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LotjaGi3g1v0090300.3

Overview

Field Value
Gene ID LotjaGi3g1v0090300
Transcript ID LotjaGi3g1v0090300.3
Related isoforms 3
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|G7LF48|G7LF48_MEDTR Disease resistance protein (TIR-NBS-LRR class); Found in the gene: LotjaGi3g1v0090300
Working Lj name n.a.

Sequence information

Genomic sequence (LjG1.1_chr3:10217623..10224810) extracted from Lotus japonicus Gifu genome v1.2.

AAAATAGAATGAACCCCATATTGCAATGATTTTCTTCTATCAAAATTCCACTGGTTGCGTAAGATCAACAATATGATCGA CAACAAAGAAAAAAAAATGACCAACTTGCATGAACTCTTCAAATTCATGCTTCTATTTCAACTTTGGACTTTGTAGGTAG TTGTGCTTTCCATTTCTAACCGTTGACTTCCAATTTTTCATTCATCAAAATCCATGGCTTATTGGTCTGATGAAGAAAAC AAACCAAAATGCATCTACGACGTGTTCATCAATTTCAGGGGAGAAGACACACGCAGAAACTTGGTTTCTCACCTCTATGC TTCCCTCTCCAATGCAGGAGCCTACACTTTCCTTGACAATGAGACCTTCCCCAAGGGAATGGAACTTGGTCCTGAACTCT TGCGAGCAATTGAAGCTTCTCGTGTATCCATCGTCGTTTTCTCGGAGAACTACACTGATTCTAATTGGTGTCTCATCGAG CTTTGCAAGATCATGGAATGCCATAGAGATCATGATCAGGTGGTTCTTCCCATATTCTATGGCATTGATCCATCAGTTGT GCGCCATCAGAAAGGTGCTTTCGGCAAAGCGTTGCAAGCAAGTGCTGTAAAAATTCGCACCGGAGAAGATATGAGCAAGT TGCTGTCGAGTTGGAGGAGTGCGCTAACAGATGCTGCGAATTTGTCTGGTTGGGATGTCACCGATTTCAGGTAAATCTTA AATGTAGAGTGAATCCTCAATTTTGTCCTTGAAGGTGTAAGGGTCACACAAGTTAATCTCTAGAAGAAGGAAATACCATA GCAGTCCGTGATTATTTGAGCTTATCTGATAGCATAAGCGCTTGTGCAAGTGTGTGGGAGAGCTTATGCTGTTTTGAGCT TCTTTTCATAAGCTACTCAGCATAGCTTATGAAAAAGAGCTTATGCTTATATATAACTTATTCAATTTATTTCAATAAAT TTTTTAAAATAGCTTATGAATAAGCGCTTATGTCATAAGCCCTTATGGTCGCTTAGGACTATAAATGCTTTATTAAGCTG TTTTCCCAAACGAGGGGCCTATGTCAAATTCAGTCAAGTTAGTCCCTAGTCCCTACCATTAGATAAAGAATAATGTTGTT CAGTTAGTCCTTGTACTTGACTGACATTTGACACAATGAGACTGCGAGGGTATTTCCTTCTTCTAGAGACTAACTTGCCA GACCCTGAACCTTACACTTTTAGAGACGAAATTGAACATTCACTCTAAATTTAACTTTCTAGTTTCTTGCTTGTGTTTCG ATTTTGGATTATGAAGCATATTTTAAGGTATTAAGCTTTCTTAGGTTTTGATTTTTCGAATTTTTGCTCATTTAGTTGAT CTGTTTTATTGAAGGAGTGAATCTGAACTAGTGAAGAAGATAGTAGAGAACGTTTTGACAAAATTAGATGTCACACTCTT GTCTATTACTGATTTTCCGGTTGGATTAGAATCACGCGTGCAAGAAGTGATTGAGTATATTGAAAGTCAATCAAGCAAAG TTTGTATGGTAGGGATTTGGGGAATGGGAGGGTTGGGTAAAACAACCACAGCCAAAGCCATCTACAACCAGATTCATCGA AGATTTGAGGATAGAAGTTTCATTGAAAATATTAGAAAAGTTTGTGAAAATAATAGCAGAGGGCATATGCATTTGCAAGA ACAATTTCTTTCTGATGTCGTCAAGACAAAGGTGAAGAAGATTCGTAGCATTTCCACAGGGACAACTATGATTAAGAAAA GACTATCTGGAAGAAGGGCACTGGTTGTACTTGATGATGTGACCACATTTGAGCAATTAAAAGCCCTGTGTGGAAATCGT AAATGGTTTGGACAAGGAAGTGTTATAATTGTTACAACCAGAGATGTACGGGTACTTAGTTTACTTAAAGTCGACTATGT TTATAAAATGGAGGAAATGGATGAAGATGAGTCCCTTGAGCTTTTCAGTTGGCATGCTTTTGGAGAAGCAAGTCCGAGAG AAGACTTGATTGAACTCTCGAGAAATGTAGTTGCTTACTGTGGAGGGTTGCCACTAGCTCTGGAAGTCCTTGGATCTTAC TTATATGAGAGGACAGAACAAGAATGGAAAAGTGTACTGTTAAAATTGAAGAGAATTCCCAATGATCAAGTGCAAGAAAA ACTGAGAATAAGCTATGATGGTTTAAAGGATGATATGGAAAGGGATATATTTCTTGACATATGTTGTTTCTTCATTGGAA AGAACAGAGCCGATGCTGCAGATATACTAAATGGCTGTGGACTTTATGCTGATATTGGAATAACTGTTCTCATAGAGCGG AGCCTCGTCAAAGTTGGAAAGAATAACAAGATTCAAATGCATGATTTGCTACGAGACATGGGTAGAGAAATAGTTCGTGG AAGTTCAGCAAAAGATCCTGGGAAGCGTAGTCGATTGTGGTTTCATGAGGATGTCCATGATGTTTTGACCAAAAATACTG TAAGAATACAGATTGAAACTTTTGATTATTCTCCATATTCCATAATCGTTTCAGAATCATAAAATATTTTGTTTGTTTCT GAATTGTTTTGCTCATCTTAATTACTGAATGAAAATTGTAGGATTCATGACCTGAGCTGAGAGTGTTTGCCTTGTAATGT TCATTGCAAGTGTAGTTATAGAAAACAAAAACTGTTTCCCCTAAATTTTTCTCTGTTTATTTTTTCTTCACATGCAGGGA ACAGAAACTATTGAGGGATTGGTTTTGAAGTTGCAAAAAACCGGCAGAGTTTGCTTCAGTGCTAATGCTTTCAAGGAAAT GAGAAAACTGAGACTTTTACAACTTGATTGTGTTGACCTCTCTGGAGACTATGGGCATCTTTCCCAAGAACTGAGATGGG TCTATTGGCAAGGATTTACTTTGAAATATATACCTGATGACTTATATCAGGGAAATCTAGTTGTTATAGACTTAAAGTAC AGTAGTATTAAACAAGTTTGGAAGGAAACCAAGGTATAGTACTAAAATTTATTATAAAGCTCAGAGTTTGATGACAATAA CAATTGATACCAGCATTTTTTCATTTTCTCCTCTAATTTTCCTTTTAAACATATATCCTCTTGCAGCTGCTGGAGAAGCT AAAAATTCTCAATCTCAGTCATTCCAGGTACTTGGAAAACACCCCAGATTTTTCGAAACTACCGAATCTAGAAAAGCTCA TTCTAAAGGATTGTCCAAATTTGTCCGAGCTACACCAGTCCATCGGAGATCTCACTAATCTTCTTCTTATAAATTTGAAG GACTGTACAAGCCTTAGAAATCTCCCAAGGAAGATCTATCAGTTGAAATCTTTGACAACTCTCATCCTTTCAGGTTGTTC AAAAATTGATAAGTTGGAAGAAGATATAGTGCAGATGGAATCCTTGACAACACTTATTGCAAAAGATACAGCTATAAAGG AAGTTCCCTATTCAATACTAAGATTGAAAAGCATAGGATATATATCCTTATGTGGATATGAAGGATTAACACGTGATGTT TTTCCTTCTCTCATTCGGTCTTGGATGTCACCCACAATGAATCCCCTATCCCGCATTCCCCAATTTGGGGGCATGTCATT GGCTCTAGTTTCTAATTCGGGCAATGTATCATCGTGGCTTAGCAGCCTGTCCAAACTAAGAAGTGTTTGGATACAATGTC ACTCGGAGATTCAAGTAACTCAAGAGTCAAGAAGAATTATTGATGATCAATATGATGCAAAGTGTACTGAATTGGAAACA ACATCATCATATGCAGCACATATCTCAAGTGTTTCCTTGAGATCACTTTTGATTAGATTGGGAAGTTGCGACACAGTCAT TGATACTCTTGGCAAGAGCATATCACAGGTTACTTCTTTATCTTCTCACCTGTACTGATCTTTATTTATAATTAGGAAAA GATGGAATAATTTCCCTAATGCATTTGTTTGCTTTAGTCTAAAGTCAGCTAAAGAAAGCAATAGATGAATGATGACTGAA CTGGGATGGCCATGGCAAACAGGAAATTAAGATAGAGGTGCAAATTTTTTATACAAGTGGGGATCATGAATAGCATATGG AAGGTGAAAAGCAGTATAGAGAGTATGAAATATAGAGTATGAATGAACATGAAAAAAGGGTGATTTACCCATAAATGTTC AGACATGTATGACGTACAAGTTCTGCAATTTTTTTTTCTTTTGGTAAGAGTTTTGCAGCTTTTATGGATGCCGGAATAGG TTCAAACTTTCTCCTGTTGATGGTTGTGTTACAGAACTATTAGTTTTCTTGCCTCTGTTTTTATTCATGCAAAACACATA CACTATAAATGATAATTAACATTCACCTGTTGGAATTCAGAGTGACACAGTAAGAGGTACTAAAAGTCCATTTGTATGAT TAAATAAATAGCCGACTAATATTTTCTTGTTACAGGGATTGACAACCAATGATTCTAGTAATTTTTTCCTTCCGTGTGAT AATTATCCTTCTTGGTTAGCCTATAAAGGTGAAGGACCTTCAGTAAATTTTCAAGTTCCTGAGGATCGTGATTGTTGCTT GAAGGGAATAGTTTTATGTGCTGTTTATTCACCAACACCTGGAAATATGGCAACTGAATGTCTTACTAGTGTCCTGGTCA TTAATTACACAAAATTCACCATTCAGGTCTACAAGCAAGATACTGTGATATCCTTTAATGATGAAGATTGGGAGAGTGTA ATATCAAATCTAGATCCTGGTGACAATATGGAGATTGTTGTTGCTTATGGGTGTGGATTGACTGTTAAGGAGACAGCTGT GTATCTAATATATGGTCCGTCAATTACTATGAAAGTTGAGCCATCAATTACTATGCAAGTTGAACTTGAGCTGTCAGTTA ATGTGAAAATGGAGGCATCACCTGAAGTGAACTTGCTTCCATCACTTGATGTGAAAATGGAGTCATCACCTGAAGTAAAC ATGCAGCCATCACCTAGAGTGAACATGCTTCCTTCACCTAACATGAAAATGGATCCATCAACTGAAATGAACATGCAGCC GTCACCTAATGTGAAATTGAAATCATCACCTAACAGGAAAATGGAGCCTTCACCAAAACCAAATAAAAATTTCTTGACAA GACTTGCAAAGAGAATGGGAGAATGTTCATGCTTGAACCAAACTTGAGCTTTCAACAATTTTTGATTGGTTATGCCTTTG TCATAATCTGAGATTCCCTTGTTATATGTGTTTCGGAACATTTTCTAGGAAGGATGATGTACCGAGCTATGTTCCGTAGG CCAGATTTGTCTCTTCCTCCGAGCATTCCTTCTACCAGGTTTGTCTCTCTTCTTTCTTAGAATTCATCCCTATTGTTGAT TCTGACATTTGATTGTTAATTTAAAATCCTTGTATTTTATGTTATATATATATCATCAATGTTTGATTATTTTGTTGATT TTATGTTATTCCTTAGTGTCCTCAATTTTTCAAGCATCTTTCATGATTGTGATAACTTTTACTGATGTGTTCTTTAATCT ATGACAGAACAGATCTTGAGTTTAATTTGGGTCAAAATATAATCAGTATAGTATATTTGGTTTGTCAAATTATTTTAACA TTTTGGAGTATGTTTATCTGCACATAAGTTTTTCTAATCATCCATGAATGGTATGTTTTTGAGTGTTTTGGTTAATATTT TAATTGATTACTTTCAACTTTTACCAGAAAAGGCTTTCAGAAAGTTTGATTCTTGCGGGGGAAATTAAAACCCAATATAT GTAGTTAAGTATCAGGATTTCATAACAGCAAAATTTGGTTTGATCACAGTTTTATGAGAGCTGTGCAAAAGAAACGACGT AAACATCAATCTCTTTTGTGTCATGGACATAGATGTATGAGAGCTGTGCGGAAGAAAACTTAAATATTTATATGAGATCT AATAATTTACTTTTACTTTTAGTTCTTTTTTATATATAACTATGCTAACCTTTGCTATTTCTCGCCGATTCCCAGAAAAT GTTAACAGAGAACCTCAAAGCTTGCAGAAACTGCTACATTTCCCACTGAACCATCAGTTACAGCATAAACTGTGCTAGAA AAGTATCCTAAATGAACAGGCCAGGTGAATAAGCTTTGCTAACTGTTTTATACTCTTTATTCAGTTAGGTAGGGAGAAGG GGCTTAATATTATGACAATAGTTCATATGGATGGTATAGCCATAGCATTATGGGGTTTCTTTAATGTAATGTTTAATGAT TGTTCACTAATTGGTGTCTCACACCTGGGTAGCTATGGAAATTCGCCTTTTTTGCTGAAGAATTTTGGATGGTGCAGGTG GTAGCCTCTCAGCAATGAATCCCCTTCTTGGTTTTGTCAGGCCTTCTATATTTGTCCTCATTGAGGTTGTTCTAGCAATG TTTTCTTTTCCATCTATGGAAGAGCTACACGAGGGCCTTCTCTCAGAATACTTCTCAATTGTGGTCTTTTAGAAGGATTC TGTGTGTTTTACCAATGTCACTTGAATTTTGAGCTGAAACAGCACCAAGTTATCTTCTAGCTTGGTTTGGTCTGATTTTT CGTCCTTTGCTATCTGGTTCTCAAGGTCCCGAACCTTTTTCACGAGATGATCAGGTGTTCACGTATGAAGTTAGATTAGC CTCTTTTGGTGAGTGTTCTTAACATGTGCTTTGTTGTAGGTGGCACTAACGCCGCAAATAGATTCACTCTTACGTTCATG AAAAAGATTTTGAAGATGAGGTTGAGCTTGATATTATCTTGGTCGATGTCTACTCCAAATGTGGATTGGCAATCAAAGGA TATTCATTCCTGTTGAGCCCAGAAATATATGCACTAATGACAAGGAAAGCATGAAGCCTACAAGAGAAGTCACTTAAGCT GTAATAGGAATATGATAAATTATGTTTACATGTTTAGTTCTTACAACCATTTGTGAGTCTTGACCTAGTTTCTGCCTCAT TAGGAAGATATCATAGTTTTCTTCTTTTCATCTTTTATCTGAGTTTATCAGCAAAGATTAGTGGCGGAGACAGACTTTCC GGTTGAGGGTGGCCACAAAAAAAAAAAAAAAGCGTACAATTTTTTTTAAGTTGATTTTTTTTTAAAGTTACATACTTTTA TATTCTGAAAAAGATGATGTTTTAATTTTGCGTTAAATATGTTTTTGATCTCTATAAATTGTGAATTA 

CDS sequence (LotjaGi3g1v0090300.3) extracted from Lotus japonicus Gifu v1.2 CDS.

ATGGCTTATTGGTCTGATGAAGAAAACAAACCAAAATGCATCTACGACGTGTTCATCAATTTCAGGGGAGAAGACACACG CAGAAACTTGGTTTCTCACCTCTATGCTTCCCTCTCCAATGCAGGAGCCTACACTTTCCTTGACAATGAGACCTTCCCCA AGGGAATGGAACTTGGTCCTGAACTCTTGCGAGCAATTGAAGCTTCTCGTGTATCCATCGTCGTTTTCTCGGAGAACTAC ACTGATTCTAATTGGTGTCTCATCGAGCTTTGCAAGATCATGGAATGCCATAGAGATCATGATCAGGTGGTTCTTCCCAT ATTCTATGGCATTGATCCATCAGTTGTGCGCCATCAGAAAGGTGCTTTCGGCAAAGCGTTGCAAGCAAGTGCTGTAAAAA TTCGCACCGGAGAAGATATGAGCAAGTTGCTGTCGAGTTGGAGGAGTGCGCTAACAGATGCTGCGAATTTGTCTGGTTGG GATGTCACCGATTTCAGGAGTGAATCTGAACTAGTGAAGAAGATAGTAGAGAACGTTTTGACAAAATTAGATGTCACACT CTTGTCTATTACTGATTTTCCGGTTGGATTAGAATCACGCGTGCAAGAAGTGATTGAGTATATTGAAAGTCAATCAAGCA AAGTTTGTATGGTAGGGATTTGGGGAATGGGAGGGTTGGGTAAAACAACCACAGCCAAAGCCATCTACAACCAGATTCAT CGAAGATTTGAGGATAGAAGTTTCATTGAAAATATTAGAAAAGTTTGTGAAAATAATAGCAGAGGGCATATGCATTTGCA AGAACAATTTCTTTCTGATGTCGTCAAGACAAAGGTGAAGAAGATTCGTAGCATTTCCACAGGGACAACTATGATTAAGA AAAGACTATCTGGAAGAAGGGCACTGGTTGTACTTGATGATGTGACCACATTTGAGCAATTAAAAGCCCTGTGTGGAAAT CGTAAATGGTTTGGACAAGGAAGTGTTATAATTGTTACAACCAGAGATGTACGGGTACTTAGTTTACTTAAAGTCGACTA TGTTTATAAAATGGAGGAAATGGATGAAGATGAGTCCCTTGAGCTTTTCAGTTGGCATGCTTTTGGAGAAGCAAGTCCGA GAGAAGACTTGATTGAACTCTCGAGAAATGTAGTTGCTTACTGTGGAGGGTTGCCACTAGCTCTGGAAGTCCTTGGATCT TACTTATATGAGAGGACAGAACAAGAATGGAAAAGTGTACTGTTAAAATTGAAGAGAATTCCCAATGATCAAGTGCAAGA AAAACTGAGAATAAGCTATGATGGTTTAAAGGATGATATGGAAAGGGATATATTTCTTGACATATGTTGTTTCTTCATTG GAAAGAACAGAGCCGATGCTGCAGATATACTAAATGGCTGTGGACTTTATGCTGATATTGGAATAACTGTTCTCATAGAG CGGAGCCTCGTCAAAGTTGGAAAGAATAACAAGATTCAAATGCATGATTTGCTACGAGACATGGGTAGAGAAATAGTTCG TGGAAGTTCAGCAAAAGATCCTGGGAAGCGTAGTCGATTGTGGTTTCATGAGGATGTCCATGATGTTTTGACCAAAAATA CTGGAACAGAAACTATTGAGGGATTGGTTTTGAAGTTGCAAAAAACCGGCAGAGTTTGCTTCAGTGCTAATGCTTTCAAG GAAATGAGAAAACTGAGACTTTTACAACTTGATTGTGTTGACCTCTCTGGAGACTATGGGCATCTTTCCCAAGAACTGAG ATGGGTCTATTGGCAAGGATTTACTTTGAAATATATACCTGATGACTTATATCAGGGAAATCTAGTTGTTATAGACTTAA AGTACAGTAGTATTAAACAAGTTTGGAAGGAAACCAAGCTGCTGGAGAAGCTAAAAATTCTCAATCTCAGTCATTCCAGG TACTTGGAAAACACCCCAGATTTTTCGAAACTACCGAATCTAGAAAAGCTCATTCTAAAGGATTGTCCAAATTTGTCCGA GCTACACCAGTCCATCGGAGATCTCACTAATCTTCTTCTTATAAATTTGAAGGACTGTACAAGCCTTAGAAATCTCCCAA GGAAGATCTATCAGTTGAAATCTTTGACAACTCTCATCCTTTCAGGTTGTTCAAAAATTGATAAGTTGGAAGAAGATATA GTGCAGATGGAATCCTTGACAACACTTATTGCAAAAGATACAGCTATAAAGGAAGTTCCCTATTCAATACTAAGATTGAA AAGCATAGGATATATATCCTTATGTGGATATGAAGGATTAACACGTGATGTTTTTCCTTCTCTCATTCGGTCTTGGATGT CACCCACAATGAATCCCCTATCCCGCATTCCCCAATTTGGGGGCATGTCATTGGCTCTAGTTTCTAATTCGGGCAATGTA TCATCGTGGCTTAGCAGCCTGTCCAAACTAAGAAGTGTTTGGATACAATGTCACTCGGAGATTCAAGTAACTCAAGAGTC AAGAAGAATTATTGATGATCAATATGATGCAAAGTGTACTGAATTGGAAACAACATCATCATATGCAGCACATATCTCAA GTGTTTCCTTGAGATCACTTTTGATTAGATTGGGAAGTTGCGACACAGTCATTGATACTCTTGGCAAGAGCATATCACAG GGATTGACAACCAATGATTCTAGTAATTTTTTCCTTCCGTGTGATAATTATCCTTCTTGGTTAGCCTATAAAGGTGAAGG ACCTTCAGTAAATTTTCAAGTTCCTGAGGATCGTGATTGTTGCTTGAAGGGAATAGTTTTATGTGCTGTTTATTCACCAA CACCTGGAAATATGGCAACTGAATGTCTTACTAGTGTCCTGGTCATTAATTACACAAAATTCACCATTCAGGTCTACAAG CAAGATACTGTGATATCCTTTAATGATGAAGATTGGGAGAGTGTAATATCAAATCTAGATCCTGGTGACAATATGGAGAT TGTTGTTGCTTATGGGTGTGGATTGACTGTTAAGGAGACAGCTGTGTATCTAATATATGGTCCGTCAATTACTATGAAAG TTGAGCCATCAATTACTATGCAAGTTGAACTTGAGCTGTCAGTTAATGTGAAAATGGAGGCATCACCTGAAGTGAACTTG CTTCCATCACTTGATGTGAAAATGGAGTCATCACCTGAAGTAAACATGCAGCCATCACCTAGAGTGAACATGCTTCCTTC ACCTAACATGAAAATGGATCCATCAACTGAAATGAACATGCAGCCGTCACCTAATGTGAAATTGAAATCATCACCTAACA GGAAAATGGAGCCTTCACCAAAACCAAATAAAAATTTCTTGACAAGACTTGCAAAGAGAATGGGAGAATGTTCATGCTTG AACCAAACTTGA 

Protein sequence (LotjaGi3g1v0090300.3) extracted from Lotus japonicus Gifu v1.2 Proteins.

MAYWSDEENKPKCIYDVFINFRGEDTRRNLVSHLYASLSNAGAYTFLDNETFPKGMELGPELLRAIEASRVSIVVFSENY TDSNWCLIELCKIMECHRDHDQVVLPIFYGIDPSVVRHQKGAFGKALQASAVKIRTGEDMSKLLSSWRSALTDAANLSGW DVTDFRSESELVKKIVENVLTKLDVTLLSITDFPVGLESRVQEVIEYIESQSSKVCMVGIWGMGGLGKTTTAKAIYNQIH RRFEDRSFIENIRKVCENNSRGHMHLQEQFLSDVVKTKVKKIRSISTGTTMIKKRLSGRRALVVLDDVTTFEQLKALCGN RKWFGQGSVIIVTTRDVRVLSLLKVDYVYKMEEMDEDESLELFSWHAFGEASPREDLIELSRNVVAYCGGLPLALEVLGS YLYERTEQEWKSVLLKLKRIPNDQVQEKLRISYDGLKDDMERDIFLDICCFFIGKNRADAADILNGCGLYADIGITVLIE RSLVKVGKNNKIQMHDLLRDMGREIVRGSSAKDPGKRSRLWFHEDVHDVLTKNTGTETIEGLVLKLQKTGRVCFSANAFK EMRKLRLLQLDCVDLSGDYGHLSQELRWVYWQGFTLKYIPDDLYQGNLVVIDLKYSSIKQVWKETKLLEKLKILNLSHSR YLENTPDFSKLPNLEKLILKDCPNLSELHQSIGDLTNLLLINLKDCTSLRNLPRKIYQLKSLTTLILSGCSKIDKLEEDI VQMESLTTLIAKDTAIKEVPYSILRLKSIGYISLCGYEGLTRDVFPSLIRSWMSPTMNPLSRIPQFGGMSLALVSNSGNV SSWLSSLSKLRSVWIQCHSEIQVTQESRRIIDDQYDAKCTELETTSSYAAHISSVSLRSLLIRLGSCDTVIDTLGKSISQ GLTTNDSSNFFLPCDNYPSWLAYKGEGPSVNFQVPEDRDCCLKGIVLCAVYSPTPGNMATECLTSVLVINYTKFTIQVYK QDTVISFNDEDWESVISNLDPGDNMEIVVAYGCGLTVKETAVYLIYGPSITMKVEPSITMQVELELSVNVKMEASPEVNL LPSLDVKMESSPEVNMQPSPRVNMLPSPNMKMDPSTEMNMQPSPNVKLKSSPNRKMEPSPKPNKNFLTRLAKRMGECSCL NQT 

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 4 160 157 8.63E-39
Gene3D 9 186 178 1.3E-62
PANTHER 10 1060 1051 0.0
PANTHER 10 1060 1051 0.0
ProSiteProfiles 13 157 145 26.278
SMART 14 157 144 7.9E-37
Pfam 15 191 177 4.4E-41
SUPERFAMILY 185 448 264 1.91E-63
Gene3D 187 347 161 1.6E-28
Pfam 198 427 230 2.3E-33
PRINTS 217 232 16 4.2E-23
PRINTS 295 309 15 4.2E-23
Gene3D 353 437 85 1.1E-8
PRINTS 388 402 15 4.2E-23
SUPERFAMILY 509 820 312 1.09E-31
Gene3D 526 845 320 4.9E-29
PRINTS 697 713 17 4.2E-23
MobiDBLite 1049 1105 57 -
MobiDBLite 1050 1098 49 -

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 LotjaGi3g1v0090300.3, powered by ExpAt. For advanced configuration, data transformation and export options, view expression data in the ExpAt application.

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