Oxidized Ca 2+ /Calmodulin-Dependent Protein Kinase II Triggers Atrial Fibrillation

Author:

Purohit Anil1,Rokita Adam G.1,Guan Xiaoqun1,Chen Biyi1,Koval Olha M.1,Voigt Niels1,Neef Stefan1,Sowa Thomas1,Gao Zhan1,Luczak Elizabeth D.1,Stefansdottir Hrafnhildur1,Behunin Andrew C.1,Li Na1,El-Accaoui Ramzi N.1,Yang Baoli1,Swaminathan Paari Dominic1,Weiss Robert M.1,Wehrens Xander H.T.1,Song Long-Sheng1,Dobrev Dobromir1,Maier Lars S.1,Anderson Mark E.1

Affiliation:

1. From the Department of Internal Medicine, Division of Cardiovascular Medicine and Cardiovascular Research Center, Carver College of Medicine (A.P., A.G.R., X.G., B.C., O.M.K., Z.G., E.D.L., H.S., A.C.B., R.N.E.-A., P.D.S., R.M.W., L.-S.S., M.E.A.), Department of Obstetrics and Gynecology (B.Y.), and Department of Molecular Physiology and Biophysics (M.E.A.), University of Iowa, Iowa City; Institute of Pharmacology, Faculty of Medicine, University Duisburg-Essen, Essen, Germany, and Division of...

Abstract

Background— Atrial fibrillation (AF) is a growing public health problem without adequate therapies. Angiotensin II and reactive oxygen species are validated risk factors for AF in patients, but the molecular pathways connecting reactive oxygen species and AF are unknown. The Ca 2+ /calmodulin-dependent protein kinase II (CaMKII) has recently emerged as a reactive oxygen species–activated proarrhythmic signal, so we hypothesized that oxidized CaMKIIδ could contribute to AF. Methods and Results— We found that oxidized CaMKII was increased in atria from AF patients compared with patients in sinus rhythm and from mice infused with angiotensin II compared with mice infused with saline. Angiotensin II–treated mice had increased susceptibility to AF compared with saline-treated wild-type mice, establishing angiotensin II as a risk factor for AF in mice. Knock-in mice lacking critical oxidation sites in CaMKIIδ (MM-VV) and mice with myocardium-restricted transgenic overexpression of methionine sulfoxide reductase A, an enzyme that reduces oxidized CaMKII, were resistant to AF induction after angiotensin II infusion. Conclusions— Our studies suggest that CaMKII is a molecular signal that couples increased reactive oxygen species with AF and that therapeutic strategies to decrease oxidized CaMKII may prevent or reduce AF.

Publisher

Ovid Technologies (Wolters Kluwer Health)

Subject

Physiology (medical),Cardiology and Cardiovascular Medicine

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