Conditional Overexpression of Neuronal Nitric Oxide Synthase Is Cardioprotective in Ischemia/Reperfusion

Author:

Burkard Natalie1,Williams Tatjana1,Czolbe Martin1,Blömer Nadja1,Panther Franziska1,Link Martin1,Fraccarollo Daniela1,Widder Julian D.1,Hu Kai1,Han Hong1,Hofmann Ulrich1,Frantz Stefan1,Nordbeck Peter1,Bulla Jan1,Schuh Kai1,Ritter Oliver1

Affiliation:

1. From the Department of Medicine I (N.B., T.W., M.C., N.B., F.P., M.L., D.F., J.D.W., K.H., H.H., U.H., S.F., P.N., O.R.) and Institute of Physiology (K.S.), University of Wuerzburg, Wuerzburg, Germany, and LMNO, Université de Caen, CNRS UMR 6139, France (J.B.).

Abstract

Background— We previously demonstrated that conditional overexpression of neuronal nitric oxide synthase (nNOS) inhibited L-type Ca 2+ channels and decreased myocardial contractility. However, nNOS has multiple targets within the cardiac myocyte. We now hypothesize that nNOS overexpression is cardioprotective after ischemia/reperfusion because of inhibition of mitochondrial function and a reduction in reactive oxygen species generation. Methods and Results— Ischemia/reperfusion injury in wild-type mice resulted in nNOS accumulation in the mitochondria. Similarly, transgenic nNOS overexpression caused nNOS abundance in mitochondria. nNOS translocation into the mitochondria was dependent on heat shock protein 90. Ischemia/reperfusion experiments in isolated hearts showed a cardioprotective effect of nNOS overexpression. Infarct size in vivo was also significantly reduced. nNOS overexpression also caused a significant increase in mitochondrial nitrite levels accompanied by a decrease of cytochrome c oxidase activity. Accordingly, O 2 consumption in isolated heart muscle strips was decreased in nNOS-overexpressing nNOS + /αMHC-tTA + mice already under resting conditions. Additionally, we found that the reactive oxygen species concentration was significantly decreased in hearts of nNOS-overexpressing nNOS + /αMHC-tTA + mice compared with noninduced nNOS + /αMHC-tTA + animals. Conclusion— We demonstrated that conditional transgenic overexpression of nNOS resulted in myocardial protection after ischemia/reperfusion injury. Besides a reduction in reactive oxygen species generation, this might be caused by nitrite-mediated inhibition of mitochondrial function, which reduced myocardial oxygen consumption already under baseline conditions.

Publisher

Ovid Technologies (Wolters Kluwer Health)

Subject

Physiology (medical),Cardiology and Cardiovascular Medicine

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