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Updated: May 3, 2026

Bioluminescence Imaging of NADPH Oxidase Activity in Different Animal Models
Published on: October 22, 2012
Regulation of NADPH oxidase 5 by protein kinase C isoforms
Feng Chen1, Yanfang Yu1, Steven Haigh2
1Department of Forensic Medicine, Nanjing Medical University, Nanjing, Jiangsu, China ; Vascular Biology Center, Georgia Regents University, Augusta, Georgia, United States of America.
Abstract:
NADPH oxidase5 (Nox5) is a novel Nox isoform which has recently been recognized as having important roles in the pathogenesis of coronary artery disease, acute myocardial infarction, fetal ventricular septal defect and cancer. The activity of Nox5 and production of reactive oxygen species is regulated by intracellular calcium levels and phosphorylation. However, the kinases that phosphorylate Nox5 remain poorly understood. Previous studies have shown that the phosphorylation of Nox5 is PKC dependent, but this contention was based on the use of pharmacological inhibitors and the isoforms of PKC involved remain unknown. Thus, the major goals of this study were to determine whether PKC can directly regulate Nox5 phosphorylation and activity, to identify which isoforms are involved in the process, and to understand the functional significance of this pathway in disease. We found that a relatively specific PKCα inhibitor, Ro-32-0432, dose-dependently inhibited PMA-induced superoxide production from Nox5. PMA-stimulated Nox5 activity was significantly reduced in cells with genetic silencing of PKCα and PKCε, enhanced by loss of PKCδ and the silencing of PKCθ expression was without effect. A constitutively active form of PKCα robustly increased basal and PMA-stimulated Nox5 activity and promoted the phosphorylation of Nox5 on Ser490, Thr494, and Ser498. In contrast, constitutively active PKCε potently inhibited both basal and PMA-dependent Nox5 activity. Co-IP and in vitro kinase assay experiments demonstrated that PKCα directly binds to Nox5 and modifies Nox5 phosphorylation and activity. Exposure of endothelial cells to high glucose significantly increased PKCα activation, and enhanced Nox5 derived superoxide in a manner that was in prevented by a PKCα inhibitor, Go 6976. In summary, our study reveals that PKCα is the primary isoform mediating the activation of Nox5 and this maybe of significance in our understanding of the vascular complications of diabetes and other diseases with increased ROS production.
Insights
Protein kinase C alpha (PKCα) directly activates NADPH oxidase 5 (Nox5), a key enzyme in reactive oxygen species production. This pathway is significant in vascular complications of diabetes and other diseases.
Area of Science:
- Biochemistry
- Molecular Biology
- Cardiovascular Research
Background:
- NADPH oxidase 5 (Nox5) plays a role in cardiovascular diseases and cancer.
- Nox5 activity is regulated by phosphorylation, but the specific kinases involved are largely unknown.
- Previous studies suggested protein kinase C (PKC) involvement, but specific isoforms were unidentified.
Purpose of the Study:
- To determine if PKC isoforms directly regulate Nox5 phosphorylation and activity.
- To identify the specific PKC isoforms involved in Nox5 regulation.
- To understand the functional significance of the PKC-Nox5 pathway in disease.
Main Methods:
- Utilized PKC isoform-specific inhibitors and genetic silencing (siRNA).
- Employed constitutively active PKC isoforms to assess Nox5 activity.
- Performed co-immunoprecipitation and in vitro kinase assays.
- Investigated the role of high glucose in activating the PKC-Nox5 pathway in endothelial cells.
Main Results:
- PKCα inhibition reduced Nox5 activity and superoxide production.
- Genetic silencing of PKCα and PKCε decreased, while loss of PKCδ enhanced, Nox5 activity.
- Constitutively active PKCα increased Nox5 activity and phosphorylation at specific sites (Ser490, Thr494, Ser498).
- PKCα directly binds and phosphorylates Nox5.
- High glucose increased PKCα activation and Nox5-derived superoxide production, which was blocked by a PKCα inhibitor.
Conclusions:
- PKCα is the primary PKC isoform responsible for Nox5 activation.
- The PKCα-Nox5 pathway is a significant mediator of reactive oxygen species production.
- This pathway may be crucial in understanding vascular complications associated with diabetes and other ROS-related diseases.
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