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LotjaGi2g1v0024000.8

Overview

Field Value
Gene ID LotjaGi2g1v0024000
Transcript ID LotjaGi2g1v0024000.8
Related isoforms 7
Lotus japonicus genome version Gifu v1.2
Description Myosin-related family protein; TAIR: AT3G19960.1 myosin 1; Swiss-Prot: sp|Q9LHE9|MYO1_ARATH Myosin-1; TrEMBL-Plants: tr|A0A0S3T0K8|A0A0S3T0K8_PHAAN Uncharacterized protein; Found in the gene: LotjaGi2g1v0024000
Working Lj name n.a.

Sequence information

Genomic sequence (LjG1.1_chr2:8270286..8280757) extracted from Lotus japonicus Gifu genome v1.2.

CAGGAAGCTCTTGATGTTGTCCACATCAGTAAAGAAGACCAAGAGGCTGTATTTGCGATGCTTGCTGCAGTACTATGGTT AGGAAATGTATCATTTACCGTGATTGATAATGAAAACCATGTTCAAGCTGTAGAAAATGAGGGTAAGAAGTTTCCAGAAC CTCTATTAAATGCATCTACATTAAATTCTAGCATTTTTAAAATATGATAGGTTGCTGATTACAACAGAGACACGTGTTTT AGCATTGAAAACTCTGGTTCCTATGTTGCAATGTACTACATGCAAATTTATGTCTAATATGTTATGATGTGATTCAACTT ATTCAGATACACATACCCATAATGGTGATGTTTTAATTGTAATTTATTTGAACTTATTCAAGTAAGCGTACCCATAATTT GTTGTAACTATGACTTGTTTTATTTTCATCTGATAACTGTTATTAATTTATATATTATGGTGGAAAAAGGCTTTTGTTCA TGTTGTAACTGTGATTTACATGTTATATTTATTACCTAATTTGTTAGGTGCCTTGATGTTTTTCAAGTTATTCAATACCT CACTTCAAAATGAATTCTTTCCTGACTTTTTGAAGGTCTGTTCCATGTTGCCAAATTGATCGGCTGTGACATTGAAGATC TCAAGTTGGCTCTGTCAACACGCAAAATGAAAGTTCGTAATGAAAATATTGTCCAGAAGTTGACACTGTCACAGGTAAAA TGACTAGTGTTAGAAGTTTACATTCATCTAAAATTATGGGTGAAAAGTTTGCGACTTCGTATTTCTAGGAGGGAAGATCC TGGAGACATGAATGTGTTTTACATTCTTCAACGGTTATATTTCATTTTGTTAAATTTGTTATTTGAACGAAAAGGAAATA AAAAGAAGTTTGGTGGTGATAAAAAGTGTCTTTTATGTTTTAATTTCCTCCTTAGAAGTTCCACACAACATTTAGTTGTG AATGCTCATGGGCTGGGCTCATCAGTCTTGTGATGACGAAGCCCGTCCCCATTGGATATATATAAAAAACATGTTAGAAT AGCTGGTTAGATTAGTTCATGCTCAGTTATACAATTCTGTTATGTTATGTTGGACAGTTATAGGGTGTGTGCTTCTAGCT GAACCTTCCCAAGTCTATCAATATCAATCATGTAAACAAGAAGTTTCTTCCCACTTCAGATCCAATTAAACTAATTCTCT CTTTCTCTCATACTGCCACACTCTTCTAACATAATCTTATCTTAGATTATCTCTTAGGATTAGTTTTCATATTTCTTTGT ATCTCCTGATTTGTTTTCTTATTTAAACAGGCCCAGGATTTTCCTTATCATGATTAGTTTCTATACTTGATTAGGATTAG GAGTCTAGTATTAGTATAAATAAGGTTTTGTGATTTATCCTTTTGTATCATATCAACAATTAAACTGTGAGTCCTTATTC TTTTTCCTCTCTTATTCCTTATCTAAAACTCTAAAACTTCAACATGAAGCAAGGCACTTTATTTGGAAATGACTAAGTAA AAATATGCTAGCAACTTCACTGAGGCATTCAATAGTACGGTTGGGTATCTTTGTAACAAGTTGGGCATAATTAACATCTA TGCTTTAACTTGAAGTGAACTGTATAGAAGTAAGTATTATGCATGTGATCAATGTGCAAAGAATGCTTATGTTCTTTGTA GTGTATGCCTGCATTATACTACATTGGACTCCTGACACAATCCACTTAATACCGAAGGCTGCATTCACATCGGGTACCAT TTCCGAAAATACCTATTTCCTTAACAATAATAATTTCTTTGGGGTTGGAGGAAGGGGTGAGCATACTCTATGTCAAAATC ACAACAATTATGCTCAATGTACAGAGAAGTTGGACCTCTAACGATTTGTAAGATGGCATGCAATTGATGTTGGTTTTTAT CTTATCTAGCTTAAATTTTACATTGTGTCTTGTAGGCAGTTGATGCAAGAGATGCTTTGGCAAAGTCAATATATGCATGC CTGTTTGATTGGTTGGTTGAACAAATAAACAAATCACTTGCTGTTGGCAAAAGACGTACTGGCAGATCAATCAGTATTCT AGATATATATGGCTTTGAATCATTCAATGTATGTCCATATTAAAACTTAACTGCATCTTTATATTTGTCTCACCTTTGTT ATTCTGTTTGAATTTTTAAATATTTTGATCTGTTGATGCTACACATGTATGCAGAGGAATAGTTTTGAGCAGTTCTGCAT AAATTATGCAAATGAAAGATTGCAGCAACACTTCAATCGTCATTTATTTAAGTTAGAACAGGAGGTATTCACCGCACAGA AACTGAAGGCTTACACAAGTCTTTGAATAACTTCATATCTTAAAAGAAAATATTGAATACCCTCTGAAAGCTAAAAATTT GTGTACAATTGTCAAAATTTTCAGGAATATATACAAGATGGCATTGATTGGGCTAAAGTTGAATTTGAAGACAACCAAGA CTGCCTCAATCTTTTTGAGAAGGTACAGAATTGCTTTGATCCCTGACCCCTTTTCTGGACAATCTTTAGTGTACTTGTTA ATTGAATTGTTGCAATTGTTAACTAATCTGTTAATTTTTAGTTGGCAATGTAGTGCTTATATATTTAATGTGATTTTCAT CATCATGTCATGTCTTGTATCTTTATGTGCAGTGCAAAAGATATCCAACTTTGATGCTTGATTGTATATTCTGATATGTG TGTGTGTGTGTACTTTTGTATATTGGTTGTTGTCAGTATATTAATTTTGATGCTTGATTGTATATTCTGATATATCAAAT TATTAAACTTTTGGTCGGCATTGTTGAGAAGTCCCACATTGACTAGAGATATGGCCAAGATAGCCCTTATATATGCGGAG ACAGTCCTCGACTCTTGAGCTAGCTTTTGAGTTGAGTTTGGTCTCCCAAATTCTAATAACATTTGTGAGAAATGAAATGT AGCTTTATTTTCTGCAAATGTCAGTGCCTAGCAGAAGGTCTTGTTTAAATAAAGAGCTGCTCAGCTGTCTTACTATTATA TACTGTCCTTTTTTTCTGAATTTTTTACGAAAGCATTTCATTGAGACAAGAAGAAAAGTATGAAGGGAGAGGGGGATAAG CAGTCCTCTATAATAAAAAAAACAAAAGAAAAATTTCAATGGGATACAAAAGACACCACTGTAGCAAAGCTACCCAAACC TTCAACATTTCTGTTAAATGAATCCGTTGGAAAAGTCAATTTGTTTTACACCATGTGTCTAATAACTTTTTGTAGCATGT AGTTGGCATAAATTCTATTAAGAACAACTGTGAGCCGAAAAACCTTAGGTGGAGACTGGGAAGTGTGCACATCTATGGGG ACCTAGTTCTGTCGATGCAATTTTTCTTGATTGAAATTCTTGAAATATTTACCATGTTGATCTGGTTATGAATTTAAATT CTGTATTACAGTATTACACTAATACTATCGGATAGTTTGTGAAGCTTTGACATCAATGACTTTTCCTTTTTTCCTGACAT TAGGTACTGGTCAATTGGTAAACCATGATGTAATTTGTGTGACAACTGCACTTCTATTCCTTCCTGTGGAAATTTTGACA TTCATGATTAGAAATTAGATTCTTGTGCGCTAAACTTGACTTCTCATATATTTGCAGAGGCCATTAGGGTTATTATCTCT GTTAGATGAAGAGTGCACTTTTCCAAATGGCACGGATTTGACATTTTCTAACAAGCTTAAACAGCATTTGTGTTCTAATT CGTGTTTCAAAGGAGAAAGAGACCAAGCCTTTACTGTTTGTCATTATGCTGGGGAGGTATGAATCTGATCATGTCCATAT AACTTCTGGTTCTACTGTCCAAATTGATTGTTATTTGCCATAAGATTTGAAGTCTATTGATATGATTTACATTACAGTGG CATTCAATTTGACCTAATGTTGTGACCTTTATAATTAATGCAACTGGGTTATTTTGGAATGTGTAACTATGTAAGTAGTA AAATCATAGTTTTAAAACTCGGCTCGGACCGGCCGGTCCGACCGGTTGGACCGGGACTCGGTCACCTGACCGGTCCGAGC CTCTTAACAGATCGGTTAAGCAATCGGCTCGCTGTGAACCGGCTTGACTCGGCCGGTTCGCCGATTGAACCGGTGACTCG GTCAATTTTCGGTCAGACCGGCCAGCTTTTTATTTTTTTTTTAAATTAGTTGTTAATGGGTCAGCACGTGAGGCCCAATA TTTTTTTTTTTGAAATAAGGCCCAATAATTAGACTGGCTAAATTCTGTTAGCACGTGGGCCTTTCATTATTTTTTTTAAA TTCTGTTAACAACAGTTTTTTGTTACAGTGGGCCTTTTTTTTAAAATTATTCTAACATCAGTTTTGTTTTTGTTGTTGAT AAAAGTAGAAAAAACGTGAAATATGTTTAAATTGTGTTGCAAGGAGGATTCGAGCACAGGACCAGAAGGGAAAAAAGAGA AACCTTTACCACTAGACCATGATATTGTTTGATTATATCACGCGTTTTTTAAAATTTATACCTTAACTTCAAATTGCAAT GGATATTTTTTAGAATATTTGAATATAGACCGAGTCAAGCAGTCCACCCGTTGACCCAGTGGTCCGACCAGTGACTCATT GACTCAGTACCTCGACCGAGTCGACCACCGAGCCGAGTCTTAAAACACTGAGTAAAATACTATTCCACCAGACTTGAATC AACATATTAGCTAACCATAGTTTTGATTGAAATTTCCTACTCAATATTTTTGAACTCCCTAACACTATCTTTTTTCGTGA AGCAGTGGGTTACTTATTAATTTAAATTTGTTTATCCTGCCTGACTGTTTGATAGCTTTACTTTTTCCTCCCCTCAGGTC ACCTATGATACAGCTGGATTTCTGGAGAAAAACAGGGACCTATTGCACTTGGATTCCATCCAACTTCTATCCTCATGTAC ATGTCGTCTTCCTCAAACATTTGCATCCCATATGCTTACTCAGTCTGATAAGCCAGTAGTTGGCCCCTTACACAAGTCAG GTGGGGCAGATTCTCAAAAGCTAAGTGTTGCAACAAAATTCAAGGTACGTTGCTTAATCATAAAGTAATCCTAAACTTTA ACTATGATGAAATGGTCTAACCCTTTAGCAAACTAATATCTTAATTCTCACAGCTTTTCTTTTCATCTTAATCAAACCAT GCGTAGTATTGTACTTGCTGCTGGAAAATAAGTTCTCATCTAAATATCAATGAGTGTACTTGTGATATGGCCTATCAACC AAGATGCTCCAAAGTACTTCTTTTAATTGTTACAACTAAATAGTTTGTGTCTCATTTTTTACTGAATGAATAGTGCTTGT AACTTGGTTTAGGTGATCATAAGTAGGATAAGGTACAGATAAATATTGTAATTTTGTAGGAGTGAAAATGTAGGTACTTG TTTGGGATAGAGTAAAACTTCCAATGTATCAAGCTGTGTGCATATGAAAGTTAGATAAATTATCAACTTTACCCTCTAAT ATAAGCAACAATGTACAACAATTATCAACAAGGATTTACAGACAGTTATTATAGTCATTACAACAATGTAAAACACCTAA GCAACCCATAATACTATACTCTCATTAGTTCTAACGCTCTCGCTCAAACTGAAGCATATAATTCACATGCACCAAGTTTT TTATATATGTAATTAATTTGAGAACCTCTAAATGACTTGGGAAGACATCCGCCAGCTGGTCATCGGAATTGACAATGCTA GTCGTGATATGTCACCATATATGGTCTTCTTCTTGATGAAATGGAAATCTATCTCAATGTATTTGGTTCTCTAAGGGAAC ACAGGATTTGATGAATTATGTAAGGCAACCTGATTATCAAATATTAGTGTCATTTTTGTAACTTCCCCAAACCTCAGTTC TTTAAGCAACTATTTGAGCCAAATAAGTTCACAAGTGGTTGAAGCGATGGTTTGATATTCTAGTCTTGCAACAACATTTT ATTTCTGCTTTGCTTGGAAATCAAATTATTACTAATAAAAACACAATATCCAGAAGTGGATCTCCCTGTCAGTAGGAGTC TAGGAGAGTCTACCCAGCCTACATCTAAATATGCTACAACTTGAATATGACCTGTTGTCATACTGGACGCCATTTTCTTG AGCTCCTTTAATATATTTTAGGACGCAGATAACTGTGTCCTAATGACCTTCACAAGGCTAATTAAGAAACTGACTTATCA TAGTTATGGCAGAGATATCTGGATGAGTAATAGTGAGACAATTTAGTTTCCCAACCAATCTTCTATACCTATCTGATTCT AAATTTGGCTCTCCCTGATTTCGCAAAAGTTTGGCATTGGGATCCAAAGGAGTATCAATAGACTTGGCGTTCATCATCTG TATTTCCTCTACAATGTCCATTGTATACTTCCTCTAAGAAATCACAATACCATTGACCTCTATCCCCAAGTAGTCTGTCA AGATCTTTTGTCTTAAAATGATGGCTAAGATGTTGTTTTACTTATGTGATGCAATGGTGATCACTACCTATAAGGACAGT GGTCTCATTATACGCAACCGAGTAATGCACCCTGCAGCTAAATAGCGATTGAAAACTAAGTGGGTAGGCTCACTCTCAGA CAACCCAAACTTTTGAACCAAATGGTGCTAAATCTACAAAACCATGCACTAGAAGATTGAGACCATGTAAAGTTTTTCAA AGACATACTAATGCTAAAGACCCCCCCTGAGGAACTATTCCAGGAGGTTACTCCGTATAAACTTTCGTGAAATCACCATG AAGGAAAGCATTCTTGATATCAAATTGACATAGCATCTACTGACAAAAGTAATATTACAAAGGCCATTTTCTCCATAAGA AAAAAGTCACTATAATCCAAGCAAAAAACTTATGTATATCATTTGGCCACTAGACAAGCCTTAAGCCTATCAACCTTAAC ATCAGGACCAACATTCACTTCTTCAGTCCACTGACAACCTACAACAAACTTCATTGGATGAAGAGGAACAAGATCACAAG TACTATAGCTTCTAGTGCACACATCTTATCGATCATAGCTTAACTCCAACCGTGATGGGCTTAGGCATCATCACTTGAAG TATTAGGAATAGACCCGAAGGATGTGATGGCTGATCAATGTTGGACTACAAGGGATTGGCCAATATGGTGGAGACAATGC CAGTGGTGAGGCCAACGGTTGGAAAAGACAATTGACAATCGTGGCAGGCGGTGGCAGGAAAAGGTGGTGGTCTTCTGGAA AGAGGTTTGAACCTATCAGAATGAGGACACGGAAGTGAAAATGGAGGGAAACTGAAAATACCACATGATTTCCGGAAATT GTTTTAGGAAATGGATCCAATGGGTAATCACAGAATAGGGGTTGCCGCTTATCAGGTTTGGATGCCATGATGGGACAAAA AGAAAATGTGAAGGCATTGAGTGAATCCATGTGTTTCAGTTACATAACGGTTTTGATAGTGATGGTAATTACAATAATAT TCAACACCTAATGTGTTGTATATTATTAACATTATGGTATTTATATAATATTATTATCGTATAAAATACAAGATTGACTG TTATGGCATTTACCATTACATTTTTTTAAGAGGGATATTTATCCTGCTTTAGTAGAAATTAATAATTATTTCATATGTTG GAATTCAGGGCCAATTGTTCCAACTGATGCAACGTTTAGAGAGCACTACTCCTCATTTTATTCGCTGCATTAAGCCCAAT AATCTTCAATCACCTGAATCATATCAGCAAGCACTTGTACTGCAACAACTGAGATGCTGTGGGGTCCTGGAAGTGGTTCG AATATCTAGATCAGGCTTTCCAACAAGAATGTCTCACCAAAAGTTTGCCAGAAGGTATATATCAAATTAAACTGATGATT CATATTCTTTAAATTACTTCCACCACCTGCACCCTCTCCGGCCTTGTGTTTTTGCATGTGTCTGACCTTTTTCTATTGGC TTGCATATAATGAATCAGATATGGTTTTCTTCTCCTCGATAATGTTGCATCTCAGGATCCACTTAGTGTTTCAGTTGCAA TTCTTCATCAGTTTAATATTTTGCCCGAGATGTATCAAGTCGGCTACACAAAGTTATTTTTTCGAACAGGGCAGGTAATG TATATTTGAATTTAATATAAAGTATTTGTTTAGATCCACTGTTGCACCTGCTATGGCCAGGCCCAGGTCTGGCAAAGTCT ACAATAGGAAGCCCAAGTTCACTGGCATTCTGTCAAGTGACAAGGCCTTCTAGAATGTTAGGATTCCTAAATAACCACCT GATGAGGTGTTATTATTAGTAATGATGAGTAGTACAGCTAAGGGGGGGGACCACTAGGGAGTGAGAGGAATATATGTTAG TTATGGTGAGAGAATGAGGGAGGCTTGTTTTTGGCTTAGGCTTGGGAGAGAAGAGCACTCTCGAATTGCTCTGGTTATTT TTCCTTTGTTCTTGTATTCCCTAAACACTATTTCTGGGTTTCATACCAGAAAATTCAGTGCTATATATACAAATTCAGTT CTAATTCCTTCATAATTTCTGGTACCTAACATCCACCAACGTTTTTTATTATCTGCTATGCACTTTTTAGCCATTATGTT GTGTATTTTACTAAGTACGGTTTAGGTAAGAAGTATCAACTGGTGTAATGACGAAACCTTTCAAAAATAATAATGAAGAA TGATAACATTGATATTATTTATGTTAAGAATATAGTTTACGAATTAGGTTTTACTGTTAAACTAAGAACTTTTCAGCTTT GGTGATTTGGGACTTTAATGAATTAGAACTTCTGGCTTATAGCTCTATTTATATCCAGTATTGAGTTCCATTCTGAAAGG TCTACGAATATTTTTTTAAAATATAATCTCAATTTATGCTGCTTTGATCACATTGCAGATTGGTGTGCTTGAAGATACTA GAAACCGTACCCTTCATGGTATTTTACGAGTCCAAAGTTGCTTCAGGGGTTACAAAGCTCGATGTTCTCTCAAAGAGTTC CAGGGAGGAATCACTACTCTGCAGTCATGTATTCCTTTTTCTCTGCCTCATTCTTTTCAAGTCATTGATATTGTCTGAAG AAAAGTATAATATAATGGAAAAATATTACCTATTCATGCAGTTATTAGGGGAGCAAAAACCAGAAAAGTATATGCAGCTT TACTTCAGAGACATAGAGCTGCTATTACAATACAAAAGCAGATAAAAGTAGTATTTACAAGAAACAGAACGAGGACAATT CGTGGTGCTGCAACTGTCATACAGTCTGGTATTTACGGTCATTTTTTGTTGTTTGGATGTTTGACTTAGAAATAATAAAG ACTGCACACCTTTTTTTTTAAAACAATATGAACAGCTAAACAGAAGACATCAAACTTCTACTTAAAGTGTGCAAATCAAT GATGGATTAGCATAGGTGTTGCACGGGCTGTTTTTCATTTCAAATTCCCAAATTTTATTCAAGATTTATTCTAAAAAAAC ATGCTGTATTTTATTGGAATGAAGACAGCTGTCTTTTCAGTGATAATGTTGATAAATTTTTCTCAATTTTCTTCAACCAA TTTTTTGCAGTTATTCGTGGATGGTTGGTCAGGAGGTGCTCAGCAAATATTGCATTTTTGAACTCTGGAGACATGAAGGT ATTCTCTTTCCCTATGTTCAGAAACTATATAATATCTGACCTTTCAATTATTTTATGCAATAGGAATTTTCTTATATTCT GCTCGTTAAAGTTTCATCGTCGTGATACTTACTGGCATAGACTTCAATACAGATAAAAGATTCAGATGAGGTTCTTGTCA AGGCATCTTTCCTAGCTGAATTACAGCGTCGGGTACTGAAGGCCGAAGCTGCCCTGAGAGAAAAGGAAGAGGAAAATGAC ATTCTTCACCAACGTCTGCAACAATATGATAGCAGATGGTCCGAGTATGAATTGAAGATGAAATCCATGGAAGAGGTGTG GCAGAAACAAATGAGATCCCTACAATCCAGCCTTTCCATTGCAAAGAAGAGCCTTGCTATTGATGACTCTGAAAGAAGTT CAGATGCATCTGTTAATGCAAGTGACGAGCGCGATCACAGCTGGGATGTGGGAAGCAATCACAGGCGCCAAGAAAGCAAT GGGACGAGATCAACGAGTGCGGGTTTGAGTGTTATAAGTCGGATGGCTGAAGAATTCGAGCAGAGGAGTCAAGTATTTGG TGATGATGCCAAGTTCTTGGTTGAGGTGAAATCGGGTCAAGTGGAAGCAAGTTTGAACCCAGATCAAGAGCTTAGAAGGC TAAAACAGATGTTTGAAGCTTGGAAAAAGGATTATGGGGCAAGACTGCGTGAGACAAAAGTGATTTTAAATAAACTTGGA AGTGAAGATAGTGCACTTGACAAAGTGAAGAAGAGTTGGTGGGGAAGGCGAAACAGTACTAGGATAAATTGA 

CDS sequence (LotjaGi2g1v0024000.8) extracted from Lotus japonicus Gifu v1.2 CDS.

ATGCTTGCTGCAGTACTATGGTTAGGAAATGTATCATTTACCGTGATTGATAATGAAAACCATGTTCAAGCTGTAGAAAA TGAGGGTCTGTTCCATGTTGCCAAATTGATCGGCTGTGACATTGAAGATCTCAAGTTGGCTCTGTCAACACGCAAAATGA AAGTTCGTAATGAAAATATTGTCCAGAAGTTGACACTGTCACAGGCAGTTGATGCAAGAGATGCTTTGGCAAAGTCAATA TATGCATGCCTGTTTGATTGGTTGGTTGAACAAATAAACAAATCACTTGCTGTTGGCAAAAGACGTACTGGCAGATCAAT CAGTATTCTAGATATATATGGCTTTGAATCATTCAATAGGAATAGTTTTGAGCAGTTCTGCATAAATTATGCAAATGAAA GATTGCAGCAACACTTCAATCGTCATTTATTTAAGTTAGAACAGGAGGAATATATACAAGATGGCATTGATTGGGCTAAA GTTGAATTTGAAGACAACCAAGACTGCCTCAATCTTTTTGAGAAGAGGCCATTAGGGTTATTATCTCTGTTAGATGAAGA GTGCACTTTTCCAAATGGCACGGATTTGACATTTTCTAACAAGCTTAAACAGCATTTGTGTTCTAATTCGTGTTTCAAAG GAGAAAGAGACCAAGCCTTTACTGTTTGTCATTATGCTGGGGAGGTCACCTATGATACAGCTGGATTTCTGGAGAAAAAC AGGGACCTATTGCACTTGGATTCCATCCAACTTCTATCCTCATGTACATGTCGTCTTCCTCAAACATTTGCATCCCATAT GCTTACTCAGTCTGATAAGCCAGTAGTTGGCCCCTTACACAAGTCAGGTGGGGCAGATTCTCAAAAGCTAAGTGTTGCAA CAAAATTCAAGGGCCAATTGTTCCAACTGATGCAACGTTTAGAGAGCACTACTCCTCATTTTATTCGCTGCATTAAGCCC AATAATCTTCAATCACCTGAATCATATCAGCAAGCACTTGTACTGCAACAACTGAGATGCTGTGGGGTCCTGGAAGTGGT TCGAATATCTAGATCAGGCTTTCCAACAAGAATGTCTCACCAAAAGTTTGCCAGAAGATATGGTTTTCTTCTCCTCGATA ATGTTGCATCTCAGGATCCACTTAGTGTTTCAGTTGCAATTCTTCATCAGTTTAATATTTTGCCCGAGATGTATCAAGTC GGCTACACAAAGTTATTTTTTCGAACAGGGCAGATTGGTGTGCTTGAAGATACTAGAAACCGTACCCTTCATGGTATTTT ACGAGTCCAAAGTTGCTTCAGGGGTTACAAAGCTCGATGTTCTCTCAAAGAGTTCCAGGGAGGAATCACTACTCTGCAGT CATTTATTAGGGGAGCAAAAACCAGAAAAGTATATGCAGCTTTACTTCAGAGACATAGAGCTGCTATTACAATACAAAAG CAGATAAAAGTAGTATTTACAAGAAACAGAACGAGGACAATTCGTGGTGCTGCAACTGTCATACAGTCTGTTATTCGTGG ATGGTTGGTCAGGAGGTGCTCAGCAAATATTGCATTTTTGAACTCTGGAGACATGAAGATAAAAGATTCAGATGAGGTTC TTGTCAAGGCATCTTTCCTAGCTGAATTACAGCGTCGGGTACTGAAGGCCGAAGCTGCCCTGAGAGAAAAGGAAGAGGAA AATGACATTCTTCACCAACGTCTGCAACAATATGATAGCAGATGGTCCGAGTATGAATTGAAGATGAAATCCATGGAAGA GGTGTGGCAGAAACAAATGAGATCCCTACAATCCAGCCTTTCCATTGCAAAGAAGAGCCTTGCTATTGATGACTCTGAAA GAAGTTCAGATGCATCTGTTAATGCAAGTGACGAGCGCGATCACAGCTGGGATGTGGGAAGCAATCACAGGCGCCAAGAA AGCAATGGGACGAGATCAACGAGTGCGGGTTTGAGTGTTATAAGTCGGATGGCTGAAGAATTCGAGCAGAGGAGTCAAGT ATTTGGTGATGATGCCAAGTTCTTGGTTGAGGTGAAATCGGGTCAAGTGGAAGCAAGTTTGAACCCAGATCAAGAGCTTA GAAGGCTAAAACAGATGTTTGAAGCTTGGAAAAAGGATTATGGGGCAAGACTGCGTGAGACAAAAGTGATTTTAAATAAA CTTGGAAGTGAAGATAGTGCACTTGACAAAGTGAAGAAGAGTTGGTGGGGAAGGCGAAACAGTACTAGGATAAATTGA 

Protein sequence (LotjaGi2g1v0024000.8) extracted from Lotus japonicus Gifu v1.2 Proteins.

MLAAVLWLGNVSFTVIDNENHVQAVENEGLFHVAKLIGCDIEDLKLALSTRKMKVRNENIVQKLTLSQAVDARDALAKSI YACLFDWLVEQINKSLAVGKRRTGRSISILDIYGFESFNRNSFEQFCINYANERLQQHFNRHLFKLEQEEYIQDGIDWAK VEFEDNQDCLNLFEKRPLGLLSLLDEECTFPNGTDLTFSNKLKQHLCSNSCFKGERDQAFTVCHYAGEVTYDTAGFLEKN RDLLHLDSIQLLSSCTCRLPQTFASHMLTQSDKPVVGPLHKSGGADSQKLSVATKFKGQLFQLMQRLESTTPHFIRCIKP NNLQSPESYQQALVLQQLRCCGVLEVVRISRSGFPTRMSHQKFARRYGFLLLDNVASQDPLSVSVAILHQFNILPEMYQV GYTKLFFRTGQIGVLEDTRNRTLHGILRVQSCFRGYKARCSLKEFQGGITTLQSFIRGAKTRKVYAALLQRHRAAITIQK QIKVVFTRNRTRTIRGAATVIQSVIRGWLVRRCSANIAFLNSGDMKIKDSDEVLVKASFLAELQRRVLKAEAALREKEEE NDILHQRLQQYDSRWSEYELKMKSMEEVWQKQMRSLQSSLSIAKKSLAIDDSERSSDASVNASDERDHSWDVGSNHRRQE SNGTRSTSAGLSVISRMAEEFEQRSQVFGDDAKFLVEVKSGQVEASLNPDQELRRLKQMFEAWKKDYGARLRETKVILNK LGSEDSALDKVKKSWWGRRNSTRIN 

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
Gene3D 1 95 95 4.8E-120
PANTHER 1 745 745 0.0
SMART 1 421 421 1.9E-82
Phobius 1 1 1 -
ProSiteProfiles 1 420 420 161.012
PANTHER 1 745 745 0.0
Phobius 1 14 14 -
SUPERFAMILY 2 468 467 9.74E-149
Phobius 2 9 8 -
Pfam 2 408 407 1.4E-130
Phobius 10 14 5 -
Phobius 15 745 731 -
Gene3D 96 353 258 4.8E-120
PRINTS 106 134 29 1.2E-16
Gene3D 118 310 193 4.8E-120
PRINTS 159 187 29 1.2E-16
Gene3D 354 421 68 2.0E-16
SMART 421 443 23 0.029
ProSiteProfiles 424 451 28 7.584
Gene3D 424 473 50 9.6E-8
Pfam 426 443 18 0.025
SMART 444 466 23 69.0
ProSiteProfiles 446 474 29 7.529
Pfam 449 465 17 0.16
SMART 470 492 23 56.0
Gene3D 474 518 45 2.0E-7
SMART 493 515 23 4.1
ProSiteProfiles 494 523 30 7.163
Pfam 497 512 16 1.6E-4
Coils 540 574 35 -
MobiDBLite 613 649 37 -
MobiDBLite 613 635 23 -

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 Motor activity Catalysis of the generation of force resulting either in movement along a microfilament or microtubule, or in torque resulting in membrane scission, coupled to the hydrolysis of a nucleoside triphosphate.
Molecular function Protein binding Interacting selectively and non-covalently with any protein or protein complex (a complex of two or more proteins that may include other nonprotein molecules).
Molecular function ATP binding Interacting selectively and non-covalently with ATP, adenosine 5'-triphosphate, a universally important coenzyme and enzyme regulator.
Cellular component Myosin complex A protein complex, formed of one or more myosin heavy chains plus associated light chains and other proteins, that functions as a molecular motor; uses the energy of ATP hydrolysis to move actin filaments or to move vesicles or other cargo on fixed actin filaments; has magnesium-ATPase activity and binds actin. Myosin classes are distinguished based on sequence features of the motor, or head, domain, but also have distinct tail regions that are believed to bind specific cargoes.

Expression data

Expression pattern

Expression pattern of LotjaGi2g1v0024000.8, powered by ExpAt. For advanced configuration, data transformation and export options, view expression data in the ExpAt application.

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