Scinovex
review Open AccessTop 1% cited

The superoxide‐generating oxidase of phagocytic cells

European Journal of Biochemistry · 1991 · Vol. 201(3) · pp. 523–546

Abstract

Professional phagocytes (neutrophils, eosinophils, monocytes and macrophages) possess an enzymatic complex, the NADPH oxidase, which is able to catalyze the one-electron reduction of molecular oxygen to superoxide, O2-. The NADPH oxidase is dormant in non-activated phagocytes. It is suddenly activated upon exposure of phagocytes to the appropriate stimuli and thereby contributes to the microbicidal activity of these cells. Oxidase activation in phagocytes involves the assembly, in the plasma membrane, of membrane-bound and cytosolic components of the oxidase complex, which were diassembled in the resting state. One of the membrane-bound components in resting phagocytes has been identified as a low-potential b-type cytochrome, a heterodimer composed of two subunits of 22-kDa and 91-kDa. The link between NADPH and cytochrome b is probably a flavoprotein whose subcellular localization in resting phagocytes remains to be determined. Genetic defects in the cytochrome b subunits and in the cytosolic factors have been shown to be the molecular basis of chronic granulomatous disease, a group of inherited disorders in the host defense, characterized by severe, recurrent bacterial and fungal infections in which phagocytic cells fail to generate O2- upon stimulation. The present review is focused on recent data concerning the signaling pathway which leads to oxidase activation, including specific receptors, the production of second messengers, the organization of the oxidase complex and the molecular defects responsible for granulomatous disease.

Neutrophil, Myeloperoxidase and Oxidative MechanismsNeuroinflammation and Neurodegeneration MechanismsImmune Response and InflammationSuperoxideNADPH oxidaseChemistryPhagocytosisOxidase testBiochemistryCell biologyEnzymeBiology

MeSH terms

AnimalsEnzyme ActivationGranulomatous Disease, ChronicHumansNADH, NADPH OxidoreductasesNeutrophilsSuperoxidesSignal TransductionRespiratory BurstNADPH Oxidases
Citations
562
FWCI
17.13
field-weighted impact
References
387
Percentile
99%
vs. same field & year
Citations per year
Cited by
The superoxide-generating NADPH oxidase: structural aspects and activation mechanism
Cellular and Molecular Life Sciences · 2002 · 754 citations
References
Inflammation. Basic principles and clinical correlates
Biomedicine & Pharmacotherapy · 1989 · 2,398 citations
THE EXTRA RESPIRATION OF PHAGOCYTOSIS
American Journal of Physiology-Legacy Content · 1932 · 399 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.

The superoxide‐generating oxidase of phagocytic cells · Scinovex