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Disruption of Nox2 and TNFRp55/p75 eliminates cardioprotection induced by anisomycin
Ting C Zhao1, Ling Zhang, Jun T Liu
1Department of Pharmacology, Xi'an Jiaotong University School of Medicine, Xi'an, China.
Abstract:
Transient activation of p38 through anisomycin is demonstrated to precondition the heart against myocardial injury. However, it remains unknown whether specific TNF-α receptor (TNFR) p55/p75 and Nox2, a subunit of NADPH oxidase, are involved in this event. We sought to investigate whether the genetic disruption of TNFRp55/p75 and Nox2 eliminated cardioprotection elicited by anisomycin and whether p38-dependent activation of Nox2 stimulated TNFR to ultimately achieve protective effects. Adult wild-type and TNFR p55/p75(-/-) and Nox2(-/-) mice received intraperitoneal injections of anisomycin (0.1 mg/kg), a potent activator of p38. The hearts were subjected to 30 min myocardial ischemia/30 min reperfusion in the Langendorff perfused heart after 24 h. Left ventricular function was measured, and infarct size was determined. Myocardial TNF-α protein, Nox2, and superoxides releases were detected. Gel kinase assay was employed to detect the effect of p38 on Nox2 phosphorylation. Activation of p38 through anisomycin produces marked improvements in left ventricular functional recovery, and the reduction of myocardial infarction, which were abrogated by disruption of Nox2 and TNFR p55/p75. Disruption of Nox2 and TNFR p55/p75 abolished the effect of anisomycin-induced reduction of infarct size. Anisomycin induced the production of TNF-α, which was abrogated in Nox2(-/-) mice and by treatment with SB203580, but not by disruption of p55/p75. Anisomycin treatment resulted in an increase in Nox2 protein and the phosphorylation of Nox2, which was blocked by inhibition of p38. Taken together, these results indicate that stimulation of the Nox2 and TNFR p55/p75 pathway is a novel approach to anisomycin-induced cardioprotection.
Insights
Anisomycin preconditioning protects the heart by activating p38, which stimulates Nox2 and TNF-α receptor (TNFR) p55/p75. Genetic disruption of Nox2 and TNFR abolished this cardioprotection, revealing a novel protective pathway.
Area of Science:
- Cardiovascular Biology
- Molecular Cardiology
- Cellular Signaling
Background:
- Transient activation of p38 mitogen-activated protein kinase (MAPK) by anisomycin confers cardioprotection against myocardial injury.
- The specific roles of tumor necrosis factor-alpha receptor (TNFR) p55/p75 and Nox2, a subunit of NADPH oxidase, in anisomycin-induced cardioprotection remain unclear.
Purpose of the Study:
- To investigate if genetic disruption of TNFR p55/p75 and Nox2 eliminates anisomycin-induced cardioprotection.
- To determine if p38-dependent activation of Nox2 stimulates TNFR to mediate protective effects.
Main Methods:
- Adult wild-type, TNFR p55/p75(-/-), and Nox2(-/-) mice were treated with anisomycin.
- Hearts underwent ischemia/reperfusion injury in a Langendorff system; left ventricular function and infarct size were assessed.
- Myocardial TNF-α, Nox2, superoxide release, and p38 phosphorylation of Nox2 were analyzed.
Main Results:
- Anisomycin treatment significantly improved left ventricular functional recovery and reduced myocardial infarction in wild-type mice.
- These protective effects were abrogated in Nox2(-/-) and TNFR p55/p75(-/-) mice.
- Anisomycin-induced TNF-α production was dependent on Nox2 and p38 activity, while Nox2 phosphorylation was p38-dependent.
Conclusions:
- The study identifies stimulation of the Nox2 and TNFR p55/p75 pathway as a novel mechanism underlying anisomycin-induced cardioprotection.
- p38 activation by anisomycin leads to Nox2 activation and subsequent TNFR stimulation, ultimately protecting the heart from injury.