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LotjaGi1g1v0076400.2

Overview

Field Value
Gene ID LotjaGi1g1v0076400
Transcript ID LotjaGi1g1v0076400.2
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..11002081) extracted from Lotus japonicus Gifu genome v1.2.

TTTGTTAGATTCAAGTTGCATTTGCTAACTATTTTCATAAATCTAGAAAGTATTACATATTGAAATCAGTCAGGGCTTTT GAAGATGGGTATCTGTATTGTGAAATTGAACTGTGTGTATCATTATGTCAGATGTCATCCAATTGATCATCCTTCTGGAG TTTAACTTCTCAATTATTTTTGCAGGGAAGCCATCATTCACGAAGAAACAAGCAGATCTTTTCTTTCCACCAGATTTTGC TGATGACTTTCCAGTTGCGATGCAGGTAAGTGAGTTGCTAATGTTTGTTCTTCATGTTATAAATAGTGTACATATTTGAT TCCTACTTCGGTTTTTGGCAGATATCCCACAAATACAGTTTGATTTATGTGATTACCAAACTTGGCCTACTTTTTGTCTA CGATTTGGAGACAGCTACTGCTGTATATAGGAACAGAATTAGTCCAGATCCTATATTTTTGACATCAGAAGCTACAACAG TGGGAGGCTTTTATGCCATAAACAGGAGAGGCCAGGTTTTATTGGCTACTGTTAATGAACAAACCATTGTGAATTTTGTC AGCGGTCAAGTATGTTTCTGACTTTGTTATTGCTTATATGATGTAAAGCAGGAAACGAGTTTTGCATTTTAACATATTCC ATGTGGTTGATATTGCAGTTAAACAATTTGGAGCTAGCAGTTAGTCTTGCCAAAAGAGGAAATCTTCCTGGTGCTGAGAA GCTGGTATAATTTAGTTTAGAACATAACTTTAGTAATAAATAAATAAATAATTTCTTCATTAGAGTGTTTTAGGGAGACC CCAACTCAAGAACTTGGATGCATTTTGTTAATCTTATGCTGTTTCGCCAACTGTTGAATGCTAACTTGCATGAAGTTTGC TTACATTCTAACAATAAGAAGTGCAATGCTTAGATGTATTGTTGATTTTTCTTTTCTTTGTCACTAGGTCAGTTTATTCC ATCCGTGGTTGACATACATTTCCTTTCCTTACTGATATTTGTTGTAGAATTGTTTTGTACTGTCAATCTTGTTATTTTAT GTTTGTAAAAGATATTTGCTGGAGATGAGGGAGATAATATGAGCACAACCTTGTTGATGTATGCTGTAAACTTATTGCTT GTTTTGTCATTTACTTAATCAACATTGTCTACATGCTTTAATCTGTTCTTTTCCATGTTTTATGAAATATTTGATATTAA TTATTGAATTGTGTTGTGTAAGCTTCTTAGAAAATGATGCTTATTGTATTTTTTGTTTCTTACTCGTTGGCATGATGGCA ATACTTGTTGACATTATAGGTAGTGGAACGTTTCCATGAACTGTTTGCCCAAACAAAGTACAAAGAAGCAGCTGAGCTTG CTGCTGAATCTCCACAAGGAATCCTTCGTACGCCAGACACAGTTGCCAAATTTCAGGTTTTATGGTTATCCAAGAATTTT CTGGTGTTTTTTTCTGCTACTTTATTTACGTAGACAGTCATCTTTGGTTGTTTATTGTTTGCCTTTAGGCAGTGTCCTTT TGTTTGGTCAATTAGGTTATAATGTTTAAAATGTCTCTGTATGCTCTATGTGGCAGAGTGTTCCTGTGCAATCTGGGCAA ACTCCCCCACTGTTGCAGTATTTTGGAACACTTTTAACGAGGGGAAAGTTGAATGCCTTCGAGTCATTAGAATTATCTCG ATTGGTTGTGAACCAGAACAAGAAAAATCTGTTGGAAAATTGGTTGGCAGAGGACAAGCTTGAATGCAGCGAGGAGCTAG GAGATCTCGTTAAGGTTTAGTTGAATTAATTTGTTTAAAGAATTTAAAATTGTTATGTTAGTTATTTGTATGTTTGTATT TTTATATTTTTAACTGTTTGCTTAATGAGGTACTACTTCTCATTTTATTTGCTTATGGTGAAATGGTGTATTTCTATTAA TTTTCATGAGTGGTCTCCCTTGCAGACTGTGGATAACGATCTTGCTTTAAAAATTTATATCAAAGCCAGAGCTACTCCAA AAGTTGTTGCAGCTTTTGCTGAGAGGAGGGAGTTTGACAAAATTCTGATATACTCTAAGCAGGTGCTTGTTTACTTATAA AAGAATATTGAAGGTTGATTCATTAGATACTTCAAAGTTAAATCCTAGAGTGTTTTTCCCAGCCTGTATAAATAGCATTA TATTACCTTTATATTTAACTGGAAACATTTGGCCCTGAACATTTTCATTACTTATTTGTTGCTATAGGTTGGGTACACAC CTGACTACCTCTTCCTCTTGCAAACAATTCTCCGGACAGATCCTCAGGTATGAGACATTTTTTTGCAGGTTATTTTGTGT AATTGTTTTAGTTGAACATTTTCATTGTAATTTCACCTTTGTCTTCCATCTTGTTGGATGCGTGGTAAATGTTTTCATTT TGAACAGTATTTATACATTATTGACCACGTCTGTTGAATTTTCTTCTACACAAAGAAATTCCAGGAAGTTACCATTTTTA TTTTGATCTTCAGGGTGCTGTTAATTTTGCGTTAATGATGTCTCAAATGGAGGGAGGTAGCCCAGTTGATTACAATACCA TAACTGATCTGTTTCTTCAGGTTGATTATCTACTGGGATTAAGCAATTATGATGTGTAATAGTTTGATACATTAGTGTCA TTTTCATTTTGTTTTTTTTTTTATCGATCACATTTTGGTTATTCTTTGTTCTCCTCAGAGAAACCTGATCCGTGAGGCAA CAGCTTTTCTTCTGGATGTTTTAAAGCCAAATCTACCAGAACACGGGTTCCTGCAGACAAAGGTTGTGGCCTTTGTTTCC TATTTTATTATGGGCATTTTACTTCTGAGATTCTTTCTTTGAAGTGATATAATCTTCTTATCAATTGTGGTTCAGGTCTT GGAGATAAATCTGGTGACATTCCCCAATGTTGCTGATGCTATTTTGGCTAATGGCATGTTCAGCCATTATGACCGTCCTC GTATTGCCCAACTCTGTGAAAAAGCTGGTCTTTACGTGCGAGCTTTGCAAGTAATGACTTGCCAAATATGTTTTATTCTT GCTCTTTGCCTACTTAAAGCTTAAACTTAAAGTCATACCATTTGCTGATTGCACTATTCTTGGTGCAGCATTACACAGAG CTACCAGATATAAAACGTGTGATTGTTAATACACATGCAATTGAGCCTCAGGTGTGCCCTGTTGTTTTTATCTATTTAAG CATTTAGTGTTTACAATAAGTCGTGTGATATTTTTAAATACTTACTCATTATTTGGCTGTTATAGTCACTTGTAGAGTTT TTTGGCACTCTATCTCAAGAATGGGCTTTAGAGTGCATGAAAGACCTATTGCTGGCCAACCTTAGGGGAAACCTGCAGAT TATTGTGCAGGTATGGAAATTTCATTGTATTTTATAACTTGGGACTTGCTAATAATCGAAACTAAGCTTACTTATGTCTA TTCAGGTTGCTAAAGAATACTGTGAACAATTGGGCGTTGATGCCTGCATAAAACTTTTTGAGCAGTTTAGGTCATATGAA GGACTGTACTTTTTCCTTGGCTCATATTTGAGCTCCAGGTAATTCTTGCTCTTGAAAAAAAAACTTATGTTTTTTCTGTT GTTAATGGACCTGATTTATTTTTGAGATATATTCCGATGTGTTTCTGCTGATATATATTGTATATGCTTCTCTGAATAAT ATGGGACAGTGAGGATCCTGATATTCACTTTAAGTACATTGAAGCAGCAGCAAAGACTGGTCAAATCAAGGAGGTCGAGC GTGTGACAAGAGAATCCAATTTCTATGATGCCGAGAAAGCGAAGAACTTTCTAATGGAGGCTAAGCTTCCAGATGCACGG CCTTTAATTAATGTTTGTGATCGTTTTGGATTTGTTCCAGATCTAACACACTATCTATACACAAACAACATGCTTCGCTA TATTGAAGGTTACGTTCAGAAGGTATCACATAGTTACGCTGCTTTTCTCATGAATGCTATCTACTCTCTCTTTATCTGCC CTGCCTGAGCTTTGTGCTTTGCTATATAGGTAAACCCTGGGAATGCTCCTTTAGTTGTTGGGCAGCTGCTAGATGATGAG TGTCCAGAAGATTTTATCAAAGGTTTGATTCTTTCTGTCCGTTCATTACTGCCAGTGGAGCCCCTTGTGGAGGAATGTGA GAAGAGGTGGGGTTTTGTCCTGTAATCTTATGCATTGTTGATTGTGTTCACATTAGTGACTTTTCACAATAGTGACTTTT ATCCCACGATTTTTTTATTTGCAGGAATCGGCTTCGTTTGCTAACTCAGTTCTTGGAACATCTCGTAAGTGAGGGAAGCC AGGATGTACATGTTCACAATGCACTGGGTAAAATTATCATTGAGAGCAACAACAACCCAGAGCATTTTCTCACAACCAAT CCATACTATGATTCTCGAGTTGTGGGCAAGTATTGTGAAAAACGTGATCCCACCTTGGCAGTCGTAGCTTACCGGCGAGG ACAATGTGATGATGAACTTATCAATGTCACCAGCAAAAATTCTTTGTTCAAATTGCAAGCAAGGTTTGTGGTGTATATAT GGTATTTTTTCCGCCAAATCGCTTTTCTTTGGATTCAATGCTGACATGGTTATATTGTGTGACAGATATGTTGTTGAGAG AATGGATGGTGATTTGTGGGCTAAAGTTCTTACTCCTGATAATGAGTATAGAAGGCAACTTATTGATCAGGTTGTATCTA CGGCTTTGCCTGAAAGCTCAAGCCCAGAACAAGTTTCTGCAGCTGTTAAGGCTTTCATGACAGCTGATCTGCCTCATGAA TTGATTGAACTTCTCGAGAAGATTGTGCTTCAGAATTCTGCATTCAGTGGGAACTTTAATTTGCAGAATCTTCTTATTTT GACCGCAATAAAGGCTGATCCATCCAGAGTTATGGATTATATCAATAGACTGGATAATTTTGATGGGCCCGCAGTTGGAG AAATGGCTGTAGAAGGTCAACTGTATGAGGAAGCATTTGCAATTTTTAAGAAGTTCAACTTGAATGTTCAAGCAGTTGAT GTCTTGCTTGAAAATATACATAGCATTGATAGAGCTGTGGAGTTTGCTTTTAGAGTTGAAGAAGATGCTGTTTGGAGTCA AGTGGCCAAGGCTCAACTTAGGGAAGGGCTTGTAAGTGATGCCATTGAGTCGTTTATACGGGCAGAAGATGCTACGCAAT TTTTGGATGTCATCAGTGCTGCTGGAAATGCTAATGTTTACCATGACCTGGTGAAATACTTATTAATGGTAAGACAGAAG GCAAAAGAACCCAAGGTTGACAGTGAGCTCATTTATGCGTATGCAAAGATTGATAGGCTCAGTGACATTGAGGAGTTTAT TCTTATGCCGAATGTTGCTAATCTACAAAATGTTGGTGATCGGTTGTATGATGAAGCATTATATGAGGCTGCAAAAATCA TATTTGCTTTTATATCGAACTGGGCTAAGTTGGCCATCACACTGGTCAAGTTAAAACAGTTCCAAGGTGCTGTTGATGCG GCAAGGAAAGCCAACAGCTCAAAAACATGGAAGGAAGTTTGCTTTGCTTGTGTTGATGAAGAAGAGTTTCGTTTGGCCCA GATATGTGGACTTAACATTATTATTCAGGTAACTTGCTGAATTCAGTTTTTCAATGAACTATATATATATATATATATAT ATATACACACATATATATTCAAAAATAAACTACGAAGGCTGTTCTTGATTTTTTATGCCATATGATCTCAATTTAAAGAG TTTGAATGGACTGGGCCTTGAAAATGTAATGGTGAACCAAATATCCCCAAAAGAATGCTGTGAATGTGTAAAAATGTAAA TGATTGGAAGGCGTTTGCGCTTATTATCTGAGCTTTATGTTGGTCCCATTGTAGTAAACTTATTGACTTCCCATTGCTTA ATATGACAATTTTGTAGGTGGATGACTTGGAAGAAGTCAGTGAATATTACCAAAATAGAGGCCACTTCAATGAGTTAATA TCTCTCATGGAGAGTGGTTTAGGGTTAGAGCGGGCTCATATGGGCATCTTCACCGAGTTAGGAGTTTTGTTTGCTAGATA CCGCCCTGAGAAACTTATGGAGCATATCAAACTATTCTCCACCCGCCTCAATATTCCAAAACTCATAAGAGCTTGTGATG AACAACAACATTGGACAGAATTGACGTATTTGTATATCCAATATGATGAGTTTGATAATGCTGCAACCACCATCATGAAC CATTCACCAGAAGCATGGGATCACATGCAATTCAAAGATGTTATTGTCAAAGTTGGAAATGTTGAGTTGTATTATAAGGC TGTTCACTTCTATTTGGAAGAGCATCCAGATCTTATCAATGATGTTCTGAATGTCCTTGCCCTTCGTGTGGACCATGCAC GTGTTGTTGACATCATGCGAAAGGTAGCATTGATAGTGGCAATAATTTCATAGATCTTAGTTTGTCGCTTGCTACAACAC TAATGAATGTTTTCTCTGTAATGTGCTATAGGCTGGTCACCTCCGCCTTGTAAAGCCATACATGGTTGCAGTTCAGAGCA ACAATGTATCTGCTGTTAATGAAGCCTTGAACGAGATATATGTTGAGGAGGAAGATTATGATAGATTGCGTGAGTCAATT GATTTGCATGATAACTTTGATCAAATAGGCCTCGCACAAAAGGTGAGCTGGATTTTATGTTAATGATGACTATTTTTCAG TTTCTGTTGTGGAAACCTGATAGGTTAATATTATTATATGATGCAGATTGAAAAGCATGAGCTTCTTGAGATGAGGCGTG TTGCTGCTTATATTTACAAGAAGGCTGGTAGGTGGAAGCAATCCATTGCTCTGTCAAAGAAGGATAATCTTTACAAAGAT GCAATGGAGACAGCCTCACAATCTGGCGAGCGTGAACTTGCTGAGGAATTGCTTGTTTATTTCATTGATCAGGTGCTAAA TTCAGTTTCAAACTGCATCTATAATTCATTTTCTTGCAACATCCTATCTGAGTAGGTTTATTTCTATTTTTGGCAAATAT GTTTTGTTCAGTTACTATGAGGAGCTAAATCATAATGTTTTTGTGCACATGAATGGGATAAGTGGACTTTACATTCTTCT CTGTCGCAATGGTTATTGCATATTAGTGGCACCTCTTGTAGCATGTGGAATTCCATTTCACTCAGAAATTATTTGATACC TAGTAGTATTTTCTTTCTTTGTCAAGCTTAGTGACTATTTGTTCTGCTAGTGCATGTTAGAGCCTTGCAGTCAACAATTC ACTGAAGCATTGTCTTTTAATCTTCTTACCCAAGGGTCCAAGCCGTTTCCTTTTCTCTCATGGAATAATAATATTCTGAT TCATTTATTATATTTATTTATGTGCATACAATTGAGTTTCTAATTTTTCTTTTCACATACTTATGCAGGGAAAGAAGGAA TGCTTTGCCTCGTGTCTATTTGTTTGCTATGATTTAATAAGGGCGGACATTGCTCTTGAACTAGCTTGGATGCACAATAT GATCGACTTTGCCTTCCCATATCTTTTACAGGTTTGCATTTCGTCCATGCTGCTGACTTTTATTGCCTATAATTCACTTG GCATATATGTCCTTTTTATGATAAATGTTGATCTTAGGCTTAAGAAAACTTACATTACTGGATATTTCTCCTCACCCCTC CTGTCTGTTTTCCTGAGAATCATGATGGCTATCTTATAGAGCTTTTCCTTTTATAAGTGAACTAGAGTTTTTTACCCCGT GCGTTGCACGGCGAAATTTGTTATTTTATTTGAGATATTAATCAATACTTTGATTATGAAAAAGTTGAGATACTAAGAAT GAAAACAATTATAATAAGAAATAAAATATTTTAAAAATATAAATTGCGAAATTTAATTATAGTGTTTTATACTCATACAC CCCATTTTACAAATATTAAGTTCCAAATAATAAAGGATTTAATTGGTAAAAATCTTTATTTATTCACATTGAGGTACAAA AAAAAATTGCTTACCAAGATGAAAATACAAATATTTGACTCTATTATGTTGCGGACCAACAAAATGAAACAAAACTATAA GTTTAACATTTAAATATTTTCATATAAAATACTCCTTCTTGTTGGAGCTTTTACCTTTAAATTTGAAATATTCTCTTATG ACCTGTTATCACATTAATATTTACTCTAAGAGTAAGAAATATACTAAAATTATATTAATATTTATTTTTCTATTAGTTTC ACAATAAATATTTTTTTTCATGTAAAACGTTAATCACCGTAAGAGCTTTTTACCAATATTTTCCATTATTATGATGATGA CACAATCATCCACCACATTAATGACTCGTCTGAAAAAAAAAAACAAATTAGAACAAAAAAAAGTACCATAAAACTATATT GTAAATAAATAAAATATTATTAATTTTTTTTTTATGTTTTCTAATTCTCATACTACACATTTTCATTGTCAAATATTTAT AGGTTTTCATATATTCATAAGCACAAATACCTAATTCTCTTAAATTAAGAAAAGTAGTTATTAGTAATAAATTTGTAAAT GAAATGGTTAATTGTCCTAGATTACCCTTATTTAATTTTCTATGAATTTTTCTCTCCAAGTTAATATTCTAAAAGTTCAT TATCTCTTTCATATGAAATACGAGGGTAAAATTGGAAAAAATATTTTTAATGCTTTCTAAATATTAAAAAAGGACTAATA TTTAGAAATAATTTTTTTTTCATAAAAAGTGACTTATAATAAGAAACGGGGGAGTATCTACTCCTAAAATTATTTATAAA ATTGCGAAAATATATGTTAATTAATAGTATGAATTATTTATATTATTAATTTTAACATTATATTTTCATGTAAAATATCA CCCTGTGAGAGCTTTTTAACATTCTAGGATCTATTAAATATAGTACTAAAGACATTTCCACAATTCCGATTTTTTTTTAA ATCATATAATTTTAAAAGAAAATCAGTAAATCAGATTCTAACAATATATTTGCTGCCCAAAAATCAAAAGATCCTTAGAA TGTTTTCAAAAGAAAAATGATGTGAAATCAATAGGTTTGGATTTGGAAGAAGATTAGAGCATCCAAAAGAATCAAACAGT TGCGAACTTGCAATGTCAAGACACAATCTTCCAATGTGAATGGAAAACAAAATCACAAAAGTGGTCGAGGGTTTACTGAA CTACATAACTCAAGTTAGTGGAGATGATTTGTACACTCCTATCATACATTCTATTTACCTATCCAAATATGGAAACCTCA CAATCAAATTGTTGTTTCTAAAAGGATTAAAACTTAAACAAAATATAAAAGTTAATATGTTAATTAATACCATAAAAAAT AACTTAAAACCTATAACTTGAAACACATCAAACATTCTCTTCGTTATACATGCCTCATTCTCCATCCCATATTTGCCAGT CCCTCGCAGGAAGTGCCCCATTAACGCTCCAATAGACTACGGAAAACTGCACACCAAATCAGCACATTCATCATTCTAGT ATTGGACGCAGGGACCCTTCAGGAAATCCTGGTTAAGTTTCCAACCGGTAAAGAGCCAATAAGAATCCGTTTTAAAAACA CATATAGGAAAAACTACAAAATGCCTTGATAGAAAAAAGCAAATAACTCATGACTGTTCAAGTTATGTTCTTGATACCCA TCTTGTAGAAAAAAAAAGTAAATAACTTAAAAGGGACATGAGGAAAGATAAAAAGTCTTCTTCACTTATATGATAGACAT CTAGTTCATATCCATGCCATATCCAACTGGGCTGAAGACAGCGCTGCCTTGATAATGGTTATGAAAAAAATTAAACCATG TAGTATGAGAACTTGCCATGTTAAGTTCCCTGCAACATGATGGTGTCCTCTTGCGGCAGCCCCATTCTCTTCGGTGTACA TACTCATAATAAATACGATCAATTTCCTGCAAACAAATCATCAACATTAGACATATGCCCGTAATGGAACAAACAGAGTG AAAGACTATCACTGCGATTCTGCAAGGAAGTTAAACAGATAAGATGACATGCTTGAAATGAAATTAGGGATTGATGAGAA CATAACAGTTAAAAGCACAAAACAATTTAATTCTTTTCACCAATGGTGGTTAGGGATTTAAAAATAGTTTCATTAAGAAT AGTAAGCATTGCAGATAGGACATCATGAACCAAATAAGCTAACAGGACCCTAAGAAAGTTGCATAAAGAATAGTAAGCAT TGCAGATAGGATATCATGAACCAAATAAGCTAACAGGACCATAAGATTTTGTTGTCTTTCTCATCATAAATCAATTGTTA AGGTTTGCTTAAGGTTGAGGACATCCCTCTCAAGTAGATAGGATATCCATCAAAACCACTTTTATAAACAAAAACCCCAA AAAAAGCACTTGTAGAAAAATCTTTGCTAAACTATGAAAGTAACAAAATAACACCAGAATTAAATTCATCAAGCTGTTGT TGATGGTAACTGTACAAAAGCACTTTCAAAATCCAATCAACTCTAATCACATAACTTGACAATGCAAGATACAGAGACAA TAGTCATCCAAAATAAGAAACTCATTTTAAAACAATCTCATTGGTCTAAAATTCACCAGATTATGATGAGAATCCTTAGA ATAATATTCATGAGTGAAAAATATAGGCTATAATCTTCTATGTTATACTACACATACATATCTCTTTATAGGCACCTTAA GATTAATTGGGAGCAAATCAATTTTCAAGGGCACTCCTAATCTGTATAGTAATTTTGTTAGGAAAATGAGTCTTACTGTA ATTGCCAAAGAAGTACATAGAATACCTAGAAGTAACTCCTATAAATATTGCAATCATCAAAGTCAAAACATTATAACATA TAATTGCCTGGGTTCATAGGTTTAATACCTTCACAACTATTCTGCAGTCTGCACATAAATCCATTGACCTTTGTCATTCT CAGTCTCATGTTAAAAATTTAAATAGCAAAAGAACTTGCTTTTGGTCCTATTTCAAACAGCCAAAACAACCTACAACATG AAAGGTAAGAGAATCAATTATAACATTGAGAACCAAGACTACAGGTAAAGGTATTTATCAATATCTTCCAAGTAAATATG GAAGCATTTAATTTTAAAGTAAACCCGAATATATCAGTATAAAAAAAACAAAGAAAATCTGGATGCCAGACAACAACAGG GAGCAACAACCCAATCAAAATGAAGTGATTAATGAAGCAACAACACGTTCCAATAATGATTTATCAATCCTGAAGCCCTG CAACCAATTATCAACATCAAAAATTGTTATTATGAAAATGGAGTTTAGGGTACAGGACAATTTGCAATTTAAGTGGAGAA CCCTATAACATATAATTCTCGCAGCAACCAGCACAATCATGGTTATTGCTTATTGGGTTGATGCACATGACTTAGAATGA ATCGATGGAAACTATATTCATGGTTCTTAAAAACTTGGACTTGACATTACAAATATGCTGTTCGTAGTAATTTGTAACTG GATTATGGTATTCAGTAAAATCTAACCGGATAATTGAATGGAAAATGGGGATGAAGAGAGAATGTACCGCCGGAGACGAA GTGAGGTTGAGAGTTGTGGAGATGAACGCCTCTGACGGGGCCGTCTGTGGCGGCTGGCGAGGAACCATGGCCGCTTGCGG TGGAAACTGAGAACCTTTCTTGTGTTACTCTTGGTCAGAGAAAAGATGAAGAAGAAGTAGGAGAAATAGGGTTTTGGATA TTTTAAACGCTATCGAGGAAGAAAGACGACATCTGGATCGGGCGGGGAGCGGAGGAATCAGTTGAGGCGTGAGGGAGAAA ATGATGGGAATAAAGCTGGTTGAAGAAGAAATTCCTCATATGGCAGATGTGAATAAGCTGGATAAAGTGGTTGGCAGATT AGAGAGCTTAAAAATTTGATTTTGAAATTCACATGTTCATGGGAGCTGTGCAGAGCTTGGGACACGAAACGTGCAGAAGG GAGGTGGGGGTTGAAGAAATTTGATTGGTCATGGAGGGAAGAGATTAATAGGAATCAGGAAAAAACAATTATCAAGGCTT TGCATGCTTCTGTGGTATGTGTGAAACATTTAAAAATGGGGTTGGAAGTTCCACTCTTTGGAAAGCTTCTTCTGGAAGGG TGAAAAGAGAGCTTGCCACGTCAGCGAAACAGGGAACTCGATTGGTGGATGAGTGCCACGTGAAATCTGAGTGAGATAGG AGAATAAAGGAGAACATGACACATAATCAGTGAATGGAGGGAAGCAATGAGAGTGAGCCACGTTGGAATTCCACTCACTT TGAGAATGCATCAGAGAAGAGAATGATTCTGGTGACGACACATAAGCAAATGGGTCTCATAATCCTTGCTGTTTTAATAT ATATATTGATATTGATATTGATTCAATCATCTTTGTAAAGTCTGACAGTTTATGGGTTGCATCTTGAACAGTCGCTGTGA ACTACTTTTTGATGAATGTTGGCTTTCTAGTTTACACTTTACTGTTGATAAAAATTATGAATAGTAGATACTAGATAGTC TCTGCGAGATAGTGATGATAAGCTTATGATGGTTGTAGTTCTTTTTATGTACTTCTGGTATTGCATGGGTGGGTTATCCG AGCACATCTAGGTTGACTAATGCATTTATTTACTTTCTTCAGCCTTTCCTGCAACGGATCTATTTTTTGCCATCATCTTG TGCTTTATCTTACCATCTTCTCTTGTAGTTTATCCGTGAGTACACTGGCAAAGTTGATGAATTGGTGAAGGACAAAATTG AAGCACAAATCGAAGAGAAGGCTAAAGAGAAAGAAGAAAAGGACGTAGTTTCTCAGCAGGTAACTTTTTTGGTTATTTTC TGTTGGCCAAATATAACTTAATTTTGAGCACCGCTGACATTCATGTCATCAGTTTGAATGTTCAGAGCAGTTTGCTGTTG ATTAACCCGATTTCCATCTCATCCTTTATTGTCAACTGGTTGGACTTTAGAGTAGTGTTGTTAATGAATGAGATGTGTTT TCTGTTGCAGAACATGTATGCTCAATTGTTGCCTCTTGCTTTGCCTGCGCCACCAATGCCTGGAATGGGAGGAGGCTATG GTCCTCCCCCTCCAATGGGTGGACTAGGGATGCCCCCTCCTTACGGCATGCCACCAATGGGTGGCGGTTACTAA 

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

ATGTCAGATGTCATCCAATTGATCATCCTTCTGGAGTTTAACTTCTCAATTATTTTTGCAGGGAAGCCATCATTCACGAA GAAACAAGCAGATCTTTTCTTTCCACCAGATTTTGCTGATGACTTTCCAGTTGCGATGCAGATATCCCACAAATACAGTT TGATTTATGTGATTACCAAACTTGGCCTACTTTTTGTCTACGATTTGGAGACAGCTACTGCTGTATATAGGAACAGAATT AGTCCAGATCCTATATTTTTGACATCAGAAGCTACAACAGTGGGAGGCTTTTATGCCATAAACAGGAGAGGCCAGGTTTT ATTGGCTACTGTTAATGAACAAACCATTGTGAATTTTGTCAGCGGTCAATTAAACAATTTGGAGCTAGCAGTTAGTCTTG CCAAAAGAGGAAATCTTCCTGGTGCTGAGAAGCTGGTAGTGGAACGTTTCCATGAACTGTTTGCCCAAACAAAGTACAAA GAAGCAGCTGAGCTTGCTGCTGAATCTCCACAAGGAATCCTTCGTACGCCAGACACAGTTGCCAAATTTCAGAGTGTTCC TGTGCAATCTGGGCAAACTCCCCCACTGTTGCAGTATTTTGGAACACTTTTAACGAGGGGAAAGTTGAATGCCTTCGAGT CATTAGAATTATCTCGATTGGTTGTGAACCAGAACAAGAAAAATCTGTTGGAAAATTGGTTGGCAGAGGACAAGCTTGAA TGCAGCGAGGAGCTAGGAGATCTCGTTAAGACTGTGGATAACGATCTTGCTTTAAAAATTTATATCAAAGCCAGAGCTAC TCCAAAAGTTGTTGCAGCTTTTGCTGAGAGGAGGGAGTTTGACAAAATTCTGATATACTCTAAGCAGGTTGGGTACACAC CTGACTACCTCTTCCTCTTGCAAACAATTCTCCGGACAGATCCTCAGGGTGCTGTTAATTTTGCGTTAATGATGTCTCAA ATGGAGGGAGGTAGCCCAGTTGATTACAATACCATAACTGATCTGTTTCTTCAGAGAAACCTGATCCGTGAGGCAACAGC TTTTCTTCTGGATGTTTTAAAGCCAAATCTACCAGAACACGGGTTCCTGCAGACAAAGGTCTTGGAGATAAATCTGGTGA CATTCCCCAATGTTGCTGATGCTATTTTGGCTAATGGCATGTTCAGCCATTATGACCGTCCTCGTATTGCCCAACTCTGT GAAAAAGCTGGTCTTTACGTGCGAGCTTTGCAACATTACACAGAGCTACCAGATATAAAACGTGTGATTGTTAATACACA TGCAATTGAGCCTCAGTCACTTGTAGAGTTTTTTGGCACTCTATCTCAAGAATGGGCTTTAGAGTGCATGAAAGACCTAT TGCTGGCCAACCTTAGGGGAAACCTGCAGATTATTGTGCAGGTTGCTAAAGAATACTGTGAACAATTGGGCGTTGATGCC TGCATAAAACTTTTTGAGCAGTTTAGGTCATATGAAGGACTGTACTTTTTCCTTGGCTCATATTTGAGCTCCAGTGAGGA TCCTGATATTCACTTTAAGTACATTGAAGCAGCAGCAAAGACTGGTCAAATCAAGGAGGTCGAGCGTGTGACAAGAGAAT CCAATTTCTATGATGCCGAGAAAGCGAAGAACTTTCTAATGGAGGCTAAGCTTCCAGATGCACGGCCTTTAATTAATGTT TGTGATCGTTTTGGATTTGTTCCAGATCTAACACACTATCTATACACAAACAACATGCTTCGCTATATTGAAGGTTACGT TCAGAAGGTAAACCCTGGGAATGCTCCTTTAGTTGTTGGGCAGCTGCTAGATGATGAGTGTCCAGAAGATTTTATCAAAG GTTTGATTCTTTCTGTCCGTTCATTACTGCCAGTGGAGCCCCTTGTGGAGGAATGTGAGAAGAGGAATCGGCTTCGTTTG CTAACTCAGTTCTTGGAACATCTCGTAAGTGAGGGAAGCCAGGATGTACATGTTCACAATGCACTGGGTAAAATTATCAT TGAGAGCAACAACAACCCAGAGCATTTTCTCACAACCAATCCATACTATGATTCTCGAGTTGTGGGCAAGTATTGTGAAA AACGTGATCCCACCTTGGCAGTCGTAGCTTACCGGCGAGGACAATGTGATGATGAACTTATCAATGTCACCAGCAAAAAT TCTTTGTTCAAATTGCAAGCAAGATATGTTGTTGAGAGAATGGATGGTGATTTGTGGGCTAAAGTTCTTACTCCTGATAA TGAGTATAGAAGGCAACTTATTGATCAGGTTGTATCTACGGCTTTGCCTGAAAGCTCAAGCCCAGAACAAGTTTCTGCAG CTGTTAAGGCTTTCATGACAGCTGATCTGCCTCATGAATTGATTGAACTTCTCGAGAAGATTGTGCTTCAGAATTCTGCA TTCAGTGGGAACTTTAATTTGCAGAATCTTCTTATTTTGACCGCAATAAAGGCTGATCCATCCAGAGTTATGGATTATAT CAATAGACTGGATAATTTTGATGGGCCCGCAGTTGGAGAAATGGCTGTAGAAGGTCAACTGTATGAGGAAGCATTTGCAA TTTTTAAGAAGTTCAACTTGAATGTTCAAGCAGTTGATGTCTTGCTTGAAAATATACATAGCATTGATAGAGCTGTGGAG TTTGCTTTTAGAGTTGAAGAAGATGCTGTTTGGAGTCAAGTGGCCAAGGCTCAACTTAGGGAAGGGCTTGTAAGTGATGC CATTGAGTCGTTTATACGGGCAGAAGATGCTACGCAATTTTTGGATGTCATCAGTGCTGCTGGAAATGCTAATGTTTACC ATGACCTGGTGAAATACTTATTAATGGTAAGACAGAAGGCAAAAGAACCCAAGGTTGACAGTGAGCTCATTTATGCGTAT GCAAAGATTGATAGGCTCAGTGACATTGAGGAGTTTATTCTTATGCCGAATGTTGCTAATCTACAAAATGTTGGTGATCG GTTGTATGATGAAGCATTATATGAGGCTGCAAAAATCATATTTGCTTTTATATCGAACTGGGCTAAGTTGGCCATCACAC TGGTCAAGTTAAAACAGTTCCAAGGTGCTGTTGATGCGGCAAGGAAAGCCAACAGCTCAAAAACATGGAAGGAAGTTTGC TTTGCTTGTGTTGATGAAGAAGAGTTTCGTTTGGCCCAGATATGTGGACTTAACATTATTATTCAGGTGGATGACTTGGA AGAAGTCAGTGAATATTACCAAAATAGAGGCCACTTCAATGAGTTAATATCTCTCATGGAGAGTGGTTTAGGGTTAGAGC GGGCTCATATGGGCATCTTCACCGAGTTAGGAGTTTTGTTTGCTAGATACCGCCCTGAGAAACTTATGGAGCATATCAAA CTATTCTCCACCCGCCTCAATATTCCAAAACTCATAAGAGCTTGTGATGAACAACAACATTGGACAGAATTGACGTATTT GTATATCCAATATGATGAGTTTGATAATGCTGCAACCACCATCATGAACCATTCACCAGAAGCATGGGATCACATGCAAT TCAAAGATGTTATTGTCAAAGTTGGAAATGTTGAGTTGTATTATAAGGCTGTTCACTTCTATTTGGAAGAGCATCCAGAT CTTATCAATGATGTTCTGAATGTCCTTGCCCTTCGTGTGGACCATGCACGTGTTGTTGACATCATGCGAAAGGCTGGTCA CCTCCGCCTTGTAAAGCCATACATGGTTGCAGTTCAGAGCAACAATGTATCTGCTGTTAATGAAGCCTTGAACGAGATAT ATGTTGAGGAGGAAGATTATGATAGATTGCGTGAGTCAATTGATTTGCATGATAACTTTGATCAAATAGGCCTCGCACAA AAGATTGAAAAGCATGAGCTTCTTGAGATGAGGCGTGTTGCTGCTTATATTTACAAGAAGGCTGGTAGGTGGAAGCAATC CATTGCTCTGTCAAAGAAGGATAATCTTTACAAAGATGCAATGGAGACAGCCTCACAATCTGGCGAGCGTGAACTTGCTG AGGAATTGCTTGTTTATTTCATTGATCAGGGAAAGAAGGAATGCTTTGCCTCGTGTCTATTTGTTTGCTATGATTTAATA AGGGCGGACATTGCTCTTGAACTAGCTTGGATGCACAATATGATCGACTTTGCCTTCCCATATCTTTTACAGTTTATCCG TGAGTACACTGGCAAAGTTGATGAATTGGTGAAGGACAAAATTGAAGCACAAATCGAAGAGAAGGCTAAAGAGAAAGAAG AAAAGGACGTAGTTTCTCAGCAGAACATGTATGCTCAATTGTTGCCTCTTGCTTTGCCTGCGCCACCAATGCCTGGAATG GGAGGAGGCTATGGTCCTCCCCCTCCAATGGGTGGACTAGGGATGCCCCCTCCTTACGGCATGCCACCAATGGGTGGCGG TTACTAA 

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

MSDVIQLIILLEFNFSIIFAGKPSFTKKQADLFFPPDFADDFPVAMQISHKYSLIYVITKLGLLFVYDLETATAVYRNRI SPDPIFLTSEATTVGGFYAINRRGQVLLATVNEQTIVNFVSGQLNNLELAVSLAKRGNLPGAEKLVVERFHELFAQTKYK EAAELAAESPQGILRTPDTVAKFQSVPVQSGQTPPLLQYFGTLLTRGKLNAFESLELSRLVVNQNKKNLLENWLAEDKLE CSEELGDLVKTVDNDLALKIYIKARATPKVVAAFAERREFDKILIYSKQVGYTPDYLFLLQTILRTDPQGAVNFALMMSQ MEGGSPVDYNTITDLFLQRNLIREATAFLLDVLKPNLPEHGFLQTKVLEINLVTFPNVADAILANGMFSHYDRPRIAQLC EKAGLYVRALQHYTELPDIKRVIVNTHAIEPQSLVEFFGTLSQEWALECMKDLLLANLRGNLQIIVQVAKEYCEQLGVDA CIKLFEQFRSYEGLYFFLGSYLSSSEDPDIHFKYIEAAAKTGQIKEVERVTRESNFYDAEKAKNFLMEAKLPDARPLINV CDRFGFVPDLTHYLYTNNMLRYIEGYVQKVNPGNAPLVVGQLLDDECPEDFIKGLILSVRSLLPVEPLVEECEKRNRLRL LTQFLEHLVSEGSQDVHVHNALGKIIIESNNNPEHFLTTNPYYDSRVVGKYCEKRDPTLAVVAYRRGQCDDELINVTSKN SLFKLQARYVVERMDGDLWAKVLTPDNEYRRQLIDQVVSTALPESSSPEQVSAAVKAFMTADLPHELIELLEKIVLQNSA FSGNFNLQNLLILTAIKADPSRVMDYINRLDNFDGPAVGEMAVEGQLYEEAFAIFKKFNLNVQAVDVLLENIHSIDRAVE FAFRVEEDAVWSQVAKAQLREGLVSDAIESFIRAEDATQFLDVISAAGNANVYHDLVKYLLMVRQKAKEPKVDSELIYAY AKIDRLSDIEEFILMPNVANLQNVGDRLYDEALYEAAKIIFAFISNWAKLAITLVKLKQFQGAVDAARKANSSKTWKEVC FACVDEEEFRLAQICGLNIIIQVDDLEEVSEYYQNRGHFNELISLMESGLGLERAHMGIFTELGVLFARYRPEKLMEHIK LFSTRLNIPKLIRACDEQQHWTELTYLYIQYDEFDNAATTIMNHSPEAWDHMQFKDVIVKVGNVELYYKAVHFYLEEHPD LINDVLNVLALRVDHARVVDIMRKAGHLRLVKPYMVAVQSNNVSAVNEALNEIYVEEEDYDRLRESIDLHDNFDQIGLAQ KIEKHELLEMRRVAAYIYKKAGRWKQSIALSKKDNLYKDAMETASQSGERELAEELLVYFIDQGKKECFASCLFVCYDLI RADIALELAWMHNMIDFAFPYLLQFIREYTGKVDELVKDKIEAQIEEKAKEKEEKDVVSQQNMYAQLLPLALPAPPMPGM GGGYGPPPPMGGLGMPPPYGMPPMGGGY 

Domain prediction

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

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Domains

Sorting

Prediction algorithm Identifier Start End Length E-value InterPro ID
PIRSF 16 1448 1433 0.0
PANTHER 20 1466 1447 0.0
PANTHER 20 1466 1447 0.0
SUPERFAMILY 21 112 92 9.94E-32
Pfam 113 136 24 5.9E-9
SUPERFAMILY 114 269 156 4.26E-53
Gene3D 115 276 162 5.8E-68
Pfam 138 203 66 5.4E-29
SUPERFAMILY 226 562 337 7.77E-86
SMART 320 462 143 2.2E-34
ProSiteProfiles 320 466 147 37.264
Pfam 324 459 136 1.1E-22
SMART 469 611 143 1.6E-39
ProSiteProfiles 469 611 143 33.528
Pfam 470 609 140 7.9E-21
ProSiteProfiles 616 755 140 36.385
SMART 616 755 140 9.7E-42
Pfam 619 752 134 3.7E-28
SUPERFAMILY 670 836 167 2.19E-36
SMART 762 907 146 5.1E-45
ProSiteProfiles 762 907 146 43.52
Pfam 762 901 140 4.5E-31
SUPERFAMILY 821 964 144 8.92E-27
Gene3D 821 965 145 4.8E-35
SMART 911 1052 142 3.8E-36
ProSiteProfiles 911 1052 142 32.838
Pfam 915 1050 136 1.1E-25
SUPERFAMILY 965 1300 336 1.61E-106
Gene3D 966 1305 340 6.1E-151
ProSiteProfiles 1057 1203 147 42.593
SMART 1057 1203 147 4.3E-44
Pfam 1061 1200 140 4.8E-28
ProSiteProfiles 1206 1349 144 39.259
SMART 1206 1365 160 2.4E-44
Pfam 1209 1348 140 6.3E-30
Coils 1246 1266 21 -
Gene3D 1311 1410 100 1.8E-38
Coils 1393 1421 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 LotjaGi1g1v0076400.2, powered by ExpAt. For advanced configuration, data transformation and export options, view expression data in the ExpAt application.

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