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Field | Value |
---|---|
Gene ID | LotjaGi3g1v0040500 |
Transcript ID | LotjaGi3g1v0040500.1 |
Lotus japonicus genome version | Gifu v1.2 |
Description | Receptor-like protein kinase; TAIR: AT1G53430.1 Leucine-rich repeat transmembrane protein kinase; Swiss-Prot: sp|C0LGG8|Y5343_ARATH Probable LRR receptor-like serine/threonine-protein kinase At1g53430; TrEMBL-Plants: tr|K7LV51|K7LV51_SOYBN Uncharacterized protein; Found in the gene: LotjaGi3g1v0040500 |
Working Lj name | n.a. |
Genomic sequence (LjG1.1_chr3:4370620..4381958) extracted from Lotus japonicus Gifu genome v1.2.
GAAAACTGAAGATCGAACCAAAGCCAGTTTTTCCTTTTCACAGACAAATAAATAATGACACAACCAATCAATCCCGTGTA CACACACTGTTTCCTACGTGTGGATTTTGTCGTAATTCCAAAACCTTTTCCTCCTTCAACATAAGATACGGCAGCCACTT TCACTTTCACTCTTTCTTTTTTCTCACAACAAATTGGCCATTTGTCCTTCTACTCCATATAATCGTCGTTACGCTTTTAT AAACTTCACATCATGTTTTGAAACCTTTCTTTCTCCTTCTCTTCCTTTCCCCTCAATCAATCAAAAACTAACAACATAAT TCCTACTAGTAAGTACTAACTCTTGTCGCTTTGCTTCACCTTATCATCATCACCACCTTGTTGTTTTACATCACTAAAAA CGTTTTGTTTTGTGCCCACGAAGGTGAAGAAGAAGCTTTGAAAAATGTGGTTTGGTTCCAAACCCCTCTATGTTCTTATC TTCATGTTTCTGGCTTTGAATTGCTTTCAAGACTTCAGATCCAACGCTCAACTCATTCCTGAAAATGAAGGTATGTTTCC AACTTTGCTTCCAATTTTGTTTTTTTAAATGTTTATTGCTTTGTTTTGATTGTAAAGAGTTGCAGTTATTATTGGAACAA CAATAAGAACTTTTTTGAAACTGCCTTTATGTTATGGCTTTATTTAACCACCGTTCTTCAAACCGTTCCCACTTAGAAAA TTAACAAAACTTAATAAGCATTCAATGAAATTCCTATGGATTTAACTAACATAAGGGTGTGTTCTGTTGACTCTGTTTCC ATTTCTGGAATTTAGTTCATGAACTTGAATACCTCTTTTACTATCTGGGTTTACAATTAAATTCTGTTCTGTCAATTGGG TATTTGAATTTATCTGCTGGTAATGGTGTCAATGAGAATGTTCTACTTTGGCCCTTTAATTTTCTGAAATTATTTTGCAT TTGGGTTTTATTTTAATAATTTAACCGTACAGTGTTTTGGTAATTCTATAAAGTTCATGATTAATTGGTCAATGTTGACT GCCTCTATTCCATGTGAGATGGTCTCCTTAATTTGCAAATTGGAAAAGAACAGGAGTAGAGAGCATTTTTTTTATTTAGT TTTGGGGAGACCAATGTTTGGATTAGTCAATAACCTCAAGGTTTGGATTATCCAACTGATATAATACCATAAAATATTTG TTAAAACTGGGATAGATTATGATCATGGCTGAATCATTCATAAGATATTTTACAATTATTGACCATGAAAAAAAAGGTTG AGTGGGGCCAATTGTAAGCATCCTTGGACAACTTGTACAAGCGTTATCTGTTTTTTAGGTGTTGATGTCTGCAAGTATTA AATTTTGGGACCTACTCTACTCCAGAAAAGTAATTTAATGAGAGAAAGAGAAATGTTCCTAAAACTCTCCTTGACATTTT CTTTCTAGCCCTTATTATTTTATTGGTTAAATTAATGCAGGGTCCATTATATTATATGGTTCTATTTTCAATTTGATGAT ATCCATATAAATCCATATAAATTTTAACTGAAAATAAAGTGTTAAGAAAAGAGTGTTGAGATGAGATAAAATAAGTAATC AATGCTTAAAGCTGTAATGGGTGGTGAACTTGTATATGCATTTTTACCAGTGTTATGATTTCATTTGAAAGTTTCAACAC TGAGATTGCAATATGGAGTTGACCTTGTCTATTAGTATTAATTATTGCCAATAACAACTGGGTGACAGTTCAGACGTGCC ACCAGCAATGGCACAAGCAGATTATTGCTCTGCTTCAACTTGCTACAGCTATACTGAGTAAAGAAAATGGGGTGGGCTAC CCCTGTCTTGCTTGCATTAATTAAAAATTAGTTAAGATTTCTTCTTGAAAATAAAATGTTAGTAGTACTTTTTAACCCAT TCTCCATTTAGAAATTATAGATTTCTATGCAATGTAATTATCACATGTTATTAATAGCGCGAATGGAGGAGAATCGCAAC CACTCAAAAAAACTAGACAAGGGGATTCCGTATAGCGGGATGACCACAAAAGGTGGTCACCACTCACCAGAGGTTTATTG GGGGAGGAAGGCAGAGGCGTTCGCGTTTCTCTTCCTCTGAAAGTATCACTTTATGTTTTGAAGTGAAGGACATGTTGATA ACTTGGCTAAAATCCGAAAATTACAGGATAAATCTGCAAATTACTGCTTTATGTTTTAAAGTAAAAGGTATTTTGGTAAA ATTAGACGGAACTTTTCTTATTTACTGAGATGAAAGTTAGTTTATATTTAACTAGTAGCTAAACACACACTTATGTTTAA CTGACCTATGAATTCAGTACTTTTGTGGCCTTTTTTATAATAGCTGCTTTTGCATGGTCAATTTGACATACATTTCAACG TGATTGGTGTGTAACGTGGAAACAAAAGCAAAACCATGCCATCACTCCAACTTTATACACTGATGATATTGGGTTTTCAC TTTTCACGACATGGGGAAAGAGTCAAACATAATCCTTGCATGAAAAGTTTAATTAATATTTTACTGGCCACCATATATGA CCGAAATTTAAAATAAAAAAATTGTTCCCATCACGTATGTGATGACTTGGATTCTTGTGGACCGACATAAAATTAAAAAG TAGCTAAACCAGTTGTCATTTTTTGCATGTTTTAGAAATTTAAAATACTACTAGTAAATAATAGTTCTTATAATATTTTT TATTAGTTTGATAATTTATAGAATTTCAATTGGGTACTTATAGCCATCAAAACAGTAGATCAACAAAGTCAGAGATCTAA TTAAGTTCTCTCTCACGTGGTAAGAGTTGGGTGACATATGAGTTAGGGAGGGTAAGGTTCCGAAATCAATCATTAAGTGT AATTTATCTTTCCGATGTAAAAACATTGATTTTTTTTACAAAGTGTTCAAACATCTGTTCTCTTCATCTATTCAGGCTTT TGATCACTTGGCGTTATGAGATTGTTGAAATATTGACCATCACAACTGGAATTCAACATAGAAAAATATTCATGTTTACA ATTAGACAAGGATAAAGGATTCCCTGGAAAGCAAGTGGTTGCATGATTGAATTCCAACTCTTAAATGGAAAAACTTTATT CTTTGTGTGGTGATTGTATGGTGGGGAATTAGTATCACGATTACTACTGGGCAGTGAGATACTTCAGTGAGTGCAGAAAG AGAAAAAATGAAGGATTCCCTATTCAACAAGTGCCAAACACTGTGGTGATTAAAAGTGACTATTTGAAGCCCTAGATTGG TTGTTTGAACCTTAGGAGATGCATTTTTGGGGAGGCCTAAGACTTTTACCACACCCGAATTGAAATTGTGAAAGCAAATA AGTAAAAAAAAATAAAGATAAAGGATTCCGTGGAAAAGTAAAAAAGATTACCTATTTAACTTTTGCTTTATTATGAGTGT AAAATTCTTTTTTTATTAGTAACAATCATATAGTTTTATTTGTGGTAAAATAGTGATTAAATTCTTCATAATGATAACAT TTCCGGTTCAACATTCTATTGATACTTGATGAATGTTTGAAAGAATAAATCAGGAAGAGCTAGCGACATAAGGGTTAGGG GAATGAAGGGTCAGTGTTTTATGAATTTAAAGATGAAATGCATGTAGCTGAAGCAATTGATTTGTGTCATGTTTGCAGTG AAAACTCTGCAGGCAATATCGGATAAACTAAAGAACTTGAATTGGAAAGTCACAGAAAGTTCCTGCACAGAGGATGGAGG CTTTAATGGAAAGGTGCAAATAGGAGAAAACTTGGAGAGGAATGTCACATGCAATTGCACTTTCCAAAAGAACACTGTTT GCCATGTTACAAGCATGTATGTCTTTTTTCTGTGCAATTCATTTACTAGCATTCTCATTTTCCATCTTATATTAAGTTCG TTTTTAAAAATCCTTCTAATCGATTCTGAAGTCAAAATCAAGTCTGTGGAGAAGCTTCTATAAGTAGCTTTTGGGGTGCC AAAATTGATTTTGAGAATAGAGAACTTATCCAAAATGCTATAATAGAATTTATCTGATACCATTTTCCCAATGATAGATT GCTCAAGGGTCAGAATATATCTGGAGTTATGCCAAGTGAATTTGCAAATCTCACCCAACTGCAAGAGCTGTAAGTGCTTT GTCCTATAATTATGGCATTAGTTTTAACATTCTTATGCACTTTGGACATGAATGTTTTAAATTGCGATACTTCGTATTGC GGAAAAGTTGTGAACAAACATGGCTGTTGCGGCCGAAATCACGGTTGCAGATCTTGTTTTAAAACCATGGACCTGCTATT CTTCAAGTGAAAGTGAAAATTTGTTAACTTCATAGATTGCACTAGAATCTACTAAAAACGTGACCGGTACTTTTATGCTG TGTGTAGTGATCTCTCTCGCAACTATCTCAATGGCTCAATTCCAACGAGTTTTGCTCGCAGCTCGGTGGTCATTTTGTAA GTCATCACTACCTTTTTCACTTGTATCAACTGTTAACCAATTCTCCTATGAATTTAAACTGTTAGATTAGGACTCAGATT GTTTTATATTAATTTGTTAACTTGGTTGTTGGCAACATTCTTTGAGAGCAAAAAGTTTTCTCAATTCTGAATAATGGGCT TCCATTATTTACCATGTTTTAGTATTTCAAATGCTCAATAATCAGTATACAACCTTTACCGTGATTCAGGGGTCTTCTTG GAAACCGATTAAGTGGTCAAATTCCGCCAGAAATTGGTGATATGGCTAGCTTGGAGGAACTGTAAGTGTGGTAGAAAATT TTATCCAATTGAGAAATGGTTGATATTGGAGGCTGAATACTTGAATTTGAATGATAATACTGGTATGCATGTTTATAGGA TCCTAGAAAATAATCAACTCACAGGACCACTTCCTCCTAGTCTTGGAAATTTGGCCAACTTGAAGAGACTGTAAGACTGT TTCTTTCTCTCCATTTTCATTTGATATATGCACACAATTTAACTATGATTTCACATTGTTATTTTAGTTTTAATTATTTT AAATGAATCTGCAGGCTTCTTTCTTCAAATAACTTTACAGGGACAATACCAGAAACATTGGGCAAACTGAAGAATCTCAC TAATTTGTAAGTGATATGAACTCACACAAATGCTCTTTTTCGCTTTTTTTTAATATCTTTATTAAATTCTAAAGTCACTC TTTACATTTTCTGCAGTAGGATAGATGGAAGCAGCTTATCAGGACAGATACCTAGTTTTATAGGAAACTGGACCAACCTT GAAAGATTGTGAGTATGCCTATGCAGTTAGATCTGTCCACAACTTTTTTTCTTGCTGAAGAAGAAAACAAATTTTATATT GTATGTCATGCTTAACTACTACCTTTCTAGTTGAAGAGTGAGTTTTAATGTTTTTTTGACAGGGATCTGCAAGGAACAGG TTTGAAAGGCCCAATTCCTCCCTCTATATCTGAGTTGAAACTTTTGAAACAACTGTGAGTACTTGCTTGCTTCTTTTTAG AATATTCCTCAATTTGTCTGCATATTGTACTATGGTTATAGAGTGCTGATAAGAACCTTGAGAGAACCATACCACAAAAG CTAAGCTAGCTGTTGTAGTTGGAGAGCCCAAAGCCACATAAACCTCATATTAGAGTCCTATACTTCTAGTGTAAGACTCA AGTCCCATACTTTGCAATTGGGTCCTAACATTCCAGCATGCTCAGCAGCCACCCTTTGGCTAGTTCCGGGTGAACACTGC AATGTCGACATCACCACATGCGCCGCTTTTTTGCAGCTGAGAGATATGTTTGAAGGCTCTAATACCAAAATGATAGGTAC CAGGGAAATGAGAAAAGGAACTGAACTGAAATGCTATTGTATTGAATATTTCTGGTATCCTGAGATGAACTTAGGCCCAG TTTTAGGGAATTGCTATCAGAAGAAGAAAACAAATACAAGCCATATTAGAGAGTGCCCCTCCCTCCAAATTCTTAGCATA CATTCTCCCTCTTCCCCCTCTTAACATACTTCAGTAATTCTAGGCCTAATATTTATTGGCTCTGCATCAAATGCTATCTT CAAAGGTGGAACATAACATTTTGTTTTCATTGATGAAACACCTCTTATCAGGAGAATAACTGATTTGACTGGACCAACTA TGACGTTTCCAGATCTGAAGGATGCCACAAAAATGGCACGACTGTGAGTTGAAACATTTTAAGCTAATTTTTTCGGAACC ATATAATCTTTTGGGCTTTTAATGGAATGGTATTTTTATGTTATTCAGGGAATTGAGAAATTGCCTAATCACTGGTCCCA TTCCAGATTACATTGGTGAGATGAAAAAATTGAAAACTTTGTAAGTTTCATCAAATGGGTATTGAATTCAAGTCTCTTCA ACTTTTTTTTAGAAGTATCTGGTACATCTCATGACTCATGAGATTCAGTACTGCTTGTAATTTATAGCCGTCTTCTTTTT CTTGCAGAGACCTCAGCTTCAATAGGTTGACTGGTCCAATCCCTGATTCAATTCAGGAATTGGAGGAACTAGATTACATG TAAGTGAACATTCCATTTCCTGACCAAGAAGATTTGTCAGAAGGATATGCAGATTCTGCTAGTAATTTGATATCTGGAAA TTTTGTTGCATTTTCCTTATTGATTTAACTTTCTGTGATCATAAATGAGATAGATATTTTTATATGGATGCAGGTTTCTG ACTAATAATTCTTTGAGCGGACCAATTCAAGACTGGATAATGAACTTCAAAAAAAACATGTGATACTCCTTCCAGTTCTA TATCTTTTATGATTAATCTTGAGTAGTAATTGAATTATGAAGGAACTAAAATTCAATCTAACTATATGCTATCTTTCAGG GATTTATCTTACAACAATTTTACAAAGTCTTCTGCAACTACCTGCCAGCAATTGAATGTGTAAGGTTCTCTTTGTCAAGC ACTATATAAGAATTTCACATATGTCAACACTAACCTACTATACTATCTCTGAGCAGGAACTTGGCTTCAAGCCATTCTTC TTCAGCGGTTACTTCACCTTTGTAAGTTCTTTTGCTTATTTTCCATTTGTCTTATCAAAATTGACTCATCTGCTGAAACT CACTTTGTTCATCTTCATCTTGTAGAACCTTTTGTTTGAAGAGAAACCTACCTTGTGCTGGAAAACCCAAGTGTGAGTGT TGAAATTTAGTAGATCAAACATGTATTGGTACATGAGAATTATTTCTTAAATTTTTTAAATAGAGCTGTGTGATAGTTTC TTTCTGAAGTAATTTGTGATGAGATTTTTACCATGCCTCTGCAGATCATACAATGTTCATAAACTGCGGAGGACCTGAAG GAGAGTTTGAGGGAAATGACTATGTAGGAGATCTCCAGAAAGCTGGCATTTCAAACTTTGATTTAGGAAATGAAGGACTA TGGGCTTATAGCAGCACAGGAGTGTATCTGGGAAATGATAATGCAGAATTTACAGCGAGCAATACATTTTCTTTGAATGT TAGTAGCCCAGCGTACTATCAAACTGCACGTCTTGCCCCTCTGTCACTCAACTACTATGGTTTTTGTATGCTGAAGGGAA ATTATAAAGTGAAGCTCCATTTTGCTGAGATTATGTTTTCTAATGACCAGACTTTTAGCAGTCTCGGAAGGCGCATATTT GATGTTTCAATTCAAGTGAGTAGTACTACTGAAGCAAAAATGGTTGATTCTAACATTTTTAGCATGTTTTGCATCTGGTA TTTGAAAGGAATAGTTTTCCTCAACTGAAGGTAGAAAATTTTCAATGCTGCATCTTTATAGGGTTTTAAATACTTGAAAG ATTTTAACATTATGGAAAAAGCTGGTGGAGTTGGAAAGGGAATCACTGAAGAATTCAACGTCGATGTTAATGATAGTACC TTGGAAATCCACTTATACTGGGCAGGGAAAGGAACTACTGCCATTCCTGATAGAGGTGTATATGGACCACTTATATCTGC TATCTCAGTAACACCAAGTAAGTTCTTTTCTTATTATTATTTGTTTCCCATCTTTCTTTCAACTACCAATTCATGTCATC GTCATGTTCTATATGAATTTCTACTTTGTTGTAGACTTCAAAATTCCTTCTGAAGGAGGGCTTTCTGGTGGAGCTATTGC TGGAATTGTGATTGGATTATGTGTGTTTGTCATACTGATACTTGGTGTACTTTGGAAGATGGGTTTCATTTTCAAGAAAG ACACAACAGATAAAGGTAAGGTTCATGTTCAAAATAAAGTTTTGCTGCTCTTGTAATTAGCTTTTTGTTTATGGAAGAAT GTGAATCTACAATCTATGATATGGTAATAAACATAGTTTTCATATCTTGACATTTATTATTTGAGGACATCAAATTTTAC TGTGAAGATCCAAAATGATGACAGGTTTAAAAGAAATTGCAGACTTGGGTTCATTATTGTGACAAATAAATTCTTTTTTT TTTCAAGGACCTACATTTCTCTTTTCTTTTCTTTTTTTTTCTCTTATTCACTAATTTTTTTTAATCTGAATAGTAATTTT ATTTATAAATTTTTCTTGTCGCAGACCTTCTAGATCTGAAAACAGGTTATTTCAGCTTAAGACAAATTAAAGCAGCCACT AATAACTTTGACCCTGCAAACAAGATAGGTGAAGGAGGGTTTGGACCAGTATACAAGGTAATTTGGATACATTAGAGTTA TCTGACTTAGATTTTGTTTGGATACAAACTAAAGAACACTCATTGGAGCTTATCTACTAGAAAATGCACGAGATGATAAG CTTCCATAAGTGCTATTTGCTCCGTATCCAAACGGGCTCTTAGAAGTATAAGGTTTCAAATTTCAAAATACTGGAGCATG CCACTTATCCCACAATATTTCTATATACAAAACATGATACTGAAGCCATGGCTGAATCACAGGGTGTGCTGTCAGAGGGT GATGTGATTGCTGTTAAACAGCTCTCCTCCAAATCAAAGCAAGGGAACCGCGAATTCATCAATGAAATTGGGATGATATC TGCTTTGCAGCACCCAAATCTTGTGAAGCTTTATGGCTGTTGCATTGAAGGAAACCAGTTGCTGCTGGTATATGAATACA TGGAGAACAACAGTCTTGCCCGCGCACTTTTCGGTAAATGCTTCATTAGCAATGAGTACCTAGTGGTTGTGTGCATAATA TGATTTTACTTCAATATTAAGATGCAGATGAAAAATATTTTTTTCTTCACCCTGCTATTCTGCTAGGTAATGAAGAACAG AAGCTGAATTTGAACTGGCGTACAAGGATGAAGATCTGTGTGGGAATAGCAAAGGGATTAGCTTATCTTCATGAGGAATC AAGATTGAAAATAGTTCACAGGGATATTAAGGCAACCAATGTCTTACTTGACAAGGATCTGAAAGCCAAGATCTCTGACT TTGGGTTAGCCAAGCTTGATGAAGAAGAAAATACTCATATCAGTACTCGGATAGCTGGAACAATGTTAGTACTACACCAC TTCTATGAGCTAGAATTCAAGACTTAGTACATGTTTGAAAGTTTTCTACAATTGATTCTTAAAGTCAAAATCAATTGATT CTAAGAAAAATAAGCTGATCCTAACATGATATTAGTTCCTAATTAGTCGGTATCTTATTGTTAGCATAAGAAATTGGCTT GCACTACTATCCACAATCTGTCTACTGCATGAAGTTATAATCACTAAAATAATCCTAGAAATACTTATGTTTCATTGCTT TGTGAAGTTACTAACTCTTGGCCCTTACATGTCTTGATAGTGGTTACATGGCTCCAGAATATGCTATGCGGGGATACTTA ACTGATAAAGCAGATGTATACAGCTTTGGGATTGTGGCTTTAGAGATTGTTAGTGGAAAAAGCAATACAAATTACAGGCC AAAGGAGGAGTTTATATATCTTCTTGATTGGGTAAGTTGGAATTTCAGTTCAACAAATTCATAAGATCTTTGCCGTGTTC ATCCTAGTCTTAATCCACATCTGGCTGCAAAAGCTCATTTTCAAAAGTTCATATCCTTCTGATTGCCGCCTTCTCTCGTA CTTGACCAATAGGTTATTGCTTAGAGTGATAAATGTTATGTCATGAGTCATGACAGATAATAATGAGCTATGAAATTAAC ATTTTAGTAATGAACAAGAAGAGCGTAGCACAACCCTTTTACATTAGAGATGGAATGAGAGAGCTACCTTTTATACAATT GTTTTGTGTTTCTTGTTTCTACTATATTTATGGTTTGGTTAAATTTCTAATTACCACAATCTTGCATGCCTATGAAGGCC TATGTTCTCCAAGAGCAAGGAAACCTTCTGGAACTGGTGGATCCAGGTCTTGGTTCAAAGTACTCCCAAGAGGAGGCAAT GAGAATGCTGAGCTTGGCACTCTTATGCACCAATCCATCTCCAACTCTCAGACCACCCATGTCATCTGTAGTGAGCATGC TCGAAGGAAAGATCCCGATCCAAGCGCCGATTATCAAGCGCAGCAATGACAGCGACCAACAGGCAAGATTTAAAGCCTTT GAGCTGATATCACAAGACAGCCAAACTCTTTATTCGATGTCGCAGGCGAGTACTGAGCAAAGACACATATCAAGTGATGG ACCATGGGTTGACTCCTCTATATCTCTTCAAAGTGGAGAGCATGAAACTTCATCCAGTAAGCTTCTTTGAGATTCACATG GTGTATGCTTCACTCAAAAGTTTAGAGAGGAGGGCAGTGATATACAGTAACAGAAGAGTGATAGCCTTATTTGTTGCAAA ATTCTGGTTTTGAGGCATTTCTCATGTTTTGTTCTTTGTCAAGATTCATATTATTGATTTTCAGTTTTAAATCTCCATCT GCCTTTGCTGGTGGTAGTAAACAATGTGAATATATACAGCAAGTTTTATTTGCATGGATTGAGAAGACTAGGAGAAAGTG GTCTTTGAAACTATATCCTTGTGCTACTTTTAGTATGCAAATTGCAGTTTACATATCAGGTAGTGAAGGCGAAGTTTACA AAAATCTATTAAGTTGGGATCATCATCTCACCTATTTCTGAATTGTAGAAATCATGTGTATAAATGTGACCTTAATTTAG TCTGATTTTTTTTTTGCCAATCTTAAAGTGCATTCGCTTACATTCCTGTACATATTTTTCAATTAATTTGATTTTAAAAT AGTATTTGCTATCAATTACTTGTGAAGAAACTATTATTGTTTTTGGGATGCCCTGTTTAGTTCTACAACACTTGAGAAGG ACACTGTCCTTTGTCTTGACTTTTGTCTAAAGGAAGCAGGTGTTGTCATGCCCCATTAC
CDS sequence (LotjaGi3g1v0040500.1) extracted from Lotus japonicus Gifu v1.2 CDS.
ATGTGGTTTGGTTCCAAACCCCTCTATGTTCTTATCTTCATGTTTCTGGCTTTGAATTGCTTTCAAGACTTCAGATCCAA CGCTCAACTCATTCCTGAAAATGAAGTGAAAACTCTGCAGGCAATATCGGATAAACTAAAGAACTTGAATTGGAAAGTCA CAGAAAGTTCCTGCACAGAGGATGGAGGCTTTAATGGAAAGGTGCAAATAGGAGAAAACTTGGAGAGGAATGTCACATGC AATTGCACTTTCCAAAAGAACACTGTTTGCCATGTTACAAGCATATTGCTCAAGGGTCAGAATATATCTGGAGTTATGCC AAGTGAATTTGCAAATCTCACCCAACTGCAAGAGCTTGATCTCTCTCGCAACTATCTCAATGGCTCAATTCCAACGAGTT TTGCTCGCAGCTCGGTGGTCATTTTGGGTCTTCTTGGAAACCGATTAAGTGGTCAAATTCCGCCAGAAATTGGTGATATG GCTAGCTTGGAGGAACTGATCCTAGAAAATAATCAACTCACAGGACCACTTCCTCCTAGTCTTGGAAATTTGGCCAACTT GAAGAGACTGCTTCTTTCTTCAAATAACTTTACAGGGACAATACCAGAAACATTGGGCAAACTGAAGAATCTCACTAATT TTAGGATAGATGGAAGCAGCTTATCAGGACAGATACCTAGTTTTATAGGAAACTGGACCAACCTTGAAAGATTGGATCTG CAAGGAACAGGTTTGAAAGGCCCAATTCCTCCCTCTATATCTGAGTTGAAACTTTTGAAACAACTGAGAATAACTGATTT GACTGGACCAACTATGACGTTTCCAGATCTGAAGGATGCCACAAAAATGGCACGACTGGAATTGAGAAATTGCCTAATCA CTGGTCCCATTCCAGATTACATTGGTGAGATGAAAAAATTGAAAACTTTAGACCTCAGCTTCAATAGGTTGACTGGTCCA ATCCCTGATTCAATTCAGGAATTGGAGGAACTAGATTACATGTTTCTGACTAATAATTCTTTGAGCGGACCAATTCAAGA CTGGATAATGAACTTCAAAAAAAACATGGATTTATCTTACAACAATTTTACAAAGTCTTCTGCAACTACCTGCCAGCAAT TGAATGTGAACTTGGCTTCAAGCCATTCTTCTTCAGCGGTTACTTCACCTTTAACCTTTTGTTTGAAGAGAAACCTACCT TGTGCTGGAAAACCCAAGTATCATACAATGTTCATAAACTGCGGAGGACCTGAAGGAGAGTTTGAGGGAAATGACTATGT AGGAGATCTCCAGAAAGCTGGCATTTCAAACTTTGATTTAGGAAATGAAGGACTATGGGCTTATAGCAGCACAGGAGTGT ATCTGGGAAATGATAATGCAGAATTTACAGCGAGCAATACATTTTCTTTGAATGTTAGTAGCCCAGCGTACTATCAAACT GCACGTCTTGCCCCTCTGTCACTCAACTACTATGGTTTTTGTATGCTGAAGGGAAATTATAAAGTGAAGCTCCATTTTGC TGAGATTATGTTTTCTAATGACCAGACTTTTAGCAGTCTCGGAAGGCGCATATTTGATGTTTCAATTCAAGGTTTTAAAT ACTTGAAAGATTTTAACATTATGGAAAAAGCTGGTGGAGTTGGAAAGGGAATCACTGAAGAATTCAACGTCGATGTTAAT GATAGTACCTTGGAAATCCACTTATACTGGGCAGGGAAAGGAACTACTGCCATTCCTGATAGAGGTGTATATGGACCACT TATATCTGCTATCTCAGTAACACCAAACTTCAAAATTCCTTCTGAAGGAGGGCTTTCTGGTGGAGCTATTGCTGGAATTG TGATTGGATTATGTGTGTTTGTCATACTGATACTTGGTGTACTTTGGAAGATGGGTTTCATTTTCAAGAAAGACACAACA GATAAAGACCTTCTAGATCTGAAAACAGGTTATTTCAGCTTAAGACAAATTAAAGCAGCCACTAATAACTTTGACCCTGC AAACAAGATAGGTGAAGGAGGGTTTGGACCAGTATACAAGGGTGTGCTGTCAGAGGGTGATGTGATTGCTGTTAAACAGC TCTCCTCCAAATCAAAGCAAGGGAACCGCGAATTCATCAATGAAATTGGGATGATATCTGCTTTGCAGCACCCAAATCTT GTGAAGCTTTATGGCTGTTGCATTGAAGGAAACCAGTTGCTGCTGGTATATGAATACATGGAGAACAACAGTCTTGCCCG CGCACTTTTCGGTAATGAAGAACAGAAGCTGAATTTGAACTGGCGTACAAGGATGAAGATCTGTGTGGGAATAGCAAAGG GATTAGCTTATCTTCATGAGGAATCAAGATTGAAAATAGTTCACAGGGATATTAAGGCAACCAATGTCTTACTTGACAAG GATCTGAAAGCCAAGATCTCTGACTTTGGGTTAGCCAAGCTTGATGAAGAAGAAAATACTCATATCAGTACTCGGATAGC TGGAACAATTGGTTACATGGCTCCAGAATATGCTATGCGGGGATACTTAACTGATAAAGCAGATGTATACAGCTTTGGGA TTGTGGCTTTAGAGATTGTTAGTGGAAAAAGCAATACAAATTACAGGCCAAAGGAGGAGTTTATATATCTTCTTGATTGG GCCTATGTTCTCCAAGAGCAAGGAAACCTTCTGGAACTGGTGGATCCAGGTCTTGGTTCAAAGTACTCCCAAGAGGAGGC AATGAGAATGCTGAGCTTGGCACTCTTATGCACCAATCCATCTCCAACTCTCAGACCACCCATGTCATCTGTAGTGAGCA TGCTCGAAGGAAAGATCCCGATCCAAGCGCCGATTATCAAGCGCAGCAATGACAGCGACCAACAGGCAAGATTTAAAGCC TTTGAGCTGATATCACAAGACAGCCAAACTCTTTATTCGATGTCGCAGGCGAGTACTGAGCAAAGACACATATCAAGTGA TGGACCATGGGTTGACTCCTCTATATCTCTTCAAAGTGGAGAGCATGAAACTTCATCCAGTAAGCTTCTTTGA
Protein sequence (LotjaGi3g1v0040500.1) extracted from Lotus japonicus Gifu v1.2 Proteins.
MWFGSKPLYVLIFMFLALNCFQDFRSNAQLIPENEVKTLQAISDKLKNLNWKVTESSCTEDGGFNGKVQIGENLERNVTC NCTFQKNTVCHVTSILLKGQNISGVMPSEFANLTQLQELDLSRNYLNGSIPTSFARSSVVILGLLGNRLSGQIPPEIGDM ASLEELILENNQLTGPLPPSLGNLANLKRLLLSSNNFTGTIPETLGKLKNLTNFRIDGSSLSGQIPSFIGNWTNLERLDL QGTGLKGPIPPSISELKLLKQLRITDLTGPTMTFPDLKDATKMARLELRNCLITGPIPDYIGEMKKLKTLDLSFNRLTGP IPDSIQELEELDYMFLTNNSLSGPIQDWIMNFKKNMDLSYNNFTKSSATTCQQLNVNLASSHSSSAVTSPLTFCLKRNLP CAGKPKYHTMFINCGGPEGEFEGNDYVGDLQKAGISNFDLGNEGLWAYSSTGVYLGNDNAEFTASNTFSLNVSSPAYYQT ARLAPLSLNYYGFCMLKGNYKVKLHFAEIMFSNDQTFSSLGRRIFDVSIQGFKYLKDFNIMEKAGGVGKGITEEFNVDVN DSTLEIHLYWAGKGTTAIPDRGVYGPLISAISVTPNFKIPSEGGLSGGAIAGIVIGLCVFVILILGVLWKMGFIFKKDTT DKDLLDLKTGYFSLRQIKAATNNFDPANKIGEGGFGPVYKGVLSEGDVIAVKQLSSKSKQGNREFINEIGMISALQHPNL VKLYGCCIEGNQLLLVYEYMENNSLARALFGNEEQKLNLNWRTRMKICVGIAKGLAYLHEESRLKIVHRDIKATNVLLDK DLKAKISDFGLAKLDEEENTHISTRIAGTIGYMAPEYAMRGYLTDKADVYSFGIVALEIVSGKSNTNYRPKEEFIYLLDW AYVLQEQGNLLELVDPGLGSKYSQEEAMRMLSLALLCTNPSPTLRPPMSSVVSMLEGKIPIQAPIIKRSNDSDQQARFKA FELISQDSQTLYSMSQASTEQRHISSDGPWVDSSISLQSGEHETSSSKLL
Data for domain prediction are obtained with InterProScan, and merged with InterPro data obtained from the EB-eye REST service.
Prediction algorithm | Identifier | Start | End | Length | E-value | InterPro ID |
---|---|---|---|---|---|---|
Phobius | 1 | 7 | 7 | - | – | |
SignalP_EUK | 1 | 28 | 28 | - | – | |
Phobius | 1 | 28 | 28 | - | – | |
Phobius | 8 | 18 | 11 | - | – | |
Phobius | 19 | 28 | 10 | - | – | |
Phobius | 29 | 604 | 576 | - | – | |
Gene3D | 37 | 201 | 165 | 1.2E-35 | ||
PANTHER | 80 | 1006 | 927 | 0.0 | – | |
PANTHER | 80 | 1006 | 927 | 0.0 | – | |
SUPERFAMILY | 82 | 368 | 287 | 1.11E-49 | – | |
SMART | 113 | 136 | 24 | 19.0 | ||
Pfam | 115 | 134 | 20 | 1.6 | ||
SMART | 160 | 183 | 24 | 87.0 | ||
Pfam | 162 | 184 | 23 | 1.1 | ||
SMART | 184 | 208 | 25 | 30.0 | ||
Gene3D | 202 | 267 | 66 | 3.3E-16 | ||
Gene3D | 268 | 391 | 124 | 4.8E-24 | ||
Pfam | 283 | 341 | 59 | 4.9E-7 | ||
SMART | 304 | 328 | 25 | 95.0 | ||
Gene3D | 406 | 594 | 189 | 6.8E-17 | – | |
Pfam | 410 | 591 | 182 | 4.1E-38 | ||
Phobius | 605 | 629 | 25 | - | – | |
TMHMM | 607 | 629 | 23 | - | – | |
Phobius | 630 | 1010 | 381 | - | – | |
Gene3D | 632 | 739 | 108 | 1.5E-37 | – | |
SUPERFAMILY | 648 | 936 | 289 | 1.75E-81 | ||
SMART | 664 | 933 | 270 | 4.4E-35 | ||
ProSiteProfiles | 664 | 946 | 283 | 40.131 | ||
Pfam | 668 | 934 | 267 | 1.1E-50 | ||
CDD | 670 | 937 | 268 | 1.31353E-102 | – | |
Gene3D | 740 | 959 | 220 | 1.4E-61 | – | |
ProSitePatterns | 786 | 798 | 13 | - | ||
MobiDBLite | 974 | 1010 | 37 | - | – |
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 | 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 | Protein phosphorylation | The process of introducing a phosphate group on to a protein. |
Expression pattern of LotjaGi3g1v0040500.1, powered by ExpAt. For advanced configuration, data transformation and export options, view expression data in the ExpAt application.
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