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LotjaGi1g1v0438900.1

Overview

Field Value
Gene ID LotjaGi1g1v0438900
Transcript ID LotjaGi1g1v0438900.1
Related isoforms 4
Lotus japonicus genome version Gifu v1.2
Description T-complex protein 1 subunit beta; TAIR: AT5G20890.1 TCP-1/cpn60 chaperonin family protein; Swiss-Prot: sp|Q940P8|TCPB_ARATH T-complex protein 1 subunit beta; TrEMBL-Plants: tr|A0A1J7HDU4|A0A1J7HDU4_LUPAN Uncharacterized protein; Found in the gene: LotjaGi1g1v0438900
Working Lj name n.a.

Sequence information

Genomic sequence (LjG1.1_chr1:93415685..93427458) extracted from Lotus japonicus Gifu genome v1.2.

GCCCAACCCGCCCCAAAATGATGGCGGGACGGGTTGGCCAGGCCCATATTGCCACCCCTACCCTTGGAAACCCCTCTCGC GAACCCTGCACTACACTTCACTACACTCTTCCGCGCTCAGGTCTGTGTTCTCCTCTTTCTCCTTAACCATTTCAGATCTT CGTTTCTCTTCGCTCGCAAAGTTCTTTTCCTTTCCCCCACGCATTTCGTTTCTCACCTTTGCTCATTTCCGTTGCGTCTA TCGTTTCTCTTCTTCAGTAGCTTTGACTCAAACCCTAGTGCGAATGATTCAAACCCTGATGTTTTTTTTCCCATATAATG TCAATGAATACTTTGATATTTTATTTTGTGATTGATTGTGTGACAGGATATATTTCTCTGACTGCATTTGAATTCCCATA ATGGCAGTAAGTTACTTGCTACTAATTTTGTTTTTCTTTTTCCTCCGTGCTTTTCTCCCTTCCTTTGAGAATTTGTTGGG TGGTGAATTCTACAGATTGATAGAATTTTTAAAGATGAAGCAAGTGAAGAAAAAGGAGAGCGTGCTAGAATGGTAAGCTT GCTATGATTTTGTGTTTTACCCTCGCTTGTTAAGATTAATATACTCATTTCTGATCTGTATTATCATATATTTCAATGCA TAGCTATTTTTATATGGAGTCTCGGGAGAGTTTATTATCTCCACTAAATGTGCTGTATGATTTGGTCTTGCGCAGGCTTC TTTTGTTGGAGGCATGGCTATCGCTGACTTGGTGAAGACTACCTTAGGGCCAAAGGGAATGGTAAGATCTCTGTCGCCCT CCTTCACACTTCCATTGTATACAATTTTATTCTCTACTTCTGAGTCCTAACTAATTCATATTTTGTTGGATGTGATAACT GCAGGATAAAATTTTGCAGTCAACAGGCAGAGGACATGAAGTTACTGTCACTAATGATGGTGCTACAATCTTGAAGTCTC TGCATATTGATAACCCAGCTGCTAAAGTCCTTGTCGGTATCCTTATCATTTTTAATTGTTGTGATGAAAAAATCCATAGG AATACATACCAAGATGCACTTACCTCCTTCTCAAATCCACAAAAAGTTTAGAAAAATGCTATGATACGGTTCACCACTGA ATGGAATTTGCCAATGTGCTGCTGATCTATTCATGAATCAAGATAGCAATCCTTAATGTAAACTAGACATATCAAAAGTT CAAGATGATGAAGTTGGGGATGGAACCACATCTGTTGTTGTATTGGCTGGGGAACTTTTAAGGGAGGCAGAAAAGCTGGT TGCAGCTAAGATTCATCCCATGACAATAATATCAGGTTCATTTCTATGATTTTTAACATTGGCTCAACTTGCCTTATGAT GCAAATTTGTTTCACGTTTTCATGGTGACAAATTTTAGTAACAACTATATTGACTATATTGATTCACATTCTGAGTGCTA GGAAATTTTACCTCATAAGTAACTTACATTGGTAAAGAAATCAATAATTTCCTTTTTGTGTATCTGTTATTAGTTTGTAT TTTGTATAGTTGGTATTTCTTTAAGGGTGATATTGAACAAATAAATATAGGCTCTATATTTGGGTTCCAGTTACGTTGAC GTAACTCCAACAAAGGGTAGATGCCACTTTCACATTTCCAACATTGGGAAGTCTTTCCAAGATAAAATAGAAGTACGTTG AGGCTAATCCAAACATATACATAGAAGTTAATTTTTTGCTCTTAAAATGTATTCATTCCATGTGATTGAAGGGTGGTAAC AGAAGCAGTCTATGAAAAAAATTAATTTTCACTCTCTTGCTTTCATTCCAAAGCTTCCTTATATATACTTAGTTTGGTTT ATGGACTGTTCCTCCTTCCAGAAATATGAGTTAAAATGAGCACAAATTGTGGGAAGCCTAAAAACTTACAACCATAATAT TTTGATGGTGATGTTTTGAAAACCCTTTACAATTCTGATGGGTTTTGCATGAATATGTTTTGCTACTTTGTTTCAAATGA TTTTGTTTCCAATGATGTCCTTGTTACTGTTGCAAACCCGAGAACCAGGCCCAGGTTTGGCAACGTCTACAATAGGAGGC CCGAGATGATGCCAGCAGGATCACCTAATGATCACTCTTCTAGAATGTAGAATTCCTAAATAACCTCCTGGTGAGGTGGC AGCAATCAAGAGGGGAAGGGGGGACCATTGTACCAGCTGAGAGAATATAATTTAGTTATGGAGAGAGTATTGTTTTTTAG GCTGGAATTGGCTAGGACTAGGAGAGAAGGAGCACTCTCGAATTTGCTCATCTTTGTCTTTTCATTTCCTTTGTTATTTG CAATTCCCTAAACACTGCTTCTGGAATTTCTCCAGAGGATTTAGTGCTATCTAATACATTTGCATTCTCAGTTCAGTGTT ATTTTCTGGTACCTAACATTGGTATCAGAGCTCCCGATCCAGAGGGAGCTTGTATGGTGCTTACCCGCAGCGCCATGGAA TCTCGAGTTGACAGTCTTGAACGCACCATCACTGAGATGAAGGAGGTGGCTCACGAGCAGTTTGAGGAACTCCGGCGACT CTTCATGAGCCGCGACCGGAGGAGAACCAGAGGACGCTCCAACACCCCTCGTCATAGGAGGACTTCGCGGGATCCGGGTT CCGTTTCTACCGTAAGAACACACGGTGGGTCACGAACCGGGTCGCGAACCGGGTCGCGTTCTACAACATGCAGCCGCGAG CGTTTCGAACCCCACCATCATCGTAGTCATTTGAGAGCGGTGACTGGAAGGAGGGTAGACATTCCAATGTTCAATGGTGA AGACGCTTACGGGTGGCTCACCAAGGTTGAGAGATTTTTCCGCCTCAGCAGAATCGAGGAGGGAGAAAAAATCGAACTCG TGATGATTGCTATGGAGGAGCGAGCTCTGAGTTGGTTTCAATGGTGGGAGGAACAAGCTCCTATGCGTGCTTGGGAACCC TTCAAGGAAGCTCTGATTCGTCGTTTCCAACCTGCTTTGGTTCAGAATCCCTTTGGACCTTTGCTTAGTGTAAAACAGAA GGGAAGCGTGATGGAATACAGGGAGAGCTTTGAGCTATTGGCAGCACCGATGAGGAATGCTGATAGAGAGGTGTTGAAAG GCGTTTTCCTGAACGGGTTGCAAGAAGAGATTAAGGCAGAGATGAAGTTGTATCCTGCAGAGGATTTGGCAGAGTTAATG GACAGAGCTCTTCTGTTGGAAGAGAAAAATCTGGCAGTAAAAGGGGGTAAAAGTAGAGAGGATGGCAAAAGGGGATGGAA GGAAAAAGGGGGTGGGGGAGGGAGAAATTTCTCTAGTTATGGGGAAAACAGGGGAAGATTTCCTAGTACTGCAGTGGGCT ACCAGGGTAAAGAAGGAGCTGGAAATCAGGATAATGAAGGGAAAAATCCTATGAACAAGGGGAATACTGGGAATCAGGTG CAGGAGGGAAAACACCAGAGAGAAGATGGAATGGTGGGCAGAGACTTTCCCAATCTGAGTTGCAGGAGAGAAGCAGGAGG GGGTTGTGCTTTAAATGTGGGGAAAAATGGGGAAAAGAGTACATCCTTGCAAAGAAGAATTACCAGTTGATTTTGGTGGA AGAAGAAGAAGAAGAGGTGTTTGAGGAAGCTGAAGATGGAGAATTTGTGCTGGAAGGCAAGGTCCTACAGCTGTCACTGA ACAGTAAGGAAGGACTGACTTCAAACAGATCTTTCAAGGTGAAAGGAAGGATTAAAGACAGGGAAATTCTGATCCTTATT GACTGTGGAGCCATAAGTAATTTTATTTCCCAGGAACTAGTAGCAGAGCTAGAAATCCCAGTCATAGCAACTTCTGAGTA TGTGGTGGAAGTGGGAAATGGTGCCAAGGAGAGAAACTCTGGGTTGTGCAAGAACTTGAAACTGGAAGTTCAGGGCATAC TAATCACCCAACATTTCTTCATTCTCGGATTGGGGGGAACTGAGTTAGTTTTGGGAATGGACTGGCTAGCAAGCTTGGGG AACATCAGGGCAAACTTCCAGGAACTCATAATTCAGTGGGAGTCAAATGGACAGAAGTTGGCACTACAAGGAGAACCATC CTGGTGTGAGGTTGCAGCTGACTGGAAATCAATTAAAATGACAGAACAGAGAGAGGCTGAGGGGTATTTTTACTCTTATG GCTGTTTGAGTGAAGAACCAAGAGCAGAAGTTAAGACATCAGATGCGTTAAAGAGAGTGTTAGCTGAGTTCCCTGTTGTG TTCCAAGAACCACAAGGATTGCCCCCAAAGAGAGACACTGACCATGCCATTTTACTACAAGAAGGAGCCACTATTCCAAA CAGCAGACCTTACAGGTATCCTTTCTACCAAAAGAATGAAATTGAGAAGTTAGTTAAAGACATGCTGAAATCAGGGATTA TTAGACCTAGCACTAGCCCTTTTAGCAGTCCTGCAATTTTAGTAAAGAAAGAAGATGGTGGATGGCGATTCTGTGTAGAC TATAGAGCCCTAAACAAGTTTACAATTCCTGATAAATTCCCAATACCTATTATTGATGAATTGTTAGATAAGATAGGGTC AGCCATGGTCTTTTCTAAATTAGATTTAAAATCAGAGTATCATCAAATAAGGATGAGGGAAGAAGACATACCAAAAACAG CTTTTAGAACCCATGAAGGGCATTATGAGTACTTGGTTCTTCCATTTGGGCTGTCTAATGCACCATCTACTTTCTAAGCA CTCATGAATCAAGTTTTGAAACCTTATTTGAGGAAATTTGCTCTTGTATTCTTCGATGACATATTAATCTATAGCAAGAC TGAAGAGTTGCATACAGAACATCTGAGGATAGTATTGCAAGTACTGAAAGACAATCACCTAGTGGCAAACAGGAAGACGT GTTCTTTTGGGCAGTGTGAGATTGCCTACTTGGGACATATTATCTCTAAAGAAGGAGTTGCAGCTGATCCAAGTAAGATC AAAGATATGCTAAATTGGCCAATTCCTAAAGAGGTAAAAGGGTTGAGGGGATTTCTGGGATTGTCTGGATACTATAGGAA GTTTGTGAAGAACTATAGTAAATTGGCTCATCCCCTAAATCAGTTACTAAAGAAAAATAGTTTCAGCTGGAGTATGGAAG CAACCAAAGCTTTTGAGAAGCTTAAGGAGGTCATGACAACAGTACCAGTGCTTGCTGTTCCCAATTTTGATAAAACATTC ATCTTGGAAACTGATGCCTCTGGGAAAGGATTAGGAGCTGTCCTCATGCAAGAGGGAAAGCCTGTAGCCTACATGAGCAA AACCTTATCAGACAGAGCCCAAGCCAAATCAGTCTATGAGAGAGAGCTGATGGCCGTAGTATTTGCTGTTCAAAAATGGG GGCACTATCTGCTGGGCAGCAAGTTCATCATACACACTGACCAAAAGAGTCTGAGGTTTTTAGCAGAGCAAAGGCTAATG GGGGAGGAACAACAGAAATGGGTATCCAAATTGATGGGGTTTGATTTTGAGATAAAATACAAACCAGGAATTGAAAATAA GGCAGCTGATGCTTTATCAAGAAAGATGCAATTCTCAGCAATTTCATCAGTACAGTGTGCAGAATGGGAAGATTTGGAAG CTGAAATCTTAGGAGATGACAAGTACAGAATGATCATGCAAGACTTGGCCACACAAGGTCACACTACAGCTGGTTATAAA TTGCACAGAGGAAGGCTGTTATACAAAGACAGAATAGTCATCCCTAAAGGATCTGGGAAAATTCTCACAATTCTCCAGGA ATTTCATGATTCTGCTATTGGAGGCCATGCAAGTATATTCAGAACATACAAGAGGATTTCAGCCCTTTTCTTCTGGGAAG GAATGAAGTTGGATATTCAAAACTATGTCCAGAAGTGTGAAGTGTGCCAGAGGAACAAATATGAGGCTCTAAAACCAGCT GGTTACCTTTAGCCATTACCTATTCCTTCTCAGGGGTGGTCAGATATCTCCATGGACTTTATTGGAGGGTTACCTAAGGC TATGGGAAAGGATACTATCTTAGTTGTGGTAGACAGATTCACAAAATATGCACACTTCTTTGCACTTGCTCACCCTTACA ATGCAAAGGAAGTAGCTGAGTTATTTATAAGAGAAGTGGTGAAATTACATGGATTCCCCACTTCTATTGTCTCTGATAGG GACAGAGTTTTCCTTAGCACCTTCTGGTCAGAAATGTTCAAACTAGCAGGAACAAAGTTGAAATTTAGCTCAGCTTACCA TCCCCAAACAGATGGGCAAACTGAAGTGGTCAATCGTTGTGTGGAGACCTATCTGAGATGTGTGACAGGGCTAAAACCCA AGCAGTGGCCCAAGTGGTTATGCTGGGCAGAATTCTGGTATAATACAAACTGTCATTCAGCAATCAAAACCACTCCCTTC AAGGCTTTATTTGGGAGGGAGCCTCCTGTAATCATCAGGGGAAATGATTCCTTGACTTCAGTGGATGAAGTAGAGAAAAT GACTGCTGAAAGGAATTTGATAATTGATGAATTGAAGGAAAACTTAGAGAAGGCACAGAATAGGATGAAACAGCAGGCCA ACAAACATAGGAGGGATGTGCAGTATGAGGTTGGGGATTTGGTGTATCTCAAAATACAACCTTACAAACTCAAGAGTTTA GCCAGGAGGAAGAACCAGAAACTGAGCCCTAGATATTATGGACCCTTTCCAATCATAGAGAAAATTAATCCTGCAGCTTA CAAGTTGAAGCTACCAGAGGACAGTCAAGTGCATCCAGTTTTCCACATTTCCCTGCTCAAGAAGGCTTTGAATGCAGGAG CAACCAGCCAACCACTACCTGTCTCTCTCACTGAAGACTGGGAGCTCAAGGTTGAACCAGAATCAATTCAAGACTCTAGA GCAAAAACTGATGGAGACCTAGAGGTATTAGTGAGGTGGAAGGACTTGCCGGAATTTGAGGATTCCTGGGAAGATTTCAA CAACCTACTGGAACAATTCCCAGATCATCAGCTTGAGGACAAGCTGATTCTTCAAGGAGGGAGAGATGTTGCAAACCCGA GAACCAGGCCCAGGTTTGGCAACGTCTACAATAGGAGGCCCAAGATGATGCCAGCAGGATCACCTAATGATCACTCTTCT AGAATGTAGTATTCCTAAATAACCTCCTGGTGAGGTGGCAGCAATCAAGAGGGGAAGGGGGGGACCATTGTACCAGCTGA GAGAATATAAGTTAGATATGGAGAGAGTATTGTTTTTTAGGCTGGAATTGGCTAGGACTAGGAGAGAAGGAGCACTCTCG AATTTGCTCATCTTTGTCTTTTCATTTCCTCTGTTATTTGCAATTCCCTAAACACTGCTTCTGGAATTTCTCCAGAGGAT TTAGTGCTATCTAATACATTTGCATTCTCAGTTCAGTGTTATTTTCTGGTACCTAACAGTTACTAACATGATTGTCCTTG ATATTATTGGTTATGATATATAGGTTTCCGAATGGCAGCGGAGTGTGCTCGTAATGCATTGTTACAGAAGGTGGTGGACA ACAAAGCAGATGCCGGTATTTAGTTTTTTTCTTATGATGGTGTATTTTTGGAATTCTATTGTCTGCTCTATAGCCTTTTA ACACATTGTCATTGTTATAGAAATGGAAATAGGGTTTAGATATAGATCCTCTATTTTAAATTAGTATTTAGTTTCTCTAT TATAGATTAGTATGTATTAAGATAGAGATAGATTTAGTTTTTATCTCTTTGGTATGTTATAAATTGTACAAGTATATTGA TAAAATACACACACAAATATTTTCATCAGATTCAATTGTTATAATCATCAATCATCATTGTTGTTACACACTTAGCAGGG CCAGGTATAAAGGCATTCTTGTGTCTTAATATCTAAAACATGAATATACTGTAATATGCAGAGAAATTCAGATCAGACTT GATGAACATTGCAAGGACTACTTTGAGCTCTAAGATTCTCTCACAGGACAAGGAGCACTTTGCAAAATTAGCTGTAGATG CTGTCATGAGACTGAAGGTGAACTGTGGCTAATTTCTGAATGCAGATTTCAAGCCTGCTGGATTTAGCTAATTGTGTATT ATTTGTAGCAAAGTATTCTCCTTTGGACCATGCGTGCAAGAACATGAGCCTAGATACATCAGATTCAATTTAGACTTTTA GTTAGAAATTAAATTACAAAGCTTATCCTACAATTTTATAATCCATTTTTGCAACAGGCATGGGGCTTTGTGAATTTGTT CCCATCCTTAATCATCTTTTTTTATATGATTTGATATTAGTAAGTTTGGAATGCTTTGTCAAATCATTCACTGAAATAAT GCGGTAAATTTGGTGATTGTTGCTGGGCCTGGGTTATAGCGGACTTTTATTTGGAGCATGGGGTTTTGACTATCTTTAAA ATTGTCTAAAAGTACAGAATGTTTTTATTCAGTTTTTGTAGTCCTATACAACCCAAGGATTTTATATAGTGATTTGTATT GTTACAAAGTTAACTATGTCTTTTCCTGTTTTCATTTCCTTGTATCTTGCTTTTTAATGGTAATGCTTCAAATTGCAGGG AAGCACTAATTTAGAAGCAATCCAGATTATAAAGAAACCAGGAGGATCACTAATAGACTCATTTTTAGATGAAGGGTAAT GTTAATGAAATCTTGAATTAGTTTTTAGTTTGCAAAACTTCCCTGAATCTGGTGTTTTTTATTGTGTTGAGTTGCATAGG CACTCTTAAAGGATTTTGTATAAACTCTAATGATTATAAACTTGCACTGTCCTGTATAACAAAACATTTTCTTGATATGT TATTTATTTTCAGCATTCTCATAATTGTAATAGTCTTGGTAAAAAACAATCTTTATGAATTGGATTATATTTTTGTATAG ATTCATCCTTGACAAGAAAATTGGTATTGGACAACCCAAACGCATAGAGAATGCAAAGATACTGGTTGCAAACACTGCTA TGGACACAGACAAGGTGAAGATATATGGTGCACGCGTTCGTGTGGATTCAATGTCCAAAGTTGCTGAGATTGAAGGAGCT GAGAAGGAGAAAATGACAGAGAAGGTGCAGAAAATAATTGGTCATGGTATCAACTGTTTTGTTAACAGACAGTTGATTTA CAATTTTCCAGAGGAGCTCTTTGCTGATGCTGGAATATTGGCTATTGAGCATGCTGATTTTGATGGTATTGAGCGACTAG CCCTGGTGACTGGTGGTGAAATTGCATCTACCTTTGACAACCCTGAGTCTGTTAAGCTTGGGCATTGTGATCTTATTGAG GAAATTATGATTGGCGAGGATAAACTGATTCATTTTTCTGGTGTTGCAATGGGCCAGGCATGTACAGTAGTTCTGAGAGG CGCTAGGTACTTCTTATTCTTCTCTTGAAAATACCTTTCCAGTGTTGTTCTAGACTTCTAGTACACTTTCAGGTATTTAA ACTTGTTGGTATATTACTTCAAGTCATCCCTATTCTTCCATGAGGTTTTCATATTCTGGCTGTAGGATTTGCTTGCTTTG TTTTGTACTTTTGTTCCTGTCAATTATAATCACTATCTGTTCATGGTGGATCATAGTACTTAGTATTTAGTATGGGTTAC GCTGTTTCCTTGATGATCTTTTGAAAGTTTAAATCCAGAATCCTAGAAAAAAAATTCCTTTCAGAATCTTAGATAAATAT CAACTTACAAAAACTGACTATATTATCAAATGTTTATTGTAGGCAGTTGGACTATATGTTACTTGTTTTTATGCGTGCTT TCATATAAAATTATTTTGCGCTTTCATGTATGATTATGTTAAACTATTTTACAACTTTATGTTGCCCTGCTCTTTTATTG TTTCAGTGATTGCATAGTGGGCTGGCATGTATAAGAGTGTTTTCTTTGGATGAGTAGTCTTGTGTTTTTCAACAGACTTG AATGAATTTTTTGTTTTTATGTGTGCTTTTAGTTTGACATATCCACTTGTGTTGCAGCCACCACGTTCTTGATGAGGCCG AGAGGTCATTGCATGATGCCTTGTGTGTGCTATCCCAGACTGTCAATGACAGCAGGGTGGTTCTTGGAGGTGGGTGGCCT GAGATGGTGATGGCAAAGGAAGTTGATGAATTAGCTAGGAAAACCCCTGGAAAGAGGTCTCTTGCTATTGAGGCGTTTTC ACGGGCACTCTTGACTATCCCAACAATAATTGCTGATAATGCTGGTTTGGACAGTGCTGAGTTGATTTCTCAGCTTCGGG CAGAGCACCAGAAGGAGGGGTGTACTGCTGGAATTGATGTCATCTCTGGTTCTGTAAGTACTGAGACTGAGAATTGGGTG GATTTATTTGAATGAGCACAATTTTTGAAATACTAATCCTAATGTATAGGCCATTTTTTCCTTTTCTCTGGGGTGGGTTG CTATGGAATTGACTCTTGCAGGAACTTATTTGACTTGATTATAATGTTTTGCGGCTGTCTTTTCATATGGGTAGGATATC TATTTCTAATATTCCCATTTACTGGTAATGTCAGTGATTTTTGGGATCTGAAGTGAAATGACTAATTGAAATTTCCAAGT ATCTATCTGCTTCTTACATTCATTTCCAAGGTTTATGTTAGCCCTAGAAAAGTATCCTATAGGCTGCTAGCTCGCCATGC TTTCTTTCTATTTTCAGTTTGGCTTAACATACTCTGACCTTTGTTGTATTTCTGGAAGGTTGGAGACATGGCTGAACGGG GAATATGTGAAGCATTCAAAGTCAAGCAGGCTATATTGCTATCTTCAACGGAGGCAGCTGAGATGATCCTTAGAGTTGAT GAAATCATTACATGTGCTCCAAGGAGGAGAGAAGACAGAATGTAAGACTCTTGATCGCATCCAGCTTCAGATGCTTGGGA TGCTTTAGCAATATCTGGTGCATTCTAACAAGTGTTGTGATATTTATATCGCGTTTATAATTGGAAGGACTGGTTTGTAT CCTAAAAAAATGTTAGGTGAATTTTGATGTCTTAGAAGCCTTGAGGATGATGGTTGAGGTAGGTGAAGTTTAACTGAGAA TTACTCCTTACGGCTGCAACTCGGAGTTAGATCATTTTAAATTTGAATTTATGACATTATATTTTACGTAGTTCTTTACA AAAGACATCTTTTTCGTTAACCATCTCCTATAAAGATATGTCCATTCTTTACAAAGTATTTAGAAACCATTTTCATTCTG TTATTCAACAACTGAAATTAAAGCTCTTATCCTTGATATGTTTTGACTTTTTCCTTTTGTAGCACCTTTGGTCTCAGTTT GACGAGTTGGAATGAGACTCTGTTCTATTCTTATCCCTTATATTTAACATGACCATACACAACTAAATCATGCGATTTCG AAGAGAAAATCCAAATATTCAACCAGTGTTTAAAGGAAAGCCAGAAAGCACCTAGTCTCGGTCTAGAGAAATTTTGATAG ATGTAATTTCCATTTCTTTAGTGTGCATCAAGGGTTTTCAAGTTGATAGCTCTAGATTAATTTTTCGTGGTGTTGAGATC ATGTAAGTGACTTTTGCCTTTCAATAAACTGTTTCATACACACGGTTGATGTTCAAACTTCAAACCATTAACATGCTTAA GGGACTCATTTATTTACCAATAGCGTCAGGATTTGTTGGTGATAGACATAATTACACAATTTGACATATTTGTGATTTTT TTATATGATTTACCAATTACCATGATATGTCTATCAAATGAAATGGATGCATGTTAATGTATGTAGTCACATATTTTTAA AAGCAATATAGTCT 

CDS sequence (LotjaGi1g1v0438900.1) extracted from Lotus japonicus Gifu v1.2 CDS.

ATGGCAATTGATAGAATTTTTAAAGATGAAGCAAGTGAAGAAAAAGGAGAGCGTGCTAGAATGGCTTCTTTTGTTGGAGG CATGGCTATCGCTGACTTGGTGAAGACTACCTTAGGGCCAAAGGGAATGGATAAAATTTTGCAGTCAACAGGCAGAGGAC ATGAAGTTACTGTCACTAATGATGGTGCTACAATCTTGAAGTCTCTGCATATTGATAACCCAGCTGCTAAAGTCCTTGTC GACATATCAAAAGTTCAAGATGATGAAGTTGGGGATGGAACCACATCTGTTGTTGTATTGGCTGGGGAACTTTTAAGGGA GGCAGAAAAGCTGGTTGCAGCTAAGATTCATCCCATGACAATAATATCAGGTTTCCGAATGGCAGCGGAGTGTGCTCGTA ATGCATTGTTACAGAAGGTGGTGGACAACAAAGCAGATGCCGAGAAATTCAGATCAGACTTGATGAACATTGCAAGGACT ACTTTGAGCTCTAAGATTCTCTCACAGGACAAGGAGCACTTTGCAAAATTAGCTGTAGATGCTGTCATGAGACTGAAGGG AAGCACTAATTTAGAAGCAATCCAGATTATAAAGAAACCAGGAGGATCACTAATAGACTCATTTTTAGATGAAGGATTCA TCCTTGACAAGAAAATTGGTATTGGACAACCCAAACGCATAGAGAATGCAAAGATACTGGTTGCAAACACTGCTATGGAC ACAGACAAGGTGAAGATATATGGTGCACGCGTTCGTGTGGATTCAATGTCCAAAGTTGCTGAGATTGAAGGAGCTGAGAA GGAGAAAATGACAGAGAAGGTGCAGAAAATAATTGGTCATGGTATCAACTGTTTTGTTAACAGACAGTTGATTTACAATT TTCCAGAGGAGCTCTTTGCTGATGCTGGAATATTGGCTATTGAGCATGCTGATTTTGATGGTATTGAGCGACTAGCCCTG GTGACTGGTGGTGAAATTGCATCTACCTTTGACAACCCTGAGTCTGTTAAGCTTGGGCATTGTGATCTTATTGAGGAAAT TATGATTGGCGAGGATAAACTGATTCATTTTTCTGGTGTTGCAATGGGCCAGGCATGTACAGTAGTTCTGAGAGGCGCTA GCCACCACGTTCTTGATGAGGCCGAGAGGTCATTGCATGATGCCTTGTGTGTGCTATCCCAGACTGTCAATGACAGCAGG GTGGTTCTTGGAGGTGGGTGGCCTGAGATGGTGATGGCAAAGGAAGTTGATGAATTAGCTAGGAAAACCCCTGGAAAGAG GTCTCTTGCTATTGAGGCGTTTTCACGGGCACTCTTGACTATCCCAACAATAATTGCTGATAATGCTGGTTTGGACAGTG CTGAGTTGATTTCTCAGCTTCGGGCAGAGCACCAGAAGGAGGGGTGTACTGCTGGAATTGATGTCATCTCTGGTTCTGTT GGAGACATGGCTGAACGGGGAATATGTGAAGCATTCAAAGTCAAGCAGGCTATATTGCTATCTTCAACGGAGGCAGCTGA GATGATCCTTAGAGTTGATGAAATCATTACATGTGCTCCAAGGAGGAGAGAAGACAGAATGTAA 

Protein sequence (LotjaGi1g1v0438900.1) extracted from Lotus japonicus Gifu v1.2 Proteins.

MAIDRIFKDEASEEKGERARMASFVGGMAIADLVKTTLGPKGMDKILQSTGRGHEVTVTNDGATILKSLHIDNPAAKVLV DISKVQDDEVGDGTTSVVVLAGELLREAEKLVAAKIHPMTIISGFRMAAECARNALLQKVVDNKADAEKFRSDLMNIART TLSSKILSQDKEHFAKLAVDAVMRLKGSTNLEAIQIIKKPGGSLIDSFLDEGFILDKKIGIGQPKRIENAKILVANTAMD TDKVKIYGARVRVDSMSKVAEIEGAEKEKMTEKVQKIIGHGINCFVNRQLIYNFPEELFADAGILAIEHADFDGIERLAL VTGGEIASTFDNPESVKLGHCDLIEEIMIGEDKLIHFSGVAMGQACTVVLRGASHHVLDEAERSLHDALCVLSQTVNDSR VVLGGGWPEMVMAKEVDELARKTPGKRSLAIEAFSRALLTIPTIIADNAGLDSAELISQLRAEHQKEGCTAGIDVISGSV GDMAERGICEAFKVKQAILLSSTEAAEMILRVDEIITCAPRRREDRM 

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 4 526 523 0.0
PANTHER 4 526 523 0.0
CDD 6 522 517 0.0
TIGRFAM 6 523 518 2.7E-268
SUPERFAMILY 13 519 507 4.06E-80
Gene3D 29 516 488 1.6E-188
Pfam 30 517 488 1.1E-150
PRINTS 32 48 17 1.3E-32
ProSitePatterns 35 47 13 -
PRINTS 56 74 19 1.3E-32
ProSitePatterns 58 74 17 -
PRINTS 86 105 20 1.3E-32
ProSitePatterns 86 94 9 -
Gene3D 142 399 258 1.6E-188
SUPERFAMILY 152 399 248 2.69E-27
SUPERFAMILY 206 372 167 1.62E-43
Gene3D 211 363 153 1.6E-188
PRINTS 367 389 23 1.3E-32
PRINTS 401 413 13 1.3E-32

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.
Cellular component Cytosol The part of the cytoplasm that does not contain organelles but which does contain other particulate matter, such as protein complexes.
Cellular component Chaperonin-containing T-complex A multisubunit ring-shaped complex that mediates protein folding in the cytosol without a cofactor.
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.
Molecular function Unfolded protein binding Interacting selectively and non-covalently with an unfolded protein.

Expression data

Expression pattern

Expression pattern of LotjaGi1g1v0438900.1, powered by ExpAt. For advanced configuration, data transformation and export options, view expression data in the ExpAt application.

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