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LotjaGi2g1v0413300.1

Overview

Field Value
Gene ID LotjaGi2g1v0413300
Transcript ID LotjaGi2g1v0413300.1
Related isoforms 4
Lotus japonicus genome version Gifu v1.2
Description Malate dehydrogenase; TAIR: AT2G22780.1 peroxisomal NAD-malate dehydrogenase 1; Swiss-Prot: sp|P37228|MDHG_SOYBN Malate dehydrogenase, glyoxysomal; TrEMBL-Plants: tr|A0A1J7GRW6|A0A1J7GRW6_LUPAN Uncharacterized protein; Found in the gene: LotjaGi2g1v0413300
Working Lj name n.a.

Sequence information

Genomic sequence (LjG1.1_chr2:91041957..91047194) extracted from Lotus japonicus Gifu genome v1.2.

TGAAAGTCCAAAGTGAACTACAATGAACGCACATGTTAATTTATGACATTGCACACGTTCCTTGTACAATCAAAACGTGA CATTCTGCTAAAAAATATACTTACTATAAAAGATTTCTCCAGAATTATTTTCATGGTAACCGTCCCAAATTATTATTGAG CATTTTCCATACATAACATAACCCATCTGCGATAAGGTCAATCTTCACACTTCCCAATTCACATAACCTGATCTGATCAA GCTTCTTATACAGAGATCAATCAATCAATCATCAAATTCATATTCCACAACAACAATCTTCATCGTTTTCCACTGTGAAT TCCAAATAGTATTATGGAGCCAAATTCAGATGCTAATCAGCGAATTGCCATGATCGCTGCTCACCTCAACCCTCCCAATC TCATGGTTCGTTTCGTGATCCCTTGCCTACTCTTGTTTTCTTCTTCGATTAATCCTGTTTCGTTTCTGTTGTGATTGAAC AGATGGAGGATGCTTCTTTGAGAACTGCCCATTGTCGCGCCAAAGGTGGAGCTCCGGGATTCAAAGTCGCCATTCTGGGT GCTGCAGGTGGCATAGGTCAACCTCTCGCCATGTTGATGAAGATGAACCCACTCGTTTCGGTTCTCCATCTCTATGATGT CGTCAACACCCCTGGTGTCACTTCTGATATCAGTCACATGGACACTGGTGCCGTTGTATGTATTTCCTTCAATCTCAATA TGCGAATTCGTTTTCACTGAAACAAGCAAAACCCAGATACATTTTCTGATTTTTTTACCTGAATCATGTAGAAATTAATA AACTTGCTCAGTGAATTCTTGTGGGTAGGTTTGGTTGACCTTGTATCCACAAATTAGGCCTTATCATGAATCATGTCTAA ATGTGGATTTGTGTGATTGTGTTAATGTTTAGCTCTGTTTGGTTTGCTTAGCCTGCTGAGATGACTAACATTTGGTATTT AGGTTCGAGGATTTTTGGGGCAAAAGCAGCTTGAGGATGCATTGATAGGCATGGACTTGGTGATCATTCCTGCTGGTGTT CCACGCAAACCTGGAATGACAAGAGATGATCTCTTCAATATTAATGCTGGAATTGTTAAGACACTATGTGAAGGGATTGC AAAGTGCTGTCCAAAAGCGATTGTCAACTTGATAAGCAATCCGGTTAACTCCACTGTCCCGATTGCAGCTGAAGTTTTCA AAAGAGCCGGTACATATGATCCCAAGAGACTTTTGGGAGTGACGATGCTTGATGTTGTTAGAGCAAATACGTTTGTGGTA TGTGCCACTATTCTTGAAATTAATAGATGCAGCTCTTTATAGTTAATGGATAATTAGGATGGTGAAGTGAACTTTTCAAG TTAAACTAAAAGAAAATCTCAAATTTGAAATTCCTGTTGTTTCAAACTTTGACTAGCTATGATTATGCTTATTACTTAAT TATGACAACCAATGGTACTGCAATTAAGGAATTAACTCTTGGGTGAGTTGAACTGACTGCTGCATTGTCATAATCTTTTA TATTTTTTATGGAGAAAGGCTGAAAGGCATATTAGACGAGGGCATGGGAGGAGTTCATTTTAACTGTACAGCCTTACCTG AAAATGTAGGATCAACCAACAGAGGTAAGGAGGGCGGAATGGGAAAAGGGGTTTCGTGCTGATACTTCAGAGAATAACTG AATGCTGAGCTGGCAGGCATATGAGAATATTAGAGGGGAGGATAGGAAGTATGAGGGCTGACAGATAATGGGTAGGAAAT TGTGGATCCCTTGAAGAATCTTGGCATTTTCTCTCTCTCTTTTCCCGTGCTACAGAGAGTGAGAGCAAGGGACATTTTTT TTAATGGTGATATGAGTAGTAATATCAGTTCAGAATATCGAATTCTGGTTTTGTGAATACATACATCAATAATAGTCATA CCTGATTCCAGTTTCTATCACGTCCATTTGAAAATATAGTTTTTGGCTTTTGTAACATAGCTTGTTAAAGCCTGTGTACC ATAAAATAAAAGTGTGCTAGTAGCTCTCTCAGTATTATTTCCCAATGTTGTCTGTTATTAGTTATTACTGTATCAAATTT TGAACTGCACTTCATTAACTTTTCCCTGTCGGGTCTGAACATGCAGGCTGAGGTTCTAGGTATTGATCCAAGGGATGTGG ATGTCCCAGTTGTTGGGGGACATGCAGGTGTTACAATTTTACCTCTTCTTTCTCAGGTCTGCACTCTAACTATTTCTCAT TCTTAATTGTTGCTGTGTCTTATTTTGAATTCTTACAAATGTTATACTCTAATTTATTAGCTGACAGAGTCTCCCAAATT TTAGGTTAAACCTCCTTGCTCTTTCACCCCAAAAGAAATTGAGTACTTGACTGATCGCATACAAAACGGTGGAACTGAAG TTGTTGAGGTGAATATTTATATATTTTCTTAGTTTCTGTTTACTTGAATACTAATAACTAATACACCTAAATTCCATTAT CACTCTTGTTGTTTACCCTTCAACCATGGAGGTCTTAATAATTAATTTATTAAATGTCACTATGTCAGACTTAAAATAAT ATCTGGTGAGATAGCAGAGGGGTTGAACTGATCGGCAATCTTGCACTCCTGCCTATTATGGAGTTCAATTCAATGAGTGC ATGTTAATAAATATAGAAGAATCGTGTAATGTGCCAAAATTGTTATGCAGGAAGCTACAAATAGTTGCTTGTGGCATACG GGATTATGAGTTTCCCAAAAGCTAAACCATATATTCAGTGAATTTGAGTTGGCTTATGCTAAAGATGATTCAAACTTCAC ATGGAAGCAGATGTAAAATAATTGTGCCCCGATCCTTTATGTTATTTTTTACTTGGTAGTTTGCAATCTCACCAAACCCC TAGTTCATAAACTTACCTAGACACATGCCTAGGAAATTCTATGAGGAAAGGTTTCCTATATGCAGGGAAACGTAGATTTC AGTAAAATCTTGAATTTGGGATGGGCCTAACTCAACCCCAAAAGCTTGCTAAAGGGTGAGAATTGTTCTACCTTTTATGA AGATTTATTTGGTCATATCTTCAGTCAATGTGGGACCGCTCAGCACATCTCTCTCATGCCCAAGACTGGACATATGGAGC ATGAAGTTTTCAAAACTGGCGGGTGACCTAGTTATGAAGGGCCCAACAAATGGTACAATCTTAAATTCAGGCCTAGGACT AACCTTCACTCGTGAGCTAGCTTTTGGGATAGAGTTAGGCTAATAAGTTTTGAAAGTAATCACTAATCTGGCTTAGTAAA ATGTGTATCAGTTAGTACTTTTTGGCAGTAAATTCGAGCTATATATGAATCCTCTATTGCTACGGATTATCTACACGTTG GAATTTTGATTTGGACAATGTTGTAATTTTCTCTAGGCCAAAGCTGGAGCTGGGTCCGCAACACTATCAATGGTTAGTGA CTTATTTTTACTTTATATATAATACATGTGATGTGAGGAGAATATGCATGTTTTTGTAGAAGAAATTAATCATGACCATA TATGCTATAGGGTGTGCATAACATTCATGTCATTTTAACTATTTCGGTTCTAGTAAATGTAATCCCGAGTATGTAATAAA GTGCAGGCATATGCTGCTGCTAAATTTGCAGACGCATCCCTTCGCGCTCTAAGAGGAGATGCTGGCATCATTGAATGTGC ATATGTTGATTCACAGGTATGCTAAACAGACATCTTAAGGTTGCCATGCTTATTCCCTTGTCATATTTTAGCAGATTGTG ATATTATAGTGTTGATTTTTCTGCTCAAAGTGGGAGCTTGAATAAATGTTTTCTTAAAAACTTACAATGTGTGTCATACA TAGGTGACTGAGCTCCCGTTCTTCGCATCAAAAGTACGACTTGGGCGTGGCGGTGTTGAGGAAATTCTTCCTCTTGGTCC CCTGAATGATTATGAGAGGTAAGCAGTAATCACAGACATTTTAAAAAAACTGATGTTGTCGTTATTCAGGTGAGACTGAA ACAATAGAGTTTATATGCTTGTGTTTTGAAATAGGGAGAGTTTGGAGAAGGCCAAGAAAGAGTTGGCAACAAGCGTGGAG AAGGGCGTTTCTTTCATCAGAAAATGACAAGTTTGATGATCCGGAAGATAATAAGTGGTGGAGGAATTGAGGTGTTCTCG ATGTGAAATATAAATTTTTTGAATTAGTTAAGCAGCAGGTAAGTATGGATATCGGAATATCTATATCTTTTGAACGATGT AATAATAATAAATGGATAGTATTCAAGGTATAATGATCATCAAACAGCGACTATATAATATACTTCAATACTAAAGAAGG GATTAGTTTATCCCGTTTATAACGTTGGAACCAACATAGTGGATTGTCAAATACTTGGTACGAACCAGAAAGGATAAGGG ACATCAGAATGATCTGATTTCTCTACAGAAAAATATTTGGTGCTGCTGCTATCAGTCAAGTGCCTGATCCCAAACTGAAT GTCTTGACATGGATCTGTAAGACATTCAAATGAAAGAGCAAAGTAGACACTGTTTTCTCTTATAATTGACTTGTGAGTGC TATTGAATGCAGCTCTTGACATTACCATGCTCTTGCAATAACTAACAAAAACCACATTATCATCCAAGCTTTCACACTTT GTCCACGCAATAGGTTCCTTATTCATGTCCAACTTGAACACTTCGACTCCAGTAATATCGGGTGAGTTAACAAATTTTGT GACCATATTCATATAGTTCACATCTTCAGGTTTATAAACTGCACTGCATATCACATAAATGAGAAATAATTGCTTCAACT TTTCGTGTTTGGCTAAACGGCAGAAGGCATGACCTGAAATATGACGTTGGCTATCAATAGTTCTTGATATTTGTGGCGTG GATTTTTCCGGAAGCACACTTAATACTTTGTGCTTTGGAGAGCCATTAGTGGAATCTTTCAGATCATAAACCAACATGGA ATTCAAAGGTCTGTTAGTTCTAACATACAACTTGGAACCCATAATTTCTATATCCAAAAAATGGAACACAGAATCTTTCT CTATTTCAATCATGTTCCAAGACTCGTCAAAGAGCCTATAAAATGCAATGTGACAAAAATCGTTGCAGAGACCGGCCAAA AAACAATCTGAGTCATAACCATCCGGTGTGGAAGAGACCACCATTTTCCCCATGGACAATTTCATATCTTGGATTTGAGT GTTGAAGGGAAAGTACAACGGGGGTGGGACCGAAACAC 

CDS sequence (LotjaGi2g1v0413300.1) extracted from Lotus japonicus Gifu v1.2 CDS.

ATGGAGCCAAATTCAGATGCTAATCAGCGAATTGCCATGATCGCTGCTCACCTCAACCCTCCCAATCTCATGATGGAGGA TGCTTCTTTGAGAACTGCCCATTGTCGCGCCAAAGGTGGAGCTCCGGGATTCAAAGTCGCCATTCTGGGTGCTGCAGGTG GCATAGGTCAACCTCTCGCCATGTTGATGAAGATGAACCCACTCGTTTCGGTTCTCCATCTCTATGATGTCGTCAACACC CCTGGTGTCACTTCTGATATCAGTCACATGGACACTGGTGCCGTTGTTCGAGGATTTTTGGGGCAAAAGCAGCTTGAGGA TGCATTGATAGGCATGGACTTGGTGATCATTCCTGCTGGTGTTCCACGCAAACCTGGAATGACAAGAGATGATCTCTTCA ATATTAATGCTGGAATTGTTAAGACACTATGTGAAGGGATTGCAAAGTGCTGTCCAAAAGCGATTGTCAACTTGATAAGC AATCCGGTTAACTCCACTGTCCCGATTGCAGCTGAAGTTTTCAAAAGAGCCGGTACATATGATCCCAAGAGACTTTTGGG AGTGACGATGCTTGATGTTGTTAGAGCAAATACGTTTGTGGCTGAGGTTCTAGGTATTGATCCAAGGGATGTGGATGTCC CAGTTGTTGGGGGACATGCAGGTGTTACAATTTTACCTCTTCTTTCTCAGGTTAAACCTCCTTGCTCTTTCACCCCAAAA GAAATTGAGTACTTGACTGATCGCATACAAAACGGTGGAACTGAAGTTGTTGAGGCCAAAGCTGGAGCTGGGTCCGCAAC ACTATCAATGGCATATGCTGCTGCTAAATTTGCAGACGCATCCCTTCGCGCTCTAAGAGGAGATGCTGGCATCATTGAAT GTGCATATGTTGATTCACAGGTGACTGAGCTCCCGTTCTTCGCATCAAAAGTACGACTTGGGCGTGGCGGTGTTGAGGAA ATTCTTCCTCTTGGTCCCCTGAATGATTATGAGAGGGAGAGTTTGGAGAAGGCCAAGAAAGAGTTGGCAACAAGCGTGGA GAAGGGCGTTTCTTTCATCAGAAAATGA 

Protein sequence (LotjaGi2g1v0413300.1) extracted from Lotus japonicus Gifu v1.2 Proteins.

MEPNSDANQRIAMIAAHLNPPNLMMEDASLRTAHCRAKGGAPGFKVAILGAAGGIGQPLAMLMKMNPLVSVLHLYDVVNT PGVTSDISHMDTGAVVRGFLGQKQLEDALIGMDLVIIPAGVPRKPGMTRDDLFNINAGIVKTLCEGIAKCCPKAIVNLIS NPVNSTVPIAAEVFKRAGTYDPKRLLGVTMLDVVRANTFVAEVLGIDPRDVDVPVVGGHAGVTILPLLSQVKPPCSFTPK EIEYLTDRIQNGGTEVVEAKAGAGSATLSMAYAAAKFADASLRALRGDAGIIECAYVDSQVTELPFFASKVRLGRGGVEE ILPLGPLNDYERESLEKAKKELATSVEKGVSFIRK 

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 6 355 350 1.3E-213
PANTHER 6 355 350 1.3E-213
Gene3D 36 188 153 5.8E-70
PIRSF 43 352 310 3.6E-63
CDD 44 353 310 0.0
SUPERFAMILY 44 187 144 9.54E-37
Pfam 45 187 143 1.2E-45
TIGRFAM 45 354 310 2.8E-127
ProSitePatterns 188 200 13 -
SUPERFAMILY 188 353 166 1.42E-47
Gene3D 189 355 167 8.1E-63
Pfam 189 352 164 1.6E-49

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.
Biological process Carbohydrate metabolic process The chemical reactions and pathways involving carbohydrates, any of a group of organic compounds based of the general formula Cx(H2O)y. Includes the formation of carbohydrate derivatives by the addition of a carbohydrate residue to another molecule.
Biological process Tricarboxylic acid cycle A nearly universal metabolic pathway in which the acetyl group of acetyl coenzyme A is effectively oxidized to two CO2 and four pairs of electrons are transferred to coenzymes. The acetyl group combines with oxaloacetate to form citrate, which undergoes successive transformations to isocitrate, 2-oxoglutarate, succinyl-CoA, succinate, fumarate, malate, and oxaloacetate again, thus completing the cycle. In eukaryotes the tricarboxylic acid is confined to the mitochondria. See also glyoxylate cycle.
Biological process Malate metabolic process The chemical reactions and pathways involving malate, the anion of hydroxybutanedioic acid, a chiral hydroxydicarboxylic acid. The (+) enantiomer is an important intermediate in metabolism as a component of both the TCA cycle and the glyoxylate cycle.
Molecular function Oxidoreductase activity Catalysis of an oxidation-reduction (redox) reaction, a reversible chemical reaction in which the oxidation state of an atom or atoms within a molecule is altered. One substrate acts as a hydrogen or electron donor and becomes oxidized, while the other acts as hydrogen or electron acceptor and becomes reduced.
Molecular function Malate dehydrogenase activity Catalysis of the reversible conversion of pyruvate or oxaloacetate to malate.
Molecular function Oxidoreductase activity, acting on the CH-OH group of donors, NAD or NADP as acceptor Catalysis of an oxidation-reduction (redox) reaction in which a CH-OH group acts as a hydrogen or electron donor and reduces NAD+ or NADP.
Biological process Carboxylic acid metabolic process The chemical reactions and pathways involving carboxylic acids, any organic acid containing one or more carboxyl (COOH) groups or anions (COO-).
Molecular function L-malate dehydrogenase activity Catalysis of the reaction: (S)-malate + NAD+ = oxaloacetate + NADH + H+.
Biological process Oxidation-reduction process A metabolic process that results in the removal or addition of one or more electrons to or from a substance, with or without the concomitant removal or addition of a proton or protons.

Expression data

Expression pattern

Expression pattern of LotjaGi2g1v0413300.1, powered by ExpAt. For advanced configuration, data transformation and export options, view expression data in the ExpAt application.

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