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LotjaGi2g1v0221800.3

Overview

Field Value
Gene ID LotjaGi2g1v0221800
Transcript ID LotjaGi2g1v0221800.3
Related isoforms 4
Lotus japonicus genome version Gifu v1.2
Description Kinase-like protein; TAIR: AT2G20050.1 protein phosphatase 2C and cyclic nucleotide-binding/kinase domain-containing protein; Swiss-Prot: sp|Q9SL76|P2C19_ARATH Protein phosphatase 2C and cyclic nucleotide-binding/kinase domain-containing protein; TrEMBL-Plants: tr|I1J805|I1J805_SOYBN Uncharacterized protein; Found in the gene: LotjaGi2g1v0221800
Working Lj name n.a.

Sequence information

Genomic sequence (LjG1.1_chr2:67697302..67706379) extracted from Lotus japonicus Gifu genome v1.2.

ATGGGTTGCATTTATTCAAGGGTATGCATTGGTGACACTTGCAGAGGCTCAAGCGTCAATGGTGACCCAGTTGTGAGAAC TGCCATAGGTGAAGCTGCTGAGTTCTCAGAAGCTTCTTCTGATGTTCAGGAAGGTGAAATCAGAGACCAGTTGAACCAAT TGAGCTTGACCAGAGACCCTGAAGCTGGAATCAGAAGGCTTGCTAGGGTTTCAGCTCAGTTTCTTCCCCCTGATGGTTCA AGAGTAGTGAAGGTTCCTTCAAACAACTTTGAATTGCGTTACTCTTTCTTGTCTCAGCGTGGTTACTACCCTGATGCCCT TGATAAGGCTAACCAGGACAGTTTCTGCATTCATACCCCATTTGGGACTAACCCTGAGGACAATTTCTTTGGTGTTTTTG ATGGGCATGGTGAATTCGGAGCGTTGTGTTCGCAGTTTGTGAAGCAGAAGGTGTGTGAGAATTTGCTGAGGAATTCTAAG CTTCATGTTGATGCTGTGGAGGCTTGTCATGCTGCTTTCTTGACCACGAATTCGCAGCTTCATGCTGATGTTTTGGATGA TAGTATGAGTGGTACTACGGCGATCACGGTGTTGGTGAGGGGGAAGACGATGTATGTTGCGAATTGCGGGGATTCGAGGG CTGTGATTGCTGAGAGGAGAGGGAAGGATATTGTGGCGGTTGATTTGTCTGTTGATCAGACTCCTTTTAGGAATGATGAG CTTGAGAGGGTGAAGCTTTGTGGAGCTAGAGTGCTTACATTGGATCAGATTGAAGGGCTGAAGGACCCTGATGTTCAGTG TTGGGGGACTGAAGAGGATGATGATGGTGATCCTCCTAGGTTGTGGGTGCCTAATGGAATGTACCCGGGTACCGCTTTTA CAAGGAGCATAGGGGATTCTATTGCTGAGACTATTGGGGTTGTTGCTAACCCTGAGATTGTTGTCTTTGAGCTCACACAG AACCACCCTTTTTTTGTGCTTGCCAGTGATGGGGTGTTTGAGTTTCTCTCTAGCCAGACAGTGGTTGAAATGGTAAAGTC TTTATTATGCTTCTTCCTTTCTCTCCCTTCCTTTTAAATCAGGATTAGTATTATGCAAGAGCATATATTCTTGCCTTTTA CTCTTTCTATTGTTAGATTTGCTTTTGGGTCTGCTGAAAAGGCAAGTTAGTGGCAACGTTATTATTATCACATTTCAGTA GCAATCACTAATGGGAATAATTGACATACTTGAAATAAGGAATTAGGAATTCTCTCTTACAAACAATTATGCAATGAGTG ACTTTTTTAATAGAAAAGTCACCCATGAGCATAATAAATCTTCTAGGAAACTAAGGGAAACAAGATTGTCCCATAAAAGG AATGTTAAAGGAAATTCACTGCTAACATTTCTGGAATTGTGCTCCAGTGAAGTACACTAGACTGAAGCTTAAGGAGCACA GTGCTAAAACATTTTAGTATCCCTCCTATGTGCAAAACCATGAGTGAATGAAACTGTTTATGTGGGGGCATTGTTCAGAA TTATCACTTTTTGGTCATAATTTACAAAATTAATCATGTTTATTTTATTTTATTTTACAAAATGAGGGAAAGCAATTGAA GCCATTTCTGTTTTAAGCACAATTGGGATTTTCCGAATTGAAGGTACTGTCCAAATGAGTCCAAGGTTACCATTTAGTGA TCAAAGTTGTTTTGAAGCGAAACTAGTGATTTTTTGGGAGGGTGCAATTATGCAACAACCCGACAAGAATTGGAATTTCA TTGATTTTAGTCTCTAAATTGTTGAATTTTATAATTTTTACTTTTGTTCCCAACTAATCACAATTCATGGGTTATGCTCT AAATTTAGCCTGTACATCTAATAATTGAAACGTGTAAGAATTAATTGTAAACTTAATGTTTTGCTTTTGGTAATTCAGAG CTATATGACTATATGAGGATTTTTTTATCTAGCAAATCATTCTCATTCATGTAGGATGTATAAGGAAATAAAACATAAGC CCTACCACTATGTTGGTGTACGGGTATTTTCTCTCTAGTGAGATGCTTTGTTCATAAAAGGTTGGATACAGACTAGATGG AGACATCAGTTACTTCCAACCCATCTTTCCGAAATTCAAATTTAAGCATAAGGCTAACCTTATGGTTCAGATAATGATAC ATATGGATGACCATGTGCATTTGGCTGTAGAACAACTAAGTTCTGTAAATTTAATGCAAAGCATCTAAATGAACCTAGAT TTCATCTGCCATTCAATTTGAGTCAAATGTTTCATCTCTTAATTTGCCATTATGCTTTCAGGTTGCAAAGTTCAAAGATC CCCGTGATGCTTGTGCTGCAATAGTGGCAGAATCTTATCGACTTTGGCTACAGTATGAAACTCGTACAGATGATATTACA GTCATCATTGTGCACGTAAATGGGCTGACTGAAGTATGATCCCGCTTCTATTCTTGTATTCTATTTCCTAGAAATATTCA TTCCCCTTTTTCATTTTTAGTAAATAACCTAGTTTTTTATTTATTTAATTCAGCCTGCTGTTGGTCAGTCAGCAAGTTAT GGTAATGTTTTCGCAACCACCATGCCTCAAGTTGTAGAGGTGACAGGATCTGAATCCCCTTCCACCTTTGGCTGGAATGC TAGGAACCCTCGTGTAAGGCATGACTTGTCAAGGGCACGCATCAGAGCAATTGAAAGTTCCCTAGAGAATGGACAAACAT GGATTCCTCCATCTTCAGCCCACCGAAAGACATGGGAGGAAGAAGTAAACCCTAATTTAACTTTGCCTTTACAATTGAGT TAGCTCCTCAATTTTTCCTTTTTACTTGACATTGATAATAACATTGTTATGTTAGTATAAATTCGTAAATTTAATTTCTC CCATTGAGAAGTTCATGAATTGTGAACCTTGATTGTGCTTCATCTTCATCTGCCACAGGCACACATAGAACAGGCATTGC ATGATCATTTTCTCTTCCGGAAGCTTACTGATTCTCAGTGTCATGTTTTATTGGATTGCATGCAAAGAGTTGAGGTACAA CCTGGGGATATTATTGTCAAACAGGTCAGTTTTCTAGTTGAAACTTGAAAATTCTTGAGTGCCATTGTTACCTTTTGTAT ATTTTTCTGGCTGAATGGAGTTTACTATTCTTGACTGAAACTTACACTGGATCTTATTAAAATTTCTCTTGTGGAGTAGT GCTAGCAAACACAGAAACACTCTCCAATGCACTCGTTTCAGCATTATCTCTTTTATCGGGAAAAATTCATGTGGGTCCTT CCAAATTGTGTCTGGGACCCACCAAAGTAGGGGTGAGACCCGTATGATTTAGTGGATCCCGCATGAGTTCTAACCAATGA GAGAGTTTGTTGAAAAGAATGTGTTACACTTCTCTTTATTCTTGCCTCAATTGGATTTTATAATTGCACAAAGTGTGACA AAAACTATACTTGCAGGGTGGTGAAGGTGACTGTTTTTATGTTGTTGGCAGTGGAGAATTTGACGTCTTGGCAACTCAGG TTTATAACATTGTCATTTGATTGCAGTAGTGATGGGTGAACACATTCTTATAGGCAAATTTGTAAATATTCCTAGCCAGA GACAAAATCCTGCTGTTGCACCTGCAGGATTTCTAGATATTTCTGTTTTCAAGTCAGCAATTTTTCATTCATGATAAAGT TGAAGCGCAGATGTAACCTCTTTTGAAAACCATCTTTTTGTTATTTTTAAAGCCCAGTTCCGAACTCCAGCTCTTATAAT TGGCTTTGCCCTTGGTATAGTCAAAACATGAAATCATATTTTCAAGGTCTGGGGTCATATCATGAATGCTGCTTGGACCT GGTCGATTCTCAAATTATATTTTTTTTGTATTGTCAATGAGATTTGTTACAAACTTACAATTCTAATTCAACATTTTTCT CAATGGCAGGAGGAAAAGGATGGTGAGGTACCTAGGGTTTTGCAGCGCTACACAGCTGAAAAACTATCATGCTTTGGAGA ACTTGCTTTAATGTGAGTCACACAACCATTTTTTTTCCTTCTTGTGGTCCTTTTACTAAATTGAAGTAGTTGTTTTTAGC ATGAAAAATATCTGAGTATGAGGCCACTCAAGTTTCCTTCTAAGACAATATTAGTTTTTCGCATAGTAAATTTGCAACTT TTGGCATTTACAGGTATAATAAACCACTCCAGGCTTCTGTACGTGCTGTAACAGAAGGAACTCTTTGGGCTTTAAAGCGA GAAGATTTTCGAGGGATTTTAATGTCAGAATTCTCTAACTTATCTTCGTTAAAGTTGCTTCGGTCTGTAGATCTCCTCTC AAGGTTGTCAATTTTGCAACTGAGTCAGATTTCGGACTCCCTCTCTGAAGTTCCTTTCTCAAGTGGGCAAACAATAATTG ATAAAGTAAGCTTTCACTTGGTTACTTGTGTCCATTTGTTCCTCTGTTCTATTCTTATAGTCATTCAGTATGTCTTTGCA GAATGAAGTCCTTGCATTATACATTATCCAGAAGGGACAAGTGAAAATCACTTTTGATTCTGATTTATTGACAAGTCCAA ATGCGTCCAGCCTCAAGCCTGACATCCAAAATGAGGATGGTGATGTACAGAGCATTGGAGAACTGTCAATAGAGAAGCCA GAGGGAAGCTATTTTGGCGAATGGGCACTTCTTGGTGAAAATATTGGCTCCTTGACTGCTGTTGCGGTGGGTGATGTTGT ATGTGCTTTACTAACAAAGGACAAATTTGAATCAATTGTTGGCTCCGTGCAAAAGATTTCTCAGGAAGATCTCAAGTATG TTTTAATATGTGCATGTATCAGACAACAACTTTGTGGTTTCTGCTTATTTGCTTATATGCTGCACTTAAAAACAAAGCTT CATATCATTGGCACCATTAATTTGACCATAGGTTGAGGGATGATTTCGAGTTGACTAGAAAAATTGAATTTTCATCCCTT GAGAATGCCCAGCTCTCAGATTTGGTAAGAGGTATTCTGTTGCTTTCCATTTCATTGGTCTTGAGTTCCTCAAATTAGCT AATAGACTTCATTTTGGTAGGAGTGGAGAAAGACCCTATATTCAACTGATTGCTCTGAGATTGGGCTTGCAAGTTTAAGA GACTCAGGTAGATAAATATTTCTCCAATTTCTTGCTTAAAATACCTATGAATATTTTCGATTCCTTCTTAATTAATAAAA TTTGAGGGATGATATTAGTGGATGTGGATGTGAAAAAACTTTGGAAACCTAATCTTTTAGTAGCAAAAACACCAAAAGAA AAAGAAACCTGGTGCTATAAGCTTCAACCACGACGAGGTTCTGAGAAGGGCTGGACCCATTATGCGTATATTGTAGGTAG TCTTAGCTTGCATTTGCAAAAGGCTTATTTCAAAAGTTGAACCTGTGACCTTCAATTGTTGCATCAAGGCTCCCATTCTT TTTTAAAATATCAATATATTCTTAAAAAAATTCTGATTTTTTTTTTGTTCTTTGATATCTTGGTGTCTTTTTCCCACATC AATTGATAGCATTTAATGTAGTTGAGAGTGATAAAAATAGTGTATGTTGGAGTATGTTTTTGCTGATCAATTTGCTGCAT GGATGCATTGTGCTAGCAGATAATTTGCTTACCATGAAGAGGTTTTCTAAGCCAAAGGTGGAAAGGCTAGGAAAGGAATC ACAAGTTTTGAAAGAGAAAGATTTGATCATGGGCATGAGCTCTTCAGTCTGTGTACCACAGGTTTTATGCACTTTTGCTG ACCGCATATATGCTGGAATAGTGCTAAATACACACCTCGCTTGCCCTTTGTCTTCCATACTCTCAAGTCCTTTTAGTGAA TCAGCAGCACAGTTTTGTGCTGCTTCTGTTGTTACTGCCTTAGAAGACTTGCACAAGGTTCGGTATCTAGAATCATTCTT TTTCCGTGTTTAATTTGCCTCCTTTGGCTAGTGACTCAGGTTATCTTACTTTTCTTCTTTCATGCTTTCATCTTTGGATT TCAGAAAGGTGTTCTCTACAGAGGTGTGTCACCTGATGTTTTGATGTTGGAGCAAACAGGACAGATACAGGTTTGGAAAT TTTGATTTTATTGTTTTTCACCATATTCATGTTTATTAGTGTTATTGATAGTGAATCAGTCATGGAGTAATGCCAGATGG CGATGAAGCAAACAATGGACGCATGGCAGCCATATTAGAGAACTATATAATAAGCATAGTATAAAATGATACAAATCTAA CTACTTATATCAAGAATAATGAAGATAATTAAAACGTTTTCTAAAATATCAAACTTACTAAAAGTATCAAAATTCACAAA CTCAAGTATAAATGCAATCAAGGGCAGAGCCGAGATTTAGTGCGAAGGACATTGAGAGTAAAGGCTACATGTCTTCAAAC ATTCAAGTTAAAAGAAAACCTATCTATCATGCAATATAAGCATAAATTTGAAATACATTCAATTCTGTTAGTCATAGAGG AAGGCCAGTAGAAACAAAAGTCTATCAGAGGAGGGGAAAGGAGAGAGTCAGTCAGTCATGCCATGTGCGCAGTTAGGATT TTCTAACTGTTTGGGGGGAAAACAGAGTTAGAGGTGGTTATAAATAGTTGGGTTGGTTTTGCTAGGGAGTTAGTTAGTTC TGGACTAAGAAATTGTGGAGAGGGTTGGGACTCTTGAATTCCCCAACAACCTGTATCTGTTGCCTAATTCCCAATTAGGG ATTAGGGTTCTTGAGCAATAACAGTCAATTCAGTTGTTCACTGTAGATTGGTTCTAACAATTTCTAAATCAACATGCTAT GAATTAGTAACTTTCTTAGGAAATACTAAGGTTGCATTTCGAGAAAGCTTATTTGAGTTTATACTATAGCATAAACACTC AAGCATGTGTTTGGTTAACCTTATAAAAATAGTTTATGATTTACATCGTTTTAGCTTATTATGATAAACTTCTCCGACTC GCTTATTAAAAACTTCTTATAGCTATGATCTTTCTTTTAAATTTATTTCAATAAGCTTGTGAATAAGTATTAAGTACTTA TGTGATGATTTCTTATTGACAAAAAGCAAAAGCACTGTAAATGTAATTGAATATAAGATAACTAAAAATACAAACCTTCA CTCCTTGCAATGTACAGTACTGTTTCAGGGTGTAAAAGTAATTATTGCCATATCTATGCTAAATATTGTAGGTGGTAGGA ATATTTATACTGAGGTGGACCATCAATTGTCATATCAGTGGTAAATATACTATGTGTATGTGCTTAAAATATTAAAGATC ATTTCCCCACTGCCTCCGCCTCTGACTGCAATAGAAAGAAAAACAGAATACCAAGACAAATACCAAAATATTTGTCTTGA TGTCACTAGAAACTAGCAAGTAGCGACAATTACAACAAATCAAGTCATGACTCATGAGGACCATGAATTGAAAATATAAT CACCCTCCCCAGTCTAATTTTATTTTGGTTAAGAATGTTTTTGACCCATATAAAATAGCAAATTATTGGTTTTGATCCCT TAAATTTTTCTTTGAAATATATCCCCAAATTTTTGAAATACACATGTTTGAGCCCTGAGAGGGACTAAAGCCAAAATTTG AGTACTGAAAATCGTCATTAGCATCATTAAGTGGGTAATTTTTGGTCCAAAAGTTAAAGCCTTAAAAGAGGGTAGTCATC TCATCCACCATGTGGATCATAGATCTACTATACTACCACACTACAATAGCCCATAGCCATGTTGCAGCCACCCGAAAAAC CCTTCGCTCGATCGTCGCTCTTGTACTCTCAATTGCATTTTTTTTTTGTCTGTGTGGCTACAGTAAGAATGAATTCCTAT GCGTAGCTAATGAAGTTGTACTTATACTTCCTCATATAGATGACACGCTGACCCAGCTAATGAAGTTGTACTTATACTTA TACTTCCTCATATAGATAACGCGCTGACCATACTGTAAGACCTGCCATACCATACACAAGCAGCAATTTTATAACCCTGA TGTTCATTTGACTTATGCTGCTATGGACTGATTTTCTTTATTGTCTTAAAACAAACCAGTAGAAAAGGATATCTACATAT AACTTTTCATATTTTAGCACAATGTTACTAATTATTCTAAAATATGTGTCACTGTTGCAGCTGGTGGACTTCAGATTTGG AAAGAAGCTTTCTGATGAGAGAACATTCACAGTTTGTGGAATGGCAGATTCGCTAGCTCCTGAGATTGTTTTGGGAAAAG GACACGGTTTCCCTGCTGACTGGTATAAGTAAAACTTGTATAAAACTATTGATTCCCTGCAAACTTCATAATTCCTTCTT CAGTAGCACACTCTTTATTTTTCTTTAAACATAAATGTAACCTAAGTTAATATTCCATTTGCTAAATGTAAATTCATTTG AACTGTTACCAATACATTTCAATTAGACCTGACACACATTTGACATTACATCAAATTGGAGTGCGTGGTGGTTACTGGTT AACATATATGGTCCTATGTTCCTTGACAGCATTATGTGTGGATTTCAAGCTGACAAACTTCATTGATGGTTATATTGCAG GTGGGCGTTGGGAGTTTTAATATATTTTATGTTACGGGGTGAGATGCCATTCGGATCATGGAGAGAAAACGAACTTGATA CAGTTGCCAAAATTGCAAAAAGGAAGCTACATCTTCCAGAGACTTTTAGTCCTGAAGCTGTGGATCTCATCTCCAAGGTA CATTGCAAGAACTACTCTTGGACAGTATGTGGTATTAGCATGCTTAAAATATTATACATGAAAATTTCTGTGTTACTTAT TCTTTTTATTCGACTTATTTCTTCAGTTACTTGAAGTAGATGAAAGCAACAGACTTGGTAGCCAAGGTCCTGATTCTGTC AAGAGTCACCCATGGTTTAATGGTATTGAATGGGAAGGGATTAGACACCACACTTTTCCTGTTCCGCAAGAAATTGTTTC TCGTATAGCGCAGTACTTGGAAGTTCGTTCTGACGACTGTACTGGTTCTCTGGGGCCCCCATTGCAGGAGGTAGAGGTAG AAGAACTTAATGTGCCTGAATGGCTTGAGGACTGGTAG 

CDS sequence (LotjaGi2g1v0221800.3) extracted from Lotus japonicus Gifu v1.2 CDS.

ATGGGTTGCATTTATTCAAGGGTATGCATTGGTGACACTTGCAGAGGCTCAAGCGTCAATGGTGACCCAGTTGTGAGAAC TGCCATAGGTGAAGCTGCTGAGTTCTCAGAAGCTTCTTCTGATGTTCAGGAAGGTGAAATCAGAGACCAGTTGAACCAAT TGAGCTTGACCAGAGACCCTGAAGCTGGAATCAGAAGGCTTGCTAGGGTTTCAGCTCAGTTTCTTCCCCCTGATGGTTCA AGAGTAGTGAAGGTTCCTTCAAACAACTTTGAATTGCGTTACTCTTTCTTGTCTCAGCGTGGTTACTACCCTGATGCCCT TGATAAGGCTAACCAGGACAGTTTCTGCATTCATACCCCATTTGGGACTAACCCTGAGGACAATTTCTTTGGTGTTTTTG ATGGGCATGGTGAATTCGGAGCGTTGTGTTCGCAGTTTGTGAAGCAGAAGGTGTGTGAGAATTTGCTGAGGAATTCTAAG CTTCATGTTGATGCTGTGGAGGCTTGTCATGCTGCTTTCTTGACCACGAATTCGCAGCTTCATGCTGATGTTTTGGATGA TAGTATGAGTGGTACTACGGCGATCACGGTGTTGGTGAGGGGGAAGACGATGTATGTTGCGAATTGCGGGGATTCGAGGG CTGTGATTGCTGAGAGGAGAGGGAAGGATATTGTGGCGGTTGATTTGTCTGTTGATCAGACTCCTTTTAGGAATGATGAG CTTGAGAGGGTGAAGCTTTGTGGAGCTAGAGTGCTTACATTGGATCAGATTGAAGGGCTGAAGGACCCTGATGTTCAGTG TTGGGGGACTGAAGAGGATGATGATGGTGATCCTCCTAGGTTGTGGGTGCCTAATGGAATGTACCCGGGTACCGCTTTTA CAAGGAGCATAGGGGATTCTATTGCTGAGACTATTGGGGTTGTTGCTAACCCTGAGATTGTTGTCTTTGAGCTCACACAG AACCACCCTTTTTTTGTGCTTGCCAGTGATGGGGTGTTTGAGTTTCTCTCTAGCCAGACAGTGGTTGAAATGGTTGCAAA GTTCAAAGATCCCCGTGATGCTTGTGCTGCAATAGTGGCAGAATCTTATCGACTTTGGCTACAGTATGAAACTCGTACAG ATGATATTACAGTCATCATTGTGCACGTAAATGGGCTGACTGAATCAGCAAGTTATGGTAATGTTTTCGCAACCACCATG CCTCAAGTTGTAGAGGTGACAGGATCTGAATCCCCTTCCACCTTTGGCTGGAATGCTAGGAACCCTCGTGTAAGGCATGA CTTGTCAAGGGCACGCATCAGAGCAATTGAAAGTTCCCTAGAGAATGGACAAACATGGATTCCTCCATCTTCAGCCCACC GAAAGACATGGGAGGAAGAAGCACACATAGAACAGGCATTGCATGATCATTTTCTCTTCCGGAAGCTTACTGATTCTCAG TGTCATGTTTTATTGGATTGCATGCAAAGAGTTGAGGTACAACCTGGGGATATTATTGTCAAACAGGGTGGTGAAGGTGA CTGTTTTTATGTTGTTGGCAGTGGAGAATTTGACGTCTTGGCAACTCAGGAGGAAAAGGATGGTGAGGTACCTAGGGTTT TGCAGCGCTACACAGCTGAAAAACTATCATGCTTTGGAGAACTTGCTTTAATGTATAATAAACCACTCCAGGCTTCTGTA CGTGCTGTAACAGAAGGAACTCTTTGGGCTTTAAAGCGAGAAGATTTTCGAGGGATTTTAATGTCAGAATTCTCTAACTT ATCTTCGTTAAAGTTGCTTCGGTCTGTAGATCTCCTCTCAAGGTTGTCAATTTTGCAACTGAGTCAGATTTCGGACTCCC TCTCTGAAGTTCCTTTCTCAAGTGGGCAAACAATAATTGATAAAAATGAAGTCCTTGCATTATACATTATCCAGAAGGGA CAAGTGAAAATCACTTTTGATTCTGATTTATTGACAAGTCCAAATGCGTCCAGCCTCAAGCCTGACATCCAAAATGAGGA TGGTGATGTACAGAGCATTGGAGAACTGTCAATAGAGAAGCCAGAGGGAAGCTATTTTGGCGAATGGGCACTTCTTGGTG AAAATATTGGCTCCTTGACTGCTGTTGCGGTGGGTGATGTTGTATGTGCTTTACTAACAAAGGACAAATTTGAATCAATT GTTGGCTCCGTGCAAAAGATTTCTCAGGAAGATCTCAAGTTGAGGGATGATTTCGAGTTGACTAGAAAAATTGAATTTTC ATCCCTTGAGAATGCCCAGCTCTCAGATTTGGAGTGGAGAAAGACCCTATATTCAACTGATTGCTCTGAGATTGGGCTTG CAAGTTTAAGAGACTCAGCAGATAATTTGCTTACCATGAAGAGGTTTTCTAAGCCAAAGGTGGAAAGGCTAGGAAAGGAA TCACAAGTTTTGAAAGAGAAAGATTTGATCATGGGCATGAGCTCTTCAGTCTGTGTACCACAGGTTTTATGCACTTTTGC TGACCGCATATATGCTGGAATAGTGCTAAATACACACCTCGCTTGCCCTTTGTCTTCCATACTCTCAAGTCCTTTTAGTG AATCAGCAGCACAGTTTTGTGCTGCTTCTGTTGTTACTGCCTTAGAAGACTTGCACAAGAAAGGTGTTCTCTACAGAGGT GTGTCACCTGATGTTTTGATGTTGGAGCAAACAGGACAGATACAGCTGGTGGACTTCAGATTTGGAAAGAAGCTTTCTGA TGAGAGAACATTCACAGTTTGTGGAATGGCAGATTCGCTAGCTCCTGAGATTGTTTTGGGAAAAGGACACGGTTTCCCTG CTGACTGGTGGGCGTTGGGAGTTTTAATATATTTTATGTTACGGGGTGAGATGCCATTCGGATCATGGAGAGAAAACGAA CTTGATACAGTTGCCAAAATTGCAAAAAGGAAGCTACATCTTCCAGAGACTTTTAGTCCTGAAGCTGTGGATCTCATCTC CAAGTTACTTGAAGTAGATGAAAGCAACAGACTTGGTAGCCAAGGTCCTGATTCTGTCAAGAGTCACCCATGGTTTAATG GTATTGAATGGGAAGGGATTAGACACCACACTTTTCCTGTTCCGCAAGAAATTGTTTCTCGTATAGCGCAGTACTTGGAA GTTCGTTCTGACGACTGTACTGGTTCTCTGGGGCCCCCATTGCAGGAGGTAGAGGTAGAAGAACTTAATGTGCCTGAATG GCTTGAGGACTGGTAG 

Protein sequence (LotjaGi2g1v0221800.3) extracted from Lotus japonicus Gifu v1.2 Proteins.

MGCIYSRVCIGDTCRGSSVNGDPVVRTAIGEAAEFSEASSDVQEGEIRDQLNQLSLTRDPEAGIRRLARVSAQFLPPDGS RVVKVPSNNFELRYSFLSQRGYYPDALDKANQDSFCIHTPFGTNPEDNFFGVFDGHGEFGALCSQFVKQKVCENLLRNSK LHVDAVEACHAAFLTTNSQLHADVLDDSMSGTTAITVLVRGKTMYVANCGDSRAVIAERRGKDIVAVDLSVDQTPFRNDE LERVKLCGARVLTLDQIEGLKDPDVQCWGTEEDDDGDPPRLWVPNGMYPGTAFTRSIGDSIAETIGVVANPEIVVFELTQ NHPFFVLASDGVFEFLSSQTVVEMVAKFKDPRDACAAIVAESYRLWLQYETRTDDITVIIVHVNGLTESASYGNVFATTM PQVVEVTGSESPSTFGWNARNPRVRHDLSRARIRAIESSLENGQTWIPPSSAHRKTWEEEAHIEQALHDHFLFRKLTDSQ CHVLLDCMQRVEVQPGDIIVKQGGEGDCFYVVGSGEFDVLATQEEKDGEVPRVLQRYTAEKLSCFGELALMYNKPLQASV RAVTEGTLWALKREDFRGILMSEFSNLSSLKLLRSVDLLSRLSILQLSQISDSLSEVPFSSGQTIIDKNEVLALYIIQKG QVKITFDSDLLTSPNASSLKPDIQNEDGDVQSIGELSIEKPEGSYFGEWALLGENIGSLTAVAVGDVVCALLTKDKFESI VGSVQKISQEDLKLRDDFELTRKIEFSSLENAQLSDLEWRKTLYSTDCSEIGLASLRDSADNLLTMKRFSKPKVERLGKE SQVLKEKDLIMGMSSSVCVPQVLCTFADRIYAGIVLNTHLACPLSSILSSPFSESAAQFCAASVVTALEDLHKKGVLYRG VSPDVLMLEQTGQIQLVDFRFGKKLSDERTFTVCGMADSLAPEIVLGKGHGFPADWWALGVLIYFMLRGEMPFGSWRENE LDTVAKIAKRKLHLPETFSPEAVDLISKLLEVDESNRLGSQGPDSVKSHPWFNGIEWEGIRHHTFPVPQEIVSRIAQYLE VRSDDCTGSLGPPLQEVEVEELNVPEWLEDW 

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
SUPERFAMILY 81 385 305 2.49E-53
Gene3D 81 384 304 1.8E-67
SMART 89 381 293 2.5E-57
ProSiteProfiles 93 383 291 40.998
CDD 109 383 275 3.41014E-56
PANTHER 119 1058 940 0.0
PANTHER 119 1058 940 0.0
Pfam 120 362 243 5.5E-34
ProSitePatterns 129 137 9 -
SUPERFAMILY 439 582 144 3.8E-27
Gene3D 444 587 144 7.1E-40
SMART 472 595 124 1.0E-12
CDD 472 581 110 7.34176E-23
ProSiteProfiles 472 581 110 26.996
Pfam 491 582 92 1.3E-19
PRINTS 493 507 15 2.4E-8
PRINTS 508 522 15 2.4E-8
PRINTS 543 552 10 2.4E-8
Gene3D 588 739 152 1.1E-25
SUPERFAMILY 591 729 139 6.28E-17
ProSiteProfiles 598 722 125 13.377
CDD 598 730 133 2.60352E-15
SMART 598 736 139 1.3E-8
Pfam 617 721 105 1.3E-9
PRINTS 717 729 13 2.4E-8
ProSiteProfiles 757 1012 256 25.517
Gene3D 760 838 79 4.5E-59
SMART 765 1012 248 1.3E-19
SUPERFAMILY 769 1039 271 2.31E-41
Pfam 780 1012 233 8.3E-32
Gene3D 839 1028 190 4.5E-59

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 Catalytic activity Catalysis of a biochemical reaction at physiological temperatures. In biologically catalyzed reactions, the reactants are known as substrates, and the catalysts are naturally occurring macromolecular substances known as enzymes. Enzymes possess specific binding sites for substrates, and are usually composed wholly or largely of protein, but RNA that has catalytic activity (ribozyme) is often also regarded as enzymatic.
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 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.
Molecular function Cation binding Interacting selectively and non-covalently with cations, charged atoms or groups of atoms with a net positive charge.

Expression data

Expression pattern

Expression pattern of LotjaGi2g1v0221800.3, powered by ExpAt. For advanced configuration, data transformation and export options, view expression data in the ExpAt application.

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