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LotjaGi2g1v0283600.2

Overview

Field Value
Gene ID LotjaGi2g1v0283600
Transcript ID LotjaGi2g1v0283600.2
Related isoforms 2
Lotus japonicus genome version Gifu v1.2
Description Phosphoenolpyruvate carboxylase; TAIR: AT1G68750.1 phosphoenolpyruvate carboxylase 4; Swiss-Prot: sp|Q8GVE8|CAPP4_ARATH Phosphoenolpyruvate carboxylase 4; TrEMBL-Plants: tr|A0A151QSL0|A0A151QSL0_CAJCA Phosphoenolpyruvate carboxylase 4; Found in the gene: LotjaGi2g1v0283600
Working Lj name n.a.

Sequence information

Genomic sequence (LjG1.1_chr2:75591123..75601381) extracted from Lotus japonicus Gifu genome v1.2.

ATGACGGACAACACTGACGACATTGCAGAGGATATCTCGTTCCAGAGCTTCGACGATGACTGCAAATTGCTTGGCAATCT TCTCAACGACGTTCTGCAGCGTGAGGTTGGCACCCACTTCGTTGAACAGCTCGAAAAGATTCGAGTCCTTGCACAGGTTT TGCCTTCATTCAGTCATTTTCTCAAATGGGTTATGCTCACTTTGCATGTTCTTAGAATATTCACCCTTGTTATGGGGTTT AGCTGTTTTTGTTTGTTTGTTATGATTTTCATTTTATCACTGTTTTCTGGGAACCATGCTTGATTGCTGAGAAAAATGGT TAGTGAACGCTGAAGGATGAAACATGACATGCATTTAATGTTTTAATATGCTGCATGCAAGTTTGGTTGCATTGGATGTG ATAATCAAAGACTCAGATGATGACTGAAGCAACCCTTTATGGCAGTTTTTGATTGGGAGTGTACTTAACTCAAGTTATGA AAAAGCTTCAATGTTCTTTGTTAAGATATGGGGATTGATAATTGCTTTGTGTTACATTTGGCTACCAATTTGTAAGGTGT CCTCAAATGATAGCTCAAGTGGTAAGAGCTAGGGGACATGTAGCTTGGGTGGGGGAGGTCTAGGGATCAATCTCCGGCGG GTGTAAATTATATTTCCGATGTACCAGAAAAAAAAATTTGTAAGGTGAAAATCTAGGATGTGAAAGTTCATTAATACTTT TTCTTTTTCTTTCCCCTTTCAGAGTGCATGTAATGTGAGACAGGCAGGGATTGATGATATGGCAGAGCTGTTAGAGAAGC AGTTGGCTTCAGAGTTATCCAAGATGACATTGGATGAAGCTCTGATGATTGCTCGCGCCTTCAGCCATTATCTTACTTTG ATGGGTATAGCTGAAACCCACCATAGGTAGTTTGGCTTTTCAACTTTTTAACTTTTGGTCTTTTATTCTGTTGTTTGAAT ATTTGTCTTGTCTCTTTCACTGATTGCTATGAAAATCAGAACATGAAGACTGGTGGTGACTTTGAGAGAGTTTTCTGTAG TTCCATTTCTTGCCTTGGACCTTGGCAAGTTATTCTTTCTCACAAACTCTGTTTATGCAGGGTTCGTAAAGGAGGAAATG TGTCAATTTTCGCAAAATCTTGTGACGATACCTTTAACCTGCTGGTGCAAGGTGGAGTTTCCCCAGATGATCTTTATAAC ACAGTTTGCAAGCAGGTCTGTTTTTTTCTTCACTTCTGTGCAGTTCTGAGTAAAGATGGAAATAGGCTAGACCCTTCATT ATCATTCTAACCATTTCTGGATTCTTCGAATAAAAAAGTGGAATGGAGATTATAATATGTAATTATTTACCTTCTAACCA TTATCATTAATGATGCAGTTGTTTCTTATTTCTGGTGATTATTCCCTTATATGATTTCCTAGTCTGTTTTGTTATTCAAA ATCCAAGTCTATTTTCGTTCCCACAGGAGGTTGAAATTGTTCTTACAGCTCATCCCACACAAATTAATCGGCGTACCTTG CAATTCAAACACATTAAAATTGCTGTGAGTTCATTTTTTTTTTTTTTTTTTTTTTTTCATTTCAAGTGAAACTTATTTGG CTTTAGTAAAATTACTATAGGCTTGAGCCTTGAACTTTAAGTCTCAAATATCATATAGCTGTTTTGTCTCTAACTACTTC CCCCCATTCATGCAGCATCTTTTGGATTATAATGATCGACCTGATCTCACCCATGAAGATCGAGAAATGGTGATTGAAGA TCTGGTACTCTTCAGCGAACGACCACTGTTTTACCACAAACAATTTTTTTTTTCACTGTAGTGCTTTGTGGGGGGGGGGG GGTGTGTGGGGGGGATATTCTGTAACTGTAAAATGGGTTTTGCAATTTCTTTTTCTAGTACACTTTCTTTTATTCTCATA AACATTCGATTTGGTAGGTGAGAGAGATAACTTCAATATGGCAGACAGATGAGCTTAGGCGCCAGAAACCTACACCAGTT GATGAAGCTAGAGCTGGTAAGCTGCTTGAGTATTATTTGTTAGATATAAAACCATTCATATTCCTTACCTGAAAGATTAA GCTTTTTAGTTAGTATTCCTTAACAATGTTAAGTCCCTTCTGACCAAGTGGTCATGAGTTTGGTCATTCTCAACACCTAA TAGCTTAACTCTTGAAATTATATATGTCAGATGTTGTATGATTTGATTCACTGAAAAAAAGTGGAAGAACACCTCAGTTT ATTTCTCAATTCTCCCAGGGTTGAATATTGTGGAGCAGTCACTCTGGAAAGCTGTTCCTCGTTATTTACGTCGGGTCAGC AATGCTTTAAAGAAGGTTTGTTCACCTTTAATTTTTGTCAATGAATTTGTAGATTCTTCCCCTTTAAGATTTTCAATGCA ATCGATCCTTCCTTGCAGCACACGGGAAAACCACTTCCATTGACTTCCACTCCCATAAAGTTTGGATCTTGGATGGGAGG TGATCGAGATGGAAACCCAAATGTGACAGCAAAGGTAGGCTTTTTAAAATTCCATTCATGCTACCTGTACTTCATGGTTT TATTTTTATTTATTTTTCCCAATAACTAAAGGAGTCTTTCTGAACAGGTGAGAAGTTTTCTGATAGTGGAAGCATAGTTG AATTTTGTTATAACATTATATTGTTGACAATCTGAACATTTGCTGTGTGTCTGTCATTTGGGGAAGCACAAGTTTATTGA TGATTGAACTGGGAAAACTGTATACAAAAATAAATGAGTGATCAATATGTTAAATATTTCTTTGAATAATATTCTTGGAG CTTTGCCAATTACATATTTTTTGATAACTTTTACATAGAGGCGGCTTTGTTAGAAAGTTGATAGCCAATATAAAGTTTTG TAAGAAAATTTGGTTTTTGATTTGGCCCAGTGGCATCAGTTGATCCATTTTGTCCATTCCACAAAGTGCGGGATAATTGA TAAATCTAGATTGTTGTTGTTGTTATTATTGTTGTTGCTGCTGCTGCTGTTATAGTTTTCAAAAGGTGGTGGCAGGATGT GCATCGGTGTTTCAATTGTTGAAGTCTGTTGCTTGTAATTTAAACATTATCACTAAAATGCCTGAATGTATCCGGGTTAT CTAGGAGTGGAGTTTTGTAGTTATAGAATATTTACTTTAGTGATTTTGATTTGTTCCTGAAAATCTTGAACTTCTGTAAT TGGTTTCCCTTTTGTTCTTCAGGTCACAAAAGATGTTTCACTTTTATCAAGATGGATGGCAATTGATCTCTATGTTCGGG AAGTGGATAGCCTGAGATTTGAACTATCCATGAACCGGTGTTCTGATGAGTTGTCCAGACTGGCACATGAAATTCTAGAA GGTTATTCAGTTTAATATTGTATTAGTTGATATCTTCCAAATGCTAGTGAACGATGTAGTCTTCTTTGTTTGTAACTTTG TATCATGTGACCACTGAATACCATTTGTCCAGAAGTATCATAGGCTCATTGCATACAACCAAATTGAAATGATTATAGAA GAATAAAGTTGAATATTTTCAGTTTAGTTTGTTAGATTATCATATGAACTTTATAGTCTTTTTTAAAACCTTACCATTAT GGATTATGTCATTGTTTAAATGAGCGATGGTAGTCTATGTGTATTTACTCTTGTGGCTCTGTAATGTGTTTGATCCCTGT CTGGTCTATTTTATGCATTTTTCCTATGGTGGTTGGAGGCATTTGGAATACCTTTAAAGTTATCCTGGATTGGTGACAGA TCCACTTTCTGGCCATGCTAATAACTCACCAAATTTTTTGGTCATACTTTTTTCTTGTTTTCAATGACATAAACCTGTTG ACTTTTATGTCTAATTCACTCTCTCAAATTTTGTCCAATTTAAGGATATGAGATTGACTGTAGCTGCTAATGTGATGTAA AAACTTAAGAGCTAACTACATAGTTTCTGTGGAATATTTCTAAAGGTTTCATATAATTTCAAATGGGAGTTTTCTTCCAG TATCACTACCTTTGTCAATATATTAGACTTGTATTTATATGATCAGTGGCAGATATTTCTATGTGCACAATGTAGTGTTC TTTATATTATGGTTTGCCACTGTCCTCAAGACATGCTTGATACTCTTTTAATGCATGTAATAGTTGATCACCACTTCTTT CTTTTCAGAAGCTAATAATGAGAACCAATGCGAGCATTGGAATCAATCTGCGAGTAGAAGTCAATTGAAAAATCAAAATC CTTCACTTCCAACTAAACTTCCATCTAGAGCTCATTTACCCTCTTTTGCTGGTATACATTAGTTTGCTCAAAATTTCTGT CTAGCCATTTGTTTGCTTTTCATGTTTTAGTGGGAATTTCCTCTCTAAGAACTGCATAAAAATATTCACATGTCTTTATG TGTCTCGTAACTATACTATTCTTTAGGGAACTCCCCTTACTGATTGCATGATATTGAAATGGAATTCCACCAATTTCTAA GATAACTTGTTCTTCTTCATGCATGAGGATAAGGTGCATTTTAATTCATTTGTTGACACATGACAATAAATTCCTGGCTC CTCCTCTCCTGCACCATGGTTTTTGGGGGGACACACACACACGCGCATGGTTTTTGGGGTGATCTCACCTTTTATCATTC TGCCAATTGCTTATTTGAGCGCGCACACACACACACACACACATTCTTGCCCTAATCAAATATATCTCATTATCTATTTC AAAAATCTGGTTTAAACATATTCTTTCATGTAGAAAATGGTCAGTCTGAGCATCCCAGACTCGACATTCCGGGATCTGAT CACAATAAACTCAATCACAAGGTATATGAATTCAGTAATTATAGGATTTCTTAATTTTCCATTGAATCCTAGATTATATA AATGTCTACATATTTTCACTGATAGGATGGTAAGTTTTCACGTTCAACTAAGAGCGATGGTGGAAGTTGCAAAATTCATT CATCGCTAGCAAGTCCAGCTAATTCCAATGCTTCTTCACCACCTTCAATTTCACGCTCTCCTTCTCAACAACTTCTTGCT CAGAGGAAATTGTATGCGGAATCCCAGATAGGAAGATCAAGTTTTCAGAAGCTTTTGGAGCCAAAGCTCCCTCAGCGTCC GGGAATTGCTCCTTACAGAGTTGTCCTTGGGAATGTAAAAGATAAGGTATTACTTCTGATTTACTTGAATTATACTTCAA AGATGACTGACTGTATGTACATCATAGATATTCAATTTCTGCTGTTGTACTTTATACAATGCATGTTATATATGTTGCTT CTTTCCTCGAGGTTATTAGCTTTATACCCTGACCTATGCTAGAGCCTAGATGTGTTCCTGTGCTGGTTCTATAAAGGCTT TAAATGAATCCTTCAGACAGTAGTTTGAAAAGAAAATAACTGATGTTGCATAGTCTTAGAATTTGGGAGGCCTAACTCAA CCCCAAAAGCTAGCTCAAGAGGCCAGGATTGTCTTCCCATATATAAGGGTTATCTTGGTCATATGAGGAGCCACACTTAA TATGGTGAAAGCACATTGTGTTTTGTTCAAAGGTTGTCAAATGATCTTGAGATAAATCTATTGCTTAGTTCGAGGCCTTT CACTTGGCGGATGCTTATATAGACAGCATCATTTGTGCTAGTGTGTGTATAATGTAAAACATATATTTCCCCATTTGATT AGAATAATTGTCCATAAAGGGTTTGGTTCTGTATGTGTCATTAAGACTAATTCATATCTGCATATGTTACTGAACTTGCT AATTTTATATATTGTCATGTTAGTTGGTAATTTTAAATTGTCAATCTATGGTGAGATAGTAAATGCTTACATCTTCTGTT CCATGTGTTTTAGCTTCTGAGAACTCGTAGATTATTGGAGATTCGTCTAGAGGAAGGTCCATGCGAACACAATCCTTCTG ATTACTTTGAAACTAAAGATCAGCTTTTGGAACCTCTGCTCCTCTGTTATGAATCTCTGGTACTCTTTAACCTTCTCCTA CCCATCTTTCCTCCAAGGTTGTCCAAATTTATTATTTAGCTCTCCATTTCTTCAGCAATCATGTGGATCCGGGGTGCTAG CTGATGGTCGACTTGCTGATCTGATTAGAAGAGTTGCTATCTTTGGCATGGTGTTAATGAAGCTTGACTTGCGTCAGGTC TGATTTAAGGTTTTTGCTCATTTTTGTTTGGATAACAAGTTGTGTCCTGAAACTAGCAGTGTGACAGGAATCTACCAGAC ATGCTGAAACACTGGATGCAATTACAAGGTATTTGGATATCGGAACATACAGTGAATGGGATGAAGAAAAGAAACTGGAC TTCTTAACTAAAGAACTGAAAGGGAAGAGGCCACTGGTTCCATATGGTATAGAGGTGAGATGGATAATATATACTAAGGC ACCAGCTTTACGAGCTTTGTATCTAGGGACCAAAAACTTATTTAAGCCTATTTTTATTTTAGATACGGAAAGAAGTTGAT ATTTTTAAAATTCATATCTATTTTATTTTCATTTATTTATATGAATGATTGAATTTTGAATGTGTTGTTTTGTATAACTG AAATCTACAATTTAGACTCGTTCTATATCTTGCTTTTTGTTCTTTTTTATGCTTTAAGTGGAGTAGCAAAATTGTTTTGA TGCTAAACTCCATATCTCTGAAGTTAATTTGTTGTGCAGCAAATCATGGATACTACTACCACTGCACTATGAGGAGCTTC CTAGTTGAATTTCGTCATTAAACGAACCATGATATGCTGCATGCTCATTCCAATGTTCTTTCCTAGTTTATGCTTTAAAT AAATGTAATATTTTTTTGGATTTTCTGGCTATCCCCACAATCTAATTTTGGTATCCTAGTTAGACTCAAAATATAAGATT ATTTGTCGAATTTTAGCCTAGATACAAATTTTTTTCTTTTCTATTATTTTTTGGCCTGATTTTATGCACCAATTCCAAAC TCTTGAGGGAATACTTGTTGAAATTCTTCGTGTTTTATTACTTCCTTTCAGAATTGAAAAACAAAAAGAAAATGAAGAAA ATAATGATATAGTAAGAGTGTAATGAGATCTGAAACAGTTCTTGTTCTCATTATATGTATTGTGGGTTAACGAAATTCCT GATTGAAGCATATGCCTTCTGAAACTTTGTTTGTAACCTCAGCGATGGATTGATCCTGATCCATCGTTCAAGTTCTAATT CGATATTACATCCTTTCATTATCAAACCCGTTTGACCAGGGTATTTATTTCTTAATGGGAATTAAATTCATCTCCCTGAA TTTCTGTTTTTGATTCTATCTGGATTTATTCCTTTCAGGTTTCTCCAGATGTTAAAGAAGTCTTGGACACATTCCAAATT GCTGCTGAGCTTGGAAGTGATTCACTTGGAGCCTATGTTATCTCCATGGCCTCAGATGTATGATTAACTGCCATTACTTT TACAAATTATACATTGACTTTGTCATTGCAACTCCAATTTAGGTTCTGAACTCAACTGACCTTTTGACATTGAATCATTT CTTTGAGGTGTTTGGCAATCATTTATTGACTTTTTTTTCTTCTTCTTCTTGTTTGATTTTACAGGAAAAGAGTCATTTTT GTTTTATTCTTTGGAGCCGATGTTGATAAAATTTAGTTATTTAATATATTATTTCCATTTTAACCCTACAGTGGCACAAC CTGCAAAAGAAAGCATCTAGGGACTAGGATATTCGAAATGAGCTGTTACTTGTTAGCCTTAATATTGACAGTTTCTACAT TGCTTGATTCTCAGGCAAGTGATGTCCTTGCAGTAGAGCTTTTACAGAAGGATGCACGGCTTGCTGTTAGTGGGGAGTTA GGAAGAGCATGTCCTGGTGGAACGTAAGTACGGAACTGAAATGTTTGTATCCATTGAGTAGAACTAATCTAATGATCTTT ATTACACTTACCTGATCATCACGATGCTTGAGATGTAAAATCATTCTTGCAATTTGTATCTTCATGTATATATTATTCTC CAAGTTAAAAATTGGAATAAATGTGTGAATCATGTATATTACATGTTAGCTATACTCATACACTCATGATTCATGCATGT AAATTTTATATTACAATGCTTGTCAAGTCCAAGAAACTTAAGTCAATTTTCTTGTTAGTGTTTGGAAAATGAGTAGCAGG ACTTGCCTGATCTTATAATTTAGAATCAGAAGAACACTCTAGTTTTCATTATTTGTATTGGGTCAAAAGTTAAGGTGGTA GGAGAAGAGAAATTTTATGATTTGACTATGACAAGTTTGTGGTAAATTTCTGGATAATTGGTCTCAAGACTCCCCAGCAC TAAAAAATTATCCGTTCAGTTAGAATGTTTGAAATTTAAAGACATGCATGTTTCCAACACAGGCTACGGGTGGTTCCTCT ATTTGAAACTGTCAAGGACCTAAGAGCTGCTGGTTCAGTTATTAGAAAGCTGTTATCAATTGATTGGTATCGCCAACACA TCATTAAAAACCACAATGGGACTCAAGAGGTACTTTTTAACTAGAGATTCTTTTCATTTATAATATAGCTATTATGGGGA ACTTGTGCTAATATTATGAATTCCAATATGCAGGTTATGGTTGGGTATTCTGATTCTGGTAAAGATGCTGGGCGCTTTAC TGCTGCTTGGGAACTTTACAAAGCTCAAGAGGATGTTGTGGCTGCTTGCAATGAGTACGGTATTAAGATTACCCTGTTCC ACGGCCGTGGAGGGAGTATTGGTCGCGGTGGTGGCCCAACGTATCTAGCTATTCAGTCCCAACCACCTGGCTCTGTCATG GTGGGTTATGAATCTGAACCATAGTTATTAGTTTGATATCTAAATGCAATAGTCTGAATTTATGTTTCACTTTCATTTTA GAAAAACCCAGCTGTTTCAAACTGATGGTATTAATCTATACTTTTGTTAATTTTTCTGGAACATAGTTCGAATCCAGAAC TACACTTATAAGGGGCCGGGGTGTTAGTTAATTCAAGAATCATCTTCCTCATGATCATAATAGGGAGGCAATGTACATAT AAATTATTGAGCTGCTGCTAGTGGGTTATCATAGAAACTTGTCATGCATTTTATGTTTCTTTTGTTCATATTGTTGATTT TCTGATTTTTATGTCTCGTAAACCATGAAATTGTCCAAGATTAAGTATCAGCTAGCATTCAGTAAGCCAAACAACTCTTG AGACAAGAAGATAATTTGAAATTTATTATTTACTTGACAGCCAAGCTATATGTTTAACTATGCGAACTACATTTTGGATC ATCTTTCCATTTAGTCTCCTGGAAAATCCGTCTTGCTTTTGATTTGCTGTCATCTGCATAGACATTGGAAGCACAATTTT GTTCCATCTTTAACTGCATGTTATACATAACAATGCTCTAATAAATGATACTCCTCTGGTGTGTTTACACGTAGGGAACT CTTCGGTCAACTGAGCAGGGGGAGATGATACAGGCCAAGTTTGGGTTGCCACAGACTGCTGTAAGACAGCTTGAAATATA CACAACAGCTGTGCTACTTGCAACCCTTCGTCCACCGCTCCCGCCCCGGGAAGAAAAATGGCGCAATGTCATGGAAGATA TTTCACAAGTCAGTTGCCAGTGTTACCGCAGTGTAGTCTATGAAAATCCAGAATTCTTGTCCTACTTCCATGAAGCTACT CCTCAAGCAGAGCTTGGCTTCCTCAACATTGGTAGCCGCCCCACAAGAAGAAAGAGCTCATCAGGAATTGGACACCTTCG TGCCATACCATGGATATTTGCATGGACCCAAACCAGATTTGTTCTTCCATCCTGGCTTGGAATTGGAGCAGGTTTGAAAA GTGCCTGTGAGAAAGGACAAACAGAAGAGCTCAGAGCCATGTACAAAGAATGGCCTTTCTTTCAAAGCACAATAGACCTG ATTGAGATGGTTCTGGGAAAAGCAGATAGTCCCATTGCTAAGCACTATGATGATGTTCTCGTGTCAGAGGAGAGAAAGGA ACTCGGTCGTCAACTACGGAGCGAGCTTGAAACAACTGGGAAGTTTGTACTTGTTGTTTGTGGGCAGGAGAAACTTCTGC AGAATAATAGGACCTTAAGGAGGTTGATTGAGAATAGACTTCCTTTCCTCAATCCCATGAACATTTTGCAGGTGGAGATA CTTAAGAGGTTAAGATGTGATGATGACAACCATAAAGCCAGAGATGCTTTGCTCATCACAATTAATGGTATTGCAGCTGG AATGAAGAACACAGGTTAA 

CDS sequence (LotjaGi2g1v0283600.2) extracted from Lotus japonicus Gifu v1.2 CDS.

ATGACGGACAACACTGACGACATTGCAGAGGATATCTCGTTCCAGAGCTTCGACGATGACTGCAAATTGCTTGGCAATCT TCTCAACGACGTTCTGCAGCGTGAGGTTGGCACCCACTTCGTTGAACAGCTCGAAAAGATTCGAGTCCTTGCACAGAGTG CATGTAATGTGAGACAGGCAGGGATTGATGATATGGCAGAGCTGTTAGAGAAGCAGTTGGCTTCAGAGTTATCCAAGATG ACATTGGATGAAGCTCTGATGATTGCTCGCGCCTTCAGCCATTATCTTACTTTGATGGGTATAGCTGAAACCCACCATAG GGTTCGTAAAGGAGGAAATGTGTCAATTTTCGCAAAATCTTGTGACGATACCTTTAACCTGCTGGTGCAAGGTGGAGTTT CCCCAGATGATCTTTATAACACAGTTTGCAAGCAGGAGGTTGAAATTGTTCTTACAGCTCATCCCACACAAATTAATCGG CGTACCTTGCAATTCAAACACATTAAAATTGCTCATCTTTTGGATTATAATGATCGACCTGATCTCACCCATGAAGATCG AGAAATGGTGATTGAAGATCTGGTGAGAGAGATAACTTCAATATGGCAGACAGATGAGCTTAGGCGCCAGAAACCTACAC CAGTTGATGAAGCTAGAGCTGGGTTGAATATTGTGGAGCAGTCACTCTGGAAAGCTGTTCCTCGTTATTTACGTCGGGTC AGCAATGCTTTAAAGAAGCACACGGGAAAACCACTTCCATTGACTTCCACTCCCATAAAGTTTGGATCTTGGATGGGAGG TGATCGAGATGGAAACCCAAATGTGACAGCAAAGGTCACAAAAGATGTTTCACTTTTATCAAGATGGATGGCAATTGATC TCTATGTTCGGGAAGTGGATAGCCTGAGATTTGAACTATCCATGAACCGGTGTTCTGATGAGTTGTCCAGACTGGCACAT GAAATTCTAGAAGCTAATAATGAGAACCAATGCGAGCATTGGAATCAATCTGCGAGTAGAAGTCAATTGAAAAATCAAAA TCCTTCACTTCCAACTAAACTTCCATCTAGAGCTCATTTACCCTCTTTTGCTGAAAATGGTCAGTCTGAGCATCCCAGAC TCGACATTCCGGGATCTGATCACAATAAACTCAATCACAAGAGCGATGGTGGAAGTTGCAAAATTCATTCATCGCTAGCA AGTCCAGCTAATTCCAATGCTTCTTCACCACCTTCAATTTCACGCTCTCCTTCTCAACAACTTCTTGCTCAGAGGAAATT GTATGCGGAATCCCAGATAGGAAGATCAAGTTTTCAGAAGCTTTTGGAGCCAAAGCTCCCTCAGCGTCCGGGAATTGCTC CTTACAGAGTTGTCCTTGGGAATGTAAAAGATAAGCTTCTGAGAACTCGTAGATTATTGGAGATTCGTCTAGAGGAAGGT CCATGCGAACACAATCCTTCTGATTACTTTGAAACTAAAGATCAGCTTTTGGAACCTCTGCTCCTCTGTTATGAATCTCT GCAATCATGTGGATCCGGGGTGCTAGCTGATGGTCGACTTGCTGATCTGATTAGAAGAGTTGCTATCTTTGGCATGGTGT TAATGAAGCTTGACTTGCGTCAGGAATCTACCAGACATGCTGAAACACTGGATGCAATTACAAGGTATTTGGATATCGGA ACATACAGTGAATGGGATGAAGAAAAGAAACTGGACTTCTTAACTAAAGAACTGAAAGGGAAGAGGCCACTGGTTCCATA TGGTATAGAGGTTTCTCCAGATGTTAAAGAAGTCTTGGACACATTCCAAATTGCTGCTGAGCTTGGAAGTGATTCACTTG GAGCCTATGTTATCTCCATGGCCTCAGATGCAAGTGATGTCCTTGCAGTAGAGCTTTTACAGAAGGATGCACGGCTTGCT GTTAGTGGGGAGTTAGGAAGAGCATGTCCTGGTGGAACGCTACGGGTGGTTCCTCTATTTGAAACTGTCAAGGACCTAAG AGCTGCTGGTTCAGTTATTAGAAAGCTGTTATCAATTGATTGGTATCGCCAACACATCATTAAAAACCACAATGGGACTC AAGAGGTTATGGTTGGGTATTCTGATTCTGGTAAAGATGCTGGGCGCTTTACTGCTGCTTGGGAACTTTACAAAGCTCAA GAGGATGTTGTGGCTGCTTGCAATGAGTACGGTATTAAGATTACCCTGTTCCACGGCCGTGGAGGGAGTATTGGTCGCGG TGGTGGCCCAACGTATCTAGCTATTCAGTCCCAACCACCTGGCTCTGTCATGGGAACTCTTCGGTCAACTGAGCAGGGGG AGATGATACAGGCCAAGTTTGGGTTGCCACAGACTGCTGTAAGACAGCTTGAAATATACACAACAGCTGTGCTACTTGCA ACCCTTCGTCCACCGCTCCCGCCCCGGGAAGAAAAATGGCGCAATGTCATGGAAGATATTTCACAAGTCAGTTGCCAGTG TTACCGCAGTGTAGTCTATGAAAATCCAGAATTCTTGTCCTACTTCCATGAAGCTACTCCTCAAGCAGAGCTTGGCTTCC TCAACATTGGTAGCCGCCCCACAAGAAGAAAGAGCTCATCAGGAATTGGACACCTTCGTGCCATACCATGGATATTTGCA TGGACCCAAACCAGATTTGTTCTTCCATCCTGGCTTGGAATTGGAGCAGGTTTGAAAAGTGCCTGTGAGAAAGGACAAAC AGAAGAGCTCAGAGCCATGTACAAAGAATGGCCTTTCTTTCAAAGCACAATAGACCTGATTGAGATGGTTCTGGGAAAAG CAGATAGTCCCATTGCTAAGCACTATGATGATGTTCTCGTGTCAGAGGAGAGAAAGGAACTCGGTCGTCAACTACGGAGC GAGCTTGAAACAACTGGGAAGTTTGTACTTGTTGTTTGTGGGCAGGAGAAACTTCTGCAGAATAATAGGACCTTAAGGAG GTTGATTGAGAATAGACTTCCTTTCCTCAATCCCATGAACATTTTGCAGGTGGAGATACTTAAGAGGTTAAGATGTGATG ATGACAACCATAAAGCCAGAGATGCTTTGCTCATCACAATTAATGGTATTGCAGCTGGAATGAAGAACACAGGTTAA 

Protein sequence (LotjaGi2g1v0283600.2) extracted from Lotus japonicus Gifu v1.2 Proteins.

MTDNTDDIAEDISFQSFDDDCKLLGNLLNDVLQREVGTHFVEQLEKIRVLAQSACNVRQAGIDDMAELLEKQLASELSKM TLDEALMIARAFSHYLTLMGIAETHHRVRKGGNVSIFAKSCDDTFNLLVQGGVSPDDLYNTVCKQEVEIVLTAHPTQINR RTLQFKHIKIAHLLDYNDRPDLTHEDREMVIEDLVREITSIWQTDELRRQKPTPVDEARAGLNIVEQSLWKAVPRYLRRV SNALKKHTGKPLPLTSTPIKFGSWMGGDRDGNPNVTAKVTKDVSLLSRWMAIDLYVREVDSLRFELSMNRCSDELSRLAH EILEANNENQCEHWNQSASRSQLKNQNPSLPTKLPSRAHLPSFAENGQSEHPRLDIPGSDHNKLNHKSDGGSCKIHSSLA SPANSNASSPPSISRSPSQQLLAQRKLYAESQIGRSSFQKLLEPKLPQRPGIAPYRVVLGNVKDKLLRTRRLLEIRLEEG PCEHNPSDYFETKDQLLEPLLLCYESLQSCGSGVLADGRLADLIRRVAIFGMVLMKLDLRQESTRHAETLDAITRYLDIG TYSEWDEEKKLDFLTKELKGKRPLVPYGIEVSPDVKEVLDTFQIAAELGSDSLGAYVISMASDASDVLAVELLQKDARLA VSGELGRACPGGTLRVVPLFETVKDLRAAGSVIRKLLSIDWYRQHIIKNHNGTQEVMVGYSDSGKDAGRFTAAWELYKAQ EDVVAACNEYGIKITLFHGRGGSIGRGGGPTYLAIQSQPPGSVMGTLRSTEQGEMIQAKFGLPQTAVRQLEIYTTAVLLA TLRPPLPPREEKWRNVMEDISQVSCQCYRSVVYENPEFLSYFHEATPQAELGFLNIGSRPTRRKSSSGIGHLRAIPWIFA WTQTRFVLPSWLGIGAGLKSACEKGQTEELRAMYKEWPFFQSTIDLIEMVLGKADSPIAKHYDDVLVSEERKELGRQLRS ELETTGKFVLVVCGQEKLLQNNRTLRRLIENRLPFLNPMNILQVEILKRLRCDDDNHKARDALLITINGIAAGMKNTG 

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 1 1038 1038 0.0
PANTHER 1 1038 1038 0.0
Hamap 9 1038 1030 17.728
SUPERFAMILY 19 1038 1020 4.65E-302
Pfam 145 331 187 8.0E-59
PRINTS 149 162 14 1.6E-17
ProSitePatterns 150 161 12 -
PRINTS 202 218 17 1.6E-17
PRINTS 261 276 16 1.6E-17
Gene3D 289 358 70 2.9E-9
Coils 308 328 21 -
MobiDBLite 333 421 89 -
MobiDBLite 333 353 21 -
MobiDBLite 374 390 17 -
MobiDBLite 391 421 31 -
Gene3D 412 533 122 1.5E-28
Pfam 436 1038 603 6.1E-226
ProSitePatterns 696 708 13 -

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 Catalytic activity Catalysis of a biochemical reaction at physiological temperatures. In biologically catalyzed reactions, the reactants are known as substrates, and the catalysts are naturally occurring macromolecular substances known as enzymes. Enzymes possess specific binding sites for substrates, and are usually composed wholly or largely of protein, but RNA that has catalytic activity (ribozyme) is often also regarded as enzymatic.
Biological process Tricarboxylic acid cycle A nearly universal metabolic pathway in which the acetyl group of acetyl coenzyme A is effectively oxidized to two CO2 and four pairs of electrons are transferred to coenzymes. The acetyl group combines with oxaloacetate to form citrate, which undergoes successive transformations to isocitrate, 2-oxoglutarate, succinyl-CoA, succinate, fumarate, malate, and oxaloacetate again, thus completing the cycle. In eukaryotes the tricarboxylic acid is confined to the mitochondria. See also glyoxylate cycle.
Molecular function Phosphoenolpyruvate carboxylase activity Catalysis of the reaction: phosphate + oxaloacetate = phosphoenolpyruvate + HCO3-.
Biological process Carbon fixation A metabolic process in which carbon (usually derived from carbon dioxide) is incorporated into organic compounds (usually carbohydrates).

Expression data

Expression pattern

Expression pattern of LotjaGi2g1v0283600.2, powered by ExpAt. For advanced configuration, data transformation and export options, view expression data in the ExpAt application.

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