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LotjaGi2g1v0114200.3

Overview

Field Value
Gene ID LotjaGi2g1v0114200
Transcript ID LotjaGi2g1v0114200.3
Related isoforms 2
Lotus japonicus genome version Gifu v1.2
Description Chaperone protein dnaJ; TAIR: AT2G22360.1 DNAJ heat shock family protein; Swiss-Prot: sp|Q9SJZ7|DNJA6_ARATH Chaperone protein dnaJ A6, chloroplastic; TrEMBL-Plants: tr|I1KT02|I1KT02_SOYBN Uncharacterized protein; Found in the gene: LotjaGi2g1v0114200
Working Lj name n.a.

Sequence information

Genomic sequence (LjG1.1_chr2:42191738..42204193) extracted from Lotus japonicus Gifu genome v1.2.

CGCTTTCGCGAAACAACTCCAGTACTCCACCCTCCTCCTCCCACTCCCTACCGGTACTTTCTTCTCTTCCTCTTTTCTAA TACACTCATTTCTAATTGTTCTTCACTATTCCCCTGCTTCTGATTTCAACTCGCTACCTATCTGTCACAATTTGCTCACA AACATCGATTATAAGCTTCACGCCTTCATGGGTTTTGTGTAAGTTTGAATTTTCTGCTAGCATTTTTCTACATTTCCCTC TATTTGGGTTACAATTTCATCGAAACAAACATGCCCATCAGCATGAATTAAGTTCCATGTTGGTTGATTGATTTTGTATT TTCATCTGACTTATGGACTGTTTGAAGTGTTGAGTTACATCATTATTGATTCCATTTTGGTTTTGAAATTGTTAACTGAA TGGCAATGCCTTACCCTTAACATATCTTATGCTAAATTAATTGCAGCAGCATTTCACTTAGATCTTAATTCTATGATTCT TAACCTCTGGCTGTAATGCAAGCAGACACAAGTTGGTTTTATAAGCTAAATAATTTGACATTTAGCTTCGAGGAGATGGA CTTATTAACTTTCATGCCGTCGCAGTATAGATACTCTTTTTTAGTTAATGGTCGAATTTTGTACTTCAATCATATTTTTG GGCTGTCTTTTGGTCCATGAGGAATCCCTTTCTCTAATTTATTGCTAGACATTAATTGTGTTTATTAATATGGACTAGTT TTTTCCACCAATTGATGTAGATTGTGGGATGGCTGATTCTGCATAACTAATTCAGCATTATGAACTAGTCTTTTGTCTTC CAGCATTATATGCAGTTTGAAATGAAAGATGCATACCACGGTTCTCATTTTCTTGCAATTTTTTTGTAATAGTATTAACT GCACAGATATGCGTTATTGAAAACAAGAAAAAGATAAATAGAAAATCTAGTCCTCCTTCCTTTCCACCTAATCAGAGAGG TGTAGAGAGAGACTCAAGAAATAGAGGAATATGTAGGGACTTGGAATTCATATCAATAGAGAGGCCCAAACCCAAAGCAC ATAGAGAAATAGCGGGAACTGAAAAGGAAGCAACAAAGATGAAAGCAATAGAGAGAAATTGAAAATCATTGGCAGAGAAT AAATTATAAAACACTGGAACAGATACTGAAGAACCAAGGGGTTACATGAGAAAACTATCATTCATCGGAGATGGTGGAGG TTATTAGTTAGTGTCATTTATTTCTCATTAAGAATTTCTACATCTTACACTATGAATGCAATAGATGATTCTTTTAGGAA TTAGGAACGAAATCGATATTGATGATAACTGGATGGCTGGAGATGATAACTCGAGAAGCTCAATTCAAATTCTGTTTATG TACTGCCTCTTAGTTTTTGATATTTTCTGCTTCTGGCTCTTTAAGCTTTGGGTCTCAGCTCTATGGCGTTGTTGGTCTTT GTGGTTGGGTCTTTTGGTTTGCATGACTCGGGTGGCTCTCTATTGTAGGTGTCGTGCGACTGGTAGGATGTTTGAACTTG TCATTGCTTTTGGCTTTAATAGGAACCTCTCCTAGTGGTGTAAACGCTAGGGGCTGTTTGTTTGGTGTTGTTTGCTTGTG GGGATTTTAGAGGTTTTTAGAGGGTCTTTGCTGTAGTGGCTGGGTTTTTGCCATCTTTTTGTTAGCTTGGTTACTGTACC CATGTTGAGAGGGGTTGTTTCTCAACTTTATCTATATTGACATATATCTTTTAATTAAAAATAAACTATACAATTCAAAT TTATGTCCTTAATTTATACAATTTTATGCTTCAAAAGATTTTGCAGTCTTCCTTGGATTTTGTTTCACTTACTATGTTCA GCTTTGTATCATGCGGCGTCTTGAACTATCTTTCTCCTTCTGAAGTTGTAAACTAAATATATGCTCATTTTTTAGTAGTT TCCTTCTGTTTAGATAGTATCTTACTGAACATTAAAGCTCATTTTAGCTCATTAAATTTCAGCATACAATGTTTGCAGCT AGCAGACTTTCATTGAAAAAGGTCATCTTCATTAGCATATTGTCTTGCTGAAGATATATTGGATGGCCATAACACCTTTA GGTAGTACTTCTGCATCACAATGGGGAGTTCGTCCTCAGCTATTGCTCAGGTCCAGTTTGACAGGCAAGGGTGCATCATC TAGCCACAAGTAAGTTCTGTGGTTATATATTTGTTTTGTAGAATAATAGCGGACGGGTGTACTAATCATGTCAATTTCCA ATGCACATATTGGATATAACAGTAGGTCTGAAGTTTATAGCTCCTATAGTCCTATTCATGATTCCTGGTGATGCAATTGT CTTACATAGTTACACCATGGGTAGAACTAAATTACTTTAAAGTCTGGGTTCTTCATCATATTATTGAGATCGACAGCGAT GCAATCATAAGTTGGGTATGATATGATATTACTATCAGTTTTATTTCTTCGATGTGATCTGAATTTCTCGGAAACTCGGG AATATTTTCTACCCTATCTGTCATTGACCATTAATCTTCTTCATTATCCCGCTCGCTAGATACACTTACTTTCTGGATAG ATTTCTGTGCTGGAGAGTGTAGTTTGTTTAACTCACCTCACTTTCCTTGCAGTGTTACAACCAGGGTGAGCTTCATGGCT GCCCCAAGTTCTAGTTTTTTGTCTCCAGATTCCTTGCATATACTATTTAACGCTGGTCTCTATCAATCTTTGAAATGTCG GAAGGGGTCACGGTTGATTGTAAGAGCAAATACAGTAAGTTTGGGATACAGTTCTCAGCAACAATAAGTTCCTTTTGGGT GCTTCTCAAAAAAAAAAAAGTTCCTTTTGGGTGTTTTTATGTGATTGAACTTTATGGAAGTATTCCTCATGGTTAAACTG TATGGTCCTCGTGATTTAGTCAATATACTACCCTGAATATCCTTTTTTTGTCAATGTGCAGGATTATTATTCTGTCCTTG GGGTTTCAAGAAATGCTAGTAAATCTGAAATTAAGAGTGGTATTTTCTATCTGTTTCCTCCATTATCCAACTGCACGATC ACATCTCTTTTATGATATTGGAATTTTCAAGCGTGGCGAGTTGTTCAAATGTTATCTCTGTATAAAGAAAAGTCAATTAG CATATTAGTAGGCTTTAATCTGTTCGCTATTTATTGATTTCAAACATTTGTTAATATAACTTTAGTCTGGAAAAGTGCAT CTAACATATATGTGAAGCATACAAAAGTTGGTTCTTGAAGGAAATCCAAGACATGTAACTGTCAAAGAAGTCTGCCCAAA CCTAAAAACAGAGATAGGATAATGATGTCAATCAGATGGATACCATTGATCAGTGTTACATATGTCAACAGCTTATGCTT GTTAACAAGACCGTCAAGACGTGCTATTTTTTTATTTTTTTTATTTGAATGGAAATTATCCCTACTACTACCAAATGACC TTGTTGTTAACTTAAAGCTTTCAATAAAAAATTTAAAATTTAAAATTAGTTGCACCATTGAAACCTTTGATGGCGAGGTT TTTGTATATATCGTCATAAACTAGAATTCTGGTGTACTAGGAAAATTTCCACCCAAGAGTAGAAATTTAGAGTTAAGTAG CAAACATCAATCTCATGTAATTTATTTGTCATGTAGATAGTTTTGCAAAGTATATTTGAAATTAATAACAGGAAACACCA ATGATTAGGGCTAATATTACACTTGTATTTGGCAAAGAATATTCTTATAAATCGGAGTACAGTTTAGTGTTTACGAATAA AACATCACAATCCTATTAGTGAAATAAAGTCTCTCTTATCTACCTAATCCTGTAATTTCAACATCCATCATCATCTGTGT CCATGGCTGCTTCTACTGCAGTGGTTAACTTCTTTGGAACTCCTATTCATTTGGCTGTATCTTCTGGTGGCTGTGTTTAT TTTTTGCAGTAGTTGTATTCATCCATTTGTCTGTCATTCCCCTTCGGCCTTCTCCAACTATATCTGTATTTCACCAGGCA CTTTAACCCCTTTGATGGTTCATCCATCTTCATGTCCTTTGTTCTCAAGATCCAGACTGTTAGTGATGGAAACCCAAAAC AGAAAATAGAACTGAAGGAATGAAACAGTAATCAGGATTGTTTATTGATGAATTGGAAATCGTTACAGAGAAGGAAAAGC CTTTCCTAAACTGACCAGAGCCAAGCTCCTATAGGAAGCTATTGCTTCCTACTCATTACTACACGCTCAATGATTTCAGA ATCCCCTCCCTACCTCTCACTACCTTCCTTATATTATGGAATGGATTACAATCCTACCTCCCCTCTCTCTCGCCAGCTCA CCAGCTGTGCTGTTAGTTAGTTACTACTCCCTTTGTCCCTTTTGCCCCTTCTAGAGTATACCTTCCACTCTTTGGGCTTC GACCCCACATGGGCTAATGACTCACTTGGGCCAGCTGCTGGATCATAGTTCCTAATAATGCCGCCGTCTGAACTCACAAC CTTGTCCCCAAGGTTGAAGTTTGGGTATAAACTCATGATGGTGAGGGCATCCTCCCAGGTAGCCTCCTCAGCAGTTTTGC CTTGCCATTTAATTAGTAGCTGCTGAATGGTGTCACCCTGCAACTTCACCAGGCGAGTGGCTAAAACAGTGTCGGGTGTG TCCTTGTCATCATACTCGCCCTCCAATTGATCTGGCAAATCTGCTTCTGCAGAGTAGTCCCCAATCGCCTTCTTGAGCAA TGACACATGAAACACAGGATGAACTCGCGATCCTTCTGGTAAACGTAACCTGTAAGCCACCGCACCCACACGAGCCACGA TAGGATAAGGCCCATAGTATCGGGCTGCCAGCTTTGCATGAACTCGGGTTACTACAGATTGTTGACGATGTGCGCGAAGC TTCACAAAGACCCATTCTCCGACAGTAAATGATTTTTCAACCCGCTTAGTGTCAGCTTGTGACTTCATTCGACCCTGGGC TCGCAAGAGTTGTGCCTTCAACTGGCGCAGAACCTCATCTCGATCAACCAATTCACGTTGCACTGCGTCAACCCTGGTCT CCCCGAGTCCCCAACGTGTGATTGCTGGGGGTTTGCGTCCATAAACAACCTCGAACGGGGTCATATGTGTGGCTGAGTGG TAAGATGTATTGAACCAATACTCAGCCCAATGGATCCAAGTTGCCCACGTTTTAGGTTGATCAGCCGCAAAACAACGCAA ATACGTTTCCAAACAGCGATTTACGACTTCCGTTTGTCCATCCGATTCGGGGTGGTACGCGGAACTCATATTCAACTGTG TGCCCTGCAACCGGAAAAGCTCTTTCCAGAAATGACTCATAAATACTGGGTCCCGGTCGCTCACAATGGTTGAGGGAACT CCATGCAAACGTATGACTTCCTTGGCAAACAATTCAGCGATGCTCTTCGCAGTATAGGGGTGCTTCAGCGGAATGAAGTG ACAGAATTTGGATAGGCGATCCACGACCACTAGCACTGCCTCGTATCCCCTGGATTTAGGTAGGCCAGTTATGAAATCAA TCGAGAGATCTTCCCACACCTGATTCGGGATGGGTAGAGGCTGCAGCAAGCCTGCGGGCGATGAGGCCATGTACTTTTGT CTTTGGCATGTATCACAGCTACGAACAAACTCTTGCACCGTGTTCTTCATGCCTACCCAATAGATGTTGGCCGCGAGCCG CCGATAGGTGCGGAGAAATCCGGAGTGCCCGCCATGTGGGGTGGCATGAAATTCCTTTAACATCTGTGGAATTAGAGAGG AAGTATGTGACAAAACCAGCCTCCCTTTGTACAACAGAATCCCCTGCTGTAGACTGAATTCCGGATGAGTTGATGGGTCA TTTTGTAACTCCATGATCACATGCTTAAGTTTTGCATCCTGCTGAACCTCTGTTGCTATCAACTGGTGATCTTCCCAGCG CGGGTACGTGCACACGGTCCTGATCTCACCATATTCCCCAACGCGCGATAGCGCATCTGCTCCCTTATTTAACTTCCCAG GTTTATAAACGATATCAAAGTCATACCCCAATAGCTTCGCGGCCCAATTCTGTTGTTCCCCAGTAATAATCTTTTGATGG AGCAACTCTTTAAGACTCTTCTGATCAGTAGACACAAGAAATTTCCGTCCCAATAAGTAAGGACGCCAATGCTGTATCGC CAAAGCTACTGCCATAAGCTCTTTCTCATAGGCGGACTTAGCGAGGTTCCGTGGTCCTAAGGCCTTGCTATAGTATGCTA TGGGTTTCTTGTCTTGCATCAAAATCGCCCCGAGGCCACACCCTGACGCATCACACTCAATTAGGAATTCTTTCTCAAAA TCTGGAAGTGCCAAAACAGGGGCCGTTGTGAGCTTCCCTTTTAGAGTTTCAAATGCATTTTGTGCTGCAGCTCCCCACTG AAAAGCATCTTTCTTTGTCAAATCTGTGAGTGGCCTTGCTATTTTCCCATAATCCCGAATAAATTTCCTGTAGTAACCGG TTAATCCAAGAAAACCTCTCACCCCTTTTACATTCTTGGGCACGGGCCAACTCTTGACACTCGCCACCTTGCTAGGATCA ACCGCCACTCCCTGTGCTGAAATCAGGTGCCCCAAGTATTCAACTGAGTCTTGCGCAAACTGACATTTCTTCTTGTTTGC TGTCAAGTGTTGCTGTTGGAGGAGTTGTAAGACCTTCTCAAGATGCAATAGGTGCTTTTCCCAATCGCTGCTATACACTA GAATATCATCAAAAAATACAAGCACTCCCTTCCGGAGCATGGGACGAAAAACTGCGTTCATCAAACTCTGAAACGTCGAT GGTGCGTTCATGAGACCGAACGGCATTACGAGGAATTCGTAGTGCCCTTCATGGGTACGGAATGCCGTTTTATGCACATC CTCTGCCCTTACGCGAACCTGATGATACCCCGACTTGAGATCAAGCTTTGAGAAAAATTTAGCACCATTCAACTCATCGA GCAGCTCTTCAATTACAGGAATGGGAAACTTGTCAGGGACTGTTACCTTATTGAGTGCGCGGTAATCCACGCACATACGC CATGACTGGTCCTTCTTCTTGACCAAGAGCACTGGACTGGAGTAAGCGCTTGAGCTATGTCGTATGATGCCGGCTGACAA CATCTCCTGAACCTGCCTTTCAATTTCATTTTTATGGGTATGGGGATAACGATATGGTCTGACGTTGACTGGTCCCTGCC CTTCCTTTATGTTGATACAATGCTCTTTGCCTCGACTCGGGGGTAGCCCCTCCTGAGCTTCAAACACACTGTCATACTCT TGCAACAACTTCTGCAAGCTTTCCTGTTGCGCTGCCTCTAGATGCTGACCTTTGGGAACCTCATGCCGGTGCTCCAAGAG TCCAAACGCTAGCTTGCTGTCAAGGTCAGACCTTCTCAGGATGCTTTGCAACGCCCCCATGGAACTCCCGCCAGCACTAA GACCCTGTAGCCTTACCCACTGTGTGCCGTGCCAGAAACTCATAGTATGCTTTCCCCAATTAGCAATTGTATCTCCCAAC GTCTTGAGCCATTCAATTCCTAGCACAATATCAGGGCCTCCCAGATCAAACAAATGGGGTGTGCACGAGAACTTGTAATC CCCAATCTCCAGGTCAAGCTCCTTACACTTACCTCTGGTGTGAGTCTGGAAACCATCTCCCAACTTGATGGACATCCGTG GAGTGTCTTCCACTTCCCAGCTCATTCGTTGCACAACCTTGTGGTCAACGAAATTATGAGTGGCTCCGCTGTCGACTAAC ACGAGCACGGGCACCCCTCGCACTTTTCCTTGTAGCCTCATGGTTTGTGGCGGCTCACCATGGTCGACGAGATTGCACAA ACTCATTATACTTAGCTCACCATCGACCTCGTCTTCCATCTCGTTCATCTCTACGGCGAGAATGTTCCCATCGCCGGCGT CGTCGTCGCCGTCTTCGACGAGCAGCACTCGGAGTTGGCGATCGGGGCATTTGTGCATTGGGTGGAAAGGGCCTCCACAT TTGAAGCACTGACCCTTTTGTTTCCGCTCCAGTAATTCATGATAAGTGAGATGGGAGAATCCCCTGTCACGTGGACCGGC CCTCCTAGCTTCTGTTGTTGCCTTGGGGTCGCCTTTTGGGCCACCAAAAACTGGTTTATTAGTAGTCGCGGGCCCATTAT CCTTAGCGCCTTTGACCCAGACCCAATCGGTGCTTCCCGGGCGACCCGGCCCCGGGCGATCGCCAGTCCGGAAACCCGCT CCACCAATCCTCGAACTACGGTTATAACCCGACCCGGCTTCACCCCTTACTTCCTTCTCCACCGCCCGGGCGATCAAGAG CAATCTTGAGCGGTTCACTCCGCCCATCGCCACCAAGCTCCTCGCCTTTCCCCGTATCTCTTCTTTCAGACCATGCAAGA AGTATCCCTGGTATTGCTTCTCAGGTAATTTTGGGATTTGGGCCGTCAAATATTCGAACTCGGTAATGTACTCCTCCACC GTACCTTTCTGACGCAACTCAGTCAATTGCTCGTACACGTCACCGTCGCCGTGACCGCCATAACGCTCCAGAAGAGCTTG ACGCAACTTTTCCCACGTCAGGGGAGCTTCTGATTCGAGCAAAGAGTTGTAAAAATGGATGGTGGGTCCATCCATGCTGA GCTGAGCGAGGCTCACCTTGACCTCCGGTGAAGTCTCTTGCACACGGAAATACACCTCCGCGCGTGAGATCCAGCCCGCC GGGTCTCTCCCGTCGAAGATCGGCAACTCTACCTTCTTTACTGACTGGCGAAACTCCGCCAACGCATCGCCGTGTAGAGG TTGCGTTCGTGGTCCTCCTTCGTTCGCTTCAGGTTGCTCAGGAACCTCAGCGCTTGAGCTTTCTCCCTTGTCTCGGTTTG CACTTGCATCTTCCCTGTGTGACATTTTTCCTAACGATCGTTCCATCATCGCAATCAACGATGCAGGAAGATCCTTCATC GCCGTCGTAACAGCTACCAGCGACGTTCGCATCTCAGCGAGCTCGCCTTCAAGAGCATCAAGCTTTGCTTCCATCGAGTT TGTCGTGTGTTTGGATTTTCTGGGTGGCATTCACTGGTTCCGGCGAATCAATCCGGCAGGTCGGACCAATTTGATGGAAA CCCAAAACAGAAAATAGAACTGAAGGAATGAAACAGTAATCAGGATTGTTTATTGATGAATTGGAAATCGTTACAGAGAA GGAAAAGCCTTTCCTAAACTGACCAGAGCCAAGCTCCTATAGGAAGCTATTGCTTCCTACTCATTACTACACGCTCAATG ATTTCAGAATCCCCTCCCTACCTCTCACTACCTTCCTTATATTATGGAATGGATTACAATCCTACCTCCCCTCTCTCTCG CCAGCTCACCAGCTGTGCTGTTAGTTAGTTACTACTCCCTTTGTCCCTTTTGCCCCTTCTAGAGTATACCTTCCACTCTT TGGGCTTCGACCCCACATGGGCTAATGACTCACTTGGGCCAGCTGCTGGATCATAGTTCCTAATAGTTAGCCTGTTACTG CTCTCTAATTTGGGTGGCGTTTTTCATGGCTGTTCTCCCATTCATCATGGTTGGTTACTGACTCTCTCCACGACCCTATT AGTGTGCTTGCCACCCTTCAATTGGTCACACTCTTCAGTTGGTGCCCTTATCACTGTTCCACATGTTAGCTAGCTGCTGC TTCCATGTTCCCCCACCTTCTGCTGTGTGAGTATGCATTTGACCACCTTTTGGCCAGATCATCACACACAGCTCATCTAG TAAGCATTTTGGACCTTCCCCATTCCTTATTGACCTTCAGCTCTGTCATATTGGCTCCTTTCCCCAATCTGCTCTGTTTA GCCATGTGTTTTTCGTAAATAGTTGAGAGCTTGCCTTGCATGCATCGCTGCATCAGAAAATTATTTTTATTGTGTTAGGA GTGTTATTGACCTATGTTTATGCTGGTTTTTACACATGTGCTTAACCTAGAATATTAGTATTCAGGTAGTTGTGTATGAG CACAACGCATAACACTACAATCCTATTAGTTAAGTACACACTCACTTTTCTCCTTTCCTTCTAATAGCTAGATTTCAACA ATTGTGAGGTCTGCATATTATTTGCTTGGTTGTGTTTACTGCTCGCTGGTTAGTGTCATATGTCATTGCAAATATGAAAC TATGTTCTTTTGACATTTCAGCTTATCGGAAGCTTGCCCGCACTTACCATCCTGATGTAAACAAGTGAGTTATTTATTCA ATTTCATATATTATAACTGTCAAGAACCAACTATCCCAAAAACTTAAGCTTTTGGGTAATCATACATGAATGGTTTTATG TTATACTTCTTTTACGCCCCCTCACGAAATTGCCCATTGGGCTTGAAGCGTGGACAATGCATAACCCCACCTACCTTATG CTGAAATTCCACTTTTTTATTAGAATAATTGGGGGCAACAAAGATCGAACTCTAGATCATTTGGTCATAGAGACTTTGAT ACCATATCATGTACCAACTATCTCAAAAGCTTAAACTATTGGGTGAAGATACATGAATGGTATTATCTTCTAACAGTAAC TTTGTCTTCTCTCAAACTCATTCCTTCCCCTTGTTCCCCCTTTTGTATTTCTCGTTCTTTCTTTCTGTGTTTGTCTTCAC CTCATTTGGTTATCTCATTCTCATTATATTTGTATCTTATCTCTTTTTAAAAATTATTGATTTTGTTAATGAAATTATTG CTATCTTGTGAATTACATTTTTATCATATTCTGGGCATTGATTGATAATGCATTCTCTATAAATTGAATTCTTTGTTTTT TGGTTTCTTAATAATGTATTTTATTTCAAAAGTAAAGGTTATTTTTTTGTAATAGTTTGTATATCTAGAATTTTTCTAGC CATAAAAATGGTTGTGCTTGATCAAAATACTTGGAGGAAGGGGACTTGACTTCCACAAGTTCAAATTGAATTTAGCATGA TGTGAATGTCAATTTTTCATGTACCATGGTTTTCTGTTATCATCTGAACTGCTTGATAAATGTTGCATATTATTGAACTC GAGTTATTGAGCGTAATTGCGTATTCACATATACTGTAGAGAACCTGGAGCGGAAACTAAATTTAAGGAGATCAGCAATG CTTATGAGGTAAAACTACAGATTAATGAACTCAGCTGGCTCTTGTTCATGTCAAATAACGACTTGTCTTGTGTAATTATA TTTCTTACGCAGGTCTTATCAGATGATGAGAAACGATCCATTTATGACAGATATGGAGAGGATGGGCTTAAGGGTTCTGG ATTGGGCACAGGGGTAAGTTACTTCAGATGGCGATGGATAATTTTATTTTGTAATGAGTATTCTTGTTTTCAAAGAAGGA TTATCTCTGTCATGTCAGGATTTCAGCAATCCTTTCGATCTATTTGATTTGTTTGAAAAGATGAATCGTGGTGCAAGTCC TAGAGGTTCTTGGAATGGAGCAATTGCAGGCGAAGATGAATATTACAGTCTTGTTTTGAACTTTAAAGAAGCAGTTTTTG GCATAGAGAAAGAGATAGAGATAAGCCGATTAGAGAGCTGTGGAACTTGCAATGGTTCTGGTGCTAAACCTGGGACTACA CCATCCAAATGTGGCACTTGTGGAGGTCAAGGCCAAGTCATCTCATCAACAAGGACTCCATTAGGTATCTTCCGGCAGAC CATGACGTGCTCGTCATGCAATGGGATGGGGGAAATTTCAACACCTTGCAGTACATGTTCTGGGGATGGTCGAGTGAGGA AATCAAAGCGGATAAGCCTGAAAGTCCCAGCTGGTGTGGATTCGGGTAGCCGTTTAAGGGTTAGAAACGAAGGAAACGCC GGAAGGCGAGGGGGTCCTCCTGGCGACCTCTTTGTTGTTATTGAAGTTATCCCAGATCCTGTCCTCAAAAGAGACGACAT CAACATCTTGTACACCTGCAAGGTTTCTTACATTGATGCAATCTTGGGGACTACAATTAAGGTTCCTACAGTAGATGGAA TGGTGGATTTGAAAATTCCATCAGGGACCCAACCCAACACTACACTTGTTATGGCTAAGAAAGGTGTTCCCCTGCTGAAT AAAAACAACATGAGAGGAGATCAATTTGTTCGTGTACAAGTTGAAATTCCTAAGAGACTGAGCAGTGATGAGAGAAAGCT TATAGAGGAACTTGCTGATTTAAGCAAAGACAAGACTACCAGCAGTACCAGATAACATATGGTGGGAACCTCTGTTTTTA TTTATCGATGTAAATTATGCTCCTTTCATGGATGCATCATTCTTCATTACACTCTTAAACTCTGGGAGGGACTTCAATGT GTTGGTAGATGCAATTGGTTTATTTGTCCTTGGAATAAAAGGTGGTACCAAGAGCCGAAGAAATAAAAGATATTTTTTCA TTGCAACTTATACGCTTCTTGTAATTTATTTTTGGGGAGGGTTGCTATTCACTAAA 

CDS sequence (LotjaGi2g1v0114200.3) extracted from Lotus japonicus Gifu v1.2 CDS.

ATGGCCATAACACCTTTAGGTAGTACTTCTGCATCACAATGGGGAGTTCGTCCTCAGCTATTGCTCAGGTCCAGTTTGAC AGGCAAGGGTGCATCATCTAGCCACAATGTTACAACCAGGGTGAGCTTCATGGCTGCCCCAAGTTCTAGTTTTTTGTCTC CAGATTCCTTGCATATACTATTTAACGCTGGTCTCTATCAATCTTTGAAATGTCGGAAGGGGTCACGGTTGATTGTAAGA GCAAATACAGATTATTATTCTGTCCTTGGGGTTTCAAGAAATGCTAGTAAATCTGAAATTAAGAGTGCTTATCGGAAGCT TGCCCGCACTTACCATCCTGATGTAAACAAAGAACCTGGAGCGGAAACTAAATTTAAGGAGATCAGCAATGCTTATGAGG TCTTATCAGATGATGAGAAACGATCCATTTATGACAGATATGGAGAGGATGGGCTTAAGGGTTCTGGATTGGGCACAGGG GATTTCAGCAATCCTTTCGATCTATTTGATTTGTTTGAAAAGATGAATCGTGGTGCAAGTCCTAGAGGTTCTTGGAATGG AGCAATTGCAGGCGAAGATGAATATTACAGTCTTGTTTTGAACTTTAAAGAAGCAGTTTTTGGCATAGAGAAAGAGATAG AGATAAGCCGATTAGAGAGCTGTGGAACTTGCAATGGTTCTGGTGCTAAACCTGGGACTACACCATCCAAATGTGGCACT TGTGGAGGTCAAGGCCAAGTCATCTCATCAACAAGGACTCCATTAGGTATCTTCCGGCAGACCATGACGTGCTCGTCATG CAATGGGATGGGGGAAATTTCAACACCTTGCAGTACATGTTCTGGGGATGGTCGAGTGAGGAAATCAAAGCGGATAAGCC TGAAAGTCCCAGCTGGTGTGGATTCGGGTAGCCGTTTAAGGGTTAGAAACGAAGGAAACGCCGGAAGGCGAGGGGGTCCT CCTGGCGACCTCTTTGTTGTTATTGAAGTTATCCCAGATCCTGTCCTCAAAAGAGACGACATCAACATCTTGTACACCTG CAAGGTTTCTTACATTGATGCAATCTTGGGGACTACAATTAAGGTTCCTACAGTAGATGGAATGGTGGATTTGAAAATTC CATCAGGGACCCAACCCAACACTACACTTGTTATGGCTAAGAAAGGTGTTCCCCTGCTGAATAAAAACAACATGAGAGGA GATCAATTTGTTCGTGTACAAGTTGAAATTCCTAAGAGACTGAGCAGTGATGAGAGAAAGCTTATAGAGGAACTTGCTGA TTTAAGCAAAGACAAGACTACCAGCAGTACCAGATAA 

Protein sequence (LotjaGi2g1v0114200.3) extracted from Lotus japonicus Gifu v1.2 Proteins.

MAITPLGSTSASQWGVRPQLLLRSSLTGKGASSSHNVTTRVSFMAAPSSSFLSPDSLHILFNAGLYQSLKCRKGSRLIVR ANTDYYSVLGVSRNASKSEIKSAYRKLARTYHPDVNKEPGAETKFKEISNAYEVLSDDEKRSIYDRYGEDGLKGSGLGTG DFSNPFDLFDLFEKMNRGASPRGSWNGAIAGEDEYYSLVLNFKEAVFGIEKEIEISRLESCGTCNGSGAKPGTTPSKCGT CGGQGQVISSTRTPLGIFRQTMTCSSCNGMGEISTPCSTCSGDGRVRKSKRISLKVPAGVDSGSRLRVRNEGNAGRRGGP PGDLFVVIEVIPDPVLKRDDINILYTCKVSYIDAILGTTIKVPTVDGMVDLKIPSGTQPNTTLVMAKKGVPLLNKNNMRG DQFVRVQVEIPKRLSSDERKLIEELADLSKDKTTSSTR 

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
PANTHER 32 438 407 3.3E-224
PANTHER 32 438 407 3.3E-224
SUPERFAMILY 80 170 91 4.97E-33
Gene3D 81 185 105 8.8E-35
Hamap 81 432 352 35.99
SMART 83 140 58 2.4E-31
Pfam 84 145 62 1.0E-27
CDD 84 137 54 6.18458E-26
ProSiteProfiles 84 148 65 23.933
TIGRFAM 84 427 344 2.6E-128
PRINTS 86 104 19 4.1E-29
PRINTS 104 119 16 4.1E-29
PRINTS 120 140 21 4.1E-29
ProSitePatterns 125 144 20 -
PRINTS 140 159 20 4.1E-29
SUPERFAMILY 190 344 155 3.66E-17
Gene3D 191 326 136 1.2E-34
CDD 192 414 223 6.35866E-64
Pfam 196 411 216 1.9E-38
SUPERFAMILY 208 288 81 4.19E-17
ProSiteProfiles 208 289 82 24.344
Gene3D 221 284 64 1.2E-34
Pfam 221 284 64 6.2E-11
CDD 221 284 64 7.64591E-27
Gene3D 331 438 108 6.8E-26
SUPERFAMILY 336 422 87 2.35E-21

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 ATP binding Interacting selectively and non-covalently with ATP, adenosine 5'-triphosphate, a universally important coenzyme and enzyme regulator.
Biological process Protein folding The process of assisting in the covalent and noncovalent assembly of single chain polypeptides or multisubunit complexes into the correct tertiary structure.
Biological process Response to heat Any process that results in a change in state or activity of a cell or an organism (in terms of movement, secretion, enzyme production, gene expression, etc.) as a result of a heat stimulus, a temperature stimulus above the optimal temperature for that organism.
Molecular function Heat shock protein binding Interacting selectively and non-covalently with a heat shock protein, any protein synthesized or activated in response to heat shock.
Molecular function Unfolded protein binding Interacting selectively and non-covalently with an unfolded protein.

Expression data

Expression pattern

Expression pattern of LotjaGi2g1v0114200.3, powered by ExpAt. For advanced configuration, data transformation and export options, view expression data in the ExpAt application.

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