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LotjaGi1g1v0013100.1

Overview

Field Value
Gene ID LotjaGi1g1v0013100
Transcript ID LotjaGi1g1v0013100.1
Related isoforms 1
Lotus japonicus genome version Gifu v1.2
Description Kinesin-like protein; TAIR: AT3G44730.2 kinesin-like protein 1; Swiss-Prot: sp|Q8W1Y3|KN14F_ARATH Kinesin-like protein KIN-14F; TrEMBL-Plants: tr|G7K4S6|G7K4S6_MEDTR Kinesin heavy chain, putative; Found in the gene: LotjaGi1g1v0013100
Working Lj name n.a.

Sequence information

Genomic sequence (LjG1.1_chr1:1678547..1688108) extracted from Lotus japonicus Gifu genome v1.2.

ATAAAATAAAATCTGTGTTGTCTTACACAAGACTTGCTACTGGTTCAGTGGCTGAGAACCACGCTTAAGATGACAAGGGC TGAGGTTTGAATGTTGCCTTAGTTCTTTTCACATTTTTTTATTTTTAACAACTAGTTTCACTTACCTTTTGACCTGGCCT TAATTAACTTGCACAAGTATTAAAACTTATAAAAGAAAGTTATTTAAAAGTAAAATATATATCCATAAACCAAAAATTGA AAAAAAAAAGAGTAAATTTTCAAGATTATTAACCTAACTTATAATAAATTTTCAACATCCATATTCTATGAACTATTTTT TTATGAATATTTGTGTATTAATAATAAAAAATATTATAGTTTATATATTGAAATCTTCTTTTAGCTCTCTCAAATTTTTT CTTCAAGTTCCGCCACTGCCCACGATCCAAGGGTCCCACTGGAGACCACACTGGCTGCTGAGTCACACGCCACGTCGGAA ACGGCCCCACACACCGTTACTCCACCGTGACCCTACAAGGACACGAGTGACGGAGACACCAACGTTTGAAATTCAAGGTT CTCTCTCGTTTTTTGTTTCAGAATTTCAAAACTCACACTCACTGTTTCTCTCTCTCTCTCAACTCAACGGGTAGTGCCAC TCAACCTTGCATTGAAGCCAAGCATTTAATATAACCTCCCTCTTCGTTATTTTGAATGAATGCTCATTCATCAAACTCAC GAGAATCTTGCTCCTTCCTTTGATTTCTGGGTCAGATCAGATCCGATCTCTCTCCATTTCCATAACCCCATTGCCCAAAG CTTCACTTTCCCAGGTAAAAGTCTTTTCCTTCTCTATAAAACAGAGCTTTTCTTCTGTTTTCCTCACATTGAATAACCAA ATTATTAGATGCATTAGAAATATAAATATAATACTAATTCTCAGCTAGCCAGCTTAAACTTTTAGATTAGTCATTTCATG ATACGGTATCAGAGTCTATATGATCATGTGATTTTGAGTTCGATCTTTGGTAGAGGTGTGTATGCATTGTCCACGCTTCG AGAGTTCAAGTCAATGAGCTCTTGTGTTGTGTGGTTTGGGATGCTGAATGAATGTTGTAAGACTTGAAAGAATTTGAATT TGAATTTTTGTTTTTGTTTTGGTGATCAATTATAAGAGTTGTATTTGAAAATTGAAGCATTCATTCAATTTTTGGTGTTG CAGAGAGGGACAGGGGTTATATTGTTATCGTATAAATCGTTGGAGAAATATGCCGCTGGAAAGTTTACAAAGCTCATTCT TCACATCTCCTTGCAAGAGAGGATTGAATTTGAATTTGAGGAGTTCGGTCTTTAGCAACGATGAGGCTTCATATATTGTG ACGGAGGATAGCATCAATGATCATGAATTGGCTCAGAGGAAAGCAGAGGAAGCAGGTATGAACTAGCAATATATCAATGA TCATGAATTTCTGATTGAAATTAGAAACAGAGCACTTGTCCTAGTACTACTACAATCTTCATGTTTCTGAAGTTGATAGT TAACTTTATTTTGAAAACTAAATCCATTTTAGGAATATAATCAATTTTCTTAAACAAAAATGTTAATCGTACTATTACTA TGGTGTCATTCCAATCTTCAAAAGATAACATAGTCTTCTAAATTACTAGACATGCTTGTTGGTTAAGATACATTTCTTCC AATGATGTTATTTCTTTATGATCATATAGAAAAAGTAAAAAAGTATGGTAAAAGAATCAGTAATAATTCGATTGTGCTAA TTAAACATGGGGTGGGTGGAAAAGAAAAGTGAATGGGACGGGACACACCAAAACATTGTGTAGTCCTTAATGATAGTAAA GCGCAGTAAGCGGGGGATATGTTGCACTTGCACTAAAATGGGATTGTGCCCCCCACCATTACCATTCAAATTATGTGATT TCAAGCATGGTGCCTACTACTAGTAGTACTACCCAACAACAACAATAAAGCATGGTTTCTTATAGGTACTATCCGACCCA AAAAAAAGCACGGTGTCAATATAACTTTGGAACATAATAATCTTTGTAATACTAATTCAATGGAACTTATAGTTATATTA TATCATTGTTATTTTGTTTTAGAATCAATAGTAACATACACAATCCCTTCTAAGTGGAGCGAATCTCGAGTGAGGTGTTC AAGAGAGAGATAAGAAGAAAACATAAAGGAAAAGAGATGTAATTTATAATATGATTGAAAAAGAAGAATAAAAAGTGAAA TAAAAATAAAGTAAATGTGTGAATGAATCACAACTCCTTTAACCTCTATTCAATCACTCCATCAAAGCTGCTCATAGAAA ATTGTTTTATGTGTCAACATAACTAATTAGACTTATTACATATTTAAATGAGATAATATAATATTGTTAAGACTATGATA TAAAATAATATTTAAATACTAATATGATATAACAATATTATTTTTAGCACTTTCCATTTTATCTGTATCATTATCATATT TGTTTATATCTATATGTTCATACTAAAAATATCATTATACAAAAAAAAAAAAATTCTCTTCTATCTTTCTGTTCAACCAA ACAAGAGAGTGTGTCCACATCCTTTTTTTTCTCTTCACTTTCTATCATACAAAACATCTCTCTTTCTCAATTCTTTCTCT CTACCATTTCTATCTTCTCTATTTCTATTTCTCTTTTCCTCTCCTTAACCAAACAAAACATTAAGTGATTAAACTAAACT AAAACGGTGTCGTAGGAACATTTCCCGCCATCTCTTCTTGTTGTTCATAGTAGAAACTGTGGTGGTTGTAGTTGTGAATG TGACTGTGTTTGTGTGTGTGTGTTTGAGAGTGCAGCTTCAAGGAGGAACCAAGCAGCTGAATGGCTTCGGCAAATGGACG ACGGCGCAGCCGCATCATCACTCTCCAAACAATCCTCCGAGGAAGAATTCTGCCTTGCACTCCGCAATGGCCTCATTCTC TGCAATGTCCTCAACAAAGTCAACCCCGGTGCTGTCCTCAAGGTCCTTCCTTCTCCCTTTTTCCTTTCTGGGTTTCCTCC ATTTTTCTTCTCTTGTTTCAGATATAACAGAAAATCATGTGTAATTCACTCAACACACACCTTTAACTTATTCACATGAT CAATTGCATGTTTGGCTAGACTTTTGGATAATTTGTTATTGACTTGATTAATTTCTGTGCTAGAAAGACCCATAATCACT TTTTAAGAGAAGCTATAAAATTTGCTTTTGTAGTTACTAGTTAGCTTGCTTTGGATTATGTATCTCCATCAATGCAAATA TGCTATAAATGGTTTGGAATTTGAATCCTAGACTCTCATTTTCACAATAAAATGTTAAACTTTAGCACTAGATAGATGAA CCAATGTAATATCCACAATTCTAAGCCTAAAGGGCTGTTGCATGAGGAAGCTTATTATAAATCTAATATAAAATCAAGTT TTTTCATGCAATGGATTGAAATTTTGGAGATATTTATTTCATGAAATGTCTTCCCCTTCATATTACGATGCCTTTTATGC TCCGCTGATTTTTTTTTTCCTTTTTGACTTTTCCGGTTTTCCCTTGGTTTGTAAATTGCTGTGGAAAAAGGTGGTGGAGA ATCCTGTCCCTGCGGTTCAGTCTGCAGAGGGAGCTGCGCAATCTGCGATTCAGTATTTCGAGAACATGAAGAATTTTCTG GATGCAGTTAAGGATATGGAGCTTTTGACTTTTGAAGCTTCGGATTTGGAAAAAGGTTGGAGCTTTGAATTGATTAGTGA TGACCCTCCCTTTGAGATTAAAGATGCTACCTTGTCTCAATAGCCATTTCATTATTGCTCTTTTGGAGTTCTCTATTAAT GTGGTTTGTTCTGTGCTTGTAGGGGGTTCATCAAGTAAAGTTGTGGACTGCATTCTCTGTTTGAAAGGGTATTATGAATG GAAGCTCTCAGGTGGTGTTGGCGTGTGGAGGTATGGAGGAACAGTGAGGATTACTTCCTTTCCTAAAGGAACTCCTCCCT CCCTTGTGGACAGTGAAAGTGCTGATGAATCCCTGGATGAGTTTGATTCGTCACAGTATGAACAGCTACTTAAATTTCTT CATCTATCTGGAGAGGTCTCAGTTGAAGAAACCAGAACTACCAATGCTTTTGCTTTCCTGTTTGATCACTTTGTACTCAA AATTCTCCAGGCTTACCTCAGAGAAACTGATGAGACTGAAGATTTGCCGCTGAATGCAATGGTCGGTAAGATCCTCTCCA ATGTGTTGTATTTTTCTTGCTTCTGTTCTTGTTTAATTGTACGAAAACTTTGTAGATTGATTTATATGATTAGTAGCTGG CTATATACAAAAATGATTATACATAGATCACCGAGCAATAAATTCTTAGTTTATAAGCATGTGAAATAGTCTAATGCAGT AATGCCATGGTGCATGCAAATGCAATGAAGGATGTTTTCTATTTTAGAATGTAACTATATGGAATTTTAAGACTGTCAAA TTAGATTTTTTTTACAAATTTAATTTATGTGTAAATATTCATGCTATCTTATTAGTCTTCGGGTGAAATTTGGCAGGTGA TTGATAGCATGCAAATGCAATGAAGGATGTTTTCTATTTTAGAATGTAACTATATGGAATTTTAAGACTGTCAAATTAGA TTTTTTTTACAAATTTAATTTATGTGTAAATATTCATGCTATCTTATTAGTCTTCGGGTGAAATTTGGCAGGTGATTGAT ACTTTTCTCAGGAAGGTAGTCATGGATTTTTCTTCATTGCTTGTTTCTCAAGGCGCTCAGGTACTTCAAACTTTTATGTG CCTTTTGGATTGCTACCACGTTTTCAATGTAAAAGCACCCTCGTTTCTGTTGTTTTCCAGCTCTACAAGAAATGATTGAC AGTGGTTTAGTCTTTTCCTTTTCCTTACTTCGAAAGGTCATCTAAAATATAGTTCTTCACAATTGTCTACAGCTTGGACG TTTCCTCAAGAAAATATTGAAAGGAGATATTAGTTGCCTCTCTAAGAGAGAATTCATAGAAGCCATCACATTATATCTTA ATCAAAGAAATAGCTTGGCGTCGAATGATTTCTCTAATTTCTGCACTTGTGGTGGAAAACGTGTCAGTATTCAGCGAAAT GTGAACTATTCTGCCAAGCATGCTGAAATAATTGATGCTCAGAAACAACTTGAGGTATCGAAGTGGAAAAATCTAATATG CCGCTATAGATGCTTTATCATGTGTGATTAGATTAGCACCATGCACTGCAATGATATTTTTCTTGCTACAGGCAATGAAG TACTTCTTTGAAGAGATTAAACGGGAGGTCAACCAGATTCAGTCCGAATGGCACCAAGAAGTGAGCAGGCTTGGTAAGGA GCTAAGACTTGATTTTCCATGAGAAATATCACCCATGCATGTACAATCTTTTGATAGTCATAATGTTGAATTGAGTTCCA TGTACTTTTTAGAGAATCATATAAAGAGTCTGGAAGTAGCCTCCTCTTCCTACCACAAAGTTTTAGAGGAGAACCGCTTT CTTTACAATCAAGTGCAAGATCTCAAAGGTAACTCAAGAATCCAACATTTTTTCAAGGTTCTTCTTACATGATTTTTTGT GTGTTAACAAATCTGCTGTCTTACAGGAGCCATTAGGGTCTATTGTAGAGTGAGACCGTTCTTACCAGGACAATCAAATG GACAATCTACAGTAGATTATATAGGAGAAAATGGAAACATAATGATTGTAAATCCCCTTAAGCAGGGTAAAGATGCTAGA AAGGAATTTTTATTCAATAAGGTGTTTGCAACTAGTGTCACACAAGGTACTTTAATATTTTGACATGTATTATTACAAAA TGGTATAGGGCCTCTATGTACTTTTTTCTACATGGTTCTTATTATATGCATTTGTTACAAATAAACTTATGGACTTTGTA TCCCTTTTTTGGAAGATTTTTATGATGAATTTTCTTTATCGTGTGCAGAACAAATATATGCTGATACTCAACCCTTGGTC AGATCGGTTTTAGATGGCTACAATGTATGCATCTTTGCTTATGGACAGACTGGCTCAGGAAAGACCTACACGATGGTAAT GTTATTTACAGAAATGTGCAAGCACATAGAAAGTAGTCAAACACATAATGTTACTTATACATTCACTTAATGTTTGTGGA ATTTGAAACCTAAGCCACATTGAAAGAGTAATAATATTTCAAGGTAATTAACTGGGTTTGCAATAATTCAAAGTAGGATA TTTATTGTTGTCTCATAATTTTTCTGATATCTATGTTTTATGTGATTTATTGCTTGTACAGAGTGGCCCTGATCTGATGA CTGAAGAGACATGGGGTGTGAACTATAGGGCTTTGCGTGATTTATTTCACATATCGAAGGAAAGAGCAGATGCCATAAAA TATGAAGTTGGCGTCCAGATGATTGAAATATACAATGAGCAAGTGAGAGATCTATTAGTCAGTGATGGCTCTAACAGAAG ATATCCTTCAAGCCCATATTTGCTGTATTTATATCACACCATTTTTTCAATATGTACATGATTACATGATAAGCCTTACT TTTTTGTATCGATTTTTGCAATAACATTTATCTTTGGTTCATTTCCTCAACTAGATATACATTAGAAATACGAAACAACT CTCAGTTGAACGGTCTTAATGTGCCTGATGCATCTTTAGTTCCTGTTAATTGTACTCAAGATGTTCTTGATTTAATGAAA ATTGGTCAAAGGAACCGTGCTGTGGGTGCTACAGCTCTGAATGAGCGAAGCAGCCGTTCTCACAGGTGAAACTTCTTCTT CATGAGTATTAGATAGATGGCTACTCTAACCATCAAATATATTTAATTTAGTAAAATTCTCTCCCACCCAATTGCAGTGT GTTGACAGTTCATATCAGAGGGAGGGACTTAGTTTCTAACTCCATTCTTAAGGGCTGTCTTCATCTTGTGGATTTGGCTG GAAGTGAGAGAGTGGACAAATCTGAGGCTGTTGGTGAGAGACTAAAGGAGGCCCAACATATTAATAGATCACTTTCAGCA CTTGGGGATGTTATCTCAGCTTTGGCACAGAAGAGTCCACATATTCCTTACAGAAATAGCAAGCTTACACAAGTTTTACA AGATTCATTAGGTAACAAGAAGACATAATTGATCCCCCACCGATCCTAATTGTCAAAATTGTTTTCTATTTTGAATTTCT TTAAAGAATATTTTTTTCATATCAATAGGTGGCCATGCAAAGACTTTGATGTTTGTTCATATAAATCCTGAACTGAATGC TCTTGGGGAGACAATTAGCACACTGAAGTTCGCTGAGAGGGTTGCATCCATTGAACTAGGGGCAGCTCAATCTAATAAAG AAACTGGTGAAATCCGAGAGCTAAAGGACGAGGTTCGGGTTTTGGTCTTGAATAGTTCAATTTTAAATTAACTTGACCAG TATTTTTACTCTAGCTTCAACATTATATAGATATCAAATATGAAATTGGCTTTGGAGAGGAAGGAATCCGAACTGGAACA ATGGAAATCTGGGAATGCACGAAATGCCTTAGAATCTCAAAAAGCAAGAGCAGTTTCACCTTTTCGTTTGCCCCGAAATG GTACCAATGGCAGCATGAAGTCTGAAAATTCTCAAAGATCCATGGATGATAGAAACTCTGAGGTCATTGCATGCAGATAT AACTTGTTACAATAAATTTGTCTAAAAGGTTATTATTTGGACTATCTAAAACTGAAATTCTATTTTCAGGCTAAAAGTTG TTCTTCAGGCAAGCAAAAAAGGTCAAGATTTCCCTCGGCGTTTGTGGACAAAGACTCCACACCAAAAATGTCTATTCCGG CTGAAGAAAGATCGGTGAACTGGAGGAAGGATAGGTCACCTTCACCACCAGTTAGGAGATCAATATCCACTGATAGAGGG TCTGTCATCAAAAGCAAGGTCAAGAGTGACACAATAGAGAATCAAGCAATATTAAAACCTCTATTTCCAGCTAGAATACC AGTAAATAAATCTCTTGCCACAATGCCAATGGCTCCATCTACGGAGAATAACACTTCTCAAAATGTCTTCAACCTCCAAA ACGTAAACACCAGGAAAGTTTATCAAGAACATGAAGAGGAACAGTTGAAGCAAGTATCTGGTGTGGTAAGACAAGGTGGC ATTAGGAAAAGCAAGGTTGAGCATAAGGCCAAGGTCAAGCATCATCAGCAATTGCCCATTAGGATTCAGAAGGCTGGTCA GGTACCTACATCAATTACTGACATGGAAAATGCTGGTGAAGTGACTCTGGAGGCACCTCGAAAGAGTGATTACTCTGAGC CAGAAAATGATATTAGCATTATGGGGTCTGCAGTCCACGGTGTGTTAAATCTTAAAAAGATACGTCAGAACATCTCAAGG AATCCTCAGAACCTTGAATCAAGGTACAGCTCAAGCAAATTTTATATCATTCTTTACAATTCCTGATAACGCCACCTCAT TTTTACTATTTCAAACGAGTCAGCTAATATTTTACTCCAACCAATCAATTCTAAAAAAAATTCTTAAATGGACTCAACTG TTTACCCTACACTTTATATTTGATTATTTATCTATATTTCATTCATTTATCATCATAAAATATAAAAATGAGTCCCACAA AAAGCAAATACCAACTGGTTGCTGCAGTAAGCCACCGGTGGTATGACATGAAAAATCAAGCTGCTATCCAAGGGTGCAAA TACTCTGATTGGGGGATCTGGATTTAATGCAGTCAACTGCACATCACTCACAAATCCAAGCCGTTTGATTAAAATTAGAT GGCTCACATTTCTAGCATGCATTTGTATTTGATTTACTAAGATTCAATACTAATCATTGGATTATAAATTCAATGGCTAT TGTTGAATGAATGCATCGATTGTGTAAAATGTGATTGCAGTCAATCTGAATCCTTGTCTGTGTTGCTTTCCGAAAAGCAA CTTTCGTTGGAGATGCTCTAAATGAAAATTTTCAATTTTCACTTGTTTAGTTGTTTTTTTTTTTTAAAGATGATATTCTT AGCCTCATTGGTAACCATGAGTGACCAATTTTTGTCACATGCAGAGGGACAGTGAAAGCAGTTGAGCCTTTGTTGTCTAG CAAAGCTGAAAACAAAGTTGTAATCGGTTCAGGTCGCAATACTTCCATGCATGAATATAGAAGGAGCCGATCTACACCGC GGGGAAAGTTTTTTGTTTTATCTTGAAGATTTCAGGTAAAAAATGTATTGTTTTCTGTTATGTATTCTTGTACAGTGACT ACCACTGATGTGCATGCTGTAGTGCAAGCTCACATGATTTTGTAGAGACTTAGAGAAAGGTTTCAGGTCAGTTTGTGTAA CCTTTCTCTATATTTGTATTCTGATCATGGTCCTTTTGTAATTTGAAATTTCCAAGGTCAATATAGTTTACATCATGGGG TGTTGTATGTAGTACACAATTTTATTGACAAGGCATATTTGCTGCATTTTATGAACTCAACCACCCATATAAAATTCATC AAAAATCTAATGGAAGAAATAAATAAACTTGTTGGAAGCTTT 

CDS sequence (LotjaGi1g1v0013100.1) extracted from Lotus japonicus Gifu v1.2 CDS.

ATGCCGCTGGAAAGTTTACAAAGCTCATTCTTCACATCTCCTTGCAAGAGAGGATTGAATTTGAATTTGAGGAGTTCGGT CTTTAGCAACGATGAGGCTTCATATATTGTGACGGAGGATAGCATCAATGATCATGAATTGGCTCAGAGGAAAGCAGAGG AAGCAGCTTCAAGGAGGAACCAAGCAGCTGAATGGCTTCGGCAAATGGACGACGGCGCAGCCGCATCATCACTCTCCAAA CAATCCTCCGAGGAAGAATTCTGCCTTGCACTCCGCAATGGCCTCATTCTCTGCAATGTCCTCAACAAAGTCAACCCCGG TGCTGTCCTCAAGGTGGTGGAGAATCCTGTCCCTGCGGTTCAGTCTGCAGAGGGAGCTGCGCAATCTGCGATTCAGTATT TCGAGAACATGAAGAATTTTCTGGATGCAGTTAAGGATATGGAGCTTTTGACTTTTGAAGCTTCGGATTTGGAAAAAGGG GGTTCATCAAGTAAAGTTGTGGACTGCATTCTCTGTTTGAAAGGGTATTATGAATGGAAGCTCTCAGGTGGTGTTGGCGT GTGGAGGTATGGAGGAACAGTGAGGATTACTTCCTTTCCTAAAGGAACTCCTCCCTCCCTTGTGGACAGTGAAAGTGCTG ATGAATCCCTGGATGAGTTTGATTCGTCACAGTATGAACAGCTACTTAAATTTCTTCATCTATCTGGAGAGGTCTCAGTT GAAGAAACCAGAACTACCAATGCTTTTGCTTTCCTGTTTGATCACTTTGTACTCAAAATTCTCCAGGCTTACCTCAGAGA AACTGATGAGACTGAAGATTTGCCGCTGAATGCAATGGTGATTGATACTTTTCTCAGGAAGGTAGTCATGGATTTTTCTT CATTGCTTGTTTCTCAAGGCGCTCAGCTTGGACGTTTCCTCAAGAAAATATTGAAAGGAGATATTAGTTGCCTCTCTAAG AGAGAATTCATAGAAGCCATCACATTATATCTTAATCAAAGAAATAGCTTGGCGTCGAATGATTTCTCTAATTTCTGCAC TTGTGGTGGAAAACGTGTCAGTATTCAGCGAAATGTGAACTATTCTGCCAAGCATGCTGAAATAATTGATGCTCAGAAAC AACTTGAGGCAATGAAGTACTTCTTTGAAGAGATTAAACGGGAGGTCAACCAGATTCAGTCCGAATGGCACCAAGAAGTG AGCAGGCTTGAGAATCATATAAAGAGTCTGGAAGTAGCCTCCTCTTCCTACCACAAAGTTTTAGAGGAGAACCGCTTTCT TTACAATCAAGTGCAAGATCTCAAAGGAGCCATTAGGGTCTATTGTAGAGTGAGACCGTTCTTACCAGGACAATCAAATG GACAATCTACAGTAGATTATATAGGAGAAAATGGAAACATAATGATTGTAAATCCCCTTAAGCAGGGTAAAGATGCTAGA AAGGAATTTTTATTCAATAAGGTGTTTGCAACTAGTGTCACACAAGAACAAATATATGCTGATACTCAACCCTTGGTCAG ATCGGTTTTAGATGGCTACAATGTATGCATCTTTGCTTATGGACAGACTGGCTCAGGAAAGACCTACACGATGAGTGGCC CTGATCTGATGACTGAAGAGACATGGGGTGTGAACTATAGGGCTTTGCGTGATTTATTTCACATATCGAAGGAAAGAGCA GATGCCATAAAATATGAAGTTGGCGTCCAGATGATTGAAATATACAATGAGCAAGTGAGAGATCTATTAGTCAGTGATGG CTCTAACAGAAGATATCCTTCAAGCCCATATTTGCTGTATTTATATCACACCATTTTTTCAATATGTACATGA 

Protein sequence (LotjaGi1g1v0013100.1) extracted from Lotus japonicus Gifu v1.2 Proteins.

MPLESLQSSFFTSPCKRGLNLNLRSSVFSNDEASYIVTEDSINDHELAQRKAEEAASRRNQAAEWLRQMDDGAAASSLSK QSSEEEFCLALRNGLILCNVLNKVNPGAVLKVVENPVPAVQSAEGAAQSAIQYFENMKNFLDAVKDMELLTFEASDLEKG GSSSKVVDCILCLKGYYEWKLSGGVGVWRYGGTVRITSFPKGTPPSLVDSESADESLDEFDSSQYEQLLKFLHLSGEVSV EETRTTNAFAFLFDHFVLKILQAYLRETDETEDLPLNAMVIDTFLRKVVMDFSSLLVSQGAQLGRFLKKILKGDISCLSK REFIEAITLYLNQRNSLASNDFSNFCTCGGKRVSIQRNVNYSAKHAEIIDAQKQLEAMKYFFEEIKREVNQIQSEWHQEV SRLENHIKSLEVASSSYHKVLEENRFLYNQVQDLKGAIRVYCRVRPFLPGQSNGQSTVDYIGENGNIMIVNPLKQGKDAR KEFLFNKVFATSVTQEQIYADTQPLVRSVLDGYNVCIFAYGQTGSGKTYTMSGPDLMTEETWGVNYRALRDLFHISKERA DAIKYEVGVQMIEIYNEQVRDLLVSDGSNRRYPSSPYLLYLYHTIFSICT 

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
Gene3D 42 187 146 2.3E-29
SUPERFAMILY 53 198 146 1.46E-22
ProSiteProfiles 56 178 123 18.714
Pfam 58 178 121 8.2E-13
SMART 58 176 119 3.3E-8
PANTHER 314 590 277 2.2E-101
PANTHER 314 590 277 2.2E-101
Gene3D 379 596 218 7.9E-56
SUPERFAMILY 415 594 180 1.2E-48
Pfam 422 583 162 1.7E-44
SMART 435 610 176 3.7E-15
ProSiteProfiles 437 610 174 46.203

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 Microtubule motor activity Catalysis of movement along a microtubule, coupled to the hydrolysis of a nucleoside triphosphate (usually ATP).
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.
Biological process Microtubule-based movement A microtubule-based process that results in the movement of organelles, other microtubules, or other cellular components. Examples include motor-driven movement along microtubules and movement driven by polymerization or depolymerization of microtubules.
Molecular function Microtubule binding Interacting selectively and non-covalently with microtubules, filaments composed of tubulin monomers.

Expression data

Expression pattern

Expression pattern of LotjaGi1g1v0013100.1, powered by ExpAt. For advanced configuration, data transformation and export options, view expression data in the ExpAt application.

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