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

LotjaGi1g1v0489300.1

Overview

Field Value
Gene ID LotjaGi1g1v0489300
Transcript ID LotjaGi1g1v0489300.1
Related isoforms 1
Lotus japonicus genome version Gifu v1.2
Description Purine permease; TAIR: AT1G44750.2 purine permease 11; Swiss-Prot: sp|Q9LPF6|PUP11_ARATH Probable purine permease 11; TrEMBL-Plants: tr|I3SXT2|I3SXT2_LOTJA Uncharacterized protein; Found in the gene: LotjaGi1g1v0489300
Working Lj name n.a.

Sequence information

Genomic sequence (LjG1.1_chr1:100225206..100232548) extracted from Lotus japonicus Gifu genome v1.2.

CTCTCACATAAAAACCCAATTCGCCCGTAAAATATGGACCATTCCTACTCAAGTCAACTGTTATATTCGCTTTAAGCGGT GTCACGTGATCAAAGAACAAACAAGAATTGCCAATTTGCTACCTATGAACCAAACCTTTGAATCGAATTCGATTCATTTC ACGATTTCATTCACAGCATGGGCCATGTTCATGTTCGCTACGTCACTTGTTTGTCTTTCTTCTCCGCAATAGTAATACCC CTTTGAAAAATAGAAACCCTTCCTTCAATTTCGACGCTCAAAAGCTTCTTCGTTGCACCTGATCAAATCACCATGACGGG TAACTACAGTTTCATTCAGCTAATTGAATTCCAAATTAACATATGGGTTTTCCACTGAACATGATTGATTTTACGTGATT TTGTTCCTGGGTTTTGATTTTTATTTCTTTCTGATTGCTCTGTTTATTGAATTGCTCTGTTTTTTTAATTGCTCTGTTTT TTGAATTGATTGAGTCATTAAATGAAGTGGGTATGGAGAATTTTTGCATGTTCATTTAATGTTTTGTGTTTTGGGTTGTT CTGGTTGTCCTCAAAAAATTGATCTTTATGGACGGTTATATGTGTATATGAATGTATTTGCGCCAATATTGTTCTCTTGG TTGGTCAAACTCTAAGTTTCCTCCATGTTTTCAGTTAGCTTTCTGTGGCCACTGATGTTTTCTTTGACATCAATATAGTG CAAAATTTACTGTTTGTAAGGACCAAATTAATGTTATTTATTGATCACCAACACAATCAATCATTTTCCCCGACTAGGGG TGTGTTTAGATTCAAGTTGAGATCAACATGAAAGCGTATTCAAGCCAATGGAAGTAAAGGGTTCCTTTCACGTTTGAGTG TTTTCAGTTGAAGTTTTCATGTACCGCATAAGAACGGCAAACCAAACAAACGGGTGGGGCGAGCTTTGTGAATCAAAATG ATAGCATAGTACCCTGTCATGTGTTGAGCTCACACCTCTAAGTCCACCTTAGTGAATTGGCTTATAGTTTTTTTTGTCAC CCTTTACTTCTAAACACCTCTTAATGTTTTGGTCTATAGTTTATCAGCAAACCATTTACTTCTAAACCTCTCTTTATGTT TTGGCATATAGTTTTCCTCTGTCTCCCTCTATCATTAACTACTCAGCTATCCTCCATTTGGTAAACTGTCATTAGTGGTG TTTCCTTAGGTTTTTTCCGCACATGAACAAACCATTTAAGACAGGACTCTACCATCTTTTCTACAATAGGAGTTCCCCAT CTTTATCTTTCTCTAATAGTTATATTTCTAATCGTATCTTATCTCATGTAATCACTTAATTATACTTATTGATCATAGCA TGTTTATCTTTCTGAATCTAAGTTTACTTTCTTATTGGCGTTTTACTGCCCATACCATATTGAGAGTGATATGAACAGAG AGAAAATATCTATTGTATTAACTGAATGAAAAGTTGTTACAGCCAAACATATAACAATCACTAACTAAACTGAATCAGTA CAACTTACAACAAACTAGGAGCAAGTAACTCCTAATAAACAGTCAGTCTCATTCCACATTGCAAGTCTTATAACAGTGCA GAAAAATTCTTTTAAACTTGAGTGATAAGTGATTCTTTTTGAATGGCATATTACGATCAAAGCATTCTTTCATTTCATCC ACATTAGTAAAATTCTAATATTGACATTTCCCTCTATTTCTTTATCATTTTATATAATGAACCCAAGTTACTTGAAGCTT GAGATTTATGGTATCGTATGTATTCCAAGTCTCACCGGAGTTAGAACTTGTATGTCTCTTCTTAAACTTGCATTCAATAT ATTCTTGTGTACTTATGCGGTAGCCATGCATTTTCAAGGCTTATCTTCATATTTGGTATCTCACCATATTTATTTATTCT CTTGAGTATACAAATAAAACTATATCATAGGCAAGAAAATAAACGTCATGGCATCGTTTAGATATATTTAGTAATCATGT CAAAAACCAACATAAAAAGATAAGAGCTCAAAATCGAACTTTGGTGCATGGGGAAATCTCTATATTCCTTTCTTGTGTTC TGACACTGACCATGGTCCCCTGATACATATATTTAATTATTCAAATATAAGCAATTTGTAATCTTCTTTAAGTCATCTTT GGATACTTTATCATGTCTTTCTCAAATCAATGAAAACCACGTTAGGTCCTTTAATATCTTTCCTTGGTGTTTGTGACATA TGATGCCATTACCGGTAAAAATTATAATTTGAGAGCCAATTTCAAGTCATTTAATGTGGTTTGGGTTTCACTTTCAGCGA AACATAGGATTGACAAAATATTGTTTATCCAAAACTTTACCCTTCCATCATAATATGCACCTTGGTATGGTGATTAACAA TATTGTTATATACCAGCATAATAAGTATATGCTGGTGAAACTTTACCCTTCCATCATAATATCCTAACCAAAACTTATAC TATTATGATGGAATGGTGAGTGAACCTTGGTATATACCTATATTCAAATCCTAACCTATGTGCATAGGTTTACTATTGTG CTTATGTATTGAATTTAAGTGCTTCTGTATCTTTTTTCCTTTTTCTTTCTTGCATTTACTTTTCTTTTTATGTTCTTGTT GTTACTTTTAAAGTCTTAAAGATGATATTAAGTTTAGTGTTTCTTCCAATTACAGATAATGAAGAACCGATGATCTTAGC TGGACCAAGTTCTGAATTACCATTTGATAAGTATAAGCGTTGGCAGTGGTGGTTTATGGTGGCACTCAGCATAGCCTTTC TTATTATAGGCCAATCCGCTGCGGTTATCCTCGGAAGATTTTATTATGACCAGGGTGGAAATAGTAAATGGATAGCTACT TTAGTCCAAACTGCTGCCTTCCCAATCCTGTTCATTCCATTCTTTGCAATTCCTTCATCTAGCGAGGCTTCAACTTCTTC GGCTCCGCCTTCCTTCAAAGTTATTGTTTTGATATATTTTGTTCTGGGAGTCCTAATTGCTGCTGACAATATGATGTACT CTACTGGACTCTTATACCTCTCTGCTTCTACTTATTCACTGATTTGTGCATCCCAGTTAGCTTTTAATGCGGTTTTCTCC TATTTCATCAATTCTCAAAAGTTCACCGCTTTGATTATAAACTCGACAGTGGTTCTCACTTTTTCTGCTTCCCTCCTTGC TGTTAATGAAGACTCGGATAAACCAGATGGTTTATCCCAGGGTAAATACATTGTTGGTTTCCTTGTTACCCTTGGAGCTT CTGCACTTTACTCTCTTATACTTTCCCTAATGCAACTGTCCTTTGATAAGGTTCTGAAAAAGGAAACATTTTCTGTTGTT TTGGAAATGCAAATATACACATCGCTCGTTGCCACTTGTGCTTCCACCATAGGCCTCTTTGCGAGTGGGGAATGGCACAG TTTGCATGGAGAAATGGAGGGTTTTAAGAAGGGAGAAGTTGCTTACGTGTTGACTTTGGTTTGGACTGCGGTGGCATGGC AGGTTTGTTCTGTTGGTGTTGTTGGCTTGATTTTCCTAGTGTCTTCTCTCTACTCCAATGTTATCAGTACTGTCTCTTTG GCAGTAACTCCTATTGCTTCTGTTATTGTTTTTCATGATAAGATGAATGGGGTGAAGATAATTTCCATGCTTTTGGCTAT CTGGGGTTTTGCTTCATATATCTATCAGAATTATATTGATGATTTAAAGACAAGACGTGCGCAAGCTGTTGCTTCTAAGT CACACGATGATTCTTCATGTTGAGAATATTCAAATTGGTAACAGTCAATAAATGTGTTAGCTCAAACTACCAATTTTCTT TTTGGCTTTAAATCCTTCATTTAGCATCTGCTAGTGTTAGGTTTTATTTCTCTTTCAGGCCTAAAGAAATAGTGAGCTAG TTAGGCTATGAGCTTCTTTGCCACTTTGGATATTGAATTGTATATCGTTCAATGAATGAAAAAGGTTGTTGGTGTCTCAG AATGGCTTAAATTATCTGCTCGTTTCATTCCAAATATTTCAATAGCTTTTGTGATAAATTGAATAGTCTCTGGTGATTAA TGGAAGTCTTGGGATTATATAGTCATTAGTTTTTCTTTGCTTTTATCTTCTTTTAATCTTCATTTATTCTGGCGCATGTA TAAATTTTTTTAAAGCTGTCTTCAAATCATTGATTGCTAAATCATTATAAATGAATAAATATTATAGTGGGTATTTATGA AGAGTTTTCTTTATAGTGTCAATTTATTATATATTATTAGAAGATTGTATGAACAATTTTGCTGACCAGCTGTTAAAACT TAGGTAGTGTTTAGTCAACAAGTTAGGACAAAACAAACATAGATTCTGTTCTGTTCATCAAGTTAGATTTTGTTCTGTTC TATTCCCTTGCCAAACACTTCATTTAAGCTATTCTTATTTTCTTTTGGGATCCATCTTTCTTTCCTGTTCTAGAAAATCA TGTATAAGGATGTTAATAATTGCTTCTGTCAGTTATTACAGTATTTATAAGGCTATTAGTACTCAAACTGTAAAATATTT GTTGGACCTTAGTGTTTTTAAACATGGATCGAATTCAATAAATATCATTCAACAGGAAATAGGTATCGAATCTTAATTTC ATTTCCTTATGACTTATTTTTCTTCTTCCAGCATGATATTAACAGGTTATAAGTAAACTATTATTTGCAGCCGCCCTATT TGTGGTTCATGATTGAGAACATGTTTAAAGGAACATTCTTTGTGTGTTTTTCGACACCAATTTGGTGTATGGTTAATGGA ATTTCATTCCAATCTAGAAGAAATGTTATTTTTACTTTTTTGTTTTGAAGTGCATATGAACGCCCATTTATACTTATACA AATAGATAGCTGAACACACCCTTACTTTTACAGCTGAACATGCGTTCAGCAGAGGAGAGGTGTGAATGTGTGATATAGTG CTGGAGAGAGTAAGAATAAAATGAAATATTGTTGAAGTAGTGATCCACATCTTCTACTTGGGTAGCTTTTTTACAATGAG GGCCATTTAAAGCTTCTTAAATGAAGGTCGTTTTTGAATGAGTAAGCAAGATCTTAGGAAGTGAGGTAGCATGGATGCAG ACATGCAGTGATAGGGTAACAATGTTTTTTTCAGTGTAACAATGTTTTTTTCAGGACCAGTTGTGTCAAGAAGTAAGGGA GAAGTAGACATGGGAGATGGTGCATGTTGCTCAGCTCATAATCATAAGCACTATTTGTTTGTTGATCAGGTGAACTTATA GCAGAAGAGAAAGTCATAAAGGAAGTGGGAATTGCCAAATTGGTAACCACATTCACATATTTATGATTAGAACAAAGAAG TTGTTGAACCGCAGGACTATGATAAACTTAAAGTGTTTTTGTTCAGTTTTGCAGTGGAAAGTTTCATAATCACTTATGGG GAGAAACTACAAAGTGTAGCTTCTGAATTTACTGTAACTTTGAATTGTGTGCGACACCATTCCAAACGTACTCATTATAA TGACATTTTCTGAAACTTGTAGTATGCCATCTGGTGCAAAGGACCTGTATTTTTGTGATGGAATCATAGCCTGGAATGTA CTCTCAGTGAATCTATTATCTATATTGCCATTTGTAACTGTTGTAGGGCCTAGAAGTAGCCAAGCACCACCAAATATGCA TTGGGAGAGGACTAGTTTGGGGGTGGGTAAAAGTTTTGTATAAGGTATAAGATTGGAAATTGCTGAAGATGGAAATCTAT TTAAAATGTAAGTAACTGTTATGAAAGCTTCATCCCAGAAATTTTAAGAGTCAAGAAAGCTTTGTAGTGTTTTTGTTTTC TCTAAATGGTGCCATGTTGGGGCAGATTTGTCTTTAGTGATTGCCATTAGATTTGAGAGAGGGGTTCAAAATTTGTCGCC TTTGATCTTGCTTTCTATATGGAGTTCAACCATGTCCTTAAATTCAATGAAAGCATATTTAGTGAAATAGATTTGTGTTT TTCATGTTTTCACAAAGATATCACATTGAATAGAATATGCGTATAAACAGCTGATATTATAAGTGAAACCATTAGAAGCC ATTCTGGGTGTTCAATGCAAATTATGGTTGATGCTATTGATAGTAATACATGAGACTTTCTGTAATAGTTAGCGTGATCG AATTACATGGCACTTTTATCAAGCAATGGAATCTTACAAGTATTTAGAAAGTGCTCTAGAGTTGCAGATGCATGGTGACC TACTACCTGTTTGGAAGCAAACCAAAGAGTACTTATTAAAGTTAATTTGATGCATTTTCTAGTAGACTCCAATAAGCATG TATCCAAAAAGGCTCCTAGTCTGCAAAGCCAAAGGGAGAACACTGCAAATAAGAATTGTAAAAGATATGTAAAATTTCAT GCTAACACTTTATTCACAGAATTTATAAATTGCTGCAGAAAATGAGAGTTTGAGCTAAGAAGTAAGAATGCACATATTGA AGATGAAATTGATAGAAGTAGTACCAGTCATCTGGTATTGCTGTGATTTGACAAAATAATGGAGGATGAAATTCAAAATA CACCAAATTGTCTTTATGTGCTTCTTTGTTCTTGCTTCTTATGGGAGTAATAGACACTACTTCCCAACAACCTAGAGATG AAGCATAAAGTTAATTAATGAGGTTGTTAATGCCCTGTATGAAGTGGCTTGAACATGGCCTTCATGTTCTTGAGGATAGA TGTAACTGCAGCACTGCTATATGCTACAAAGAAAAATGCAAGAAATGCTTGACGTGGCAAAACTAACTGTCTTATTTGGC AGAAATCATGAAGGGGAGTGAGCTTAACTTCCACTTCTTGGGTATCATATCGTAACTTATAACATTTTTTCTAGTAGTGT ACTCCATTGAAGAGGAGTTTCAAACTCCAGATACCATGAAAGGAATGGGTAATGAATAACAATAGTAAATCAGAAATAGC AGAGTAGGGTAGATAAATCTGAATTGAAAAATGAATTGATAGATGAGTTTGGTGACTATCTCTTAACACTTAATGCTTCT TCAATAAACCTTAACAACTATGCTAGCTCTGCTGGATGGATGTAGAACTGTTTACCTGAGATAACCTTCAATCTACTCTT GTCTTCCACATACGAAGGAATATGCATAAACAAGTCATGTAGCCACACTACTCATTTCAACAACCACATCCTCTTCTGAA CCAAGTGCCCAAATGGTTTAAGTGGTTGAAGGTATAATATGAATAGTTTTATATTATTTTTCAATCATACCCTTTCAGGG AAGAGTTTATTGCAGTTTAAACTTAGGTAATTCATAGACTAATACATTATTCCGAAATTTAAC 

CDS sequence (LotjaGi1g1v0489300.1) extracted from Lotus japonicus Gifu v1.2 CDS.

ATGACGGATAATGAAGAACCGATGATCTTAGCTGGACCAAGTTCTGAATTACCATTTGATAAGTATAAGCGTTGGCAGTG GTGGTTTATGGTGGCACTCAGCATAGCCTTTCTTATTATAGGCCAATCCGCTGCGGTTATCCTCGGAAGATTTTATTATG ACCAGGGTGGAAATAGTAAATGGATAGCTACTTTAGTCCAAACTGCTGCCTTCCCAATCCTGTTCATTCCATTCTTTGCA ATTCCTTCATCTAGCGAGGCTTCAACTTCTTCGGCTCCGCCTTCCTTCAAAGTTATTGTTTTGATATATTTTGTTCTGGG AGTCCTAATTGCTGCTGACAATATGATGTACTCTACTGGACTCTTATACCTCTCTGCTTCTACTTATTCACTGATTTGTG CATCCCAGTTAGCTTTTAATGCGGTTTTCTCCTATTTCATCAATTCTCAAAAGTTCACCGCTTTGATTATAAACTCGACA GTGGTTCTCACTTTTTCTGCTTCCCTCCTTGCTGTTAATGAAGACTCGGATAAACCAGATGGTTTATCCCAGGGTAAATA CATTGTTGGTTTCCTTGTTACCCTTGGAGCTTCTGCACTTTACTCTCTTATACTTTCCCTAATGCAACTGTCCTTTGATA AGGTTCTGAAAAAGGAAACATTTTCTGTTGTTTTGGAAATGCAAATATACACATCGCTCGTTGCCACTTGTGCTTCCACC ATAGGCCTCTTTGCGAGTGGGGAATGGCACAGTTTGCATGGAGAAATGGAGGGTTTTAAGAAGGGAGAAGTTGCTTACGT GTTGACTTTGGTTTGGACTGCGGTGGCATGGCAGGTTTGTTCTGTTGGTGTTGTTGGCTTGATTTTCCTAGTGTCTTCTC TCTACTCCAATGTTATCAGTACTGTCTCTTTGGCAGTAACTCCTATTGCTTCTGTTATTGTTTTTCATGATAAGATGAAT GGGGTGAAGATAATTTCCATGCTTTTGGCTATCTGGGGTTTTGCTTCATATATCTATCAGAATTATATTGATGATTTAAA GACAAGACGTGCGCAAGCTGTTGCTTCTAAGTCACACGATGATTCTTCATGTTGA 

Protein sequence (LotjaGi1g1v0489300.1) extracted from Lotus japonicus Gifu v1.2 Proteins.

MTDNEEPMILAGPSSELPFDKYKRWQWWFMVALSIAFLIIGQSAAVILGRFYYDQGGNSKWIATLVQTAAFPILFIPFFA IPSSSEASTSSAPPSFKVIVLIYFVLGVLIAADNMMYSTGLLYLSASTYSLICASQLAFNAVFSYFINSQKFTALIINST VVLTFSASLLAVNEDSDKPDGLSQGKYIVGFLVTLGASALYSLILSLMQLSFDKVLKKETFSVVLEMQIYTSLVATCAST IGLFASGEWHSLHGEMEGFKKGEVAYVLTLVWTAVAWQVCSVGVVGLIFLVSSLYSNVISTVSLAVTPIASVIVFHDKMN GVKIISMLLAIWGFASYIYQNYIDDLKTRRAQAVASKSHDDSSC 

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
Phobius 1 26 26 -
PANTHER 16 359 344 1.1E-189
PANTHER 16 359 344 1.1E-189
Phobius 27 49 23 -
TMHMM 29 51 23 -
Pfam 30 346 317 4.8E-130
Phobius 50 60 11 -
Phobius 61 82 22 -
TMHMM 61 83 23 -
Phobius 83 93 11 -
Phobius 94 112 19 -
TMHMM 96 115 20 -
Phobius 113 120 8 -
Phobius 121 146 26 -
TMHMM 125 147 23 -
Phobius 147 151 5 -
Phobius 152 173 22 -
TMHMM 154 173 20 -
Phobius 174 184 11 -
Phobius 185 207 23 -
TMHMM 188 210 23 -
Phobius 208 226 19 -
TMHMM 223 245 23 -
Phobius 227 245 19 -
Phobius 246 265 20 -
TMHMM 265 287 23 -
Phobius 266 289 24 -
Phobius 290 294 5 -
TMHMM 294 316 23 -
Phobius 295 315 21 -
Phobius 316 321 6 -
TMHMM 321 343 23 -
Phobius 322 339 18 -
Phobius 340 364 25 -

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 Purine nucleoside transmembrane transporter activity Enables the transfer of a purine nucleoside, a purine base covalently bonded to a ribose or deoxyribose sugar, from one side of a membrane to the other.
Cellular component Integral component of membrane The component of a membrane consisting of the gene products and protein complexes having at least some part of their peptide sequence embedded in the hydrophobic region of the membrane.

Expression data

Expression pattern

Expression pattern of LotjaGi1g1v0489300.1, 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…