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

LotjaGi3g1v0230400.4

Overview

Field Value
Gene ID LotjaGi3g1v0230400
Transcript ID LotjaGi3g1v0230400.4
Related isoforms 10
Lotus japonicus genome version Gifu v1.2
Description Gamma-glutamyl phosphate reductase; TAIR: AT3G55610.1 delta 1-pyrroline-5-carboxylate synthase 2; Swiss-Prot: sp|O04226|P5CS_ORYSJ Delta-1-pyrroline-5-carboxylate synthase; TrEMBL-Plants: tr|I1JLN5|I1JLN5_SOYBN Uncharacterized protein; Found in the gene: LotjaGi3g1v0230400
Working Lj name n.a.

Sequence information

Genomic sequence (LjG1.1_chr3:35987362..35994185) extracted from Lotus japonicus Gifu genome v1.2.

GGAAAATGGGAACTTGATGGAGCAGAAGAGCAGAAGCAATAATAATAATAATGGCTTGACCTCTCACTCTCACCACCATG ACCCGTGATTCGTAGGGCCCACAAAGCCCAGGTTTACACGTGGCAGATCCACCGCGTCTCTTTACTCTGCTTTCCATCTA TCAAAAAAAAAAATATCGTTTTCGTCGCCCATTTAACTATTCACATTCTCTTCACTACGATTCGCTCACTCTCACTCACT CACTCACTCACTCGCCGAGTCAACTCATCTTGACTCGCTCCTCTGTCTGCGTCTTCATTGCAATTTTCATGGATTCCACC ACCACCATGGATCCCACTCGAGATTTCATCAAGTCTGTTAGGCGTGTTATCGTCAAGGTCTCGTTTCTTGATCATTCATC ATCAACAACGTGCATTGCTGTTTTTTTTGTTCTTCCTTGAATCATGAAATCGGAAAACCAAGAAACAACGATGTTCAATG TGTTTTCTAGTTCAAAAATTACATTATGTATAGTTTCATCAGTTTTCAATGTTGTGTAACATGTATTTCTTTTACTAAAC ATGTATATGTTTGTTCGGTTGGTAAGAACGAATCACTTCCCCAGAACGAACAACGTTGTGTGTTTGATTTCCGCTGCCGA TGTTATGGCTGAGTTTGTTGGCAATATATAAGCGACCTATAGTCCCGGAGGCATGTTTTGGCCTGTGGTCGTGAACTCGT GATCGTGATCGGAACTGAACACGAAAAGATATATATATATATATTTCTTTTTTGACTGGAATTGTAATTTCTGATGCATT GTATCTAGAAGCCACTTCACATGATGTATGAAGCTTTAATTGATTTCCCTGGATTTTTTTTTTCACTCATTCTGCTTCAA CTTTTGATTTATTGTGTTAGTATCTTGTTGATTATGTTTATTCTATTTTTTTTTTCTGAGTTATGCAATTTTTGCATTTG TTTGATGGATTTTCTGTGAATCATTGAAGGTTGGAACAGCTGTTGTTACTCGAAGTGATGGGAGATTAGCACTTGGCAGA CTTGGAGCTCTCTGTGAGCAGGTATATATACATATATATGTCTCTTTTGTATTCAATTGTTGGTGGTTTTACAAATTTAT GTATTTTAAAATTTAAACATTCTTCAATGGCTATGTATCTAGTGTACTGTGTACTGTCTCTATGTGTGTGTTTTTTGTTT TGTTTTTACTGAGAGCTGTCTTTGCAATGGTGATTGCAGCTTAAAGAACTAAACACTCAGGGGTATGAAGTCATATTGGT GACTTCAGGTGCTGTTGGTCTTGGCAGGCAAAGACTTAGATATCGCAGATTGGCCAATAGCAGGTTCTTATAAAAATATA TCTTTTTGTAAATTCTATGGTGGTTGTATGTCTTTTTCAATTGCATGGATCTAATGTCCTACCAAGTACCAATAATGGGG TTTTTTTAGAACTGAAACAAATTTAATATTTTATCCCTGGTGCTTCATTTTCTATCTTTTAATCCCAATTGTGTAAGCAG GATTAGACTGATATAGGATTGAAGGATTTCATGCAATCTGCTTCATGCAATTTGAGTTTGAAGAGATATAGGACAAGATT GATGAGCCTGAAAGATTTTTTTTTTGTTTACTTGTGATGCAGTTTTTCTGATCTTCAAAAGCCACAAGGTGAGCTTGATG GAAAAGCATGTGCGGCTGTTGGGCAGAGTAGTCTCATGGCTCTCTATGATACTATGTTCAGCCAGGTGGGCACAATATGC ATGTTTTCCTTTATACATAAGAAGGTGCATGTAATTTTTCCTCCATATTGATGCTGATAGAGGATTTTTCTTGTGCAGCT GGATGTGACTTCTTCCCAACTTCTTGTGAATGATGGGTTCTTCAAGGATTCGGGTTTCAGAAAACAACTTTCAGACACAG TGCACTCATTATTAGATTTAAGAGTTATCCCCATTTTCAATGAAAATGATGCTGTTAGCACTAGGAAGGCACCATATGAG GTATGCTTATTTTTCCTTTCACTATTTCATTTGAATTAGTTTACAACAATTAGTTTTTGTTTTCATAGTATAGTCAAATT GCCTTAGTCAAAACTTTTTATGTTACATCAATGAGTTTGATTTTATTGGCTTTGTGATAACAAAAACAAGACAAGCCATA TCCCAATTAGCGGGGTAGGCTCCATGGTGGCTTTGAAATATGATATAAATTACTTTTAATTGTAAGCTCTCCAAGCAGGA TTCCACTGGTATTTTCTGGGACAATGATAGTTTGGCGGGTCTGTTAGCTCTTGAACTCAAAGCTGACCTGCTTGTCTTAT TGAGTGATGTTGAGGGCCTATATAGTGGTCCTCCAACTGACCCCAACTCAAAGTTAATCCATACATATATCAAAGAGAAA CATCAAGGAGAAATCACTTTTGGAGACAAGTCAAGATTGGGCAGAGGGGGCATGACTGCTAAAGTTAATGCTGCTGTTTG CGCTGCTCATGCCGGCATCCCAGTGATCATAACCAGGTACCTAACATTTTATGATGTATTTTTACTTCTCTAGCAAATTT CAATAACTGGGGAAGATGGCATTGTTTTTGTTGCTTGCAATAATGGTATTTGCTAAAAGTATCTATTGTTGAGAAAATTG TTCAAGTCATGAAAAGACATTCGGATTCTATGTAGTGCATAATTTCAAGTGTACATTTGAATTTGTCATTTACTGACTTT GAATTGTATTTCAACCTTGTTGAAGTGGGTATGCTACAGACAACATTATACGAGTCCTTCAAGGGGAAAGAATTGGTACT GTATTTCATAAAGATGCACATTTGTGGACCAACATAAAGGAAGTCAGTGCACATGAAATGGCAGTTGCAGCACGTGATGG TTCTAGACGACTTCAGGTAAATACAGTTATATATTGACTAAACTCCAAAACTGGCATTAGTTACCTACATATTTTAATTA CAAAAAATTTCCTTCAAATTGGTGATATAAAAAGACAACCATAGCAGCTGTTCTGTTCTTTTAAAGTATTAATTAATATG GTGATGACAAATTTTTAAGGACTATTTTAAGGGTTTACTTGTTTACATATTTCCTCATTTCCCGTGATGATACTTTTTGA AGGACTAAATTAGGCTTTACTTGTTTACATATTTGAGGGCTATGTGTGCCTAATTTCCAACAATATAAAATATTTAAATG GTTATTAACTTTTTATTTGTTTATTTGTTCTGATTTCCAACACTATGAATTGTATGTAGTTTAGTCATTTGAATTATGTT GTTTTTGGTGTCAGGCTATAAAATCTGAAGAAAGGAGTAAAATATTGCTAGCAATTGCTGATGCATTGGAGAAAAATGTT GGTATGATAAGGCTTGAGAATGAGGCTGATGTTGCTGATGCTAAGGCAGCTGGATACGAAAAGTCTCTGATTTCACGTTT AACCCTGAAGCCTGAGAAGGCAAGCACTTAATTAGTTGTATTCTGAAGCAAAATTTGATAGCATATCCTCGAGCTCTTTG TTATTGTCATTGTCCGGCACGGATTTATCCCGTTTCAGAGCATGGTTTTAAGCATTCTCTGTGAGCATATTTTTGTCTGA CCTTTATTCTTGGTGCTTACAGATCAGGAGTCTTGCAAAGTCTGTGCGCATACTGGCAGATATGGAAGAACCAATTGGTC AGATTTTAAAGAAAACTGAGGTAAAAACGCATTTCCTTTTATTTGAAGGAGTATCTCTTATCCTACTAACTCTGTCATCA TTTTTTCTTTATCTTATTGAATTTGTTTATCTTCTACACACACACACACAATACATATAAACCTACAGATGTGAAATTGG CGGTATGATATTGAAATGTTCAATATTTTCCTTTCTTAGTGTGTTCAAATTATGGAATAGCTTTCCTGTATTTTGGTAAA ATAGATTCTGAAATGCATTTTGCAACTTACGTTCGCTGAACTTGAAAAGAAACTGTAGTCACTGACTGCTTTAAGAAAAA ATGAATGATGTTATTTAATAAGCTATACTTCCTACTGCTCAACACTTTTTGACAGTTCTTATTGCTGCTTTCTGTGTCCA GCTAGCAGATAAGCTCATCCTGGAGAAAATATCGAGTCCTTTGGGAGTCCTTCTGGTCATATTTGAGTCTCGACCTGATG CGCTGGTTCAGGTTAATTTAAGATTCATTTTCCTTCTTATCCGTCTTCATTAAACTGCTTGGAATGGCAAAGATACAAAC ATGATTACAAAATATGCATCTAGTATAAGCTGATCGTGGATTCACTATATCATCATTCATCATATTACAATATATCCTTT AGTTGTTTCGGATGTTGATCTTTAAGTTGTTTCTTTAAATGGATTAACAGATAGCTGCATTGGCAATTCGAAGTGGTAAT GGTTTATTGCTTAAAGGAGGAAAGGAAGCCCGGCGATCAAATGCGGTCTTACACAAGGTATAGTTATTGATTTTAGCTGA GGTTTCTGTATTATAAGATTAATCTGGATCAGAATGGACTGCTGTTATTTTCTCCATTCTAGAAATGAACATGTTTCCAC CTCTCATTTCTTCTTTATGGCAGGTCATTACTTCTGCTATGCCAGAGACTGTGGGTGACAAACTTATTGGGCTTGTGACT TCAAGAGAAGAAATTCCAGATCTACTGAAGGTGGATATTACGAGTTAAAATCTGCATAATTATTTCTGTGACGATTTTCC ACTAATTATACTCTGCCACAGCTTGATGATGTGATAGATCTTGTGGTCCCTAGAGGCAGTAATAAGCTTGTTTCTCAAAT CAAGGAATCAACAAGAATTCCTGTTCTTGGTCATGCTGGTAATATTTCATTTAAATTTCCTATATGGGACTTGTAGTAAG AAACTAGGTCTTTTATTGAAATTTTCACTTTTTTTATGCAGATGGAATTTGTCATGTATATGTTGACAAGTCTGCTAACA TTGATATGGCAAAACAGATAGTTAGGGATGCAAAGACTGATTATCCCGCAGCCTGCAATGCAATGGTAATTAGCACTCAC ATCCTTTACAATCTCCTCTCCTTTTGGGTTTTGCTTGCTTGTTACTTATGATGAAAATCAATTTATGGACTGTGCTCAAT ATAAAACTGTCATGATATTCTTAGGAAACTCTTCTTGTACACAAGGATCTGTCATGTAATGGTGGACTTAATGAGCTCAT CCTTGAACTCCAACGTGAAGGTTTGGCATTACTTGCAAATGGGTTTATATGAAGAGTATTGATTCAAATTGAAGTTTTTG TTTTAATAATCAAGCTATGGGGATTAGAAGAGGATATTTATGTTGTTTCTCTCTCTTAGCTTAGGGGATTAGAAGACATA ATAAACATATGTAAAATGGCTTGCAGGTGTTCAACTCTTTGGTGGACCAAAAGCCAGTGCCTTGCTAAATATTTCTGAAA CGAGCTCTTTTCATCATGAGTATAGCGCTCTTGCTTGCACAGTTGAAATTGTAGAAGATGTGTTTGCTGCCATTGACCAC ATATATAACCATGGAAGGCATGTTTGGTTCCTCCGAATAATTTTTACTTTCGTTCTCTATATCACTAACTAAACTATGAG TATTGTGTCTCTTACTTTCTTTGCTGTTACTGCAGTGCTCATACTGAGTGCATTATTACAGAAGACTCTGAAGTGGCTGA GACTTTCATAAGACAAGTTGACAGGTACGTATTTTTTTGTCGTAACCTTGTTTGATCCTTTGCTTCCAAAAGATACCATT GTATCATGATGAGATGGCAGAGTACTTCTGATGTTTTTCATAATTTGTTTGAATCCACAATGTACTGACCAAAGTTTGAT CCATAGTATTTCATCCAATCATGCAAAGTTTGATCCTTTAATAGCATTTATGCTTTAATGTTTTTCAACCCATAAACATA AACACTCCATGAGTAAGTCTTGTTAATTGGTGCTTTTTTTAATTGTGGAAAATATCCATTTTTGCCTTATGCACAAGCAG TGCTGCTGTATTCCACAATGCAAGTACAAGGTTTTGTGATGGAGCACGCTTTGGGCTTGGTGCAGAGGTAGTTTATCTTC CAGAAAGTCTATTGTTACTGGTAGCATGATCTTTTTATATTTACTGATCTGTTCATGGTTCTTTTAATGTTGAACAGGTT GGAATAAGTACAAGTCGAATTCACGCTCGAGGTCCTGTAGGAGTTGAAGGGTTGTTGACAAACAGATGGTATGGAACTCT GCACACATCTCTTGGCTTTTACTTTTAAAGAAAACAGAAATTCAACTGAACAAATATGCATCGATTGATATTTTTTTCTG TAGGATCTGTTCTGCTCACATTTTTTCTATCGCAAAATGCAGGATACTGAGAGGGAGTGGGCACGTAGTAGACGGTGATC GAGAGGTCAAGTATACTCACAAAGAACTGCCACTAAAAGCATGAGCATACTGAAAATTATTAGTTGAAGCTGATATGCTT ACCTCGTCGAAGCGGCATCTCTTTTCTGTCCTATTTTGTTAGGCAGAAAGTTGCTGAGATGCAGGCCATGTATAACTGCT GCTATCATTTGCCCCTTTCCAGAGCCTTTTTCTTAACTGGAATAAGTTCAAGGGGGAGAAAATAATCATATGATATTATC TGAGACCGTCTACTTTATTGCAATTTCATAAAATATTCCAGGATTGTAGAACAGCATTGCTGTGATAGTTATAAATATAA CATCCATGTGAAGTTGAATAATATGGTGGAGTTATTCTCCGGTTATTATTTGAGCCTTTTATGTAGGTTCTATCTGCAGA ATATTTGTGCAGTTTCCTTGCTTT 

CDS sequence (LotjaGi3g1v0230400.4) extracted from Lotus japonicus Gifu v1.2 CDS.

ATGGATTCCACCACCACCATGGATCCCACTCGAGATTTCATCAAGTCTGTTAGGCGTGTTATCGTCAAGGTTGGAACAGC TGTTGTTACTCGAAGTGATGGGAGATTAGCACTTGGCAGACTTGGAGCTCTCTGTGAGCAGCTTAAAGAACTAAACACTC AGGGGTATGAAGTCATATTGGTGACTTCAGGTGCTGTTGGTCTTGGCAGGCAAAGACTTAGATATCGCAGATTGGCCAAT AGCAGTTTTTCTGATCTTCAAAAGCCACAAGGTGAGCTTGATGGAAAAGCATGTGCGGCTGTTGGGCAGAGTAGTCTCAT GGCTCTCTATGATACTATGTTCAGCCAGCTGGATGTGACTTCTTCCCAACTTCTTGTGAATGATGGGTTCTTCAAGGATT CGGGTTTCAGAAAACAACTTTCAGACACAGTGCACTCATTATTAGATTTAAGAGTTATCCCCATTTTCAATGAAAATGAT GCTGTTAGCACTAGGAAGGCACCATATGAGGATTCCACTGGTATTTTCTGGGACAATGATAGTTTGGCGGGTCTGTTAGC TCTTGAACTCAAAGCTGACCTGCTTGTCTTATTGAGTGATGTTGAGGGCCTATATAGTGGTCCTCCAACTGACCCCAACT CAAAGTTAATCCATACATATATCAAAGAGAAACATCAAGGAGAAATCACTTTTGGAGACAAGTCAAGATTGGGCAGAGGG GGCATGACTGCTAAAGTTAATGCTGCTGTTTGCGCTGCTCATGCCGGCATCCCAGTGATCATAACCAGTGGGTATGCTAC AGACAACATTATACGAGTCCTTCAAGGGGAAAGAATTGGTACTGTATTTCATAAAGATGCACATTTGTGGACCAACATAA AGGAAGTCAGTGCACATGAAATGGCAGTTGCAGCACGTGATGGTTCTAGACGACTTCAGGCTATAAAATCTGAAGAAAGG AGTAAAATATTGCTAGCAATTGCTGATGCATTGGAGAAAAATGTTGGTATGATAAGGCTTGAGAATGAGGCTGATGTTGC TGATGCTAAGGCAGCTGGATACGAAAAGTCTCTGATTTCACGTTTAACCCTGAAGCCTGAGAAGATCAGGAGTCTTGCAA AGTCTGTGCGCATACTGGCAGATATGGAAGAACCAATTGGTCAGATTTTAAAGAAAACTGAGCTAGCAGATAAGCTCATC CTGGAGAAAATATCGAGTCCTTTGGGAGTCCTTCTGGTCATATTTGAGTCTCGACCTGATGCGCTGGTTCAGATAGCTGC ATTGGCAATTCGAAGTGGTAATGGTTTATTGCTTAAAGGAGGAAAGGAAGCCCGGCGATCAAATGCGGTCTTACACAAGG TCATTACTTCTGCTATGCCAGAGACTGTGGGTGACAAACTTATTGGGCTTGTGACTTCAAGAGAAGAAATTCCAGATCTA CTGAAGCTTGATGATGTGATAGATCTTGTGGTCCCTAGAGGCAGTAATAAGCTTGTTTCTCAAATCAAGGAATCAACAAG AATTCCTGTTCTTGGTCATGCTGATGGAATTTGTCATGTATATGTTGACAAGTCTGCTAACATTGATATGGCAAAACAGA TAGTTAGGGATGCAAAGACTGATTATCCCGCAGCCTGCAATGCAATGGAAACTCTTCTTGTACACAAGGATCTGTCATGT AATGGTGGACTTAATGAGCTCATCCTTGAACTCCAACGTGAAGGTGTTCAACTCTTTGGTGGACCAAAAGCCAGTGCCTT GCTAAATATTTCTGAAACGAGCTCTTTTCATCATGAGTATAGCGCTCTTGCTTGCACAGTTGAAATTGTAGAAGATGTGT TTGCTGCCATTGACCACATATATAACCATGGAAGTGCTCATACTGAGTGCATTATTACAGAAGACTCTGAAGTGGCTGAG ACTTTCATAAGACAAGTTGACAGTGCTGCTGTATTCCACAATGCAAGTACAAGGTTTTGTGATGGAGCACGCTTTGGGCT TGGTGCAGAGGTTGGAATAAGTACAAGTCGAATTCACGCTCGAGGTCCTGTAGGAGTTGAAGGGTTGTTGACAAACAGAT GGATACTGAGAGGGAGTGGGCACGTAGTAGACGGTGATCGAGAGGTCAAGTATACTCACAAAGAACTGCCACTAAAAGCA TGA 

Protein sequence (LotjaGi3g1v0230400.4) extracted from Lotus japonicus Gifu v1.2 Proteins.

MDSTTTMDPTRDFIKSVRRVIVKVGTAVVTRSDGRLALGRLGALCEQLKELNTQGYEVILVTSGAVGLGRQRLRYRRLAN SSFSDLQKPQGELDGKACAAVGQSSLMALYDTMFSQLDVTSSQLLVNDGFFKDSGFRKQLSDTVHSLLDLRVIPIFNEND AVSTRKAPYEDSTGIFWDNDSLAGLLALELKADLLVLLSDVEGLYSGPPTDPNSKLIHTYIKEKHQGEITFGDKSRLGRG GMTAKVNAAVCAAHAGIPVIITSGYATDNIIRVLQGERIGTVFHKDAHLWTNIKEVSAHEMAVAARDGSRRLQAIKSEER SKILLAIADALEKNVGMIRLENEADVADAKAAGYEKSLISRLTLKPEKIRSLAKSVRILADMEEPIGQILKKTELADKLI LEKISSPLGVLLVIFESRPDALVQIAALAIRSGNGLLLKGGKEARRSNAVLHKVITSAMPETVGDKLIGLVTSREEIPDL LKLDDVIDLVVPRGSNKLVSQIKESTRIPVLGHADGICHVYVDKSANIDMAKQIVRDAKTDYPAACNAMETLLVHKDLSC NGGLNELILELQREGVQLFGGPKASALLNISETSSFHHEYSALACTVEIVEDVFAAIDHIYNHGSAHTECIITEDSEVAE TFIRQVDSAAVFHNASTRFCDGARFGLGAEVGISTSRIHARGPVGVEGLLTNRWILRGSGHVVDGDREVKYTHKELPLKA 

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
PIRSF 1 720 720 0.0
PANTHER 7 720 714 0.0
PANTHER 7 720 714 0.0
Gene3D 8 290 283 1.9E-85
CDD 10 284 275 3.95009E-155
TIGRFAM 11 719 709 0.0
TIGRFAM 18 300 283 3.1E-60
Hamap 18 287 270 29.166
SUPERFAMILY 18 283 266 6.28E-54
Pfam 19 263 245 8.9E-36
PRINTS 55 69 15 1.2E-57
PRINTS 99 127 29 1.2E-57
PRINTS 139 160 22 1.2E-57
PRINTS 178 205 28 1.2E-57
ProSitePatterns 235 252 18 -
PRINTS 237 257 21 1.2E-57
Pfam 294 558 265 1.1E-7
Hamap 297 703 407 33.822
SUPERFAMILY 299 702 404 5.33E-94
CDD 300 699 400 0.0
Gene3D 305 700 396 1.7E-153
TIGRFAM 305 692 388 1.0E-137
Coils 337 357 21 -
Gene3D 515 661 147 1.7E-153
ProSitePatterns 610 632 23 -

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 Glutamate 5-kinase activity Catalysis of the reaction: L-glutamate + ATP = L-glutamyl 5-phosphate + ADP + H(+).
Molecular function Glutamate-5-semialdehyde dehydrogenase activity Catalysis of the reaction: L-glutamate 5-semialdehyde + NADP(+) + phosphate = L-glutamyl 5-phosphate + H(+) + NADPH.
Cellular component Cytoplasm All of the contents of a cell excluding the plasma membrane and nucleus, but including other subcellular structures.
Biological process Proline biosynthetic process The chemical reactions and pathways resulting in the formation of proline (pyrrolidine-2-carboxylic acid), a chiral, cyclic, nonessential alpha-amino acid found in peptide linkage in proteins.
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 Oxidoreductase activity, acting on the aldehyde or oxo group of donors, NAD or NADP as acceptor Catalysis of an oxidation-reduction (redox) reaction in which an aldehyde or ketone (oxo) group acts as a hydrogen or electron donor and reduces NAD or NADP.
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 LotjaGi3g1v0230400.4, 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…