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LotjaGi2g1v0253200.1

Overview

Field Value
Gene ID LotjaGi2g1v0253200
Transcript ID LotjaGi2g1v0253200.1
Related isoforms 2
Lotus japonicus genome version Gifu v1.2
Description ABC transporter B family protein; TAIR: AT3G28345.1 ABC transporter family protein; Swiss-Prot: sp|Q9LHD1|AB15B_ARATH ABC transporter B family member 15; TrEMBL-Plants: tr|A0A0B2RQU4|A0A0B2RQU4_GLYSO ABC transporter B family member 15; Found in the gene: LotjaGi2g1v0253200
Working Lj name n.a.

Sequence information

Genomic sequence (LjG1.1_chr2:71900751..71910585) extracted from Lotus japonicus Gifu genome v1.2.

CTCATCTTTCTTCTCTTTTTTTTCACTGAAGTATCTGTTGGATGTCGGTACTATGCACATATATACAAATCGATCATTTT CATATTAATTGTGAAGTAAAAAAAAACATGTGGTTCCCCATCCCACTCCAGTGTCCTTATAATAAGCCTCTCCACATGCT ATCAGGAATCACTCTCTCACTCCTATATAAATCCATCATTTGCAACATTCAAAAACAAGACCACAAAGCTGGTTTTGGAA GCAAGCACAAGAAACAAATTAAAGGAAGCAGAAGAAGCCAGTCTAGTGGTCAGAGAATCTTGCTATTGGTTGTTTCTGAG AAAATCAAAAGGGTTTCTGTTGCAAATAATGGGTGGGGATCAGAATGCTGTTTCCATGGTTAGAAAGAAGAAGAAGGCGA AGAGTGGCTCTGTCATGTGCATTTTCATGCATGCCGATGGCCTAGACTGGTTTCTCATGCTTTTGGGTTTGTTTGGAGCC ATTGGAGATGGTATAGGCACCCCTCTTGTGTTGTTTATCACTAGCAAAATCATGAATAGTATTGGCGGTTCTTCCACCAG CACAAACAACACTTTCGTCCATAACATCAATGAGGTTCTCTCTTCTCACTTGCTCAATAATCACTGAATTTTTGTTTGTA TTAGTTTCTCTTTTTTTAAAATTAATTTTGACATGCAGAAGCTAGTTACTAAAGCTTCTCACCAGAATTGATTTTGACTT CAGAATCATTTATTGAATGATATCCAAACATGGAATTGTTGGTTCTGCGTTCACTACGCTCAAGTTTTGCACTTCTGAAG TTCAAATTCTGGAAGCTATATTCACCTCTGGAAGTGATTTTTTTTTTCATTGTGGAAGTTCAAGTTTCGGAAATGTTTTT ATTATACTTCTCGAAAATTCAACTTCTGGAAATGAATATAACTTCGGGTCTAGAAGTGTAAAACTTGACCGTGGTGACTA GAGGAAGCTAGGAATGAAGGATCCAACAACTGCAATGAATCCAGATCCCCAAACATGTATTAGCTAGTTTATTTGGTTTG CTTGTGATGCAGAATGCAGTGAATATGTGTTATTTGGCTTGTGGCTCTTTTGTTGCTTGCTTCCTTGGTGAGTTTCAGTT TTGCTATGCCTATGATTATGCTTCTCTTTCATTTGTATGATCCATGAATATAAACTAACACCTTTACTTTGGTTGATCAC TTCAGAGGGTTATTGTTGGACAAGAACAGGTGAAAGACAAGCTGCAAGAATGAGAGCCAGATATTTGAAAGCAATTCTCA GACAAGAAGTAGCATATTTTGATTTGCATGTCACAAGCACATCAGAGGTCATCACCAGCGTCTCTAATGACAGCCTTGTG ATTCAAGATGCTCTTAGTGAAAAGGTGAACTTTTTTTTAAGAATATTTCTTTTCCATGTCTACCTAATAAGATAAATGGG AAAAGAAATAAGAGAAATAAATGAGATGATATGTGATGTGACAAAAAATGCAAAAAAATATAAGGAAAAAAGTAAGGAAA TGAGATGAGAGAAAAAATGTTGTGTGAATGAATCATTACTCTTTTCGAAATTGGATTTACTGTGGTCCTTGTTCATGCAG TCCAGTTTTCCAGAAAAGTTCAACTTCCAAAAGTGAAAATAACTTCTCTAAATTGAACTTTCAGGAAGTGCAAAACTTGA CTCCAATAACCGGGGATCGATTGCAGTGAATCCAGTTTTTATTTTTCATGTCAGAGCATTTTCAATTTTGAATTTTAATC ATTATATTGTGCCACTAACAGAGTGAATTTCTTCCAATTTGGAAACTACACAGGTCCCAAATTTTTTGATGAATGCGTCT ATGTTTATTGGGAGCTACATAGCAGCTTTTGCATTACTATGGAGATTGGCAATTGTGGGGTTCCCTTTTATTGTTCTTCT TGTGATCCCTGGTTTGATGTATGGGAGGACCTTGATGAGTTTGGCTAGAAAGATCAGTATAGAGTATAACCATGCCGGTA CAATAGCAGAACAAGCAATATCTTCCATCAGAACCGTTTATTCCTTTGCAGGGGAAAGCAAGACCATTAATGCTTTCTCT GATGCTCTACAAGGCTCTGTGAAATTGGGGCTGAAACAAGGCCTAGCTAAAGGCTTAGCCGTAGGAAGCAATGGTCTTGT CTTTGCTATTTGGTCCTTCTTGTCCTATTATGGTAGCAGAATGGTCATGTACCATGGTGCTAAAGGAGGGACTGTGTTTG TAGTTGGAGCCTCCATAGCCCTTGGTGGATTGTAATTACACATACCCTTTATCTCATAATTTCAAATTCATGCAATTGAA CCTCAAAAGATTCAAACTTTGTGGTTATTTTTTGTATTGTGTGACAGGTCTTTAGGTTCTGGTTTATCCAATGTGAAGTA CTTCTCAGAGGCGAAAACCGCTGCAGAACGCATAATGGAAGTCATAAACAGGGTTCCCAAGATTGATTCTGACAACATGG CTGGGGAGATTCTGGAAAATGTTTCAGGGGAAGTGGAATTTGATCATGTTGAGTTTGTGTACCCTTCAAGGCCAGAGAGT GTGATTCTCAATGACATGTGTTTGAAGGTTCGCTTTTATTTATTTAATTCTCTAATTTTTTTTCCTCACCACGAGGAGTT CAGTCAGTTTTCACGCACCTTGACTAATACCGCTCGTGGTGAGTGGCTGCCATTAGCCAATCAATATTTTGACAATGCCA GAAATCGATCTTTGGGAGATCCAGTTCGACCCTAAATTATATTAGTGGCAGCCTTATACCACTAAGCCAAGAAGCTTGGT TACTTAATAGTTAATACTCAATTAATTATAATACATTATGTTTTAATCATTAATATCAATTATGTCAATTGCTAAAATAA TTATAATTTATGTATTATATGCTTTATCCTTTCCCATACAAATTAAAGTGTCTAATAGGGAACAGTTGATTCAACAGGTT CCAGCAGGGAAGACAGTGGCTTTGGTGGGAGGGAGTGGGTCAGGGAAATCAACAGTGATATCACTTTTGCAGAGGTTTTA TGATCCTGTTGGGGGAGAGATAAGGCTTGATGGGGTGGCAATTCACAAGTTGCAGTTGAAGTGGTTAAGGTCTCAGATGG GTCTTGTGAGCCAAGAGCCTGCTCTGTTTGCAACTAGCATTAAGGAAAATATACTGTTTGGGAGAGAGGATGCAACAGAG GAAGAGGTTGTTGAAGCTGCCAAAGCCTCCAATGCTCATAATTTCATTTCACAGTTGCCACTTGGATATGATACTCAGGT CAGTACTCATTTCAGTGCTGCTACTGTCAACTGCCACTAATATCTGTTCAATCCACTTTTTTATTAAACTTATTCCTACA TGATCTCACTTCAATGGTTGAAAATGATCAGAGAAAAACAAAATTCTCTTTTTTCCTATCATTCAGGGTGAATGGAACAT TTTTTACCCAATATGACAAAATCATGCTTAGTGGTTCAGGTAGCCATCAATCTCAATATGCATGTTATTGATGATAACAG GAAAGTTTAGTATCAGTAAAACTCAGCCTTTTCCAAAACAACATAAACAAATGAGACATAAATGAGACTCTCAAATAGTG TAAACACAATACACTCCATTTTTCTCTATATATGAGACTATTCTTATCACATTATCACTTTTTTCTACTTTATTCTTTTC TCATTCCAAATATCTACACCATAGATTAAAATCATCTTTGATCCTTGTTTGATGTCTCAATCTTTATTCCACTAATTAAA TTATATCATGTATGAGATAATTTGGTTGGTGGGAGATAAAAGGAAAGTGGAAATCTTCATCCCTACACCCCTTTATGTCA ATCAAACAATTTTTCATTTGAATTTTCAAGTTTTCAGTATTTTAACTGAAAATATTCCTAATAAAATTCCATAACGACAT CATACAGTAATGACATGACTGGTTCGTTGCTTTAATGATATCCTCCATCCATGTGAATTGTGAGGTGTTGCATCAAATAA TTCTTTACTTAAAAATTAAATAAACCAATAATTGGGTTCCACGTACACATAGAACTTTGCATGTCTGCAAATGGCTTTTA AGAAGCAAATTCCATATAATATGGCCGGCTTCTTGACCCTAATTTTCGAACAAATTATGACCACATACCATATCTTTCAA AACAATATCTTAATTAGTTCAACTCATTACTCCTATCCAATTTTACAATAAAAAAGATGTTGGAAACATAATTTTGAAAA GATACATACTTATACATAGTTATCTGAGTAGTGTCTACCAGCTTATAAATATTGGGCAAAATACTTATAAAAAAGTGTGA GATTTTGTGTTCCTCGCACAGTCACACTCAAGTTAGCACCATTCATACTCCCCCATGGCCCCATTATAATTGTTTTAATT TTAAAATAGTATAATCTACATGCAAGGGGCTGATGGGAAGATGCAAACTGCCTCAAACAAAACAAAATGTATTGTGACAT CAATTATTTAATAAGGGTTCACTCAGACAATCACACCTTACTTTCTCTTATATTTCATTTTTCACACATTTTCTTCATAT TCCTCTCTGTATTTTGTATCACGTCACTGTTGTATTACTCATTTTCCTCTCTTTCCTTTCTATTTACCTAAAATTGAAGT GGAAAAAAAGTGTTAACACAACATTATTCTCATTTCTCAAACATTGACTTGCCGTAAATTAATATAACACCTAAGAATTC CACCCTTTTGACTCGCTCCCTAACCCTAACGCCATGAATTTATCCTATACATAGAACATGCTTTCATATTCAATGGTCGT ATAAATTAAAATTATTTAATAGCTAACTTAAGTGCATTGAACTTAGAAAGAATCATTACGTATTAGCGAATATAATATTT AGTTAAAAATTAATGATGTGTTAATAATTTGTTGCTTACCATACTTAAATTAATAGCAATGCTAGATTAAAAATGTACAT GTGGCTTTTAATAATAGGTTGATATTGTGGGACATATTTATTTGTGTCGGAAAAAAGTGGAGAGGTAACCAATCAAAAGG AGAGATGAAAATTTGATTCGTAACCTCCACCATTTCCGTTAAATTAAACATACTAAAGTTTATACAAGAATAACCAACAA AAACCAGCAAATTTTAGATCAACATCTTTTGTGTTTAAGTGATATTTCAAAGGTGATTCCCGATATCCATTGAAAATGAA TGCTGTATCCCTTTAATTTGATGTGTCGTAATATTATCTTTTAAAATAAATTCTTTTAACTTATAATTTAGTCTTATATA TCTAAAGCTAATTGACACGACAAAATTGTGTCATCCATTTAAACTATACACTGAAAGGCAACAAATCCTAATATATTTTT TCTAAGGTTACCAAAACAACGTCATATTTTAATTTCCTATACCATAAATAGAATTTTTAACAAAGTTTTGGGAACATCAA ATTTCAATCTGTAAAATTAGGGGTTGTCTAAATGACACATGATAAAGTTTGGGTTAAATAATTCATCATCTAATCACATT GAAGACAAGTGAGTTGAAATTTCTATATTTTATTTATTAATTTATTTCCAATTCATTTATCTCAAATGTGATTGGATGAT GAGTAATTTAACCCAAACTTTATCATGGGTCATTTAGACAACCCGTAAAATTAATATATGATTAACTATTTAAGCATATT GATAAAGGTTGAAGTAGTGTTTGTTAACCTTCAAAATAAAAAAAGTAGTGTTGGTTGACTGGTTGTATGGATGAAAAATA CTCTAATTGAGCTAAAACCACCTTGGTGGTAGGTGTATCTTACAATGGCTTGATTTTGAATTTTGACTAGAAGATATTCT AGGGGCATATCAAAATACAAGAACAAAAATTTCAATTAAATAGCTTAGCTAACCATCATCTATAGATAGTTCCATGATTA TACTATTGATTTAGCTTATTTGAAATTATGTTAAGAAATCTCATATTGATTAGAATTATTGTCGAATAAAATCTTAATTA TCTTTTTTAATTTTGTTTGAATAGGTTGGGGAGAGAGGAGTTCAAATGTCCGGTGGACAAAAACAAAGAATCGCCATCGC ACGTGCGATAATAAAGAGACCAAGAATCCTCTTGCTTGATGAAGCAACAAGCGCACTGGACTCCGAGTCTGAACGAGTCG TGCAAGAAGCTCTCAACAAGGCTGCAGTCGGCCGCACCACCATCATCATCGCCCACCGCCTCTCCACCATCCGAAATGCC AACCTCATTGCAGTTGTCCAAAACGGCAACGTCATGGAAACCGGCTCCCACGACACCCTCATTCAAAACGACACCGGCCT CTACACCTCCCTCATCCGCCTCCAACAAACAGAAAATGCCACAACAAACCAAAATGACTTCCTCCTAAGCCGGGACAACA TCATTCACAGCACGAGCAGTCGTAGACTCTCCCTCGTGAGCCGTTCGAGCTCTTTCAGTTCATCAATGGCACGTGCTGAA GATGATGATGTTGTTGCTAACGACGAGGTTGTTAATGTTGTGGACAAGAAAGCATTGCCTGTCCCTTCGTTTCGAAGGTT GCTTGCGATGAACGTGCCAGAGTGGAAGCAAGCATGTTTGGGGTGTTTGAATGCGGTGTTGTTTGGTGCGGTGCAGCCTG TGTATGCGTTTGCATTGGGGTCGGTGGTATCGGTTTATTTTCTGGAGGACCATGATGAGATGAAGAGGAAGATTAGGATC TATGCGTTTTGCTTTTTGGGGCTGGCTGTTTTCTCCTTGATTGTGAATGTGCTTCAGCATTATAGCTTTGCGTACATGGG AGAGTACTTGACTAAGAGGATCAGGGAAAGAATGCTTTCCAAGATACTCACTTTTGAGGTTGGGTGGTTTGATGAGGATG AGAATTCCACCGGTGCTATTTGCTCTAGACTTGCCAAAGAAGCTAACGTGGTATGTTTTTTCATTTCAATGATGATTGTT TATTAGACATACAAAAACCTTGGATATCCGACAGGTATATGTATTAGTGGTGGTTTTTAACCATCGCAAATGTTTGCGGG GGTTAAAAATCGCTATTAACATATGATTATTTGATGTCGCGAGGTTTATGTCTCTATATCATTTTTTTTATTTCTTATCA TTACAAAGTTTTAATTTTGTCACTTTTGAGTTTAGTGTTCTAATTTTCCATTTGTCAATTCGGCTTGCAACCCTCAAGCT AATTCGACTCGTCAATGAGTTGGATTGGTCAAAATTCAATTCTTGCAGATTTCGGGTCAAATGAATTCGCACGGGGTTTA GCTGAGATGACTTGCAAGCCAAACTTTTTTTATTTTTTTTTTATTTTTGATAGAATGTTTCAATCATGTTATGATCTTGA AGAATAGAATTCGCTCGATACATTATTTAAATTTGTTATTTAAAAATGATTCATGTACACCATTATTTAAACTCTGCATT TTGTGGACGGCAACAAACTGCAGGTGTCAGGTGTTTGTCATATAAATGATATACATGAATCAAAACTCTTTATTATTATG GGTTATTTATTACAACCATTTCAATAAAAAAAATTCTATTAATTCTTATATTTTAGATTTTTTATTTTATTTTTCTAAAG ACTTGCTAGTGATCAACCCGCTAACCAGTTGTCGGTCTAGTCGGGTTGATCTTTTCTGCTTTGCCATAAAGTGGGCTGAA CTAGCTCAACCTACTTTCCTGGCAATTAGTGATGAGCCAACCTGATGAGTCGAGTTGGTCCGTTTTAACATCTCTTATAA TTTTTTTCATATGAATGCAGGTAAGGTCTTTGGTGGGAGATAGAATGGCTCTAGTGGTACAAACAATCTCAGCAGTGATA ATAGCATTCACCATGGGCCTGGTAATTGCATGGAGGCTCGCCATCGTCATGATCGCGGTTCAGCCCATCATCATAGCCTG CTTCTACACAAGACGCGTCCTTCTCAAAAGCATGTCCAGCAAGGCCATCAAGGCCCAAGGAGAAAGTAGCAAGATTGCCG CAGAAGCCGTCTCCAACCTCCGAACCATCACCGCTTTCTCCTCCCAAGATAGGATCCTCAAAATGCTTGAAAAAGCCCAA GAAGGCCCGAGGCGCGAGAGCATCAGGCAGTCATGGTTTGCAGGCTTTGGGCTTGCATTCTCCCAAAGCCTGACTTTTTG CACTTGGGCTTTGGATTTTTGGTATGGTGGCAAGCTCATTTCCCAAGGGTATATAAAAGCAAAAGCACTTTTTGAGACTT TTATGATCTTGGTGAGCACAGGAAGGGTGATTGCTGATGCTGGTAGCATGACCAATGACCTTGCCAAAGGTTCAGATGCT GTGGGTTCTGTTTTTGCAATCCTTGACAGGTGCACCAAGATTGAGCCTGATGAGAAAGATAGGTGCAAGCCTGAGAAAAT AACAGGGAAGATTGAACTTCATGATGTACATTTTGCATACCCAGCAAGACCTGATGTGATGATCTTCCAAGGCTTCTCAA TCAAAATTAGTCCAGGGAAGTCAACTGCATTGGTAGGGCAAAGTGGGTCTGGGAAATCAACAATCATAGGGTTGATAGAG AGATTCTATGATCCTTTCAGAGGGAGAGTGACCATTGATGGTAAAGACATTAAATCTTACAATTTAAGGGCATTAAGGAT GCACATTGCACTTGTGAGCCAAGAGCCAACACTGTTTGGTGGGACTATTAGAGAGAACATTGCATATGGATCACATTCAG CATCTGATAAGATTGATGAGAGTGAGATCATAGAGGCAGCAAAAGCAGCCAATGCTCATGATTTCATAGCAAGTTTGAAA GAGGGTTATGACACTTTGTGTGGGGATAGAGGAGTGCAACTTTCCGGGGGTCAGAAGCAGAGGGTTGCAATAGCTAGAGC TATATTGAAGAACCCTGAGGTGTTGCTTTTGGATGAAGCAACTAGTGCTCTTGATAGCCAGTCTGAGAAACTGGTGCAGG ATGCTTTGGAGAGGGTTATGGTGGGGAGGACTAGTGTGGTGGTGGCTCACAGGTTGAGCACCATTCAAAACTGTGATCTG ATTGCTGTGTTGGATAAGGGGAGGGTGGTGGAGAAAGGGTCCCATTCAAACTTGTTGGCTAAGGGACCAAGTGGAGCTTA TTACTCTTTGGTGAGTCTGCAGAGAAGACCAAGCAATTACACTGTTGCTACTGACTCTGCAGGTGAAATCAACTAACCAA ACAAAACCAAGTTGCAATATCTGTTTGAGATTACTATATGGCCTCTTTTTGAAATTTGAGGAGATAGCAACAAAGAAAAA TGATGGGGATGTTGTGGTGATATGTGAAAAAGCAAATTTTTCCATAGCATACTTATCTAAGTTGGGGGGTCCCCAAAATA GCATAATCAATTCCCATATTATATGCCTATATTGTATAATAATTGAATCTTACTTAGTCATCTCTTTTTCCTGAAGTTAA AGTCTTGGCTCTGCCCTTCAAACTAAGGGAAGCTGGGTGATTACACTTTAAGGTTATGTTCTTTTTTCCTTTTCAATTTG AGCTAATGGCTAACGTCATTAATGCTTCAATGTGCATAATAATAATCACGTATTGGTGGATGTATACCAACATGAAGTAG AATGCTTCTTAACAACTTGGTGTAAATTTTCTTTCTGCTCTAAGGTGATATGATTTCCAAATTGGTAATTTTCCATTTGA AGATGATTATAAGAGATCTTCTATATTCAACAATTAATACATCAACTGTTAAGTCTATTTAATTAGGTCTCGTTTGAAAA AACTTATTTGAGTTTATCAGTTATATACAAAACACCTATGAATTCTATTAACTATATGGTGAAATTTTTATGTTC 

CDS sequence (LotjaGi2g1v0253200.1) extracted from Lotus japonicus Gifu v1.2 CDS.

ATGGGTGGGGATCAGAATGCTGTTTCCATGGTTAGAAAGAAGAAGAAGGCGAAGAGTGGCTCTGTCATGTGCATTTTCAT GCATGCCGATGGCCTAGACTGGTTTCTCATGCTTTTGGGTTTGTTTGGAGCCATTGGAGATGGTATAGGCACCCCTCTTG TGTTGTTTATCACTAGCAAAATCATGAATAGTATTGGCGGTTCTTCCACCAGCACAAACAACACTTTCGTCCATAACATC AATGAGAATGCAGTGAATATGTGTTATTTGGCTTGTGGCTCTTTTGTTGCTTGCTTCCTTGAGGGTTATTGTTGGACAAG AACAGGTGAAAGACAAGCTGCAAGAATGAGAGCCAGATATTTGAAAGCAATTCTCAGACAAGAAGTAGCATATTTTGATT TGCATGTCACAAGCACATCAGAGGTCATCACCAGCGTCTCTAATGACAGCCTTGTGATTCAAGATGCTCTTAGTGAAAAG GTCCCAAATTTTTTGATGAATGCGTCTATGTTTATTGGGAGCTACATAGCAGCTTTTGCATTACTATGGAGATTGGCAAT TGTGGGGTTCCCTTTTATTGTTCTTCTTGTGATCCCTGGTTTGATGTATGGGAGGACCTTGATGAGTTTGGCTAGAAAGA TCAGTATAGAGTATAACCATGCCGGTACAATAGCAGAACAAGCAATATCTTCCATCAGAACCGTTTATTCCTTTGCAGGG GAAAGCAAGACCATTAATGCTTTCTCTGATGCTCTACAAGGCTCTGTGAAATTGGGGCTGAAACAAGGCCTAGCTAAAGG CTTAGCCGTAGGAAGCAATGGTCTTGTCTTTGCTATTTGGTCCTTCTTGTCCTATTATGGTAGCAGAATGGTCATGTACC ATGGTGCTAAAGGAGGGACTGTGTTTGTAGTTGGAGCCTCCATAGCCCTTGGTGGATTGTCTTTAGGTTCTGGTTTATCC AATGTGAAGTACTTCTCAGAGGCGAAAACCGCTGCAGAACGCATAATGGAAGTCATAAACAGGGTTCCCAAGATTGATTC TGACAACATGGCTGGGGAGATTCTGGAAAATGTTTCAGGGGAAGTGGAATTTGATCATGTTGAGTTTGTGTACCCTTCAA GGCCAGAGAGTGTGATTCTCAATGACATGTGTTTGAAGGTTCCAGCAGGGAAGACAGTGGCTTTGGTGGGAGGGAGTGGG TCAGGGAAATCAACAGTGATATCACTTTTGCAGAGGTTTTATGATCCTGTTGGGGGAGAGATAAGGCTTGATGGGGTGGC AATTCACAAGTTGCAGTTGAAGTGGTTAAGGTCTCAGATGGGTCTTGTGAGCCAAGAGCCTGCTCTGTTTGCAACTAGCA TTAAGGAAAATATACTGTTTGGGAGAGAGGATGCAACAGAGGAAGAGGTTGTTGAAGCTGCCAAAGCCTCCAATGCTCAT AATTTCATTTCACAGTTGCCACTTGGATATGATACTCAGGTTGGGGAGAGAGGAGTTCAAATGTCCGGTGGACAAAAACA AAGAATCGCCATCGCACGTGCGATAATAAAGAGACCAAGAATCCTCTTGCTTGATGAAGCAACAAGCGCACTGGACTCCG AGTCTGAACGAGTCGTGCAAGAAGCTCTCAACAAGGCTGCAGTCGGCCGCACCACCATCATCATCGCCCACCGCCTCTCC ACCATCCGAAATGCCAACCTCATTGCAGTTGTCCAAAACGGCAACGTCATGGAAACCGGCTCCCACGACACCCTCATTCA AAACGACACCGGCCTCTACACCTCCCTCATCCGCCTCCAACAAACAGAAAATGCCACAACAAACCAAAATGACTTCCTCC TAAGCCGGGACAACATCATTCACAGCACGAGCAGTCGTAGACTCTCCCTCGTGAGCCGTTCGAGCTCTTTCAGTTCATCA ATGGCACGTGCTGAAGATGATGATGTTGTTGCTAACGACGAGGTTGTTAATGTTGTGGACAAGAAAGCATTGCCTGTCCC TTCGTTTCGAAGGTTGCTTGCGATGAACGTGCCAGAGTGGAAGCAAGCATGTTTGGGGTGTTTGAATGCGGTGTTGTTTG GTGCGGTGCAGCCTGTGTATGCGTTTGCATTGGGGTCGGTGGTATCGGTTTATTTTCTGGAGGACCATGATGAGATGAAG AGGAAGATTAGGATCTATGCGTTTTGCTTTTTGGGGCTGGCTGTTTTCTCCTTGATTGTGAATGTGCTTCAGCATTATAG CTTTGCGTACATGGGAGAGTACTTGACTAAGAGGATCAGGGAAAGAATGCTTTCCAAGATACTCACTTTTGAGGTTGGGT GGTTTGATGAGGATGAGAATTCCACCGGTGCTATTTGCTCTAGACTTGCCAAAGAAGCTAACGTGGTAAGGTCTTTGGTG GGAGATAGAATGGCTCTAGTGGTACAAACAATCTCAGCAGTGATAATAGCATTCACCATGGGCCTGGTAATTGCATGGAG GCTCGCCATCGTCATGATCGCGGTTCAGCCCATCATCATAGCCTGCTTCTACACAAGACGCGTCCTTCTCAAAAGCATGT CCAGCAAGGCCATCAAGGCCCAAGGAGAAAGTAGCAAGATTGCCGCAGAAGCCGTCTCCAACCTCCGAACCATCACCGCT TTCTCCTCCCAAGATAGGATCCTCAAAATGCTTGAAAAAGCCCAAGAAGGCCCGAGGCGCGAGAGCATCAGGCAGTCATG GTTTGCAGGCTTTGGGCTTGCATTCTCCCAAAGCCTGACTTTTTGCACTTGGGCTTTGGATTTTTGGTATGGTGGCAAGC TCATTTCCCAAGGGTATATAAAAGCAAAAGCACTTTTTGAGACTTTTATGATCTTGGTGAGCACAGGAAGGGTGATTGCT GATGCTGGTAGCATGACCAATGACCTTGCCAAAGGTTCAGATGCTGTGGGTTCTGTTTTTGCAATCCTTGACAGGTGCAC CAAGATTGAGCCTGATGAGAAAGATAGGTGCAAGCCTGAGAAAATAACAGGGAAGATTGAACTTCATGATGTACATTTTG CATACCCAGCAAGACCTGATGTGATGATCTTCCAAGGCTTCTCAATCAAAATTAGTCCAGGGAAGTCAACTGCATTGGTA GGGCAAAGTGGGTCTGGGAAATCAACAATCATAGGGTTGATAGAGAGATTCTATGATCCTTTCAGAGGGAGAGTGACCAT TGATGGTAAAGACATTAAATCTTACAATTTAAGGGCATTAAGGATGCACATTGCACTTGTGAGCCAAGAGCCAACACTGT TTGGTGGGACTATTAGAGAGAACATTGCATATGGATCACATTCAGCATCTGATAAGATTGATGAGAGTGAGATCATAGAG GCAGCAAAAGCAGCCAATGCTCATGATTTCATAGCAAGTTTGAAAGAGGGTTATGACACTTTGTGTGGGGATAGAGGAGT GCAACTTTCCGGGGGTCAGAAGCAGAGGGTTGCAATAGCTAGAGCTATATTGAAGAACCCTGAGGTGTTGCTTTTGGATG AAGCAACTAGTGCTCTTGATAGCCAGTCTGAGAAACTGGTGCAGGATGCTTTGGAGAGGGTTATGGTGGGGAGGACTAGT GTGGTGGTGGCTCACAGGTTGAGCACCATTCAAAACTGTGATCTGATTGCTGTGTTGGATAAGGGGAGGGTGGTGGAGAA AGGGTCCCATTCAAACTTGTTGGCTAAGGGACCAAGTGGAGCTTATTACTCTTTGGTGAGTCTGCAGAGAAGACCAAGCA ATTACACTGTTGCTACTGACTCTGCAGGTGAAATCAACTAA 

Protein sequence (LotjaGi2g1v0253200.1) extracted from Lotus japonicus Gifu v1.2 Proteins.

MGGDQNAVSMVRKKKKAKSGSVMCIFMHADGLDWFLMLLGLFGAIGDGIGTPLVLFITSKIMNSIGGSSTSTNNTFVHNI NENAVNMCYLACGSFVACFLEGYCWTRTGERQAARMRARYLKAILRQEVAYFDLHVTSTSEVITSVSNDSLVIQDALSEK VPNFLMNASMFIGSYIAAFALLWRLAIVGFPFIVLLVIPGLMYGRTLMSLARKISIEYNHAGTIAEQAISSIRTVYSFAG ESKTINAFSDALQGSVKLGLKQGLAKGLAVGSNGLVFAIWSFLSYYGSRMVMYHGAKGGTVFVVGASIALGGLSLGSGLS NVKYFSEAKTAAERIMEVINRVPKIDSDNMAGEILENVSGEVEFDHVEFVYPSRPESVILNDMCLKVPAGKTVALVGGSG SGKSTVISLLQRFYDPVGGEIRLDGVAIHKLQLKWLRSQMGLVSQEPALFATSIKENILFGREDATEEEVVEAAKASNAH NFISQLPLGYDTQVGERGVQMSGGQKQRIAIARAIIKRPRILLLDEATSALDSESERVVQEALNKAAVGRTTIIIAHRLS TIRNANLIAVVQNGNVMETGSHDTLIQNDTGLYTSLIRLQQTENATTNQNDFLLSRDNIIHSTSSRRLSLVSRSSSFSSS MARAEDDDVVANDEVVNVVDKKALPVPSFRRLLAMNVPEWKQACLGCLNAVLFGAVQPVYAFALGSVVSVYFLEDHDEMK RKIRIYAFCFLGLAVFSLIVNVLQHYSFAYMGEYLTKRIRERMLSKILTFEVGWFDEDENSTGAICSRLAKEANVVRSLV GDRMALVVQTISAVIIAFTMGLVIAWRLAIVMIAVQPIIIACFYTRRVLLKSMSSKAIKAQGESSKIAAEAVSNLRTITA FSSQDRILKMLEKAQEGPRRESIRQSWFAGFGLAFSQSLTFCTWALDFWYGGKLISQGYIKAKALFETFMILVSTGRVIA DAGSMTNDLAKGSDAVGSVFAILDRCTKIEPDEKDRCKPEKITGKIELHDVHFAYPARPDVMIFQGFSIKISPGKSTALV GQSGSGKSTIIGLIERFYDPFRGRVTIDGKDIKSYNLRALRMHIALVSQEPTLFGGTIRENIAYGSHSASDKIDESEIIE AAKAANAHDFIASLKEGYDTLCGDRGVQLSGGQKQRVAIARAILKNPEVLLLDEATSALDSQSEKLVQDALERVMVGRTS VVVAHRLSTIQNCDLIAVLDKGRVVEKGSHSNLLAKGPSGAYYSLVSLQRRPSNYTVATDSAGEIN 

Domain prediction

Data for domain prediction are obtained with InterProScan, and merged with InterPro data obtained from the EB-eye REST service.

Merging data from EBeye. Please wait…

Domains

Sorting

Prediction algorithm Identifier Start End Length E-value InterPro ID
Phobius 1 33 33 -
PANTHER 19 1253 1235 0.0
PANTHER 19 1253 1235 0.0
SUPERFAMILY 33 346 314 2.09E-48
Phobius 34 57 24 -
TMHMM 35 57 23 -
Pfam 37 304 268 7.7E-46
CDD 37 335 299 2.3137E-87
ProSiteProfiles 38 327 290 40.815
Phobius 58 174 117 -
Phobius 175 198 24 -
TMHMM 180 202 23 -
Phobius 199 267 69 -
TMHMM 267 286 20 -
Phobius 268 287 20 -
Phobius 288 298 11 -
TMHMM 298 320 23 -
Phobius 299 319 21 -
Phobius 320 690 371 -
SUPERFAMILY 355 600 246 1.25E-87
ProSiteProfiles 362 598 237 23.943
CDD 362 600 239 1.81842E-140
Pfam 380 529 150 1.7E-33
SMART 389 581 193 8.1E-17
ProSitePatterns 501 515 15 -
SUPERFAMILY 665 990 326 2.49E-59
CDD 673 989 317 1.08481E-115
Pfam 685 953 269 2.3E-51
ProSiteProfiles 690 971 282 41.675
Phobius 691 713 23 -
TMHMM 691 713 23 -
Phobius 714 724 11 -
Phobius 725 746 22 -
TMHMM 726 748 23 -
Phobius 747 810 64 -
TMHMM 804 826 23 -
Phobius 811 844 34 -
TMHMM 828 850 23 -
Phobius 845 906 62 -
Phobius 907 930 24 -
Gene3D 921 998 78 8.8E-149
Phobius 931 1266 336 -
SUPERFAMILY 996 1249 254 3.59E-87
Gene3D 999 1251 253 8.8E-149
ProSiteProfiles 1006 1246 241 25.137
CDD 1006 1249 244 1.91661E-140
Pfam 1025 1177 153 2.4E-34
SMART 1033 1229 197 1.2E-14
ProSitePatterns 1149 1163 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 LotjaGi2g1v0253200.1, powered by ExpAt. For advanced configuration, data transformation and export options, view expression data in the ExpAt application.

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