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LotjaGi1g1v0406800.1

Overview

Field Value
Gene ID LotjaGi1g1v0406800
Transcript ID LotjaGi1g1v0406800.1
Lotus japonicus genome version Gifu v1.2
Description Receptor-like protein kinase; TAIR: AT2G25790.1 Leucine-rich receptor-like protein kinase family protein; Swiss-Prot: sp|O82318|Y2579_ARATH Probably inactive leucine-rich repeat receptor-like protein kinase At2g25790; TrEMBL-Plants: tr|I1K9F2|I1K9F2_SOYBN Uncharacterized protein; Found in the gene: LotjaGi1g1v0406800
Working Lj name n.a.

Sequence information

Genomic sequence (LjG1.1_chr1:89566414..89571489) extracted from Lotus japonicus Gifu genome v1.2.

TAATGCAATTACTCATAAGAGATGACTTGTCAAGAAATTACTAGTGAGTTTGGATAAAAGTTATATGTACTCGGCATGCA TGGACGTACTTGTCTCTGAAATAGAATTCTATATATCAGCTAATCCATTTAAATATCCCTGCTTCTTTGAATGGTTGTCT CTTTTACAAACATATTAATGATGATCATTCGCCAAATACACAACAACTTGCACATAAATTGGTTAACAAAGTGCAATGTT CACAACTAATTAAACTTGATAATGATGCTCACAAATCCTTACAAAAGCAGAACCCTGATTTCCGTATCATTGTTCGTTTG TCCAACAGACAGAATATTTCAATGAAACTTCACATAAAAATCTGACAACACAAAACAAACAATCTATGACTATACTTGTT CTCAATTCTAGTTATAGCTTGCCATGCCTTAAATAAAAACACATAAAAGAAAACATACACATCCACCTACTATTTAACAT GTGGATTTCATATACAGAACACATGAAAATCAATAAATTTTAACATGAAACTGATATGACTTATCATTCATGTGTGTTTA GCATTTGGCTATCAGCTTTTCTAAAAAAGAATTAAGAATAGCAAGAGTTTGAACTTTGAAGAGTTTGTTTTCAACGGTAA CAGAAATGAGAAATCCTTTGTCACTTTCCCAAAGTGCTTATCAGTCAAAAAAGAGCATTTTGGTAACAATCCGACAAAAT CAGAGCCTTTTTCCAACATCTGTCCCTGTTTCCCTTTCAACCGTTCGTGTTCAAACACCAATTTCAAAGAAGGTCAAGGT GCAGTTTGGTAATTATCTTTCAACCCAGTGCCCAATTCCATCTCTTCCACCCTCCTTCTATTTAAGCACATAAATCCCTC TCTCTCACATCCAGCCCATTCTCCTCAAATAGTATTTCAAAGAATTTCACTCACTCACTCACTCCCTTCCTTTGCTTTCA ATCCAAGTTCTTCTCTATACTCAATTCACTTTGACCCTGAGCACCATCAACAACACAAAATAAGTGTTCTTCCAATTATG ATCTTTAGGTACGTGATTAGACATTTTCATGATCTAAGCAACTTTTGTTCTTTTTTTGCTAAGTTCATATATTCTATACA TATATCCCAGTGCATGCATGATGCATGCTCCATATATATGAACTTACTCGTATGAAATTATGATTACTAGAAGTCAAGTT TACCACTCATAGCAGCCTGCAAAAGTTGCATGATTTCCCATTTTGTCAGAGATGACACACATTCTTTATTTTTTAAGACT ATATATATATACATATAGGCATAATAAAGAATTCACAACCAATATATATTCTTTCTTTGTGACCATTATTTTTTGTAGGA CATGCTATTGAACTTTGATCACTGATCACTAATATAATTAAAAAGTTACCTTAATCATTCTATGCACTTTTTACAGCTTG GGATCCGAGGAGTTGAAACCAAGGCAGGTTGAAAACTGATCATTTCTGTCAAGAAAATTAAACTCATCAGGAATTAAGAC ATGGCAAGAGGAAACTCAACATGTTCAAATTCAAAGTACCTCATGTTTTTGTGCATCTTCATGTTCATGCTCAACTTCCA CTCATCCCATGGAGAACAACAAGAGCTCCAGCTTCTGTTATCCTTCAAAGCTTCCATCCACGACCCACTTCACTTCCTCT CCAACTGGGTCAGTTCCTCTGCCACTCCCTGCAACTGGCACGGCATCACCTGTGGCGACAATTCCTCCCACGTTACCGCC GTGGCACTCTCCGGAAAAAACATCACCGGCGAGGTTTTCTCTTCCATTTTTCAACTGCCACACGTCACGAGCATCGACCT CTCCAACAATCAACTTGTTGGGGAATTCAATCTTGACATCAACAACAACACTCCTTCTCTGTCCCCACTCCGTTACCTCA ACCTCAGCAACAACAACCTCACGGGGACTCTGCCTCAGTCCTTGTTCTCTGCTTCGTTCTTCAACCTCGAAACTCTGGAT CTCTGCAACAACATGTTTTCAGGGAAAATCCCAGACCAAATAGGAATCCTTTCCAGCTTAAGGTATCTTGACCTTGGAGG AAACGTTTTGGTGGGGAAGATTCCAAATTCCATCATCAATGTCACCACTTTACAGTACCTAACTTTGGCTTCAAACCAGT TAGTGGGTGAAATTCCTGCAGAGATAAGCCTAATGAAGAGCTTGAATTGGATTTACTTGGGGTACAACAATCTCTCAGGT GAGATACCAGGTAGCATTGGGGAACTATTAGCTTTAAACCACCTTGATCTTGTTTACAACAATCTCACAGGAACAATTCC TGAATCTCTTGGGAACCTCACTTCTCTTCAGTATCTCTTTCTCTATGCAAACAAGTTGACAGGTCCTATTCCTAAATCCA TTTATGAGCTCAAAAAGCTTATCTCTCTTGACCTCAGTGATAACTTTCTTTCCGGTGAGGTTTCTGAGCTTGTGGTCCAG TTCCAGAGACTAGAAACCCTTCAACTTTTCTCAAACAACTTCACAGGAAGGATTCCAAAGGCTGTGGCATCTTTACCTCA CCTTCAGATTCTTCAGCTTTGGTCAAACAACTTCACAGGTGAGATTCCAAAAGAGCTTGGAAAGCATAGCAACCTCACTG TTTTGGACCTGTCCTCCAATAACCTCACAGGGAATATCCCAGATGGGTTATGCAGCCATGGCAATCTCAACAAGCTTATC CTCTTCTCCAACTCTTTCCATGGAGAAATCCCACGTGGGATAAGCTCTTGTAGAAGCTTGCAACGAGTGAGAATCCAAAA CAACAAGCTCTCAGGGGAATTGCCATCAGAAATGACAAAACTGCCTCAGATATACTTCTTGGATATCTCTGGCAATGAGC TTTCTGGAAGGGTTGATGACAGGGAATGGAACATGCCTTCCCTTCAAATGCTGAGTTTGGCAAACAACAAATTCTCAGGA GAGTTACCAAACTCTTTTGGAACTCAGAACCTTCAGGACCTGGATTTATCAGGGAACACTCTCTCAGGCCATTTATCAAA CAGTTTCAGTGCATTAACAGAACTCATGCAATTGAAGCTTAGCAACAACAACCTCTCTGGTAACATCCCAGAAGAACTCT CTGAATGCAGCAAACTCATTTCTCTGGACCTCAGCCACAACCAACTCTCCGGTCAAATCCCAACAAAACTCGCCGCGATG CCGGTTCTCAGCCTCCTCGACTTATCGGAAAACGAACTCTCCGGTGAAATTCCACATAATTTAGGAAGCATTGAATCTCT TGTTCAGGTAAACATATCACACAACCATTTTCAGGGGAGTTTACCCTCCACCGGAGCTTTCCTTGCCATCAACGCAAGCG CTGTCGCCGGAAACCACCTCTGTTACCGCAACAGCGATGCTTCCAACGGTTTGCCGCCGTGCAAAGACAATCATCAGAAC CAAACATGGCCGTTCGTCGTGCTGTGTTTTCTGCTCGGGTTGATTTCATTCGCCGCAACAGCTTCTCTCATCTACTTCGT GCGTTCCAGGAAGAAGAATTCACAGCTCAGAAGAGTGGAGAACGAAGATGGAACCTGGGAAATGCAGTTTTTCGATTCCA ATGCATCGAAATTGATTGCAATCGACGATGTGTTGTCGTCGGTGAAAGAAGGGAAAGTGATTTCGAAGGGAAGGAACTGG GTTTCATACGAAGGGAAGTGCACGGAGAGTGACATGCAATTCACGGTGATTGAAATCGGCGACTCGAACTCACTTCCGGT GAGTTTCTGGGAGGAGGTGGTGAAGTTCGGGAAGCTCCGGCACCCGAACGTGGTTAACCTGATCGGAATGTGCAGGTCGG GGAAGAGAGGTTACTTGGTATACGAGCACGAGGAGGGGAAGAGCTTGAGCCAGATTGTGAACGGGTTGAGCTGGCAACGG CGGCGGAAAATCGCGGTGGCGGTGGCGAAAGCGCTGAAGTTCTTGCATTGTAACTGTTTTTTCGCCGGAGAGGTGTCGCC GGAGGTAGTTACGGTGGATAACAAGGGCGTCGCTCGCCTGAAGGTGAGACCTCCCGGAATAGCAAGCGTGGATGTCAAGG GTTTCATCTCTTCACCCTACGTTGCTCCAGGTACTAACTTAAATGTCTATTTTGCCCCTGTATTTTTTGTTCTTGTGCAT TCATCATGAGTAACCTTCATATGCAAGTATTATATAAGCAAAGATAAATAATCTATCTTATTCATGAATTATATGATGCA TACAATCTCTTTTAAAAAGGTCATAAGTTTTCCGCTTTACGAATGAAAGCGAGCGACTAGGATTGAATCTTAGCGACTCG TGAGGATAGGTTAATATATTGTTCCATATAATGATAATTTCATGTTAAATTACAGAGGCAATAACGACAAAAGATGTGAC TGAGAAGAGTGAGATATATGGCTTCGGAGTCATGCTGATCGAATTGTTGACAGGAAGAAGCCCTGTGGACATAGAAGCAG GGAATGGCGTGCACAACAGCATCGTGGAGTGGGCTCGATACTGCTACTCCGACTGTCATCTTGACATGTGGATTGACCCA ATGATGAAGGATGGAGATACATCGACCTATCAGAACGACGTTGTTGAGATCATGAACTTGGCTCTGCACTGCACCGCCAC TGATCCCACCGCAAGGCCATGCGCGAGAGAAGTGCTCAAAACCCTAGAGACTATTCACAACAGCAACACAACAAGAAGTT TTTGCTGAGTTTCTTTCCGTGCTCACAACCTTCTCAACTCTTTGATTTTCCATATGCACTATTCTCTGACTTTTGTTACA GTTTCTTTTTTCTTGGTTTTTTCCACTTGAGTTTTCACTTTTTTATCCTTTGATTTTGTTTAAAGTTTTTATTTAGTTTA ACTAGCATAAGTAATTAAGTTGTTGATGAAGAGATTGCTAGGGTAATGTTTGCTTGATGTTTTATATATGGGTCATGTTT GACATACTGCTGAGTGTAAAAGTAAATGTAAATAAATTGAATGTCATTATAATAAGATGATGATCATGTTTACACTTCCT TAAGCTGTTAATTATGTGTTTTGCGTGCCAATTGGT 

CDS sequence (LotjaGi1g1v0406800.1) extracted from Lotus japonicus Gifu v1.2 CDS.

ATGGCAAGAGGAAACTCAACATGTTCAAATTCAAAGTACCTCATGTTTTTGTGCATCTTCATGTTCATGCTCAACTTCCA CTCATCCCATGGAGAACAACAAGAGCTCCAGCTTCTGTTATCCTTCAAAGCTTCCATCCACGACCCACTTCACTTCCTCT CCAACTGGGTCAGTTCCTCTGCCACTCCCTGCAACTGGCACGGCATCACCTGTGGCGACAATTCCTCCCACGTTACCGCC GTGGCACTCTCCGGAAAAAACATCACCGGCGAGGTTTTCTCTTCCATTTTTCAACTGCCACACGTCACGAGCATCGACCT CTCCAACAATCAACTTGTTGGGGAATTCAATCTTGACATCAACAACAACACTCCTTCTCTGTCCCCACTCCGTTACCTCA ACCTCAGCAACAACAACCTCACGGGGACTCTGCCTCAGTCCTTGTTCTCTGCTTCGTTCTTCAACCTCGAAACTCTGGAT CTCTGCAACAACATGTTTTCAGGGAAAATCCCAGACCAAATAGGAATCCTTTCCAGCTTAAGGTATCTTGACCTTGGAGG AAACGTTTTGGTGGGGAAGATTCCAAATTCCATCATCAATGTCACCACTTTACAGTACCTAACTTTGGCTTCAAACCAGT TAGTGGGTGAAATTCCTGCAGAGATAAGCCTAATGAAGAGCTTGAATTGGATTTACTTGGGGTACAACAATCTCTCAGGT GAGATACCAGGTAGCATTGGGGAACTATTAGCTTTAAACCACCTTGATCTTGTTTACAACAATCTCACAGGAACAATTCC TGAATCTCTTGGGAACCTCACTTCTCTTCAGTATCTCTTTCTCTATGCAAACAAGTTGACAGGTCCTATTCCTAAATCCA TTTATGAGCTCAAAAAGCTTATCTCTCTTGACCTCAGTGATAACTTTCTTTCCGGTGAGGTTTCTGAGCTTGTGGTCCAG TTCCAGAGACTAGAAACCCTTCAACTTTTCTCAAACAACTTCACAGGAAGGATTCCAAAGGCTGTGGCATCTTTACCTCA CCTTCAGATTCTTCAGCTTTGGTCAAACAACTTCACAGGTGAGATTCCAAAAGAGCTTGGAAAGCATAGCAACCTCACTG TTTTGGACCTGTCCTCCAATAACCTCACAGGGAATATCCCAGATGGGTTATGCAGCCATGGCAATCTCAACAAGCTTATC CTCTTCTCCAACTCTTTCCATGGAGAAATCCCACGTGGGATAAGCTCTTGTAGAAGCTTGCAACGAGTGAGAATCCAAAA CAACAAGCTCTCAGGGGAATTGCCATCAGAAATGACAAAACTGCCTCAGATATACTTCTTGGATATCTCTGGCAATGAGC TTTCTGGAAGGGTTGATGACAGGGAATGGAACATGCCTTCCCTTCAAATGCTGAGTTTGGCAAACAACAAATTCTCAGGA GAGTTACCAAACTCTTTTGGAACTCAGAACCTTCAGGACCTGGATTTATCAGGGAACACTCTCTCAGGCCATTTATCAAA CAGTTTCAGTGCATTAACAGAACTCATGCAATTGAAGCTTAGCAACAACAACCTCTCTGGTAACATCCCAGAAGAACTCT CTGAATGCAGCAAACTCATTTCTCTGGACCTCAGCCACAACCAACTCTCCGGTCAAATCCCAACAAAACTCGCCGCGATG CCGGTTCTCAGCCTCCTCGACTTATCGGAAAACGAACTCTCCGGTGAAATTCCACATAATTTAGGAAGCATTGAATCTCT TGTTCAGGTAAACATATCACACAACCATTTTCAGGGGAGTTTACCCTCCACCGGAGCTTTCCTTGCCATCAACGCAAGCG CTGTCGCCGGAAACCACCTCTGTTACCGCAACAGCGATGCTTCCAACGGTTTGCCGCCGTGCAAAGACAATCATCAGAAC CAAACATGGCCGTTCGTCGTGCTGTGTTTTCTGCTCGGGTTGATTTCATTCGCCGCAACAGCTTCTCTCATCTACTTCGT GCGTTCCAGGAAGAAGAATTCACAGCTCAGAAGAGTGGAGAACGAAGATGGAACCTGGGAAATGCAGTTTTTCGATTCCA ATGCATCGAAATTGATTGCAATCGACGATGTGTTGTCGTCGGTGAAAGAAGGGAAAGTGATTTCGAAGGGAAGGAACTGG GTTTCATACGAAGGGAAGTGCACGGAGAGTGACATGCAATTCACGGTGATTGAAATCGGCGACTCGAACTCACTTCCGGT GAGTTTCTGGGAGGAGGTGGTGAAGTTCGGGAAGCTCCGGCACCCGAACGTGGTTAACCTGATCGGAATGTGCAGGTCGG GGAAGAGAGGTTACTTGGTATACGAGCACGAGGAGGGGAAGAGCTTGAGCCAGATTGTGAACGGGTTGAGCTGGCAACGG CGGCGGAAAATCGCGGTGGCGGTGGCGAAAGCGCTGAAGTTCTTGCATTGTAACTGTTTTTTCGCCGGAGAGGTGTCGCC GGAGGTAGTTACGGTGGATAACAAGGGCGTCGCTCGCCTGAAGGTGAGACCTCCCGGAATAGCAAGCGTGGATGTCAAGG GTTTCATCTCTTCACCCTACGTTGCTCCAGAGGCAATAACGACAAAAGATGTGACTGAGAAGAGTGAGATATATGGCTTC GGAGTCATGCTGATCGAATTGTTGACAGGAAGAAGCCCTGTGGACATAGAAGCAGGGAATGGCGTGCACAACAGCATCGT GGAGTGGGCTCGATACTGCTACTCCGACTGTCATCTTGACATGTGGATTGACCCAATGATGAAGGATGGAGATACATCGA CCTATCAGAACGACGTTGTTGAGATCATGAACTTGGCTCTGCACTGCACCGCCACTGATCCCACCGCAAGGCCATGCGCG AGAGAAGTGCTCAAAACCCTAGAGACTATTCACAACAGCAACACAACAAGAAGTTTTTGCTGA 

Protein sequence (LotjaGi1g1v0406800.1) extracted from Lotus japonicus Gifu v1.2 Proteins.

MARGNSTCSNSKYLMFLCIFMFMLNFHSSHGEQQELQLLLSFKASIHDPLHFLSNWVSSSATPCNWHGITCGDNSSHVTA VALSGKNITGEVFSSIFQLPHVTSIDLSNNQLVGEFNLDINNNTPSLSPLRYLNLSNNNLTGTLPQSLFSASFFNLETLD LCNNMFSGKIPDQIGILSSLRYLDLGGNVLVGKIPNSIINVTTLQYLTLASNQLVGEIPAEISLMKSLNWIYLGYNNLSG EIPGSIGELLALNHLDLVYNNLTGTIPESLGNLTSLQYLFLYANKLTGPIPKSIYELKKLISLDLSDNFLSGEVSELVVQ FQRLETLQLFSNNFTGRIPKAVASLPHLQILQLWSNNFTGEIPKELGKHSNLTVLDLSSNNLTGNIPDGLCSHGNLNKLI LFSNSFHGEIPRGISSCRSLQRVRIQNNKLSGELPSEMTKLPQIYFLDISGNELSGRVDDREWNMPSLQMLSLANNKFSG ELPNSFGTQNLQDLDLSGNTLSGHLSNSFSALTELMQLKLSNNNLSGNIPEELSECSKLISLDLSHNQLSGQIPTKLAAM PVLSLLDLSENELSGEIPHNLGSIESLVQVNISHNHFQGSLPSTGAFLAINASAVAGNHLCYRNSDASNGLPPCKDNHQN QTWPFVVLCFLLGLISFAATASLIYFVRSRKKNSQLRRVENEDGTWEMQFFDSNASKLIAIDDVLSSVKEGKVISKGRNW VSYEGKCTESDMQFTVIEIGDSNSLPVSFWEEVVKFGKLRHPNVVNLIGMCRSGKRGYLVYEHEEGKSLSQIVNGLSWQR RRKIAVAVAKALKFLHCNCFFAGEVSPEVVTVDNKGVARLKVRPPGIASVDVKGFISSPYVAPEAITTKDVTEKSEIYGF GVMLIELLTGRSPVDIEAGNGVHNSIVEWARYCYSDCHLDMWIDPMMKDGDTSTYQNDVVEIMNLALHCTATDPTARPCA REVLKTLETIHNSNTTRSFC 

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
Phobius 1 13 13 -
Phobius 1 31 31 -
SignalP_EUK 1 31 31 -
TMHMM 13 30 18 -
Phobius 14 24 11 -
Phobius 25 31 7 -
Gene3D 27 192 166 5.3E-43
Phobius 32 642 611 -
Pfam 33 71 39 2.2E-12
SUPERFAMILY 46 384 339 7.82E-65
PANTHER 80 229 150 1.1E-185
PANTHER 80 229 150 1.1E-185
ProSiteProfiles 101 122 22 4.501
PANTHER 121 284 164 1.1E-185
PANTHER 121 284 164 1.1E-185
SMART 127 151 25 15.0
ProSiteProfiles 129 151 23 6.688
Pfam 130 148 19 0.21
Pfam 155 214 60 7.3E-8
ProSiteProfiles 155 177 23 6.033
SMART 177 201 25 110.0
ProSiteProfiles 179 201 23 5.633
Gene3D 193 248 56 4.6E-15
ProSiteProfiles 203 225 23 6.095
PANTHER 224 414 191 1.1E-185
PANTHER 224 414 191 1.1E-185
SMART 225 249 25 310.0
ProSiteProfiles 227 249 23 5.394
Gene3D 249 320 72 8.2E-20
ProSiteProfiles 251 274 24 5.81
Pfam 252 308 57 1.5E-7
SMART 273 297 25 71.0
ProSiteProfiles 275 297 23 4.971
PANTHER 287 449 163 1.1E-185
PANTHER 287 449 163 1.1E-185
ProSiteProfiles 299 321 23 5.702
SUPERFAMILY 319 622 304 3.91E-57
Gene3D 321 643 323 6.4E-86
ProSiteProfiles 323 346 24 4.593
SMART 345 369 25 25.0
Pfam 369 384 16 0.45
SMART 370 393 24 29.0
ProSiteProfiles 371 393 23 7.211
PANTHER 378 486 109 1.1E-185
PANTHER 378 486 109 1.1E-185
PANTHER 446 592 147 1.1E-185
PANTHER 446 592 147 1.1E-185
SMART 465 488 24 53.0
ProSiteProfiles 467 489 23 5.51
Pfam 490 549 60 5.2E-7
ProSiteProfiles 490 512 23 6.434
SMART 512 536 25 20.0
ProSiteProfiles 514 536 23 6.126
ProSiteProfiles 538 561 24 6.249
PRINTS 539 552 14 9.0E-5
SMART 560 584 25 150.0
PRINTS 560 573 14 9.0E-5
ProSiteProfiles 562 584 23 4.986
PANTHER 581 972 392 1.1E-185
PANTHER 581 972 392 1.1E-185
Phobius 643 667 25 -
TMHMM 645 667 23 -
Phobius 668 980 313 -
Gene3D 670 783 114 1.7E-8
SUPERFAMILY 692 972 281 1.59E-36
ProSiteProfiles 708 970 263 19.623
Pfam 747 965 219 1.7E-21
Gene3D 784 979 196 7.0E-30

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 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 data

Expression pattern

Expression pattern of LotjaGi1g1v0406800.1, powered by ExpAt. For advanced configuration, data transformation and export options, view expression data in the ExpAt application.

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