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Field | Value |
---|---|
Gene ID | LotjaGi4g1v0016600 |
Transcript ID | LotjaGi4g1v0016600.5 |
Related isoforms 5 | |
Lotus japonicus genome version | Gifu v1.2 |
Description | Peptide transporter; TAIR: AT2G02040.1 peptide transporter 2; Swiss-Prot: sp|P46032|PTR2_ARATH Protein NRT1/ PTR FAMILY 8.3; TrEMBL-Plants: tr|A0A1J7HNZ3|A0A1J7HNZ3_LUPAN Uncharacterized protein; Found in the gene: LotjaGi4g1v0016600 |
Working Lj name | n.a. |
Genomic sequence (LjG1.1_chr4:2132928..2143675) extracted from Lotus japonicus Gifu genome v1.2.
ATTGGGAAGAAACATAAGAACTCCTTGTCTCTCTCTCGCTGTTACAGTGTGTACTTTGAGATTTTAGTCTTCAATAATGT CAACGACACTCGAAAATGTAAGCTTTTAGTTCAATTATCAATCTTATAGACAGTGAGACAAAATTTGCACAATTCAGCTC CACTGGTTACTTTCTTCATTTTCCTCCTCTGCATGTTTATTTACTCACTTCTGTTATCTAGCTAGGTTCCTGTTGTTAGA AATATAATGTGTCAGAGCTTTTGGGATATCAGAGTTTCTATGACTAAAGGGTTTAGAATTCGATCATTGTCGCCCCTCAT TCTTCAAACAAAAAGTTGAATTTCAACAATGGTAGTGAGCATGTGCATTATCCACGCTTGAAGCCCAAGTTGGCTCCTGC GTAGGGCGTGTTAGAAATATAATCATTCGTGTGTCATTTAACCAATAGCTTAAGCTTTTGGAGTAATTGGTTCTTGACAT GATATTATAGCTTTTATGAGTAAGTGGTCTAGAATTCGATTATTGTCCTCCATTCTAATAAAATGTTGAATTTCACCAAA TGATAGGTGAGTCTGTGCATTATCCACACTTCAAGTCCAAGTTAACTCTTGCATCATGTATCCCCAATAGCTTAAGCTTT TAGCATAATTGGTTTTTGACATTAACACCTGTGTTACTTAACCAACTTCAATTTTTGTATTATGTTATTATTTTGATTTT TTTTCAGGGTGATGATAGTCCTCACCCGGGAGATGGATCAGTAAACATCAACGGAGAGCTTGCTGTCAAGAGGAAAACTG GGACATGGAGAGCATGCTTCTTTGTTGTAGGTGATAATCTCCTCTCTATATTTGTGTTGTGTTTTCAAGTATGAGTTTTG AGTTACACATTGTTTAAGAATTGGTCACTTGAAGACAAGATGTGACTAATTATGTATAAAGACAGATGTATTTTGAGTTT TGACACATTTTTTATGTGATAATTACAGGCACTTTCTTCTGTGAACGTTTGGCATATTTCGGGATTGCCTCTAATCTTCT TATTCATCTCACCGCAAAACTGAATATAAGCCTTGTCTCTGCTGCAAAAAACGTTAACACATTTCAGGGAACATGCTATC TTACACCTCTCATCGGATCCTTCTTAGCTGATGCTTACTGGGGAAGATATTGGACCATTGCCGTGTTCTACTCAGTCTAT CTCATTGTAAGCTCAATTCAAACTAAATAATCTGTGATTTTTCGTTCATTCATGTCCAAAATTTCTATATTCTGTTTGGA AGCCCTTGTTTTGAATTTGAGTTCTGTAATTCAGTCAACCATTTGTTATCTGCATTAAATAGGGTTTTAAATTGGGGTCG CAGTTGCCGCTGCGTTGCAGAATTGTGGATAAAAGTGGGTTGATGCGGCTGCAATTGCAGTTGCGGACCACAATTTGAAA TTGTTAATTTATCTCTGCCATTTTATATAGATATTGGGCGTGTTAGGCTAAATTCCTCTATTATGCGTTTCTGGTATTAT AAGCTAATTTGAGAAAATTATTAAAGTATGCTGAATATAGGTAACAGGTAAGCTAAGCTTGTTATTCATAAGCTAATCTG AACGACTTATGAAAATAAGCTCAAAATAGCTTACAGATAGGCCATAACAATTTACATAAGCTCTTCTAAATACTTGTATA AGCGTTTATGCTATAAGATTAGCTCAATTAAGCACTTCTAAACGGGGCCATTGTGTTTTTAGCTAATAATTGATTTGTAC AGGGAATCTGCATATTGATTCTTTCAGCATCTATTCCTGCACTGAAGCCAGTGGAGTGTGTGAATTCTGTGTGCCCACCA CCAACTGTAAATCAAAGTGTTGTGTTCTTCTTAGGACTGTATTTGATAGCACTGGGGACAGGTGGGGTCAAGCCATGTAT TTGGCCAATTGGGGCAGATCAGTTTGATGATACAGATCGTAAGGAAAAAGCAAGTAAAGGATCCTTCTTTAACTGGAATT ATTTCACTAGTAACATTGGTGCACTTATAGCAGTCACTGCATTGGTATGGATTGAAGAAAATGTTGGATGGGGCCTCGGA TATGGCATTGCTGCATCATTTATTGGTATTGCAATCGTTGTTTTCTTTCTCGGTACACCTTTTTATAGGCTTCAAAGGCC AGGGGGAAGTCCTCTTACAAGAATATGTCAGGTGGTTTCTGCTACTTTGCGTAAGTGGAAAGTGGAGGTTCCTCAGGATA GTTGTATGCTCTTTGAAATAAAAGCGAGGAATTCCTCGACTGATGGAAGTTCTAGACTAGAGCATAGCGATGGATTGAGG TATCTCACAGCTTCAAACATCTTTTGATAACAAATTATACTGTCCTTGTGTTCCTCTGCTCAATTCGTAGATAGTATTGT TTGCTTGATATGTTTCCCAAAATATATGTCTCACATTGACTAGTAATGGTATTTGTTAAAAAGTCTCACATTGACTAAAG ATATCATATGACAAATATGTCCATATATGAAATAGAACAATCCTCACATCTAAGTCAGCTTTTTGGGTAGAGTTAGGCCT AAATCAAATTCTAAGAGCATTCCTATTTGAGGTGAATTTAGAAATAAATCACAACTTTGCTTTAAAGGGGATAGGAAGAA GAAAAGGGAGGTGTTGCTTCATGAAGTTGAAAACCTGTTTTGTGTTTACTTATACTGTGAATGCTTCTAGGCTTTATAAA ACTCTGATTCTTTATTTTGCTGAGGACAAAGAACAAGGCAACTAGCACTTTGAGTAAGACAAGTTGTAGGAAAAAAGGTA AATTCAATTCTCTACACTAATGCAACTATGCTAAAAAGTATTAGCCTTTACTTTTGTCCAGGTTCCTAGATAAAGCAGCA GTGCTATCAGATACAGAGAAAGAGGGTGCCGAAGTATCTAATCCATGGAAGCTTTGCACTGTAACTCAGGTGGAAGAGTT GAAGATTTTGATCCGCTTGTTTCCAATCTGGGCGACCGGAATAATCTTCTGTGCTGTGTATGCTCAAATGTCTTCAATGT TTGTCGCGCAAGGGAAGAAGATGGACACCCATCTTGGTTCTTTCAAAGTTCCGGCAGCCTCTCTTTCAACTTTCGCCATC ATCGGTGTCATTATTTGGGTTCCCATTTATGATAGAGGGATTGTTCCAATTGCAAGAAAATTCACCGGCAATGTAAAGGG CTTCTCAGAATTGCAAAGGATGGGAATTGGCTTATTTATCTCCATTATGTGCATGTCAGCTGCTGCTATAGTAGAGACCA AGAGATTACAAAAGGCAAAGGAGTATGGACTGGTTCATAAAAAAGTCCCTGTACCACTAAGTATATCATGGCAAATACCT CAATATTTCTTGCTTGGTGCTGCAGAGGTGTTCACCTTTGTTGGACAACATGAATTTTTCTATGAGGAAGCGCCGCCTTC GATGCGTAGTGTCTGCAGCGCATTGGCACTTCTAACAAATTCATTGGGGAACTACCTGAGCACTTTGATTCTTACTATTG TTGGTCACATCACAAGAAAATATGGAAATCATGGATGGATAACAAATAATTTGAATGAGGGCCATCTAGATTACTTTTTC TGGATGCTGGCTGGTCTCAGTTTCTTAAACATGTTGGTTTATATTGTCTGTGCTATACGGTACAAGAAACAAAAGGTTTA TCACATGAGTGACTCACCATAAGTGACCCACTCCAAGTAAAAATTCTTGATTATTTGATTGGTTTGTTTCCAGCAGTTAC AACATTCATCATTGTTAGAAGCTCCACCTCTGCATCAAGGTCACAGACTCAGGGTTAATGATAGCAACTCAGCCCAAATG ATCTTGGTCTAGACTAGAAGCTACTGCTACTGCTGGTTAGGCGCGAGCGAGACTGGAGTGATTGTATCCATTATCATGTC ACATTATCTTATATTTCATATATATCCTGATGTTGATTCGGTTATTTTGCTGTTTTGATGTTCTGCTATCTTTTGTATCA GAAATTGTTGCATTGTGAGTGTATGATTGGTTATATATGATAATTGAAATGTAAGAAAAGGCAGGCAGAAACTCATTTCA CAAACTCTGATTCTCTCTCTCATTTCTTGAGGTTCCCCTGACCTAAAATTGTTGCAGGACTTTGTCTCTATGTGTGAGAC TCAATAGAAATGGATTAATCTATTTTTTCCTGTTGTAGATTATAAGTATACTCTTACAAAAAGAGTTGCATCTTTTAGTC TTCTGCGTCATAATTCTCGGAATGTTGTTGGAAAAAATTTATCTCACTTTAAAGAAATTAGCGGGAGTTTGAATCTATGA CTCATCAGGTACAAAACCTTATCATATACTCTACTAGACCAACCTCTTAAAATGTAGCAAAAGCTTTTAATTTCATCTTT AAATCTCAGTTGATCATAAATTCATAATTCATAAGGGCTATCTAACTTAACCATCTACCTATAAGTCCAAATAAGATAAG TGGGTGGCGTTTGGGGAAGGTTGAAACGTAATAGATTGTTTGCTTTCCTAGCTGATATTTGTCTGCTTGCTTTTATTCCA CTTGCAAAAAAATAGTTTAAAAATTGAATAGAAAATTAATTTAATTTAAATCATTTTTTAAAGTATAAATGTAAATATAT TTGTTCACAAATATATATATATTAAAATTACTTTTGAATTCCACTTGAAATAATTAAACATTAATAGTTAAATTACTCAT GATTTTGTAAACGAGTTTGATTTTAATACTTCGACGAAAAATTAACGTGTAGTGTCAGTCAAAAATAGCTAGTAAATATA AAAATAATTGTCACTAAACATTAATTTTTCGCATAGAAATTAAAATTAAACTCACTTACAAAATCAGGGGCTAATTTCAC CATTAACTTAATAATTAATTATTTTAAAAGCTATTAGAAATAACTAAAAGAAATAATTAGATTGGATGTGGCAGTAATGA AAACAGTGGCGGTGATGATAAAGCAAGATCCCATGTTCAAATTTTAGGATGAAACAAATCTCCAGTAAAGGAGTTTGCCC ACCGTAATGTAGTTCTTTCCGACTCGAATCTCGAATAGTATCCGCTGTTATGAAAAATAGGTGTAAGCAGAAATAAAATA AAATAAGTATTCGAAGTGTAAGAAAAAAAATGAATTATTAAAGTAAAAGAGAGTTAAATTAATTAACAAATCTAATGAAA AACCGTTGAACGTAATGTAAAGTCAGCTGCTTTCACGTACTCTGAAGGAAGGAAGTGTCTGTTGTTGGTTGGAAGTACTT TTCTCGATAATAATAGTTGTTCTGTCCGCACTACAAGATATTTGAATATTTCTTATTCGTTAACTTTCTCCATCCTCCAC AAATTGCAACACTTTTTCTAAGTTCTAACTCTCACTCTCACTCTCACTCATAGTCATTCATATACACATCAAATCAGAAT TGAAGGAAGCAGAGAAAGAAGGAGCAGCTAGCTAGAGGCAACAAGAAGATCAATGGGTTCTTCTGATAACGAGCTTCTGC TTCAGGAACAGCGTCTTCTTCATCAGGTGCGTGCTCCTTCCTCAACCTCTATTAAATTTCTCCATAAACGTGTTATCTTC TTTTCTTAGCTAAAAAAAATCAATCACCTTCTGATGTTGATGACTTACTCAAGTTTTAATTTAGTTTTCGCTCCTAGTTC AGCTAAAAAGTAATGTTACTTGATTTGGATCAGAATAATATATCACTTACTACTCAAGTTTTTCCCATTGTTGTTGAGGC TGTGAATTAACAGAGGGGAGTGGGGGACAAGGTAAACCAGTCATCATGATGATAAGGAATAAATGGAAATTATATTAATA AATGAGGGATGAAAACTGAGATATTTTTATTTGGGTGAGCATAAGGTTCACAATAATGACTAATTGCATTAAGCAGTAAA CGGCGGACTATAAAAGAAGATATTTTATAAATAAAAAATTTAATAGCACTAAAAATACATTTAACCCTAAACATTTGTGT TGTTGATAAGTCTCACATTTATTAGATATTTGACCAAGATAGTACTTCAGAAAACAATTTACAAGCTAGTTTTTTGGTAA AGTTAGTACCGGCTCAAATTCTAAGATGGTATCAAAGTATATCATAGTTTATTGGAGACCACCCATATATGAGTCATAGA CAGATGTTCATTCATGCAAATCTCAGGCTCTAGCATTGACTAGAGATATGACCAAGATATAGTAGAACAATCCTCACCTT TTGGTGTATAGCTAGGTCTCTCAAATTCTAAGATGTGTGAATCAAATGAGATGACTAGCTAAAATAATCTTTTCATTAGA GTTTTGAATTACTTGCTTTATGCAAATTATGAGCAAAGGTGGGTTAATGCGGTCGCAATTGTGGTTGCTATGCTGTTACA AGGACTCGAAAACCCCTTAACGTTGCAGCTGCAATTACGATTGCCGAGGGCACTGCTTGTCTTATGGAATCTCCACTCTC CCTTCCCTTTTTCATTATTATTCTTTCCAATAACTTTGCATGAATTCTTTTCTCAAACAATTGGATTCCATTTGGTAAAT GGGGGTAAAGAGAATATTGCACCCACAAGTAGTAGTGGAATTGATTTCCTTCTACTATTACCGGCTTGTAATTTGTAAAT GTCAAACGAATCTAATTCAAATCGTTTTCATGCCCATCTATCAGAATTTTCCAACTAGCTTCAAATATTCCACAACACAT TGTGGTTTATCATGTTTGACAATTATATAACCTTCTTATTTTAAAGATATAACTGTGTATTATAATGCATTTCAATTAGT TCAAAACTTACATAATTACTTCATAGACTTATTTGACCACAATAGAAATGATTGGTAAGTGGTCATCTTAATAAATATTA AAGTCTATTGGCCTTTCATTTTGTTCTTGTTTCTAAAAGTCTATAAAAGGAGAACATGTACTGGTTTTGTACATCAGATT GAATTGAGGAGAAACATAATAGCTCTTCCACTCTCTCAGCAGGGTGTGTATGTGAGATAAGTTTTCAATGTCAACTAGAC ACGACCATGTAAGATATTAACTCAAATAATCTTGTAGACAGTGTGACAAAATTTGTACAATTCAGCTCCAGTGGTTACTT TCCACCGCTTCTCTTTATTTTCCTCCTCTACAGATTTATTTTCAATTTTTCATTCACTTCAGTTATCTTGGTTTCTTTGC TACTTTTAGCATGTTTGTATCAGCTTATTTTCTCTCAGAATCAATCATGGCTCTCCCCATGATTGATTTAGCCTTTAGAA TCAGCTGTAGAAGGATTTCCACCCATGTTATTCACCAACTTCAATTTTTTATTATGTTACTTTAATTTTTGTTTTTTGCA GCCTGATGATAATCCTCACCCAGGAGATGGGTCAGTTAACATCAAGGGAGAGCTTGCTGTCAAGAGGGAATCTGGGACGT GGAAAGCATGCCCCTTTATTCTAGGTGATCTCCTCCTGCTATCTATGTTGCTGTCTGGGGATGCATCCAACAGTGTATTT TGAGTTTTGACATATTTTTATCTGATACAGGCAGTTTCTTTTGTGAGCGTTTGGCGTATTACGGCATTGCCACTAATCTT GTTATTTATCTCACCACAAAACTAAATGAAGGGACTGTCTCAGCTGCAAAAAATGTTAACACATTTCACGGAACATGCTA TCTTACACCTCTCATCGGATCCTTCTTAGCTGATGCTTATTGGGGAAGATATTGGACCATTACCGTGTTCTACGCAGTCT ATCTCATTGTAAGCTCAATTCTAACTATGATCTCTGATTTTCTTTCATTCATGTTGAAATGGAGTTGGTAGGCGGTAGCA TATGGTTGCACTTTACTCGCAAAGTTTTAGCTGCTACTCATGATCCTGAAATTTTTCTTCTTCTACATTTGTTGTGCCTT TGATATCTAAAACTCTGCCTACTAAAGTTTTCTTTGCTAGCCTCTAGACATGAGTTGATAATGGTTTATTCACCTGAAAT GGATCAAGTTGAGGTCAAATTTCCCATACTTTGTTTGAAAAACCTTGTTTAAGTTCTGGAACTCAGTCTACCACTTGTTA TGTGCATCAATTTTTTATTTGTGATATTGTATTTTTAGCTGATAATTAGTTTGAACAGGGAATGTGCATATTGATTCTTT CAGCAACCATTCCTGCATTGAAGCCAGCGGAATGTGTGAATTCTGTCTGCACAGCAACTTTAGCTCAAAGTGTTGTATTC TTCTTAGGACTGTATTCTATTGCACTAGGGACTGGTGGGATCAAGCCATGTATTTGGCCCATTGGAGCAGATCAGTTCGA TGATACAGATAATAAGGAAAGAGCAAGTAAAGGATCCTTCTTTAATTGGAATTATTTCACTAGTAACATTGGTGCACTTA TAGGAGTCAGTGCATTGGTTTGGATTGAAGAAAATATTGGATGGGGCCTCGGATACGGCATTGCTACATCGTCTATCGGT ATCGGAATGATAGTTTTCTTTCTCGGTACACCCTTATATAGACTTCAAAAGCCAGGGGGCAGTCCTCTTACAAGAATATG CCAAGTGGTTGCTGCGGCTTTACGTAAGTGGAAACTGGAGGTTCCCCAGGACAGTTTTCTCCTCTTTGAGGTAGCGGAGA CGAATTCCTCCATTAAAGGAAGTCCTAAACTAGAGCATAGCGATGGATTGAGGTATCTCAAGCCTTCAAACATCTATTCA TAATAAGTTACACTGTCCTTGTGTTTCTAATGCTCAATATATAGATAGTGATAGTATTGTTGCTTAATATGTTTCCCAAA ATATATGTCAAGTGACAAACTCCTCTGCCATTTTAAAATGTAGAGGAACTATTCATGGTATTCCTATTTGAGGTGAATCT AGAAATGAATCAGAAATTTGCTTTAAAGGGAAAATGACAGGGAAAGAGGAAAAGAAATGGTGCTTCATGAAGTTGCAACT TGCAAACCTTCAAGGTTTTGGAATCCTCTGATTCTTTATTTTGCTGAGGACAAAGACCTAGGCAACCAGCACAAAGTCAA TTTGAATTTATTGAGTCTCTTAGAATTCGGGTTCTGCCAAACTCTACCCCAAAAGCTAGGTTGGAGGTGATGGTTGCTCT ACTATTTATAAACACTTATATGGCCATATCTCTAGTCAATGTGGGAGTTTGAGCACACTCCCTCACGTCCAGGGGCTAAA TATCTGGAGCATGAAATATCCAAGAATGAACATCAGCGGGTGTCCTATTTGTAGGTGATCCACTTAATGGATCTAGAATA GACTCCGATATCATCTTAGAATTAGGGTTGGGCCTAACTCTATCCCAAAATCCAGATTAGAGGGGAGGGTTATTCTACCC TTTATAAACACTTATTTGGCCATATATCTAGTCTAGCCCATGTGAGACTTCTCAACAGAGTCAAACAAGTTTTTATTAGA AATTACAGAGTTAAAAGTTCATTCCCCATTCCTACTTAAATCCGTAGCATTTGATGGAAATAAAAATATGCTTATCAATT AAATTTTCTAATTTGGCAAAAGAACAACTTTGAGGGTTTTCATTGGTCTTGTTCCATTAATTTCTACAATCTTATATTTC TTCCGGTATAATAATTATCCTTGCTGGTGTTCTAGATTCAGTATGTTGTAGGAAAAAATGTAAATTCAATTCTCTACAGT AATAGAATTATGTTAAAAAGTATTAGCCTTTACTTTTGTCCAGGTTCCTAGATAAAGCAGCAGTGCTATCAGATGCAGAG AAAGAGGGTGCCTCCCAAGTATCCAATCCATGGAGACTTTGCACGGTAACACAGGTGGAAGAGTTGAAGATTTTGATCCG CTTGTTTCCAATCTGGGCAACAGGAATCATCTTCTGTGCTGTTTATGCTCAAATGTCGTCATTGTTTGTCGCGCAAGGGA AGAGGATGGACAAAAATCTTGGTTCTTTCAAAATTCCTGCAGCCTCTCTTTCAACTTTTGCATTAATTGGTGTCATTATT TGGGTTCCCATTTATGATAGGGGGATTGTTCCAATTGCCAAGAAATTCACTGGCAATGTAAAGGGCTTCTCAGACTTGCA AAGGATGGGAATTGGCCTGTTTCTCTCCATTGTTTGCATGTCAGCTGCTGCTATATTAGAGAGCAAGAGATTACAAATTG CAAAAGAGTTTGGATTGGTTCATAAAAATGTTCCTGTACCACTAAGTATATTATGGCAGATACCTCAATATTTCTTGCTT GGTGCTGCACAGGTATTCACCTTTGTTGGGCAGCATGAATTTTTCTATGAGCAAGCACCAACCTCCATGCGTAGTTTCTG CAGCGCATTGGCACTTCTAACAAATTCACTGGGGAATTACCTGAGCACTTTGATTCTTATTATTGTTGCTTTCCTCACAA CAGAAGATGGAAGTTCTGGATGGATAACAGATAATTTGAATGAGGGTCATCTTGACTACTTCTTTTGGCTGCTAGCTGGA CTCAGTTTCTTAAACATGTTGGTGTACATTGTCTGTGCTAGACGGTACAAAACACAAAAGAAGGTTTATCACATGAGTAT TTCTTAAAGACACTATAAGTGACTCGAAGCATCATATCCATAGTTAGCACCTTCATCATTGTTAGAAGCTCCACCTTTGT ATCAATGTCTGTTGATACTTGATATCATTATAATCATCAATTCTCACTATTGTCACTATCTTCAATGTTGTTACTATCAT TGTGTTGATACTAAAATATAAAAATGAC
CDS sequence (LotjaGi4g1v0016600.5) extracted from Lotus japonicus Gifu v1.2 CDS.
ATGTCAACGACACTCGAAAATGGTGATGATAGTCCTCACCCGGGAGATGGATCAGTAAACATCAACGGAGAGCTTGCTGT CAAGAGGAAAACTGGGACATGGAGAGCATGCTTCTTTGTTGTAGGCACTTTCTTCTGTGAACGTTTGGCATATTTCGGGA TTGCCTCTAATCTTCTTATTCATCTCACCGCAAAACTGAATATAAGCCTTGTCTCTGCTGCAAAAAACGTTAACACATTT CAGGGAACATGCTATCTTACACCTCTCATCGGATCCTTCTTAGCTGATGCTTACTGGGGAAGATATTGGACCATTGCCGT GTTCTACTCAGTCTATCTCATTGGAATCTGCATATTGATTCTTTCAGCATCTATTCCTGCACTGAAGCCAGTGGAGTGTG TGAATTCTGTGTGCCCACCACCAACTGTAAATCAAAGTGTTGTGTTCTTCTTAGGACTGTATTTGATAGCACTGGGGACA GGTGGGGTCAAGCCATGTATTTGGCCAATTGGGGCAGATCAGTTTGATGATACAGATCGTAAGGAAAAAGCAAGTAAAGG ATCCTTCTTTAACTGGAATTATTTCACTAGTAACATTGGTGCACTTATAGCAGTCACTGCATTGGTATGGATTGAAGAAA ATGTTGGATGGGGCCTCGGATATGGCATTGCTGCATCATTTATTGGTATTGCAATCGTTGTTTTCTTTCTCGGTACACCT TTTTATAGGCTTCAAAGGCCAGGGGGAAGTCCTCTTACAAGAATATGTCAGGTGGTTTCTGCTACTTTGCGTAAGTGGAA AGTGGAGGTTCCTCAGGATAGTTGTATGCTCTTTGAAATAAAAGCGAGGAATTCCTCGACTGATGGAAGTTCTAGACTAG AGCATAGCGATGGATTGAGGTTCCTAGATAAAGCAGCAGTGCTATCAGATGCAGAGAAAGAGGGTGCCTCCCAAGTATCC AATCCATGGAGACTTTGCACGGTAACACAGGTGGAAGAGTTGAAGATTTTGATCCGCTTGTTTCCAATCTGGGCAACAGG AATCATCTTCTGTGCTGTTTATGCTCAAATGTCGTCATTGTTTGTCGCGCAAGGGAAGAGGATGGACAAAAATCTTGGTT CTTTCAAAATTCCTGCAGCCTCTCTTTCAACTTTTGCATTAATTGGTGTCATTATTTGGGTTCCCATTTATGATAGGGGG ATTGTTCCAATTGCCAAGAAATTCACTGGCAATGTAAAGGGCTTCTCAGACTTGCAAAGGATGGGAATTGGCCTGTTTCT CTCCATTGTTTGCATGTCAGCTGCTGCTATATTAGAGAGCAAGAGATTACAAATTGCAAAAGAGTTTGGATTGGTTCATA AAAATGTTCCTGTACCACTAAGTATATTATGGCAGATACCTCAATATTTCTTGCTTGGTGCTGCACAGGTATTCACCTTT GTTGGGCAGCATGAATTTTTCTATGAGCAAGCACCAACCTCCATGCGTAGTTTCTGCAGCGCATTGGCACTTCTAACAAA TTCACTGGGGAATTACCTGAGCACTTTGATTCTTATTATTGTTGCTTTCCTCACAACAGAAGATGGAAGTTCTGGATGGA TAACAGATAATTTGAATGAGGGTCATCTTGACTACTTCTTTTGGCTGCTAGCTGGACTCAGTTTCTTAAACATGTTGGTG TACATTGTCTGTGCTAGACGGTACAAAACACAAAAGAAGGTTTATCACATGAGTATTTCTTAA
Protein sequence (LotjaGi4g1v0016600.5) extracted from Lotus japonicus Gifu v1.2 Proteins.
MSTTLENGDDSPHPGDGSVNINGELAVKRKTGTWRACFFVVGTFFCERLAYFGIASNLLIHLTAKLNISLVSAAKNVNTF QGTCYLTPLIGSFLADAYWGRYWTIAVFYSVYLIGICILILSASIPALKPVECVNSVCPPPTVNQSVVFFLGLYLIALGT GGVKPCIWPIGADQFDDTDRKEKASKGSFFNWNYFTSNIGALIAVTALVWIEENVGWGLGYGIAASFIGIAIVVFFLGTP FYRLQRPGGSPLTRICQVVSATLRKWKVEVPQDSCMLFEIKARNSSTDGSSRLEHSDGLRFLDKAAVLSDAEKEGASQVS NPWRLCTVTQVEELKILIRLFPIWATGIIFCAVYAQMSSLFVAQGKRMDKNLGSFKIPAASLSTFALIGVIIWVPIYDRG IVPIAKKFTGNVKGFSDLQRMGIGLFLSIVCMSAAAILESKRLQIAKEFGLVHKNVPVPLSILWQIPQYFLLGAAQVFTF VGQHEFFYEQAPTSMRSFCSALALLTNSLGNYLSTLILIIVAFLTTEDGSSGWITDNLNEGHLDYFFWLLAGLSFLNMLV YIVCARRYKTQKKVYHMSIS
Data for domain prediction are obtained with InterProScan, and merged with InterPro data obtained from the EB-eye REST service.
Prediction algorithm | Identifier | Start | End | Length | E-value | InterPro ID |
---|---|---|---|---|---|---|
Phobius | 1 | 35 | 35 | - | – | |
PANTHER | 6 | 573 | 568 | 3.4E-258 | – | |
PANTHER | 6 | 573 | 568 | 3.4E-258 | ||
SUPERFAMILY | 26 | 571 | 546 | 1.31E-29 | ||
CDD | 34 | 569 | 536 | 0.0 | – | |
Phobius | 36 | 60 | 25 | - | – | |
TMHMM | 38 | 60 | 23 | - | – | |
Phobius | 61 | 79 | 19 | - | – | |
Phobius | 80 | 99 | 20 | - | – | |
Phobius | 100 | 105 | 6 | - | – | |
Pfam | 102 | 534 | 433 | 1.2E-119 | ||
TMHMM | 105 | 127 | 23 | - | – | |
Phobius | 106 | 128 | 23 | - | – | |
Phobius | 129 | 147 | 19 | - | – | |
TMHMM | 147 | 169 | 23 | - | – | |
Phobius | 148 | 171 | 24 | - | – | |
Phobius | 172 | 191 | 20 | - | – | |
TMHMM | 189 | 211 | 23 | - | – | |
Phobius | 192 | 211 | 20 | - | – | |
Phobius | 212 | 216 | 5 | - | – | |
TMHMM | 215 | 237 | 23 | - | – | |
Phobius | 217 | 237 | 21 | - | – | |
Phobius | 238 | 335 | 98 | - | – | |
Phobius | 336 | 357 | 22 | - | – | |
TMHMM | 340 | 362 | 23 | - | – | |
Phobius | 358 | 376 | 19 | - | – | |
Phobius | 377 | 397 | 21 | - | – | |
TMHMM | 377 | 397 | 21 | - | – | |
Phobius | 398 | 417 | 20 | - | – | |
TMHMM | 418 | 440 | 23 | - | – | |
Phobius | 418 | 438 | 21 | - | – | |
Phobius | 439 | 457 | 19 | - | – | |
Phobius | 458 | 481 | 24 | - | – | |
TMHMM | 460 | 482 | 23 | - | – | |
Phobius | 482 | 501 | 20 | - | – | |
Phobius | 502 | 525 | 24 | - | – | |
TMHMM | 503 | 525 | 23 | - | – | |
Phobius | 526 | 544 | 19 | - | – | |
Phobius | 545 | 564 | 20 | - | – | |
TMHMM | 545 | 564 | 20 | - | – | |
Phobius | 565 | 580 | 16 | - | – |
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 |
---|---|---|---|---|
Cellular component | Membrane | A lipid bilayer along with all the proteins and protein complexes embedded in it an attached to it. | ||
Molecular function | Transmembrane transporter activity | Enables the transfer of a substance, usually a specific substance or a group of related substances, from one side of a membrane to the other. | ||
Biological process | Transmembrane transport | The process in which a solute is transported across a lipid bilayer, from one side of a membrane to the other. |
Expression pattern of LotjaGi4g1v0016600.5, powered by ExpAt. For advanced configuration, data transformation and export options, view expression data in the ExpAt application.
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