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LotjaGi4g1v0067400.3

Overview

Field Value
Gene ID LotjaGi4g1v0067400
Transcript ID LotjaGi4g1v0067400.3
Related isoforms 4
Lotus japonicus genome version Gifu v1.2
Description Mitogen-activated protein kinase; TAIR: AT2G43790.1 MAP kinase 6; Swiss-Prot: sp|Q07176|MMK1_MEDSA Mitogen-activated protein kinase homolog MMK1; TrEMBL-Plants: tr|A0A0A7CJ31|A0A0A7CJ31_VIGMU Mitogen-activated protein kinase; Found in the gene: LotjaGi4g1v0067400
Working Lj name n.a.

Sequence information

Genomic sequence (LjG1.1_chr4:8443888..8455955) extracted from Lotus japonicus Gifu genome v1.2.

ATGGAAGGAGGAGGAGGTGCACCGCTTGCTGATACCGACATGTCTGATGCGGCACCGCCGCCGCAGCCTGACCCACATCA TCAGCAGCCGGCGGTGGCGATGGGGATCGAGAATATTCCGGCGACTCTCAGCCATGGTGGCAGGTTCATCCAATACAACA TATTCGGTAACATATTTGAAGTCACCGCCAAATACAAGCCACCCATCATGCCCATCGGCAAAGGAGCTTACGGCATCGTC TGGTACATCATTCCCCTTCAACCCTTTTTCTCTTTCTCGCTTTGGATATCAAATCAACATCAAAGTTTGTTTTTTTATGT TTTCTTGATGAGAAAAATTGATTCTTTTTTTTTTGTTGGTGTTGGGATTGGAAAATGGAATTTTCTTTTGGTTTTGTTGT TTGTGTGAATAGTTCTGCTTTGAACTCGGAGACAAATGAGCATGTTGCTATCAAGAAGATTGCCAATGCATTTGACAACA AGATTGATGCCAAGAGGACTCTCCGTGAGATCAAGCTGCTTCGCCACATGGATCATGAAAACGTTAGTGAGTGGTGATTG CTTTTTTGTTTATTTGTGTCTCATTTTGTCTTTTGTATGGATTGGATATGCTTTGTCCTGTGTAATCTTTCCATACAGGT TTGAGATTCACCTGTTAATTGGATCCGGATTTGTGTGATTGTTTGCTTCAATGTCAATTAACCATTTTTCCATAAAATGT GGTTGTTTTCAGCTATGAAACATTCTCTGTTTGGAAGCTATTGAAAGATTAATATTTGGTCAATAGTGGGGTGTGTATAC ATCTTAGGGGACACTTAGACCAAAATGCACCTGTTAGTTTTACATATCATGGTTACGTGGCTGAATTTAAGCTTACCAGG TGTACAATCTTTGCTAGTAACGGTAATTTGAAAATGCCGAGATGTAGTCAATCTTGAATTTAACGACTAACGTTTTTAAG CGAATGACATGAATGTGTCCAAAAGTAAAATCAATGATGAATGCCTGTTTTGATATCCTTGCAATCATTGATTTCTTATT GCCTATTAATGAATCTTCAACGTAACGGCTAACGTTTCTAAGAAAACGACAAACAAGACTGTGTGCAATTTAACGACTAA TGGTTCTAAGTAAACGACAAGACTGGGTCCAAACGTGCAATCTTAAATTTAAACAGGGTTTTAAATTGCGGTCTGCAACA GCATTGTAAAAGGTTTTGAAGTCCCCGCAGCGGCATCGCGACCGTTTCAACTCCCGCATTTTTCCGCAATTCTGCAACCG CCACAATTTAAAACCCTGAATTTAACTAATAAGCAACCGACAAGACTGTTCAAAAGGAAAATCATGATGAATGCCTGTTT CTGTTTGATATCCTTGCAATCATTGATGCAGTACCCCCCTCCCCCAAATTTATGCCCTGTTTTTTAACACCTGTATTTTG TTGATCTCGTAATCCTTAGCCGCTCCTGTTTTGTTGCATAGTATTGCAGTTTATGTAACAGTTGTTGTGGATTCTTAAGA GGCAAAAATAGCGGCCGTTAGAGTGTTATTTCAACGATAACCCAAAAATGACCTAGGGAGGTTAATGTTAGCGCATTGTT GGGGTTTTTCTTCAGAAACTTAATCAAAATGGTCTGGTTTGAAGAGGATGTGGAGGAAGAGATCTACAACTATAATAGTA GTGAAAGTGATAAAAGAGGAAGACTAGAACCTAGAAGAGGATAATTGATGAGTCCTATTTATGAAACTTTCATTTGAAAT TTATGTTTTAGACAGAACAGTTTAAGCCTCTAGCACTTAAACTTCTTGGTTGTTTTTACTTTTGTTGGTATTTAAATGTT TTGTTTAAGACACCTATGACTTTGTCTTGTTAATTATGAATGTCATCATAGTACTTTTTTTTCATTTTGAACATTTAAAT ATGTATATGCTATATAGTATTAATCCTCAAAAAAAATATGTATACTATGTAGTATTAATTATTTAAACTGCATAGAAAAT CCTACATAGCAACCATCCTGCTATGTGCTATACTGCTGTAATTATAAAATATCCTGTCTTACATTTAGGGGGGTGGAGGT GGCGAGAGAGGGTGTTCTGTTAACTTTGTGATGGGCAATGCTAAATCCGAGCATTTGGAATTTTTCTCACATTTGCTAAT TTGGTTTACTGATTGTTATCATTGTGTAGGTTGTCGCAATCAGGGATATTGTGCCACCACCTCAAAGGGAGGTATTCAAT GATGTTTACATTGCATATGAATTGATGGACACTGACCTTCACCAAATCATTAGATCAAACCAAGGATTATCAGAGGAGCA CTGTCAGGTATGCATTTAAATATACACCTTTTAGTTTATGCTTGTGTTTGTATTAACTGTATATCTATGTTTTCACATTA TCACGTGTTATATATTCATGCATGTACTGTTATACAGCCTTAAATGAAGATATAAATTTAGAATGCCATAGGAGAATTGT TTCTTCTTGTTCCTTCACCCCCATTTTATATTCTGTCACGAACTTCCACAGCACATTTTTCCACATCCTTTCACTGTAGT AATGCCAAATGCCAACTTGATACTTCGTTATACTTATAGAGGACATTTTGGGCATCATGACTTGAGGAATATATTAGAAG ATTTTCACCTTATTTATTTTTCTTGCTTTAGTTAATCTTGACCATGAAACCATTATAAACTTTTTCTTTTCTGGTGCAGT ATTTTCTGTATCAAATCCTCCGTGGGTTGAAGTACATACATTCTGCGAATGTTCTGCACAGGGACTTGAAACCTAGCAAC CTTCTCCTGAACGCCAACTGTGACCTGAAAATATGTGATTTTGGACTGGCAAGGGTCACCTCTGAAACTGATTTTATGAC TGAATATGTTGTCACAAGATGGTACCGTGCACCAGAGCTTCTGTTAAACTCTTCTGATTACACAGCAGCAATTGATGTGT GGTCTGTTGGTTGTATTTTCATGGAACTCATGGATCGAAAGCCTTTGTTTCCTGGCAGAGATCATGTTCATCAGTTGCGA CTACTTATGGAGGTAACTTAATTAGCAGCCTTCAGTGTTTGAATAAGTTCAAGAATGATTGATTTATATTTGTTTTTATG GTTGAAATGATTAACCTGCTAGATTTGGAAATAATAAATTATTAAAGCAAATTGAAACTCAATTGTTGTATCGTCTTGAA GTACAATTCAAGTTACGTTTAATTTTATTGAGTATAGTCAGATCCTTTAATCAAAGTGGTGAAATTGATGCCAAAATCTG CATTTGCTTTGTTGTATTAAAAAAATAGCAACTTATGACCTATGTAGTTCACCTTTGACAACAGTCTGCGTTGAAATCAG TGTATTAGTATAACTGATAATCTTCATATTTTACAGTTGATTGGCACCCCATCAGAAGATGATTTGGGGTTTCTGAATGA AAATGCTAAGAGATACATTAGGCAACTACCTCCTTACCGCCGCCAATCTTTCCAAGAGAAGTTTCCGCAAGTCCACCCTG AAGCTATAGATCTTGTTGAAAAAATGTTGACTTTTGATCCTAGAAAAAGGATTACTGGTATGTTTTCTTTGTCTGAGGCT TTGTATTCCATGGTTAGAGATATAATAGTGTCAATGTGCATACTTTATACTTTGCATGCTTTTTGGTGTTGTCAGTACAT GTTAAAAGTCTTTTGGGATGTGTTTAGAAGAGTTTATTTGAGCTTATCTGATGCATAAAGCAGTTGAAGTCTTAGACATG TGGTTGATCAAGCTTTTAAAAGTAGTGTGTGTATTTAGATTAGTTTCTCACATTAGCTCTGCCTACATATAATCTCTTCT AAGTTGATTTCAATAAACTTATCAAATAAGCTTATTAATAAGTGCTTATGTATGAGCACTTAATTGACATAAATAGTTTC ACCTAACGCACCTCTCATCGATCACATGATAAATTGCATCTAAAGGTTGCACCATAAATGCTTAGTTTTGCTTCTGGGTT GCCAGATTTGTACTGATTTATATATCCTTCAGAAATTGATCATGCATGATTTCATCTGTTGGACATATTCTATCCATGTG CCACATTGCAAACCATATTGCTTAATGCTTTGCTTACCTCTCGCTAAAATCGATTAACATGGCTCAAGTTTTGTTTAGTT AATTTGGCTTTGTGTAGTTATCTTTGCATGCTCTGAACTTACAAACTCTTATTGTGTCTCAATATGTAGTAGCTGTTTAT CTTAGAATGAGGGTGCTGAGCTCCTTATTATAGATAAGAAAATTACACCGCAAAACAGAGTGCTATTAGGAAATTAAAGT ATAAACCCGGGAGTCGGGACTGTCAATAAGGAAGTGCAGTGATGGATATTAGGAAGCTAACAAGTAATGAAGATGAAATG AAGGAATAGAAATGCAATTGTATTGATTGAAGTGGACAATTACAGAAGATATTGTGATAAGGTGTGCTGTTAGAAAAACT CTAACAACCCAGAGAAGCTCTAGAGCGTTCTCTCCGAGGGAGATGCTACTCTCTCTCTATAACAGAATTATCAATCCAGC ATAATCTTATTCCCTTTTCCTTGGTTACTTTATACTAACACCTAATTCTGTTGAGCCAATGCCACCTCAGCAGCCTTGCC CCGTTTCCTCCTATAGACTTGCCAAACCTTGGGCCTGTTCTCTTCTTGGCCCACTGAAGCATTTACCACTAAGCCCACCT CTTCATTCAGATTTCTATCAATTCCTCCCTCCATTGGAACAGCCTTGTCCTCAAGGCAGAATTCAGGAAACTGACCAGCT AGAACGACATTGTCTTCCCAGGTGACTTCCTCCATTGACTTATGCTTCCACTTGACTAAGCTCTGATGCACTTCACTGTC CCCGAGCCTGACAGTCCTAGTGCCCACTATGACTTCAGGGTAAATATCAGTGGTGTCATCAACCCCCAAATCCGCTGGCA ACTGACCCTGCACTTGATAGTTTCCCACAGCCTTCTTTAACAGAGAAATGTGAAAAACTGGGTGGATTTTGGACTCTGCA GGCAACTTCAGCCTATAAGCAACTGCTCCTACCTTGGCCTCTATCTGAAAAGGTCCATAAAACCTGGCAGCAAGCTTCTG ATTGATCCTCTTCACCACAGAATGCTGCCTGTGGGGTCTCAGTTTGAGAAATACCCACTCTCCTACTGCAAAGGACAAAT CCCTCCGCTTCTTATTTGCATAAATAGCCATTTGTTCTTGAGCCTTCTGTAAATGACCCCTTAGCTGTCGCAGGGCTTCA TCTCTTTCACTTAGCTCTAGGGCCACAGCGGCTACCTTAGTCTCATTGGATAAGAACTTGACAATAGGGGGTGCTTGTCT TCCATAGACTACCTCAAAGGGTGTCTGTCCAATTGAGCTATGAAAAGTAGTATTGTACCAAAATTCTGCCCAGGAAATCC AATGTGACCAAGACTTGGGATGATCAGAAGCAAAACACCTCAGGTAGCTTTCCAAACACCTGTTTATGACCTCTGTTTGT CCATCAGTTTCCGGATGGTAAGCCGAGCTCATTTTCAGTTTGGTCCCCTGCAGCTTAAAGAGTTCAGACCAGAAATGGCT AACAAAAATAGGATCCCTATCACTTATGACTGAATTAGGAATCCCATGGAGGCGCACCACCTCTCTTACAAACACTTCTG CAATAGACTTGGCTGTATAGGGATGCTTGAGCAGAATAAAATGACTGTATTTTGACAGCCTGTCCACAACCACCAGTACT GCTTCAAAGCCCTTGGATTTGGGTAGACCTGTAATGAAGTCAAGAGACAAGTCTTCCCACACAGCATTAGGGATTGGAAG AGGTTGTAACAAGCCTCCAGGGCTTAAGGCGCTGTATTTGTGTCTTTGACAAACATCACAAGCTCTGACATAGTCTCTGA CCCTCTTTTGCATTCCTACCCAATACAATGTTGTTGCCAAGCGTCTATAGGTCCTCAGGAAGCCAGAGTGACCCCCAGAA GGTGAGCCATGAAACTCCTCAAGTAGCCATGGGATGGAAGGAGAGGTAGGAGATAAGACTAGCCTTCCATGATATAGTAA AACTCCATGTTGTACTGCAAATCCAGGTTTGCTTGCAGGATCTTTCTGTACTGCAGATTGCAAGTCCTGGATGTAGGGAT CTTGGGTAATCTCCTCCAAGAGTCTCTTTCGGTCATTCCAGAGAGGAAATGAGATCAGAGAATGCAGCTCCACCTCATCA TAGCGCCTGGACAAGGCATCAGCAGCCTTATTTTCCAAGCCGGGTTTGTATTTGACTTGAAATTGGTAACCCAGTAATTT TGCTAACCAACACTGTTGGTCTGGTGAAGAAACTTTCTGCTGCAGGAAAGGCTTAAGGCTTTTGTGATCAGTATAGACTA TGAACTCTTTCCCCAATAGGTAGTGCCTCCAATGTTGAATGCTTAAAACCAAGGCCATTAATTCTTTTTCATACACTGAC TTAGCCAAGTTTCCAGCTGATAAAGCTTTACTAAAGAAAGCTAGAGGTTGTCTTTGTTGCATTAAGACAGCTCCAATCCC TCTCCCTGCAGCATCACACTCTACTTCAAAGGGAAGAGTGAAATTGGGTAGTATCAAGACAGGAGGAGATGTCATTACCC TCTTTAATTGAAGAAAAGCCCTATCTGCCTCTGGTCCCCAAGAAAAACTGTCCTTCTTAGTCAACTCAGTGAGAGGATTA GCCATTTTCCCATAATCTTTGATGAATTTCCTGTAGTATCCGGTCAGCCCCAAGAATCCCCTCACTCCCTTAACATTCTT GGGCACAGGCCAATCCATAATGCATTTTACTTTCTCTGGATCTACTGCCACGCCAGCTCCCGAGATGATATGACCCAAAT AATCAATTGAAGCACATCCAAATTTGCATTTGGTCTGATTAGCCACAAAACAATTAGCTAACAAGACAGATAGTACCAAC TTCAAATGAGTGAGGTGTTCAGGTAAGTCTTTACTATAGATTAGTATATCATCAAAAAAGACCAACACGAATTTCCGTAA GTAAGGTCTGAAAATATCATTCATTACTGCTTGAAATGTAGCTGGAGCATTCATCAGCCCAAATGGCATCACTAAGTATT CATAATGTCCATTATGGGTTCTAAATGCAGTTTTTTCTATGTCATCCTCATGCACCCTGATTTGATGATAGCCAGATTTC AGGTCTATTTTAGAGAAAATTGAAGCTCCATTTAATTCATCCAGCAGCTCATCAACTATCGGAATTGGATACTTATCTGG AATGGTGGCCTTATTTAAAGCTCTGTAGTCAACACACATCCTCCAGCTCTTGTCTTTCTTCTTTACCAAGATCACAGGAC TTGAATAAGCACTCATGCTAGGTCTGATGATTCCTGCCTCCATTAACTCTGCCACTTGCCTCTCAATCTCTTCTTTTTGA TGGTGAGGATACCTATAAGGCCTCACATTGATGGTCTCCTGCTCAGGGAAAAGCTTTATCTGATGCACCTTAGACCTCTC TGGTGGCAGTTGAATCTTGCTCCTAAATACCTCTTGAAACTCTTCCAGTGTCTCCATAAGCTCTCTTGGTGTTTCTACCT CAGTATTGGTGACTTCTGCGGAATTCAGATGAGACCACCACCACTCCATACCACCTCTGTACTGCTTGTCCATGAGGAAT GAGTGTAGAAAACTGTGATTACTCCCTTTTCCTCCTAGCCCTTGCAACTTGACTACCTGATTTCCATGGACAAATTGCAT AGTGAGTAGTTTCCAGTCCATTACCACTTTTCCAAGTGTGCTCAGCCAGGACACCCCCAATACCATGTCCAAACCTCCTA GTTCCAACACCAAGGCATCAATCACCACCTCAATCTTCCCCAGCCTGGCCTTAATTCCCTTACACACTCCCTGTGTAACC ACCCTGTGTCCATCCCCTAACCTGATGTGTCGGGAAGCTATAGGGGTGATAACCAAACCCAGAGCATTGGTGACTGCTGG GGAGATGAAGTTGTGGCTAGCTCCACTGTCAATAAGCACCAGTAAGTTCACATTGTCAACCTGCCCTTCAATCTTCATCG TATGATGCTCCTCCATACGACCCAGAACCCCCATTAATTTGTACTCAACCACTGCCTCGTCCTCTTCACTCACTTCCGGT TCTCCCTCCAACATCACAATCTCACCTTCTTCATCAACGGTTTCCCCGTCTCCAAGGATTAGAACACGCAGGGATCTCTC GGGGCACTTGTGCAGGGTAGGATGATACTTTCCCCCACACTTGAAGCACAAGCCCTTGGCTCTCCGCTCAGCGATTTCAT CCACCTGGAAGCTGCGGACCCCTTTCCACTTCTCCGATGATCCTGTACGGAGATCATTTTCTCCTTTTCGAGTTGAGGAA CCCAGAGACGCGGCTGAATTCGTCGTCGATCCTACTGAACTCATGGAGCGACTTGGAATTGACCCGCCTGGTTTAGAGAA CCGGGTCACATCCCTACTAAAAAGCCCAACCCGATTGGCGGATGACCCGGCCCAATTGCTTTGACCCGAGCGATCGAACC CGCTCCTCTTTACCATTTTCTTGCCATCGTCTTCGTCTTCTTCCTTTAGTTCCTCTTCCACGTCTTTCGCGATTCGCATC ATCTCCATTCGAGTTCCTGGATTAAGTGTGCGCACTCGGCGTCTGATCGCAGGCTTCAGCCCACTCATGAAGTATCCTAG GTATTGGTCCTCCGGTAGCCTCCCTACCTGCGATGACAACAACTCAAAGGATTCGACGAATTCGTCTACACTTCGTTTCT GTCGTAATGTCGATAGCTCTTCGAAAGGGTTCTCCAATCTTCTTCCTCCGTAGCGTGCAATCAACGCACGTTTCAGCTTC TCCCAGGATAGATTATCCTCAGTCTCCATCAACAGATTGAACCAATGGATCGTCGATCCTTCCATACTTAATCGCGTTAA CTTCACCCGCATCTCATCCGGCGTATTCTGCACGTCGAAGTAGATCTCCGCTCTCGTGATCCAAGCCACAGGATCCTCTC CTTCGAACACCGGCAACTTCACCTTCTTTCCGGCCAAGCGAGACTCACCGGGGTGTGAATCCGCTATCGGGGTATCTCCT TCGTGACCCGTTTCCTTTCGACCCATTTGCTTGCTCAGTTCAGTGAGAGTCAAGCTCTGCTGCTGCAGTTGGAGAGCGAG CTCTTGCAGCGCCGTCGTAACGCTTCCCATCTGGTTTTCCAGAGCTTCCATTCGATCGGTCATTTTCGGTGGCATCTACC AGCTTGTTGAGACTCCTTCCACGGTGTTGATCCGGTAGGTCGGACCAATTTGATGGATATTAGGAAGCTAACAAGTAATG AAGATGAAATGAAGGAATAGAAATGCAATTGTATTGATTGAAGTGGACAATTACAGAAGATATTGTGATAAGGTGTGCTG TTAGAAAAACTCTAACAACCCAGAGAAGCTCTAGAGCGTTCTCTCCGAGGGAGATGCTACTCTCTCTCTATAACAGAATT ATCAATCCAGCATAATCTTATTCCCTTTTCCTTGGTTACTTTATACTAACACCTAATTCTGTTGAGCCAATGCCACCTCA GCAGCCTTGCCCCGTTTCCTCCTATAGACTTGCCAAACCTTGGGCCTGTTCTCTTCTTGGCCCACTGAAGCATTTACCAC TAAGCCCACCTCTTCATTCAGATTTCTATCATGCAGTCAACCCCCTATACCATCACCGGTTTTTCCATATCCCCCCTCCC CCCTCTTTGCTGCAATGTTCTCTCTATTCTCTCCCCTTGTCCCCTGACTCTCCTCACACCTTTCACCCATGTCACTGTCC CAATGTGGTAATTATATTCTCTGCTAAATGAATTTTCCATCTCCTTCCCTCAGTTCTTCTTTTTCCTCTCATAAACCAAG AGGCCCTTGTTTTTCTTTCCTCCTCTATAGTGCTAAGGGCCTATCAACCCACAACAACAATAAAAATCAGTTCCACCTTG TCCTCAAGGAGGAAATCGGGAAATATCCTGTGTCATAATCAAGGGAGGTAATTCCATTTTACAAGGACTTCCTTGGAGCA ATCTTGTAGTTTCAGCATAGCCAGCACCTCGCTAGGTACAACCTGCAATTCCAATTCTTCAGTAAAAAAACTTAGGATTT GTTGGCTTGGAGTGTCAACCAATGGTGCTCTCATATGGTTGGACACATGAATGACCAAATTGAGTCTTGTATCAGGGGGA AGCTCCAACCTGTATGCTACTAGTCCCACCTTCTCCTTAACTTCATAAGGGCCATTGAAGCGGGGGCTGAGCCTTTAAGT GCACCAATCTTCCAAACAAACTGCTGCCACTGTCACCTTCTCGTCATCTGAAAATACTGCTCAGAGCTGTATAACCATCC ATCTAGATCATTGTCAGAAGCGTCATCCTATACTCCCTTCAACCCACTTCTAGCCTCTATTCACCTGCGCCTCCGCTCCT TGTTACTCCCCAGTCCCATTCCTTCATCTTCATAATCATACCCAGCCAAACGATCTCCAGTGAAATGTGCTAGACCCGCC CTTAGCTCTTGCATCATGTCCTCCATCAATTGCTTATGTCTCCTGCCACTCTATCCATATCCTCCACCCTCCCTTCCAAT ACCTCAACTTCTTCTCCATCCTTGTTGATACCATTCACTGGTCAAGACTAGGAGCTCTGATACCATTATGGTGGAAATGG TTAGATTCTGACTTTATTATTTGAGAAACACTGCTTGTCAAATATCCGCCATGGCCCCATGATGGTGGAGTTCCAGCAAG CCGCCATGGTCGATAGCTATCAGTATTTGTCAAATATGGCCTGTTTTTGGCTTTCCACCATAACCCGCCATCTGCCATTA ATAACACTGCTGAGAATATTACTTTCAAAAACAGAGTGCTATAGGAAAGAAAATAAAACCAAAACTGATACGAAAGAAGT GTAGTCAACCCCTATACCATCACCCATTTTTCCATATTCCTCTCTCTCTCCCTCTCTCTTTTCCCCTTGATCTTGAATCT CCTTATGCAGTGTACCTATGCTACCTATCCCAATTCGGCTATGATATTTTCTCCCTCTCACTGCTAGCGGAAATTTCCAC CGCTTGCCCCTTTGTGTTATTCTTCTGTTTCCTCATAAACCAGCAGGCCTTTGTTATTGGGCGGTTGGGCCCATGTCTTC CCCATCTCCTATACACATTAATAGCTGCATGAAGAGTTTTTGAAATAGCTAACTTATATAGTCATTTAGTCAATCGATCA ATATCTTTTGTTCATATATTCTACTGAAAAATTTGTTTTCTCCTTCCCATAGAGAAGTTATTTCCTTTTTTTTTTCTTCT TGAGATCAGCTTATCAATTATGCTTCCCAACAAAAAAATTCGGTGTTTTATATAGACATCTCTCTTGATCATGTGGGCTT CTGCCTCAACACTTTATATAGCCTAATGGATATTAAATTCTGTTATCCTTGCCAACCAAAAATGTACTTCATAGTTGCAC CTTCAAGTCCATAATTATTGTGATTTCCAATTATAATTGGCAAGTACACAGTATTTCAGAAAATGTCAAAAATAACCTGT AAACATGACATGTCAACCCATATTGACTAGAAATAGGGTTAGCACTTAGCACTGCTTAGTTTCAATACTTTTGTTATTTG TTATTTACATGTTACCATGCTTCAAACCAGTATCATAAGCATTGTTTTCTGCTTCAAATGTTGAATGCAAGTTTCTACCC ATGGTTATTGAATCGAGATTCGACTAATGGTATCTTTTTATGTATCCTGTGGTACAAAATTATTTAGTCATAGATTAACT CATAAGTTGAAATTCTACCTAGTGCTTACATTCCTTCATGCTTTTTGTTTTGCAGTTGAAGAAGCACTGGCACACCCCTA CCTAACATCCCTGCATGACATCAGTGATGAACCTGTGTGCATGACTCCCTTCAGCTTTGATTTTGAACAGCATGCTCTGT CTGAGGAACAGATGAAAGAACTTATATACCGAGAGGCTCTAGCATTTAACCCTGAGTATCAGCAGTAG 

CDS sequence (LotjaGi4g1v0067400.3) extracted from Lotus japonicus Gifu v1.2 CDS.

ATGGAAGGAGGAGGAGGTGCACCGCTTGCTGATACCGACATGTCTGATGCGGCACCGCCGCCGCAGCCTGACCCACATCA TCAGCAGCCGGCGGTGGCGATGGGGATCGAGAATATTCCGGCGACTCTCAGCCATGGTGGCAGGTTCATCCAATACAACA TATTCGGTAACATATTTGAAGTCACCGCCAAATACAAGCCACCCATCATGCCCATCGGCAAAGGAGCTTACGGCATCGTC TGTTCTGCTTTGAACTCGGAGACAAATGAGCATGTTGCTATCAAGAAGATTGCCAATGCATTTGACAACAAGATTGATGC CAAGAGGACTCTCCGTGAGATCAAGCTGCTTCGCCACATGGATCATGAAAACGTTGTCGCAATCAGGGATATTGTGCCAC CACCTCAAAGGGAGGTATTCAATGATGTTTACATTGCATATGAATTGATGGACACTGACCTTCACCAAATCATTAGATCA AACCAAGGATTATCAGAGGAGCACTGTCAGTATTTTCTGTATCAAATCCTCCGTGGGTTGAAGTACATACATTCTGCGAA TGTTCTGCACAGGGACTTGAAACCTAGCAACCTTCTCCTGAACGCCAACTGTGACCTGAAAATATGTGATTTTGGACTGG CAAGGGTCACCTCTGAAACTGATTTTATGACTGAATATGTTGTCACAAGATGGTACCGTGCACCAGAGCTTCTGTTAAAC TCTTCTGATTACACAGCAGCAATTGATGTGTGGTCTGTTGGTTGTATTTTCATGGAACTCATGGATCGAAAGCCTTTGTT TCCTGGCAGAGATCATGTTCATCAGTTGCGACTACTTATGGAGTTGATTGGCACCCCATCAGAAGATGATTTGGGGTTTC TGAATGAAAATGCTAAGAGATACATTAGGCAACTACCTCCTTACCGCCGCCAATCTTTCCAAGAGAAGTTTCCGCAAGTC CACCCTGAAGCTATAGATCTTGTTGAAAAAATGTTGACTTTTGATCCTAGAAAAAGGATTACTGTTGAAGAAGCACTGGC ACACCCCTACCTAACATCCCTGCATGACATCAGTGATGAACCTGTGTGCATGACTCCCTTCAGCTTTGATTTTGAACAGC ATGCTCTGTCTGAGGAACAGATGAAAGAACTTATATACCGAGAGGCTCTAGCATTTAACCCTGAGTATCAGCAGTAG 

Protein sequence (LotjaGi4g1v0067400.3) extracted from Lotus japonicus Gifu v1.2 Proteins.

MEGGGGAPLADTDMSDAAPPPQPDPHHQQPAVAMGIENIPATLSHGGRFIQYNIFGNIFEVTAKYKPPIMPIGKGAYGIV CSALNSETNEHVAIKKIANAFDNKIDAKRTLREIKLLRHMDHENVVAIRDIVPPPQREVFNDVYIAYELMDTDLHQIIRS NQGLSEEHCQYFLYQILRGLKYIHSANVLHRDLKPSNLLLNANCDLKICDFGLARVTSETDFMTEYVVTRWYRAPELLLN SSDYTAAIDVWSVGCIFMELMDRKPLFPGRDHVHQLRLLMELIGTPSEDDLGFLNENAKRYIRQLPPYRRQSFQEKFPQV HPEAIDLVEKMLTFDPRKRITVEEALAHPYLTSLHDISDEPVCMTPFSFDFEQHALSEEQMKELIYREALAFNPEYQQ 

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
MobiDBLite 1 29 29 -
PANTHER 37 398 362 1.4E-240
PANTHER 37 398 362 1.4E-240
Gene3D 47 395 349 1.5E-192
CDD 59 394 336 0.0
SMART 66 351 286 8.7E-100
ProSiteProfiles 66 351 286 46.209
Pfam 71 351 281 1.9E-74
SUPERFAMILY 71 359 289 2.76E-99
ProSitePatterns 72 96 25 -
ProSitePatterns 101 204 104 -
Gene3D 150 378 229 1.5E-192
ProSitePatterns 188 200 13 -

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 Protein kinase activity Catalysis of the phosphorylation of an amino acid residue in a protein, usually according to the reaction: a protein + ATP = a phosphoprotein + ADP.
Molecular function MAP kinase activity Catalysis of the reaction: protein + ATP = protein phosphate + ADP. This reaction is the phosphorylation of proteins. Mitogen-activated protein kinase; a family of protein kinases that perform a crucial step in relaying signals from the plasma membrane to the nucleus. They are activated by a wide range of proliferation- or differentiation-inducing signals; activation is strong with agonists such as polypeptide growth factors and tumor-promoting phorbol esters, but weak (in most cell backgrounds) by stress stimuli.
Molecular function ATP binding Interacting selectively and non-covalently with ATP, adenosine 5'-triphosphate, a universally important coenzyme and enzyme regulator.
Biological process Protein phosphorylation The process of introducing a phosphate group on to a protein.

Expression data

Expression pattern

Expression pattern of LotjaGi4g1v0067400.3, powered by ExpAt. For advanced configuration, data transformation and export options, view expression data in the ExpAt application.

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