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Am J Physiol Heart Circ Physiol 296: H1236-H1243, 2009. First published March 13, 2009; doi:10.1152/ajpheart.00100.2009
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TRANSLATIONAL PHYSIOLOGY

ERK phosphorylation mediates sildenafil-induced myocardial protection against ischemia-reperfusion injury in mice

Anindita Das, Fadi N. Salloum, Lei Xi, Yuan J. Rao, and Rakesh C. Kukreja

Division of Cardiology, Department of Internal Medicine, Virginia Commonwealth University, Richmond, Virginia

Submitted 29 January 2009 ; accepted in final form 9 March 2009

Sildenafil, a selective inhibitor of phosphodiesterase type 5, induces powerful protection against myocardial ischemia-reperfusion injury through activation of cGMP-dependent protein kinase (PKG). We further hypothesized that PKG-dependent activation of survival kinase ERK may play a causative role in sildenafil-induced cardioprotection via induction of endothelial nitric oxide synthase (eNOS)/inducible nitric oxide synthase (iNOS) and Bcl-2. Our results show that acute intracoronary infusion of sildenafil in Langendorff isolated mouse hearts before global ischemia-reperfusion significantly reduced myocardial infarct size (from 29.4 ± 2.4% to 15.9 ± 3.0%; P < 0.05). Cotreatment with ERK inhibitor PD98059 abrogated sildenafil-induced protection (31.8 ± 4.4%). To further evaluate the role of ERK in delayed cardioprotection, mice were treated with sildenafil (ip) 24 h before global ischemia-reperfusion. PD98059 was administered (ip) 30 min before sildenafil treatment. Infarct size was reduced from 27.6 ± 3.3% in controls to 7.1 ± 1.5% in sildenafil-treated mice (P < 0.05). The delayed protective effect of sildenafil was also abolished by PD98059 (22.5 ± 2.3%). Western blots revealed that sildenafil significantly increased phosphorylation of ERK1/2 and GSK-3β and induced iNOS, eNOS, Bcl-2, and PKG activity in the heart 24 h after treatment. PD98059 inhibited the enhanced expression of iNOS, eNOS, and Bcl-2 and the phosphorylation of GSK-3β. PD98059 had no effect on the sildenafil-induced activation of PKG. We conclude that these studies provide first direct evidence that PKG-dependent ERK phosphorylation is indispensable for the induction of eNOS/iNOS and Bcl-2 and the resulting cardioprotection by sildenafil.

myocardial infarction; nitric oxide synthase; phosphodiesterase inhibitor; protein kinases; signal transduction; extracellular signal-regulated kinase



Address for reprint requests and other correspondence: R. C. Kukreja, Eric Lipman Chair of Molecular Cardiology, Division of Cardiology, Box 980281, Virginia Commonwealth Univ. Medical Center, 1101 East Marshall St., Rm. 7-046, Richmond, VA 23298-0281 (e-mail: rakesh{at}vcu.edu) or A. Das, Division of Cardiology, Box 980281, Virginia Commonwealth Univ. Medical Center, 1101 East Marshall St., Rm. 7-040, Richmond, VA 23298-0281 (e-mail: adas2{at}vcu.edu)




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