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Results 1 - 10 of 12 > >>
EC Number Natural Substrates Commentary (Nat. Sub.)
Show all pathways known for 1.1.1.26Display the word mapDisplay the reaction diagram Show all sequences 1.1.1.26glycolate + NAD+ -
Show all pathways known for 1.1.1.26Display the word mapDisplay the reaction diagram Show all sequences 1.1.1.26glycolate + NADP+ -
Show all pathways known for 1.1.1.26Display the word mapDisplay the reaction diagram Show all sequences 1.1.1.26glyoxylate + NADH -
Show all pathways known for 1.1.1.26Display the word mapDisplay the reaction diagram Show all sequences 1.1.1.26glyoxylate + NADH GxrA
Show all pathways known for 1.1.1.26Display the word mapDisplay the reaction diagram Show all sequences 1.1.1.26glyoxylate + NADPH + H+ -
Show all pathways known for 1.1.1.26Display the word mapDisplay the reaction diagram Show all sequences 1.1.1.26hydroxypyruvate + NADH -
Show all pathways known for 1.1.1.26Display the word mapDisplay the reaction diagram Show all sequences 1.1.1.26hydroxypyruvate + NADH located exclusively in the peroxisomes, prefers NAD+/NADH
Show all pathways known for 1.1.1.26Display the word mapDisplay the reaction diagram Show all sequences 1.1.1.26more in the endosymbiont, a 3-phosphoglycerate dehydrogenase exhibits glyoxylate/hydroxypyruvate reductase activity, substrate specificity, overview
Show all pathways known for 1.1.1.26Display the word mapDisplay the reaction diagram Show all sequences 1.1.1.26more both cytosolic GLYR1 and plastidial GLYR2 catalyse the essentially irreversible, NADPH-based conversion of glyoxylate into glycolate, and can be regulated by the NADPH/NADP ratio
Show all pathways known for 1.1.1.26Display the word mapDisplay the reaction diagram Show all sequences 1.1.1.26more the recombinant AtHPR1 prefers prefers NADH over NADPH and hydroxypyruvate over glyoxylate. Isozyme AtHPR1 also converts glyoxylate to glycolate, albeit with much lower catalytic efficiency than for hydroxypyruvate
Results 1 - 10 of 12 > >>