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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.

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.

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