Your browser is unable to support new features implemented in HTML5 and CSS3 to render this site as intended. Your experience may suffer from functionality degradation but the site should remain usable. We strongly recommend the latest version of Google Chrome, OS X Safari or Mozilla Firefox. As Safari is bundled with OS X, if you are unable to upgrade to a newer version of OS X, we recommend using an open source browser. Dismiss message

LotjaGi3g1v0450500.1

Overview

Field Value
Gene ID LotjaGi3g1v0450500
Transcript ID LotjaGi3g1v0450500.1
Related isoforms 2
Lotus japonicus genome version Gifu v1.2
Description TPR repeat thioredoxin TTL1-like protein; TAIR: AT2G42580.1 tetratricopetide-repeat thioredoxin-like 3; Swiss-Prot: sp|Q9SIN1|TTL3_ARATH Inactive TPR repeat-containing thioredoxin TTL3; TrEMBL-Plants: tr|I1M3M3|I1M3M3_SOYBN Uncharacterized protein; Found in the gene: LotjaGi3g1v0450500
Working Lj name n.a.

Sequence information

Genomic sequence (LjG1.1_chr3:86410277..86419441) extracted from Lotus japonicus Gifu genome v1.2.

AGTAACTTCACTACATGTTGCTATCACCAGCATTGTCGTGTTTAGAAAAGATGAGATCATGAGAGAGAAGGGGGTGATGA GTAGTAATATCCGCAAAGTTAGAGAGAGATAGAGAATCTAGCATAGAGAGTAAGAAAAATCCACCATTCTTCTCTCTCAC TCTCTGTCGAAATAAAATCTACAATTTCCCTCCATGGTGTTGTTCTATAACAAGTAACAACAATCAATTCAATGCACCAT ATCTCACATCTTTCCTTTCCATTTCTATCTTAAACTCAAAACCAAACCAAACCAAGCACACTGATTACCATTAACCACAC TTAATTAACCAACAAGCCTTTTGTATCAATCAAATCTCCCTCCTATATATATAAAAACAACATCACCAAACAACAACATT AAAATTCAGACACACAGAATTAAAATGTCCAAGACTATGCAACAACAACAACAACAACAACAGGGTTTCGATTCCCTGTG TTGCGACTACAATAAGCCCGATTCCAAACAACTCGATCTGCCCGCTTCTTCCACCGCCGTTCCTCCCAAACTCCCCACCA GCCACTCCGGCGAGCTTTCTCGCGCTTCCAGACCCGCTCACCGGAGATCGGTCTCCGCCGGAGCTCCGCTAATCTACTCC GGCGGAGCCAATGGTGGTGGAGGTTCTGGTTCTGGTTCGAGTCCGACCCTGCTTCCGACCGGGAACATTTGCCCCTCAGG GAAGATCCTCAGACCGGGTTTGCCATCTCGCGGCCCGAACCGGACAGAAGTTTTGGGTTCTGGCACCGGGAACTATGGCC GCGGTAACATAGTTCGCGGCGGCGGCGGTGGGAACTCGGTGGCGGCGGATTCACCGGTGAAGCGGGCGATGCGTGGCTAT GATCCCGAGGAGGCGAAGAGGGTTGGGAACGAGATGTATAGGAGTGGGAACTTTGCGGATGCGTTGGCATTGTATGATCG TGCTGTTGCCATGTCGCCTGGGAACGCTGCTTACCGGAGTAACCGTGCGGCGGCGCTCACGGCGTTGGGGAGGTTGGGTG AGGCGGTTAGGGAATGTGAAGAGGCTGTGAAGTTGGACAATGGTTATGCTAGGGCTCATAAGAGGCTTGCTTCTCTTTAT CTAAGGTATCTAACTATGCTCTCTCATGTTATGCTATGATATGTTATCTAAACTCTGCAGTTTATCTGGATTCATCATTT GTGTGCTATAATGAAATGTGATAATACTAGCATTTTGCAATGACTTGGTTCACCCAATCATATTGATTTTGGTATCAGCT CATTTTGGCTTATTGCTTAGTATGATGAATTGATGATGCTTGAAATTGAATGTCTAATTTCTATTGGTTTTGTTGACAAT GGAATAGGAGGGGTTCAATTTTTTGTTGGGTTATTAGATTTGGAATTTTCTATATATGTAGAATCGGGCAGGTTGAGAAT TCGCGGCTCCACCTGTGTCTCTCTGGGCTGCCGGAGGATCCATCGGAAGAGCAGAAGCTGTGCTTGTTGGAGAAGCAGCT GAGTCGATGTGCTGATTCACGGAAGATTGGTGATTGGAAGAGGGCACTTAGGGAATCCGAGGCAGCCATTGCTGTTGGAG CAGATTTCTCACCTCAGGTAGGTTTTGGTTGATGAAATAAGCCCATAATGTCTGGGTCAGTTCCGTTAAAGATAGCATTT ATGTGTTTTTCGAGCTTGTTTGAATTAACTTATGTTTCATTAGAATCGCTCCTCACATAAGTTTCTTCCCATAAATGATT GTATTTAAAATCAATTAAAGAAATATTTATAAACATGCTTATGAGTCTGTTTTTTATTTTAGCCCAATCAATGTGCATTG TTTACATTGGCTAACTTGTTGGTTTGCTGCTACCTTCAGTTAGTTGCTTGTAAAGCTGAAGCTTATTTAAAACTCCATCA ACTTGAGGATGCTGAATCCTGTGCTTCCAAAATTCCCAAGATGGAAGGTTGTCCTCCATCCTGCTCTCAAGCCAGGTTCT TCGGCATGATTGGTGAAGCCTATGTGCATTTGGTCTCCGCTCAGGTTGAAATGGCATTGGGAAGGTAAAACACCTAAGAC ACCAAATCCAAAACTACATAGAACTTTTGTGTGAATGAGTGAGAAACCAATGATGGGTTGTTGCAGGTTTGAGAATGCTG TCACAGCAGCAGGAAAGGCTAGGCTGTTAGATTATAGTAATTACGAAGTTTCTAGGATTGTAAATACTGTGAACAGAGTG GCGCAAGCTCGTTCAAGGGGCAATGAACTTTTCAGTTCTGGAAAATTTTCTGATGCTTGTACTGCTTATGGAGAAGGCCT CAAATATGACAATTCCAACTATGTTTTATATTGCAATAGAGCTATTTGCTGGTCTAAACTTGGCCTATGGGAACAATCAG TTCAAGACTGCAACCAAGCTCTTAACATTCAGCCAAACTACACCAAAGCCCTTCTCCGCAGGGCTGCGTCAAATGCAAAG GTGAGCCCTCCTTGCAATGCGCATATATGGGTCTGTTCATTTTCATTGTTGTTTTGTTGTCTGGATTTGTTTCATTGTCG TTTTTAAAAATGTATAATCTTGTTGCAGCTTGAAAGATGGGCAGAAGTTGTTAAAGATTACCAGGCCTTGAAACACGAGC TGCCTAATGACAATGATGTTGCTGTATCTCTTCATCAAGCTCAACTAGCATTGGAAAAATCTCGTGGCCTGGCCAATGGT ACCAAGTTTGGAGTTGAAGTTGAAGAAATCTCTTCAGTAGATAAATTTAAATCTGCGATTGCTTCTGCTGGTAATTTTAA TACCTTCTTAAAATGTTGAGTTAGCATTTTTCTAGCTTCATTTAAGCGTACTTCTTTTTATTAATGCAAATCTGAATTTG CAGGTGTTTCGGTAGTTTATTTCAAAGAGACATTAAATGAACAATGTGAAGAAATTTCTCCATTCATCAATACATTATGT GTTAGATATCCCTCTGTTAAATTTATTAAGGTACACAATGTTGTAAGTGGCTTCCATGAATTTACTAACATAATTGTCCT ATCTGTCTAATTTTCTTTATAATTTAATTGAAGGTGGACGTGGAGGAGTGTCTAGCAATAGCAAAAGTTGAAAGCATAAG AAGTGTTCCCACTTTTAAAATTTATAAAAATGGGGAGAAGGTGAAGGAGATGTTCCGCCCAACCCATCAGGCCTTAGAGG ACTCAGTAAGGAAAAGTAATAGCATCTAGATTTTTGAATTCATACTCTCATTATTTGCATTCACCAGCAACTCAAACCAT AGCAATTGAAGAAGGTGCACCAAGAAAGCACCAAATATTCTTTAGTTTACGTTAGAATTTCAGCTTTTCTCTGTGACACA CACGCACACGTGGATACCAATTTTTCAGTGCTTTTAGACAGGAAAACCTCATAGAGATAGATGTTCGTTAGCATTTTTGA AACCTTATATGTATATTTCTTCCTTTGTTCCTCTGATGTGCTTCCCAAAAGAGATATTTTTTCCTCAATACCTTTTATTT TGTTGCATGAGGCTTAAGAAAAATGCTTGAGTAAATATATACTCCAATCTTCAAACAATGAGGTAGATAGATTTGGTCCC TGAACATATTGTAATTGTCTTATTCAGTTCTTCAGCATTTTAAATGCCATATCAGTTAAAACTGGACAAAATTGCAGATA TTGCATGTTCTGAGGTTAACAGCTCTGTTAGCATGGTTAATAAAGCATCACACAATGCTGACACTACATTTGGATACATT GATAGATGGGGTATCAGGTATGTAAAGTATTCAAAAGTCAAAACAACAAACCAAGAAAAAAAAACGTGATAGAATATGTT ATAAATGTGATACTTTCGCATCCATTATTTGATATAGCGAGCTTGAAAAGATAGATCAATTAAAACTGTAGATATTGTAA GCTTGACATATAGCTAACAGAATCCTGTTACATGAAATAGAGTAGAGAGATCAAGCAGATGTTTTTTATTCTAAGCCAAT TAAGCATCTATATTGGCTTGCTGGCTTACTCTTGAGTGATCTTTTTTATCTCACTGGCCTGCAGCAAAGGCCTCAACTGG GAAAGTCTTGGTGATACCAGCAAGACTCTTGAAGTGAACCTTCCCAGTTGGTTGGTCATCAACAGTGATCTCACTCACAG GGGGCCATAGCATGAGCTCTTTAGCCTTCACACCCTTGAGCTTCTTGATCTTTTTCTTTGAAATGAACCCTGTGATCTCG GTGTCATAGCTCACGAGCTTGCTCACCATCTTGAACTGGTGCTCCACCTTCTTCTTCTGTGCGATCCACATGTAACCTGT GGCTTTCACATGACCAACTTCGATCACGTCAGCCAGAGGTAGAAGCCCTGCTGGAAGTTCAAACTCTTGCAGCAGGGAAA CAGCCATTTTCAGGCCTTCTTCATGCCCTTTCTTCACAATCCCTCCTTCCCTTTCGGCCATTGTTTCAATGCTGAGGATA GAAACTGTTTTGTTGCTTTGGAATGTGAATTAGTTGATTTGAGAGTTTTCTTTGTGTGAGAGTATATATAGATTCTGCTT GAGGAGCTAGCGGTAATGAGGGACAATATTTGTGCTTGGTAGAGATCGAAGTAACTAAATTTCTGGTATGTGCCGTCCAA TGTGGTCCTTAATTTTGCTTCTCTTCACCACCTTGTCAGCTAGCATTTGTCATGTACAATACCAATTTGAATTTTACCTT TTCGAGCATTGTTATGATGAAAGTTACACAAAAATTGTAGGACGTGGGTGTGATTTTCTAGAAATAGTGACCAAGGCAGA GATGTAGAAGATGCCAAAATATCCACCTGAATAACCAATGCAAAACCATGGAGAACATAGTGTGTGGGTGTATGAAAAAG AATGGTTTTTGTTTGTTTATGTAAAAGAAAAAAAATCTCACATTTTTCTAGGTAAGATGTTCAGGAAATTGTTGTATAAT TCTTCTAACTAATGTTTTTTTTATTATTTGAACTTGTGATTTCATTTTTATAGGGGTTACCACTAGACCAACATGAGATA AATAACTAAGATAAAATAAATAAATTTACATAAAAGGATGAGAAGATAGGGAATTGTAAGAGGAATTAAAAATAGTATTT CAGTTTGTAAGTAATAATGTATTTTTATATAGTTAGAATTAAATATATTTAAATATAAATTATATTTTTGAATTTGAAAT GAATAGGCAAGAGGGAAGGAGCTGATGGTTCTGCCGAAGGAGTTCTTAAAGCCTTATGGCGTTTTGACTAGGGTGAGGAG CGTTATTTTGATGGGGGAAGCGATGTGGCATGAGGTATGACTGCACAGATGATGTTGCCCTCTACCAGATAGTGGCCCAA ATCAATGTGCACAAGTCGTCTTTGGGGAGTTGAGGTAGTTCCTTGGGGTCTTAGTAGTTTGAGGTCTTGGTTTGTTCCTA GTTCTTTTAGGGTCTTAATAGGTTTTGGTTCGTTAGGGTTTTTGCATGTTTGCCTGTTGGCCTTGGGAGGTTTTGTATTT AGGTTGGGTTGTTTGGGTAGTTGTTAGTCTTACTGATTTTTTAAGCCCTTTTGAGGAGGGTTGTATATCTTGATCAATTT CTAAATTTCCTCATTTATATATACATATTTTGCTTTAAAAAAAAGATATTATGGTAAAAATATATTGAACTAATAATTTA TTTTAAACTTAAGATATAGATATTAAAGTATTATTATTTGAAATTAAAAAAACCATTGATCTCAATACTTAATATTATAG AAACTTAATAAATTCGGTCATTATAATTATTAAGTTTCCTATAAATTAAAACAAATTCAAAATTGATTTCTTTAACCATT AATGTTTGATGCACCAAGAAAGCACCAAACACATTCTTTAGTTCAAGTTAGAAATTTCAGCTTTTTCTTTGTGACACACA TGCACTCGTGGATGCCAATTTTTCAGTGCTTTTAGGCAGGAAATGTTAGGAAATAACACAACTGAATAAGTAAAATAAAT CAGGAGCGCAATCAGCAACACTAGAATATAACGTGGAAACTCTAAAATCGGAGAAAAAACAACGGCCGTTGTCAAAACCG ACAACCAGAGAATAAACACTATGTGGAAATTGTTACAACACATAGACTTCACTCTCAACCACCACATGACTCCAGTACAC CCACACTATCCAAAGTAAATATTTGAACTACATCTCACAATATTCTAAAACAAAAGCATAAGAGAAAGGCTTAATCCTCA AATTAGTCCCTGTTTTTGTGTCGCCGTTAGAACCAGGTCCCTGACCGGATTTTTTTTTTGGAATACGTCCCCTTTTTTGC AAAACGTTTGGAGCCAGTCCTAGCCGGAGCCCGGAGCTTCGACGAGTGATGAAATGACATGATGATTGTGTAAATGAAGC TGACATGACATTAAAAAAATAATAAAAAATAATAATTTACAATCATATAGTTAACATAATTAAACCTATTTCAAATTCTA ACCCAAATCTAATTAACAAATCTTAATTCCCCCACATTAATCTTAATTCCCCCAAATTACCCCAATTTCCAATTGCATCA ACTCAGAAATTAGGGTTCATCTGTTCTTCCTCTTCTTCTCCTTCCCAATCTTCTTCTTCTTCCTCTGCCATTCTTCTTCT TCCTTTCTTCTTCTCTTTTCTTCTCAATCATCACCCTCTGAATCTCAAACATCATCATAGCCATGCCTGAAAGAGAGGGA CGAGATCGAGGGCGAGAGAGGGGCGATGTAATCCATATAGATGGACAGAGGAAGCTTCATGGTCGTTTGTAACCATCACG ACCATAGCCGTGGCGTGGTGGTGCGAAGTGGAAGCATCGTCGTTGACGTTGTAGAGTCTGGGTCATGGGTTTAGTGGCTG AAATGGCGAGGGGAAGGGACAATGACCTCGATTCGCAACAGTGAGGTTTTCTGGGTTGAGAATGGAATTTTGGTTGAGTT GAACAAGCTTTTTCGTCGTTTTATGCTCAAAGGTTCCTAAAGGTTCAAGCTTTTTCTCCTTCTGGCTTCATCAAGGATTT TTTCTGGGTTGAGTTTTTTTGGGTTGGGGGTGCTTGATATGAGAAAGAAGGGCAGTTGAAGAGGATGAGGGTTGGGGTTT GAGTTTTTCGTTTTTGGATTTTTGATTTGACATGAGTTTCTGGATTATTTGTTTTTGGCTTTCACTTTCTAAATGCAAAC ATTGGAGGAAGATGAAAAAGATGAAGGTGGAGGTTTTGTGGGGGAGTTTGATTTACTGGGTTTTTGTTATAGGTTCTGGA ATATACCCATGTACCCTGTCGTTCCAATGTTTGCTTTGGAGGGATTTCCTTGAGATGAAGAACTTGGGAGTTTGGGTTTT TAGCTTTATGGTTTTTTACTTTAATTAATGGGTTTTTGTTTTTGTGTTTGGATTTGAGAGTTTGATTTTCTCGGTTTTTG TTATAGGTTCTGGATTTCTTGTTCTTGTTTTGGGTTGATGAAGATGAAGATTAGTTTGGGGTTCATGGTTGCCAGAAATG TTAGATAACGTTGTTAACTTTTTTTTTGTTGCAGATAAGGTTGTTAACTAAAAGACAAGCTTTTGACTTTTTATTTTTAA TTAATAGTTTTAATTTAATTTAATTATTAATATATGTGTCATTTAAAATTTAATCAATAATGACGTGGAAATGCCACGTA AGCGTTTTCCTGCCACTTAGCAAACTCGCCGGAGCTCCGCCCTCCGGCGATGACTGGCTCCATACGTTTTTCAAAGTTAG GGATTTATTCCACAAATTTTTCTGGTCAGGGACCTAGTTCAGATGGCGACAAAAAGATAAGGACTAATTTGAGGATTAAG CCTAAGAGAAAAAAAAACACAAAATATAAACTTAAAGTGTTTTCAGGTGCTACTACATCGTGTTTTTGGTGTGTTGAAAC AAGGAGCTTGAGATCCCTATATATAGCCTTGGACTCTCCCACCCCTCACTAATCTAAGCAATGTGGGACTTTTCCAATAG CTTTTCTTGATCTTTTTTCTTCTTCATTAATCATTAGCAATGTAGGACTTACATTCCAATCAACCCCAACAATCTCCACC TTAATTGTAATGGTCTTCAATCTTCATTGTCTACACCAACAATCATTGTCTTCACCGACAAACATAATTTTCATTGTCTA TATACTGACAAATTAAATTATCATACTCCACCATAAATAGTACACTACACTTGGAACTAAACCATCCCAAGAATTTTCTT CACTTGGAACTAAATCATTCCAAGAATTTTCACATGCCGAAACTTTGCTGAAAATTTATGGTGTAACTTCCATGTTGACT TTCCCCGGAAGTTCATCAGCCATCGACATAACCATGTACCTTGCATCAACGCCAACCATTGCCCGCACACTATCACCACA CACCTTGCATCTATATCAACCAATGCCCGTGTGTTACCTGGACAATTTCATGACCAGAACGCCTTGTGTAATTATGATTG CATCGACTCTTCCATCACATCATCATCGCAGCTGCAGACCACTTCTTCAGCACCTTCGCAATACCACACAAAGTGATATC CATCGAACCGGAAGCTCTAATACCATTGTTAGGAAATAACACAGCTGAAAAAGTAAAATAAATGAGGAGCGCAATCAGCA ACACAAGAATATAACGTGGAAACTCTAAAACCGGAGAAAAAACCATAGCCGTTGTCAAAACCGACAACCAGAGAATAAAC ACTATGTGTTAATTGTTACAACACATAGACTTCACTCTCAACCACCCCATGACCCCATTACACCCACACTCTCCAAAGTA AATATTTGAACTACATCTCACAATACTCTAAAACAAGAGCATAAGAGAAAAAGAAAACACAAATATAAACTTAAAGTGTT TTCAGGTGCTACTACATGGTGTTCTTGGTGTGCTGAAACAAGAAGCTTGAGATCCCTATATATAGTCTTGGACTCTCCCA CCTCTCACTAATCTAAGCAATGTAGGACTTTTCCAATAGTTTTTCTTGATCTTTTTCTCCTTCATTAGCAATGTTGGACT TAAATTGCAATCAACCCCAACAGGAAAACCTCGTAGTCATAGAGATAGATGTTAGTTAGCATTTTTGAAACCTTATATGT ATATTTTTTTCTTTGTTTGTTCCTCTAATGTGCTTCTTAAAAGTG 

CDS sequence (LotjaGi3g1v0450500.1) extracted from Lotus japonicus Gifu v1.2 CDS.

ATGTCCAAGACTATGCAACAACAACAACAACAACAACAGGGTTTCGATTCCCTGTGTTGCGACTACAATAAGCCCGATTC CAAACAACTCGATCTGCCCGCTTCTTCCACCGCCGTTCCTCCCAAACTCCCCACCAGCCACTCCGGCGAGCTTTCTCGCG CTTCCAGACCCGCTCACCGGAGATCGGTCTCCGCCGGAGCTCCGCTAATCTACTCCGGCGGAGCCAATGGTGGTGGAGGT TCTGGTTCTGGTTCGAGTCCGACCCTGCTTCCGACCGGGAACATTTGCCCCTCAGGGAAGATCCTCAGACCGGGTTTGCC ATCTCGCGGCCCGAACCGGACAGAAGTTTTGGGTTCTGGCACCGGGAACTATGGCCGCGGTAACATAGTTCGCGGCGGCG GCGGTGGGAACTCGGTGGCGGCGGATTCACCGGTGAAGCGGGCGATGCGTGGCTATGATCCCGAGGAGGCGAAGAGGGTT GGGAACGAGATGTATAGGAGTGGGAACTTTGCGGATGCGTTGGCATTGTATGATCGTGCTGTTGCCATGTCGCCTGGGAA CGCTGCTTACCGGAGTAACCGTGCGGCGGCGCTCACGGCGTTGGGGAGGTTGGGTGAGGCGGTTAGGGAATGTGAAGAGG CTGTGAAGTTGGACAATGGTTATGCTAGGGCTCATAAGAGGCTTGCTTCTCTTTATCTAAGAATCGGGCAGGTTGAGAAT TCGCGGCTCCACCTGTGTCTCTCTGGGCTGCCGGAGGATCCATCGGAAGAGCAGAAGCTGTGCTTGTTGGAGAAGCAGCT GAGTCGATGTGCTGATTCACGGAAGATTGGTGATTGGAAGAGGGCACTTAGGGAATCCGAGGCAGCCATTGCTGTTGGAG CAGATTTCTCACCTCAGTTAGTTGCTTGTAAAGCTGAAGCTTATTTAAAACTCCATCAACTTGAGGATGCTGAATCCTGT GCTTCCAAAATTCCCAAGATGGAAGGTTGTCCTCCATCCTGCTCTCAAGCCAGGTTCTTCGGCATGATTGGTGAAGCCTA TGTGCATTTGGTCTCCGCTCAGGTTGAAATGGCATTGGGAAGGTTTGAGAATGCTGTCACAGCAGCAGGAAAGGCTAGGC TGTTAGATTATAGTAATTACGAAGTTTCTAGGATTGTAAATACTGTGAACAGAGTGGCGCAAGCTCGTTCAAGGGGCAAT GAACTTTTCAGTTCTGGAAAATTTTCTGATGCTTGTACTGCTTATGGAGAAGGCCTCAAATATGACAATTCCAACTATGT TTTATATTGCAATAGAGCTATTTGCTGGTCTAAACTTGGCCTATGGGAACAATCAGTTCAAGACTGCAACCAAGCTCTTA ACATTCAGCCAAACTACACCAAAGCCCTTCTCCGCAGGGCTGCGTCAAATGCAAAGCTTGAAAGATGGGCAGAAGTTGTT AAAGATTACCAGGCCTTGAAACACGAGCTGCCTAATGACAATGATGTTGCTGTATCTCTTCATCAAGCTCAACTAGCATT GGAAAAATCTCGTGGCCTGGCCAATGGTACCAAGTTTGGAGTTGAAGTTGAAGAAATCTCTTCAGTAGATAAATTTAAAT CTGCGATTGCTTCTGCTGGTGTTTCGGTAGTTTATTTCAAAGAGACATTAAATGAACAATGTGAAGAAATTTCTCCATTC ATCAATACATTATGTGTTAGATATCCCTCTGTTAAATTTATTAAGGTGGACGTGGAGGAGTGTCTAGCAATAGCAAAAGT TGAAAGCATAAGAAGTGTTCCCACTTTTAAAATTTATAAAAATGGGGAGAAGGTGAAGGAGATGTTCCGCCCAACCCATC AGGCCTTAGAGGACTCAGTAAGGAAAAGTAATAGCATCTAG 

Protein sequence (LotjaGi3g1v0450500.1) extracted from Lotus japonicus Gifu v1.2 Proteins.

MSKTMQQQQQQQQGFDSLCCDYNKPDSKQLDLPASSTAVPPKLPTSHSGELSRASRPAHRRSVSAGAPLIYSGGANGGGG SGSGSSPTLLPTGNICPSGKILRPGLPSRGPNRTEVLGSGTGNYGRGNIVRGGGGGNSVAADSPVKRAMRGYDPEEAKRV GNEMYRSGNFADALALYDRAVAMSPGNAAYRSNRAAALTALGRLGEAVRECEEAVKLDNGYARAHKRLASLYLRIGQVEN SRLHLCLSGLPEDPSEEQKLCLLEKQLSRCADSRKIGDWKRALRESEAAIAVGADFSPQLVACKAEAYLKLHQLEDAESC ASKIPKMEGCPPSCSQARFFGMIGEAYVHLVSAQVEMALGRFENAVTAAGKARLLDYSNYEVSRIVNTVNRVAQARSRGN ELFSSGKFSDACTAYGEGLKYDNSNYVLYCNRAICWSKLGLWEQSVQDCNQALNIQPNYTKALLRRAASNAKLERWAEVV KDYQALKHELPNDNDVAVSLHQAQLALEKSRGLANGTKFGVEVEEISSVDKFKSAIASAGVSVVYFKETLNEQCEEISPF INTLCVRYPSVKFIKVDVEECLAIAKVESIRSVPTFKIYKNGEKVKEMFRPTHQALEDSVRKSNSI 

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
MobiDBLite 1 18 18 -
MobiDBLite 1 62 62 -
PANTHER 22 623 602 0.0
PANTHER 22 623 602 0.0
MobiDBLite 29 52 24 -
MobiDBLite 76 137 62 -
MobiDBLite 78 93 16 -
Gene3D 153 510 358 4.9E-73
SUPERFAMILY 154 381 228 1.34E-24
SMART 154 187 34 12.0
ProSiteProfiles 154 241 88 15.223
ProSiteProfiles 154 187 34 9.44
Pfam 163 220 58 4.3E-7
SMART 188 221 34 0.55
ProSiteProfiles 188 221 34 5.31
SMART 346 379 34 90.0
ProSiteProfiles 392 425 34 5.251
SMART 392 425 34 31.0
ProSiteProfiles 392 493 102 13.101
ProSiteProfiles 426 459 34 6.579
SMART 426 459 34 1.1E-5
SUPERFAMILY 435 622 188 4.7E-22
SMART 460 493 34 47.0
Gene3D 511 626 116 1.6E-19
Pfam 529 616 88 8.0E-12
CDD 532 608 77 2.89868E-20

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 Cell redox homeostasis Any process that maintains the redox environment of a cell or compartment within a cell.

Expression data

Expression pattern

Expression pattern of LotjaGi3g1v0450500.1, powered by ExpAt. For advanced configuration, data transformation and export options, view expression data in the ExpAt application.

Loading expression data from ljgea-geneid. Please wait…