Van Gestelen P., Asard H., Caubergs R. J.
Department of Biology, University of Antwerp (RUCA), Groenenborgerlaan 171, B-2020 Antwerp, Belgium.
Plant Physiol. 1997 Oct;115(2):543-550. doi: 10.1104/pp.115.2.543.
Solubilization and ion-exchange chromatography of plasma membrane proteins obtained from bean (Phaseolus vulgaris L.) seedlings resulted in a single NAD(P)H-O2--synthase protein peak. This enzyme showed a high preference toward NADPH as a substrate (reaction rate, 27.4 nmol O2- produced min-1 mg-1 protein), whereas NADH reactions ranged from 0 to maximally 15% of the NADPH reactions. The protein functions as an oxidase and it was clearly resolved from NAD(P)H dehydrogenases identified with commonly used strong oxidants (ferricyanide, cytochrome c, DCIP, and oxaloacetate). The involvement of peroxidases in O2- production is excluded on the basis of potassium-cyanide insensitivity and NADPH specificity. The NADPH oxidase is only moderately stimulated by flavins (1.5-fold with 25 [mu]M flavine adenine dinucleotide and 2.5-fold with 25 [mu]M flavin mononucleotide) and inhibited by 100 [mu]M p-chloromercuribenzenesulfonic acid, 200 [mu]M diphenyleneiodonium, 10 mM quinacrine, 40 mM pyridine, and 20 mM imidazole. The presence of flavins was demonstrated in the O2-synthase fraction, but no b-type cytochromes were detected. The effect of these inhibitors and the detection of flavins and cytochromes in the plant O2- synthase make it possible to compare this enzyme with the NADPH O2- synthase of animal neutrophil cells.
对从菜豆(Phaseolus vulgaris L.)幼苗中获得的质膜蛋白进行增溶和离子交换色谱分析,得到了一个单一的NAD(P)H - O₂⁻合酶蛋白峰。这种酶对NADPH作为底物表现出高度偏好(反应速率为每分钟每毫克蛋白产生27.4 nmol O₂⁻),而NADH反应速率为NADPH反应速率的0至最大15%。该蛋白作为一种氧化酶发挥作用,并且与用常用强氧化剂(铁氰化物、细胞色素c、2,6 - 二氯酚靛酚和草酰乙酸)鉴定的NAD(P)H脱氢酶明显区分开来。基于对氰化钾不敏感和NADPH特异性,排除了过氧化物酶参与O₂⁻产生的可能性。NADPH氧化酶仅受到黄素的适度刺激(25 μM黄素腺嘌呤二核苷酸时刺激1.5倍,25 μM黄素单核苷酸时刺激2.5倍),并受到100 μM对氯汞苯磺酸、200 μM二苯基碘鎓、10 mM奎纳克林、40 mM吡啶和20 mM咪唑的抑制。在O₂⁻合酶组分中证实了黄素的存在,但未检测到b型细胞色素。这些抑制剂的作用以及在植物O₂⁻合酶中黄素和细胞色素的检测使得能够将这种酶与动物中性粒细胞中的NADPH O₂⁻合酶进行比较。