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fmnh 2 + nad(p)+ fmn + nad(p)h + h + The 3 substrates of this enzyme are FMNH2 , NAD + , and NADP + , whereas its 4 products are FMN , NADH , NADPH , and H + . This enzyme belongs to the family of oxidoreductases , specifically those acting on the CH-NH group of donors with NAD+ or NADP+ as acceptor.
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FMN reductase (NAD(P)H) (EC 1.5.1.39, FRG) is an enzyme with systematic name FMNH 2:NAD(P) + oxidoreductase. [1] This enzyme catalyses the following chemical reaction.
Nicotinamide adenine dinucleotide phosphate, abbreviated NADP [1] [2] or, in older notation, TPN (triphosphopyridine nucleotide), is a cofactor used in anabolic reactions, such as the Calvin cycle and lipid and nucleic acid syntheses, which require NADPH as a reducing agent ('hydrogen source'). NADPH is the reduced form, whereas NADP + is the ...
In enzymology, a NADPH—hemoprotein reductase is an enzyme that catalyzes the chemical reaction. NADPH + H + + n oxidized hemoprotein NADP + + n reduced hemoprotein. The three substrates of this enzyme are NADPH, H +, and oxidized hemoprotein, whereas its two products are NADP + and reduced hemoprotein.
Flavin mononucleotide (FMN), or riboflavin-5′-phosphate, is a biomolecule produced from riboflavin (vitamin B 2) by the enzyme riboflavin kinase and functions as the prosthetic group of various oxidoreductases, including NADH dehydrogenase, as well as a cofactor in biological blue-light photo receptors. [1]
NADPH first transfers a hydride equivalent to FAD, creating FADH −, and then NADP + dissociates from the enzyme. Reduced PHBH then reacts with molecular oxygen to form the flavin-C(4a)-hydroperoxide. The flavin hydroperoxide quickly hydroxylates pOHB, and then eliminates water to regenerate oxidized flavin. [23]
In enzymology, a malate dehydrogenase (NADP +) (EC 1.1.1.82) is an enzyme that catalyzes the chemical reaction (S)-malate + NADP + ⇌ {\displaystyle \rightleftharpoons } oxaloacetate + NADPH + H + Thus, the two substrates of this enzyme are (S)-malate and NADP + , whereas its 3 products are oxaloacetate , NADPH , and H + .