Publication | Open Access
Brain nitric oxide synthase is a biopterin‐ and flavin‐containing multi‐functional oxido‐reductase
422
Citations
30
References
1991
Year
Redox SignalingMolecular NeuroscienceCellular EnzymologyBiochemistryEnzymatic ActivityNatural SciencesHeme DegradationReactive Nitrogen SpecieNitrosative StressEnzyme CatalysisMolecular BiologyMulti‐functional Oxido‐reductaseNo SynthaseMetabolismMedicineRedox BiologyCa2+/calmodulin-regulated EnzymeOxidative Stress
Brain nitric oxide synthase is a Ca2+/calmodulin-regulated enzyme which converts L-arginine into NO. Enzymatic activity of this enzyme essentially depends on NADPH and is stimulated by tetrahydrobiopterin (H4biopterin). We found that purified NO synthase contains enzyme-bound H4biopterin, explaining the enzymatic activity observed in the absence of added cofactor. Together with the finding that H4biopterin was effective at substoichiometrical concentrations, these results indicate that NO synthase essentially depends on H4biopterin as a cofactor which is recycled during enzymatic NO formation. We found that the purified enzyme also contains FAD, FMN and non-heme iron in equimolar amounts and exhibits striking activities, including a Ca2+/calmodulin-dependent NADPH oxidase activity, leading to the formation of hydrogen peroxide at suboptimal concentrations of L-arginine or H4biopterin.
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