4.8 Article

Oxidation of CaMKII determines the cardiotoxic effects of aldosterone

Journal

NATURE MEDICINE
Volume 17, Issue 12, Pages 1610-U125

Publisher

NATURE PUBLISHING GROUP
DOI: 10.1038/nm.2506

Keywords

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Funding

  1. US National Institutes of Health [1F30HL-095325, RR-017369, P30 CA086862, R01CA133114, R01HL083422, R01HL70250, R01HL079031, R01HL096652]
  2. Fondation Leducq [08CVD01]
  3. Netherlands Organization for Scientific Research [91796338]
  4. Netherlands Heart Foundation (NHS) [2007B036, 2008B011]
  5. Research Foundation-Flanders (FWO) [1183211N, 1167610N, G074009N]
  6. European Union

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Excessive activation of the beta-adrenergic, angiotensin II (Ang II) and aldosterone signaling pathways promotes mortality after myocardial infarction, and antagonists targeting these pathways are core therapies for treating this condition. Catecholamines and Ang II activate the multifunctional Ca2+/calmodulin-dependent protein kinase II (CaMKII), the inhibition of which prevents isoproterenol-mediated and Ang II-mediated cardiomyopathy. Here we show that aldosterone exerts direct toxic actions on myocardium by oxidative activation of CaMKII, causing cardiac rupture and increased mortality in mice after myocardial infarction. Aldosterone induces CaMKII oxidation by recruiting NADPH oxidase, and this oxidized and activated CaMKII promotes matrix metalloproteinase 9 (MMP9) expression in cardiomyocytes. Myocardial CaMKII inhibition, overexpression of methionine sulfoxide reductase A (an enzyme that reduces oxidized CaMKII) or NADPH oxidase deficiency prevented aldosterone-enhanced cardiac rupture after myocardial infarction. These findings show that oxidized myocardial CaMKII mediates the cardiotoxic effects of aldosterone on the cardiac matrix and establish CaMKII as a nodal signal for the neurohumoral pathways associated with poor outcomes after myocardial infarction.

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