Your browser is unable to support new features implemented in HTML5 and CSS3 to render this site as intended. Your experience may suffer from functionality degradation but the site should remain usable. We strongly recommend the latest version of Google Chrome, OS X Safari or Mozilla Firefox. As Safari is bundled with OS X, if you are unable to upgrade to a newer version of OS X, we recommend using an open source browser. Dismiss message

LotjaGi1g1v0076400.6

Overview

Field Value
Gene ID LotjaGi1g1v0076400
Transcript ID LotjaGi1g1v0076400.6
Related isoforms 6
Lotus japonicus genome version Gifu v1.2
Description Clathrin heavy chain; TAIR: AT3G11130.1 Clathrin, heavy chain; Swiss-Prot: sp|Q0WNJ6|CLAH1_ARATH Clathrin heavy chain 1; TrEMBL-Plants: tr|W8E7A2|W8E7A2_LOTJA Clathrin heavy chain; Found in the gene: LotjaGi1g1v0076400
Working Lj name n.a.

Sequence information

Genomic sequence (LjG1.1_chr1:10988888..11006910) extracted from Lotus japonicus Gifu genome v1.2.

CCTGCGCACACAGTTGTTCAGCTTGATCGAAATTCACAATTACTCTTGTTTTTGCTGTTATACTTTGCTCAATTTTGGTT TCCAACTCGATTACTCTACAGTTTCACTTTGCTAGTTTCCTTACTGTGAAGTTTTTCCGGATCTGAATTTTTTGTTGTTG TTGTTTGGTTTATGAACTGGAGAGTGAGAACTGAGAAGCTTAGGCGTTTATTGTTGTTGCTGATGCATGATTTTGATAGA AAATGAATTGATTGATGTGATTTGTGTGATCTGATTTGTGATTGCAGTTGCCGACCCTCGGCATCAATACACAATTCATC AATTTCACGCATGTGACGATGGAATCGGACAAGTATATCTGTGTTCGAGAAACGGCGCCGCAGAGCAGCGTGGTTATCGT TGATATGAGCATGCCAAATCAACCTTTAAGGAGGCCTATTACTGCGGATTCGGCTCTTATGAATCCGAATTCGAGAATCC TTGCTTTGAAAGGTTGGTTTCGAGTTCTACAATCCTCTCTTTAGTCTTTATCTAAGTATTGATGTAAATTTTGTCTGTCA CATATCAAATTTGCTTGGAATCTATTTATTTTCATAGTATGCTTACCTTTTCTTTTTTCATTCTTCCTCTTATAGTTGTG TTATTTTGCTGATGCCATTGTATGATGAAATGAGGCACCCTGCCTATTTTGACTAGTCTAGTACTCTAGTTTGACCTGAA ACGCATGAACAGTCGAACAAGTCTAACTGTCGATTTTATATTAGCACGTTTAGATTCACGTTCAACTCTTTCAGAATCCA TTTTGCTCCCATAAAAACTACTATGAGTAGCTTCTCTTAGAATCAATTGTCATTCCAACGTGAAAATCTACTGTGTATCC AAACATGCCCTATATCTACTTAATTCACATTACTCTATTTTATTTTTCTGGCCCTTTGTTACTTGTGATACCTGATACCA GACTGTGTCTTGCACAGTCAGGTATTTATATGCACCCTGAGTTAGACTGTGTCTTGCACAGTCAGGTATTTATATGCACC CTGAGTTCTAGGGGCACAGAGCTATGGAGCAGAGACCTTTGGTTGATTTGGGAATTTGAAATCAACTGGATTCCTTATTT TCTAATTTTATATGAAGAAGTTAAATAGTCATGTCTTTAACTGCTATAATATTTTTTTATTGGAAAAAAGTATGTCGTTA TTTTATTTTCACTTTTCCACAATGGATGCAAGAAGTGACACTATTAGATAAGAATTTATTTAGGTAGATAATACAACATT TACAATCAAAGCCTTTTCCAATTTGGTGGTGTTGGCTACATGGATTAAACAATGCCATAATGTTTTTTCATAAAAAAATC CAGTGGTAAACCATTTAAATCTAAATCTCTGTTGATATTGACCTATAGTTTTCGTTGGTCCCCCTATACCTCTAACCATT GGGCTATCCTCCATGAAACTCATGATATGGTCTGTTCCAAACTTGTAATATGGTGTGTCCTCTAGTTTTATCCTCGAAGA TGCGATTTTTGAACCTCGACTAAACTTGCATTCCATATACTACGTATTATTTCAACTAAAGCGAAAGCCATGTGCTTCTA AGGCTTATCTTCATATCTCTAAATGTCTGTTTGTTTTTTATGTTCTCTTAACTCTTTAACTAGAACTATGTCATTTGGAA AAAGCATGCACTGTGGCACTGTCTTTTCGATACGTTTAGTTAGAATGTTTAGAGCCAACATGGAAAGATAATGGTTATAT TTAGGTAGAAAACGGAAAGAAATTATGGCTTTGGGGTTAAACTATGACTTTATTCTTTTGAGTTCTCTTGGAGATATATG ATCTTTATTTCTTTTAATGCAATGACTTTATTCTTTTGAGTTCTCTTGGAGATATATGATCTTTATTTCTTTTAATGCAA TGGGTGAGGATCTGATAACTATTTTTCTTGGTGCCTTTTGCTTTTCCAGTATACTGATCATCCTCAATTTCCTATTAGGC CTGGTAGAGGTGTTGACTGGTTGGTGCGTTTCGAGTTTGGGGTAAAATGAGATCCAAACTAATCATAGTTAACTGGGTTG GTTTGGTTTGGTTTTTGCGAATCTTTTCAACAAATCCACACCAAACCAAATGGATTAAGATAAAATGTAATCCAAACTAG TCATATTTAATTTTGTTCAGACATATTTATATAATATTAAATTGTATATTACTACAAGTGAAAAATAGTTTTGATTTTTC AATGATTATTGGCAATAATAAATAAATTCCAACTTTTAATTAATATTTTTTTTTTATACAATTATAACTTTACATGTAAA TTTCTATACCTAAAATATGATGATCATGTTAGATTGTAAACATGACCATGACACTTAGTAATACTAGATGAAAAAATAAA AATGAATGAAAATATTTTAACTTAATGAGATTTTTAAAAGTTGAGGTTTAACATACGTTGTTTTAAATTTTTAAAAAAAA GTTGATTGGGTTGAGTTGAAAAATATAAATCCGAGAACTGGGCCGATCATAATTTGTTTAGTTTGGATCTGAAGTGAACT GAATCCGCTATCCAAACCAACCAGAACCAATTTGATTGGTTTGGTTTGGATTATTGGGTTTATGATGCCCATCTAATCTG ATGAACACCCCAACCTATTAGATGTTGCAATGCCACATATTTTTCATGTTGTCAATGTTTCTCCAGGTTTGCAGCTGTTA AAGGAGAAAAAAATCAGTATTAAGATGACCTATAAATTATAAGAATGTTCATAAATCAGAATGCTTCCAAACATTAGGCA CTCTTTAAGTTTTCAGTTTATTGTACCATGTACTTCTGTTGGTGCTGCATCTAAAATATCATTTGCTTTTAGATTATTTT CACTAACAAGTTGCATCTTTCTCTTGAAGCGCAACTCCAAGGGACTACTCAGGATCACCTGCAGATATTTAATATTGAAT TGAAAGCTAAGATGAAATCATATCAGATGCCTGAGCAGGTAACTATCATGTACTAAAACACATAAACTGTTACTCAATAG GTCCTTTAAGATGACTTACTTAAGTGTTTTGGAATGCCTACATTTCACGTATAGGTAGTCTTCTGGAAGTGGATTAGCCC CAAGACATTGGGCCTTGTAACACTGACCTCTGTATACCATTGGTCAATTGAAGGTAAATAATTGTTATCAGGTTTACTCA ATATTTTTGCTGCTATTATATTTTCCACCTTAGACATCCTTGTACAGTGTTTTGTAGTTTGTCTGCATATTGCTGACTGT TATATGGTCTTAATCTATGTAACTTGAAGGTGACTCTGAACCTATTAAGATGTTTGAGAGAACTGCGAATTTGGCGAACA ACCAGATAATTAATTATCGATCTGACCCTACAGAAAAATGGTTGGTCTTGATTGGTATTGCTCCTGGTTCCCCTGAGGTA TATCTCTGCTTTCTATCATAATTGTCTATCACGGTGAATAATTTAGGTTTTTCATTTAGCTCATATTTACTTGTCTTTAT CTCTGTTCCTGTGGGTTATATGCATAATTGTGTACTGTTATGATCTTTTTACTATGATTGTCACAAGTCTAATCTAGTTT GCTTTATTTCTTCATGTTACTTTGCATTATAGAGGCCGCAATTGGTTAAAGGAAACATGCAACTTTTCTCTGTGGATCAG CAGCGCAGTCAGGCTCTTGAAGCTCATGCTGCATCATTTGCCCAATATAAAGTGCGTTCTCTTATGATTCTGTATTCATT TTTGTCATGTACCAACTATCCCAAAAGCATAAGCTATTGGGTGAAGACATGAAAGATTTTATATATTACATTTCTAACAC GCCCCTCACGCAAGAGCCCATTGGGCTTGATGCGTGGACAATGCACAAGGGCAATCAGGATCGAACTCTAGACCATGCGG TCATAGAGACTCTGATACCGTGCCATGAACCAACTATTGCTAAAGCTTAAACTATTGCGTGAAGACACACAAATGATTTT ATATTATATTTCTAATTTATGTTCACATAATTTTTTATTTAATATTATCTGACCAATTATATACTAAGTTACTATGCTAC TATGTGTTCATAAAATTTGATTGTGTTTTTTGGACAGGTTCCTGGGAATGAAAATCCTTCTACTTTGATTTCTTTTTCCA CAAAGACACTTAATGCTGGTCAAATTGTATCTAAGTTGCATGTTATTGAGCTGGGTGCGCAGCCAGGTCTGCATATTCTT ACCTCATCCACATCTATCTCCCGTGTATTTATTCAATGGGCCGTATGGCTTCTACACAAATATGTCTTGTGATGTGAATT TAGTTGTACGATCTTCAGTTTCTAAATTTAGTACTTCTTACCAATCCAAAATTTCAGTTTTTTATTTATATCAATATGCG TTTATCATGCTTGATCCATAGCTAGTGGTGGTGTGGTTATATCAATCACAAGAACGATCTTTTTTGAAAATGTCCCTCGA ATGGCACTTTGTCTTGCTATATAAATTTATTGACCTCAGAATATAACTATTTCATTGACTTCAATTTATGGATGTTTGAA TTATAGTGATCCATGTTGCGGGATGGAGGAGGCTATTCATTATTGCTAATAACTTCCCTCAATGAAATCATTGAAATGTA TTATTTTTTGTTGTTAGGTCGCGCTACAACGAACTTAGCTGATAGGAAAATTTGAATGTGTGAGTGTGTGACTAATAAAT TTTTTCGTTTTCCACCCTGATTATAATAGATTTATGTTGGGTTTTAATTGTAGTGATAAACACATAGCTGTTAAAGTTGG AGGTAGATGAAGGCATGGGGCTGAAAGTATTTGTTAGATTCAAGTTGCATTTGCTAACTATTTTCATAAATCTAGAAAGT ATTACATATTGAAATCAGTCAGGGCTTTTGAAGATGGGTATCTGTATTGTGAAATTGAACTGTGTGTATCATTATGTCAG ATGTCATCCAATTGATCATCCTTCTGGAGTTTAACTTCTCAATTATTTTTGCAGGGAAGCCATCATTCACGAAGAAACAA GCAGATCTTTTCTTTCCACCAGATTTTGCTGATGACTTTCCAGTTGCGATGCAGGTAAGTGAGTTGCTAATGTTTGTTCT TCATGTTATAAATAGTGTACATATTTGATTCCTACTTCGGTTTTTGGCAGATATCCCACAAATACAGTTTGATTTATGTG ATTACCAAACTTGGCCTACTTTTTGTCTACGATTTGGAGACAGCTACTGCTGTATATAGGAACAGAATTAGTCCAGATCC TATATTTTTGACATCAGAAGCTACAACAGTGGGAGGCTTTTATGCCATAAACAGGAGAGGCCAGGTTTTATTGGCTACTG TTAATGAACAAACCATTGTGAATTTTGTCAGCGGTCAAGTATGTTTCTGACTTTGTTATTGCTTATATGATGTAAAGCAG GAAACGAGTTTTGCATTTTAACATATTCCATGTGGTTGATATTGCAGTTAAACAATTTGGAGCTAGCAGTTAGTCTTGCC AAAAGAGGAAATCTTCCTGGTGCTGAGAAGCTGGTATAATTTAGTTTAGAACATAACTTTAGTAATAAATAAATAAATAA TTTCTTCATTAGAGTGTTTTAGGGAGACCCCAACTCAAGAACTTGGATGCATTTTGTTAATCTTATGCTGTTTCGCCAAC TGTTGAATGCTAACTTGCATGAAGTTTGCTTACATTCTAACAATAAGAAGTGCAATGCTTAGATGTATTGTTGATTTTTC TTTTCTTTGTCACTAGGTCAGTTTATTCCATCCGTGGTTGACATACATTTCCTTTCCTTACTGATATTTGTTGTAGAATT GTTTTGTACTGTCAATCTTGTTATTTTATGTTTGTAAAAGATATTTGCTGGAGATGAGGGAGATAATATGAGCACAACCT TGTTGATGTATGCTGTAAACTTATTGCTTGTTTTGTCATTTACTTAATCAACATTGTCTACATGCTTTAATCTGTTCTTT TCCATGTTTTATGAAATATTTGATATTAATTATTGAATTGTGTTGTGTAAGCTTCTTAGAAAATGATGCTTATTGTATTT TTTGTTTCTTACTCGTTGGCATGATGGCAATACTTGTTGACATTATAGGTAGTGGAACGTTTCCATGAACTGTTTGCCCA AACAAAGTACAAAGAAGCAGCTGAGCTTGCTGCTGAATCTCCACAAGGAATCCTTCGTACGCCAGACACAGTTGCCAAAT TTCAGGTTTTATGGTTATCCAAGAATTTTCTGGTGTTTTTTTCTGCTACTTTATTTACGTAGACAGTCATCTTTGGTTGT TTATTGTTTGCCTTTAGGCAGTGTCCTTTTGTTTGGTCAATTAGGTTATAATGTTTAAAATGTCTCTGTATGCTCTATGT GGCAGAGTGTTCCTGTGCAATCTGGGCAAACTCCCCCACTGTTGCAGTATTTTGGAACACTTTTAACGAGGGGAAAGTTG AATGCCTTCGAGTCATTAGAATTATCTCGATTGGTTGTGAACCAGAACAAGAAAAATCTGTTGGAAAATTGGTTGGCAGA GGACAAGCTTGAATGCAGCGAGGAGCTAGGAGATCTCGTTAAGGTTTAGTTGAATTAATTTGTTTAAAGAATTTAAAATT GTTATGTTAGTTATTTGTATGTTTGTATTTTTATATTTTTAACTGTTTGCTTAATGAGGTACTACTTCTCATTTTATTTG CTTATGGTGAAATGGTGTATTTCTATTAATTTTCATGAGTGGTCTCCCTTGCAGACTGTGGATAACGATCTTGCTTTAAA AATTTATATCAAAGCCAGAGCTACTCCAAAAGTTGTTGCAGCTTTTGCTGAGAGGAGGGAGTTTGACAAAATTCTGATAT ACTCTAAGCAGGTGCTTGTTTACTTATAAAAGAATATTGAAGGTTGATTCATTAGATACTTCAAAGTTAAATCCTAGAGT GTTTTTCCCAGCCTGTATAAATAGCATTATATTACCTTTATATTTAACTGGAAACATTTGGCCCTGAACATTTTCATTAC TTATTTGTTGCTATAGGTTGGGTACACACCTGACTACCTCTTCCTCTTGCAAACAATTCTCCGGACAGATCCTCAGGTAT GAGACATTTTTTTGCAGGTTATTTTGTGTAATTGTTTTAGTTGAACATTTTCATTGTAATTTCACCTTTGTCTTCCATCT TGTTGGATGCGTGGTAAATGTTTTCATTTTGAACAGTATTTATACATTATTGACCACGTCTGTTGAATTTTCTTCTACAC AAAGAAATTCCAGGAAGTTACCATTTTTATTTTGATCTTCAGGGTGCTGTTAATTTTGCGTTAATGATGTCTCAAATGGA GGGAGGTAGCCCAGTTGATTACAATACCATAACTGATCTGTTTCTTCAGGTTGATTATCTACTGGGATTAAGCAATTATG ATGTGTAATAGTTTGATACATTAGTGTCATTTTCATTTTGTTTTTTTTTTTATCGATCACATTTTGGTTATTCTTTGTTC TCCTCAGAGAAACCTGATCCGTGAGGCAACAGCTTTTCTTCTGGATGTTTTAAAGCCAAATCTACCAGAACACGGGTTCC TGCAGACAAAGGTTGTGGCCTTTGTTTCCTATTTTATTATGGGCATTTTACTTCTGAGATTCTTTCTTTGAAGTGATATA ATCTTCTTATCAATTGTGGTTCAGGTCTTGGAGATAAATCTGGTGACATTCCCCAATGTTGCTGATGCTATTTTGGCTAA TGGCATGTTCAGCCATTATGACCGTCCTCGTATTGCCCAACTCTGTGAAAAAGCTGGTCTTTACGTGCGAGCTTTGCAAG TAATGACTTGCCAAATATGTTTTATTCTTGCTCTTTGCCTACTTAAAGCTTAAACTTAAAGTCATACCATTTGCTGATTG CACTATTCTTGGTGCAGCATTACACAGAGCTACCAGATATAAAACGTGTGATTGTTAATACACATGCAATTGAGCCTCAG GTGTGCCCTGTTGTTTTTATCTATTTAAGCATTTAGTGTTTACAATAAGTCGTGTGATATTTTTAAATACTTACTCATTA TTTGGCTGTTATAGTCACTTGTAGAGTTTTTTGGCACTCTATCTCAAGAATGGGCTTTAGAGTGCATGAAAGACCTATTG CTGGCCAACCTTAGGGGAAACCTGCAGATTATTGTGCAGGTATGGAAATTTCATTGTATTTTATAACTTGGGACTTGCTA ATAATCGAAACTAAGCTTACTTATGTCTATTCAGGTTGCTAAAGAATACTGTGAACAATTGGGCGTTGATGCCTGCATAA AACTTTTTGAGCAGTTTAGGTCATATGAAGGACTGTACTTTTTCCTTGGCTCATATTTGAGCTCCAGGTAATTCTTGCTC TTGAAAAAAAAACTTATGTTTTTTCTGTTGTTAATGGACCTGATTTATTTTTGAGATATATTCCGATGTGTTTCTGCTGA TATATATTGTATATGCTTCTCTGAATAATATGGGACAGTGAGGATCCTGATATTCACTTTAAGTACATTGAAGCAGCAGC AAAGACTGGTCAAATCAAGGAGGTCGAGCGTGTGACAAGAGAATCCAATTTCTATGATGCCGAGAAAGCGAAGAACTTTC TAATGGAGGCTAAGCTTCCAGATGCACGGCCTTTAATTAATGTTTGTGATCGTTTTGGATTTGTTCCAGATCTAACACAC TATCTATACACAAACAACATGCTTCGCTATATTGAAGGTTACGTTCAGAAGGTATCACATAGTTACGCTGCTTTTCTCAT GAATGCTATCTACTCTCTCTTTATCTGCCCTGCCTGAGCTTTGTGCTTTGCTATATAGGTAAACCCTGGGAATGCTCCTT TAGTTGTTGGGCAGCTGCTAGATGATGAGTGTCCAGAAGATTTTATCAAAGGTTTGATTCTTTCTGTCCGTTCATTACTG CCAGTGGAGCCCCTTGTGGAGGAATGTGAGAAGAGGTGGGGTTTTGTCCTGTAATCTTATGCATTGTTGATTGTGTTCAC ATTAGTGACTTTTCACAATAGTGACTTTTATCCCACGATTTTTTTATTTGCAGGAATCGGCTTCGTTTGCTAACTCAGTT CTTGGAACATCTCGTAAGTGAGGGAAGCCAGGATGTACATGTTCACAATGCACTGGGTAAAATTATCATTGAGAGCAACA ACAACCCAGAGCATTTTCTCACAACCAATCCATACTATGATTCTCGAGTTGTGGGCAAGTATTGTGAAAAACGTGATCCC ACCTTGGCAGTCGTAGCTTACCGGCGAGGACAATGTGATGATGAACTTATCAATGTCACCAGCAAAAATTCTTTGTTCAA ATTGCAAGCAAGGTTTGTGGTGTATATATGGTATTTTTTCCGCCAAATCGCTTTTCTTTGGATTCAATGCTGACATGGTT ATATTGTGTGACAGATATGTTGTTGAGAGAATGGATGGTGATTTGTGGGCTAAAGTTCTTACTCCTGATAATGAGTATAG AAGGCAACTTATTGATCAGGTTGTATCTACGGCTTTGCCTGAAAGCTCAAGCCCAGAACAAGTTTCTGCAGCTGTTAAGG CTTTCATGACAGCTGATCTGCCTCATGAATTGATTGAACTTCTCGAGAAGATTGTGCTTCAGAATTCTGCATTCAGTGGG AACTTTAATTTGCAGAATCTTCTTATTTTGACCGCAATAAAGGCTGATCCATCCAGAGTTATGGATTATATCAATAGACT GGATAATTTTGATGGGCCCGCAGTTGGAGAAATGGCTGTAGAAGGTCAACTGTATGAGGAAGCATTTGCAATTTTTAAGA AGTTCAACTTGAATGTTCAAGCAGTTGATGTCTTGCTTGAAAATATACATAGCATTGATAGAGCTGTGGAGTTTGCTTTT AGAGTTGAAGAAGATGCTGTTTGGAGTCAAGTGGCCAAGGCTCAACTTAGGGAAGGGCTTGTAAGTGATGCCATTGAGTC GTTTATACGGGCAGAAGATGCTACGCAATTTTTGGATGTCATCAGTGCTGCTGGAAATGCTAATGTTTACCATGACCTGG TGAAATACTTATTAATGGTAAGACAGAAGGCAAAAGAACCCAAGGTTGACAGTGAGCTCATTTATGCGTATGCAAAGATT GATAGGCTCAGTGACATTGAGGAGTTTATTCTTATGCCGAATGTTGCTAATCTACAAAATGTTGGTGATCGGTTGTATGA TGAAGCATTATATGAGGCTGCAAAAATCATATTTGCTTTTATATCGAACTGGGCTAAGTTGGCCATCACACTGGTCAAGT TAAAACAGTTCCAAGGTGCTGTTGATGCGGCAAGGAAAGCCAACAGCTCAAAAACATGGAAGGAAGTTTGCTTTGCTTGT GTTGATGAAGAAGAGTTTCGTTTGGCCCAGATATGTGGACTTAACATTATTATTCAGGTAACTTGCTGAATTCAGTTTTT CAATGAACTATATATATATATATATATATATATACACACATATATATTCAAAAATAAACTACGAAGGCTGTTCTTGATTT TTTATGCCATATGATCTCAATTTAAAGAGTTTGAATGGACTGGGCCTTGAAAATGTAATGGTGAACCAAATATCCCCAAA AGAATGCTGTGAATGTGTAAAAATGTAAATGATTGGAAGGCGTTTGCGCTTATTATCTGAGCTTTATGTTGGTCCCATTG TAGTAAACTTATTGACTTCCCATTGCTTAATATGACAATTTTGTAGGTGGATGACTTGGAAGAAGTCAGTGAATATTACC AAAATAGAGGCCACTTCAATGAGTTAATATCTCTCATGGAGAGTGGTTTAGGGTTAGAGCGGGCTCATATGGGCATCTTC ACCGAGTTAGGAGTTTTGTTTGCTAGATACCGCCCTGAGAAACTTATGGAGCATATCAAACTATTCTCCACCCGCCTCAA TATTCCAAAACTCATAAGAGCTTGTGATGAACAACAACATTGGACAGAATTGACGTATTTGTATATCCAATATGATGAGT TTGATAATGCTGCAACCACCATCATGAACCATTCACCAGAAGCATGGGATCACATGCAATTCAAAGATGTTATTGTCAAA GTTGGAAATGTTGAGTTGTATTATAAGGCTGTTCACTTCTATTTGGAAGAGCATCCAGATCTTATCAATGATGTTCTGAA TGTCCTTGCCCTTCGTGTGGACCATGCACGTGTTGTTGACATCATGCGAAAGGTAGCATTGATAGTGGCAATAATTTCAT AGATCTTAGTTTGTCGCTTGCTACAACACTAATGAATGTTTTCTCTGTAATGTGCTATAGGCTGGTCACCTCCGCCTTGT AAAGCCATACATGGTTGCAGTTCAGAGCAACAATGTATCTGCTGTTAATGAAGCCTTGAACGAGATATATGTTGAGGAGG AAGATTATGATAGATTGCGTGAGTCAATTGATTTGCATGATAACTTTGATCAAATAGGCCTCGCACAAAAGGTGAGCTGG ATTTTATGTTAATGATGACTATTTTTCAGTTTCTGTTGTGGAAACCTGATAGGTTAATATTATTATATGATGCAGATTGA AAAGCATGAGCTTCTTGAGATGAGGCGTGTTGCTGCTTATATTTACAAGAAGGCTGGTAGGTGGAAGCAATCCATTGCTC TGTCAAAGAAGGATAATCTTTACAAAGATGCAATGGAGACAGCCTCACAATCTGGCGAGCGTGAACTTGCTGAGGAATTG CTTGTTTATTTCATTGATCAGGTGCTAAATTCAGTTTCAAACTGCATCTATAATTCATTTTCTTGCAACATCCTATCTGA GTAGGTTTATTTCTATTTTTGGCAAATATGTTTTGTTCAGTTACTATGAGGAGCTAAATCATAATGTTTTTGTGCACATG AATGGGATAAGTGGACTTTACATTCTTCTCTGTCGCAATGGTTATTGCATATTAGTGGCACCTCTTGTAGCATGTGGAAT TCCATTTCACTCAGAAATTATTTGATACCTAGTAGTATTTTCTTTCTTTGTCAAGCTTAGTGACTATTTGTTCTGCTAGT GCATGTTAGAGCCTTGCAGTCAACAATTCACTGAAGCATTGTCTTTTAATCTTCTTACCCAAGGGTCCAAGCCGTTTCCT TTTCTCTCATGGAATAATAATATTCTGATTCATTTATTATATTTATTTATGTGCATACAATTGAGTTTCTAATTTTTCTT TTCACATACTTATGCAGGGAAAGAAGGAATGCTTTGCCTCGTGTCTATTTGTTTGCTATGATTTAATAAGGGCGGACATT GCTCTTGAACTAGCTTGGATGCACAATATGATCGACTTTGCCTTCCCATATCTTTTACAGGTTTGCATTTCGTCCATGCT GCTGACTTTTATTGCCTATAATTCACTTGGCATATATGTCCTTTTTATGATAAATGTTGATCTTAGGCTTAAGAAAACTT ACATTACTGGATATTTCTCCTCACCCCTCCTGTCTGTTTTCCTGAGAATCATGATGGCTATCTTATAGAGCTTTTCCTTT TATAAGTGAACTAGAGTTTTTTACCCCGTGCGTTGCACGGCGAAATTTGTTATTTTATTTGAGATATTAATCAATACTTT GATTATGAAAAAGTTGAGATACTAAGAATGAAAACAATTATAATAAGAAATAAAATATTTTAAAAATATAAATTGCGAAA TTTAATTATAGTGTTTTATACTCATACACCCCATTTTACAAATATTAAGTTCCAAATAATAAAGGATTTAATTGGTAAAA ATCTTTATTTATTCACATTGAGGTACAAAAAAAAATTGCTTACCAAGATGAAAATACAAATATTTGACTCTATTATGTTG CGGACCAACAAAATGAAACAAAACTATAAGTTTAACATTTAAATATTTTCATATAAAATACTCCTTCTTGTTGGAGCTTT TACCTTTAAATTTGAAATATTCTCTTATGACCTGTTATCACATTAATATTTACTCTAAGAGTAAGAAATATACTAAAATT ATATTAATATTTATTTTTCTATTAGTTTCACAATAAATATTTTTTTTCATGTAAAACGTTAATCACCGTAAGAGCTTTTT ACCAATATTTTCCATTATTATGATGATGACACAATCATCCACCACATTAATGACTCGTCTGAAAAAAAAAAACAAATTAG AACAAAAAAAAGTACCATAAAACTATATTGTAAATAAATAAAATATTATTAATTTTTTTTTTATGTTTTCTAATTCTCAT ACTACACATTTTCATTGTCAAATATTTATAGGTTTTCATATATTCATAAGCACAAATACCTAATTCTCTTAAATTAAGAA AAGTAGTTATTAGTAATAAATTTGTAAATGAAATGGTTAATTGTCCTAGATTACCCTTATTTAATTTTCTATGAATTTTT CTCTCCAAGTTAATATTCTAAAAGTTCATTATCTCTTTCATATGAAATACGAGGGTAAAATTGGAAAAAATATTTTTAAT GCTTTCTAAATATTAAAAAAGGACTAATATTTAGAAATAATTTTTTTTTCATAAAAAGTGACTTATAATAAGAAACGGGG GAGTATCTACTCCTAAAATTATTTATAAAATTGCGAAAATATATGTTAATTAATAGTATGAATTATTTATATTATTAATT TTAACATTATATTTTCATGTAAAATATCACCCTGTGAGAGCTTTTTAACATTCTAGGATCTATTAAATATAGTACTAAAG ACATTTCCACAATTCCGATTTTTTTTTAAATCATATAATTTTAAAAGAAAATCAGTAAATCAGATTCTAACAATATATTT GCTGCCCAAAAATCAAAAGATCCTTAGAATGTTTTCAAAAGAAAAATGATGTGAAATCAATAGGTTTGGATTTGGAAGAA GATTAGAGCATCCAAAAGAATCAAACAGTTGCGAACTTGCAATGTCAAGACACAATCTTCCAATGTGAATGGAAAACAAA ATCACAAAAGTGGTCGAGGGTTTACTGAACTACATAACTCAAGTTAGTGGAGATGATTTGTACACTCCTATCATACATTC TATTTACCTATCCAAATATGGAAACCTCACAATCAAATTGTTGTTTCTAAAAGGATTAAAACTTAAACAAAATATAAAAG TTAATATGTTAATTAATACCATAAAAAATAACTTAAAACCTATAACTTGAAACACATCAAACATTCTCTTCGTTATACAT GCCTCATTCTCCATCCCATATTTGCCAGTCCCTCGCAGGAAGTGCCCCATTAACGCTCCAATAGACTACGGAAAACTGCA CACCAAATCAGCACATTCATCATTCTAGTATTGGACGCAGGGACCCTTCAGGAAATCCTGGTTAAGTTTCCAACCGGTAA AGAGCCAATAAGAATCCGTTTTAAAAACACATATAGGAAAAACTACAAAATGCCTTGATAGAAAAAAGCAAATAACTCAT GACTGTTCAAGTTATGTTCTTGATACCCATCTTGTAGAAAAAAAAAGTAAATAACTTAAAAGGGACATGAGGAAAGATAA AAAGTCTTCTTCACTTATATGATAGACATCTAGTTCATATCCATGCCATATCCAACTGGGCTGAAGACAGCGCTGCCTTG ATAATGGTTATGAAAAAAATTAAACCATGTAGTATGAGAACTTGCCATGTTAAGTTCCCTGCAACATGATGGTGTCCTCT TGCGGCAGCCCCATTCTCTTCGGTGTACATACTCATAATAAATACGATCAATTTCCTGCAAACAAATCATCAACATTAGA CATATGCCCGTAATGGAACAAACAGAGTGAAAGACTATCACTGCGATTCTGCAAGGAAGTTAAACAGATAAGATGACATG CTTGAAATGAAATTAGGGATTGATGAGAACATAACAGTTAAAAGCACAAAACAATTTAATTCTTTTCACCAATGGTGGTT AGGGATTTAAAAATAGTTTCATTAAGAATAGTAAGCATTGCAGATAGGACATCATGAACCAAATAAGCTAACAGGACCCT AAGAAAGTTGCATAAAGAATAGTAAGCATTGCAGATAGGATATCATGAACCAAATAAGCTAACAGGACCATAAGATTTTG TTGTCTTTCTCATCATAAATCAATTGTTAAGGTTTGCTTAAGGTTGAGGACATCCCTCTCAAGTAGATAGGATATCCATC AAAACCACTTTTATAAACAAAAACCCCAAAAAAAGCACTTGTAGAAAAATCTTTGCTAAACTATGAAAGTAACAAAATAA CACCAGAATTAAATTCATCAAGCTGTTGTTGATGGTAACTGTACAAAAGCACTTTCAAAATCCAATCAACTCTAATCACA TAACTTGACAATGCAAGATACAGAGACAATAGTCATCCAAAATAAGAAACTCATTTTAAAACAATCTCATTGGTCTAAAA TTCACCAGATTATGATGAGAATCCTTAGAATAATATTCATGAGTGAAAAATATAGGCTATAATCTTCTATGTTATACTAC ACATACATATCTCTTTATAGGCACCTTAAGATTAATTGGGAGCAAATCAATTTTCAAGGGCACTCCTAATCTGTATAGTA ATTTTGTTAGGAAAATGAGTCTTACTGTAATTGCCAAAGAAGTACATAGAATACCTAGAAGTAACTCCTATAAATATTGC AATCATCAAAGTCAAAACATTATAACATATAATTGCCTGGGTTCATAGGTTTAATACCTTCACAACTATTCTGCAGTCTG CACATAAATCCATTGACCTTTGTCATTCTCAGTCTCATGTTAAAAATTTAAATAGCAAAAGAACTTGCTTTTGGTCCTAT TTCAAACAGCCAAAACAACCTACAACATGAAAGGTAAGAGAATCAATTATAACATTGAGAACCAAGACTACAGGTAAAGG TATTTATCAATATCTTCCAAGTAAATATGGAAGCATTTAATTTTAAAGTAAACCCGAATATATCAGTATAAAAAAAACAA AGAAAATCTGGATGCCAGACAACAACAGGGAGCAACAACCCAATCAAAATGAAGTGATTAATGAAGCAACAACACGTTCC AATAATGATTTATCAATCCTGAAGCCCTGCAACCAATTATCAACATCAAAAATTGTTATTATGAAAATGGAGTTTAGGGT ACAGGACAATTTGCAATTTAAGTGGAGAACCCTATAACATATAATTCTCGCAGCAACCAGCACAATCATGGTTATTGCTT ATTGGGTTGATGCACATGACTTAGAATGAATCGATGGAAACTATATTCATGGTTCTTAAAAACTTGGACTTGACATTACA AATATGCTGTTCGTAGTAATTTGTAACTGGATTATGGTATTCAGTAAAATCTAACCGGATAATTGAATGGAAAATGGGGA TGAAGAGAGAATGTACCGCCGGAGACGAAGTGAGGTTGAGAGTTGTGGAGATGAACGCCTCTGACGGGGCCGTCTGTGGC GGCTGGCGAGGAACCATGGCCGCTTGCGGTGGAAACTGAGAACCTTTCTTGTGTTACTCTTGGTCAGAGAAAAGATGAAG AAGAAGTAGGAGAAATAGGGTTTTGGATATTTTAAACGCTATCGAGGAAGAAAGACGACATCTGGATCGGGCGGGGAGCG GAGGAATCAGTTGAGGCGTGAGGGAGAAAATGATGGGAATAAAGCTGGTTGAAGAAGAAATTCCTCATATGGCAGATGTG AATAAGCTGGATAAAGTGGTTGGCAGATTAGAGAGCTTAAAAATTTGATTTTGAAATTCACATGTTCATGGGAGCTGTGC AGAGCTTGGGACACGAAACGTGCAGAAGGGAGGTGGGGGTTGAAGAAATTTGATTGGTCATGGAGGGAAGAGATTAATAG GAATCAGGAAAAAACAATTATCAAGGCTTTGCATGCTTCTGTGGTATGTGTGAAACATTTAAAAATGGGGTTGGAAGTTC CACTCTTTGGAAAGCTTCTTCTGGAAGGGTGAAAAGAGAGCTTGCCACGTCAGCGAAACAGGGAACTCGATTGGTGGATG AGTGCCACGTGAAATCTGAGTGAGATAGGAGAATAAAGGAGAACATGACACATAATCAGTGAATGGAGGGAAGCAATGAG AGTGAGCCACGTTGGAATTCCACTCACTTTGAGAATGCATCAGAGAAGAGAATGATTCTGGTGACGACACATAAGCAAAT GGGTCTCATAATCCTTGCTGTTTTAATATATATATTGATATTGATATTGATTCAATCATCTTTGTAAAGTCTGACAGTTT ATGGGTTGCATCTTGAACAGTCGCTGTGAACTACTTTTTGATGAATGTTGGCTTTCTAGTTTACACTTTACTGTTGATAA AAATTATGAATAGTAGATACTAGATAGTCTCTGCGAGATAGTGATGATAAGCTTATGATGGTTGTAGTTCTTTTTATGTA CTTCTGGTATTGCATGGGTGGGTTATCCGAGCACATCTAGGTTGACTAATGCATTTATTTACTTTCTTCAGCCTTTCCTG CAACGGATCTATTTTTTGCCATCATCTTGTGCTTTATCTTACCATCTTCTCTTGTAGTTTATCCGTGAGTACACTGGCAA AGTTGATGAATTGGTGAAGGACAAAATTGAAGCACAAATCGAAGAGAAGGCTAAAGAGAAAGAAGAAAAGGACGTAGTTT CTCAGCAGGTAACTTTTTTGGTTATTTTCTGTTGGCCAAATATAACTTAATTTTGAGCACCGCTGACATTCATGTCATCA GTTTGAATGTTCAGAGCAGTTTGCTGTTGATTAACCCGATTTCCATCTCATCCTTTATTGTCAACTGGTTGGACTTTAGA GTAGTGTTGTTAATGAATGAGATGTGTTTTCTGTTGCAGAACATGTATGCTCAATTGTTGCCTCTTGCTTTGCCTGCGCC ACCAATGCCTGGAATGGGAGGAGGCTATGGTCCTCCCCCTCCAATGGGTGGACTAGGGATGCCCCCTCCTTACGGCATGC CACCAATGGGTGGCGGTTACTAA 

CDS sequence (LotjaGi1g1v0076400.6) extracted from Lotus japonicus Gifu v1.2 CDS.

ATGGAATCGGACAAGTATATCTGTGTTCGAGAAACGGCGCCGCAGAGCAGCGTGGTTATCGTTGATATGAGCATGCCAAA TCAACCTTTAAGGAGGCCTATTACTGCGGATTCGGCTCTTATGAATCCGAATTCGAGAATCCTTGCTTTGAAAGCGCAAC TCCAAGGGACTACTCAGGATCACCTGCAGATATTTAATATTGAATTGAAAGCTAAGATGAAATCATATCAGATGCCTGAG CAGGTAGTCTTCTGGAAGTGGATTAGCCCCAAGACATTGGGCCTTGTAACACTGACCTCTGTATACCATTGGTCAATTGA AGGTGACTCTGAACCTATTAAGATGTTTGAGAGAACTGCGAATTTGGCGAACAACCAGATAATTAATTATCGATCTGACC CTACAGAAAAATGGTTGGTCTTGATTGGTATTGCTCCTGGTTCCCCTGAGAGGCCGCAATTGGTTAAAGGAAACATGCAA CTTTTCTCTGTGGATCAGCAGCGCAGTCAGGCTCTTGAAGCTCATGCTGCATCATTTGCCCAATATAAAGTTCCTGGGAA TGAAAATCCTTCTACTTTGATTTCTTTTTCCACAAAGACACTTAATGCTGGTCAAATTGTATCTAAGTTGCATGTTATTG AGCTGGGTGCGCAGCCAGGTCTGCGGAAGCCATCATTCACGAAGAAACAAGCAGATCTTTTCTTTCCACCAGATTTTGCT GATGACTTTCCAGTTGCGATGCAGATATCCCACAAATACAGTTTGATTTATGTGATTACCAAACTTGGCCTACTTTTTGT CTACGATTTGGAGACAGCTACTGCTGTATATAGGAACAGAATTAGTCCAGATCCTATATTTTTGACATCAGAAGCTACAA CAGTGGGAGGCTTTTATGCCATAAACAGGAGAGGCCAGGTTTTATTGGCTACTGTTAATGAACAAACCATTGTGAATTTT GTCAGCGGTCAATTAAACAATTTGGAGCTAGCAGTTAGTCTTGCCAAAAGAGGAAATCTTCCTGGTGCTGAGAAGCTGGT AGTGGAACGTTTCCATGAACTGTTTGCCCAAACAAAGTACAAAGAAGCAGCTGAGCTTGCTGCTGAATCTCCACAAGGAA TCCTTCGTACGCCAGACACAGTTGCCAAATTTCAGAGTGTTCCTGTGCAATCTGGGCAAACTCCCCCACTGTTGCAGTAT TTTGGAACACTTTTAACGAGGGGAAAGTTGAATGCCTTCGAGTCATTAGAATTATCTCGATTGGTTGTGAACCAGAACAA GAAAAATCTGTTGGAAAATTGGTTGGCAGAGGACAAGCTTGAATGCAGCGAGGAGCTAGGAGATCTCGTTAAGACTGTGG ATAACGATCTTGCTTTAAAAATTTATATCAAAGCCAGAGCTACTCCAAAAGTTGTTGCAGCTTTTGCTGAGAGGAGGGAG TTTGACAAAATTCTGATATACTCTAAGCAGGTTGGGTACACACCTGACTACCTCTTCCTCTTGCAAACAATTCTCCGGAC AGATCCTCAGGGTGCTGTTAATTTTGCGTTAATGATGTCTCAAATGGAGGGAGGTAGCCCAGTTGATTACAATACCATAA CTGATCTGTTTCTTCAGAGAAACCTGATCCGTGAGGCAACAGCTTTTCTTCTGGATGTTTTAAAGCCAAATCTACCAGAA CACGGGTTCCTGCAGACAAAGGTCTTGGAGATAAATCTGGTGACATTCCCCAATGTTGCTGATGCTATTTTGGCTAATGG CATGTTCAGCCATTATGACCGTCCTCGTATTGCCCAACTCTGTGAAAAAGCTGGTCTTTACGTGCGAGCTTTGCAACATT ACACAGAGCTACCAGATATAAAACGTGTGATTGTTAATACACATGCAATTGAGCCTCAGTCACTTGTAGAGTTTTTTGGC ACTCTATCTCAAGAATGGGCTTTAGAGTGCATGAAAGACCTATTGCTGGCCAACCTTAGGGGAAACCTGCAGATTATTGT GCAGGTTGCTAAAGAATACTGTGAACAATTGGGCGTTGATGCCTGCATAAAACTTTTTGAGCAGTTTAGGTCATATGAAG GACTGTACTTTTTCCTTGGCTCATATTTGAGCTCCAGTGAGGATCCTGATATTCACTTTAAGTACATTGAAGCAGCAGCA AAGACTGGTCAAATCAAGGAGGTCGAGCGTGTGACAAGAGAATCCAATTTCTATGATGCCGAGAAAGCGAAGAACTTTCT AATGGAGGCTAAGCTTCCAGATGCACGGCCTTTAATTAATGTTTGTGATCGTTTTGGATTTGTTCCAGATCTAACACACT ATCTATACACAAACAACATGCTTCGCTATATTGAAGGTTACGTTCAGAAGGTAAACCCTGGGAATGCTCCTTTAGTTGTT GGGCAGCTGCTAGATGATGAGTGTCCAGAAGATTTTATCAAAGGTTTGATTCTTTCTGTCCGTTCATTACTGCCAGTGGA GCCCCTTGTGGAGGAATGTGAGAAGAGGAATCGGCTTCGTTTGCTAACTCAGTTCTTGGAACATCTCGTAAGTGAGGGAA GCCAGGATGTACATGTTCACAATGCACTGGGTAAAATTATCATTGAGAGCAACAACAACCCAGAGCATTTTCTCACAACC AATCCATACTATGATTCTCGAGTTGTGGGCAAGTATTGTGAAAAACGTGATCCCACCTTGGCAGTCGTAGCTTACCGGCG AGGACAATGTGATGATGAACTTATCAATGTCACCAGCAAAAATTCTTTGTTCAAATTGCAAGCAAGATATGTTGTTGAGA GAATGGATGGTGATTTGTGGGCTAAAGTTCTTACTCCTGATAATGAGTATAGAAGGCAACTTATTGATCAGGTTGTATCT ACGGCTTTGCCTGAAAGCTCAAGCCCAGAACAAGTTTCTGCAGCTGTTAAGGCTTTCATGACAGCTGATCTGCCTCATGA ATTGATTGAACTTCTCGAGAAGATTGTGCTTCAGAATTCTGCATTCAGTGGGAACTTTAATTTGCAGAATCTTCTTATTT TGACCGCAATAAAGGCTGATCCATCCAGAGTTATGGATTATATCAATAGACTGGATAATTTTGATGGGCCCGCAGTTGGA GAAATGGCTGTAGAAGGTCAACTGTATGAGGAAGCATTTGCAATTTTTAAGAAGTTCAACTTGAATGTTCAAGCAGTTGA TGTCTTGCTTGAAAATATACATAGCATTGATAGAGCTGTGGAGTTTGCTTTTAGAGTTGAAGAAGATGCTGTTTGGAGTC AAGTGGCCAAGGCTCAACTTAGGGAAGGGCTTGTAAGTGATGCCATTGAGTCGTTTATACGGGCAGAAGATGCTACGCAA TTTTTGGATGTCATCAGTGCTGCTGGAAATGCTAATGTTTACCATGACCTGGTGAAATACTTATTAATGGTAAGACAGAA GGCAAAAGAACCCAAGGTTGACAGTGAGCTCATTTATGCGTATGCAAAGATTGATAGGCTCAGTGACATTGAGGAGTTTA TTCTTATGCCGAATGTTGCTAATCTACAAAATGTTGGTGATCGGTTGTATGATGAAGCATTATATGAGGCTGCAAAAATC ATATTTGCTTTTATATCGAACTGGGCTAAGTTGGCCATCACACTGGTCAAGTTAAAACAGTTCCAAGGTGCTGTTGATGC GGCAAGGAAAGCCAACAGCTCAAAAACATGGAAGGAAGTTTGCTTTGCTTGTGTTGATGAAGAAGAGTTTCGTTTGGCCC AGATATGTGGACTTAACATTATTATTCAGAGTTTGAATGGACTGGGCCTTGAAAATGTAATGGTGGATGACTTGGAAGAA GTCAGTGAATATTACCAAAATAGAGGCCACTTCAATGAGTTAATATCTCTCATGGAGAGTGGTTTAGGGTTAGAGCGGGC TCATATGGGCATCTTCACCGAGTTAGGAGTTTTGTTTGCTAGATACCGCCCTGAGAAACTTATGGAGCATATCAAACTAT TCTCCACCCGCCTCAATATTCCAAAACTCATAAGAGCTTGTGATGAACAACAACATTGGACAGAATTGACGTATTTGTAT ATCCAATATGATGAGTTTGATAATGCTGCAACCACCATCATGAACCATTCACCAGAAGCATGGGATCACATGCAATTCAA AGATGTTATTGTCAAAGTTGGAAATGTTGAGTTGTATTATAAGGCTGTTCACTTCTATTTGGAAGAGCATCCAGATCTTA TCAATGATGTTCTGAATGTCCTTGCCCTTCGTGTGGACCATGCACGTGTTGTTGACATCATGCGAAAGGCTGGTCACCTC CGCCTTGTAAAGCCATACATGGTTGCAGTTCAGAGCAACAATGTATCTGCTGTTAATGAAGCCTTGAACGAGATATATGT TGAGGAGGAAGATTATGATAGATTGCGTGAGTCAATTGATTTGCATGATAACTTTGATCAAATAGGCCTCGCACAAAAGA TTGAAAAGCATGAGCTTCTTGAGATGAGGCGTGTTGCTGCTTATATTTACAAGAAGGCTGGTAGGTGGAAGCAATCCATT GCTCTGTCAAAGAAGGATAATCTTTACAAAGATGCAATGGAGACAGCCTCACAATCTGGCGAGCGTGAACTTGCTGAGGA ATTGCTTGTTTATTTCATTGATCAGGGAAAGAAGGAATGCTTTGCCTCGTGTCTATTTGTTTGCTATGATTTAATAAGGG CGGACATTGCTCTTGAACTAGCTTGGATGCACAATATGATCGACTTTGCCTTCCCATATCTTTTACAGTTTATCCGTGAG TACACTGGCAAAGTTGATGAATTGGTGAAGGACAAAATTGAAGCACAAATCGAAGAGAAGGCTAAAGAGAAAGAAGAAAA GGACGTAGTTTCTCAGCAGAACATGTATGCTCAATTGTTGCCTCTTGCTTTGCCTGCGCCACCAATGCCTGGAATGGGAG GAGGCTATGGTCCTCCCCCTCCAATGGGTGGACTAGGGATGCCCCCTCCTTACGGCATGCCACCAATGGGTGGCGGTTAC TAA 

Protein sequence (LotjaGi1g1v0076400.6) extracted from Lotus japonicus Gifu v1.2 Proteins.

MESDKYICVRETAPQSSVVIVDMSMPNQPLRRPITADSALMNPNSRILALKAQLQGTTQDHLQIFNIELKAKMKSYQMPE QVVFWKWISPKTLGLVTLTSVYHWSIEGDSEPIKMFERTANLANNQIINYRSDPTEKWLVLIGIAPGSPERPQLVKGNMQ LFSVDQQRSQALEAHAASFAQYKVPGNENPSTLISFSTKTLNAGQIVSKLHVIELGAQPGLRKPSFTKKQADLFFPPDFA DDFPVAMQISHKYSLIYVITKLGLLFVYDLETATAVYRNRISPDPIFLTSEATTVGGFYAINRRGQVLLATVNEQTIVNF VSGQLNNLELAVSLAKRGNLPGAEKLVVERFHELFAQTKYKEAAELAAESPQGILRTPDTVAKFQSVPVQSGQTPPLLQY FGTLLTRGKLNAFESLELSRLVVNQNKKNLLENWLAEDKLECSEELGDLVKTVDNDLALKIYIKARATPKVVAAFAERRE FDKILIYSKQVGYTPDYLFLLQTILRTDPQGAVNFALMMSQMEGGSPVDYNTITDLFLQRNLIREATAFLLDVLKPNLPE HGFLQTKVLEINLVTFPNVADAILANGMFSHYDRPRIAQLCEKAGLYVRALQHYTELPDIKRVIVNTHAIEPQSLVEFFG TLSQEWALECMKDLLLANLRGNLQIIVQVAKEYCEQLGVDACIKLFEQFRSYEGLYFFLGSYLSSSEDPDIHFKYIEAAA KTGQIKEVERVTRESNFYDAEKAKNFLMEAKLPDARPLINVCDRFGFVPDLTHYLYTNNMLRYIEGYVQKVNPGNAPLVV GQLLDDECPEDFIKGLILSVRSLLPVEPLVEECEKRNRLRLLTQFLEHLVSEGSQDVHVHNALGKIIIESNNNPEHFLTT NPYYDSRVVGKYCEKRDPTLAVVAYRRGQCDDELINVTSKNSLFKLQARYVVERMDGDLWAKVLTPDNEYRRQLIDQVVS TALPESSSPEQVSAAVKAFMTADLPHELIELLEKIVLQNSAFSGNFNLQNLLILTAIKADPSRVMDYINRLDNFDGPAVG EMAVEGQLYEEAFAIFKKFNLNVQAVDVLLENIHSIDRAVEFAFRVEEDAVWSQVAKAQLREGLVSDAIESFIRAEDATQ FLDVISAAGNANVYHDLVKYLLMVRQKAKEPKVDSELIYAYAKIDRLSDIEEFILMPNVANLQNVGDRLYDEALYEAAKI IFAFISNWAKLAITLVKLKQFQGAVDAARKANSSKTWKEVCFACVDEEEFRLAQICGLNIIIQSLNGLGLENVMVDDLEE VSEYYQNRGHFNELISLMESGLGLERAHMGIFTELGVLFARYRPEKLMEHIKLFSTRLNIPKLIRACDEQQHWTELTYLY IQYDEFDNAATTIMNHSPEAWDHMQFKDVIVKVGNVELYYKAVHFYLEEHPDLINDVLNVLALRVDHARVVDIMRKAGHL RLVKPYMVAVQSNNVSAVNEALNEIYVEEEDYDRLRESIDLHDNFDQIGLAQKIEKHELLEMRRVAAYIYKKAGRWKQSI ALSKKDNLYKDAMETASQSGERELAEELLVYFIDQGKKECFASCLFVCYDLIRADIALELAWMHNMIDFAFPYLLQFIRE YTGKVDELVKDKIEAQIEEKAKEKEEKDVVSQQNMYAQLLPLALPAPPMPGMGGGYGPPPPMGGLGMPPPYGMPPMGGGY 

Domain prediction

Data for domain prediction are obtained with InterProScan, and merged with InterPro data obtained from the EB-eye REST service.

Merging data from EBeye. Please wait…

Domains

Sorting

Prediction algorithm Identifier Start End Length E-value InterPro ID
PANTHER 1 1678 1678 0.0
PIRSF 1 1660 1660 0.0
SUPERFAMILY 1 313 313 1.22E-117
PANTHER 1 1678 1678 0.0
Gene3D 1 347 347 1.3E-141
Pfam 122 165 44 8.3E-10
Pfam 314 337 24 6.9E-9
SUPERFAMILY 315 470 156 5.12E-53
Pfam 339 404 66 6.3E-29
SUPERFAMILY 427 763 337 9.78E-86
Gene3D 429 759 331 5.0E-16
ProSiteProfiles 521 667 147 37.264
SMART 521 663 143 2.2E-34
Pfam 525 660 136 1.3E-22
ProSiteProfiles 670 812 143 33.528
SMART 670 812 143 1.6E-39
Pfam 671 810 140 9.4E-21
ProSiteProfiles 817 956 140 36.385
SMART 817 956 140 9.7E-42
Pfam 820 953 134 4.4E-28
SUPERFAMILY 871 1036 166 3.45E-36
ProSiteProfiles 963 1108 146 43.52
Pfam 963 1102 140 5.4E-31
SMART 963 1108 146 5.1E-45
Gene3D 1022 1167 146 4.7E-35
SUPERFAMILY 1023 1165 143 2.7E-26
SMART 1112 1253 142 3.8E-36
ProSiteProfiles 1112 1253 142 32.838
Pfam 1116 1251 136 1.3E-25
SUPERFAMILY 1166 1512 347 4.83E-104
Gene3D 1168 1517 350 1.6E-146
SMART 1269 1415 147 1.2E-42
ProSiteProfiles 1269 1415 147 40.696
Pfam 1275 1412 138 7.1E-28
SMART 1418 1577 160 2.4E-44
ProSiteProfiles 1418 1561 144 39.259
Pfam 1421 1560 140 7.5E-30
Coils 1458 1478 21 -
Gene3D 1523 1622 100 2.2E-38
Coils 1605 1633 29 -

Gene function (GO predictions)

GO predictions are based solely on the InterPro-to-GO mappings published by EMBL-EBI, which are in turn based on the mapping of predicted domains to the InterPro dataset. The InterPro-to-GO mapping was last updated on , while the GO metadata was last updated on .

GO term Namespace Name Definition Relationships
Molecular function Structural molecule activity The action of a molecule that contributes to the structural integrity of a complex or its assembly within or outside a cell.
Molecular function Protein binding Interacting selectively and non-covalently with any protein or protein complex (a complex of two or more proteins that may include other nonprotein molecules).
Biological process Intracellular protein transport The directed movement of proteins in a cell, including the movement of proteins between specific compartments or structures within a cell, such as organelles of a eukaryotic cell.
Biological process Vesicle-mediated transport A cellular transport process in which transported substances are moved in membrane-bounded vesicles; transported substances are enclosed in the vesicle lumen or located in the vesicle membrane. The process begins with a step that directs a substance to the forming vesicle, and includes vesicle budding and coating. Vesicles are then targeted to, and fuse with, an acceptor membrane.
Cellular component Clathrin coat of trans-Golgi network vesicle A clathrin coat found on a vesicle of the trans-Golgi network.
Cellular component Clathrin coat of coated pit The coat found on coated pits and the coated vesicles derived from coated pits; comprises clathrin and the AP-2 adaptor complex.
Molecular function Clathrin light chain binding Interacting selectively and non-covalently with a clathrin light chain.
Cellular component Clathrin complex A protein complex that consists of three clathrin heavy chains and three clathrin light chains, organized into a symmetrical three-legged structure called a triskelion. In clathrin-coated vesicles clathrin is the main component of the coat and forms a polymeric mechanical scaffold on the vesicle surface.

Expression data

Expression pattern

Expression pattern of LotjaGi1g1v0076400.6, powered by ExpAt. For advanced configuration, data transformation and export options, view expression data in the ExpAt application.

Loading expression data from ljgea-geneid. Please wait…