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LotjaGi1g1v0583300.1

Overview

Field Value
Gene ID LotjaGi1g1v0583300
Transcript ID LotjaGi1g1v0583300.1
Lotus japonicus genome version Gifu v1.2
Description Receptor protein kinase; TAIR: AT5G48940.1 Leucine-rich repeat transmembrane protein kinase family protein; Swiss-Prot: sp|C0LGV1|RCH1_ARATH LRR receptor-like serine/threonine-protein kinase RCH1; TrEMBL-Plants: tr|I1N2D6|I1N2D6_SOYBN Uncharacterized protein; Found in the gene: LotjaGi1g1v0583300
Working Lj name n.a.

Sequence information

Genomic sequence (LjG1.1_chr1:112257343..112263885) extracted from Lotus japonicus Gifu genome v1.2.

AACTGAACAGTTAATTATGCTATATAATGATGGGCAATACCTAATGTTGACCCTGATGGTCATAAAGCAATTTTAAAAAT CCAGAAAACGCTAAGGGAATCTGCTTTGAATGAAACTTTGAAAACAAGGAGCAAAATGCCAGACAGCAATGCAACAACCC TTTCAAATTAAAGAAGCAGCTCGGTTATCAACACAAATTACAAATTGCACAGACCAGATTAGTGACTATGTTGAGGAAAA CAATGCAAAAACACATGGGTCATGAGCTAGTTTTAGTGTAAAACAAGTCTTGCATGATTCAATGCTGTGGCAAAAGAACA GAACCCCGAGGCATAGGAGGCGGTGAATGGTGATGCTAAAATAAATTACTATACTAATCTTCTCTTGCTTCAAAACAAAG CAAGTATAATAGTAATGGTGACACTAGTCCCAGCAAGTTCAAGAAAGAAAATAAAGAGAGACCCAATGTTGCATAAACCA TGAGTTGATATATAAGATAAGCCTGTGGCTGAGTTTTTGAGGCATTTTTTGCCAATGTCAATGCCGAGGCAAGCCTTGAA CAACCACAACAACCGCCACCAAATGTCGAGGCAAGTTTTCATCCATCACCATCTCCAGTACTGTGTTTTCCTGTTTGCAG TTCTTGTCCCTCTTTCATTTGCTGCAAATGATGAAGTTAGTGTCTTATTTTCATGGATGCATAGCTCTTCACCTTTTTCT GACTGGAACCCTTTGGACTCTAGTCCTTGCAATTGGTCTCATATCAAATGCTCTCCACAGAACCTTGTCACTGAGATTAA CATTCAAACAGTTGAGTTAGCCCTTCCTTTTCCTTCCAGTATCTCTTCCCTTCCCTTCCTTCAAAAGCTAGTGATTTCTG GTGCTAATCTCACTGGTGCTATCTCACCTGACATTGGAAACTGCCCTGAGCTCACACTCATTGATCTTAGCTCAAATAGT CTTGAGGGAGAAATTCCTTCAAGCATTGGCAAGCTCAAGAATCTCCAACACTTGATCTTGAACTCTAACCAACTCACTGG ATCAATCCCAAGGGAGCTTGGTGACTGTGTTAGTCTCAAGAGCCTTGACATCTTTGACAACAATCTCAGTGGGGACCTTC CTGCTGAGCTTGGAAAACTTTCAAATCTTGAGGTTCTAAGAGCAGGAGGAAACAAAGGCATTGTGGGGAAGATTCCAGCT GAGCTTGGAGAATGCAGGAATTTGACAGTGTTGGGTTTTGCTGACACAAAAATTTCTGGTTCATTGCCTTCTTCTCTGGG TAAGCTAACCATGCTTCAGACCATTTCTATTTACAATACTATGCTCTCTGGTGAGATTCCACCTGAAATAGGAAACTGTT CAGAGCTTGTGAATTTGTTTTTGTATGAGAATGATCTCTCTGGTTCCCTTCCAAGAGAGCTAGGTAAGCTTCAGAAGTTG GAAAGGATGCTGCTGTGGCAAAATAATGTCGTTGGGAGCATACCTGAAGAGATTGGAAACTGCAGAAGCTTGAAGATTCT TGACCTCTCCATAAATTTTATCTCAGGTGGAATACCTCAAAGTTTGGGGAAACTTTCAAATCTTGAAGAGCTTATGCTGA GTAACAACAACATCTCTGGTTCAATACCACCTGCTCTTTCCAATCTCACAAACCTCATGCAGTTGCAGTTAGATACAAAT CAGCTATCAGGTTCAATTCCACCTGAGCTTGGGAAGTTGACAAAGCTAACAGTGTTTTTTGCTTGGCAGAACAATCTTGA AGGTAGCATTCCATCAGCATTGGGAGATTGTGGAAGCCTTGAGGCTTTGGATTTGTCATACAATACACTCACTGATAGCT TACCCCCAGGCTTGTTTAAGCTTCAAAATTTAACAAAGCTCCTACTAATCTCTAATGAAATTTCTGGCCCCATTCCCCCT GAGATTGGTAACTGCAGCGCTCTCATTCGTCTCCGGCTTGTAGACAACCGAATCAACGGTGAGATACCGAGAGAAATTGG CTTCCTCAACAACCTCAATTTCCTTGATCTGTCTGAAAATCAACTTACTGGGTCAGTACCTCCTGAGATGGGAAACTGTA AAGAACTGCAAATGCTGAATCTGAGTAATAATTCCCTTTCTGGAACTTTGCCTAGTTATTTGTCTTCTCTTCTAAGGCTA GAGGTTTTGGATGTTTCTCTGAATAACTTTTCTGGTGAGGTTCCAATTAGTATTGGCCAACTCACCTCACTTCTTAGAGT CATGCTGAACAAAAACTCTTTCTCTGGACCAATTCCCTCCTCACTTGGGAAATGTTCAGGTCTTCAACTGCTTGACCTTA GCAGCAACATGTTCTCAGGGAGAATCCCACCAGAACTGTTTCAAATTGAAGCACTTGATATTGCACTAAATTTGAGCCAT AATGCATTATCTGGAGCAATCCCACCAGAGATTTCAGCATTGAACAAGCTGTCAGTTCTAGACCTTTCACACAACCAACT TGAAGGTGACTTGATGGTGTTTTCAGGGCTTGAGAATCTTGTTTCTCTGAACATTTCATACAACAGGTTCACTGGTTTTC TACCAGACAGCAAGCTATTCCACCAACTATCAGCATCAGACGTGGCCGGAAATCAAGGCTTGTGTTCCAATGGCCATGAT TCATGTTTCGCTAGCAATGCTGCAATGACAAAAATGCAAAATGACACTGATTCTAAGAGATCAGAGATAATCAAAGTGGC CATTGGATTGCTCAGTGCCTTGGCTGTTGTAATGGCAATATTTGGAGTTGTTACAGTCTTTCGAGCGAGGAAAATGATTC GAGACGACAATGATTCTGAGATGGGAGGAGATTCATGGCCTTGGCAGTTCACCCCATTCCAGAAGGTAAATTTCTCTCTG GAGCAAGTTTTGAAATGTCTGGTGGAATCCAATGTGATTGGAAAGGGGTGTTCAGGGATAGTTTATCGCGCAGAAACGGA AAATGGGGATGTCATTGCTGTGAAAAGACTATGGCCAACAACAATGGCAGCTAGATATGATACTCAAAGTGACAAGTTAG CAGTGAATGGAGGCGTTCGAGATTCCTTTTCAGCTGAGGTAAAAACTCTCGGTTCAATTCGCCACAAGAACATTGTCAGG TTCTTAGGTTGCTGCTGGAACAGAAATACAAGACTGCTTATGTATGACTACATGCCAAATGGGAGCCTTGGAAGTCTGCT TCATGAACAAAGTGGCAATTGCTTGGAATGGGATATCAGATTTCGAATAATCCTCGGAGCAGCTCAAGGTTTGGCTTATT TACACCATGACTGTGCTCCTCCCATTGTTCACAGGGACATTAAGGCCAACAACATCCTCATAGGCCCTGAATTTGAACCA TACATAGCTGATTTTGGGCTTGCCAAACTTGTTGATGATGGAGACTTTGCACGTTCTTCTAGTACACTAGCTGGTTCCTA TGGTTACATAGCTCCTGGTTAGTACTACTAGTCCAAAACTCTAATATTTAGTTTACTTTTATCATTCATTGTTTGTTGGT AATTCAAGAATCGTATGAGATGAGTGAGGTGAAGAAAATGTAAGAGATATGTCTCACATACCCATTGTCTTAAGGTTTTG ACTTTTGAGTAAAGTTGTCGTGTTTGTTTCTCTTGGTGGTTTGATCCACTGGTGCAGACTCTCCTGCTTAGGACACCCTG TATCCCCAACACTCATGTCATTTGGGAGAGTTTGTCCCCGTAATCAACAAGAGGAAAACTATATATATATGCATATTTGA AATGATGTTTCACATGCTTGTTGTGTTTGTCATATCATTTTTTCAGAGTATACTATTTATCAGTTACATTCTAACATCTA TTTTCAATGCTACCTTTTATGCATGTTGGGATTTAAAGAGTATGGCTACATCATGAAGATAACAGAGAAAAGTGATGTTT ACAGCTATGGTATTGTTGTGTTAGAGGTACTAACAGGGAAGCAACCAATTGATCCAACAATCACTGATGGACTGCATATT GTTGATTGGGTAAGACAGAGAAGAGGGGGAGTGGAAGTGCTAGATGAAAGCTTACGAGCTCGACCGGAATCAGAAATCGA GGAGATGTTGCAGACCATAGGTGTGGCTCTGCTGTGTGTAAACTCAAGCCCAGATGACAGGCCAACCATGAAAGATGTGG TAGCAATGATGAAAGAAATTAGGCAAGAGAGAGAGGAATTTATGAAAGTTAGCATGCTTAGTATTGATGGGCCTTCAGCA AAGGTCCAAAAAGAAAGTAATCATTCCAATGAAGAACCAATGGCAGTGATGAAACATGCATGCCCAAGCTGCAGCAGCAG CAGCAGCAGCAGCACAAGCCAGAATCTACATTACTCTCAAACACCAAAGTAACTCTCAAATAGTCAATAACAGCAATGTG GTTAAGCAACTAAGATTTCCTTAGCAAGAATTGTTCAGGTCCTATGTTATCAGTTCAGCTTCATAACTATGGTTTCAGTG TGTATAACTGTATAAGAACAAATTCTTAATAATTGTGAGCATTGAAGTAAATCTTTGTTCATTATATTACCAATTTTCTT TCCTTTTATGTTGAGTCTAGGACTAGGAGGATCTATTTAACATTAGAATTTCCTTAAGAGCATATCCATTGCATGTCTGT AGAAGAGTTTTTATTTTTAAGGACCGTTGCTTCTTTTAGTGGAACCATTGGAGCATAGTGACCTGACACTCATTGTTCCT TAAATTTTAACAATGTTTTAAGCAACGATTGCTTACTCGTTTTCTGCTTGTTTTATGATTAAAAAAATCACATTTTCTCT CTTAGAATTTAATAGGTGGCATTAGCTAATCTTTTCCATTTTTTCGTTTTTATAATAAGAAAAAGAATAATTCATTTTTT TTACTAACTTAACCCATGGTAAACCAACCATAGTTTGGACTCTACTGACTTCAATGACTGATTGCATTACCATGATTTTG AAAATCTAAGTTCTTTCTCCCCTCTTCCATGAGAAGTTTGAAAGCTTTCTGCTATATTGGAAAGAGGTTTCTCATTTTCC CCTTCTCTCTTGTCCAGTGGCGGATCCAGGACTCCGGGGTCAGGGGGTTCAAATTTTTCAAATGAGCACATGGATTCATA TAAGTAATTCAAAGCACCTTGCATATACAAACAATTGAGCTGCCAATTGGAATGGCAAGTTACCATGCCATTTTTTTTGG AGAGCAAAGCATTCATTAAAAACAAGCACAAGGAGTGCTAACAACAATACAACGTTTGAGAAAACCAATTACCTTACACA CAAATCAGACCCAAGTAATCACTAAGAACTAAGGACAGCAACAAACTTCATAATTAAATTATTTAAACAACATTAATAAC TACCTTACTACCCAGCCCCAAGAAAGCAAAAGATGATACAGTAACACCATAGGTTACAAAAGACAAAACACCCTGTAAGA TATAGCAAGTGATCCATCACATGTTGGTGCTCACCATGCCATTATTTATAAATCAACAAAACCATAATGCTTGCAGCTCA ACACAATCAATTAGTCAACGTATTTTCAGTTCTAACTCAATTTCTCATGTGCATCAAGTAAAAGAACATCAAAAACAAAT AATGGTCAAATCAATTCTTTTCAATATAGGCAACACTATAACTATTCAAGTAAATGAAACAAATTTGAAATGAAAGTATA AATTTGAAATGTATCAACACTATATCTGTGAATAGAAGTTTTTTTTTTAATCACAAAGCTCATGTATTGGAAACAAAGAG GACCTCAATCTAAACAGCAAAACAAACTGCAAACTGCAAATAGGATAGAAATAAGTCTAAACAACTTTCATGTTTTTTCA GTAGCAGATTCAACACAGTACCAAATTCCCTTTGGTATAATACTAGAAATTCATTGAATAGCAAGTAGTTTTGAATATTG AGATTAAAAGAACGAAATTGATCACAAAAATTAAATGCAAATGGCTAATGCAAATGCTTTTCCCCAAAACTTTTCATCTC CAATTTCAAAATTTGACAAATAGTGAAAGAAAATTGTACAGAGAGGAAGAAGGTGCTCAGAAAGATCAATAAATGGTTGA GAAAAGTAATCCTCATGGGTAAAGATAGATTTATCCATCAGATTAACGAGATTATTTATCTAATCATCATAGCACCTTCT TCGCAGTTCACAATTTCAACTCAACAACAACAACAACAACAAACAACGCAAATACCTGCATACGAAGGGAAGGGAAGGCG AGGCGAGGTTTGAAGGAGTAGGAATAGGATTTAGAATTACAAGCCAAGATGGAGACTCTATGACTGAGTGAGTATGACAA TTTTAGGATTTAGGATTAGGAATTACAGATGTAGGGAAAATCATATTCATGGTTGCTTGGGAAAATCAAGTTTTAGAAGA GAAAGGAGAACTGGACGGGTGGCCGGTGGCGTGGTCGTGGCGTGGTGGTGGCTGGTGGTAGTGCCGCCGTGCCGTGATGA GGGTGCGAGAGGGTGAGGGTGAGCGTGAATGTGATTCGTGAGAGGGTGAGAGCTTGAGTATCA 

CDS sequence (LotjaGi1g1v0583300.1) extracted from Lotus japonicus Gifu v1.2 CDS.

ATGTCAATGCCGAGGCAAGCCTTGAACAACCACAACAACCGCCACCAAATGTCGAGGCAAGTTTTCATCCATCACCATCT CCAGTACTGTGTTTTCCTGTTTGCAGTTCTTGTCCCTCTTTCATTTGCTGCAAATGATGAAGTTAGTGTCTTATTTTCAT GGATGCATAGCTCTTCACCTTTTTCTGACTGGAACCCTTTGGACTCTAGTCCTTGCAATTGGTCTCATATCAAATGCTCT CCACAGAACCTTGTCACTGAGATTAACATTCAAACAGTTGAGTTAGCCCTTCCTTTTCCTTCCAGTATCTCTTCCCTTCC CTTCCTTCAAAAGCTAGTGATTTCTGGTGCTAATCTCACTGGTGCTATCTCACCTGACATTGGAAACTGCCCTGAGCTCA CACTCATTGATCTTAGCTCAAATAGTCTTGAGGGAGAAATTCCTTCAAGCATTGGCAAGCTCAAGAATCTCCAACACTTG ATCTTGAACTCTAACCAACTCACTGGATCAATCCCAAGGGAGCTTGGTGACTGTGTTAGTCTCAAGAGCCTTGACATCTT TGACAACAATCTCAGTGGGGACCTTCCTGCTGAGCTTGGAAAACTTTCAAATCTTGAGGTTCTAAGAGCAGGAGGAAACA AAGGCATTGTGGGGAAGATTCCAGCTGAGCTTGGAGAATGCAGGAATTTGACAGTGTTGGGTTTTGCTGACACAAAAATT TCTGGTTCATTGCCTTCTTCTCTGGGTAAGCTAACCATGCTTCAGACCATTTCTATTTACAATACTATGCTCTCTGGTGA GATTCCACCTGAAATAGGAAACTGTTCAGAGCTTGTGAATTTGTTTTTGTATGAGAATGATCTCTCTGGTTCCCTTCCAA GAGAGCTAGGTAAGCTTCAGAAGTTGGAAAGGATGCTGCTGTGGCAAAATAATGTCGTTGGGAGCATACCTGAAGAGATT GGAAACTGCAGAAGCTTGAAGATTCTTGACCTCTCCATAAATTTTATCTCAGGTGGAATACCTCAAAGTTTGGGGAAACT TTCAAATCTTGAAGAGCTTATGCTGAGTAACAACAACATCTCTGGTTCAATACCACCTGCTCTTTCCAATCTCACAAACC TCATGCAGTTGCAGTTAGATACAAATCAGCTATCAGGTTCAATTCCACCTGAGCTTGGGAAGTTGACAAAGCTAACAGTG TTTTTTGCTTGGCAGAACAATCTTGAAGGTAGCATTCCATCAGCATTGGGAGATTGTGGAAGCCTTGAGGCTTTGGATTT GTCATACAATACACTCACTGATAGCTTACCCCCAGGCTTGTTTAAGCTTCAAAATTTAACAAAGCTCCTACTAATCTCTA ATGAAATTTCTGGCCCCATTCCCCCTGAGATTGGTAACTGCAGCGCTCTCATTCGTCTCCGGCTTGTAGACAACCGAATC AACGGTGAGATACCGAGAGAAATTGGCTTCCTCAACAACCTCAATTTCCTTGATCTGTCTGAAAATCAACTTACTGGGTC AGTACCTCCTGAGATGGGAAACTGTAAAGAACTGCAAATGCTGAATCTGAGTAATAATTCCCTTTCTGGAACTTTGCCTA GTTATTTGTCTTCTCTTCTAAGGCTAGAGGTTTTGGATGTTTCTCTGAATAACTTTTCTGGTGAGGTTCCAATTAGTATT GGCCAACTCACCTCACTTCTTAGAGTCATGCTGAACAAAAACTCTTTCTCTGGACCAATTCCCTCCTCACTTGGGAAATG TTCAGGTCTTCAACTGCTTGACCTTAGCAGCAACATGTTCTCAGGGAGAATCCCACCAGAACTGTTTCAAATTGAAGCAC TTGATATTGCACTAAATTTGAGCCATAATGCATTATCTGGAGCAATCCCACCAGAGATTTCAGCATTGAACAAGCTGTCA GTTCTAGACCTTTCACACAACCAACTTGAAGGTGACTTGATGGTGTTTTCAGGGCTTGAGAATCTTGTTTCTCTGAACAT TTCATACAACAGGTTCACTGGTTTTCTACCAGACAGCAAGCTATTCCACCAACTATCAGCATCAGACGTGGCCGGAAATC AAGGCTTGTGTTCCAATGGCCATGATTCATGTTTCGCTAGCAATGCTGCAATGACAAAAATGCAAAATGACACTGATTCT AAGAGATCAGAGATAATCAAAGTGGCCATTGGATTGCTCAGTGCCTTGGCTGTTGTAATGGCAATATTTGGAGTTGTTAC AGTCTTTCGAGCGAGGAAAATGATTCGAGACGACAATGATTCTGAGATGGGAGGAGATTCATGGCCTTGGCAGTTCACCC CATTCCAGAAGGTAAATTTCTCTCTGGAGCAAGTTTTGAAATGTCTGGTGGAATCCAATGTGATTGGAAAGGGGTGTTCA GGGATAGTTTATCGCGCAGAAACGGAAAATGGGGATGTCATTGCTGTGAAAAGACTATGGCCAACAACAATGGCAGCTAG ATATGATACTCAAAGTGACAAGTTAGCAGTGAATGGAGGCGTTCGAGATTCCTTTTCAGCTGAGGTAAAAACTCTCGGTT CAATTCGCCACAAGAACATTGTCAGGTTCTTAGGTTGCTGCTGGAACAGAAATACAAGACTGCTTATGTATGACTACATG CCAAATGGGAGCCTTGGAAGTCTGCTTCATGAACAAAGTGGCAATTGCTTGGAATGGGATATCAGATTTCGAATAATCCT CGGAGCAGCTCAAGGTTTGGCTTATTTACACCATGACTGTGCTCCTCCCATTGTTCACAGGGACATTAAGGCCAACAACA TCCTCATAGGCCCTGAATTTGAACCATACATAGCTGATTTTGGGCTTGCCAAACTTGTTGATGATGGAGACTTTGCACGT TCTTCTAGTACACTAGCTGGTTCCTATGGTTACATAGCTCCTGAGTATGGCTACATCATGAAGATAACAGAGAAAAGTGA TGTTTACAGCTATGGTATTGTTGTGTTAGAGGTACTAACAGGGAAGCAACCAATTGATCCAACAATCACTGATGGACTGC ATATTGTTGATTGGGTAAGACAGAGAAGAGGGGGAGTGGAAGTGCTAGATGAAAGCTTACGAGCTCGACCGGAATCAGAA ATCGAGGAGATGTTGCAGACCATAGGTGTGGCTCTGCTGTGTGTAAACTCAAGCCCAGATGACAGGCCAACCATGAAAGA TGTGGTAGCAATGATGAAAGAAATTAGGCAAGAGAGAGAGGAATTTATGAAAGTTAGCATGCTTAGTATTGATGGGCCTT CAGCAAAGGTCCAAAAAGAAAGTAATCATTCCAATGAAGAACCAATGGCAGTGATGAAACATGCATGCCCAAGCTGCAGC AGCAGCAGCAGCAGCAGCACAAGCCAGAATCTACATTACTCTCAAACACCAAAGTAA 

Protein sequence (LotjaGi1g1v0583300.1) extracted from Lotus japonicus Gifu v1.2 Proteins.

MSMPRQALNNHNNRHQMSRQVFIHHHLQYCVFLFAVLVPLSFAANDEVSVLFSWMHSSSPFSDWNPLDSSPCNWSHIKCS PQNLVTEINIQTVELALPFPSSISSLPFLQKLVISGANLTGAISPDIGNCPELTLIDLSSNSLEGEIPSSIGKLKNLQHL ILNSNQLTGSIPRELGDCVSLKSLDIFDNNLSGDLPAELGKLSNLEVLRAGGNKGIVGKIPAELGECRNLTVLGFADTKI SGSLPSSLGKLTMLQTISIYNTMLSGEIPPEIGNCSELVNLFLYENDLSGSLPRELGKLQKLERMLLWQNNVVGSIPEEI GNCRSLKILDLSINFISGGIPQSLGKLSNLEELMLSNNNISGSIPPALSNLTNLMQLQLDTNQLSGSIPPELGKLTKLTV FFAWQNNLEGSIPSALGDCGSLEALDLSYNTLTDSLPPGLFKLQNLTKLLLISNEISGPIPPEIGNCSALIRLRLVDNRI NGEIPREIGFLNNLNFLDLSENQLTGSVPPEMGNCKELQMLNLSNNSLSGTLPSYLSSLLRLEVLDVSLNNFSGEVPISI GQLTSLLRVMLNKNSFSGPIPSSLGKCSGLQLLDLSSNMFSGRIPPELFQIEALDIALNLSHNALSGAIPPEISALNKLS VLDLSHNQLEGDLMVFSGLENLVSLNISYNRFTGFLPDSKLFHQLSASDVAGNQGLCSNGHDSCFASNAAMTKMQNDTDS KRSEIIKVAIGLLSALAVVMAIFGVVTVFRARKMIRDDNDSEMGGDSWPWQFTPFQKVNFSLEQVLKCLVESNVIGKGCS GIVYRAETENGDVIAVKRLWPTTMAARYDTQSDKLAVNGGVRDSFSAEVKTLGSIRHKNIVRFLGCCWNRNTRLLMYDYM PNGSLGSLLHEQSGNCLEWDIRFRIILGAAQGLAYLHHDCAPPIVHRDIKANNILIGPEFEPYIADFGLAKLVDDGDFAR SSSTLAGSYGYIAPEYGYIMKITEKSDVYSYGIVVLEVLTGKQPIDPTITDGLHIVDWVRQRRGGVEVLDESLRARPESE IEEMLQTIGVALLCVNSSPDDRPTMKDVVAMMKEIRQEREEFMKVSMLSIDGPSAKVQKESNHSNEEPMAVMKHACPSCS SSSSSSTSQNLHYSQTPK 

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 26 26 -
Phobius 1 43 43 -
TMHMM 21 43 23 -
Phobius 27 38 12 -
Phobius 39 43 5 -
Phobius 44 727 684 -
Gene3D 47 153 107 2.4E-21
PANTHER 49 1087 1039 0.0
PANTHER 49 1087 1039 0.0
SUPERFAMILY 112 485 374 3.41E-73
Pfam 131 191 61 5.4E-8
ProSiteProfiles 132 154 23 5.302
SMART 154 178 25 1.4
Gene3D 154 247 94 3.1E-26
ProSiteProfiles 156 179 24 5.956
ProSiteProfiles 180 203 24 5.771
Gene3D 250 418 169 4.8E-53
ProSiteProfiles 277 300 24 4.693
SMART 299 323 25 290.0
Pfam 324 384 61 3.8E-8
ProSiteProfiles 325 348 24 5.64
SMART 347 370 24 15.0
ProSiteProfiles 349 372 24 7.92
SMART 371 395 25 27.0
ProSiteProfiles 373 396 24 5.471
Gene3D 419 708 290 2.2E-87
SMART 419 443 25 25.0
ProSiteProfiles 421 444 24 6.434
SUPERFAMILY 436 697 262 8.39E-54
ProSiteProfiles 445 467 23 5.194
SMART 491 515 25 12.0
ProSiteProfiles 493 515 23 6.372
PRINTS 494 507 14 6.2E-6
SMART 516 539 24 390.0
ProSiteProfiles 517 539 23 6.549
ProSiteProfiles 541 563 23 4.516
SMART 587 611 25 300.0
ProSiteProfiles 589 611 23 5.548
SMART 636 658 23 150.0
PRINTS 636 649 14 6.2E-6
ProSiteProfiles 638 660 23 7.019
SMART 659 684 26 95.0
ProSiteProfiles 661 682 22 6.156
Phobius 728 749 22 -
TMHMM 728 750 23 -
Phobius 750 1138 389 -
SUPERFAMILY 771 1072 302 3.91E-71
Gene3D 773 879 107 5.9E-20
ProSiteProfiles 789 1083 295 37.149
SMART 789 1072 284 6.7E-25
Pfam 791 1070 280 8.6E-40
ProSitePatterns 795 817 23 -
Gene3D 880 1092 213 1.7E-58
ProSitePatterns 924 936 13 -
MobiDBLite 1093 1138 46 -
MobiDBLite 1116 1138 23 -

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 LotjaGi1g1v0583300.1, powered by ExpAt. For advanced configuration, data transformation and export options, view expression data in the ExpAt application.

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