Robinson J M, Badwey J A
Department of Cell Biology, Neurobiology, and Anatomy, Columbus 43210, USA.
Histochem Cell Biol. 1995 Mar;103(3):163-80. doi: 10.1007/BF01454021.
The NADPH oxidase complex catalyzes the formation of superoxide (O2.-) in phagocytic leukocytes. This paper reviews recent advances in our understanding of this enzyme system. Recent studies have defined conditions for reconstitution of this enzymatic activity with purified proteins in a cell-free system. The role of the individual proteins that make up the active complex, their regulation and the effects of mutations in these proteins are discussed. While these studies represent major achievements, it is clear from cytochemical investigations that additional levels of complexity exist in the modulation of the NADPH oxidase complex in vivo. A major role for cytochemical analysis in understanding the cell biological aspects of the generation of reactive oxygen species is discussed.
NADPH氧化酶复合物催化吞噬性白细胞中超氧化物(O2.-)的形成。本文综述了我们对该酶系统认识的最新进展。最近的研究确定了在无细胞系统中用纯化蛋白重建这种酶活性的条件。讨论了构成活性复合物的各个蛋白质的作用、它们的调节以及这些蛋白质中突变的影响。虽然这些研究取得了重大成果,但从细胞化学研究中可以清楚地看出,体内NADPH氧化酶复合物的调节存在额外的复杂层面。讨论了细胞化学分析在理解活性氧生成的细胞生物学方面的主要作用。