCATTACCTTAATCCTAACCCTATACTCATTGAATTACACTGTCCAATAACCACTCTAGCTACTAGGTCTTCAAAGATGTAATCCATTGTCTAATTGATTACTTGTACAGGTCAAGTATCTGTGCTAAGCTGTTTTGAACTTTTGAAGTATTTAATAGTTCTAGGATGTTTGTATAATTGTCTCTATAAATCAGTAACAATGATTACATGAATGTTTAATGGTTTGGAGTTCCTTTTAAGTGTGTCCTTTGGGATGCTCTATGTGTTCCTTTTACTGTTGAGATTTGATGCCATGTTTCCTCTCAGTTTTGGTCAATAGTTTGGTGTCGATATGAAGAGCAAGGAATGATTTGGTAGTATTGTCATTCTTGGAAGGACAATCTTTATGTGGTTCTGCTGTTCTGTTTTTATCAGCTTTTTATGTATTGAGCATTTGGATTTTGGACTTATATATATGTGGTTATGACTTCAAGATTGTTCTTGTGGCAAGTTTGGGTACATAAAGCAGGGAAGGTTTGGGTAATAACTATATAACATAAAATCACTACTCTCGGTAGGGCTGTTTTCATATGCTATTGTATACTTAATTTTTATTGGACATTGGCTGTGTTCTTGCGTTCAACAAAATTGGAGGCTTCTATTGTATACTTAATTTTTATTGGACATTGGCTGTGTTCTTGCTTTCAACGAAATTGGAGGCTTCTATTATGTGTCCAGAATGGAAACAATTACGAATTTATGATGATGATATCAAAATGGTTTTTGGAAGTTACAGATCCTGTGAGGTCGTCTCATGGTGGATATGGTAAATAGGTACTGTAAGTTGCTGAGGTAGACACGTGTCTTGGTCTTTATTCTGTGGAAGAAAATTTTGTGCATCATTAGTTGGATAATATTTACAACTTCAAATGTGGAGTTAAGGACAAAAGGATGTTGTAGCAGATTAAGTCCTTGTGCAAAAAGTACTTGCTTTCATTTTGGGACTGTAAGTTTGCATAACTGTTGGTTGCTCGACTTGCAGTAGTTGTTAGTTTCTATTCATTCAAGCGGTTCTCAACAGTTAAGAATCACTTCTTTACCAAAAGTGTGTTTTACACCTTTATCCCCTTTTATTCTTGGGGAGGGATGTCTTGGAGGAGCTTTCAGTCTATCAGATTGTCAAGGTGAATGTAAGTACCCAACTTCCCAAGGTATACAACCACTTTGAAAGTTTGGGTATATGGTCGTATGACAGGATGTATCCTGCTCCTGGTGTCATTAGGGGTGGCTGTAGCGAGAATTGGAGGTTTTAGATTGTGCTGTGTGGTTGAGTAATTTGTTCAGGAACTTGTGGATCCCAATAATTCTTAGAACAGGTATTGACTCTGTAGTTGTCGGTGCTGTATGATTGTTGACAACAGTTGATCATTCTATTTGCTGCATGACTTACAGGTCCTGATGATTTTTTCTGCGATTCTCTTTTCCTGTTAATTGTGTTTATGATATGATTCATATGAATAAAGTTATCAAACTTTACGTGCTATTGACTTAGTATTCTGTAACTTCACTGAAAATACTGAGTATTCTGGACGTTCAGGCTTTAGATCTAGGAAGAGGTGCAAATCCAAAGGGATATATGGTAGAGGAGATCTGGCAGGAGCTCGCAAAAGCAAGATATTTATTGTGGGAACAGGAATCTAGCCACCGTTCATGGGAATTGCAGACGTTGAAGTATGCAATGTTTTAAATTAGCTTTTTCTGATCACTTCTTTTATGTATCATAATTTATATTGAAGTTCACTTTGGTTTCCATTTTGTATATCACTCAGAGAAGCATGTGATGAGGCTCTTAAGGAGCAACATATAATGGATTCTTCCAAGTTGGAAGGATTTATTAACGAAGCTGATGTTGGCCTTATGAATCAGTTAAAGGCGCTGGAAGGTGTTTTTAGGAAAGCTGCTGAACAGGACATCCCCTCTGAGGTACTTAAACACTTGTATGGCAGTTTTTTTAGATGTCTTTGAGTACTTCCTTCGGCGGTTTTTAGTGCACAAAACACTAATCATGTTTTTTCAGGTGCCTGATTACTTATGCTGTAGAATCACACTTGACATATTCCGCGATCCTGTCATTACACCGAGTGGAGTCACTTATGAGAGAGGCGTTCTCCTTGACCATCTTGAGAAGGTTCAGTTCGTTTCTTTTATGGGGGTTAAATTTGTTTTTTTATTGCATACATATATTGTCATGATGTTGACATTCAATGGATCTCTTAGGTGGGCAAGTTTGATCCAATCACGCGTGAACCACTTGATGAATCCCAGTTGATACCAAATTTCGCCATTAAAGAAGCAGTTCAGGCATATCTAGATGATCATGGGTGGGCTTATAGGACAGATTAGAAGTGATTAACCCAACTTTTTGATTTCAATGTCACAAGGATCTGGTCTGAACCAAAAGTGACCCGAGCTCAGTGGCACGTGATCTTCCCATGCTGGTCTTATTACAAATCACATTTTACCGGTGCAATTCTTTGTACGTTTTAGTGTGATACTGTCATTGAAAGATCATATTTATCTTTTAAATTGTACAGTTATTGTGAGACATAGTTGAGGACTGGGGATTGTAAAGCTTGTAGTCTTGTATCCTGTACAGTCAGAAAACTTTTGTGACCCGAATTGGGAAAACATGAAATGAAAATTTTCCCTTGGGTGCAAAACCAAGAGTGAATGGCCTCTAATTCCTGTTTTGTTATTGAAAATTCCATTGTTATATACTGGAGTTGTTTGCTGGTTTAACAGAGAAATCTGATTTATAAAAATCCTGATCTACAAATTTACATTTTTGG TAAAACAACATCGACAATTCGACATTGGAAACTACCACAAGTCTACGACACACCCGTAAATCCGTAATCACGTATCAGTGTATCACAATTTCATTTCCGGTTATTCGTATTTTCGTTTCTCCAACTTCTTTCTTCATTTCTTTAAAATCTGTTTCGGTCTTGTTCACATTTTCTGGGTCAGAACTTTTAGTCTTCTCTCCTGCATCCTGGAATCATCTCGAAGCTCTCTATATACAGAAACTGAAGAAGAGAGACTAAGATGTCACCAGCGGCGGCCTTGTCTGCGGTGGCCAAACAGGCGGAGCTACTGCGACAAGACGGCAATAACTGCTTCAAGAAATCCAGGTTTGGAGCTGCCATTGATGCTTACACTGAGGCGATCGCTTTATGCCCTAATATCCCGATTTATTGGACCAATCGTGCACTATGCCATATGAAAAAAGATAATTGGGAAAGAGTTGAAGAAGATTGTCGAAAAGCAATACTACTTGCCAATGGCTCTGTCAAGGCACATTATATGTTGGGTCTTGCGTTGCTACAGAGAACAGAGTATAAGGAAGGAGTGAAAGAACTGGAGAAGGCTTTAGATCTAGGAAGAGGTGCAAATCCAAAGGGATATATGGTAGAGGAGATCTGGCAGGAGCTCGCAAAAGCAAGATATTTATTGTGGGAACAGGAATCTAGCCACCGTTCATGGGAATTGCAGACGTTGAAAGAAGCATGTGATGAGGCTCTTAAGGAGCAACATATAATGGATTCTTCCAAGTTGGAAGGATTTATTAACGAAGCTGATGTTGGCCTTATGAATCAGTTAAAGGCGCTGGAAGGTGTTTTTAGGAAAGCTGCTGAACAGGACATCCCCTCTGAGGTGCCTGATTACTTATGCTGTAGAATCACACTTGACATATTCCGCGATCCTGTCATTACACCGAGTGGAGTCACTTATGAGAGAGGCGTTCTCCTTGACCATCTTGAGAAGGTGGGCAAGTTTGATCCAATCACGCGTGAACCACTTGATGAATCCCAGTTGATACCAAATTTCGCCATTAAAGAAGCAGTTCAGGCATATCTAGATGATCATGGGTGGGCTTATAGGACAGATTAGAAGTGATTAACCCAACTTTTTGATTTCAATGTCACAAGGATCTGGTCTGAACCAAAAGTGACCCGAGCTCAGTGGCACGTGATCTTCCCATGCTGGTCTTATTACAAATCACATTTTACCGGTGCAATTCTTTGTACGTTTTAGTGTGATACTGTCATTGAAAGATCATATTTATCTTTTAAATTGTACAGTTATTGTGAGACATAGTTGAGGACTGGGGATTGTAAAGCTTGTAGTCTTGTATCCTGTACAGTCAGAAAACTTTTGTGACCCGAATTGGGAAAACATGAAATGAAAATTTTCCCTTGGGTGCAAAACCAAGAGTGAATGGCCTCTAATTCCTGTTTTGTTATTGAAAATTCCATTGTTATATACTGGAGTTGTTTGCTGGTTTAACAGAGAAATCTGATTTATAAAAATCCTGATCTACAAATTTACATTTTTGG ATGTCACCAGCGGCGGCCTTGTCTGCGGTGGCCAAACAGGCGGAGCTACTGCGACAAGACGGCAATAACTGCTTCAAGAAATCCAGGTTTGGAGCTGCCATTGATGCTTACACTGAGGCGATCGCTTTATGCCCTAATATCCCGATTTATTGGACCAATCGTGCACTATGCCATATGAAAAAAGATAATTGGGAAAGAGTTGAAGAAGATTGTCGAAAAGCAATACTACTTGCCAATGGCTCTGTCAAGGCACATTATATGTTGGGTCTTGCGTTGCTACAGAGAACAGAGTATAAGGAAGGAGTGAAAGAACTGGAGAAGGCTTTAGATCTAGGAAGAGGTGCAAATCCAAAGGGATATATGGTAGAGGAGATCTGGCAGGAGCTCGCAAAAGCAAGATATTTATTGTGGGAACAGGAATCTAGCCACCGTTCATGGGAATTGCAGACGTTGAAAGAAGCATGTGATGAGGCTCTTAAGGAGCAACATATAATGGATTCTTCCAAGTTGGAAGGATTTATTAACGAAGCTGATGTTGGCCTTATGAATCAGTTAAAGGCGCTGGAAGGTGTTTTTAGGAAAGCTGCTGAACAGGACATCCCCTCTGAGGTGCCTGATTACTTATGCTGTAGAATCACACTTGACATATTCCGCGATCCTGTCATTACACCGAGTGGAGTCACTTATGAGAGAGGCGTTCTCCTTGACCATCTTGAGAAGGTGGGCAAGTTTGATCCAATCACGCGTGAACCACTTGATGAATCCCAGTTGATACCAAATTTCGCCATTAAAGAAGCAGTTCAGGCATATCTAGATGATCATGGGTGGGCTTATAGGACAGATTAG MSPAAALSAVAKQAELLRQDGNNCFKKSRFGAAIDAYTEAIALCPNIPIYWTNRALCHMKKDNWERVEEDCRKAILLANGSVKAHYMLGLALLQRTEYKEGVKELEKALDLGRGANPKGYMVEEIWQELAKARYLLWEQESSHRSWELQTLKEACDEALKEQHIMDSSKLEGFINEADVGLMNQLKALEGVFRKAAEQDIPSEVPDYLCCRITLDIFRDPVITPSGVTYERGVLLDHLEKVGKFDPITREPLDESQLIPNFAIKEAVQAYLDDHGWAYRTD Relationships
The following mRNA feature(s) are a part of this gene:
Homology
BLAST of Spo07618.1 vs. NCBI nr
Match: gi|902219361|gb|KNA18299.1| (hypothetical protein SOVF_072220 [Spinacia oleracea]) HSP 1 Score: 577.0 bits (1486), Expect = 1.800e-161 Identity = 281/281 (100.00%), Postives = 281/281 (100.00%), Query Frame = 1
BLAST of Spo07618.1 vs. NCBI nr
Match: gi|731374344|ref|XP_010666937.1| (PREDICTED: E3 ubiquitin-protein ligase CHIP [Beta vulgaris subsp. vulgaris]) HSP 1 Score: 503.8 bits (1296), Expect = 1.900e-139 Identity = 244/281 (86.83%), Postives = 255/281 (90.75%), Query Frame = 1
BLAST of Spo07618.1 vs. NCBI nr
Match: gi|747084449|ref|XP_011089635.1| (PREDICTED: E3 ubiquitin-protein ligase CHIP-like isoform X1 [Sesamum indicum]) HSP 1 Score: 453.0 bits (1164), Expect = 3.900e-124 Identity = 213/281 (75.80%), Postives = 243/281 (86.48%), Query Frame = 1
BLAST of Spo07618.1 vs. NCBI nr
Match: gi|823266730|ref|XP_012466064.1| (PREDICTED: E3 ubiquitin-protein ligase CHIP isoform X2 [Gossypium raimondii]) HSP 1 Score: 444.9 bits (1143), Expect = 1.100e-121 Identity = 210/281 (74.73%), Postives = 240/281 (85.41%), Query Frame = 1
BLAST of Spo07618.1 vs. NCBI nr
Match: gi|763817242|gb|KJB84089.1| (hypothetical protein B456_N004500 [Gossypium raimondii]) HSP 1 Score: 444.9 bits (1143), Expect = 1.100e-121 Identity = 210/281 (74.73%), Postives = 240/281 (85.41%), Query Frame = 1
BLAST of Spo07618.1 vs. UniProtKB/TrEMBL
Match: A0A0K9RH69_SPIOL (Uncharacterized protein OS=Spinacia oleracea GN=SOVF_072220 PE=4 SV=1) HSP 1 Score: 577.0 bits (1486), Expect = 1.200e-161 Identity = 281/281 (100.00%), Postives = 281/281 (100.00%), Query Frame = 1
BLAST of Spo07618.1 vs. UniProtKB/TrEMBL
Match: A0A0J8DXW0_BETVU (Uncharacterized protein OS=Beta vulgaris subsp. vulgaris GN=BVRB_005560 PE=4 SV=1) HSP 1 Score: 503.8 bits (1296), Expect = 1.300e-139 Identity = 244/281 (86.83%), Postives = 255/281 (90.75%), Query Frame = 1
BLAST of Spo07618.1 vs. UniProtKB/TrEMBL
Match: A0A0D2VLB3_GOSRA (Uncharacterized protein OS=Gossypium raimondii GN=B456_N004500 PE=4 SV=1) HSP 1 Score: 444.9 bits (1143), Expect = 7.300e-122 Identity = 210/281 (74.73%), Postives = 240/281 (85.41%), Query Frame = 1
BLAST of Spo07618.1 vs. UniProtKB/TrEMBL
Match: A0A0B0NPL3_GOSAR (E3 ubiquitin-protein ligase CHIP-like protein OS=Gossypium arboreum GN=F383_22675 PE=4 SV=1) HSP 1 Score: 443.4 bits (1139), Expect = 2.100e-121 Identity = 208/281 (74.02%), Postives = 241/281 (85.77%), Query Frame = 1
BLAST of Spo07618.1 vs. UniProtKB/TrEMBL
Match: A5B3P2_VITVI (Putative uncharacterized protein OS=Vitis vinifera GN=VITISV_000496 PE=4 SV=1) HSP 1 Score: 443.4 bits (1139), Expect = 2.100e-121 Identity = 214/281 (76.16%), Postives = 241/281 (85.77%), Query Frame = 1
BLAST of Spo07618.1 vs. ExPASy Swiss-Prot
Match: CHIP_ARATH (E3 ubiquitin-protein ligase CHIP OS=Arabidopsis thaliana GN=CHIP PE=1 SV=1) HSP 1 Score: 391.3 bits (1004), Expect = 8.600e-108 Identity = 182/266 (68.42%), Postives = 219/266 (82.33%), Query Frame = 1
BLAST of Spo07618.1 vs. ExPASy Swiss-Prot
Match: CHIP_HUMAN (E3 ubiquitin-protein ligase CHIP OS=Homo sapiens GN=STUB1 PE=1 SV=2) HSP 1 Score: 165.2 bits (417), Expect = 1.000e-39 Identity = 89/274 (32.48%), Postives = 146/274 (53.28%), Query Frame = 1
BLAST of Spo07618.1 vs. ExPASy Swiss-Prot
Match: CHIP_MOUSE (STIP1 homology and U box-containing protein 1 OS=Mus musculus GN=Stub1 PE=1 SV=1) HSP 1 Score: 165.2 bits (417), Expect = 1.000e-39 Identity = 89/277 (32.13%), Postives = 150/277 (54.15%), Query Frame = 1
BLAST of Spo07618.1 vs. ExPASy Swiss-Prot
Match: CHIP_CHICK (STIP1 homology and U box-containing protein 1 OS=Gallus gallus GN=STUB1 PE=2 SV=1) HSP 1 Score: 164.1 bits (414), Expect = 2.200e-39 Identity = 87/271 (32.10%), Postives = 147/271 (54.24%), Query Frame = 1
BLAST of Spo07618.1 vs. ExPASy Swiss-Prot
Match: SGTB_RAT (Small glutamine-rich tetratricopeptide repeat-containing protein beta OS=Rattus norvegicus GN=Sgtb PE=1 SV=1) HSP 1 Score: 81.3 bits (199), Expect = 1.900e-14 Identity = 39/99 (39.39%), Postives = 60/99 (60.61%), Query Frame = 1
BLAST of Spo07618.1 vs. TAIR (Arabidopsis)
Match: AT3G07370.1 (carboxyl terminus of HSC70-interacting protein) HSP 1 Score: 391.3 bits (1004), Expect = 4.900e-109 Identity = 182/266 (68.42%), Postives = 219/266 (82.33%), Query Frame = 1
BLAST of Spo07618.1 vs. TAIR (Arabidopsis)
Match: AT2G42810.2 (protein phosphatase 5.2) HSP 1 Score: 68.2 bits (165), Expect = 9.400e-12 Identity = 32/95 (33.68%), Postives = 52/95 (54.74%), Query Frame = 1
BLAST of Spo07618.1 vs. TAIR (Arabidopsis)
Match: AT3G11840.1 (plant U-box 24) HSP 1 Score: 65.1 bits (157), Expect = 8.000e-11 Identity = 31/79 (39.24%), Postives = 51/79 (64.56%), Query Frame = 1
BLAST of Spo07618.1 vs. TAIR (Arabidopsis)
Match: AT5G42340.1 (Plant U-Box 15) HSP 1 Score: 64.3 bits (155), Expect = 1.400e-10 Identity = 43/141 (30.50%), Postives = 65/141 (46.10%), Query Frame = 1
BLAST of Spo07618.1 vs. TAIR (Arabidopsis)
Match: AT5G09420.1 (translocon at the outer membrane of chloroplasts 64-V) HSP 1 Score: 63.2 bits (152), Expect = 3.000e-10 Identity = 33/111 (29.73%), Postives = 60/111 (54.05%), Query Frame = 1
The following BLAST results are available for this feature:
BLAST of Spo07618.1 vs. NCBI nr
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. NCBI nr) Total hits: 5
BLAST of Spo07618.1 vs. UniProtKB/TrEMBL
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. UniprotKB/TrEMBL) Total hits: 5
BLAST of Spo07618.1 vs. ExPASy Swiss-Prot
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. ExPASy SwissProt) Total hits: 5
BLAST of Spo07618.1 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
|