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LotjaGi2g1v0456400.2

Overview

Field Value
Gene ID LotjaGi2g1v0456400
Transcript ID LotjaGi2g1v0456400.2
Related isoforms 5
Lotus japonicus genome version Gifu v1.2
Description Chloride channel protein; TAIR: AT5G26240.1 chloride channel D; Swiss-Prot: sp|P92943|CLCD_ARATH Chloride channel protein CLC-d; TrEMBL-Plants: tr|K7K5J8|K7K5J8_SOYBN Chloride channel protein; Found in the gene: LotjaGi2g1v0456400
Working Lj name n.a.

Sequence information

Genomic sequence (LjG1.1_chr2:94949847..94960370) extracted from Lotus japonicus Gifu genome v1.2.

TGCAAGGTGATGTGAATGGGCCCGTGCCATGTGCTGGGCTCAGGAAAGTCCCCGGGCCATTGCCGCAGAGATGCGGGCTC GGAAACGAGTTAACTTCACAGCGAGATTTGAAATGGGCTGAGACACGTGTGGAGCCTTTCAAGTCTCACTGAAGTAATTG GCCGACTCAACAGTCATTCACATGGTCCATGCGACTAACAGAACGGGGCTTATATCCTCGCGGTCCAACCCTTTTTTAAC AAAAATTCTTATCAGCCACTTCGCGACGGTTAAACATCCGTCACAAAATTCTTATTAGGTAGTGGACTTGAATTACTTGT TCACTTTCACAGGACGAACTCGCACCATTGAAAGTGGAAAACGACGGAACAACAACACTAAACCAACTCCGATACGACAC TGTGCTGGTTATATATGCTGTTGCTCAATTTTGAAGATCCGAAACCTATGCGCGAGTTTTATATATAGGTTTTGAGTTTT GGTTCCGATCGAGCGACGAGCTATGCTGTCAAATCATATCCAGAACGGAATCGAAACGGCGAGGCTCGTTTGGTCGCGGA TTCCCAATTCCGAGGACTCACAGCTCCTCGACGATGACGGCGTTGGCCTCCTGAAGAAGAACGATGGAAGTGGCGCTGAG AGCCTTGACTATGAAGTCATTGAGAATTTCGCTTATCGTGAAGAACAGGTAGGTTAAGCGTAACTATTGTTGTTCATATC AATTCACCTTGCGTTTTTTTTAATGGTATTGGGATTTGAGATTTTGTAGGCGCAAAGAGGGAAGCTATTTGTGAGTTATT TGCTGGTGGTGAAATGGTTCTTTGCCTTGCTCATTGGCATATGTACGTTCTTCAATGCTATTTTCGGAATGCTAAAGCAG TTTTTAGTTTGATTCACACCTCACATGTGTCTTGTATACATACATACTATCCTCATTGGTTCCAGGTACTGGACTTGCTG CTGTTTTCATCAATATTTCTGTTGAAAATTTTGCTGGCTGGAAGTTCTCGGTGACATTTAATATTATTCAGAAATCATAT GTTGCTGGCTTCATTGTATATGTCCTCATCAACTTGGCTTTGGTTGCTTCCTCTGTATATATTGTCACCCAATTTGCACC AGCTGCTGCTGGATCTGGTATTCCTGAAATCAAGGGTTACTTAAACGGTCAGATAACTTCTTTAACTTTTTTCTCTGTTT ATTATGTCTTATCCAAATGTCTCATGTACACTCAGAGTGCTCATTCCCATTTGTGTTCAGGAGTTGATATTCATGGCATC CTACTTTTCAGAACTTTGATTGGAAAGGTATGATGATGGATTTTGTTTATTTGGAAAGGCGGAGGTTAATGTTTAAAACT GTTTTCTGTCTGCTAATTACATGATTCTTCTTATGTGTTTCAGATATTCGGAAGCATTGGTTCAGTCGGAGGAGGCCTTG CTTTGGGTAAAGAAGGTCCTCTTGTCCACACTGGTGCTTGTATTGCTTCTTTGCTTGGACAAGTAAGTATCTACTGCTCA GTACTTGTTAGCATCTCTACGGTAAATTAAAAGTAGTCTATTCAGATTGTAGATGCATGAGACCTTGCAAATATCTCTTT TCAGCACTTAATATTTCAACGAGACTGAAAATGATATCAATACCACCTGAATGTCTATTATTTTTCAAATCGACCATTTA AATGAATGACTTTTTGTCCTGAGCATCTGCATATATTTCCAAAAACAAAAGTGCATTACCATAGCCTTGGCTAGTCATTT CTTTCCTAAAATGATAAACACATTAGGATGGTCCAACTTAGGCCTATACTTAGTTATTGGACCAGCCTGATTTCTGTTCA GAAGTAGTGACTGGGTGGCCCAACTTCAACTTGAAGGAGAGAGTGGGCCGACCTGATTCCAGCCCAAAATCAATGATTGA GCTAGCCAGATTTAAGCCTGAACCCACATAGCACTCAGTTTGATTCTTCTTAGCTATGAATAATTAGTTTGAGAAACATT AAATATACAGTGCACTATTTCCAAGGCTATGTTCATCATCCAGTTCAATATGTGTATATATTACATAGGTAAATTACTGA ATTCTGTGTTGCTTGCATTTGCAAATTTATGGATATCTGTTTTCTCATAAGATGGTGGTATGATTTATCGTCCTAAAGGG CTACAGTTTTCAAATTGAGCTTATGTGTGATTTTTATGTTTATGCATGCATGCATTATGCAAGGAAGAAACTGAAATAAT ATTTGTTCTCATGTCCTGAGCAGGGTGGATCCACTAAGTATCATCTAAATTCAAGGTGGTTTAATGTATTCAAAAGTGAC CGGGATCGTCGTGATCTTGTAAGCCACTTCATGCCTATATTTTTCTAGTTATGAATTTTACCAGAGCAGTGCAGAGAATG TACTTTTTAAGGTTTTATATTGTATTCCATATTCCCCCCTTCCCTCCACCAAAATGGCAAGCTCCATTTCACCAATGCTC GTCAAACACTAAATGAGGAAGAAGAAAATGCTCATTTTTTAGTTTCATTGATGGCTTGAAAAGGTAACCTGTGGATGTGC AGCTGGAGTTGCTGCTGCATTTAGAGCTCCGGTTGGTGGTGTACTGTTTGCATTGGAAGAGGTTACATCTTGGTAAGAAA TTTCAATTCTTGTCAAATGATTCTGTTTGCTTAGAAGTATGTGCTGTTATGGTAGTGTGTACTTTTGTACTTATAATTTG TTTCATGTACTCTTGAAGGTGGAGGAGTCAACTCATGTGGCGTGTCTTTTTCACTTCTGCTATTGTGGCTGTTGTGGTGC GAACTGCGATGGGGTGGTGTAAGAGTGGAAAATGTGGACATTTTGGGTCAGGCGGATTCATAATATGGGATATATCAGAG TTAAGACCTGAGCTATCTTCTTTTTCATCTCTAGTTGAATATTAAAGTTTTGTTCATCTTCTTTTTGTCTAATTGACTGG TTTCATTTTCAGTGGTCAAGAGGATTATTCATTTGCAGAGCTATTGCCAATGGCTATCATTGGGGTTATTGGAGGCCTAC TAGGTGGGAATTTTGTCTTTATCTTGTGTTTTCAATTGTATCATGGATTTTAGTTGACCTTGGTTCATTTATTAACTCAG TGTCACTAAGTTGCAGGTGCTTTATTCAATCAGCTTACACTTTATATCACTACATGGCGTCGAAATCATCTTCACAAGAA AGGTAGCAGAGTCAAGGTATGCTGTTGATTTTGATAATTTTGTTATCTGACTCTGCTTCTATATGGTTAAAAAAAATAAA AAATAAATGTGGAGAAGAAAGTAAGGAAGAAAAAGGCAATAAAAGAAAGAGAGAACTAAACGAAGTGAAATCAGTGCTTG TTATTGATATCGTTGTTTATTCAGCTTGTGGTACATTTTCTCCTTTCACTTGTCTGTTTACTTTTTTCGCATTCCACACT TCCTTTGAACTGCAGATCGTTGAAGCATGCATTGTCTCCCTTTTGACATCAGTGATTTCATTTGGATTGCCACTTCTAAG GAAATGTAGTCCATGCCCGGAATCTGATCCTTCATCTGGTATTGAATGTCCACGACCTCCTGGAATGTATGGGAATTATG TAAATGTAAGACCATTGGTTTTGTTTGTTTCTTTGTTGTACTTCATATTTATAGCCCATTTGTTTCTACTTTTTCTTTAA AAAAAACACTGTTAAGTTTTTTTGGTGTATAATGAATTTGCTTAAGCTTTTGAATAAAATCAGGTTTTTATTTTTATTTT GAGAGACTACTTAGAGTAGCTTTTGAAAAAAGCTGTAACTATAACTATTCTGTTAAATAAAAATTGATTTTTATAATTAT ACCCAAACTAAACATAATATAATGTATCATTTAGAGACTTTTGAATAAAGAACAGATTTTATTCGAGGGAGAAAAATTGC AGATATCCTTAACAGAAAATCTAAAGGAAACAGTGAACTTAAAGAGGCTCATAAGTCATAACTATAACAGAAAATAGAAG CCTAAAAAATTAATGATGTTTTTCTATCTGCATGTCAGATAAGACTATCTCGAGAAACAGTAGGCAGGAAACCATAGAGG GAATTTAATGCATGTTTCAGAATCCTTTGCTCCTCTTCTCTTTTGTTGTGAGAGTAGATAATCTTTTAAATTTCTTCCAG AAGATATTGATATTGAGCTTTTGGTTTTGATTAATTTTGGAGATTTTATTGTAAATTTGTTCTCTTTGCAGTTTTTTTGT AGCAAGGACAAGGAATACAATGATCTTGCAACTATTTTCTTCAATACTCAGGTTTTTAATGAGCTTGAAATCGTAGTTTG TTTTTCTTTGCTTGTTACAATACATTAAGTTACTTATCTTTTGTTTCAGGATGACGCCATAAGGAATTTGTTCAGTGCAA AAACAATAAATGAGTACAGTTCCCAAAGTTTATTAACCTTTTTGGTATTGCATTCTTGCTTAATGTTATGGACTTTACAT GCATCAGACATTAATGTTGTGATGTTTTCTATGCTTTGGTTATGATAGAACTTATTTGGCGTGTAGGCCTTGTATGTTAA TTTTTAATGAGAATATAAGAGGAGCAGATGGTATTGACCAATAGCAGAAAAATATGCTTTCTTATAAGGAATTTCACTTT ATTGTTAAGTAATGTTCCCATATTAGATAGAATTGGTACTTGACATTAGCACTAGTGATACTTTATATGTTTATATATTG ATTATTATCTCTATTGTTTGGCAGGTTATGTTTTATGCTTTAGCGGTTGTGACATTTGGTACTGCTGTGCCAGCTGGGCA ATTTGTTCCTGGTATAATGATAGGATCAACGTATGGACGTCTTGTCGGCATGTTTGTTGTTAAGTATTACAGAAAACTCA ACATTGAAGAGGGAACGTGAGTGTATTGCCAGTTGCTTTTATCTAAGATTATAATTAACAATATATACATTTCCTTCCTA CTCTATACATGAGTTGCAATATCAATCTTTATCATGTTTTCTGGGTATAAATGTCACCCCATCTCTCCTTGTTTGTGATG TTCAAAGGAAAAATGTATTCTGCCTTTGAAGAGCTGACTGACAAATTAGACAGTGATGCCTTGGTTAATTCTAAATTATG AGCTATTAAGTTGTTCTTTTTCTCTTGGTCCAGGGTGACTGGTATTTTTATCCTTCATATTTTTTGTCATCCCCGGTCTA TATTATCATGGTTTATCTTTTTTTTTTGGAGAAACAAGAAGGCTGATGTATTGTTCTAATTGCAAACGACCAAAAATGTA ACTTTGATTCCCTTCTTTTCTTTGTCTGAACAACTTGGTTTGAACTAACCCTTTGATCTGTTGCCAAAACTAACCCAACA AAGTAAATTAACATTGTCGTTTAGAGTATGAAATCCGGCACCAGAAAATACCCTTTGTCCCATTTGTGACGGATTGCTGG TGCATTAATGGCCTATAGATCAAGATAAGTATAGTTTGCCAAATCGTGGTTTATCTTGTTGATACTTGGAAGTGGTGCCA AATGACAAAGCTTAAGCAGTGGAAAGTCAGTTCTCCATTAAAATTACTTTCAGGAGTCTTGTTTTGTTGGGGCCCCAGTC TGCTTTTCTTTTATGTTTTTCTTAGGTTATTTTGGGGTGGACTCGTTACATTTTCTTTCTTAGTTTTTTCTATTTTTCTT TATGGTCTTTTGACCTGGTGTGACTCCTGTGTTAGAAATGCTAAATTGATAAACTGATTTTCATTGATTGTAAAACTGAA GAGTACAAGTGTGGATCTCAGTATTTATAGAGTCTACAAAGCTTGCATAAGAAGCTAACTCTAACTAATTCTGCTATATG ACAGCTAAGCAACTCTAACTAATTATGTTATATGACAGCTAAGCTAACTAACTTGACATAACACAATCAGCAGTTACTCA AAAGTAACTCTACTAACTGTAACTAACAGTAACTATATCAAACTATATAGTATACTCTATTATCCTGTAATGCTCTATAA ACTGTCTTCATTGAGTTAAACTTGCCTTAGCATCTGAGGCGCAACTTTTGAATTTGTTTCGAGAATTTGGATATCCGTGT ACTGCTGGTGGAATTTCTTGTGGACTTTTACACTAACTCTGTTGGTGGTGAGTTTCACCTACAGCTGACATGATAGGGAT TGTCCTCCTGAGTCCAGACAATTAGATTCACAAGCTAAAAGTGATTGTTGAAATGTGAAATTCAGGAACTGTGATAATTA TTCTTTTCAAGTTTTTGTTTTAACTGTTTGTCTTAGTAGATGCAGCACATATACTATCCCCTCTGCGAAAACTAATGCTG CTGGTTTAGTTTTCTTGTGGGACAGTAATGTAACTGTTTGCTATTTGGAGTCTCTAATATCCATAATGATTTTGTCCTTG TGATCCCTATTTTCCTTGAAATTTTTCATGTGTTATTTTTCTTATCTTCAGGTATGCTTTGCTAGGAGCTGCATCTTTTC TTGGAGGTTCAATGAGGATGACAGTGTCTCTATGTGTTATTATGGTTGAAATCACAAATAACTTAAAACTTTTACCCCTT ATTATGCTTGTTCTTCTTATATCAAAGGTATGTAGATCAGAACCCCCATTTACAATGAAAAGTCTCTTCAGAATGCACTA AGTTTGTCTCTTGCAGGCTGTTGGGGATGCTTTTAATGAAGGAATCTACGATGAACAGGCTCGACTGAGGGGCATACCAT TACTGGAATCAAGGCCTAAATATGAGATGCGGAATATGACAGCAAAGGAGGCCTGTGGGAGTGGAAGGGTGAATCTAATT TGAAAATTATTTCAGAAATTGCCTAGTCTAAGTTAATTGTGTTTTTCTTTGCGTTTTTCCAACAGATGGGAGGGATATGG TGAATGCAATCTTGAAATTCTTTATGGGTGCGTTTGGGAGTTTTTGAGGGAGGGAAGGGGGTGTAAGCCCTCCCCTTGTT TGGAAGCTCGAAATTCCACCAAAACCCCCCAATTTGGGAGAACTCCACAAAATAGAGGAGAGGCTTAGAGGGCTTTCAAA AATTCCCCAAATCCTTACCCCCTTCTTAAAAAACTCTCAAACAAGGGGAGAGCTTATCATAAGCCTCCCCTTTTCCTTCC CTTCCCTCCCCTCCAAAGCTCAACTCACAAAAAGATTTGCTTTTGTGTTATTGTCCGAGTAGTTCATTTTTTTCTTTTAG TATTTCTGGCGATGAAATGTTTTCAACATAGAGTATATGTTTGGGCTACCTAGTTTAAAAGAAGCCTAATTGAATTACTG GCTATTCCAGATTCCTACTAATATAGCATCTTGGAGAAAGGAGGCTTCCTTATGTTTAAGGCAGATTGAATTATTTTCCT TCTTCAGGTCCAGCGTGTAGAAAGTATATGATGGTAGAGAGAGGGAGTTGTGGGCTACAAAAAGAAGGCCTGGTTGTTGT AGGCATTAGACTATGGTTGCGGATATAACCTGCAAAGAGGATTGCTATCAAGTATCAACACACTCTCCAACACTCTTCAT GTGATTGGTTAATTTTTTAAAAAGTCAACACATTTTTCTCACTTATTAAAAAGTTTGTTGAGTTTTCAAAAAATAAACTA ATCACATGAAGTGTCTTAGAGAGTGTTGCTAGCATTTCTCAACCTGTAAATCAAGGGGCTAAATAGACAATTGTGCCTGG GGGACAGAAGAGAAAGAACACCATTTATTTTTGTTGGGGATACAGCAGGGTATATGTGTGTGGGTATTAGTTTTTAAAAA ACAACCATGAGGCTGCCGCTGGAAAGACTGTCTTTCATGCTTTGTTCTGCACTTATTTCTTTGGCTACTAATTGTGTGCG TAAATGTTTCTATTGAAGGTGGTTTCTTTCCCTCGTGTTGCTAAGGTTTCAGATGTAGTCTCCATTCTGCAGAGCAACAA ACACAACGGTTTTCCAGTATGTTCAACTCTTGTACCGATCAATCCAATTAACCATTGTTTCTCGCATTTTCCAAGTTGTA GTCTTTAACTTACTGCTCACAGGTGATTGACCATACAAGAAGTGGAGAACCACTAGTTATTGGATTAGTGCTTCGGAGGT AAGCTATGAGTATAGTAACTTTTATTTGTGTTACATCTGTCTATACTCTGGTGTGATTTTTGCAGTAACTTGAAGTTAAA CCTCAAATCACTTGAAAACTAAGCTTCTTTATCCTTTTCGTCTGTGCAGTCATTTACTGGTAATATTGCAGTCCAAGGTT GATTTCCAGCATAGTCCTTTACCCTCTGATCTGAGAGGTGGGGGCAGGTCAATAAGGTAAGTTTTCACTTTTCACTAGAC TTGTTTAGTTTGGCCTTTTTCATCTGTATTCGGAATGTCTGATGACTCTTACTAACTTCCAGGCATGATTATGGTGAATT TGCAAAGCCTGTTTCCAGTAAAGGAATATGTCTTGATGATGTACATTTAAGTTCAGATGACCTGGAAATGTTCATAGATC TTGCCCCATTTTTGAATCCCTCCCCTTATATCGTACCAGAAGACATGTCTTTGACAAAGGTGCGGTCTGAGATTCTTTAA ACAAAGCCATATTCATTTATATTCTCCATTTTTGGTTTAGGTAATTATGATTTTATGTTGATGGCGCAGGTATACAATCT TTTCCGCCAACTTGGTTTGAGACATTTATTTGTTGTACCTCGTCCATCGCGTGTGCTTGGTTTGATAACCAGAAAAGATT TGTTGATTGAGGTAATATTTCTGAGTTGAATTTTTTTGGTGTTGGAGTTAAACCCTTGGAAGATTTTCTCCCCCCTTATT ATACTTCTTAATGCGGCAGGACACAGATGCGAATACATTAGAGCTTCAGGCAACTAGTGTAAGGTCTCTGATCTGATGCT TTACTCATTTAACATCCTACTCAGTTTACTTTGAATTTCAAATTTAATTATTTTAAGCTGTGCGTATTTGTTTAGTCTGA AAGAGTGAAAGCTATTTTGAGTTTTTCCTTGTAGTTGGTTGTTTGTCGTGATGCCTAATAAAACAAGTATCCTATTTGGT GGCTAATTTTGATCCAATATTCAATGTGAATGATGTAATCACTATTTATCTGTCAAATTTTCACTGATTTAAGTATTGCA CAGCATTATAAATCGAAAGGTTATCCATGTGTTGATGGTGTGATGAGGTTGTCTACTATTTGCCGCATTGACTAAAACTA CAGTGACTCAATTATGTTTCAGAAAGGTGTCATTATGACAATGTGTGCACAATATCACTTTCACAAAGGTGTCCCCATGC AATTATAGACTTTTTGTCGAAAGAAACATGATTTTTCATCAAGCAAAAACTTCTTCAAGCAGCAGACTCTGAATTTTATG AATTGTAAAACTTACACTCTGCAGTAAAATCTGTGCAACTGTGTTGCCTTAGCAATGCAATGTCGTTTTGCATTTTTCAG GATTCACATACTTATTCCAATAAATTGATTTATGTAAGTTGTCTTCATATTTCTTCATACAGAGTTCGGCATCCAGGTAA AAGATTGATGGCAAGGAATGCAGATGTGGAGAGCCCTCTGCTAAATGGTCTTCTGGTTCAGAATCAGATACCTGACTAAT ACCGTCTGCAGCCTTCCCAAATTCCTTTTTGCGTCCAATTTTCCTTGAAAATCATTCTTTATTATTTTTGTATTAATGTT GAAATAGGTTAGAGAACCCGATATTTTGGGGATGGAACGGGGTTGTAGACTGACAGTATACCCTAGAATTTTGTATATAA AGTATAAACTACGCAAGCAAGAAAAAAATCATGAAAGCGCCATTGTGATAATTATGATAGCAGAATTTAGACTGATCGAT TGAAAAAATACATGAACTTTCTTTGTTTTTTTTTTTGAATCCAAAACTAAAATCTGTTTCTTTTTGGTTGAAGTCATTGT TGACATTTTCTTCTCGTAGATTCCTTGCAATGTGGGTTATTTTGACAACTAATTTACGTTATAGCTGTAGATTAGCTTGA AATTTGCTAGCAATAGCTAACAAGATTTATAGCTGCAAATTTTCCCAAGACAAAAGGGAATAAAATCGGCCTAATTAAGC CCATTATTTGTGTTGCTGGAAGACAAAGGGAATTGAAATTGCATTATCCATCCATCACTATCAAATTACAAATTAGATTG CATTCCCCCGATCAAGGAAACAGTTTCTATCTATATCAACATTTAGTGATATAGTAGTAGTAGTAATAGTTGTATTGAGT TTTATATTAATAGCTCCTACCTAAAATCATGCAGCCATTATCAAATTATCTCTCATCTCATCATCGGAAAAAAAAAAACA GATTATCTCTTGCGTTAAACAAATTTAAAGAGACCCTTCAATAACCAAAGCAGACTGTGGTCCATTCCACCTTAAACTAC TTTTTATCCCTAATATCTTGGAAATTAAAATAAGAGATAAATTTTTATGACTAGATTTTATAAGAATTGATATGCACAAT TTTTTTTTAATAAGAATTGAAAATCTTGTCAGCAGCCTCCTTCA 

CDS sequence (LotjaGi2g1v0456400.2) extracted from Lotus japonicus Gifu v1.2 CDS.

ATGCTGTCAAATCATATCCAGAACGGAATCGAAACGGCGAGGCTCGTTTGGTCGCGGATTCCCAATTCCGAGGACTCACA GCTCCTCGACGATGACGGCGTTGGCCTCCTGAAGAAGAACGATGGAAGTGGCGCTGAGAGCCTTGACTATGAAGTCATTG AGAATTTCGCTTATCGTGAAGAACAGGCGCAAAGAGGGAAGCTATTTGTGAGTTATTTGCTGGTGGTGAAATGGTTCTTT GCCTTGCTCATTGGCATATGTACTGGACTTGCTGCTGTTTTCATCAATATTTCTGTTGAAAATTTTGCTGGCTGGAAGTT CTCGGTGACATTTAATATTATTCAGAAATCATATGTTGCTGGCTTCATTGTATATGTCCTCATCAACTTGGCTTTGGTTG CTTCCTCTGTATATATTGTCACCCAATTTGCACCAGCTGCTGCTGGATCTGGTATTCCTGAAATCAAGGGTTACTTAAAC GGAGTTGATATTCATGGCATCCTACTTTTCAGAACTTTGATTGGAAAGATATTCGGAAGCATTGGTTCAGTCGGAGGAGG CCTTGCTTTGGGTAAAGAAGGTCCTCTTGTCCACACTGGTGCTTGTATTGCTTCTTTGCTTGGACAAGGTGGATCCACTA AGTATCATCTAAATTCAAGGTGGTTTAATGTATTCAAAAGTGACCGGGATCGTCGTGATCTTGTAACCTGTGGATGTGCA GCTGGAGTTGCTGCTGCATTTAGAGCTCCGGTTGGTGGTGTACTGTTTGCATTGGAAGAGGTTACATCTTGGTGGAGGAG TCAACTCATGTGGCGTGTCTTTTTCACTTCTGCTATTGTGGCTGTTGTGGTGCGAACTGCGATGGGGTGGTGTAAGAGTG GAAAATGTGGACATTTTGGGTCAGGCGGATTCATAATATGGGATATATCAGATGGTCAAGAGGATTATTCATTTGCAGAG CTATTGCCAATGGCTATCATTGGGGTTATTGGAGGCCTACTAGGTGCTTTATTCAATCAGCTTACACTTTATATCACTAC ATGGCGTCGAAATCATCTTCACAAGAAAGGTAGCAGAGTCAAGATCGTTGAAGCATGCATTGTCTCCCTTTTGACATCAG TGATTTCATTTGGATTGCCACTTCTAAGGAAATGTAGTCCATGCCCGGAATCTGATCCTTCATCTGGTATTGAATGTCCA CGACCTCCTGGAATGTATGGGAATTATGTAAATTTTTTTTGTAGCAAGGACAAGGAATACAATGATCTTGCAACTATTTT CTTCAATACTCAGGATGACGCCATAAGGAATTTGTTCAGTGCAAAAACAATAAATGAGTACAGTTCCCAAAGTTTATTAA CCTTTTTGGTTATGTTTTATGCTTTAGCGGTTGTGACATTTGGTACTGCTGTGCCAGCTGGGCAATTTGTTCCTGGTATA ATGATAGGATCAACGTATGGACGTCTTGTCGGCATGTTTGTTGTTAAGTATTACAGAAAACTCAACATTGAAGAGGGAAC GTATGCTTTGCTAGGAGCTGCATCTTTTCTTGGAGGTTCAATGAGGATGACAGTGTCTCTATGTGTTATTATGGTTGAAA TCACAAATAACTTAAAACTTTTACCCCTTATTATGCTTGTTCTTCTTATATCAAAGGCTGTTGGGGATGCTTTTAATGAA GGAATCTACGATGAACAGGCTCGACTGAGGGGCATACCATTACTGGAATCAAGGCCTAAATATGAGATGCGGAATATGAC AGCAAAGGAGGCCTGTGGGAGTGGAAGGGTGGTTTCTTTCCCTCGTGTTGCTAAGGTTTCAGATGTAGTCTCCATTCTGC AGAGCAACAAACACAACGGTTTTCCAGTGATTGACCATACAAGAAGTGGAGAACCACTAGTTATTGGATTAGTGCTTCGG AGTCATTTACTGGTAATATTGCAGTCCAAGGTTGATTTCCAGCATAGTCCTTTACCCTCTGATCTGAGAGGTGGGGGCAG GTCAATAAGGCATGATTATGGTGAATTTGCAAAGCCTGTTTCCAGTAAAGGAATATGTCTTGATGATGTACATTTAAGTT CAGATGACCTGGAAATGTTCATAGATCTTGCCCCATTTTTGAATCCCTCCCCTTATATCGTACCAGAAGACATGTCTTTG ACAAAGGTATACAATCTTTTCCGCCAACTTGGTTTGAGACATTTATTTGTTGTACCTCGTCCATCGCGTGTGCTTGGTTT GATAACCAGAAAAGATTTGTTGATTGAGGACACAGATGCGAATACATTAGAGCTTCAGGCAACTAGTAGTTCGGCATCCA GGTAA 

Protein sequence (LotjaGi2g1v0456400.2) extracted from Lotus japonicus Gifu v1.2 Proteins.

MLSNHIQNGIETARLVWSRIPNSEDSQLLDDDGVGLLKKNDGSGAESLDYEVIENFAYREEQAQRGKLFVSYLLVVKWFF ALLIGICTGLAAVFINISVENFAGWKFSVTFNIIQKSYVAGFIVYVLINLALVASSVYIVTQFAPAAAGSGIPEIKGYLN GVDIHGILLFRTLIGKIFGSIGSVGGGLALGKEGPLVHTGACIASLLGQGGSTKYHLNSRWFNVFKSDRDRRDLVTCGCA AGVAAAFRAPVGGVLFALEEVTSWWRSQLMWRVFFTSAIVAVVVRTAMGWCKSGKCGHFGSGGFIIWDISDGQEDYSFAE LLPMAIIGVIGGLLGALFNQLTLYITTWRRNHLHKKGSRVKIVEACIVSLLTSVISFGLPLLRKCSPCPESDPSSGIECP RPPGMYGNYVNFFCSKDKEYNDLATIFFNTQDDAIRNLFSAKTINEYSSQSLLTFLVMFYALAVVTFGTAVPAGQFVPGI MIGSTYGRLVGMFVVKYYRKLNIEEGTYALLGAASFLGGSMRMTVSLCVIMVEITNNLKLLPLIMLVLLISKAVGDAFNE GIYDEQARLRGIPLLESRPKYEMRNMTAKEACGSGRVVSFPRVAKVSDVVSILQSNKHNGFPVIDHTRSGEPLVIGLVLR SHLLVILQSKVDFQHSPLPSDLRGGGRSIRHDYGEFAKPVSSKGICLDDVHLSSDDLEMFIDLAPFLNPSPYIVPEDMSL TKVYNLFRQLGLRHLFVVPRPSRVLGLITRKDLLIEDTDANTLELQATSSSASR 

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
Phobius 1 68 68 -
PANTHER 5 772 768 0.0
PANTHER 5 772 768 0.0
CDD 46 575 530 0.0
PRINTS 51 59 9 2.1E-19
SUPERFAMILY 55 577 523 1.31E-107
Gene3D 69 395 327 4.9E-86
Phobius 69 97 29 -
TMHMM 73 95 23 -
Phobius 98 116 19 -
Phobius 117 140 24 -
TMHMM 118 140 23 -
Pfam 133 556 424 1.8E-97
Phobius 141 233 93 -
PRINTS 145 162 18 2.4E-61
TMHMM 167 189 23 -
PRINTS 176 195 20 2.4E-61
TMHMM 234 256 23 -
Phobius 234 257 24 -
PRINTS 240 259 20 2.4E-61
Phobius 258 268 11 -
PRINTS 261 269 9 2.1E-19
TMHMM 269 291 23 -
Phobius 269 288 20 -
PRINTS 275 285 11 2.1E-19
Phobius 289 320 32 -
PRINTS 293 300 8 2.1E-19
Phobius 321 342 22 -
TMHMM 324 346 23 -
Phobius 343 361 19 -
Phobius 362 382 21 -
Phobius 383 451 69 -
Gene3D 409 577 169 2.3E-39
PRINTS 423 439 17 2.1E-19
Phobius 452 470 19 -
TMHMM 452 474 23 -
Phobius 471 475 5 -
PRINTS 471 491 21 2.4E-61
Phobius 476 495 20 -
Phobius 496 506 11 -
PRINTS 506 522 17 2.4E-61
Phobius 507 534 28 -
PRINTS 524 543 20 2.4E-61
Phobius 535 539 5 -
Phobius 540 558 19 -
Phobius 559 774 216 -
PRINTS 562 576 15 2.4E-61
SUPERFAMILY 580 754 175 1.77E-26
ProSiteProfiles 586 653 68 8.713
Gene3D 591 756 166 5.4E-20
SMART 596 648 53 0.08
Pfam 597 647 51 0.0033
CDD 597 754 158 1.83776E-33
ProSiteProfiles 707 763 57 11.432
Pfam 708 754 47 4.2E-6
SMART 710 758 49 1.4E-4

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 Voltage-gated chloride channel activity Enables the transmembrane transfer of a chloride ion by a voltage-gated channel. A voltage-gated channel is a channel whose open state is dependent on the voltage across the membrane in which it is embedded.
Biological process Chloride transport The directed movement of chloride into, out of or within a cell, or between cells, by means of some agent such as a transporter or pore.
Cellular component Membrane A lipid bilayer along with all the proteins and protein complexes embedded in it an attached to it.
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 LotjaGi2g1v0456400.2, powered by ExpAt. For advanced configuration, data transformation and export options, view expression data in the ExpAt application.

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