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LotjaGi2g1v0379200.1

Overview

Field Value
Gene ID LotjaGi2g1v0379200
Transcript ID LotjaGi2g1v0379200.1
Related isoforms 3
Lotus japonicus genome version Gifu v1.2
Description Vacuolar protein sorting-associated protein 35; TAIR: AT2G17790.1 vacuolar protein sorting-associated 35A-like protein; Swiss-Prot: sp|Q7X659|VP35A_ARATH Vacuolar protein sorting-associated protein 35A; TrEMBL-Plants: tr|A0A0L9TD44|A0A0L9TD44_PHAAN Vacuolar protein sorting-associated protein 35; Found in the gene: LotjaGi2g1v0379200
Working Lj name n.a.

Sequence information

Genomic sequence (LjG1.1_chr2:87610876..87620123) extracted from Lotus japonicus Gifu genome v1.2.

GTAAATTCAGTTTAGATTGGCTTGAAATTGTTTCTAAAATCGCATTTTATTTTTCTCCATTATACAAAATATTCCAAAGT CGTCCCAACAGTAGAGGTCAAGGAGGAGGAGCAATTAGGAGGAAGGTTAAAGAAGGGGAAGCATATTCTCCACCACGAAG AACAACAAAACAACACACTCGGTTGAATTGAAGGACCGGTAGTTAAGAAGAGCGATCGAAGAGAAGAGTAAAAGTTACAC GGCGAGAAAGAAATGATGCTAGACGGAACCGAAGACGAAGAGAAGTTCCTCGCCGCCGGAATCGCCGGCCTCCAACAGAA TTCCTTCTACATGCACCGTGCATTGGTAACTCCTCCTCCCTCCCTTAAACCCTAACCTCTCCGCGCACCGCGATCACACA CGAATTTCAGATTCGAATTTTCCTAATTCATTTGGATCCAATTGATTTTGTTGATTCGTCTCAGGACTCGAACAATCTCA GAGATGCGTTGAAGTATTCGGCTCAGATGCTTTCCGAGCTCAGAACTTCCAAGCTCTCTCCTCACAAGTACTACGAACTC TGTCAGTTCCTCTCTCAGATCCATGTCTTGTTCTATTTCCTTTCATTTGTATGGATCCTGGAACTGTTTTTCGTGATTGA AACCCTTGTGATTGTTAATTTGCATGTTTTTGTTTCTCTTATTGCTATTGTTGTAGATATGCGTGCCTTTGATCAATTAA GGAAGCTCGAGATGTTCTTCGAGGAAGAGGCTCGTCGCGGTTGCTCCATTATTGATCTTTATGAACTTGTCCAGCATGCT GGAAACATTTTGCCTCGATTGTAAGTGACGGTTTATCTTGTTCATCTTGTTCGTCGATTATAAAACTGTTCATGATAGGT AACTAGTCCTGAATGTTCTATTATAGATGAATTAATATTATTTGTCACAATGGTGAAAAGAAGTTTCTATGTTAGCATAG CGGAGCGGTTATGTATCTGTAATGCTTTTTTGATCATAGATTTTGTTTGAATGTGGTGCAATGCGCAATTATCCTGATAC TTAATATGATATCAACTGATGGTGCATCACTGAGATTGATGCTTCATCTCGGTGCATGGTGAAAATCACTTAGCTTGCTT GGAAACCAGTCCAATCCTGGCCAACTTTCGTTACGGATGCCTTTACACTTGTTGAAGCTCAGAACTGAGAAGGGCATACT TTCAAAGTTGCAGTGATTATTTTTTGGCATTTAATGTACTACTCACGAGCTGATGATTTTATGATCATGATCAGGTATCT CCTCTGTACAGTAGGATCTGTATACATAAAATCCAAGGAAGCTCCTGCTAAGGATGTTCTTAAGGATCTTGTAGAGATGT GTCGTGGCATTCAGCACCCTGTTCGCGGACTCTTTCTCAGAAGTTACCTTTCTCAAGTTAGTAGAGATAAATTGCCAGAT ATTGGTTCTGAATATGAAGGGTAAGCAATATTCAAGCAAGACTTTTCACCATTCACTCTTTTCATGGACAGTATTATTTC TCTCTGAGGTCTCTTAAGTCTTAACTGAGCCAGATGTGAAGTTTCAATGAACAAAGTCAATAGTACTGAACATTTGGTGC GTAATTGCTGCGCCCTTTGGCAACGCCGTTTATTTTAACTCTATCAGTAGTAGTACCACCAGCCTAATCTCAAGGCATTT GATGCATGATATAAACCCAGTGGAGTCATCTGAATATTAGATCATCCCTCTTTGTTAGATTTGTAGGATACTATACACTC GAGTACACAGTACGCTCATACATTAGCATATGCTAATACTCTTTTTTCTTTTCTTTTCTTTTCTTTTTAAATAGTTTATT TTATTGTTTTGTCTTTCAAGTTTAATTTTCTTCAGTCTCTCTAATTCACTCTGCGATTTCTGTATTTGTCCTGATTATGG GGCAGTAGCATTGATTTTAATGCTGAACCAATGAGATTGAATTTGAACCTGATATGTGAGTGCCAACTCTGACAACTGCA GGGATGCAGATACTGTAGCAGATGCTGTAGAGTTTGTACTCCAAAACTTCACAGAAATGAACAAACTTTGGGTGCGGATG CAACATCAGGTTGGTCGAATTGTTTGCATATTGTTACAGCTCATGTTTGGTTATGCATGTCTGTCACAATAGTTGCAAGT CATGAGGGTAAAATACATCATGAGGGCATGATTTCTGGTCATGCAGGTCAGGTGTAGTAATGCATGTCAATAATTCATTC TCTTAGCTGACTCTGAGTTGAGGCTTGCTGTCGGGCTTTATGGTCTGCAGGGGCCTGCCCGGGAGAAGGAGAAACGGGAA AAGGAAAGGAGCGAGCTGCGCGATCTTGTAATACCCGAAGCTTGTAACTGGTTATCTTCACTGTAATGGCATTGAATACA TGATCAAATGCTTATAGAAGGCTTCTCTTGCTTTTTTATCCTTGATACATTATTAGGTTGGGAAGAATCTCCATGTTCTC AGTCAGATAGAGGGTGTTGACCTTGAGATGTACAAAGATGTTGTGCTTCCTAGAGTGCTGGAGCAGGTCTAATCTGTTGT TACTGCTATTTATATTTATGATCATCAAAGACATGTTTTACTTTCTTACCAGAAAAACCATTCCTCTTCTCAATTATTTT GTACAGGTTGTGAATTGCAAAGATGAGTTGGCCCAGTTCTACTTGATGGATTGCATAATCCAAGTCTTCCCTGATGAGTA TCACTTGCAAACTCTTGATGTATTGTTGGGTGCTTATCCTCAGCTTCAGGTTAGTGATCTTGTACTTGTTGGTGTCACTT CTGTAGGACGCCATGGTGTATATATGTTTTTCCTCCTTCCAAAACGCAAAGATTTTATTCAGTAGAGAGGGTTGTGAAAA AACACCAAGGAATATGACAAGATATCTGCAAAAGTTTTTATCGACTATAATACCTTTAAAGGTAGAACTTGGGGAGGGGC TCCATTTGACATCTCCAAAATTTACCTAAAGAGTCTTATTTTCTGTTGAAATTTGCATTAAATAAATAAAAAGGCTGTGT TCCTCCATATGCAACAGATGCAACCCAGCTTAACCATATTTGCTGCATTTATTTGCAGATAGTTTTAGAGTCAAGAGTCA ACAGATGCGTATTATTTGAAAATTTTATGCTGCAAATCTTGTAGGTATCACTCATTTGCTTTCTGTCTATTTTTGTCACT GTATTTTCCAGGCATCTGTTGACATCAAGACAGTGTTATCCCAGTTAATGGAAAGACTTTCTAATTATGCTGCTTCAAGT GCTGAGGTGTTGCCTGAGTTTTTGCAAGTGGAAGCATTTTCCAAATTAAGCAGTGCCATTGGCAAGGTATTTTTTTTTGT TTGATAAATCTTGGATATCGTAGTCATGTAGTGAGTATGTAGTTCTATGCTGCTTGCTGCCTAAAAAAGCAAGTAGCTGC CAGCCTGCCACTGTTTATGGAGTTTTGCAACCATCCAACTTAAACAAAGACTGACCAGAGGCTATTGATAGACTTTCTAG AAAGTAGTAACTAAGTTTTATCTCCCTATGTCATGGAGAGGCAAATAGCAAAGTGCTAATTGATACCATCTCACTTGTTC ATCATATCTTTTAATGATCTGATACTAACAGCAAAGAACTAACTTAGTACCTTATTAAAGGGAGCAAATCATGATAATTT CAGATAGTATAATGCTAAGGTGAGACCGTGATATATTTTTTAAATGGTCTAACAGTATGTTCTGTCATCTCTCTCGTGCA TATTTGGGGTTATGTCCCATTTTAAGGGTGGTCAAATATAGTTAATGTTGATTTCTCCTTTTTCTTTTTTCACCCTGTTT ATCTTTAAATATTTCTTTCATAATTCATCACTTCCGCGTTGGATTGCAAAGCATAATTTTTTCGTTTTCATTTTCCATTT GAATATTGAAATTGTGTTCTCCTTCATTCATACTTCTGATTTGGATGCTCTTGAACAGAAAACTGTAATTTTTATAACAT TATTGTTTTTCTATGTTATGCTCATGGATTTGAAATATGTGCTCATCAATTGTTATACAGGTGATAGAGGCACATCCTGA CATGCTCACTTTTGGTGTTGTAACTTTATATTCATCTCTTCTCACTTTCACTCTTCATGTCCACCCTGATCGACTTGATT ATGCAGATCAAGTCTTGGTATGTTTCACTTTGAACGGCTTGTGCACATTCATGTTAACTTATTGATTCCAAGGTTATCAA ATCTTGATTCAAATCATTTTTGGTTAAGCTAATTTTTTTAATCATTTATCAAGCAAGTGCCACTGACATTGTTTTATTTC CTTAACTTTCACATCCTGTGCTTTCAGAGAAGGAAATACGCAATTTGGTAGAATATTATTCGTCACATATAATGGCTATT GCATTTAATGAATGTATATATGATTGAAATGAGGGATTTTAGCAAGCTGCTCCAACATTTTTTATTATCAGATGAAATTC ATGCGGTCCCATTCTCTACTTAGTGGATCCCCAAGAATTTCACCCACAATAATAAAGAGTATTGAAAAGTGTGTTGCAAG CATTTCTCATATGATTGAATTCCTAGCAACCATGGTTCTTTTTATATGAGGAAGTGAACTTATTCCTAGATTTTCTTATA GGGAGCATGTGTGAAAAATCTCTCTGGCAAAGGGAAAATTGAGGACAACAAGGCAACTAAGCAAATTGTTGCTTTATTAA GTGCTCCACTAGAGAAATATAATGATATTATGACTGCCTTGAAGCTTTCAAACTATCCTCGTGTGATGGAATACCTTGAT GTTCCAACTAATAAGGTCATGGCAGCTGTTATCATTCAAAGCATTATGAAAAATGGGACACACATATCTACTTCAGACAA GGTTTGTGTTATACTACTTTCTGGCTTGCTTTTTGGTGAGAGTTTATTATTAACATAGCTTGGTTTATTGTAGGTTGAAG CATTGTTTGAACTTATAAAGGGGCTTATTAAGGATTCTGATGGGACTCCTAATGACGAGGTTATTTCAGTACCTCAACTA GTCCTATTAGGCTATTGTTTACAATGCCTATTATTTTGACATCTCTCATTACATATCACCTTTTATAATGAAATGCTTTT ATGTTCTAATAAAATAAAAATAAGATTATCCTTATTTTGTTTTCCTTTCTCTCCCTGCATTCTTATTTTACTTTTTCTTC CCCCTTTAGCTGGATGAAGATGATTTCAAAGAAGAGCAGAATTCTGTTTCCCGTCTAATCCAGATGCTTTATAATGACGA TCCAGAAGAGATGTTTAAGGTGAATTGCTAATATCCATTAGTTTCGATAGTTATTAAAAAATTACAATATACTTTTTTTG TCCTGCTGGAACTTCTCTCTGTTAAACTCCCGCTAATAGTTTCAGCTGACGCCACTTTTTACTTACTGGCACTTCTGTTG TGGTGGTGCACATGGATTTAATCCTGTCATATTTAAAAATAAATCTATTTGAAGCTCTAAAATGGATTTAGGGTTATCTT AGGTTTAACCGCCATAACATTTTATGTAGATTGTATCTGGTCTGGTCAAGGGCTGAGAAGCTAGAGTATGAATGCTTATC TGTGATTTTAATGTTTTTAACTTCAGTGAAATGATGTTTGATATGTTGCTTGTGACTGCAAACTATATTGTTTACCCTCT ATTTGGGGAAAGGGGGCTTTGTTGTATATTACAAGTTCGAATTTTATTTTAATTTTGGCCACAATTGCCATCACTACATT GCAGATTATAGATACTGTGAGGAAGCATGTACTGACTGGAGGATCAAAGCGTCTGCCTTTCACTATTCCACCTCTTGTTT TTTCTTCTTTAAAGGTTTGGTTGGCCATTTTGATAGTTGCCTGCTTATATTGTTCACAATTGTACCTTGTTTGTTGCTTA CATCATGATGAATTAATAATGCTGGCGGCAATAGCATATGTTGGAGACTACATCAATTTATCATTTTGACTTAGTTTTAA TATTGAGAGAAGGTTGATTGAAATATTCCATTGACTTTCTTAGATCATAATTTATTAGGATTAATGGTTTAATAACATTA AGGCTTCTGATTCCTTCCTAGAAGCTTGTCTAGATAGTTGCTTTGCTGTCTCCTGGACAACTTCACTAAATGAGGCAACT GGGTTAGGACTTAGGAAGTTGCGAGTTTCCATTATCAAATAAATATTTAGTTTGTCTTTCCATTTCCAGTTGGCAGTAAT CCCATTGCCCATTCAGATGAAGTGATGCAATGAGCCAGTATTTCTAAATCAAGCCAACATGCTAATACTATTTCGTTTTT TTTTGTGCTTTTGTTTCTTGTGTCCATGTTTTTATTGATTGAAATGAAAATGACTGTCTGTAACTCCTGCTGTTTGTTTT TACTTATAAAACCAAATACAATCATTTATGCACTATGTACTTTACCATATACAGTTGGTCAGACAGTTGCAAGGTCAGGA TGAAAATCCCTTTGGAGATGATGTAGCAACAACACCGAAGAAAATCTTTCAGCTTTTAAATCAGGTGATGGTTTTTCTAT GAAAGGACTTTGGTTTTTTTTTTTGTTTCAATGGTGTTTTATGCCAGCCTAATTTTGTTTAAGTAGTGATTGATTATTAA GAATACTGAGGATTTGAAAAGATTTGGTTGCAGATTATGTGCAATTAATTGGTTAATTTGTTTGGTTATGCTTTTGTCTT TCCTTTCTCAGACCATTGAGAGACTGTCAGGTGTCCTAGCACCAGAATTAGCATTGCAGTTGTACTTGCAATGTGCTGAG GTACTGGCCTATATTTGGTTGTTAGCACATGAAAATGATATTTCCTAACTATGTTTTCTGATTCCCTTGTTTCTTTTCTT CCATTAAGGCTGCAAATGACTGTGATTTGGAACCAGTAGCATATGAATTTTTCACCCAAGCTTATATTCTATATGAAGAA GAAATTTCGGTAAGTCTTTTATAAGCCTACTAGTTCTGCTCCCCCCCCCCCCCCCCGGAAGATTTTTTTTTGCTGGGATC GGGGATAAGTTTGGAGCAGGAATCTTAACCTTGATAAAATTTATGGGTCTGATCTGCTCATGCATTTGTATTGTTATACT AGGATTCCAGAGCACAGATCACAGCTATCCATTTAATAATAGGAACTCTTCAAAGGATGCATGTATTTGGTGTGGAGAAC AGGGATACTTTAACTCACAAGGCCACAGGGGTAATTGCTGAATTCCATATTCTGCTTAGTGGCTAATGTATATTTTTCTA CTAAATCCTCATTCTTGGTGCCTTTTCGTTGGACAGTATTCAGCAAAGCTTTTAAAGAAGCCAGATCAATGCAGAGCCGT GTATGCATGCTCACATCTGTTTTGGGTTGATGATCATGATAACATGAAAGATGGAGAGAGGTTTGTTTCTATTTATATGA CGCAAGAAGGTCTAAGACTTCTGCGGAATGTTGCATTACTGTGTTTGTATATTTGCTTTGGGCTTTTCCTATGTTACTGT TTAGTTGGACATAAATAGTTTTAGAAGAATTCTAATTCTTTGCATGTCTAAAATAATCCTGCTGTTGACTATTTCTGTTC CATTTTGACAACAAAATAGAACTATGCCATACTTGTGTAGTTGAAGGAGGAGAGTAAGCATGATTCTATCCAACCCTGCC ATCCCTGAAGGGAGTGAGCATATTTATTCTTGACTGCGGAGTATGATAATAAGTTGGAAAAGAAGGGATGTAGGGTGTCT CATAAAGTTCAAAAATGAATATAGGAATTTATTTGTTAGTTATTAACTTATTATGACTTATTGTTTTCGTTGTTATATTG ATATTTATTTTTGAACCAGAGTCCTATTGTGTCTCAAGCGGGCTTTAAGAATTGCAAATGCTGCACAACAAATGACAAAT GCAGCACGAGGTAGCACCGGATCAGTGATGCTTTTCATTGAGATATTGAACAAGTAAGATTAAAATCCTTTTGTCAACAA AAATCCATAATCTTAAGTCCATTGTTTTTCTTTGCTTCTCAACTTAGTTAAATGGAATAATGACGTTGTGTGCTTTTTGC AAGGTATCTTTACTTCTTTGAGAAGGGGAACCCACAAATCACACTTGCTGATATCCAGGGCCTAATTGAGTTAATTATGA ATGAAATGCAAAGTGACACCACAACTCCAGATCCAGCTGCGGATGCTTTCTTAGCCAGTACCATGCGATTTATACAGTTC CAGAAACAAAAAGGCGGTACAGTAGGTGAGAAGTATGAACCTATCAAGGTTTGACCTGCTAGATGATTGATACCCTTGCT CATGTAATGTTAAACTCTGGAGCAATTTGTTCTTGGGCTGGTCCAGCAACTGTTTCAATTTGTCTTCGGATTTCAACTGA AGAACCCCAAGTTTGTGGTGTTTTCCTCATATGAGCTGACAGCGTAAACTACCCTCGGTCATTGAGTTTGGACTGTTTCA CCATGTAACTCACTGAGCTACAATTTAACTTTGCAAGATCTTTTTTGCCCGGGATTTACACCAAGAGAAATTATTTGTAT AGATGCTAGTTTATGCACAAAAGTTTACCCAGATTTATGGATTTTTCTACAATAGTGTCTATAGGCAGACAAAAACTCGT TTGTTTTTTAATGGAATTCTACTAGCTAGGGATGCTGTTTCTTTGCCTTGTTCGTAATAGCTTGGTTGTTGTTGAAAGTA CTCGTTGGTTCTGTTTAGTGGAGTGGAATGTTGACACAAGGGTACATTAGCATCTTGTCATTTTGCCTTATTTATCTTTT TATAAATTAAAAAATATATAATGCGACTGAAGACGTGACTAACGTTGGTTGAGAAACTCAAGTTCTTAAAACATGGATGA ATGAGAGTAAAATATGATTAGTTACTCTTTTATTTTCTGATTTTTTTGGTCCATCACCTATGGGACAAAGAAAAGGGTAA GTGGGTAACCCGTAGGTGTTTTTCCGTTTCATGTTTTGCTTCATACCAGTGGTTTAGTGGTGTAGTCGTAATAGTAGCAA TACATACATTATTGTCCAAGTATATGTTTTTACAAAAACCATCATCGAATCTCATTTGAAATTGGCTCAGCAAACTGAGT ATCCCATGCAGAGAAATTTAGACAGGTTTTTTTAGTTTAAAACCATGTCATACATTCATTAACCCAGGAAAAAATCAGTA TAATACGATTAGTACGAAATAGGATGGTTGAACAAGTCACAAGGTTTA 

CDS sequence (LotjaGi2g1v0379200.1) extracted from Lotus japonicus Gifu v1.2 CDS.

ATGATGCTAGACGGAACCGAAGACGAAGAGAAGTTCCTCGCCGCCGGAATCGCCGGCCTCCAACAGAATTCCTTCTACAT GCACCGTGCATTGGACTCGAACAATCTCAGAGATGCGTTGAAGTATTCGGCTCAGATGCTTTCCGAGCTCAGAACTTCCA AGCTCTCTCCTCACAAGTACTACGAACTCTATATGCGTGCCTTTGATCAATTAAGGAAGCTCGAGATGTTCTTCGAGGAA GAGGCTCGTCGCGGTTGCTCCATTATTGATCTTTATGAACTTGTCCAGCATGCTGGAAACATTTTGCCTCGATTGTATCT CCTCTGTACAGTAGGATCTGTATACATAAAATCCAAGGAAGCTCCTGCTAAGGATGTTCTTAAGGATCTTGTAGAGATGT GTCGTGGCATTCAGCACCCTGTTCGCGGACTCTTTCTCAGAAGTTACCTTTCTCAAGTTAGTAGAGATAAATTGCCAGAT ATTGGTTCTGAATATGAAGGGGATGCAGATACTGTAGCAGATGCTGTAGAGTTTGTACTCCAAAACTTCACAGAAATGAA CAAACTTTGGGTGCGGATGCAACATCAGGGGCCTGCCCGGGAGAAGGAGAAACGGGAAAAGGAAAGGAGCGAGCTGCGCG ATCTTGTTGGGAAGAATCTCCATGTTCTCAGTCAGATAGAGGGTGTTGACCTTGAGATGTACAAAGATGTTGTGCTTCCT AGAGTGCTGGAGCAGGTTGTGAATTGCAAAGATGAGTTGGCCCAGTTCTACTTGATGGATTGCATAATCCAAGTCTTCCC TGATGAGTATCACTTGCAAACTCTTGATGTATTGTTGGGTGCTTATCCTCAGCTTCAGGCATCTGTTGACATCAAGACAG TGTTATCCCAGTTAATGGAAAGACTTTCTAATTATGCTGCTTCAAGTGCTGAGGTGTTGCCTGAGTTTTTGCAAGTGGAA GCATTTTCCAAATTAAGCAGTGCCATTGGCAAGGTGATAGAGGCACATCCTGACATGCTCACTTTTGGTGTTGTAACTTT ATATTCATCTCTTCTCACTTTCACTCTTCATGTCCACCCTGATCGACTTGATTATGCAGATCAAGTCTTGGGAGCATGTG TGAAAAATCTCTCTGGCAAAGGGAAAATTGAGGACAACAAGGCAACTAAGCAAATTGTTGCTTTATTAAGTGCTCCACTA GAGAAATATAATGATATTATGACTGCCTTGAAGCTTTCAAACTATCCTCGTGTGATGGAATACCTTGATGTTCCAACTAA TAAGGTCATGGCAGCTGTTATCATTCAAAGCATTATGAAAAATGGGACACACATATCTACTTCAGACAAGGTTGAAGCAT TGTTTGAACTTATAAAGGGGCTTATTAAGGATTCTGATGGGACTCCTAATGACGAGCTGGATGAAGATGATTTCAAAGAA GAGCAGAATTCTGTTTCCCGTCTAATCCAGATGCTTTATAATGACGATCCAGAAGAGATGTTTAAGATTATAGATACTGT GAGGAAGCATGTACTGACTGGAGGATCAAAGCGTCTGCCTTTCACTATTCCACCTCTTGTTTTTTCTTCTTTAAAGTTGG TCAGACAGTTGCAAGGTCAGGATGAAAATCCCTTTGGAGATGATGTAGCAACAACACCGAAGAAAATCTTTCAGCTTTTA AATCAGACCATTGAGAGACTGTCAGGTGTCCTAGCACCAGAATTAGCATTGCAGTTGTACTTGCAATGTGCTGAGGCTGC AAATGACTGTGATTTGGAACCAGTAGCATATGAATTTTTCACCCAAGCTTATATTCTATATGAAGAAGAAATTTCGGATT CCAGAGCACAGATCACAGCTATCCATTTAATAATAGGAACTCTTCAAAGGATGCATGTATTTGGTGTGGAGAACAGGGAT ACTTTAACTCACAAGGCCACAGGGTATTCAGCAAAGCTTTTAAAGAAGCCAGATCAATGCAGAGCCGTGTATGCATGCTC ACATCTGTTTTGGGTTGATGATCATGATAACATGAAAGATGGAGAGAGAGTCCTATTGTGTCTCAAGCGGGCTTTAAGAA TTGCAAATGCTGCACAACAAATGACAAATGCAGCACGAGGTAGCACCGGATCAGTGATGCTTTTCATTGAGATATTGAAC AAGTATCTTTACTTCTTTGAGAAGGGGAACCCACAAATCACACTTGCTGATATCCAGGGCCTAATTGAGTTAATTATGAA TGAAATGCAAAGTGACACCACAACTCCAGATCCAGCTGCGGATGCTTTCTTAGCCAGTACCATGCGATTTATACAGTTCC AGAAACAAAAAGGCGGTACAGTAGGTGAGAAGTATGAACCTATCAAGGTTTGA 

Protein sequence (LotjaGi2g1v0379200.1) extracted from Lotus japonicus Gifu v1.2 Proteins.

MMLDGTEDEEKFLAAGIAGLQQNSFYMHRALDSNNLRDALKYSAQMLSELRTSKLSPHKYYELYMRAFDQLRKLEMFFEE EARRGCSIIDLYELVQHAGNILPRLYLLCTVGSVYIKSKEAPAKDVLKDLVEMCRGIQHPVRGLFLRSYLSQVSRDKLPD IGSEYEGDADTVADAVEFVLQNFTEMNKLWVRMQHQGPAREKEKREKERSELRDLVGKNLHVLSQIEGVDLEMYKDVVLP RVLEQVVNCKDELAQFYLMDCIIQVFPDEYHLQTLDVLLGAYPQLQASVDIKTVLSQLMERLSNYAASSAEVLPEFLQVE AFSKLSSAIGKVIEAHPDMLTFGVVTLYSSLLTFTLHVHPDRLDYADQVLGACVKNLSGKGKIEDNKATKQIVALLSAPL EKYNDIMTALKLSNYPRVMEYLDVPTNKVMAAVIIQSIMKNGTHISTSDKVEALFELIKGLIKDSDGTPNDELDEDDFKE EQNSVSRLIQMLYNDDPEEMFKIIDTVRKHVLTGGSKRLPFTIPPLVFSSLKLVRQLQGQDENPFGDDVATTPKKIFQLL NQTIERLSGVLAPELALQLYLQCAEAANDCDLEPVAYEFFTQAYILYEEEISDSRAQITAIHLIIGTLQRMHVFGVENRD TLTHKATGYSAKLLKKPDQCRAVYACSHLFWVDDHDNMKDGERVLLCLKRALRIANAAQQMTNAARGSTGSVMLFIEILN KYLYFFEKGNPQITLADIQGLIELIMNEMQSDTTTPDPAADAFLASTMRFIQFQKQKGGTVGEKYEPIKV 

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
PANTHER 2 790 789 0.0
PANTHER 2 790 789 0.0
PIRSF 2 790 789 3.6E-287
Pfam 13 747 735 1.1E-277
SUPERFAMILY 210 636 427 2.88E-6
Gene3D 477 774 298 5.6E-105

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
Biological process Protein transport The directed movement of proteins into, out of or within a cell, or between cells, by means of some agent such as a transporter or pore.
Cellular component Retromer, cargo-selective complex The trimeric subcomplex of the retromer, believed to be closely associated with the membrane. This trimeric complex is responsible for recognizing and binding to cargo molecules. The complex comprises three Vps proteins in both yeast and mammalian cells: Vps35p, Vps29p, and Vps26p in yeast, and VPS35, VPS29 and VPS26A or VPS26B in mammals.
Biological process Retrograde transport, endosome to Golgi The directed movement of membrane-bounded vesicles from endosomes back to the trans-Golgi network where they are recycled for further rounds of transport.

Expression data

Expression pattern

Expression pattern of LotjaGi2g1v0379200.1, powered by ExpAt. For advanced configuration, data transformation and export options, view expression data in the ExpAt application.

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