Structure, Activation, and Regulation of NOX2: At the Crossroad between the Innate Immunity and Oxidative Stress-Mediated Pathologies

Author:

Nocella Cristina1,D’Amico Alessandra2ORCID,Cammisotto Vittoria1ORCID,Bartimoccia Simona1,Castellani Valentina3,Loffredo Lorenzo1ORCID,Marini Leonardo4,Ferrara Giulia4,Testa Matteo4,Motta Giulio4,Benazzi Beatrice4,Zara Fabio4,Frati Giacomo56,Sciarretta Sebastiano56,Pignatelli Pasquale1ORCID,Violi Francesco1,Carnevale Roberto56ORCID,Group Smile4

Affiliation:

1. Department of Clinical Internal, Anesthesiology and Cardiovascular Sciences, Sapienza University of Rome, 00161 Rome, Italy

2. Department of Movement, Human and Health Sciences, University of Rome “Foro Italico”, 00135 Rome, Italy

3. Department of General and Specialistic Surgery “Paride Stefanini”, Sapienza University of Rome, 00161 Rome, Italy

4. Faculty of Medicine and Surgery, Course E, Sapienza University of Rome, 04100 Latina, Italy

5. Department of Medical-Surgical Sciences and Biotechnologies, Sapienza University of Rome, 04100 Latina, Italy

6. IRCCS Neuromed, Località Camerelle, 86077 Pozzilli, Italy

Abstract

Nicotinamide adenine dinucleotide phosphate (NADPH) oxidase (NOX) is a multisubunit enzyme complex that participates in the generation of superoxide or hydrogen peroxide (H2O2) and plays a key role in several biological functions. Among seven known NOX isoforms, NOX2 was the first identified in phagocytes but is also expressed in several other cell types including endothelial cells, platelets, microglia, neurons, and muscle cells. NOX2 has been assigned multiple roles in regulating many aspects of innate and adaptive immunity, and human and mouse models of NOX2 genetic deletion highlighted this key role. On the other side, NOX2 hyperactivation is involved in the pathogenesis of several diseases with different etiologies but all are characterized by an increase in oxidative stress and inflammatory process. From this point of view, the modulation of NOX2 represents an important therapeutic strategy aimed at reducing the damage associated with its hyperactivation. Although pharmacological strategies to selectively modulate NOX2 are implemented thanks to new biotechnologies, this field of research remains to be explored. Therefore, in this review, we analyzed the role of NOX2 at the crossroads between immunity and pathologies mediated by its hyperactivation. We described (1) the mechanisms of activation and regulation, (2) human, mouse, and cellular models studied to understand the role of NOX2 as an enzyme of innate immunity, (3) some of the pathologies associated with its hyperactivation, and (4) the inhibitory strategies, with reference to the most recent discoveries.

Publisher

MDPI AG

Subject

Cell Biology,Clinical Biochemistry,Molecular Biology,Biochemistry,Physiology

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