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LotjaGi1g1v0206400.1

Overview

Field Value
Gene ID LotjaGi1g1v0206400
Transcript ID LotjaGi1g1v0206400.1
Related isoforms 3
Lotus japonicus genome version Gifu v1.2
Description Phospholipid-transporting ATPase; TAIR: AT1G68710.1 ATPase E1-E2 type family protein / haloacid dehalogenase-like hydrolase family protein; Swiss-Prot: sp|Q9SX33|ALA9_ARATH Putative phospholipid-transporting ATPase 9; TrEMBL-Plants: tr|V7AXH5|V7AXH5_PHAVU Phospholipid-transporting ATPase; Found in the gene: LotjaGi1g1v0206400
Working Lj name n.a.

Sequence information

Genomic sequence (LjG1.1_chr1:44913765..44922670) extracted from Lotus japonicus Gifu genome v1.2.

CAGAAAAAATATCCCATTGAAAAAAATCAAATAGACAGTTAGCAGATATTTGTTGAAGCTGTTGAATGCTTGATTTGAAC TTAACTCTTGAGCAAGGAAGACTCAAGAGTCAAGTCACTTACCATGTGGACTTGTGGAGTGTGCACGTTTATAGTCTCCT CTTTCTTCCTAACTTAACTACGAGTCAAACTGGTCGTATCAATCTAACTTCATCTTCCAAGTTCCAACCCAATGAGAGAA ATAACATTTCCCTGATGTGTCAGTTATAAATTCATCACAAAGTTTTGACTTTGAACTCTCAACACTGATGTATTTTGCTT CCATGCAGTATCTCTTTATCTTGACATGGATTTGAAGCTGTCTTTCTCTGGTTCTATCCTTTTAAGCAGGTGCTATTTTT GTTCAAGTTCAATATTTCTCACTGTAATCACCTCACTGTAATCACTTCTTTCCCGCAAAAATTTCTCTATTCTGTTGTTG TTTTTCTCCCTTTTATGGTTCCATTGCATTGGTTCAATATGCTATGTCTTTTACTTTATCTCTCTAAGTAGCTTTGGCCT CAATACCTGCAGTGACAGTGTTGGTTGTTGATTTTGGAAATCTAGGTTTGAGTCTATGCAGCTAATTATCTGAATCATAC AAGACTCTATGCTAAATGTTAAGATTTTGGAGTAAGTATTATAGCAATTTTAGAAGATGGCTGGTGGTAAAAGGAAAAGG CAACAAAACTTGAGCAGAATCCATTCATTCTCTTGTGGGAAAACTTCATTTAGAGGTGAGCACTCACTTATAGGAGGCCC TGGCTTCTCAAGGATAATCTACTGCAACGAACCAGGACTTAGTGAAGGGAGTGTTTTGAATTATGGTGACAATTATGTCA GAACTACCAAATATACACTAGCTACTTTCCTCCCAAAATCATTATTTGAGCAATTCAGGAGGGTGGCCAATTTTTACTTC CTTATCTGTGCAATCTTGTCTTTCTTCCCGGTCTCTCCTTACTCGGCCGTCAGCAATGTTGTTCCTCTTGTTGCTGTGGT TACTGCTACAATGGGAAAGGAGGCTGTTGAGGATTGGAGGCGGCGAAAGCAGGTAATGATATCTGCTTTTGATGCAAATT TCTGGTTACTTAAGATGTTGTTATGTTCTCTAAACTTCATGCAAAAGGAATTGAATTTATAGAAAGTTATGAATGTACAT ACTTTTGTTGCCCACAAAAAAAGGAAACCTAGTGCTATAAAGCTCCTGCTATGTGTGAGGTCCATGGAGGGGCCAGACCC ACTTTGTGGATCTAATATTGGCAGCCTTACCTTGCACTTTTTGCAAGAGGCTGATTCCATTGGCTTGACCGCAAAGTGAC ATGGTAGCAACCTTACCGTTGAGCCAAGGCTCACCCACATACGTTTTTGAATAATTTTTTAACACCACTTGGAAAATTCT GATGAGGGTTACTGTGCTAAGGGAATTGTGAAAGACAAACTGGCTTGTGCTCTAAACACGTATCTGACGCTATTTTTTGA ATGTCCACATCTAAGCTGAGTTTGTGAGCGTATACTGAAATTCTTTGAGAGATAATAATAGTGTTGCATTGGTGTTAGCT AACATTTCCTTTTTTAAAATCTGCACTTGTTGCTTTTTTCTTGATATTGTTGATAATTTAGGTCTGTAATATTATCTCAT GATCACATCAGGATATTGAGATGAATAATAGAAAGGTTAAATTGCATCATGGTGAAGGTGTTTTTGACTATTCTAAATGG AGAGATTTGAAAGTTGGAGACATAGTAAGGGTGGAAAAAGATGAATTTTTCCCAACTGATCTCATCTTACTTTCATCGAG CTATGACGACGCAATTTGCTATGTTGAGACTATGAATCTTGATGGCGAAACAAATCTTAAACTGAAACAAGCACTGGAAG AAACCTCCAAGTTACAAGAAGACTCTAGCTTTCAAAATTTCAAAGCTATCATCAAATGTGAAGATCCAAATGCAAATTTG TACTCTTTCATAGGAAATATGGAACATGAAGATCAGATATGTCCTCTTGCACCGCAACAGCTACTGCTTAGGGACTCAAA GTTGAGAAACACAGATTTCATATATGGTGTTGTAATTTTTACAGGACATGATACAAAGGTTATGCAGAATTCTACAGAGC CTCCTTCCAAGAGAAGCACGGTTGAGAAACGAATGGATAAGATCATCTACTTTCTTTTCTTTGTCTTATTTTCCCTTTCT TTTATTGGTTCCATTTTCTTCGGGATCGCGACAAGGGAAGACCTTGAAAATGGAGTAATGAAGAGATGGTACCTCAGACC AGATGATACCACAATTTACTATGATCCAAAGAATGCACCAGTTGCGGCAATGCTGCAATTCTTGACTGCACTTATGTTGT ATAGTTACTTGATTCCCATATCTTTGTATGTCTCCATCGAAATTGTGAAAGTTCTTCAAAGCATTTTCATCAACCAGGAT GTGCACATGTATTATGAGGAAACTGACCAGCCAGCACAAGCTCGTACCTCAAATTTGAATGAAGAACTTGGCCAAGTCGA TACTATACTTTCGGATAAAACAGGAACTTTGACTTGCAACTCTATGGAATTTATCAAGTGTTCTATTGGCGGGATCGCCT ATGGACAAGGAGTTACTGAAGTTGAGAGAGCTCTAGCAAGGAGAAAAGGATTACCTTCAGGTCAAGAGTCAACCGAAGAT GGCAATGTTGCAGAAATTTCTGAAACAAAATCATCTATCAAAGGTTTTAACTTCATGGATGAAAGGATCATGAACGGAAA CTGGGTTAAAGAACCTCATGGCGATGTAATACAGAACTTCCTGCGGTTGTTGGCAGTATGCCATACTGCAATCCCTGAAG TTGATGAAGAAACTGGTAAAGTTTCATATGAAGCAGAATCACCTGATGAGGCAGCTTTTGTAATTGCAGCCAGAGAACTT GGATTTGAGTTTTATGAAAGGAAACAGACTACTATTTCACTGCGAGAATTCAATTCCATATCAGGAAAGATAATTGAAAG GTCTGGTTTTTTATCTTGTAAATTTAAGCTTGATTTTCTATATCTTGGTATTGATCTGCAATTTGCAACTTGAGTAGTGC ATTAAAAGAATCATATAATTTCTCTTTTGCAGGTACTACGAACTTTTAAATGTATTAGAGTTTAGTAGTGCGAGAAAGCG GATGTCTGTAATTGTAAGAGATGAGAAGGGAAAACTACTACTACTTAGCAAAGGCGCTGACAGGTTTTTAATCTTGTTCA TCACTTTTAAATTCAACACTTTGAAGATTAAATTGAGTCCATTATAGACATCTTTTAAAGGAAAAATTCACTCTTCTTGT TACCTACTTTTTGGAACAAGAGGTTCATTAATTCATGAGGAAGCTATTTGATTATTTCCAGCCCCCTCTTTGTGGCGGTT AGGTGGAGTGAACTAATAGAGGAGTGACAGAAATTTTTCACTAACTACTTCCTCGTTAGATCCTTTATATGACATGGCTA GTTTCATTTGTGAAACAAATAGCCAAGTGTCTTTTACTCAAAGTTTTGAATTCCTTCTGAGTCATTGCTAAGGATTACAA GTTCATCTGAATTCTCAAACTTTGCCTTTGTTCCATGAAGTCCCTTAGCCTGTTGTCTTACTTCAATTTAAATATAGTAA TAGCTCATGGCTATCTTAAATTAACTACTTGAGTATTATTTCCATTTGATTTCAGATGTTCAAAACATTAATTTTCTTTT CTTTGTGGCTTCCAAAACAAGTGTCATGTTTGAACGACTTGCAAAGTATGGAAGGGAGTTTGAAGAGAAGACTAAGCAGC ACATCAACGAATATGCTGATGCTGGTTTGAGGACTTTGGTACTTGCATATCGTGAACTCGATGAGGAGGAGTACAATCTA TTTAATGAGGAATTCATGGAAGCCAAGAACATTGTGAGTGCTGATAGGGATCAGATTGTAGACGAAATAGCAGAAAAGAT TGAGAAGGATTTAATTCTTCTTGGCGCTACAGCAGTTGAGGACAAACTTCAACATGGGGTATGTCACAAATAGTGTTTTT CTTTGACACTAGAGAGAAACAATGGTCCTTTTGAAACGCCAGATTGAATCTGCTTGACTCATGATGGAAATGCTTTTTCA TTTTTATTTTCAACTTATGTTTTTGTACTTTGAGATTATCCATGGTCTATTCTGTCATAAAAAATTGCAGCAATTCCTTA TTTTTTTTTTATGAATCTGTTAATGTCACACAGGTGCCTGAATGCATTGACAAGCTAGCACAGGCAGGAACTAAGCTATG GGTTTTGACTGGTGATAAAATGGAAACAGCAATCAATATTGGGTAAATTTGAAGTATATCAATAGATTTGAAATCATTTA AGATAAAATTATATGATATCACTAATTTGATAATTTTCTGTGTGAGTGCAGGTTTGCATGTAGTTTACTCAGACAAGGAA TGAAGCAAATTATAATTAATTCAGACACTCCAGAAACCAAATCACTGGAGAGAGTGGAGGACCAGTCTGCTGCTGCAGAG GTAAACCCTTACTCTAATCATTTCTTTATATCATGAGAAGGTAAAAGAATAATCATTTAGAGCATAGAAAGGACATGCAA AACTTAAGTTACAACATCTCAACTCCATGCACAACACTTTTGATTGATGTCATATGCATGAGGTAGATCGGGACTCAAAA TGACAAACCTGATGCTATAAAGCTCCCGCTATGCGCGAGGTCTAGGAAGGGGCCGGATTCTCTTTGTGGATCTAATGTAG GCAGCCTTACTTTTCATTTTTGCAATAGAATGATTCTACGGCCCGAATCTGTGACAACAAAGTCACATGGTAGCAACCTT ACCATATTATTTATTATTTTGTGATCTATATTGTAATGGAGGATGATAGCATGTTAGACTACCATATAATTAAGTTGTCC TTTTCCCTTTGAACTCCGCACTATTGGATGTATGATGGAAGCTTACTGATTCTTTAGGCAATTAAGGCAAGTGTTCTTCA TCAATTAAGGGAAGGAAAGGCATTACTTGCGGCATCTGATGAAAACTCTGAGGCTTTAGCTCTGATCATTGACGGAAAAT CTTTGACTTTTGCTCTAGAAGATGATGTAAAGGACTTGTTTCTTGCGCTTGCCGTTGGTTGTGCATCTGTCATATGCTGT CGTTCATCTCCCAAGCAGAAAGCACTTGTAGGTTTTACTTCTGATTCTACAGTTAGTTTCTGTAATTGCCTTTTGTTTCT TTATAATTCAAGTTGCAGAAATTTAATCTCATCATTATTTTATCATTCTTAAACCCAGTTGTATATTCTTACTTTAAGAA AATAATAAACAACAAAATTTTGTTTTAGCTTAAGTTAATTACTAGACAATGTGGCAAAGAGACATTTACCACAAAATAAT ATGCTAATAAAGGTCAATGCAAGCCTCCTCCTATGATGATTTCAACATGTTCTGTCTCTAAAGTCTAAAGGCATTTCTAT GATAATAGTGCAGGTTACTAGACTAGTAAAGATGAAAACAGGCAGTACTACTCTAGCAATTGGTGATGGGGCAAATGATG TTGGAATGCTCCAAGAAGCAGATATTGGGATTGGTATCAGCGGTGTCGAAGGAATGCAGGTAAATCTGAAATATTCCGTT TCCAACCTTTTTTTTTTACCTTTTATTAGAAGTATAATATAAAACCATTCATGTGTCTTTACCCAATAGCTTAAACTTTC GGGATAGTTGGTTCAAAACAAGTGGTATTAGAGCTTCTATGACCAAATGGTCTAGAGTTCGATCCTTGTTGCCCCTATTA TTCTAAATTTAAGCACATATAGTAGGTGGACCTATATGCATTGTTCACGCTTTAAACCCAAGTCAGCTCTTGTGTGAGGG GCGTGTTAGAAGTATAATATAAGACCATTCATGTGCCTTCACCCAACTTTTTTGGGAGAGTTGATTCATGGCACCTTCCT ATAACAATGATCCTTAATTTTTTGTAGTCCTTTTTGGGTTGTGAATTCTTACTTATCCTTTGGTTCATTGAATTTTTAGG CTGTTATGTCAAGTGATGTTGCAATTGCCCAATTCCGCTTTCTAGAGCGTTTACTTCTTGTGCATGGACATTGGTGCTAC AGAAGAATCTCATCAATGGTAACAATCTTGTCTATAAATTAAAAATACTACATTAAGACACATTTTTCTCCCTTTAATAT ACCTCACACATAATCTGTACTTATTTCATTGCTTTAATTCCATTACAACAAATCCCATGCTGACATCAATACTTCAAAAA TAGGTTATTTTGTTAGACTAAAATTTTGTGAAACTTAAAACAGTGAACTACATAAACTCTTCTGTAATCTAGACAATTTT TTTGGGGTGACAATTACCAAAGATAAACCTCTGATTCTTCTCTTTGTTACTCTCACTTCATATTCCTTCAATTAGTTGAT CTCTTTATTATTTGGCAGATCTGCTACTTCTTTTACAAGAACATTGTTTTTGGCTTCACTCTGTTCTTCTATGAGATCTA TGCCTCATTCTCAGGGCAAGCTGCATATAATGATTGGTTCCTATCACTATATAATGTATTCTTCACTTCTCTTCCTGTAA TTGCTCTGGGAGTGTTTGACCAGGATATCTCTGCTAGATTATGTCTCAAGGTATCCCTTTAAATTCAATTCCTTGCAATG CTATTCTACTGTACTAATCAATTTTTTTTTATCTCTTGACATTTCTTTCTATATTCCTTTTTTAGTTTCCATTATTATAT CAAGAAGGAGTACAAAATGTCCTATTTAGCTGGAAAAGGATCCTTGGTTGGGCATTCAATGGAGTCTTGAGCGCTACCAT AATATTCTTCTTCTGCATAGACGCAATGGAGAATCAAGCGTTCCGCAAAGGCGGTGAAGTTGTTGGGCTGGAAGTTCTTG GCGCCACCATGTACACTTGTGTTGTGTGGGTGGTGAATTGCCAAATGGCATTATCTATCAGTTACTTCACTTACATACAA CATTTACTCATCTGGGGTGGTGTTCTTTTCTGGTATATTTTCTTCCTAGCATATGGAGCCATGGACCCAACCTTATCAAC CACTGCCTACAAGGTCTTTGTTGAAGCTTGTGCTCCTGCACCATCTTACTGGCTCATCACTTTGCTTGTGCTTGTTGCTT CCCTCTTTCCGTATTTCGTCTACGCTTCGATCCAAATGCGGTTCTTCCCAATGTTCCATCAAATGATACAGTGGATACGA AATGATGGGCAAGAAAGTGATCCAGAATATGCTAATATTGTACGACAGAGATCAATAAGACACACAACAGTTGGTTTTAC AGCTCGTTTCAAAGCATCCAAGAGTTGAGGGCTGAAAACCATTAACAAGCAATGTATATTTTTAGTTTTGTTGTGTCGAA AACTCTTAATCTGAAGATAGACATAAGTTTGTAATATGTTAGTTCTTAGGTAGAGAGGGATCTTCTTTATCAAGAGACAC ATTTTAACGAGACAAACTATTAGGTATCTGAGGCCTGGATATTTTGTCAGAAAATAATGAAAAATTTAGGTTGCTACAAG ATCAGATAAAAGTTATAGTCAATAATGTATCATTGTATATTTGTTGTAGAACAGAGGAAAAGTACGTTCATCAGAAACAA TCTTCCATGTGCTCAAATTTTACAGTGAAAAAAAAAAATTGAGAGACAAGGTGTCCTGAATGATCTCTTAGACAAGCCAT ACCAACCTGTAAAGATATATATATGTTTTACACATTTCCCGCAAATCACATAGGTTTGCATAAACTCTATCGAAGGCAAT TCATTTTTTAACACATAAGAGAACATATGTTATGATTTGTGAGGAAAAACCAAACATCCTTAATTGATTCCTTGATCATT TCATTACAATTGAGGATCATCCACATCAAATTCTCAATCATATAGCACATTTCCAACAACCAGCTAAACAGATACCCTAT AACCAAAGAAAAATGAAATTATAGTACACACTACATCATTAAAAATAAAAAAATAAAGAATATACATGTTAGTCAAAGAA TCTTCCCTCCCCTTTTCACATGCAGCCATTTTGCCATTTGGGCACAACAACAAGGAAATTAAGGAAACACGGCATGTTTG GTTTCAATTCTAGATATGGATTTTTCTTTCCAAAAGCAACTATTTTATTGCTTCAAATTGATATGGATCCCTACCACTTG TATGTTTCAAACACCTACTAATTTTAACGCGGCGTCACCACAATGCTGCATGTCCTAAGAACTCAGACGCCGCTGACCTA CCCATAACAATGGCAAACTCATTGAAGCTAATAACACCATCTCCATCTGTATCCGCCTCCGTGATCATCTCCGTGAGCTC CCTATACGTGAGAGCATGACCCATTTTCGCCATTGCTCCGGCTAACTCCGCGGCTGATATATATCCATTCCCGTCGCGAT CGAAGCACTTGAACACCCCGAGCAGCAGCTCCTGATTCAACAACGTTTCTGCACTAATGTCAGGCAAAATGGCGTCCACC AACTCGTGGAATTCCACGAACCCGTTGGCGTTTGAATCCATGTTGGTTAACAGCATGTGGATTTGATCGCCTGAGGGTTT GAGCCCCAATGATCGCAGCAATGCGGCGAGTTCGAGAATGGTTAGGCTTCCGTCGGAGTCCATGTCGAATCTGGCGAAGA TTTCACGTAATTGGCCGAGTTGATCAACTTGAAGCTCAGACATGTTGTTTTTTATCAATGAAACAATGATATCAGAGGGA GAATCAATGAGTGTGTGGACACAATGAATGTGCCACCCACCACACCCACGAACGAATGAAAGAAAAATTGGAATTGCAAT TCATGTTGTTGGGAAGTGCAGAGAGG 

CDS sequence (LotjaGi1g1v0206400.1) extracted from Lotus japonicus Gifu v1.2 CDS.

ATGGCTGGTGGTAAAAGGAAAAGGCAACAAAACTTGAGCAGAATCCATTCATTCTCTTGTGGGAAAACTTCATTTAGAGG TGAGCACTCACTTATAGGAGGCCCTGGCTTCTCAAGGATAATCTACTGCAACGAACCAGGACTTAGTGAAGGGAGTGTTT TGAATTATGGTGACAATTATGTCAGAACTACCAAATATACACTAGCTACTTTCCTCCCAAAATCATTATTTGAGCAATTC AGGAGGGTGGCCAATTTTTACTTCCTTATCTGTGCAATCTTGTCTTTCTTCCCGGTCTCTCCTTACTCGGCCGTCAGCAA TGTTGTTCCTCTTGTTGCTGTGGTTACTGCTACAATGGGAAAGGAGGCTGTTGAGGATTGGAGGCGGCGAAAGCAGGATA TTGAGATGAATAATAGAAAGGTTAAATTGCATCATGGTGAAGGTGTTTTTGACTATTCTAAATGGAGAGATTTGAAAGTT GGAGACATAGTAAGGGTGGAAAAAGATGAATTTTTCCCAACTGATCTCATCTTACTTTCATCGAGCTATGACGACGCAAT TTGCTATGTTGAGACTATGAATCTTGATGGCGAAACAAATCTTAAACTGAAACAAGCACTGGAAGAAACCTCCAAGTTAC AAGAAGACTCTAGCTTTCAAAATTTCAAAGCTATCATCAAATGTGAAGATCCAAATGCAAATTTGTACTCTTTCATAGGA AATATGGAACATGAAGATCAGATATGTCCTCTTGCACCGCAACAGCTACTGCTTAGGGACTCAAAGTTGAGAAACACAGA TTTCATATATGGTGTTGTAATTTTTACAGGACATGATACAAAGGTTATGCAGAATTCTACAGAGCCTCCTTCCAAGAGAA GCACGGTTGAGAAACGAATGGATAAGATCATCTACTTTCTTTTCTTTGTCTTATTTTCCCTTTCTTTTATTGGTTCCATT TTCTTCGGGATCGCGACAAGGGAAGACCTTGAAAATGGAGTAATGAAGAGATGGTACCTCAGACCAGATGATACCACAAT TTACTATGATCCAAAGAATGCACCAGTTGCGGCAATGCTGCAATTCTTGACTGCACTTATGTTGTATAGTTACTTGATTC CCATATCTTTGTATGTCTCCATCGAAATTGTGAAAGTTCTTCAAAGCATTTTCATCAACCAGGATGTGCACATGTATTAT GAGGAAACTGACCAGCCAGCACAAGCTCGTACCTCAAATTTGAATGAAGAACTTGGCCAAGTCGATACTATACTTTCGGA TAAAACAGGAACTTTGACTTGCAACTCTATGGAATTTATCAAGTGTTCTATTGGCGGGATCGCCTATGGACAAGGAGTTA CTGAAGTTGAGAGAGCTCTAGCAAGGAGAAAAGGATTACCTTCAGGTCAAGAGTCAACCGAAGATGGCAATGTTGCAGAA ATTTCTGAAACAAAATCATCTATCAAAGGTTTTAACTTCATGGATGAAAGGATCATGAACGGAAACTGGGTTAAAGAACC TCATGGCGATGTAATACAGAACTTCCTGCGGTTGTTGGCAGTATGCCATACTGCAATCCCTGAAGTTGATGAAGAAACTG GTAAAGTTTCATATGAAGCAGAATCACCTGATGAGGCAGCTTTTGTAATTGCAGCCAGAGAACTTGGATTTGAGTTTTAT GAAAGGAAACAGACTACTATTTCACTGCGAGAATTCAATTCCATATCAGGAAAGATAATTGAAAGGTACTACGAACTTTT AAATGTATTAGAGTTTAGTAGTGCGAGAAAGCGGATGTCTGTAATTGTAAGAGATGAGAAGGGAAAACTACTACTACTTA GCAAAGGCGCTGACAGTGTCATGTTTGAACGACTTGCAAAGTATGGAAGGGAGTTTGAAGAGAAGACTAAGCAGCACATC AACGAATATGCTGATGCTGGTTTGAGGACTTTGGTACTTGCATATCGTGAACTCGATGAGGAGGAGTACAATCTATTTAA TGAGGAATTCATGGAAGCCAAGAACATTGTGAGTGCTGATAGGGATCAGATTGTAGACGAAATAGCAGAAAAGATTGAGA AGGATTTAATTCTTCTTGGCGCTACAGCAGTTGAGGACAAACTTCAACATGGGGTGCCTGAATGCATTGACAAGCTAGCA CAGGCAGGAACTAAGCTATGGGTTTTGACTGGTGATAAAATGGAAACAGCAATCAATATTGGGTTTGCATGTAGTTTACT CAGACAAGGAATGAAGCAAATTATAATTAATTCAGACACTCCAGAAACCAAATCACTGGAGAGAGTGGAGGACCAGTCTG CTGCTGCAGAGGCAATTAAGGCAAGTGTTCTTCATCAATTAAGGGAAGGAAAGGCATTACTTGCGGCATCTGATGAAAAC TCTGAGGCTTTAGCTCTGATCATTGACGGAAAATCTTTGACTTTTGCTCTAGAAGATGATGTAAAGGACTTGTTTCTTGC GCTTGCCGTTGGTTGTGCATCTGTCATATGCTGTCGTTCATCTCCCAAGCAGAAAGCACTTGTTACTAGACTAGTAAAGA TGAAAACAGGCAGTACTACTCTAGCAATTGGTGATGGGGCAAATGATGTTGGAATGCTCCAAGAAGCAGATATTGGGATT GGTATCAGCGGTGTCGAAGGAATGCAGGCTGTTATGTCAAGTGATGTTGCAATTGCCCAATTCCGCTTTCTAGAGCGTTT ACTTCTTGTGCATGGACATTGGTGCTACAGAAGAATCTCATCAATGATCTGCTACTTCTTTTACAAGAACATTGTTTTTG GCTTCACTCTGTTCTTCTATGAGATCTATGCCTCATTCTCAGGGCAAGCTGCATATAATGATTGGTTCCTATCACTATAT AATGTATTCTTCACTTCTCTTCCTGTAATTGCTCTGGGAGTGTTTGACCAGGATATCTCTGCTAGATTATGTCTCAAGTT TCCATTATTATATCAAGAAGGAGTACAAAATGTCCTATTTAGCTGGAAAAGGATCCTTGGTTGGGCATTCAATGGAGTCT TGAGCGCTACCATAATATTCTTCTTCTGCATAGACGCAATGGAGAATCAAGCGTTCCGCAAAGGCGGTGAAGTTGTTGGG CTGGAAGTTCTTGGCGCCACCATGTACACTTGTGTTGTGTGGGTGGTGAATTGCCAAATGGCATTATCTATCAGTTACTT CACTTACATACAACATTTACTCATCTGGGGTGGTGTTCTTTTCTGGTATATTTTCTTCCTAGCATATGGAGCCATGGACC CAACCTTATCAACCACTGCCTACAAGGTCTTTGTTGAAGCTTGTGCTCCTGCACCATCTTACTGGCTCATCACTTTGCTT GTGCTTGTTGCTTCCCTCTTTCCGTATTTCGTCTACGCTTCGATCCAAATGCGGTTCTTCCCAATGTTCCATCAAATGAT ACAGTGGATACGAAATGATGGGCAAGAAAGTGATCCAGAATATGCTAATATTGTACGACAGAGATCAATAAGACACACAA CAGTTGGTTTTACAGCTCGTTTCAAAGCATCCAAGAGTTGA 

Protein sequence (LotjaGi1g1v0206400.1) extracted from Lotus japonicus Gifu v1.2 Proteins.

MAGGKRKRQQNLSRIHSFSCGKTSFRGEHSLIGGPGFSRIIYCNEPGLSEGSVLNYGDNYVRTTKYTLATFLPKSLFEQF RRVANFYFLICAILSFFPVSPYSAVSNVVPLVAVVTATMGKEAVEDWRRRKQDIEMNNRKVKLHHGEGVFDYSKWRDLKV GDIVRVEKDEFFPTDLILLSSSYDDAICYVETMNLDGETNLKLKQALEETSKLQEDSSFQNFKAIIKCEDPNANLYSFIG NMEHEDQICPLAPQQLLLRDSKLRNTDFIYGVVIFTGHDTKVMQNSTEPPSKRSTVEKRMDKIIYFLFFVLFSLSFIGSI FFGIATREDLENGVMKRWYLRPDDTTIYYDPKNAPVAAMLQFLTALMLYSYLIPISLYVSIEIVKVLQSIFINQDVHMYY EETDQPAQARTSNLNEELGQVDTILSDKTGTLTCNSMEFIKCSIGGIAYGQGVTEVERALARRKGLPSGQESTEDGNVAE ISETKSSIKGFNFMDERIMNGNWVKEPHGDVIQNFLRLLAVCHTAIPEVDEETGKVSYEAESPDEAAFVIAARELGFEFY ERKQTTISLREFNSISGKIIERYYELLNVLEFSSARKRMSVIVRDEKGKLLLLSKGADSVMFERLAKYGREFEEKTKQHI NEYADAGLRTLVLAYRELDEEEYNLFNEEFMEAKNIVSADRDQIVDEIAEKIEKDLILLGATAVEDKLQHGVPECIDKLA QAGTKLWVLTGDKMETAINIGFACSLLRQGMKQIIINSDTPETKSLERVEDQSAAAEAIKASVLHQLREGKALLAASDEN SEALALIIDGKSLTFALEDDVKDLFLALAVGCASVICCRSSPKQKALVTRLVKMKTGSTTLAIGDGANDVGMLQEADIGI GISGVEGMQAVMSSDVAIAQFRFLERLLLVHGHWCYRRISSMICYFFYKNIVFGFTLFFYEIYASFSGQAAYNDWFLSLY NVFFTSLPVIALGVFDQDISARLCLKFPLLYQEGVQNVLFSWKRILGWAFNGVLSATIIFFFCIDAMENQAFRKGGEVVG LEVLGATMYTCVVWVVNCQMALSISYFTYIQHLLIWGGVLFWYIFFLAYGAMDPTLSTTAYKVFVEACAPAPSYWLITLL VLVASLFPYFVYASIQMRFFPMFHQMIQWIRNDGQESDPEYANIVRQRSIRHTTVGFTARFKASKS 

Domain prediction

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

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Domains

Sorting

Prediction algorithm Identifier Start End Length E-value InterPro ID
PANTHER 1 1185 1185 0.0
Phobius 1 83 83 -
PANTHER 1 1185 1185 0.0
Pfam 41 106 66 1.4E-23
SUPERFAMILY 55 1141 1087 1.96E-60
TIGRFAM 56 1148 1093 0.0
CDD 58 1023 966 0.0
Phobius 84 102 19 -
Phobius 103 107 5 -
Phobius 108 124 17 -
Phobius 125 302 178 -
SUPERFAMILY 147 285 139 2.48E-15
TMHMM 303 325 23 -
Phobius 303 325 23 -
Phobius 326 357 32 -
TMHMM 357 379 23 -
Phobius 358 379 22 -
Phobius 380 925 546 -
SFLD 408 914 507 0.0
SFLD 408 914 507 0.0
SUPERFAMILY 420 918 499 2.1E-33
PRINTS 425 439 15 3.2E-8
ProSitePatterns 427 433 7 -
Gene3D 469 702 234 3.7E-49
SUPERFAMILY 485 701 217 2.83E-25
Pfam 521 625 105 1.3E-9
PRINTS 749 759 11 3.2E-8
TIGRFAM 827 946 120 9.2E-32
PRINTS 863 882 20 3.2E-8
Pfam 891 1141 251 2.0E-82
TMHMM 924 946 23 -
Phobius 926 943 18 -
Phobius 944 954 11 -
Phobius 955 975 21 -
TMHMM 956 975 20 -
Phobius 976 1004 29 -
TMHMM 1005 1024 20 -
Phobius 1005 1027 23 -
Phobius 1028 1046 19 -
TMHMM 1039 1056 18 -
Phobius 1047 1066 20 -
Phobius 1067 1072 6 -
TMHMM 1069 1091 23 -
Phobius 1073 1092 20 -
Phobius 1093 1111 19 -
TMHMM 1111 1133 23 -
Phobius 1112 1132 21 -
Phobius 1133 1186 54 -

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 Nucleotide binding Interacting selectively and non-covalently with a nucleotide, any compound consisting of a nucleoside that is esterified with (ortho)phosphate or an oligophosphate at any hydroxyl group on the ribose or deoxyribose.
Molecular function Magnesium ion binding Interacting selectively and non-covalently with magnesium (Mg) ions.
Molecular function ATP binding Interacting selectively and non-covalently with ATP, adenosine 5'-triphosphate, a universally important coenzyme and enzyme regulator.
Biological process Phospholipid transport The directed movement of phospholipids into, out of or within a cell, or between cells, by means of some agent such as a transporter or pore. Phospholipids are any lipids containing phosphoric acid as a mono- or diester.
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 LotjaGi1g1v0206400.1, powered by ExpAt. For advanced configuration, data transformation and export options, view expression data in the ExpAt application.

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