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LotjaGi3g1v0214000.1

Overview

Field Value
Gene ID LotjaGi3g1v0214000
Transcript ID LotjaGi3g1v0214000.1
Lotus japonicus genome version Gifu v1.2
Description Disease resistance protein (TIR-NBS-LRR class); TAIR: AT5G36930.1 Disease resistance protein (TIR-NBS-LRR class) family; Swiss-Prot: sp|Q40392|TMVRN_NICGU TMV resistance protein N; TrEMBL-Plants: tr|B3VTL7|B3VTL7_MEDSA TIR-NBS-LRR RCT1-like resistance protein; Found in the gene: LotjaGi3g1v0214000
Working Lj name n.a.

Sequence information

Genomic sequence (LjG1.1_chr3:32180069..32186959) extracted from Lotus japonicus Gifu genome v1.2.

GGATTGGATTTTTTATCATTTGTCACCGTGGACATTTGAGGAATGTATGCAAGTGGGATTATGCCAGTGCGTTGCTCATG CAAGGAGTATCTATTTTAAGAACCAATTTCCATAGTTTAGCATAGTACACTGCAATTTCGTGAGTCAACGATTCTGTTTG ATCTCTTCATTTGACTTTCAGTGCCTTTTCTCCAGATCTCAAATCATCCATGGCGGCTGACCCATCTTCTCATCGGAGCA ATTCGCCATCTCAGGACTTCAATTGGGATGATTTGTTGGATCAGTCTGAAACACTGCTGCACGATTGTGTTTCAACTTTT CATTCTCCTCCAGCTCCAGCTCCAGCTCCACCTCCAGCTCCAGCTCCAGCTCCACCTCCAACTGTAAATGAAGTGTTTTG GGAGCAGTTCTTAACGGAAAGGACCAGTGATGAGTTGTTGAGAATCCATGAAGTGTTCTTGAGTTTCAGAGGGGAGGATA CTCGTGCTTCCTTCACTTCACATCTCTATGCCGCTCTTCAAAACGCCGGAGTCAACGTTTTCAGGGACGACGATTCCCTT CCAAGGGGAGATCAAATTACAAGTTCACTGCTGCAAGCAATCGAAGACTCTCAGATCTCAGTTATTGTTTTCTCAATCAA TTATGCAAATTCGCGGTGGTGTATGGAAGAGTTGGTGAAAATAATGGACTGTCACAGAACCATAGGCCAGGTGGTTCTGC CGGTGTTCTACGGTGTCGATCCCTCTGAAGTGCGGCGCCAAACTGGTGAATTTGGAAACAAATTTCAGGATCTTACAAAC AGAATTATTGCACTCGATAGATACGGCTTTGATCAGGTGCGAGTGCGACTAGATAATTGGGTGTCTGGTTGGAGGGTGGC GCTTTGTGAGGCCGGTGGCATTGCAGGGTTTGTTGTCTTAAATTCCAGGTAACTTCACAAACACACACTTCATTACCCCA TTAGAATTCTTTTAACTCCATTTCCTTTTTACTACTCTTATGTCATTTAGTATGCTTTTGTGATAGAGTTGAATGAATCA TAACTTTTTTTTTTTTTGACTAAGTTTCATTAACACTTCCACACATGGAGAGAGTTGAATGAATCATGTCATGTGCGAGT GTAAATGAATCATTAAAAAATAATTTGGAAAAAAACAATTTATGTTAATTGTTTCAATTAAGAAACATATATGCAAGTTG CATATAGGAATGAAACAATAATTTTCTTTGGTTTGTTGTATAGGAATGAAAGTGAGGCTATTGAGAATATTGTTGAAAAT GTTACTAGTTTGCTTGACAAGACAGACATGTTCATTGCTGATAATCCAGTGGGAGTTGAATCTCGAGTGCAAGATATGAT TCAACTGCTAGACAACCAACAATCAAATGATGTTCTATTACTTGGGGTATGGGGTATGGGAGGAATTGGCAAGACGACCA TTGCAAAAGCTATTTACAACAAAATTGGCCGCAATTTTGAGGGTAGGTGCTTCCTTGCAAATATTAGAGAAGTTGGGGAG CAAGATGCTGGACAAGTGCATTTACAAGAACAACTTCTCTTTGATATCTTCAAGAAAACAACCAAGGTACATAGCACTGA ATCAGGAAAAAATATATTAAAGGATAGACTTTGCAGCAAAAGAGTACTTCTTGTACTTGACGATGTGAACAAATTGGACC AACTGAATGCTTTGTGTGGAAGTCGTGAATGGTTTGGTTCAGGGAGTAGAATAATCATCACAACCAGAGACCAGCATATA CTGAGAGGGAGTAGAGTTGACCAAGTTTACATAATGAAACAAATGGATGAAAGTGAATCTATTGAGCTTTTTAGCTGGCA TGCATTCAAGCAAGCGAGTCCTAGAGAAGATTTTTCTGAAATTTCAAGAAATGTTGTTGAGTATTCTGGGGGATTGCCAC TAGCTGTTGAAGTCCTTGGGTCCTATTTGTTTGAAAGGGGGGTAACAGAATGGAAGAGTGTATTGGACAAACTCAAAACA ATTCCCAATGATCAAGTACAGAAAAAGTTAAGAATAAGCTATGATGGTTTAAATGATGATAAAGAGAAAGATATATTCCT TGACATAGCTTGTTTCTTTATTGGGATGGACAGAAGTGATGCTATACAAATATTAAATGGCTGCAAACTTTTTGCAGAAA TTGGAATTAGTGTCCTTGTTGAGAGAAGTCTTGTAACTGTTGATGATAAGAACAAGCTTGGAATGCATGATTTGCTGCGA GACATGGGAAGAGAAATCATTCGTGAGGTATCACCAAAGGAGCCTGAGGAGCGTAGCAGGTTATGGTTTCATGAGGATGT TATCGAAGTATTATCAGACCAAACCGTAAGAACTTCATTTTAAAATATTCAATTCTAAAGGAAGCGTAAAGAAAATATTT CAGTCACTCTTTAACATTCATTTGTTTTCTTGATTTGTTTGGTTATGAATTGTTTGTACTACCTGGTTCCATTAATTTTA GCAAATTCTGGGTTTCATACATTAATTTTAGCTGCCCTATATCTTTCAGCTATGCATTTTTTTTTAAACCTTTTTATGCA TCTTATTTCACAGGGAACAAAAGCTATTGAGGGACTGGCTTTGAAGTTGCCAGTTAAAAATACAAAATGTTTCAGCACTG AAGCATTTGAGAAGATGAAGAAACTCAGATTGCTTCAACTTGCTGGTGTAAAACTTGAAGGAGATTTTAAATATCTTTCA AGAAATCTGAGATGGCTGTGTTGGCATGGATTTCCGTTACCTTTCCTACCTAAAAACCTTCGTCAAGAAAATTTAGTTTC CATCATGTTAGAAAACAACAATATCAAACATGTATGGAAAGATGGCCAGGTATTGATTGAGTTTAGCTTTTCGCTTTTCA TGAATTCTTTTCAGTTTTCGATTTATAGATGCAATTTAACATAAGCATATTAAATAGTAGTAATATTTAGTTATGTGGTA CTTTTAGGCACAGTTAAGATATGGTTCACGGATGCACCAGTTTTGAATATAGGTCACCATAGAATTGTCCATATGTTACA TATTCACCTCTTTTATCTTAAACAGACAGAACATATTACAAACTAAATCTTGTGCATGTGCGAAACAGTTTGATTAAAAA AGCTTCAAATTCAAATGTCAAACCTATAAATGATCCTAATGTTTTAAGTTCTCCACAGAATGCTCATAGCCTCATACATG ACTTTTACTAATTTCTGTAGCGTCATATATATAAATGTAGCCTTGGTTGGAAGATTTTTAAAGCAAAAGTACTTCGAAAC CAATGGATATAGTCATGGACACTTGCTCATGTTTACTTTCCATTCTCTACTAACATTGAAATTGCTTCCATCTATTTTGT AAGCTTTTTCCATATGTTCTTTCTATAATATTTCTGATCTTGCAGAGGATGGAGATGCTGAAAATTCTGAATCTTAGTCA TTCTCAGCATTTGACACAGACCCCAGACTTTTCATGTATGCCTAATCTTGAAAAGCTTGTACTTAGAGATTGTCCAAGCC TGTCTGAGGTTTCCCATAGCATTGGACATCTCAATAAAGTTTTACTGATAAATTTGAGAGACTGTATTCGCCTTCGTAAC CTTCCAAGAAGCATCTATAAGTTGAAATCTCTGAAAACCCTCATCCTTTCTGGATGTTTAATGATTGACAAGTTGGAAGA GGACGTGGAACAGATGGAATCTTTGACAACCCTGATTGCAGATAACACTGCAATAACAAGAGTCCCCTATTCATTAGTCA GGTCAAAAAGCATTGGATATATTTCTTTGTGCGGTCATGAAGGACTCTCTCGTGATGTGTTTCCTTCTATCATTTGGTCT TGGATGTCACCAACAAATAACCTCTCATCCTTAGTTCAAACATCTGCAGGCATGTCATCTCTTGTTTCTTTAAATGTATC AAGTAGTAGTTCCCAGGGACTATCATCTATTCCCGTGGACCTCCCAAAGCTTCAAAGTCTGTGGATGGAGTCTGGCTCAG AACTTCAACTTTCTCGAGATGCAGAAAGAATTTTGGGTGCCTTGTATGCCATGAATTCTTCTAAAGAATTGGAATCAACT GCAACTACATCAGAAGTATCAAATATGGAAACTTCTGCCTTGATGGAATGCATTTCTCAAGGGCTTGATTCCGGATCAAA AGGTTCCTTGAAATATCTTTTATTTCAAATGGGAATGAATTGTCAAGCCACCAGTATTCTGAAAGAGATCATTTTAGAGG TTTCTATCTCTCCCTCTCTCTTGTGTATAGGCTTGCATTTTAAAATTAAGATATATGAAGTCATATGTGAATTCTTGCAT ATACATCTATAACTATTAAAGAAATACATATGTGAACTCTCAGATTCAATCTTTCCTGTAAGAAAAAGAAATCATTGAAT CTGATTTTTTGCTTTAGCTAGTACATAGAGCAGTGACATTATTCGTGTGTATTAGTTTGAAAAACTGTTACAAACTCCAA TGGGCATGCTGATTTTAGTGAGGGCACCATTCGTTTAAATCACTGGTAGTCTCATTTTATTTTTTGTTGGAATGGATTTG TAAGCTGGACTGGTAGTCTCTGTTTGAAGAATCCAAGCAATAATTTTAACGATTTAATTTTTTCTTCTTCAATAAATGAT CATCATTTCATAATTTGTCTGTTAATTAGAAGATAATAATATTATCGACGAGAAAATGATTAATTATCTTAGGAGGATAA CTATATTTTTAATTTTTGAATGAATGATAAGGTTGCATTTATATACTGTTCAATAAAATCTGCAGCATATTTTCATTTTT ACAGAATATGGCTGTTGGAGGGTCTGGTGTGAGCTTGCTCCCTGGAGACAATTATCCAGATTGGTCAACCTTCAACTCAG AAGGCTGTTCTGTAATTTTTGAAGTCCCTCAAGTGAATGGGCGTAGTTTGAAGGCAATGATGTGTGTTGTCCATTCTTCT ACCGCAGATGACATAACATCAGATGGCCTTCAAAATGTGTTGGTGATAAATTGCACAAAGAACACTATTCAGCTCTATAA GAGGAATGCATTAGCCTCCTTTGAAGATGAAGAGTGGCGGAAAGTAGTATCAAATATTGAACCAGGTAACAAAGTAAATA TGGTGGTTGTTTTTGAGAACGGATTCACTGTGAAGAAGACAACTGTTTATCTTGTATATGATGAACCAATTAGGGAGGAA GTGGAACCTTGCAATGCACCATATAAGAATGAAATTGTTTTTGGTGGTGATGAAATTGAATCTGCTGTCAGGAGGAGCTC TGTTCAAGTGGAGTCAGTGGATGACTTGAAACAAAAACAGAAGAGAAGGAAATTCCAATAAAAGATGGTGGAAGAATGGC TGGTTAAAACTATTTTTTATGGTGCCTGCAAATCTCATATTGGTGCTTGCTGATTGTGGGGTTTGATCAACAAACACACC TATCTATTCCCATGGGACTGCATCAGCAAATGGTAGAAAAATATCATCTGCAACAATAATAGGGATGCAACCATATGCCA CTGCTTCAACCAATCTTGGGCTCCAAGGTGCATAGTCAAATAACAGCTAGTTGCATGTTCTCGTGGTATGTGGTTGGATG CTCAGTTCACCTCTGCCAGATTGCAAAATGCAAATCACAGTCAGTTTAACCGGCCAGGATTATTTGTTGATCTAAGTTTG TTAATAAAGCAGCAACGCATGCACCCGAACTTCATGCACTCATTTTTCTTAGCAGCAATTTTCCTGCACATCTGCTCAAT AAGAGCACTCGTTTTTCTTCATTTACGAGATTACATTAGCAATTGGTGTAAATATATGTATCGATAATAGAAGTGGGTTT CTCCACCAGCAAAAACAAATTTTTTCACCTTTTACAATCATCTAGTTCTGGTCTGATTGCCTTCAATCCCTTGAGTCGGC ACATAAAGTCCCTCAGCCATTGGGAGGTGTCGCCCATAGTATAACTGTCCTCTCCGTAACCAAAGTGTCTTAGAGATTTA TTGCCATACTCAACCGGAGCTGAGACTCTACCCCGAGAATGAAGGTAGAAGGAGGCACCAAACAATCACAGAAACCAACA CAGTTGAGACCAACCTCTGTCTAGAGTTCCCATTTTCTATCTTTCTTGTCTTCATTACTACTGAACCACCTCTCTAGAAT GACTTCAACTCCTCAACTGCCACAAGATTGAAAATCAACAACTGAGAAAGGCGTAGCTCAAATAGCCATCATAAACTTTT CCTTGCCACACTCCTGATTCAAAGTTTTCTTACTCATGCTCTTGCAAGGGATCGACCACACTAATTACTCTATTCCCAGA TCTTCAAGCATCATGTTATACAAAATTATAATATTTAAATTATTTTTTTAATTCATCCTGTCATACATGATACAACCTAT AATGACAAACGAATATGCTGATTCAGCAGCCACCAAGATGGTATCTGAGACTGTTTGTATCTGAAAACTTGTATACTTAT ATTAAATTCAGCAAATTATTGGCAGAGTGGAGAGTATCTCCTACATATTATTTCCGTGTTACTAAGAGTACTGTTTTTCC TGTTCATTTCAAATTGCAGTTTTTTTTTTGGTGTAATGAGAATTGGGCCAGTTTTGTTAAATTGGGTTCCAAGGTGGGCT CCATGTATCCAGTATGATAGATTTGAAACAAAACTCCAATTTAACAAAACAGACGGCAGTTTTTTCAACAATGTTTGACC TAAGTAACATATATTAGATACAACCGTTTGATACAAAACTCAAATCACACGGCAATTTCGCTTCTCACCCTCAAAATTCT CCATAATTTCAACCTCTTTCCGTCAGCAGTGAATCACGATTGGTACTTTAATTCATTATTCAATGGTTTTCCTCATTTTC TCCTATTTTTC 

CDS sequence (LotjaGi3g1v0214000.1) extracted from Lotus japonicus Gifu v1.2 CDS.

ATGGCGGCTGACCCATCTTCTCATCGGAGCAATTCGCCATCTCAGGACTTCAATTGGGATGATTTGTTGGATCAGTCTGA AACACTGCTGCACGATTGTGTTTCAACTTTTCATTCTCCTCCAGCTCCAGCTCCAGCTCCACCTCCAGCTCCAGCTCCAG CTCCACCTCCAACTGTAAATGAAGTGTTTTGGGAGCAGTTCTTAACGGAAAGGACCAGTGATGAGTTGTTGAGAATCCAT GAAGTGTTCTTGAGTTTCAGAGGGGAGGATACTCGTGCTTCCTTCACTTCACATCTCTATGCCGCTCTTCAAAACGCCGG AGTCAACGTTTTCAGGGACGACGATTCCCTTCCAAGGGGAGATCAAATTACAAGTTCACTGCTGCAAGCAATCGAAGACT CTCAGATCTCAGTTATTGTTTTCTCAATCAATTATGCAAATTCGCGGTGGTGTATGGAAGAGTTGGTGAAAATAATGGAC TGTCACAGAACCATAGGCCAGGTGGTTCTGCCGGTGTTCTACGGTGTCGATCCCTCTGAAGTGCGGCGCCAAACTGGTGA ATTTGGAAACAAATTTCAGGATCTTACAAACAGAATTATTGCACTCGATAGATACGGCTTTGATCAGGTGCGAGTGCGAC TAGATAATTGGGTGTCTGGTTGGAGGGTGGCGCTTTGTGAGGCCGGTGGCATTGCAGGGTTTGTTGTCTTAAATTCCAGG AATGAAAGTGAGGCTATTGAGAATATTGTTGAAAATGTTACTAGTTTGCTTGACAAGACAGACATGTTCATTGCTGATAA TCCAGTGGGAGTTGAATCTCGAGTGCAAGATATGATTCAACTGCTAGACAACCAACAATCAAATGATGTTCTATTACTTG GGGTATGGGGTATGGGAGGAATTGGCAAGACGACCATTGCAAAAGCTATTTACAACAAAATTGGCCGCAATTTTGAGGGT AGGTGCTTCCTTGCAAATATTAGAGAAGTTGGGGAGCAAGATGCTGGACAAGTGCATTTACAAGAACAACTTCTCTTTGA TATCTTCAAGAAAACAACCAAGGTACATAGCACTGAATCAGGAAAAAATATATTAAAGGATAGACTTTGCAGCAAAAGAG TACTTCTTGTACTTGACGATGTGAACAAATTGGACCAACTGAATGCTTTGTGTGGAAGTCGTGAATGGTTTGGTTCAGGG AGTAGAATAATCATCACAACCAGAGACCAGCATATACTGAGAGGGAGTAGAGTTGACCAAGTTTACATAATGAAACAAAT GGATGAAAGTGAATCTATTGAGCTTTTTAGCTGGCATGCATTCAAGCAAGCGAGTCCTAGAGAAGATTTTTCTGAAATTT CAAGAAATGTTGTTGAGTATTCTGGGGGATTGCCACTAGCTGTTGAAGTCCTTGGGTCCTATTTGTTTGAAAGGGGGGTA ACAGAATGGAAGAGTGTATTGGACAAACTCAAAACAATTCCCAATGATCAAGTACAGAAAAAGTTAAGAATAAGCTATGA TGGTTTAAATGATGATAAAGAGAAAGATATATTCCTTGACATAGCTTGTTTCTTTATTGGGATGGACAGAAGTGATGCTA TACAAATATTAAATGGCTGCAAACTTTTTGCAGAAATTGGAATTAGTGTCCTTGTTGAGAGAAGTCTTGTAACTGTTGAT GATAAGAACAAGCTTGGAATGCATGATTTGCTGCGAGACATGGGAAGAGAAATCATTCGTGAGGTATCACCAAAGGAGCC TGAGGAGCGTAGCAGGTTATGGTTTCATGAGGATGTTATCGAAGTATTATCAGACCAAACCGGAACAAAAGCTATTGAGG GACTGGCTTTGAAGTTGCCAGTTAAAAATACAAAATGTTTCAGCACTGAAGCATTTGAGAAGATGAAGAAACTCAGATTG CTTCAACTTGCTGGTGTAAAACTTGAAGGAGATTTTAAATATCTTTCAAGAAATCTGAGATGGCTGTGTTGGCATGGATT TCCGTTACCTTTCCTACCTAAAAACCTTCGTCAAGAAAATTTAGTTTCCATCATGTTAGAAAACAACAATATCAAACATG TATGGAAAGATGGCCAGAGGATGGAGATGCTGAAAATTCTGAATCTTAGTCATTCTCAGCATTTGACACAGACCCCAGAC TTTTCATGTATGCCTAATCTTGAAAAGCTTGTACTTAGAGATTGTCCAAGCCTGTCTGAGGTTTCCCATAGCATTGGACA TCTCAATAAAGTTTTACTGATAAATTTGAGAGACTGTATTCGCCTTCGTAACCTTCCAAGAAGCATCTATAAGTTGAAAT CTCTGAAAACCCTCATCCTTTCTGGATGTTTAATGATTGACAAGTTGGAAGAGGACGTGGAACAGATGGAATCTTTGACA ACCCTGATTGCAGATAACACTGCAATAACAAGAGTCCCCTATTCATTAGTCAGGTCAAAAAGCATTGGATATATTTCTTT GTGCGGTCATGAAGGACTCTCTCGTGATGTGTTTCCTTCTATCATTTGGTCTTGGATGTCACCAACAAATAACCTCTCAT CCTTAGTTCAAACATCTGCAGGCATGTCATCTCTTGTTTCTTTAAATGTATCAAGTAGTAGTTCCCAGGGACTATCATCT ATTCCCGTGGACCTCCCAAAGCTTCAAAGTCTGTGGATGGAGTCTGGCTCAGAACTTCAACTTTCTCGAGATGCAGAAAG AATTTTGGGTGCCTTGTATGCCATGAATTCTTCTAAAGAATTGGAATCAACTGCAACTACATCAGAAGTATCAAATATGG AAACTTCTGCCTTGATGGAATGCATTTCTCAAGGGCTTGATTCCGGATCAAAAGGTTCCTTGAAATATCTTTTATTTCAA ATGGGAATGAATTGTCAAGCCACCAGTATTCTGAAAGAGATCATTTTAGAGAATATGGCTGTTGGAGGGTCTGGTGTGAG CTTGCTCCCTGGAGACAATTATCCAGATTGGTCAACCTTCAACTCAGAAGGCTGTTCTGTAATTTTTGAAGTCCCTCAAG TGAATGGGCGTAGTTTGAAGGCAATGATGTGTGTTGTCCATTCTTCTACCGCAGATGACATAACATCAGATGGCCTTCAA AATGTGTTGGTGATAAATTGCACAAAGAACACTATTCAGCTCTATAAGAGGAATGCATTAGCCTCCTTTGAAGATGAAGA GTGGCGGAAAGTAGTATCAAATATTGAACCAGGTAACAAAGTAAATATGGTGGTTGTTTTTGAGAACGGATTCACTGTGA AGAAGACAACTGTTTATCTTGTATATGATGAACCAATTAGGGAGGAAGTGGAACCTTGCAATGCACCATATAAGAATGAA ATTGTTTTTGGTGGTGATGAAATTGAATCTGCTGTCAGGAGGAGCTCTGTTCAAGTGGAGTCAGTGGATGACTTGAAACA AAAACAGAAGAGAAGGAAATTCCAATAA 

Protein sequence (LotjaGi3g1v0214000.1) extracted from Lotus japonicus Gifu v1.2 Proteins.

MAADPSSHRSNSPSQDFNWDDLLDQSETLLHDCVSTFHSPPAPAPAPPPAPAPAPPPTVNEVFWEQFLTERTSDELLRIH EVFLSFRGEDTRASFTSHLYAALQNAGVNVFRDDDSLPRGDQITSSLLQAIEDSQISVIVFSINYANSRWCMEELVKIMD CHRTIGQVVLPVFYGVDPSEVRRQTGEFGNKFQDLTNRIIALDRYGFDQVRVRLDNWVSGWRVALCEAGGIAGFVVLNSR NESEAIENIVENVTSLLDKTDMFIADNPVGVESRVQDMIQLLDNQQSNDVLLLGVWGMGGIGKTTIAKAIYNKIGRNFEG RCFLANIREVGEQDAGQVHLQEQLLFDIFKKTTKVHSTESGKNILKDRLCSKRVLLVLDDVNKLDQLNALCGSREWFGSG SRIIITTRDQHILRGSRVDQVYIMKQMDESESIELFSWHAFKQASPREDFSEISRNVVEYSGGLPLAVEVLGSYLFERGV TEWKSVLDKLKTIPNDQVQKKLRISYDGLNDDKEKDIFLDIACFFIGMDRSDAIQILNGCKLFAEIGISVLVERSLVTVD DKNKLGMHDLLRDMGREIIREVSPKEPEERSRLWFHEDVIEVLSDQTGTKAIEGLALKLPVKNTKCFSTEAFEKMKKLRL LQLAGVKLEGDFKYLSRNLRWLCWHGFPLPFLPKNLRQENLVSIMLENNNIKHVWKDGQRMEMLKILNLSHSQHLTQTPD FSCMPNLEKLVLRDCPSLSEVSHSIGHLNKVLLINLRDCIRLRNLPRSIYKLKSLKTLILSGCLMIDKLEEDVEQMESLT TLIADNTAITRVPYSLVRSKSIGYISLCGHEGLSRDVFPSIIWSWMSPTNNLSSLVQTSAGMSSLVSLNVSSSSSQGLSS IPVDLPKLQSLWMESGSELQLSRDAERILGALYAMNSSKELESTATTSEVSNMETSALMECISQGLDSGSKGSLKYLLFQ MGMNCQATSILKEIILENMAVGGSGVSLLPGDNYPDWSTFNSEGCSVIFEVPQVNGRSLKAMMCVVHSSTADDITSDGLQ NVLVINCTKNTIQLYKRNALASFEDEEWRKVVSNIEPGNKVNMVVVFENGFTVKKTTVYLVYDEPIREEVEPCNAPYKNE IVFGGDEIESAVRRSSVQVESVDDLKQKQKRRKFQ 

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 35 58 24 -
MobiDBLite 40 58 19 -
PANTHER 70 1125 1056 0.0
PANTHER 70 1125 1056 0.0
Gene3D 78 255 178 1.2E-61
ProSiteProfiles 78 217 140 25.119
SMART 79 231 153 4.4E-40
SUPERFAMILY 79 200 122 1.01E-36
Pfam 80 197 118 4.9E-38
Gene3D 256 422 167 2.8E-33
SUPERFAMILY 260 521 262 7.67E-66
CDD 269 409 141 1.54552E-4
Pfam 272 504 233 3.2E-33
SMART 289 428 140 2.6E-5
PRINTS 292 307 16 2.0E-22
PRINTS 368 382 15 2.0E-22
Gene3D 426 510 85 8.1E-7
PRINTS 461 475 15 2.0E-22
SUPERFAMILY 567 894 328 9.75E-32
Gene3D 607 977 371 4.2E-29
PRINTS 699 715 17 2.0E-22

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 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).
Biological process Signal transduction The cellular process in which a signal is conveyed to trigger a change in the activity or state of a cell. Signal transduction begins with reception of a signal (e.g. a ligand binding to a receptor or receptor activation by a stimulus such as light), or for signal transduction in the absence of ligand, signal-withdrawal or the activity of a constitutively active receptor. Signal transduction ends with regulation of a downstream cellular process, e.g. regulation of transcription or regulation of a metabolic process. Signal transduction covers signaling from receptors located on the surface of the cell and signaling via molecules located within the cell. For signaling between cells, signal transduction is restricted to events at and within the receiving cell.
Molecular function ADP binding Interacting selectively and non-covalently with ADP, adenosine 5'-diphosphate.

Expression data

Expression pattern

Expression pattern of LotjaGi3g1v0214000.1, powered by ExpAt. For advanced configuration, data transformation and export options, view expression data in the ExpAt application.

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