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

LotjaGi1g1v0604500.1

Overview

Field Value
Gene ID LotjaGi1g1v0604500
Transcript ID LotjaGi1g1v0604500.1
Related isoforms 3
Lotus japonicus genome version Gifu v1.2
Description GPI ethanolamine phosphate transferase 1; TAIR: AT3G01380.2 sulfatase and phosphatidylinositolglycan class N domain-containing protein; Swiss-Prot: sp|Q2U0S9|MCD4_ASPOR GPI ethanolamine phosphate transferase 1; TrEMBL-Plants: tr|K7K2J4|K7K2J4_SOYBN Uncharacterized protein; Found in the gene: LotjaGi1g1v0604500
Working Lj name n.a.

Sequence information

Genomic sequence (LjG1.1_chr1:114932424..114942826) extracted from Lotus japonicus Gifu genome v1.2.

TTATAACACTTCCATTATTGTATTTAGATTTAGATTCCACAAATATAAAATGCTCAAGTACTTTTTAATGTTTCATAAAT ACAGAAATTGATTCAGCCACTTCACTTCACTTCAAAATCTCTGCTTTTCAATACTCTGCAACAATAGGCAACCCAACACA GTTGGAACATCACTCACCACACTCACCACACTCACAGTCACAGCAAAGCTCGATCCAACAGTGCGTTAGAACACAAGAAA ATGCGCACCGATGGGATCTTAGGAAACAGAGATAACTCAACAAAATGGTTGAAGACAAGGGAACGATGGCTCGTTGTACT GGGCGTCATCCTTCACGCTATCTACATGCTCAGCATCTTCGACATATACTTCAAAACCCCCATTGTCCGCGGCGTCGATC CCGTCACGCCTCGTTTCACTGCTCCCGCCAAACGCCTCGTGCTTCTCGTCGGTACGTCATGCACACCACCTGTTTGATGT TATGTTTCTGTGAATTTGGCTTCATGTTTGTAAAATGTGTTGTGTTTTTATTCAATTTTGATTTGATATGGTTGAGGTTT TAATGCAGCTGATGGATTGCGCGCGGACAAGTTCTTTGAGCCGGACGCGCAAGGGAATTACAGAGCACCGTTTTTAAGGA GAGTAATGAAGACGCAGGGTCGTTGGGGAGTTTCTCATGCTCGCCCTCCCACCGAGTCGAGGCCTGGACATGTTGCCATT ATTGCTGGTTTTTATGAAGATCCTAGTGCAGTTACAAAAGGTTGCTGTTATTCTCTTCCTTTATGGAATATTAGTTTTAA GAGGATAATTGAAATAGCTTAACTTAGTGTTTTTTTCTATCTCAAATAAAATTCTCTGATTTGACATTTTTTTTATTAAA ATGCATGGAGTAAAATGGTAGACTGTCATGACTTTTTATGCAGTAAAATGCAAGAGACTTATACAATATTTCTTTTGATT CTTGGCTTGGCTGGATAGCACTGCCTTGTGTCAACTAAAAGATACATTTGTTTTGGGTTCGCTGCAGGGTGGAAGGCTAA TCCTGTTGAGTTTGATTCGGTGTTTAACAGAAGCCGGCATACAATTTCTTTTGGAAGTCCTGATATAGTTCCAATTTTCT GTGGTGCCTTGCCGCATAGCACCTGGGATACGTATCCGCATGAGTTCGAGGACTTTGCAACTGGTGTGACTGCAGTTTTT TCAATATGCACTGTTTCATTTATGACAATCTTTTTCTCCCTACAATTTTTCCTTTATCCTTCTTGTTAGATATTTTAGAG ATCCCATGCCCCGCATGATAGTATGCTAGGTGGAAAAGTAAAATATTGACCATGTTAAATTCTCAATCCTCAATTTCATG TATCAATCAATTCAGGACTCTTAAATTCTTAATGCAGATGCATCATTCCTGGACATGTGGTCTCTTGATAAATTTCAGAG CCTTCTTAATCGGTCCAGTGAAGACCCAAAGTTAAAGGAGCTACTGCAGCAGGATAACCTTGTTGTATTCCTGCACCTGC TTGGATGTGACTCTAATGGCCATGCACATAGGCCCTTTTCGTCCATCTATCTCAATAATGTTAAGGTTGTTGACCATGTA GCTGAAAGTGTTTATAATCTTCTTGAAGATTATTACAAGGATAATCGTACAGCATACATTTTTACAGCAGATCATGGAAT GAGTGACAAAGGTTGCAATACTTTTTTATTTTATTTTTATCATACCTATGACTAGACACTCTCTTACTTCATGTCATAAC TTAAAATGTTAATTCCCCTATAGAAGTTGAAACGTGTCTGGTAAAATTTTCCTTTTGAGTTTAAAAGAGACTTTCAATTA AAAAATGCCTAAACAGTTTCTCCGTATTCACTTATCTATGTGTTGAGATATGTATAATGTGATTATATGTACTTTAATTC ATTTTGTATACATTTGTATTGTAAAAAGCCCTACTTTGTAGGATATTAAATTTAGGATGATCCTTTCCCTCTCAACCACT AGGTCAAAGATGTTTGATGTATCAATAAAATATTCACTTTCTCTAATCTCAAGTCTATTGATTTATACTTCTCACTTTTT TTATCACTCTGTATAATAATCCAAGGTACCTCAATTCTTCAAATAGCGGTATGTACACATTCGAATTTTCACCTGTAAGC CAATGCTTGTGCTTGTGCACATCTAGTTGAACGTACATTATATGCTAGATTATTGAAGCTTTGCTCCTAGGACCTAGAGT TAGTCTTTGCCTTAGACATAGAAGAATTTTCAATTTCCAAGTACTTCAGTTGTTCTTTTGTCTGTATTATACTTATTTGT TCGCTGTATTGAAATTAAAATAGTTTTAAAGTAATAATTTTGTGTATTTATTTGTTTATTTATTTTATTTCTATTCACAG GGAGCCATGGAGATGGGCATCCTTCAAATACTGATACTCCCCTTGTTGCTTGGGGAGCTGGTGTTAAATATCCAAGGCCA ATATCTAGCAGCAACCATTCTGATTGTGGTTTTAGGTTTGTTGATGACCATGTGCATGACGCTCCAACACCAATTGAATG GGGCTTGCATGGAATAGAAAGGGTGGATGTCAATCAGGCTGATATTGCACCACTGATGGTTGTAAAATTTATCTTTCACT GAGGATTTCTGCTCAAAGCGTGATGAATGTCTCTCCATTTTCCTTAGATTTTGATATACTTCATTCAATTTTCTGACAGT CTACACTACTCGGTTTACCATGTCCCGTTAATTCAGTTGGAAGTCTACCCATAGATTACATTAACATGACCAAGGTAGCC TTTGATTCTGATTTATAAAAGCTTGTTGTTCATTTTAGTGAACAGTAGTTTAATGTGCTTTTGTTCGCTACTCTCATTGG TATATATTGTCATTTTTATGGATTGTCTTGTCCTACTGGTGGTAAAAAGTGTAAAGGCTATCTACATGCTGAAGACTATA TATTTGCAGATGATCTGACTCTGATTAAGATTTAATTTATATTTTCTTCCAGGATGAAGAAGTTGAAGCTGTTCTATCCA ATACAAAAGAAATTCTGAACCAGTTTCTTCGCAAATCATGTATCCTTCGCCTATGTTGACTTATCATTGATGATATGTAC TGATTGTTCCTTAGTTTCAGCATGACATCTTCCACCATGGTTTCAAACTTTAACTGATATAAAGTAATTTTTCCTCTCAA GCAAAAATATGCTGAAGGGACCTCTAACGATAAAATACAAATATTTTCGGAGCCAATTCATGAGTAAAATGTTATGTAAG AAAGTAACAAAGAAAAAGACAGACAATGTAGAAGTAAAATGAATTGAAGAACTCCTTACTGATGTTGGTTTCATTGACAA CTTTAGACATTAAACAGTCGTACTCTTTATACTTCAAACCTTTCAAACCGCTATCTCATTATTCTTCAATTTTGGACAAA ATTGAGAGTCTGATATTGGCTAGAGATTATGATGCTGCAATGGAGCTATCCCAAAATCTCAGAAGTTTGGCATTGCAAGG ACTTCACTATTTTCAGACTTACGACTGGCTGATGCTCATGTCTGTAATTACCCTTGGGTATGTTGGTTGGATGATCTACC TTGTTCTTCATGTGCTGCAGTCTTACACTTCACTGCCAAGAAATATTTTTGGAATGGAGCAATCAGTTCAGAGAAATAGC CATGGAAAAGTAATGTTTTTGTAAGCTTAGCTTTTCCTAAATGGTATTTTTTAGCCTTTTTTGAACTGTATATTGCTTTG AGATGAAGAAAATAAAGAAATTTTGATGGAGATACACAAGACATGGAACATGGAAACTCAGTAGATTGAAATTCTTACCT GAAATTTATCGATTCTTATTGGTTTCATATAATTATCAGCTCTTTTTCCTTTGATGATTATCAATTAAATAATTAAATAA GTATGTATCTTATCTTCTTTTGCAGATATATCTATATGGATGTTTGGTGACGGGAATGCTTTGTTTGCTATTATTGCTAG AACGCTCTCCTCCTCTCTACCATGCATACATGATAATGACATCATTTTTATGGGTTCAAATAATTAGTGAATACCAGTTT ATAAAAGCATTATGGAAACACATATCTGGAAGAAGAATGAACTATATCATTAAGCTGCTAGCGATCACTGCTGTCTCAGT TTTCATTCTTGAGTTCCTGGTATGAATGGTTATCATAATATTCTCTAACCTAGTAAGGTTCAACTCATCTGATGAAGAAT ATTTGGTTTGCCTTACAGGTTAACAGCTTCACTGAGAGGAAGCTCTATACTTTGCTTTTTTTAATTGCTGGGGCCACAGC TTCATTTTATCTTTTTAAGTCTATTCCCTGGAGATCTGGTATACCGATATATGTTTGCATTGCATGTTGGTTTTTGTCCC TTTTCACACTGATGCCGGCAGAAATTCCAGACAATAATCAATTAGTGTAAGTCGCTTCCACCACTGAATATATAATTAGT ACAACATAAACAAGGCCAAAGTTTAATGTAAGAAAATGGTAGATCAACAACCTTCTGATTGAAAATAGTTTTAGGATGCC AAAGTTTCTCATGTTGATGTTTTCTCTTTATTTTAATCTGTTTGTTGCTCATCTGACAATTCTGAATCCAAAAAGTGTTC AACATTCCAAATTATCATGTTTGCAGGGTTAGTAGTGGGGCTGTTATTATCATTATAGGAATAGCTGCAAGGTGGTTAGA TTTACATGCTGGCAGAAGTAAGTATTGGCTAAGCATATGCAATTGTGAGTTGAGAAGTCCCAAATATTCATCTCTATTTT ACGTACAGGTAACTATAATGATTTTTCTACCATTGTGTTTGAAAGCTTAGCTAATACATGAAAAATTCACTGTTTACTAT TTCTTGTTTATCACTAGGCTCTTTTGGTTGCTTTATCTTCAGTCATGGTGTATTTATCAACTTCTCACAGAACTGAAAAG CAAGAGTTGCTTGCATTGCATCAGTTGGTAAATTGGTCTGTTGCTGGTATAGTTTTGACTTTTAATTCTTGTCCCTTTGC TTGAATTTCTTAGTCCTATTCAGACACTTTTACCAAATTGTACGCTGTTCTATTATAGTTGCCTTGATCTTTCTCAGAAT ACACAACTTTTTACCTGCCATTTTTTCTCTTTCTTGTCAATCTATATGTGGTATGGATGGCAATGGTTGCGATTATGTGT GATTATGTGTGATTATTTTTAGTTGATGTTGTGTATATTTGTATTATGGGAAGTTATACATAATTATAGGACACTCGGAT GATATCTTTGAGATAAAGGATGATTCTGAATTTCTTGTGCATGAAGCATTCAAATTTAAGATTCAATCTTGGTTGATATT GACAACCTATTTTTCTAGGTATGTCCATGGTACTCCCACTGTTTTCCGAAAATAGCCTCTTATCCCGGCTGACTTCCATA TTTCTTGGCTTTGCGCCTCCATTCCTTCTTCTCTCCATCGGGTATTATCTCTTTGACCAAACTTCTTTCAGACGTTCTTT GAATATATTCTTGATGTAATGATGCATATGTTTTTACCATTTCATTTTTGAAACATTTGCAGATATGAAGCTTTATTCTA TGCTGCCTTTGCTCTTGTACTTATGGCTTGGATACTCTTTGAAAATACACTTCTCAACTTTAATTTTATGACTAAGTCAT CAGGTTCCATTAAAAATGTTACAAATCATCTCATCCCTGGATCTGATAACAGATCTTTGCAGCTATCTGATGTGAGAATC GCATTGAGCTTTGTAAGTTTTTTCTTTTCTGTCTTATTTCCTTCAAATCTTGATTAAATTTGAGCAGCCCTTTTGAGTGA AGTATACTAGAGGAACTCCTTTTGAGATTTTATGAAATTACACAACCATTCTTAAGCAAAAAATTACACTGCCCTTGTTA ACGCCTTTTGATTGATAGAGTCTCTAAAATGGGAAGGAATATTCAGCTTAACCCAACAATTAACAATGGTTTTCTTTTAA TAGCTTTGCGACTTGTAATAGGCCTTCTTATGGAATCAGGATAATTCATCTCCTATTGTTACTTGTAACTGCCGGTAACA ATAATGAAATGCAGACAACAATATTTCTGGTTACTTAAAAGGAAGATATTCATATTATAATGGTCCGGCAGCTTTGTTGA AATCTCTATGTTGCTCTCCGAATCTATTGGAAATCTTGATTGTTAAAATGTGCATGACGTTTGTTTGTTTCTTTTGGCCA TGGCGTTTGTATTTAACATATAAATGTTTCACTCAGAAAGCCACATGGGCCTTAGGATAAGGATATGATCAGGGAAATGC AAAGATGTCTGGTTGCTGAAGTACAGAATATGTAACAGATTTGAATTGAAATAATCAAATATTTAAGATGTTTTCACAAG TAGTATAATGGAGCATATGACTGTTTAATGAACTAGATTTCATTTAGCTGATATACAAATAGTATTTGTCAAGATTCAGG GCCAACTGAAGCATGTAGATTATGCTCAATGTAAATTAAGTACGCTTTTCACAAGTGATATTTTTTGTTTTTTTGACATT AACACTCTTTTGTATCATGCAGATGGTTTTATTCAACATTGCCTTTTTTGGAACTGGAAATTTTGCAAGTATTGCTAGTT TTGAGATTTCATCTGTCTATCGGTTCATTACTATCTTTAGCGTAAGTGAAAATTAAACTCCTTTCAATTTCCAACTTACC TATCTTTAATAAGCTTTTGAACTGATATATTTCCTACCAATTGCAGCCATTTCTGATGGCGGCGCTACTGATCTTCAAGT TATTTATACCCTTCATACTTGTAATGTAAGTATTTGCAACTGTTCCACAAGATTACTTCTTTGAGACTAGAATTTCAAAA ATTGATTGAAAAAGTCATTTTCTTGCTGACGATGCATCCCAACTAAATGATTTGTGATCATATTGACTTCTTAGGCTGTC GATTTTCATATGATTGCGTGTCACCAGTATTGTTTTTAAAAAATTGGCAACAATTTTTCCCTAGGGATTCATTCACTTAA GCACTGATTGACTGTTGTCAGATCATTCGATATGTGTTGCACATTGTATGTCTTGAATATATCTGGTTTTTGTATTTAAT CATATAGAATATAACTTCATAGATCTTATCACAATTATTTCCTAGTTATTGGAGAAAATAATATTTCATCAGTATAATCT GTAGATGCCAAATTTATTAGAAATGTTTCTCTGGTGTAATCTGTAGATTCCAAATTACATATTTCACAAATAATACTTGT AATCTGAATATTTTATTGATACACTCTTTGATATGTGATCTACAAATAAATGAGTTTAGCTCTTCTAAAGTAAAGGAGTC TCTTTAGAAAGTAAAAAATCATCACAGTCATTGACTGAGAAACTAATGGTTGATATTCAAAGTTCACCATAGTTTGCTAT GCATGTGCAACAATAAGATCACAATCTCAACCGTTAATTGCCCAATGAGTGGCCGTGGTGACTTACTCTACCCAATTATG TTACTCTCTCACTTTATAGTAGCTTAATTCCAAATACATTTAGATACAAGGGTGTAATGGTAAAGGAAAGGATCATTCGA AATCTTGAAGATATGATCCTAATATCTTATAATTGGAAACCTTTTGTTCTGGGAATGAACATTGAGGATAGGGATAGTAC CTAGAGAGTGGAAAATTGTGCTAGAGAGAATGAGAATGAGAGAGAGAATGCTGAATTTCATGTGTTATTTTGTCAAATGA GCAAAAAGTCCCTTACAATTAACATCTACCTCCTATTTATAGGGCTTGGGTACTACCCATTGGGCCAATTGGGCCTCCGC GATTGAGGCCCAATTTAAGGCCAGGTTCCCGCCCTTGGGCGGGCTAAACCCTGGGCGTCGCTCCTCTAGGGGCTCGCCCA GTCCACTTTCCTATAATGCAAATATACACAAAATCAAATACAATCAAATCCCTTATAATCATATTACTCATAATCTCAAC AAGTTTTAACATTTTCTTGAGCTTGTTTCTTACTGACTTATTATTTACCGTAACAACTATGGTTCTGTATCTTCTGTTCA ATTGTTCATTTTATATTTATTTGCAATGGACTGAACTGCAGATGTGCATTCAGTGCAATAACCAAACTGAACCAAGTTCC AAGGATGGGATGCTATTTTCTTGTTATATTGTTCTCAGACGTAATGACTGTTCACTTCTTCTTCCTGGTATATACTCACC CTATTCTTTATAATTTTATTTAGTTTCAATAGTCTTCATTAAACTCTTTTATGTTCTCACAGTTCTTGATTTTTCATATT GTAAATATATTTGCCTTCACTTAATTATAGTAAATGCATGAGATCAATTGGTCAGCATAATAGAACAGTAAAATATCCCC TAGAAGTTACAATTGCTTTTCTTTTATTGCCGTCAACTTCAGTTCTTTCTTGTGTTAGTTTTCTGTTTTATTGGTTTCCT AGCACCACAGTTGTTGATAAATGTGAATATATAATTATAATTCAAGGTATGGCTAATGAAATAAGCTGTGCCTTTTTGTA ATTTTCTTTCACTTTATATTTATTATTATAATATATGAAAAATAAGGTTACTGTTTGAAAGAGAGACAGAACAAGAGATA ACAGGTAGAGAGAGATTGAGAAACCTTAAAGGCCATTGTTGGATATGATAGGACATAAAGCGTCGTAGCCGACCTCACCT AGTAGTGGAGAAAGACTTGGGTTATTAGAAATATTTCATATCTAATGTGAGGATCTGCAAACTTTTACTTATCCATCAAA TATAAGGATTTCAGTTATATACAACATGTCTTTCTGAGCTAGTTTGCTACTACTGGAAATTAAATTACTTTCAAGGCAAA ATGATTGTGGTTTTAACTGCAATTGGATACTCATATTTTTCCATTTGCTAATTTTAATGCCTCAGGGTATATATTTGAAG GCTAGTACCCTAATACTGAAATTTATGGTTGGCAGGTTCGGAATACAGGAAGTTGGATGGAAATTGGAAATAGTATCAGT CATTTTGGTATCATGAGTGCCCAAGTTGTTTTTGTTCTCTTACTCTTTGCCCTCACAAATACATACACAAAAGACATCCA CTGTAATTCCGCAGTACCGTCTGCACGAAAGGCAAATTAGGTTTCACCAAAGTGAGATAGATGGTTCAGAATGAGCTGCA TTATCATTATTGAAGTGACTCTGCGTCTCTGAACATTCTTGGCGGTGGCTTTGAAGCTAACTTTTTAATTTTGCTTCTGA CATTATGAACCTGTGCTCACTGACCTTCATACTACAGGTGCTTAGATTTTGGCATGTTAACAAATTTTCAATATTAGCAT CATCCCCAACTGAAGAATTCAAGATAGACATTGAGGGACAGTGATGTGGAAGGCAGATAAAAGCAATCGGACATACCGGT GTCAAAATAGGCTGACCCAATGGGGCATCACCGACATATGAATTATGAACTTTCATATAAGAATTTTTCTTTGTATACTG CATTTGAGTTGTACACAGGGGAGCAGAGAGAAATTGCAGATCTTCCTCACACCTGTTTCACCTGTCCTAAGAACAACTGA AAATGTAACTTTTGTTTAATGTTTGTTTGCAGCAGTTCATCTACCTTGTCCTCTACGGTGCCCACTAGGGTGGGGAATTA TCAAACTGGTCCACCCATGGACCAGTCTTTTTCACCGTGGATATATATTATTTTATTCCTGTGGTCCAGATTTGCAACCG TTCACGTGCCTTACAGGTTATCTCCATGTTTGTGAGATTATTTTCCAAAATTGCAAAGAAACCCCCCAAAGGAAATAACC CTTGTTTCTCTCTATGATGCACGTGATGTCACATGATGGCACGTGTAGATGAAACCACCCACCACCGCACCACCGCATCT GATCTCCATTTCTCCATTTCTGTTCACGATTTGTCTGCATGTCATCTCATCTCCATTTCAGTTATGAAACGCTACTAAAG CGGATTCGACGAAATTGGTCCATTTTGTTGATTTACAACAGTGCTTCATAGATGGCAACGGCGGCACAATGGAGACGTAT GAGAAGCATGACAAACCCGACCCAACCTTGATGGTGGTATTTTAGAATGGGTGCACGACGATGAGGGTGCATATCGGGTT TAATCCTTAAACCCGACCCAACCTGTAAGACCCATTCCAGGATTTCTTTTATTATGAATTGGGAATGGGCCAGCTCCAGG CCCAATGGCCGGCCCCCATGTCCATGACGAAGAAAATTTTGGTTTAAAGAAATTTAGTTATTTCCGTTCAAAAAAAAGAA TTTTAGTTATTTAGGTGTATTATATTTACCTTATATTTGTTATTGACCAAAAAAAAGGTATATTATATTTGTTTAAATAA GGG 

CDS sequence (LotjaGi1g1v0604500.1) extracted from Lotus japonicus Gifu v1.2 CDS.

ATGCGCACCGATGGGATCTTAGGAAACAGAGATAACTCAACAAAATGGTTGAAGACAAGGGAACGATGGCTCGTTGTACT GGGCGTCATCCTTCACGCTATCTACATGCTCAGCATCTTCGACATATACTTCAAAACCCCCATTGTCCGCGGCGTCGATC CCGTCACGCCTCGTTTCACTGCTCCCGCCAAACGCCTCGTGCTTCTCGTCGCTGATGGATTGCGCGCGGACAAGTTCTTT GAGCCGGACGCGCAAGGGAATTACAGAGCACCGTTTTTAAGGAGAGTAATGAAGACGCAGGGTCGTTGGGGAGTTTCTCA TGCTCGCCCTCCCACCGAGTCGAGGCCTGGACATGTTGCCATTATTGCTGGTTTTTATGAAGATCCTAGTGCAGTTACAA AAGGGTGGAAGGCTAATCCTGTTGAGTTTGATTCGGTGTTTAACAGAAGCCGGCATACAATTTCTTTTGGAAGTCCTGAT ATAGTTCCAATTTTCTGTGGTGCCTTGCCGCATAGCACCTGGGATACGTATCCGCATGAGTTCGAGGACTTTGCAACTGA TGCATCATTCCTGGACATGTGGTCTCTTGATAAATTTCAGAGCCTTCTTAATCGGTCCAGTGAAGACCCAAAGTTAAAGG AGCTACTGCAGCAGGATAACCTTGTTGTATTCCTGCACCTGCTTGGATGTGACTCTAATGGCCATGCACATAGGCCCTTT TCGTCCATCTATCTCAATAATGTTAAGGTTGTTGACCATGTAGCTGAAAGTGTTTATAATCTTCTTGAAGATTATTACAA GGATAATCGTACAGCATACATTTTTACAGCAGATCATGGAATGAGTGACAAAGGGAGCCATGGAGATGGGCATCCTTCAA ATACTGATACTCCCCTTGTTGCTTGGGGAGCTGGTGTTAAATATCCAAGGCCAATATCTAGCAGCAACCATTCTGATTGT GGTTTTAGGTTTGTTGATGACCATGTGCATGACGCTCCAACACCAATTGAATGGGGCTTGCATGGAATAGAAAGGGTGGA TGTCAATCAGGCTGATATTGCACCACTGATGTCTACACTACTCGGTTTACCATGTCCCGTTAATTCAGTTGGAAGTCTAC CCATAGATTACATTAACATGACCAAGGATGAAGAAGTTGAAGCTGTTCTATCCAATACAAAAGAAATTCTGAACCAGTTT CTTCGCAAATCATACATTAAACAGTCGTACTCTTTATACTTCAAACCTTTCAAACCGCTATCTCATTATTCTTCAATTTT GGACAAAATTGAGAGTCTGATATTGGCTAGAGATTATGATGCTGCAATGGAGCTATCCCAAAATCTCAGAAGTTTGGCAT TGCAAGGACTTCACTATTTTCAGACTTACGACTGGCTGATGCTCATGTCTGTAATTACCCTTGGGTATGTTGGTTGGATG ATCTACCTTGTTCTTCATGTGCTGCAGTCTTACACTTCACTGCCAAGAAATATTTTTGGAATGGAGCAATCAGTTCAGAG AAATAGCCATGGAAAAATATATCTATATGGATGTTTGGTGACGGGAATGCTTTGTTTGCTATTATTGCTAGAACGCTCTC CTCCTCTCTACCATGCATACATGATAATGACATCATTTTTATGGGTTCAAATAATTAGTGAATACCAGTTTATAAAAGCA TTATGGAAACACATATCTGGAAGAAGAATGAACTATATCATTAAGCTGCTAGCGATCACTGCTGTCTCAGTTTTCATTCT TGAGTTCCTGGTTAACAGCTTCACTGAGAGGAAGCTCTATACTTTGCTTTTTTTAATTGCTGGGGCCACAGCTTCATTTT ATCTTTTTAAGTCTATTCCCTGGAGATCTGGTATACCGATATATGTTTGCATTGCATGTTGGTTTTTGTCCCTTTTCACA CTGATGCCGGCAGAAATTCCAGACAATAATCAATTAGTGGTTAGTAGTGGGGCTGTTATTATCATTATAGGAATAGCTGC AAGGTGGTTAGATTTACATGCTGGCAGAAGTAAGTATTGGCTAAGCATATGCAATTGTGAGTTGAGAAGTCCCAAATATT CATCTCTATTTTACGTACAGGCTCTTTTGGTTGCTTTATCTTCAGTCATGGTGTATTTATCAACTTCTCACAGAACTGAA AAGCAAGAGTTGCTTGCATTGCATCAGTTGGTAAATTGGTCTGTTGCTGGTATGTCCATGGTACTCCCACTGTTTTCCGA AAATAGCCTCTTATCCCGGCTGACTTCCATATTTCTTGGCTTTGCGCCTCCATTCCTTCTTCTCTCCATCGGATATGAAG CTTTATTCTATGCTGCCTTTGCTCTTGTACTTATGGCTTGGATACTCTTTGAAAATACACTTCTCAACTTTAATTTTATG ACTAAGTCATCAGGTTCCATTAAAAATGTTACAAATCATCTCATCCCTGGATCTGATAACAGATCTTTGCAGCTATCTGA TGTGAGAATCGCATTGAGCTTTATGGTTTTATTCAACATTGCCTTTTTTGGAACTGGAAATTTTGCAAGTATTGCTAGTT TTGAGATTTCATCTGTCTATCGGTTCATTACTATCTTTAGCCCATTTCTGATGGCGGCGCTACTGATCTTCAAGTTATTT ATACCCTTCATACTTGTAATATGTGCATTCAGTGCAATAACCAAACTGAACCAAGTTCCAAGGATGGGATGCTATTTTCT TGTTATATTGTTCTCAGACGTAATGACTGTTCACTTCTTCTTCCTGGTTCGGAATACAGGAAGTTGGATGGAAATTGGAA ATAGTATCAGTCATTTTGGTATCATGAGTGCCCAAGTTGTTTTTGTTCTCTTACTCTTTGCCCTCACAAATACATACACA AAAGACATCCACTGTAATTCCGCAGTACCGTCTGCACGAAAGGCAAATTAG 

Protein sequence (LotjaGi1g1v0604500.1) extracted from Lotus japonicus Gifu v1.2 Proteins.

MRTDGILGNRDNSTKWLKTRERWLVVLGVILHAIYMLSIFDIYFKTPIVRGVDPVTPRFTAPAKRLVLLVADGLRADKFF EPDAQGNYRAPFLRRVMKTQGRWGVSHARPPTESRPGHVAIIAGFYEDPSAVTKGWKANPVEFDSVFNRSRHTISFGSPD IVPIFCGALPHSTWDTYPHEFEDFATDASFLDMWSLDKFQSLLNRSSEDPKLKELLQQDNLVVFLHLLGCDSNGHAHRPF SSIYLNNVKVVDHVAESVYNLLEDYYKDNRTAYIFTADHGMSDKGSHGDGHPSNTDTPLVAWGAGVKYPRPISSSNHSDC GFRFVDDHVHDAPTPIEWGLHGIERVDVNQADIAPLMSTLLGLPCPVNSVGSLPIDYINMTKDEEVEAVLSNTKEILNQF LRKSYIKQSYSLYFKPFKPLSHYSSILDKIESLILARDYDAAMELSQNLRSLALQGLHYFQTYDWLMLMSVITLGYVGWM IYLVLHVLQSYTSLPRNIFGMEQSVQRNSHGKIYLYGCLVTGMLCLLLLLERSPPLYHAYMIMTSFLWVQIISEYQFIKA LWKHISGRRMNYIIKLLAITAVSVFILEFLVNSFTERKLYTLLFLIAGATASFYLFKSIPWRSGIPIYVCIACWFLSLFT LMPAEIPDNNQLVVSSGAVIIIIGIAARWLDLHAGRSKYWLSICNCELRSPKYSSLFYVQALLVALSSVMVYLSTSHRTE KQELLALHQLVNWSVAGMSMVLPLFSENSLLSRLTSIFLGFAPPFLLLSIGYEALFYAAFALVLMAWILFENTLLNFNFM TKSSGSIKNVTNHLIPGSDNRSLQLSDVRIALSFMVLFNIAFFGTGNFASIASFEISSVYRFITIFSPFLMAALLIFKLF IPFILVICAFSAITKLNQVPRMGCYFLVILFSDVMTVHFFFLVRNTGSWMEIGNSISHFGIMSAQVVFVLLLFALTNTYT KDIHCNSAVPSARKAN 

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 22 22 -
TMHMM 22 44 23 -
Phobius 23 44 22 -
PANTHER 23 967 945 0.0
Phobius 45 464 420 -
CDD 61 374 314 5.69032E-161
SUPERFAMILY 63 372 310 4.45E-38
Pfam 171 283 113 1.2E-4
Pfam 455 928 474 9.8E-129
Phobius 465 488 24 -
TMHMM 466 488 23 -
Phobius 489 512 24 -
Phobius 513 530 18 -
TMHMM 513 530 18 -
Phobius 531 535 5 -
TMHMM 535 552 18 -
Phobius 536 558 23 -
Phobius 559 569 11 -
Phobius 570 587 18 -
TMHMM 572 594 23 -
Phobius 588 598 11 -
Phobius 599 616 18 -
TMHMM 599 616 18 -
Phobius 617 624 8 -
TMHMM 623 642 20 -
Phobius 625 646 22 -
Phobius 647 651 5 -
TMHMM 652 672 21 -
Phobius 652 672 21 -
Phobius 673 692 20 -
TMHMM 693 715 23 -
Phobius 693 713 21 -
Phobius 714 724 11 -
TMHMM 725 745 21 -
Phobius 725 745 21 -
Phobius 746 749 4 -
Phobius 750 768 19 -
TMHMM 750 772 23 -
Phobius 769 773 5 -
Phobius 774 795 22 -
TMHMM 777 799 23 -
Phobius 796 829 34 -
TMHMM 830 852 23 -
Phobius 830 849 20 -
Phobius 850 868 19 -
TMHMM 867 889 23 -
Phobius 869 892 24 -
Phobius 893 903 11 -
TMHMM 902 921 20 -
Phobius 904 923 20 -
Phobius 924 934 11 -
Phobius 935 955 21 -
TMHMM 936 955 20 -
Phobius 956 976 21 -

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 Catalytic activity Catalysis of a biochemical reaction at physiological temperatures. In biologically catalyzed reactions, the reactants are known as substrates, and the catalysts are naturally occurring macromolecular substances known as enzymes. Enzymes possess specific binding sites for substrates, and are usually composed wholly or largely of protein, but RNA that has catalytic activity (ribozyme) is often also regarded as enzymatic.
Cellular component Endoplasmic reticulum membrane The lipid bilayer surrounding the endoplasmic reticulum.
Biological process GPI anchor biosynthetic process The chemical reactions and pathways resulting in the formation of a glycosylphosphatidylinositol (GPI) anchor that attaches some membrane proteins to the lipid bilayer of the cell membrane. The phosphatidylinositol group is linked via the C-6 hydroxyl residue of inositol to a carbohydrate chain which is itself linked to the protein via an ethanolamine phosphate group, its amino group forming an amide linkage with the C-terminal carboxyl of the protein. Some GPI anchors have variants on this canonical linkage.
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.
Molecular function Transferase activity Catalysis of the transfer of a group, e.g. a methyl group, glycosyl group, acyl group, phosphorus-containing, or other groups, from one compound (generally regarded as the donor) to another compound (generally regarded as the acceptor). Transferase is the systematic name for any enzyme of EC class 2.
Molecular function Mannose-ethanolamine phosphotransferase activity Catalysis of the transfer of ethanolamine phosphate to a mannose residue in the GPI lipid precursor.

Expression data

Expression pattern

Expression pattern of LotjaGi1g1v0604500.1, 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…