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LotjaGi3g1v0310400.1

Overview

Field Value
Gene ID LotjaGi3g1v0310400
Transcript ID LotjaGi3g1v0310400.1
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|V7ANK8|V7ANK8_PHAVU Uncharacterized protein; Found in the gene: LotjaGi3g1v0310400
Working Lj name n.a.

Sequence information

Genomic sequence (LjG1.1_chr3:65779052..65786793) extracted from Lotus japonicus Gifu genome v1.2.

CCTGAACAACACCTTGTTGTAGTAATTTCTAAGTGGACCAGTGTGGTTAAAATAAAAGTCTATTTATTTCGCTGCCCACA TGCAGCAACTACGAAATTTCTATAGGTTGAATGAATGGTCAGAAAAAAAAAAAGGGGACAAGCAAAAGTTTGACTCAACA GTAGCTAGATTTCCATTCTCTCATATTTTGCATTTTCTTAGATCCAATAATCCATGGCTTCTTCGTCCACCAATCGTCAA TGGCTGTACGACGTGTTCATCAACTTCAGGGGAAAAGACACCCGTGGCAACTTCGTTTCTCATCTCCATGCCGCCCTTTC AAACGCCGGAGTCAACGCTTTCCTCGACGATGACAAGCTTCGAAGGGGAAACCAGCTTGGACCAGAACTGTTGCGAGCCA TAGAAGGTTCTCAGATATCTATCGTGGTTCTGTCACAAAACTACGTTTACTCTAACTGGTGTCTTGATGAACTGGTCAAA ATCATGGATTGCCGCACAATTATGGGGCAGGTTGTTCTGCCTGTGTTCTACAACGTCCAACCTTCGTTTCTTCGTGGTTA TGCCGAGGAAACTTTTGATCTTGTCATGTCAAAGTCTGTTGATCATAAATGGAAAACAGCACTGATTGATACGGCAAGTA TAGCTGGTTGGGATGTCAGAAATTGGCGGTATGTATGTATTTTCATGCTATATCTAATATATGTGTTCCAAAATTGTTGT CTAATAACTCATTAGATTGATATATAATTTGACTAAAACACTCTTATTTAGCGTTGAATTATATTAAGGTGAGAATATAG TTATTAGTTAAGTAAATAGTAAGTAATTGATTAGAATTGTGATATGTGAAAATAAAAGATGGTAGGTGAGAGATATAATA TTAATTAAGGGTATTAATAGAAGGAAATGAAATAATTAGTATTGAATTTCTAAAACAACGACCATTTTCAACAATCATTT TGGAACGGTGGTATGCATGTTCATGTTAAAATGGTTGTTTAAGAACTCATTATATTGATATATAATTTGTCATTTTTTTT TTTGAAAGAGAAGAACAGCTCATTATAAGTTCACCTATTTGTCTTAATTAGCTAAACATGTACAAATGTACAAGGGGTCA GTCATTTTGTCAGTTGAAAACTCGTCTCACCACTTTACATTACAAGAAGCACACCCCAAAAAAACAGATTACAGATGTGC TAGACAGCAAATATACAAAGCAAAACTCAGCCAAATTCTATATGGATAGATATCATGGCTTTAGAAGTTAGAAGTATTTT TGCTTTTCAAAAGAATGAATTGCCATTTTCATGACTAACATCCCTCCTTTGATTCTCGATAATAATTTGTCTTTAAATAG TTTAACATCTCAGCAGTAGTTCCCTTGCTTCACACTGAAGCTCACTTAGGGAACTATCACACATGCTATCTTAGCAATTA AAATTTGTAGCAGCCTTGTTCAAATTTTGTATAATAGCTATTATCTTGTCAACCCAATTTTGTTTGGAAGAGTATGCTTC AGAAGATGCTTTTCTGCATTAACAATAAGTGGCCTCAAATTCTCTGGACTTGGCAGCAGCCTTCTGAAGCAAAGAAGTTG GAAGTCCAGCTATAATTTGACTTAAATACTCTTATTTAGCGTTGAGTTATATTAAGGAGAGAATATATTATTAGTTAAGC AATGGATGAGAATTGTGATATGTGAAAATAATAAGAGATGTAGGTGAGAGATATAATATTAATTAAGGGTATAAATAGAA GGAAATGAAATAATTAGTATTGAATTTCTAAAACAACGACCATTTTTAAAATATGTGTGAAGTTAAAACAACAATCATTT TGGAATGAAGGGATCAATACACATGAATTCTGAATTTGTGATTTTCTTTGTACATGTGAAGTTAAAAATATTTCTATTTC TCATTTTCCTTCTTTGTCTTTCGCAATTTTTATTATTACAGAAACGAAAACGCTGTGGTGAAGGATATTGTTGATAAAGT TTTGAGAACTCTAGACAAAACATACTTGTCCATTACAGACTACCCAGTTGGATTAGAACCCCGTGTGCAGCATGTGATTC GAAATCTGAAAAAGCAAACAAGAGGAGTTTCTATAGTAGGGATTTGGGGCATGGGAGGGTGTGGTAAAAGCACCATAGCC AAACTCATCTATAATAAACTTCATCATGAATTTGAAGATGCAAGTTTCCTTGCAAATATTAGAGAAGTTTGGGAGAAAGA TAGGGGTCAAATTGATTTGCAAGAACAGCTTCTTTCAGATATCCTTAAAACTAGAGAGATGAAGGTGCACAGCATTGAGT GGGGCAAAGCTACGATCAGGGAAAGACTTTCTGTAAAAAGAGCACTTGTTGTACTTGATGATGTGAATAAGTCTGAGCAA TTAAATGCATTATGCGGAAATCGTAAAGGCATTGGTTCAGGAAGTGTAATAATCATTACAACAAGAGATATACGTCTACT CAAAGTCCTTGATGTTGACTACGTCTATGAAGTGGAGGGTTTGAATGTAATGGAGTCCCTTGAGCTTTTCAGTTGGCACT CATTTAGGGAAGCAACCCCAAGAGAAGGCTTCCTGAGTCTCTCAAAAAATGTAGTTGCTTACTGTGGTGGACTACCACTA GCTCTTGAAGTCATTGGATCTTATTTGTACATGAGGAGTACAAAAGAGTGGCAATGTGTATTATCAAAACTAACAAGAAT ACCGGATGATCAAATACAGGAGAAACTGAAAATAAGCTTTGACGGTTTAAGGGATCATATGGAGAAGGATATATTTCTTG ACATATGCTGCTTCTTTATCCACGAGGACATAGCTTATGTTACCGACATACTAAATGGTTGCGGTCTACATGCTGATATT GGAATTAAAGTTCTAGTAGAAAGGAGCCTCATAAAAATTGAAAGGAATAACAAGCTTGGAATGCATGATCTGCTTCGAGA TATGGGAAGAGAGATTGTTCGTGACAGCTCAGAAAAGAAATTGGAGAAGCCTAGTCGACTGTGGTTTCATGAGGATGTGC TAGATGTATTAACAAAAAATACGGTAAAAACATTCTCTGTATACTACTTTGAAACTTTTCATGAGAGTATTTTTCATTTC AAGTCTACTTCACCAGTTTCTAGTATCTTTTTCTAGTGAGTAATTAACACAAGTTTCCATTTTTTCTCCACTCTTTTGGT CACAGGGGACAGAAGCTATTGAGGGATTGTCCTTGAAGTTGCCTGGAATCAGTAGATATTGCTTCAATGTTGATGTTTTT AAGGAAATGGAGAGATTAAGACTGTTGCAGGTTGATAATGTAAACCTCATAGGAGATTATGGAGATCTTTCTAAGCAGCT GAGATGGATCTCATGGAAAGGATTTTCTTTGAAATACATGCCTGACAAATTTTATCTGGAAAATGTAGTTGCAATTGACA TTAAACACAGTAATCTTCAACAAGTATGGAAGGTACCTCAGGTATAAATTGCATTCACTTTTTCTTTTAAACTGAAAGGT TTATGAGAGTAGTAATTGTTGTAACTTGGCACCATTTCATTTTGCATTACCGACTCAAAATGTTTTATCTACTGTTTTTC CTATTGCAGTTGCTTGAGAAGCTAAAAATCCTCAATCTTAGTCATTCCAGGAACTTGATAAAAACCCCTGACTTTTCAAA TCTACCAAATCTTGAAAAGCTCATTCTCGAAGATTGTTCAAGTTTGTGCAACATACACCAGTCCATTGGTGATCTCTGCA ATCTTATTTTATTGAACTTGAAGGATTGTACCAATCTTAGCAATCTCCCAAGAGTGACATACAAGTTGAAATCTTTGAAA ACTCTCATCATTTCGGGTTGTTCAAAAATTGACAAATTAGAAGAAGATATAGTGCAAATGGAATCCTTGACAACTCTAAT TGCAGAAAATACTGCTGTGAAACAAGTGCCCTTTTCAATTGTAAGATCAAAAAGCATTGGATATATATCCCTGTGTGGCT ATGAAGGATTAGCACATGATGTTTTTCCTTCGCTCATTTGGTCTTGGATGTCTCCAACAATGAAGCCCTTGTCCAGTACT CACCACCTATTTGGAGCCATGTCTCTAGTTTCCACTAATTTTCAGAATAATTGTTTGGAAGATTTGTCAGCAATGCTTAG CGGCCTTTCAAGTCTTCGAAGTGTCCAGGTGCAATGCAACACAGAGTTTCAACTATCTAAAGCATTACGTACTATTTTGG ATGACATGTATGGTGTAAATCATACTGAATTCGAAATAATACCATATGTATCGCCAATCTCAAATGATTCTGTGAGGTCT TATTTGATTGGAATGGGAAGTTACCTAGAAGTCTTCAATACTCTCAGGAAGAGCATATCAGAGGTTTTCTCTTTATCTTT GTCTTCTCACCTAAACTATTCATTTTTACTTTTAACAGAACATGAAATAATCTTGGTGAAAATGTTTGGAGGAAACTTCA TTTCTTGCCTTATTAGAGAGCCTTTGCTTTTCATAATCGCATCCGCATGCCTTCGTGCTTTCATCTCAAAATACCCTATT TCAATTTTCAACAAGCCAAGTTATAATGCAACATTACATAATAAAACTATTAACCGAATTGGTTTCAATGGTTACCATGT CCTTTTTTTTATGTAGTACACTATTATTATCTTAAATTCATTCTGGAATTTAGAAAGACAATATAATTAAATAAGTCATG GATAGCAAAGTTTTACATATGTTTTTAGTCTCAAAGAGTATGATTTTTTTAAATTGGTCCCTCTTAAAATTGATTTTAGT TTTAGTCTTTACATTTAACAAAACCATTACATTTTTAGTCCCTCTAGGATTTTTAGGGACTAAAGTATTGATAGTTCAAG AGACAGGGCTTAAACCAGAGCTACTATAGTCTATCAAAGGAGATTTAGGAGGAAAATATAGTTATAATTAGTTGGACTCA AATCTAGTAGAGTTAGTTACGACATAGAGGGGGATTATTGTTGTAACTGCATAGTTAAATAGGGGGAGGGTAGGAAGGAG ATATCACTGTGTTTGTGGTAATCAGAAATTGGGAGAGTTGAGCCTCTCGAAAGTCTCAACAACACTTGTATCATTCATCT CTGTTTTCCTAATTCTGTCTACATTGGGCTATTAGGAATTAGGGTTCTATTTCAATAAAACTTTCAATTCATTCTTGGTG TCAATCCTATCAAATACATGATTTTTTTTTTAAGGACTAGAAGAATAAAAAGTAAACCATTTTGAAAAACATTATGTTTC AGAAATGAAACAAATAAGTATTACACTATGACTAAGCTTTTGGTTCATGAAGCAGGTACTGACAACTAATGAGCCAGGTA ATATTCCTCTGACGGGTGACAACAATCCTCATTGGTTGACCTATGCAGGTGAAGAAGGACATTCAGTGCTTTTCACTGTG CCTCAAGTTAGAAATTGTCACATAAAGGGAATGACTTTGTGTGTCATTTATTCATCAAATCCTGGAAACACAGCAGCTGA ATGTCTTATTGGTGTCTTGATGGTTAATTACACAAAGTGTGTTGCTCACATGTACAAGCGAGACACAACAATCTCCTTTA ATGATGATGATTGGCAAGGTATAGTGTCACATCTTGAATCGGGTGACAAAGTAGAGATTTTTGTCATTTTTGGGAATGGA TTGGTAGTCAAGAAGACAGCTGCTTATCTGATATATGATGAATCAATTGACATGGAAATGAATCATGAATCAACTAACAC CGAGCCTTCTCTGCAGCCAAGAAAAGAGGCAACGAAAAATGTGTTTTTAAGATTCATAAAGAAACTTGTAGGGTGTATGT AACTGTCATTGATAAATTATAGCAGAAATTTAAGTTATCACTGGCTTGGTATGTCCACTGTGCTGCCAATTGTATCACGA GACCACTTTCTCCAGTTCAGGTTTGGGTGGAATAAGCATCAACAGAAATTTTTTTGTTGCCATACTTTTTAATGCTAAAC CAATTAAATCTTGCTCTTATTCATATTTCTACATATTCATATTCTGATTTTTTTTTTACGAGCTCAGAGTATCCACTGTC GACAATAATATATATAACAAATAACCCTTGCCGCCTGTACTCACATTTAGCGGTAAACGACTTACCACAATATACATTTT ATTTCCATGAGCAAGGCGGAACCAAACCTATGTTCACAAACTTACGTTGGCTAGGATAACCTATTTATAAGGTGAAGACT TGTAATTTCCTTGTCTCAATACCCTATCTTGCATCTAACTCTGTGATGGATATTTCATTAGCGGAGCATAATTTGTGATT TGCAAGTGAAGAGTCTGATTTAGTACTTAAATCTTTTTCAGTATAAAAGCCAGGAACCTTTGGCTTTGGCAATAGTTTCT CACCATTTAGCATTAGAACCACGGATGACATGTCTGGTCTATCTTCAGGCCTTTGTTGCACGCATAATAGACTGACTTGT ATGCTTCGTATGACTTCAAATGGTGTGTATTGTTCCCGTAACACTTCATCCAGTAGTTCCACTTCTCTCTCTTCAGTCCA TAATCTCCATGCCTAATAATGTAAAAGTAAAATTAGTGATAGGAAACAATTCAAATTAGACTAATTAGAAAGATAGCTAG GTGATTATGCTTACATATCCAAGAAGATTATTGTAGTGTTCTGGGTCTGAAAATCCCCTGTTCTTTTTCCCACTTACAAT TTCTAGTACAATCACGCCATAACTAAAGACATCTGATTTCATTGAGAAATGCCCATGGACAGCATATTCTGGAGAGATGT AGCCACTGAATATGTTGTGTTCAAAGTAAAATGAGTATTACTTGAAAATGCAGTATCAAAGAAACATAATCATGTAAAAA CGAACTTACTATGTTCCAGCCACTCTATTTGTGTTTGCCTCAATTTGGTCTCCCAAAAATATTCGTGCCAAGCCAAAGTC TGATATTTTCGGTTCCAAATTCCGATCTAGTAATATATTGCTAGTTTTGAGATCCCTGTGAATAATCCTTAGTCTTGAGT CTTGATGAAGATAAAGAAGTCCTCGAGCAATGCTACCAATAATATTGAAACGCTTAAGCCAATCCAATGACATCTTTTTG GTTTCATCTGGTCAATTAAACACATTTAACATGACACTTCATTCTCCATAATTTCTTAAAGAAATTATGATAAGAAATAA GAAGATTTTTACAAATGTGTATAAGAAATTGAAAAAATTTCCTACCAAAAACAAAGTAGTCCAAGCTTTTATTGGGCATG TATTCATAGACCAGCATTGTTTCTTCGCCTTGAATACAACAACCAAGAAGCTTTATGAGATTAGGGTGCTGAAGTTTGGC AATCAGTGCCACTTCATTTTTAAATTCTTCCAACCCTTGTGTAGATCTTTTTGAAAGCCTTTTCACAGCTATCTCTTGTC CATCTATCAACATTCCCTAAAATATAATATGAAATGGTTAGGAAGTTTCTAATAAGGGAAGGAGAAGTGATCTCAAACAT GTCACCTTGTATACTGGTCCAAAGCCACCTTCTCCAAGTTTGTTATAGATTGAAAAGTTTTTGGTGGCATATGCTAAGAC TGAGAAATCAAATGTTGGCAAGTCAACAACTTCCTTCCTCAGGTTCTTTTTGTAATGCTTGCTGAAAATATTACTTGCAG CCCCTGATTAGTTAGAAGACACAAACACTATGAGTCTATGACACAGCCCTAAATTGGTTCTT 

CDS sequence (LotjaGi3g1v0310400.1) extracted from Lotus japonicus Gifu v1.2 CDS.

ATGGCTTCTTCGTCCACCAATCGTCAATGGCTGTACGACGTGTTCATCAACTTCAGGGGAAAAGACACCCGTGGCAACTT CGTTTCTCATCTCCATGCCGCCCTTTCAAACGCCGGAGTCAACGCTTTCCTCGACGATGACAAGCTTCGAAGGGGAAACC AGCTTGGACCAGAACTGTTGCGAGCCATAGAAGGTTCTCAGATATCTATCGTGGTTCTGTCACAAAACTACGTTTACTCT AACTGGTGTCTTGATGAACTGGTCAAAATCATGGATTGCCGCACAATTATGGGGCAGGTTGTTCTGCCTGTGTTCTACAA CGTCCAACCTTCGTTTCTTCGTGGTTATGCCGAGGAAACTTTTGATCTTGTCATGTCAAAGTCTGTTGATCATAAATGGA AAACAGCACTGATTGATACGGCAAGTATAGCTGGTTGGGATGTCAGAAATTGGCGAAACGAAAACGCTGTGGTGAAGGAT ATTGTTGATAAAGTTTTGAGAACTCTAGACAAAACATACTTGTCCATTACAGACTACCCAGTTGGATTAGAACCCCGTGT GCAGCATGTGATTCGAAATCTGAAAAAGCAAACAAGAGGAGTTTCTATAGTAGGGATTTGGGGCATGGGAGGGTGTGGTA AAAGCACCATAGCCAAACTCATCTATAATAAACTTCATCATGAATTTGAAGATGCAAGTTTCCTTGCAAATATTAGAGAA GTTTGGGAGAAAGATAGGGGTCAAATTGATTTGCAAGAACAGCTTCTTTCAGATATCCTTAAAACTAGAGAGATGAAGGT GCACAGCATTGAGTGGGGCAAAGCTACGATCAGGGAAAGACTTTCTGTAAAAAGAGCACTTGTTGTACTTGATGATGTGA ATAAGTCTGAGCAATTAAATGCATTATGCGGAAATCGTAAAGGCATTGGTTCAGGAAGTGTAATAATCATTACAACAAGA GATATACGTCTACTCAAAGTCCTTGATGTTGACTACGTCTATGAAGTGGAGGGTTTGAATGTAATGGAGTCCCTTGAGCT TTTCAGTTGGCACTCATTTAGGGAAGCAACCCCAAGAGAAGGCTTCCTGAGTCTCTCAAAAAATGTAGTTGCTTACTGTG GTGGACTACCACTAGCTCTTGAAGTCATTGGATCTTATTTGTACATGAGGAGTACAAAAGAGTGGCAATGTGTATTATCA AAACTAACAAGAATACCGGATGATCAAATACAGGAGAAACTGAAAATAAGCTTTGACGGTTTAAGGGATCATATGGAGAA GGATATATTTCTTGACATATGCTGCTTCTTTATCCACGAGGACATAGCTTATGTTACCGACATACTAAATGGTTGCGGTC TACATGCTGATATTGGAATTAAAGTTCTAGTAGAAAGGAGCCTCATAAAAATTGAAAGGAATAACAAGCTTGGAATGCAT GATCTGCTTCGAGATATGGGAAGAGAGATTGTTCGTGACAGCTCAGAAAAGAAATTGGAGAAGCCTAGTCGACTGTGGTT TCATGAGGATGTGCTAGATGTATTAACAAAAAATACGGGGACAGAAGCTATTGAGGGATTGTCCTTGAAGTTGCCTGGAA TCAGTAGATATTGCTTCAATGTTGATGTTTTTAAGGAAATGGAGAGATTAAGACTGTTGCAGGTTGATAATGTAAACCTC ATAGGAGATTATGGAGATCTTTCTAAGCAGCTGAGATGGATCTCATGGAAAGGATTTTCTTTGAAATACATGCCTGACAA ATTTTATCTGGAAAATGTAGTTGCAATTGACATTAAACACAGTAATCTTCAACAAGTATGGAAGGTACCTCAGTTGCTTG AGAAGCTAAAAATCCTCAATCTTAGTCATTCCAGGAACTTGATAAAAACCCCTGACTTTTCAAATCTACCAAATCTTGAA AAGCTCATTCTCGAAGATTGTTCAAGTTTGTGCAACATACACCAGTCCATTGGTGATCTCTGCAATCTTATTTTATTGAA CTTGAAGGATTGTACCAATCTTAGCAATCTCCCAAGAGTGACATACAAGTTGAAATCTTTGAAAACTCTCATCATTTCGG GTTGTTCAAAAATTGACAAATTAGAAGAAGATATAGTGCAAATGGAATCCTTGACAACTCTAATTGCAGAAAATACTGCT GTGAAACAAGTGCCCTTTTCAATTGTAAGATCAAAAAGCATTGGATATATATCCCTGTGTGGCTATGAAGGATTAGCACA TGATGTTTTTCCTTCGCTCATTTGGTCTTGGATGTCTCCAACAATGAAGCCCTTGTCCAGTACTCACCACCTATTTGGAG CCATGTCTCTAGTTTCCACTAATTTTCAGAATAATTGTTTGGAAGATTTGTCAGCAATGCTTAGCGGCCTTTCAAGTCTT CGAAGTGTCCAGGTGCAATGCAACACAGAGTTTCAACTATCTAAAGCATTACGTACTATTTTGGATGACATGTATGGTGT AAATCATACTGAATTCGAAATAATACCATATGTATCGCCAATCTCAAATGATTCTGTGAGGTCTTATTTGATTGGAATGG GAAGTTACCTAGAAGTCTTCAATACTCTCAGGAAGAGCATATCAGAGGTACTGACAACTAATGAGCCAGGTAATATTCCT CTGACGGGTGACAACAATCCTCATTGGTTGACCTATGCAGGTGAAGAAGGACATTCAGTGCTTTTCACTGTGCCTCAAGT TAGAAATTGTCACATAAAGGGAATGACTTTGTGTGTCATTTATTCATCAAATCCTGGAAACACAGCAGCTGAATGTCTTA TTGGTGTCTTGATGGTTAATTACACAAAGTGTGTTGCTCACATGTACAAGCGAGACACAACAATCTCCTTTAATGATGAT GATTGGCAAGGTATAGTGTCACATCTTGAATCGGGTGACAAAGTAGAGATTTTTGTCATTTTTGGGAATGGATTGGTAGT CAAGAAGACAGCTGCTTATCTGATATATGATGAATCAATTGACATGGAAATGAATCATGAATCAACTAACACCGAGCCTT CTCTGCAGCCAAGAAAAGAGGCAACGAAAAATGTGTTTTTAAGATTCATAAAGAAACTTGTAGGGTGTATGTAA 

Protein sequence (LotjaGi3g1v0310400.1) extracted from Lotus japonicus Gifu v1.2 Proteins.

MASSSTNRQWLYDVFINFRGKDTRGNFVSHLHAALSNAGVNAFLDDDKLRRGNQLGPELLRAIEGSQISIVVLSQNYVYS NWCLDELVKIMDCRTIMGQVVLPVFYNVQPSFLRGYAEETFDLVMSKSVDHKWKTALIDTASIAGWDVRNWRNENAVVKD IVDKVLRTLDKTYLSITDYPVGLEPRVQHVIRNLKKQTRGVSIVGIWGMGGCGKSTIAKLIYNKLHHEFEDASFLANIRE VWEKDRGQIDLQEQLLSDILKTREMKVHSIEWGKATIRERLSVKRALVVLDDVNKSEQLNALCGNRKGIGSGSVIIITTR DIRLLKVLDVDYVYEVEGLNVMESLELFSWHSFREATPREGFLSLSKNVVAYCGGLPLALEVIGSYLYMRSTKEWQCVLS KLTRIPDDQIQEKLKISFDGLRDHMEKDIFLDICCFFIHEDIAYVTDILNGCGLHADIGIKVLVERSLIKIERNNKLGMH DLLRDMGREIVRDSSEKKLEKPSRLWFHEDVLDVLTKNTGTEAIEGLSLKLPGISRYCFNVDVFKEMERLRLLQVDNVNL IGDYGDLSKQLRWISWKGFSLKYMPDKFYLENVVAIDIKHSNLQQVWKVPQLLEKLKILNLSHSRNLIKTPDFSNLPNLE KLILEDCSSLCNIHQSIGDLCNLILLNLKDCTNLSNLPRVTYKLKSLKTLIISGCSKIDKLEEDIVQMESLTTLIAENTA VKQVPFSIVRSKSIGYISLCGYEGLAHDVFPSLIWSWMSPTMKPLSSTHHLFGAMSLVSTNFQNNCLEDLSAMLSGLSSL RSVQVQCNTEFQLSKALRTILDDMYGVNHTEFEIIPYVSPISNDSVRSYLIGMGSYLEVFNTLRKSISEVLTTNEPGNIP LTGDNNPHWLTYAGEEGHSVLFTVPQVRNCHIKGMTLCVIYSSNPGNTAAECLIGVLMVNYTKCVAHMYKRDTTISFNDD DWQGIVSHLESGDKVEIFVIFGNGLVVKKTAAYLIYDESIDMEMNHESTNTEPSLQPRKEATKNVFLRFIKKLVGCM 

Domain prediction

Data for domain prediction are obtained with InterProScan, and merged with InterPro data obtained from the EB-eye REST service.

Merging data from EBeye. Please wait…

Domains

Sorting

Prediction algorithm Identifier Start End Length E-value InterPro ID
SUPERFAMILY 2 146 145 2.35E-35
Gene3D 5 173 169 2.0E-56
PANTHER 7 1003 997 0.0
PANTHER 7 1003 997 0.0
ProSiteProfiles 10 161 152 25.789
SMART 11 143 133 2.4E-33
Pfam 12 177 166 1.5E-37
SUPERFAMILY 171 433 263 2.86E-57
Gene3D 174 332 159 2.5E-28
Pfam 186 406 221 7.3E-31
PRINTS 203 218 16 4.3E-23
PRINTS 280 294 15 4.3E-23
Gene3D 340 422 83 1.7E-6
PRINTS 373 387 15 4.3E-23
SUPERFAMILY 479 808 330 4.68E-30
Gene3D 521 830 310 4.5E-26
PRINTS 611 627 17 4.3E-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 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 LotjaGi3g1v0310400.1, powered by ExpAt. For advanced configuration, data transformation and export options, view expression data in the ExpAt application.

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