Curnutte J T, Karnovsky M L, Babior B M
J Clin Invest. 1976 Apr;57(4):1059-67. doi: 10.1172/JCI108348.
Recent work has indicated that superoxide is involved in the manganese-stimulated oxidation of NADPH by crude granule preparations of guinea pig neutrophils. The characteristics of a model manganese-requiring NADPH-oxidizing system that employs a defined O2-generator have now been compared to the original neutrophil-granule system. With respect to pH dependence, cyanide sensitivity, and reduced pyridine nucleotide specificity, the properties of the two systems are very similar. Additional information has been obtained concerning cation specificity and the kinetics of the metal-catalyzed NADPH oxidation. From the similarities between the properties of the model and neutrophil particle systems, we postulate that the manganese-dependent NADPH oxidation observed in the presence of neutrophil granules represents in large part of nonenzymatic free radical chain involving the oxidation of NADPH to NADP, with O2- as both the chain initiator and one of the propagating species. In this reaction, the neutrophil particles serve only as a source of O2-. Further, the same changes in kinetics (decrease in apparent Km for NADPH) observed previously when granules from phagocytizing rather than resting cells were employed could be mimicked by varying the rate of O2-generation by the model system. We conclude from these results that it is unnecessary to invoke a manganese-requiring enzyme as a component of the phagocytically stimulated respiratory system of the neutrophil.
最近的研究表明,超氧化物参与了豚鼠中性粒细胞粗颗粒制剂对NADPH的锰刺激氧化过程。现在已将采用特定氧气发生器的模型需锰NADPH氧化系统的特性与原始中性粒细胞颗粒系统进行了比较。在pH依赖性、氰化物敏感性和还原吡啶核苷酸特异性方面,这两个系统的特性非常相似。已获得有关阳离子特异性和金属催化NADPH氧化动力学的更多信息。根据模型系统和中性粒细胞颗粒系统特性之间的相似性,我们推测在中性粒细胞颗粒存在下观察到的锰依赖性NADPH氧化在很大程度上代表了非酶自由基链反应,其中NADPH氧化为NADP,O2-既是链引发剂又是传播物种之一。在该反应中,中性粒细胞颗粒仅作为O2-的来源。此外,当使用吞噬细胞而非静息细胞的颗粒时,先前观察到的相同动力学变化(NADPH的表观Km降低)可以通过改变模型系统的O2生成速率来模拟。从这些结果我们得出结论,没有必要调用一种需锰的酶作为中性粒细胞吞噬刺激呼吸系统的组成部分。