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LotjaGi4g1v0364200.1

Overview

Field Value
Gene ID LotjaGi4g1v0364200
Transcript ID LotjaGi4g1v0364200.1
Lotus japonicus genome version Gifu v1.2
Description Mannosyl-oligosaccharide glucosidase; TAIR: AT1G67490.1 glucosidase 1; Swiss-Prot: sp|F4HTM3|GCS1_ARATH Mannosyl-oligosaccharide glucosidase GCS1; TrEMBL-Plants: tr|A0A072TT32|A0A072TT32_MEDTR Mannosyl-oligosaccharide glucosidase; Found in the gene: LotjaGi4g1v0364200
Working Lj name n.a.

Sequence information

Genomic sequence (LjG1.1_chr4:74418549..74427712) extracted from Lotus japonicus Gifu genome v1.2.

GTGAGCCCAAACTCCTAAAAAACCAACCAAATTGGGCCTCTGTTTAGTCCGGCCTGGTAAGCCCAAACTGATAATTTCCA CGGCCATGTCTAACCAAAAAAAAAAAAGACACCATGTGTTCGTGAACTGCTGCTACTGGTAAACGTTTCACTGCAGAACA CTCGCTCACTCACTCACTCCCTTCATTCCTATGTGACACCGTTAATCGCCGATCTTCCAGAAATGACCGGAAGCGGAAGA ACAACCGCTCGGAGCAGACTCCGATCCTCCTCCTCCTCCGACGCCGCCGATCCTCTCCGCGAACGGAGGCCCCGCCTTAA CCGCCACGCCAGGAGCAAATACGGCAGCTCCATCCCGTTATTCAACAATACCAATCTCAAAGTGGTTCTCGCTTTCAGCT TCCTCGCATTCTTCCTCATCTGGTTTCTGATCCACCACCTCGTGAACTCCGTCGCCCAGCCTGGTCTTCCTCGCGAAGTC ACGCCGTTTCCCGCGCCTAAGATCATGGACCTTCCTCAGGTCAATTTTCAACTTCCTCCATCATTCTTCACTGTATTTCT ATGAATTGTGTGTGATTTGAGTGATTTAATTGGTGTTTGTTCGCAGTTTCAAGGTCAGCACAAGGAGAGTTTGTATTGGG GAACTTATCGTCCTCATGTCTATCTCGGAATTCGTGCCAGGTTTGATTCATTATCTGTTTCTCTGAAACAGAACTGGATT TTCTTTTTGGAATTGTTATATGCATGAGGTGCATGTTGTTTTGATTTTATTTTTTGGTAATTGAAAACATGAGGTCTCTA TGCACCATTTGCTTTATTTTGTTTGATTGCGATGAAATGGAAGCAGAGACCATTTTAGTGGTTAAATCTTTTTTTTTTTG TAGTTTTGATGCTGCACTGCAATGAGCAATCTGAATATATTCTGATTTTTATGAAATTTTGATTGATTAAGCCTGCAAAT TGCGCTATATGCAGTGTTGTTAATTGTGGATGGCGGGTCATGGTGGAAAGCCTAAATCCCGCCATACATGACAAATAATG TTGGAAATGGTGGCTATATGACGGGATATTGGCCGTGGCGGAAAGCCAAAACCGCCATGAGAAATTGCCATGGCGGATAT TTTGATAACACTAGCTATATGTGGTTTAAGTTGTGTGTTTAGGATGTCAATGTTGAGTTGTGAACAGCATTTTACTCCGG GAGGGTTCTTACTTTTGTCTGTGTATGTTTATATCAGGACTCCACAATCATTGATTGCTGGATTGATGTGGATTGGCGTG AAGGACGGAAGATATCACTTACGGCATGTTTGCAAACAAGAAGATGAGCTGAGTACTTATGGTTGGATAAAGCATGATGG ACGTGATTTTGGGCATCAGGTACTGGCTGACCACGGCATGACCTTGACTACTGAGTTTTTAAAGTCAAAGGGGGACGGAA GTGGTTATGGAGGGGACTGGGCAGTTCGAATTGGTGTGCAAGTTGATAAGTAAGTGATGTTGTCAACTTCAATTCACTTT CATGTAGAAGTATTGAGGCAGATTTTTTTTTAATTTGGTCAAAGTTTGATTCCTTGTATGAGTCTGTGCATATCTTAGTA TTGCTCTATTGAGTGATTTTAATGTAAAGAGTGATTGGCTTTTTTACTGTGGTCCAACCTCAGGTCTAAGTGGAATGAGG AATTTGGGAGAGGCGCCCAGCTCTTTTTCTATTTGGCTGATGAAGGTGGTAATGCTCTGGATGTAAGTAGAGAAAACTTG AACATTCACGAGAATTCTTTACTTGCATCTGGCTCTCGAGCAGACATTGGAGATTGGCAGCTACATTTAAAATCAATGGT AATGCTAGGAAATGGTGTTATGGTTAAATATGTTTAAGGATCAGTTATACATTGGCATTTTTTGGAGTTAATGGTCAATT GCTTGTAATTGGTTAACATTTCCGTAAAGAAACATCCATGATTTCCATTTAGTTTTAAGAATATGGTGAGCCTGTGAATT TCCACATGTTAAAGCTAACATGTTATGCATGCCTTAATTTAGGTTTCTAACTAGCTAGATGAAAATTTATAGTCCTTACT GTTTTTTTTTTGCCTTTAATTAACCCATTCACTTTTTTTTCCTTTTCAGGATAATCTGGAAATGCATTATTCTGGATTTC GCACACCTCACTATCACAATTTGTCTGATCTTGTTGAGGAAAATCTTGCATCGCAAGTATGTTAGGGTACTTCAATTCTG TTTATCCGATGATAAAATTTTCATGTAATGCAAGAGTACGTGGCTATGGAATAATTTTTTTGGTTTGTCTTGACATCTCT ACTTTTGTATATGTCTTAGTAGATAAGAAAGCATACCAAACTGCAGCTATCCGACTCATCAGATGATTCTCCCAATGTGT TAGTTTTTCAGGTAACAGACCATATACACTTCCTGAGACCCATTTAACACTCAATCTCTATTTATGAGTTTCCTTCCATC TCCCTCTCTCTCTAGTCTACTACTACCACTACACTTGAAAGCATATTTCCTTGTGGTTTTGCTCTCTCATGTGCTTTTTA TGTGTTATTTTTTTCAATTCACACTGCAGATTATTGGTGGCTTTCCTTTCACGACAGATATTGTACTTATCTCTGGAACT GATTCCGAAAGTTCAAGAGTAGAAGAGCGTGTCAGCAGTCTTACAGGTTTTTTCGACTTCTCCATAGTGTTTGTCCAACA TGGCATGTATACTTATGTGCTTTCATGAGAAAGAACAAGCTTCGTTCTTTACTTTGTTGTAAGAGTTGGTCATTCCTCTG AAAACCTGCTTCTCATGTTGATGGACAATATCGGGGCTTATGCGTTTTTGTTGCTAATCTGTGTTATTAATGTAATTGCT GAAATTTGGAAGATATGCCTACCATGCGTTCAAATTCATTTCTTTTGGGTTTTGGCATTTTGGTTTGTCTCTTATGGTGC CTTCGTACTTCAATATTATATACTACCTCCATTCCTTATTGACTGTCCAGAAAGAGTACACACATTAAGAAATGCGATTA ATTTTGTTAATTTTCAGAAAAGTATTATTGGTTTCCTCGCAAGGGCATGATTTGGAAAAACATCAATTAATGCTCTCTTG AAATTCTAAGTGGACAAATTAACAATTAATAAGGAACGGAGGTAGTATTTTAAAGAGAACTGGTGCATCCTTTACTGAAT ATGTAGAATTTTTATTTTAATTGACATTCATATGGTAAGTCAGTGTGAAATTGTTTGTTTGTTTGATTGTTCTTCTGCTC AATGTTAGGCACCTCACTCTCTAATCAACTGAAATACAAAGAACAAGCATTTGATGAAAAGTTCGAGAAAATTTTTAATT TGGCTGAGAAGGTACTTAGATTGTTGTCCTTTGACTTATTTATTCTTCCATTTTACTTCTCATACTTAACAATTTATCCT CCTTGTTTGGTCTTTAAATTGTTCTTAAACTTAGGTTCCATTTGATTGAGTAAATTCACGCATACGCATACGTTTATACG ATAGAAATAAATTCTTTAACATAGTAGTGGATTTCCAGGTGGATTCAGAATTTATATCTGTTGGTAAGGCTGCTGTCGGA AACCTTTTAGGAGGCATTGGCTACTTCTATGGCCAGTCAAAAATTGCTCTGCCAAGAATCCTTAATGTAAGTTACTTCAG TTTGTTATTTATAGTCCTTATTGAAGTGTTTGCCACCCCTTAATATCACATAACTTGACCTGTGATTATCATAATTATGA AATGTATCTTTTGTGTGTTCTATTTTTCTGTTGGTTAAGAATAAATTTTAGAGACCAGAGAGAAAGAAGTAGGAGAACAG AGGAAGTGCAATATAGTTACACACCCGTTGCCTTGCATAGAAGCATGTTTTGTATAATTTCTGATTTTCTTCTGATAGGT GGCTATTATGTGGTTCGTCGTTGAAGTGAATTAGATGTGATGTGAAACACTTATCCATCATTTAATTAATCTTTTTCTGT TAAAACAAGATTTTTCTTTGTCAGAATGATTATAGACTGTAAAATAGATCTGGTTTTAGTTGCTGTATATTCATGTGCAG TTGTTTTGCCTCATTACTGATAAACTTCTCATGCTAACAGTGTGGCTTTGCTATTTAAGTACTTCCTGCCAGTGGCTTTA CTTTTCCTCTTTCTACCATCATATAACTATCCTTTGAGCTTTAAATTTGCCGTCCGCAATTTGAGATTCATCCAAATATG CAGTGGGTTGTTTTCCTTTGCAGCTTAGAGAACATGTTAATTATATATCATATTGGCCGGCTGAGCTATACACAGCTGTA CCAAGTCGATCTTTCTTTCCAAGAGGATTTTTATGGGATGAAGGTTTCCATCAACTTCTAATCTGGTTAGTTCCTGTGCA AATAATATTCTTCATGACCATGGCCACCGTGATTGTTATTATTAGTCTTGTTTGAAATTCTCATTAAGTGCAGATAAGTG CTGTATTTTCTTGACTGTGTAAGACATATTGGTGTTATTTAACTAACAAATCATCTGTGATCTGTAAATATGCTTTATTT GTACATGCACATTAACCAGGCGTTGGGATATTCATATTTCATTGGATATCATTGGACACTGGTTAGATTTGATGAACGTT GATGGATGGATACCACGTGAGCAAATTCTGGGTGCTGAAGCACTGAGGTGTTGTACTAAATATTCTGTTCAAATGTAATT ATTGCAGTGGCTTATTGTCTTTAGCTTTCCAAGTGACATAGATTCTTCTGAACTTGCAGTAGGGTCCCTGAGAAATTTGT TCCTCAGCATCCAACTAATGGAAATCCTCCAACTCTATTTTTGGCATTAAATGGTATATGTTAATGTTCCTTTTCTAGTT TTCCCTTTTGCATGATCCTTTTTTTGTAGTTATGACTTATAAAATACATCATTTAAAAAGAGGTAATAAAATATGTTGAT TAGAGTTCATGCAAGCCCTAGGCTGTAAGATAGTTTTCACTCTCATATGTTTTGATGCTAATTTCATTACTTGTACGGTT TCAAAAAGATATTTCCTGCTAAAATAACTGCAAATATATCCTTCAGAATAATGAAGGTAGATTTATATGATCATATGGGA CATGAAGATTCTATAAAGCATATCAAAGTTACCAAGCTATGCAGTCACATAGCTCTTATTCCTTGCTCCCCCTACCCCCA AATTCCCTTATATATTATGTCCTGACCAAAGTAGTTAAAATTCTGTTTTTCTAGATATAATTAACGGCTTGAAGAAAAAT GAATTTGCTGCAATTGATAGAAATGAGATCTCCCTGTTCCTGGAGCGTGCCTTTGTTCGATTAGAAGCATGGTTTGAATG GTTCAATACAACTCAGTCAGGTATATGCTATAATGTATGTGTGGTCTGCTTGAGCACTGGAAATAGGTTGTTAGCTTCGA ACCTTTTTTTCTCTAATTATCATCTCTTTTGAACACAGGGAAACAGATGAGCAGCTACTATTGGCATGGACGGGACAATA GGACAATGCTTGAATTAAATCCCCAGGTTTTAATATGCATTCATTCTTAATGTACTTGTCTACAATTTCAATCTTATATG CATGGCTTAGCAGATTAACTTGACCAAAACAATTATTGGCATGCTTGAAACTGATAGCAATGTTAAGGCAAGTAGGCAAT CATGGATGAGATTTATTGTTAAATTGCTTTTACCACATGCCAGAAACCTACTGAAGCATAGAGATGGAAACACCGTAGCT ATAGACTTGTCACTTTTGGCTATTGGTTGCCAATTTATTTTATGGTGGTATAAACAGAATACAATAGGACTTATTTTCCA GCAAAATTGAGCCTATTGGATGGCCTTATCTGTTGTTACTTAAAACTAAAAAGTCTTAAAAACAGGAACTAGACGAGTCT GAAACCTGAATTCTCACTCACTTGCAGTTATATTGCTCTTTGAACCACCACATCTGAGGATCATGTAACAACCATTGGTG TTTATGTTGGTCAATTATGACAAAGCTTTCTATTCCTGAATGAAGATGTATGCCCTAATTAACATTACCTCTGTCATTTT CAGACACTGTCCTCTGGATTCGATGATTATCCTCGTGCTTCACACCCAAGTTCAGATGAACGCCACTTAGATCTTAGATG TTGGATGTTACTTGCAGCAGAATGTATGCATTCCATTAAAGAGTTGTTGGATAAGGAAACCAAACCTGGCAAGGTATAAT TTGAAAATAATAAATGTTGGCAGAAAAGAGTTAAATCATCTAATTTAATTGACATAATGAGTGAATTATGCAGGATTATG GTTCTACTGCAAAATTGCTATCTGATCATGAGTTACTGAACCAGGTATTTTCCTTTGCTCCCTTCTCCCTTTCTTTGGAG CTGTTGCACACCTTGATATTTCATTATGCATCTCTGCTGTTGGTGATGATACACTGGAGCAGGACCAAAAGAGAGTGAAG ATTAAGAGGATAGAGAATTAAAGGGAGGAAGTAAGAGAGAAGAAACCTTGACACATCGTTATAGAATAATTAGAATCAGA AAAAACAGAGATAACAAATTAGTATTTTATGGGAAATGTTTTTTTATGTTCTTATTTAAATCAGGTTTCTAATTTGGAAA ACAAGGTTCTCCCTGACTTTTTCTCTTACAATCTAGATATTGCAAAGTAGTCTCATTTGAGGGATCCTTAGGTTCTTCAT CTAGTCCGTCTCCAAGTTCATTGTCTAATGTGAACTTCTCAAGAACCCCCTGAGATGGATGTATGAGACCTTTGACTGTG AAAACACTGCTTATACATGGAATATTTTTCGCTTGTTTTCTCTTGGCAATTGAAATCTCCAAACGATCTTCCTGAATCTA GTAGTATAAGTAAGATTCTGTGTATCTATCATGTATATTTGATGTGGAGAAAATAAGTTGATTTTCCTTTCCTTTTAAAC GGTTTTTGAGAAAAAGAAAGTTCAAACGAAACCATGCTTTCATCAAATGTTTGCTTGGGTGACACTAGAAAGTTAATTTG TTGTTGCTACTATAGTTTTGTCCATTTCTAATTTGTGTTTGATGTCCATACAGATGCATTTTGACGATACATTTGGTGCT TACTTTGACTTTGGAAATCATACAGAAAAGGTATACTGTGAAGTTATTTATGTTTAGTATCATCACACACAATGTTGCTA GATTAACAACAATGCGCAGCCCCTCCATTCAAGTCTAAGAATGAGATTTTCCTTACATGTTAAATGATGTTAGGTTCAAC TTAAATGGAAAGAAGTGGAGACAGGACAGAATTATGCTGGACGCCAGCTTGTCCGTGATGTTTTGGAGAGGCCTGTGCTG AGATTCGTTCCTCACATTGGTTATGTTAGTTTGTTCCCATTCATGGGGAGGATCATTCCATCTGTAAGACATTCACATTA ATTCTGAATAACATGATTTTTTATGCTAAGAATTAAAAAGGTGCATTTTTAATACTGCTGTCTCATTCAGGGATCATGGG TTCTGGAAAAGCAGCTTGAACTCATCTCAAATCACAGCCACTTATGGACGGACTTTGGTCTTCTTTCTCTTGCCAAATCA AGGTCTACAACCTATGCTCTAATGCACTTGAGTTCTGACTGATTTGAGTGACCTTATTCAGCAAATTGATTATTGTGAAC CAAAACAATATTTTATACTCTGCAGTTCCATGTACATGAAACGCAACACAGAGCATGACCTTCCATATTGGAGAGGTACA ATTTGGATAAACATGAATTACAGAATTCTTTCAGCTCTCCACCATTACTCCAAAGGTAATAGGGACAGGCCTGGGCAAAA ATATCTCTAAACATTCCTCTTCGTATATGTTCCTAGAACTAATCTTTAGGTTTAATCTTGCAGAGGATGGACCATATCAA GACAGAGCAAAAGCTATCTACAAAGAATTGAGAAGCAATTTAATTAGGTATTGTCTTTGTCTGGTACTGCTGGAAGCTTG TTTAAAGCTATTTGTTGTTTTTTAATATAATGTTTCTCCACCTTACTGCAGAAATATAGCTCGCAATTATCAACAGACTG GATTTTTTTGGGAACAGTACGAGCAGGTTAAGGGCAAGGGAAAAGGGGCACATCCATTTACGGGTTGGACATCACTTGTA GTATTAATCATGGCGGAGACTTATGGCACAATTTAGAATAAAACTCGGCGCGGTGACACACGATGCTCCCTTCTCATTGT TTCATCCATGAGTACCACTGAGGCAGTAAGTGGGGTACAACTTTATAGTTGAAATATGATTCCATATTTCCATAGAACAT TTTAATGTCTAAAGCCTCTCAAATATCATTATGATGGATGTGAATTAGATTCTATGTGCTTGGTAAGAAATCCTCATATA TTCCATCCGGTTAGAATACAGGGAAAGTTGAATGGGGAACGCTTGCGCAAGCGCTACAAATTCATACGGCTGTTGCTTTA TAATTTGTATTATAGGCAATTTCTTTGGTACCCCTCAAAATGGAAGGGTTTTATACTTTTTGCTTTGATTTGTCATAATT TCTTTTGTAACATTTTTTATAAATTTGCAACTCAGTGTCTACCGGGTTAAATATCCCACTCTACATTTGCGATTTCAATT TTTTATGATAAATAAAAACATATTTCTTTTGGAAATTACTGAAACAACAAACTCTGCAATACAGCACACAACAACAAATC ACATGCATTCATTGATAGCACGTATCCCACAGCCAAGAAAAAAGATCGACAAATATACAAGCAGTTGGTGAAATTCTATA CAATATTGAACAGAAAGAAAAATAGAATAGACTGAGGAAAATACCTGGAAAGCGTACATATAGAAATAGGGTTGTTTTTA ATTAAACGAGCCCCAATTGATGGCGCCAACCAACATAGACCACAATTGTATTTAGTTTAATCCATTATAAAACCTCTAAA TTCACATGTGACAACTTCAGCACTAGTAGTACTTTCTGGACTTTAATATCTCTCGAGAACAACACATATCTTTGTAAAGG TGAGATTTGCTTTTATAAGTGATTGTGGTGAGATTGATCTCTCGCCTTACTATTAGCACACGCACTAAGCGCTAAGAAAT TTACGAGTAATTGTTTTTAAATTTGCAAGAATTAGAAATTAAAC 

CDS sequence (LotjaGi4g1v0364200.1) extracted from Lotus japonicus Gifu v1.2 CDS.

ATGACCGGAAGCGGAAGAACAACCGCTCGGAGCAGACTCCGATCCTCCTCCTCCTCCGACGCCGCCGATCCTCTCCGCGA ACGGAGGCCCCGCCTTAACCGCCACGCCAGGAGCAAATACGGCAGCTCCATCCCGTTATTCAACAATACCAATCTCAAAG TGGTTCTCGCTTTCAGCTTCCTCGCATTCTTCCTCATCTGGTTTCTGATCCACCACCTCGTGAACTCCGTCGCCCAGCCT GGTCTTCCTCGCGAAGTCACGCCGTTTCCCGCGCCTAAGATCATGGACCTTCCTCAGTTTCAAGGTCAGCACAAGGAGAG TTTGTATTGGGGAACTTATCGTCCTCATGTCTATCTCGGAATTCGTGCCAGGACTCCACAATCATTGATTGCTGGATTGA TGTGGATTGGCGTGAAGGACGGAAGATATCACTTACGGCATGTTTGCAAACAAGAAGATGAGCTGAGTACTTATGGTTGG ATAAAGCATGATGGACGTGATTTTGGGCATCAGGTACTGGCTGACCACGGCATGACCTTGACTACTGAGTTTTTAAAGTC AAAGGGGGACGGAAGTGGTTATGGAGGGGACTGGGCAGTTCGAATTGGTGTGCAAGTTGATAAGTCTAAGTGGAATGAGG AATTTGGGAGAGGCGCCCAGCTCTTTTTCTATTTGGCTGATGAAGGTGGTAATGCTCTGGATGTAAGTAGAGAAAACTTG AACATTCACGAGAATTCTTTACTTGCATCTGGCTCTCGAGCAGACATTGGAGATTGGCAGCTACATTTAAAATCAATGGA TAATCTGGAAATGCATTATTCTGGATTTCGCACACCTCACTATCACAATTTGTCTGATCTTGTTGAGGAAAATCTTGCAT CGCAAATAAGAAAGCATACCAAACTGCAGCTATCCGACTCATCAGATGATTCTCCCAATGTGTTAGTTTTTCAGATTATT GGTGGCTTTCCTTTCACGACAGATATTGTACTTATCTCTGGAACTGATTCCGAAAGTTCAAGAGTAGAAGAGCGTGTCAG CAGTCTTACAGGCACCTCACTCTCTAATCAACTGAAATACAAAGAACAAGCATTTGATGAAAAGTTCGAGAAAATTTTTA ATTTGGCTGAGAAGGTGGATTCAGAATTTATATCTGTTGGTAAGGCTGCTGTCGGAAACCTTTTAGGAGGCATTGGCTAC TTCTATGGCCAGTCAAAAATTGCTCTGCCAAGAATCCTTAATCTTAGAGAACATGTTAATTATATATCATATTGGCCGGC TGAGCTATACACAGCTGTACCAAGTCGATCTTTCTTTCCAAGAGGATTTTTATGGGATGAAGGTTTCCATCAACTTCTAA TCTGGCGTTGGGATATTCATATTTCATTGGATATCATTGGACACTGGTTAGATTTGATGAACGTTGATGGATGGATACCA CGTGAGCAAATTCTGGGTGCTGAAGCACTGAGTAGGGTCCCTGAGAAATTTGTTCCTCAGCATCCAACTAATGGAAATCC TCCAACTCTATTTTTGGCATTAAATGATATAATTAACGGCTTGAAGAAAAATGAATTTGCTGCAATTGATAGAAATGAGA TCTCCCTGTTCCTGGAGCGTGCCTTTGTTCGATTAGAAGCATGGTTTGAATGGTTCAATACAACTCAGTCAGGGAAACAG ATGAGCAGCTACTATTGGCATGGACGGGACAATAGGACAATGCTTGAATTAAATCCCCAGACACTGTCCTCTGGATTCGA TGATTATCCTCGTGCTTCACACCCAAGTTCAGATGAACGCCACTTAGATCTTAGATGTTGGATGTTACTTGCAGCAGAAT GTATGCATTCCATTAAAGAGTTGTTGGATAAGGAAACCAAACCTGGCAAGGATTATGGTTCTACTGCAAAATTGCTATCT GATCATGAGTTACTGAACCAGATGCATTTTGACGATACATTTGGTGCTTACTTTGACTTTGGAAATCATACAGAAAAGGT TCAACTTAAATGGAAAGAAGTGGAGACAGGACAGAATTATGCTGGACGCCAGCTTGTCCGTGATGTTTTGGAGAGGCCTG TGCTGAGATTCGTTCCTCACATTGGTTATGTTAGTTTGTTCCCATTCATGGGGAGGATCATTCCATCTGGATCATGGGTT CTGGAAAAGCAGCTTGAACTCATCTCAAATCACAGCCACTTATGGACGGACTTTGGTCTTCTTTCTCTTGCCAAATCAAG TTCCATGTACATGAAACGCAACACAGAGCATGACCTTCCATATTGGAGAGGTACAATTTGGATAAACATGAATTACAGAA TTCTTTCAGCTCTCCACCATTACTCCAAAGAGGATGGACCATATCAAGACAGAGCAAAAGCTATCTACAAAGAATTGAGA AGCAATTTAATTAGAAATATAGCTCGCAATTATCAACAGACTGGATTTTTTTGGGAACAGTACGAGCAGGTTAAGGGCAA GGGAAAAGGGGCACATCCATTTACGGGTTGGACATCACTTGTAGTATTAATCATGGCGGAGACTTATGGCACAATTTAG 

Protein sequence (LotjaGi4g1v0364200.1) extracted from Lotus japonicus Gifu v1.2 Proteins.

MTGSGRTTARSRLRSSSSSDAADPLRERRPRLNRHARSKYGSSIPLFNNTNLKVVLAFSFLAFFLIWFLIHHLVNSVAQP GLPREVTPFPAPKIMDLPQFQGQHKESLYWGTYRPHVYLGIRARTPQSLIAGLMWIGVKDGRYHLRHVCKQEDELSTYGW IKHDGRDFGHQVLADHGMTLTTEFLKSKGDGSGYGGDWAVRIGVQVDKSKWNEEFGRGAQLFFYLADEGGNALDVSRENL NIHENSLLASGSRADIGDWQLHLKSMDNLEMHYSGFRTPHYHNLSDLVEENLASQIRKHTKLQLSDSSDDSPNVLVFQII GGFPFTTDIVLISGTDSESSRVEERVSSLTGTSLSNQLKYKEQAFDEKFEKIFNLAEKVDSEFISVGKAAVGNLLGGIGY FYGQSKIALPRILNLREHVNYISYWPAELYTAVPSRSFFPRGFLWDEGFHQLLIWRWDIHISLDIIGHWLDLMNVDGWIP REQILGAEALSRVPEKFVPQHPTNGNPPTLFLALNDIINGLKKNEFAAIDRNEISLFLERAFVRLEAWFEWFNTTQSGKQ MSSYYWHGRDNRTMLELNPQTLSSGFDDYPRASHPSSDERHLDLRCWMLLAAECMHSIKELLDKETKPGKDYGSTAKLLS DHELLNQMHFDDTFGAYFDFGNHTEKVQLKWKEVETGQNYAGRQLVRDVLERPVLRFVPHIGYVSLFPFMGRIIPSGSWV LEKQLELISNHSHLWTDFGLLSLAKSSSMYMKRNTEHDLPYWRGTIWINMNYRILSALHHYSKEDGPYQDRAKAIYKELR SNLIRNIARNYQQTGFFWEQYEQVKGKGKGAHPFTGWTSLVVLIMAETYGTI 

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 34 34 -
Phobius 1 53 53 -
MobiDBLite 1 20 20 -
TMHMM 52 74 23 -
Phobius 54 74 21 -
Phobius 75 852 778 -
PANTHER 82 850 769 0.0
PANTHER 82 850 769 0.0
Gene3D 95 376 282 2.6E-57
Pfam 107 272 166 3.4E-44
Pfam 350 847 498 2.7E-217
SUPERFAMILY 358 850 493 2.61E-64
Gene3D 377 850 474 4.6E-168

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.
Molecular function Mannosyl-oligosaccharide glucosidase activity Catalysis of the exohydrolysis of the non-reducing terminal glucose residue in the mannosyl-oligosaccharide Glc(3)Man(9)GlcNAc(2).
Biological process Oligosaccharide metabolic process The chemical reactions and pathways involving oligosaccharides, molecules with between two and (about) 20 monosaccharide residues connected by glycosidic linkages.

Expression data

Expression pattern

Expression pattern of LotjaGi4g1v0364200.1, powered by ExpAt. For advanced configuration, data transformation and export options, view expression data in the ExpAt application.

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