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LotjaGi2g1v0258200.3

Overview

Field Value
Gene ID LotjaGi2g1v0258200
Transcript ID LotjaGi2g1v0258200.3
Related isoforms 3
Lotus japonicus genome version Gifu v1.2
Description ABC transporter ATP-binding protein; TAIR: AT3G28860.1 ATP binding cassette subfamily B19; Swiss-Prot: sp|Q9LJX0|AB19B_ARATH ABC transporter B family member 19; TrEMBL-Plants: tr|I1LWJ6|I1LWJ6_SOYBN Uncharacterized protein; Found in the gene: LotjaGi2g1v0258200
Working Lj name n.a.

Sequence information

Genomic sequence (LjG1.1_chr2:72478408..72486458) extracted from Lotus japonicus Gifu genome v1.2.

GTTTCAGATCTCCTTCATTCAATGTCCAGAAAAAGAAACATCATCCATTGTTGACTTCCCCACCAAGCCTAGATGAGATC CCTTTAAAATCCCATTTTCATTTTCTTTCTCCATTACCCTTTCTTTGAAAAACACTCTGTTTTTGCTCTGTTCTTATGGC TGAAGCTGCTGAGCCCAACAAGGCATCATCATTGCCTGAAGCAGAGAAGAAGAAGGAACAGAGCTTACCCTTTTACCAGC TCTTCTCATTTGCTGATAAATATGATTACATGCTCATGATCTCTGGAAGCATTGGAGCTGTCATTCATGGCTCTTCCATG CCCTTTTTCTTCCTCCTGTTTGGTGAAATGGTGAATGGTTTTGGCAAAAACCAGATGGATTTAAAGAAAATGACAGATGA AGTTGCCAAGGTGAAAATCAAAATGAATCTCAAAATTCTCAAACACCATTCTTTCTTGTAAACTTCATCCCAGATCTGGG ATCTAAATTAATCCTCTGTTTTCTCTTGTTTTTGCAGTATGCTCTGTACTTTGTTTACCTTGGCCTTGTTGTTTGCATTT CATCATATGCAGGTATGGCATTTTTCTTTCTTTATTCTTCCAAATACATTATTATTCTCTCTCTCTTTTCCATTTTTTGG GTCCTAACCTGTGATGAAGATCGATAGCACTTGCAGGACCATTGCTTTTTAGGCTTTGTATGTGTATGTGTGTCTCTCTT GTGGCCACTTCACATCAACAAAATGTGTTCTGAACCCACGTGTTTCTGTCAAACAAACACACCCTCCTAGTCCTTTTCTT TCTTTACTTGTCAATCTCGGCACTTGGTGTTAATTTTCCTGCCTAACATATCTGAAACACTATTCATGTTATATTAATAA TTGAACTACCAAATTAAGATTAGTTTTTTTTTTTTGCTTGTTTGTTAATTTCTTTGGTTTTTTTTTTATACTTTTTTTAA CTTGTTGATGTTGACAATTTGCTACCAATTTACTTCCCAGAAATTGCATGCTGGATGTACACTGGGGAGAGGCAAGTGAG CACCCTGAGGAAGAAGTATTTGGAGGCTGTGCTGAAACAAGACGTTGGTTTCTTCGACACCGATGCTAGAACAGGGGATA TTGTATTCAGTGTCTCCACAGACACATTGCTGGTTCAAGATGCTATCAGTGAGAAGGTGGTTTGAATCTGCCATCTTTCT CTGTTTTTTCTCCTCTATGATATGAAAATTGAATAAATGCTCAATTTCGTCTTTGAAAGTAAGCCGCAAATTAGTCATTA GAAGAAAGAAATACCACTGCGGTCCCCGATTGTGTCAATTGTCGATCAAGTTAGTCTCTGTGGTCAGGTGATGCTTCTGA GCACCTTTTGGTCGGCTGAGAAGTCGGCCGAAACCGTCACCAATGCACTAACTTGATCAACATTTGACACAGTCAGAAAG ACCGCGGAGATATTTCTTTCTTCTAGAGACTAATTTCGACTAATTTGACTGATTTCAATGAAGAAATTGTCATTCACTCT TTGCAAAATCAAATAAAAATAAAATATTTAGAAACCATGGCCTTCTTCTGGGGTAGTTGATAACTTGGTATTCATGAAAG TGGGCCCCATACATGACATTAGAAAGAGGTGCACGTTAGCAAAACAGAGATTAACCTACGCCAGCAAATTTGGTCACGTA GCTAGAGGTCACAAACGTGTGTGTATTCATCAAGTTTTAACCTTTTTTTGTGATTGTGTAGGTGGGAAATTTCATACACT ATCTATCAACTTTTCTGGCGGGTTTGGTGGTTGGTTTTGTGTCAGCATGGAGGCTAGCGCTTCTTAGTGTTGCGGTGATT CCTGGCATTGCATTTGCTGGCGGCTTGTATGCTTACACCCTCACTGGCCTCACATCAAAGAGCCGTGAATCCTATGCAAA TGCTGGCATAATTGCTGAGCAGGTGAGGTTAATTCATGGTTGAATTGAACATCATTTGCATTAGCATGTTTTCTATATAT GGAATGAACATCATTTGAAGGAATGCTTATTTAATGTATGAAATGATGTCTTTTCATGTGCAGCACTCATAAAAGTTCAT AGCTTTTCTCTTTTAAAAGTAAAATAATCAATAAGCATGATGATGCCCGTGGTGTTTTTGATCAAATGCCAACTAGAGTT TTTGCTTACAATTAAGTATTTGAATGTAAATTAAATCAAGTTTTTCCTTGAATTGCTTTCTTTTCATTGTTAAGATCTCA TCCTTTGAATTAACAGATTAATGTAGGGACTAATTAACCTTGATTATCTGTGATGTTTACAGGCCATTGCTCAAGTTCGA ACTGTTTATTCTTATGTTGGTGAGAGCAAGGCACTGAATTCTTATTCTGATGCAATTCAAAATACACTGAAACTTGGATA CAAGGCTGGAATGGCTAAAGGTTTGGGCCTAGGATGCACATATGGGATAGCTTGCATGTCCTGGGCACTAGTTTTTTGGT ATGCTGGAGTTTTTATCAGGAATGGACAAACAGATGGAGGCAAAGCATTCACAGCTATTTTCTCTGCTATTGTTGGTGGA ATGTGAGCTCAATTTGAACAACTTTTGATATTTCCATTGACATTGCTCAATTCTCTTCCATTTTGATCATGACATGATAC TTTTATTTGCTTCTACAGGAGTCTGGGTCAGTCATTTTCAAATTTAGGTGCTTTCAGCAAAGGCAAAGCTGCTGGATACA AGTTGATGGAGATCATCAAGCAGAAACCCACCATAATTGAAGATCTATCAGATGGAAAGTGCTTGGATGAGGTTAATGGC AACATTGAATTTAAGGATGTTACTTTCAGCTACCCGTCAAGGCCGGATGTGATTATCTTCCGCAATTTCTCGATCTTTTT CCCTGCTGGAAAAACTGTTGCGGTTGTTGGTGGTAGTGGATCTGGGAAAAGCACTGTTGTTTCCTTGATTGAGAGGTTTT ATGATCCAAATGAAGGTAACTTAACACACCTCACTCTTTTGATTGATCTTGGATGAATAGCAATGCTGATTTTTTTATGA TGGCCAAGCAGGTCAGGTTCTGCTGGATAATGTGGACATTAAGACACTACAACTAAAATGGTTACGTGATCAAATTGGGT TGGTGAATCAAGAACCTGCACTCTTTGCAACTACCATCCTTGAGAACATACTCTATGGGAAACCTGATGCAACAATGGAT GAAGTGGAAGCCGCGACTTCTGCTGCGAATGCTCATAGCTTTATTACCTTGCTTCCTAATGGCTACAACACTCAGGTGGG TGATGCTTTTCTTGCATGACTAATTTTGAAGCCTACTATTGATCATTTTGTACTAGTTCAGGTTGTGTAATTCAAATGTT TTCTGCTGATTTACCAGGTAGGAGAGCGAGGAGTGCAATTATCCGGGGGCCAAAAACAGAGAATTGCAATAGCCAGAGCT ATGTTGAAGAACCCAAAGATCCTTCTTTTAGATGAAGCAACCAGTGCCCTTGATGCGGGATCCGAAAGCATTGTTCAAGA GGCGCTAGACCGTCTCATGGTTGGGAGAACAACCGTGGTTGTTGCTCATCGTCTATCAACCATAAGGAATGTTGACAGCA TTGCAGTTATACAGCAAGGGGTGGTTGTTGAGACAGGAACACATGAAGAATTGATCGCCAAGGCAGGAACCTACTCCTCG CTGATTCGGTTCCAAGAAATGGTCGGAAATAGAGACTTCTCCAACCCTTCAACTCGCAGGACACGCTCGTCCCGGTTGAG CCATTCGCTGTCCACCAAGTCCCTAAGCCTCAGGTCAGGCAGCTTGAGGAACTTGAGCTACCAGTACAGCACCGGAGCCG ACGGTCGCATTGAGATGATCTCGAACGCTGAAACGGACAAGAAAAACCCAGCTCCTGATGGGTACTTCTTCCGCCTGCTG AAGCTAAATGCTCCTGAGTGGCCTTACTCAATCATGGGAGCTGTGGGGTCTGTTCTTTCTGGATTCATTGGGCCAACTTT TGCTATTGTCATGAGCAACATGATTGAGGTCTTCTACTTTAAAAACTATACATCCATGGAGAGGAAGACCAAGGAGTATG TTTTCATATACATTGGTGCTGGTCTTTATGCTGTTGGTGCATACTTGATCCAGCATTACTTTTTTAGTATCATGGGAGAA AACCTCACTACAAGGGTTAGAAGAATGATGCTTGCCGGTATGTTTGGATCAGCTTCACTTTCCCATAATCAATTCTGGCA CTCAGAAGCTACCAACAAGCTTCTACCTGAATTGATTTTGGCTTTAGAATCAATTGCAGTAAGATTTTCAAACATGCGGT TAATTTTTTGATTATTGTAATTTGTCAGCTATTATGAGGAATGAAGTTGGATGGTTCGATGAGGAGGAGCACAATTCAAG CCTTGTTGCAGCTAAACTTGCAACTGATGCAGCTGATGTGAAGTCTGCCATTGCTGAAAGGATATCAGTAATACTACAGA ACATGACATCACTCCTCACTTCTTTCATTGTTGCTTTCATTGTGGAGTGGAGGGTTTCTTTGCTCATCCTTGGAACCTTC CCTCTTCTTGTTTTGGCTAACTTTGCTCAGGTAAAACTCAAATCCCCATCTCTACTATTATCATGTTTGAATCAACTTAT TTTTTATTTCTAGAACCACATGTCACATCCTCATCTCGACCATTAGCATGTCTCGACCAACTTATTTTTCCGAATCAACA TTGACATGTGAAAGCTACTCACAAAACTTTCACCCCAAATTGATTCTAGCTTAAAATCAATTGTATGTTAGTACATATTT TCTTACCACACACCCATGGCATAAAATAGTTGTTTAAGCTTTATCCAAAGTAGGATTTAAAAAGAAAAGAGAAACTAAAA AAATACCTTATTTTAACTTGCATGTGTTGACCCAAGACTAGGGAGTGGGGCCAGGGTAACTCTAGGATTTAACATTAGAT TCTCATTTCTAGTATTAGTTACTTTTACTTGGCCCTTTTCACACTGAGAATCAAACTTCACAATCAACTGGCATTAAACG ACAAAAGCAAGAACCACTAAGACCCACCCTAGTTGAAGGGTGCACGTGCTTCCTTGCAGTTCAGTGCATTAACAACTGGG AACATATATTGGCATATTAAAGCTCATTAATGGCGGTGTAAATTTATTAGTATATGGTTATAGATTCCATACTTGACCAT CAACTTCAATGCCCACATAAAGACTATTCAAAGTTCTTTATGAAACATTATGCTATTATCATAATGGGTAACGATATTAT TTATATTCCATCCTTTCAGAGCTAGCCTCTCTCTTTTTAATAGTAATATTTTTTGGGCACTGGAAATTCATCTCTCTCAA AGGAGGAAACTTCATTATATTATATGGTTTTATTATATTCATATATTGTAATTTGTCTAGGAATCTGAACTTTTTAGTAT TTTTTTGGCTTCCCACCCGTGATCGTTTTCAGTCCCTTTTCAGGTCTAGTTTGTCTAGACATGTGATTCATGTCATACAT ACACTAACATATTACCGAGGTTATTTGGGTGAAATGTGAAATACTTGTGTTGTGTGTACTTGCTTTTTAAATAATAAAAA TCACTTGTGTGTGTTGATGAGAAGTGTTTCAAGTACCATTGGAGATTTGGACTACTCACTCACATGAGACCATGTGGGAC TTGCTGCACAATTGTTTAAGAGGGCATGTAGTGTAAGTAGTTTTGGAGACACTCACGTGCAGTTTCTATATTGCTCTACT ATTGGGTGCAATTTAAAAAAATTATATTCAAAGTAATGCTAATTAAACATGACATTTTTGTTTTGCAAGCACTAAGCATT ATATGTTGCATCTATCTCTTATACTAGCTAGTAGTATATTTAGTTATATATTACTAAATAAACTATAGAATTTGCTTAAA TCTATTACACTTGGCATTAATATTAATATCACATTTGTATACTCCAATTTTTTTTTATCACATTGACATGAGTCATTTTC AAACTAACAGTAACAATCACTTCTGAAATTATCCTGTGAGGGGGGGGGGGGAGGTGTTCTAAATTTTGCGCATGCTCTAA GCACAGAGCAAAGAAAAAGACTGGTTGGTCAGGGATGTATGTACCTTCCAATCTATCAAAGTCTTTTAATGTAGTAGGTA TGTAAGATGTACATATGTCTCCTCCAGGTCCCACCCCTTTAGCCCTTTTATTTGGGTCCTTTTCTTTTCCCTGAATTTTT GGTGAATTCATTATTTATTCACACCCATTGAACCTTTCACTATAAAATATAAATGAATTGTGCAATAACTGAAATTTACC AAAAGTTTCCTACCCAATCTTGGTACAAGCATGCCTTCAATTATTTAAGTTACCATTATGCTTGCAGTAATTATTGTCCA CCCAAGAGTGAATTTACTAATTGTAGCCAACAAAATAAGTATCATTTGTAGTACAAAATTGATGGGAGATCAACTAGAAG GAAAGTTCAAGTCCTTTCTTCCACATTGCTTTTGCAAAACCTGATCAATAGAAACTAAGAAGAAAAATACATAAGTGCTT TTATAGTTCAATAAGCAGTATTCCTGTCTAATTTACTATAGTTCTTCAAATTTTTGTACCAATAATTTATAACTTAACTT AAACTTGTTACATTATGGAATTTCCTAATCCATGTAGCCAACCGCGCATAGGAGGAAAATGTGTGGTTATTGATGTTTTA ATTATTTATCATAGAAGATAGAAACTTCTAGTTTTGTAAGTTGGTTCGTGTAGAATGTTATTCTGTTGATCAAGTGCTAA CAATGATGTTGCTTTGTATTTGGTTGTCTTTGGATTCTACAGCAACTTTCTCTTAAAGGGTTTGCTGGAGACACAGCCAA GGCTCATGCAAAGACTAGCATGATTGCAGGGGAGGGAGTAAGCAACATCAGAACAGTCGCAGCATTCAATGCTCAGAACA AGATGCTCTCTGTCTTTTGCAATGAGCTTCGAGTCCCGCAGCGCCACAGCTTCCGCCGGAGCCAAACATCCGGCATCTTA TTCGGCCTCTCTCAGCTAGCCCTTTATGCCTCTGAAGCACTCATTCTGTGGTATGGTTCACATTTGGTGAGCAAAGGTGT TTCAACCTTCTCAAAAGTTATCAAGGTGTTTGTGGTGCTGGTCATCACAGCAAATTCAGTAGCAGAAACTGTGAGCCTTG CCCCGGAGATCATCCGCGGCGGCGAAGCTGTTGGCTCGGTGTTCTCAATTCTCGACCGCGCAACTCGGATTGATCCAGAT GATCCTGATGCTGAATCGGTTGAATCAGTTCGCGGAGAGATTGAACTTAGACATGTTGATTTTGCATACCCGTCTAGGCC TGATGTGATGGTGTTCAAAGATTTCAACCTTAGGATCCGTGCGGGTCAGAGCCAAGCTCTTGTGGGGGCAAGTGGGTCAG GGAAGAGTTCTGTTATTGCACTGATAGAGAGGTTCTATGATCCCATTGCTGGAAAAGTCATGATAGATGGAAAGGACATA AGGAAGTTGAATTTGAAGTCTTTGAGGCTCAAGATTGGGTTGGTACAACAAGAGCCTGCACTGTTTGCTGCAAGCATTTT TGAGAACATTGCATATGGCAAGGAAGGCGTGACCGAAGCTGAGGTAGTTGAAGCTGCTCGTGCCGCCAACGTGCATGGAT TCGTGAGCGGTTTGCCAGAAGGTTACAAGACCCCAGTTGGCGAGAGAGGTGTGCAGCTATCCGGTGGGCAAAAGCAAAGA ATTGCGATAGCCAGGGCTGTTCTCAAGGACCCCTCAATCCTTCTTCTCGATGAGGCCACAAGTGCACTTGACGCTGAATC AGAATGTGTCCTGCAAGAAGCCTTGGAGAGGCTCATGAGGGGCCGCACCACCGTGCTCGTGGCTCATCGTTTGTCGACCA TCAGAGGGGTCGACAGCATTGCGGTGGTGCAAGATGGGCGCATCGTGGAGCAGGGGAGCCATGGTGAACTTTACAGCAGG CCAGAGGGAGCATACTCTAGACTCTTGCAGCTACAACATCATCACATATGA 

CDS sequence (LotjaGi2g1v0258200.3) extracted from Lotus japonicus Gifu v1.2 CDS.

ATGCTCATGATCTCTGGAAGCATTGGAGCTGTCATTCATGGCTCTTCCATGCCCTTTTTCTTCCTCCTGTTTGGTGAAAT GGTGAATGGTTTTGGCAAAAACCAGATGGATTTAAAGAAAATGACAGATGAAGTTGCCAAGTATGCTCTGTACTTTGTTT ACCTTGGCCTTGTTGTTTGCATTTCATCATATGCAGAAATTGCATGCTGGATGTACACTGGGGAGAGGCAAGTGAGCACC CTGAGGAAGAAGTATTTGGAGGCTGTGCTGAAACAAGACGTTGGTTTCTTCGACACCGATGCTAGAACAGGGGATATTGT ATTCAGTGTCTCCACAGACACATTGCTGGTTCAAGATGCTATCAGTGAGAAGGTGGGAAATTTCATACACTATCTATCAA CTTTTCTGGCGGGTTTGGTGGTTGGTTTTGTGTCAGCATGGAGGCTAGCGCTTCTTAGTGTTGCGGTGATTCCTGGCATT GCATTTGCTGGCGGCTTGTATGCTTACACCCTCACTGGCCTCACATCAAAGAGCCGTGAATCCTATGCAAATGCTGGCAT AATTGCTGAGCAGGCCATTGCTCAAGTTCGAACTGTTTATTCTTATGTTGGTGAGAGCAAGGCACTGAATTCTTATTCTG ATGCAATTCAAAATACACTGAAACTTGGATACAAGGCTGGAATGGCTAAAGGTTTGGGCCTAGGATGCACATATGGGATA GCTTGCATGTCCTGGGCACTAGTTTTTTGGTATGCTGGAGTTTTTATCAGGAATGGACAAACAGATGGAGGCAAAGCATT CACAGCTATTTTCTCTGCTATTGTTGGTGGAATGAGTCTGGGTCAGTCATTTTCAAATTTAGGTGCTTTCAGCAAAGGCA AAGCTGCTGGATACAAGTTGATGGAGATCATCAAGCAGAAACCCACCATAATTGAAGATCTATCAGATGGAAAGTGCTTG GATGAGGTTAATGGCAACATTGAATTTAAGGATGTTACTTTCAGCTACCCGTCAAGGCCGGATGTGATTATCTTCCGCAA TTTCTCGATCTTTTTCCCTGCTGGAAAAACTGTTGCGGTTGTTGGTGGTAGTGGATCTGGGAAAAGCACTGTTGTTTCCT TGATTGAGAGGTTTTATGATCCAAATGAAGGTCAGGTTCTGCTGGATAATGTGGACATTAAGACACTACAACTAAAATGG TTACGTGATCAAATTGGGTTGGTGAATCAAGAACCTGCACTCTTTGCAACTACCATCCTTGAGAACATACTCTATGGGAA ACCTGATGCAACAATGGATGAAGTGGAAGCCGCGACTTCTGCTGCGAATGCTCATAGCTTTATTACCTTGCTTCCTAATG GCTACAACACTCAGGTAGGAGAGCGAGGAGTGCAATTATCCGGGGGCCAAAAACAGAGAATTGCAATAGCCAGAGCTATG TTGAAGAACCCAAAGATCCTTCTTTTAGATGAAGCAACCAGTGCCCTTGATGCGGGATCCGAAAGCATTGTTCAAGAGGC GCTAGACCGTCTCATGGTTGGGAGAACAACCGTGGTTGTTGCTCATCGTCTATCAACCATAAGGAATGTTGACAGCATTG CAGTTATACAGCAAGGGGTGGTTGTTGAGACAGGAACACATGAAGAATTGATCGCCAAGGCAGGAACCTACTCCTCGCTG ATTCGGTTCCAAGAAATGGTCGGAAATAGAGACTTCTCCAACCCTTCAACTCGCAGGACACGCTCGTCCCGGTTGAGCCA TTCGCTGTCCACCAAGTCCCTAAGCCTCAGGTCAGGCAGCTTGAGGAACTTGAGCTACCAGTACAGCACCGGAGCCGACG GTCGCATTGAGATGATCTCGAACGCTGAAACGGACAAGAAAAACCCAGCTCCTGATGGGTACTTCTTCCGCCTGCTGAAG CTAAATGCTCCTGAGTGGCCTTACTCAATCATGGGAGCTGTGGGGTCTGTTCTTTCTGGATTCATTGGGCCAACTTTTGC TATTGTCATGAGCAACATGATTGAGGTCTTCTACTTTAAAAACTATACATCCATGGAGAGGAAGACCAAGGAGTATGTTT TCATATACATTGGTGCTGGTCTTTATGCTGTTGGTGCATACTTGATCCAGCATTACTTTTTTAGTATCATGGGAGAAAAC CTCACTACAAGGGTTAGAAGAATGATGCTTGCCGCTATTATGAGGAATGAAGTTGGATGGTTCGATGAGGAGGAGCACAA TTCAAGCCTTGTTGCAGCTAAACTTGCAACTGATGCAGCTGATGTGAAGTCTGCCATTGCTGAAAGGATATCAGTAATAC TACAGAACATGACATCACTCCTCACTTCTTTCATTGTTGCTTTCATTGTGGAGTGGAGGGTTTCTTTGCTCATCCTTGGA ACCTTCCCTCTTCTTGTTTTGGCTAACTTTGCTCAGCAACTTTCTCTTAAAGGGTTTGCTGGAGACACAGCCAAGGCTCA TGCAAAGACTAGCATGATTGCAGGGGAGGGAGTAAGCAACATCAGAACAGTCGCAGCATTCAATGCTCAGAACAAGATGC TCTCTGTCTTTTGCAATGAGCTTCGAGTCCCGCAGCGCCACAGCTTCCGCCGGAGCCAAACATCCGGCATCTTATTCGGC CTCTCTCAGCTAGCCCTTTATGCCTCTGAAGCACTCATTCTGTGGTATGGTTCACATTTGGTGAGCAAAGGTGTTTCAAC CTTCTCAAAAGTTATCAAGGTGTTTGTGGTGCTGGTCATCACAGCAAATTCAGTAGCAGAAACTGTGAGCCTTGCCCCGG AGATCATCCGCGGCGGCGAAGCTGTTGGCTCGGTGTTCTCAATTCTCGACCGCGCAACTCGGATTGATCCAGATGATCCT GATGCTGAATCGGTTGAATCAGTTCGCGGAGAGATTGAACTTAGACATGTTGATTTTGCATACCCGTCTAGGCCTGATGT GATGGTGTTCAAAGATTTCAACCTTAGGATCCGTGCGGGTCAGAGCCAAGCTCTTGTGGGGGCAAGTGGGTCAGGGAAGA GTTCTGTTATTGCACTGATAGAGAGGTTCTATGATCCCATTGCTGGAAAAGTCATGATAGATGGAAAGGACATAAGGAAG TTGAATTTGAAGTCTTTGAGGCTCAAGATTGGGTTGGTACAACAAGAGCCTGCACTGTTTGCTGCAAGCATTTTTGAGAA CATTGCATATGGCAAGGAAGGCGTGACCGAAGCTGAGGTAGTTGAAGCTGCTCGTGCCGCCAACGTGCATGGATTCGTGA GCGGTTTGCCAGAAGGTTACAAGACCCCAGTTGGCGAGAGAGGTGTGCAGCTATCCGGTGGGCAAAAGCAAAGAATTGCG ATAGCCAGGGCTGTTCTCAAGGACCCCTCAATCCTTCTTCTCGATGAGGCCACAAGTGCACTTGACGCTGAATCAGAATG TGTCCTGCAAGAAGCCTTGGAGAGGCTCATGAGGGGCCGCACCACCGTGCTCGTGGCTCATCGTTTGTCGACCATCAGAG GGGTCGACAGCATTGCGGTGGTGCAAGATGGGCGCATCGTGGAGCAGGGGAGCCATGGTGAACTTTACAGCAGGCCAGAG GGAGCATACTCTAGACTCTTGCAGCTACAACATCATCACATATGA 

Protein sequence (LotjaGi2g1v0258200.3) extracted from Lotus japonicus Gifu v1.2 Proteins.

MLMISGSIGAVIHGSSMPFFFLLFGEMVNGFGKNQMDLKKMTDEVAKYALYFVYLGLVVCISSYAEIACWMYTGERQVST LRKKYLEAVLKQDVGFFDTDARTGDIVFSVSTDTLLVQDAISEKVGNFIHYLSTFLAGLVVGFVSAWRLALLSVAVIPGI AFAGGLYAYTLTGLTSKSRESYANAGIIAEQAIAQVRTVYSYVGESKALNSYSDAIQNTLKLGYKAGMAKGLGLGCTYGI ACMSWALVFWYAGVFIRNGQTDGGKAFTAIFSAIVGGMSLGQSFSNLGAFSKGKAAGYKLMEIIKQKPTIIEDLSDGKCL DEVNGNIEFKDVTFSYPSRPDVIIFRNFSIFFPAGKTVAVVGGSGSGKSTVVSLIERFYDPNEGQVLLDNVDIKTLQLKW LRDQIGLVNQEPALFATTILENILYGKPDATMDEVEAATSAANAHSFITLLPNGYNTQVGERGVQLSGGQKQRIAIARAM LKNPKILLLDEATSALDAGSESIVQEALDRLMVGRTTVVVAHRLSTIRNVDSIAVIQQGVVVETGTHEELIAKAGTYSSL IRFQEMVGNRDFSNPSTRRTRSSRLSHSLSTKSLSLRSGSLRNLSYQYSTGADGRIEMISNAETDKKNPAPDGYFFRLLK LNAPEWPYSIMGAVGSVLSGFIGPTFAIVMSNMIEVFYFKNYTSMERKTKEYVFIYIGAGLYAVGAYLIQHYFFSIMGEN LTTRVRRMMLAAIMRNEVGWFDEEEHNSSLVAAKLATDAADVKSAIAERISVILQNMTSLLTSFIVAFIVEWRVSLLILG TFPLLVLANFAQQLSLKGFAGDTAKAHAKTSMIAGEGVSNIRTVAAFNAQNKMLSVFCNELRVPQRHSFRRSQTSGILFG LSQLALYASEALILWYGSHLVSKGVSTFSKVIKVFVVLVITANSVAETVSLAPEIIRGGEAVGSVFSILDRATRIDPDDP DAESVESVRGEIELRHVDFAYPSRPDVMVFKDFNLRIRAGQSQALVGASGSGKSSVIALIERFYDPIAGKVMIDGKDIRK LNLKSLRLKIGLVQQEPALFAASIFENIAYGKEGVTEAEVVEAARAANVHGFVSGLPEGYKTPVGERGVQLSGGQKQRIA IARAVLKDPSILLLDEATSALDAESECVLQEALERLMRGRTTVLVAHRLSTIRGVDSIAVVQDGRIVEQGSHGELYSRPE GAYSRLLQLQHHHI 

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 1212 1212 0.0
PANTHER 1 1212 1212 0.0
Phobius 1 6 6 -
SUPERFAMILY 2 312 311 1.57E-49
CDD 3 300 298 1.52042E-106
ProSiteProfiles 6 292 287 44.318
Phobius 7 28 22 -
Pfam 8 277 270 5.3E-57
TMHMM 10 32 23 -
Phobius 29 47 19 -
Phobius 48 73 26 -
TMHMM 52 74 23 -
Phobius 74 127 54 -
Phobius 128 144 17 -
TMHMM 128 147 20 -
Phobius 145 149 5 -
TMHMM 149 171 23 -
Phobius 150 169 20 -
Phobius 170 230 61 -
Phobius 231 252 22 -
TMHMM 234 256 23 -
Phobius 253 645 393 -
TMHMM 269 291 23 -
SUPERFAMILY 319 564 246 3.79E-91
ProSiteProfiles 327 563 237 25.83
CDD 327 564 238 1.58485E-152
Pfam 346 494 149 1.1E-33
SMART 354 546 193 4.4E-16
ProSitePatterns 466 480 15 -
SUPERFAMILY 631 951 321 6.54E-51
CDD 639 955 317 1.67549E-111
Phobius 646 671 26 -
Pfam 650 921 272 1.5E-49
ProSiteProfiles 650 937 288 40.747
TMHMM 657 679 23 -
Phobius 672 691 20 -
TMHMM 692 714 23 -
Phobius 692 714 23 -
Phobius 715 783 69 -
Phobius 784 807 24 -
TMHMM 785 807 23 -
Phobius 808 875 68 -
TMHMM 876 898 23 -
Phobius 876 897 22 -
Phobius 898 1214 317 -
Gene3D 939 969 31 3.3E-129
SUPERFAMILY 962 1210 249 1.11E-86
Gene3D 970 1211 242 3.3E-129
CDD 972 1210 239 2.28245E-126
ProSiteProfiles 974 1208 235 24.63
Pfam 991 1139 149 6.2E-32
SMART 999 1185 187 2.1E-12
ProSitePatterns 1111 1125 15 -

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 Integral component of membrane The component of a membrane consisting of the gene products and protein complexes having at least some part of their peptide sequence embedded in the hydrophobic region of the membrane.
Molecular function ATPase activity Catalysis of the reaction: ATP + H2O = ADP + phosphate + 2 H+. May or may not be coupled to another reaction.
Molecular function ATPase activity, coupled to transmembrane movement of substances Catalysis of the reaction: ATP + H2O = ADP + phosphate, to directly drive the active transport of a substance across a membrane.
Biological process Transmembrane transport The process in which a solute is transported across a lipid bilayer, from one side of a membrane to the other.

Expression data

Expression pattern

Expression pattern of LotjaGi2g1v0258200.3, powered by ExpAt. For advanced configuration, data transformation and export options, view expression data in the ExpAt application.

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