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This version published online on May 1, 2008
Endocrinology, doi:10.1210/en.2008-0255
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Submitted on February 22, 2008
Accepted on April 23, 2008

Molecular Mechanisms of Ghrelin-Mediated Endothelial Nitric Oxide Synthase Activation

Xiangbin Xu, Bong Sook Jhun, Chang Hoon Ha, and Zheng-Gen Jin*

From Aab Cardiovascular Research Institute and Department of Medicine, University of Rochester Medical Center, Rochester, New York

* To whom correspondence should be addressed. E-mail: zheng-gen_jin{at}urmc.rochester.edu.

Metabolic syndrome accelerates the atherosclerotic process, and the earliest event of which is endothelial dysfunction. Ghrelin, a newly discovered gastric peptide, improves endothelial function and inhibits proatherogenic changes. In particular, low ghrelin concentration has been associated with several features of metabolic syndrome, including obesity, insulin resistance, and high blood pressure. However, the molecular mechanisms underlying ghrelin vascular actions remain largely unclear. Here, we showed that ghrelin activated endothelial nitric oxide synthase (eNOS) in cultured endothelial cells (ECs) and in intact vessels. Specifically, ghrelin rapidly induced phosphorylation of eNOS on an activation site and production of nitric oxide (NO) in human umbilical vein ECs and bovine aortic ECs. The eNOS phosphorylation was also observed in mouse aortas ex vivo perfused with ghrelin and in aortic tissues isolated from mice injected with ghrelin. Mechanistically, ghrelin stimulated AMP-activated protein kinase (AMPK) and Akt activation in cultured ECs and intact vessels. Inhibiting AMPK and Akt with their pharmacological inhibitors, siRNA and adenoviruses carried dominant-negative mutants, markedly attenuated ghrelin-induced eNOS activation and NO production. Furthermore, ghrelin receptor/Gq protein/calcium-dependent pathway mediates activation of AMPK, Akt and eNOS, and calmodulin-dependent kinase kinase (CaMKK) is a potential convergent point to regulate Akt and AMPK activation in ghrelin signaling. Importantly, eNOS activation is critical for ghrelin inhibition of vascular inflammation. Together, both in vitro and in vivo data demonstrate a new role of ghrelin signaling for eNOS activation, and highlight the therapeutic potential for ghrelin to correct endothelial dysfunction associated with atherosclerotic vascular diseases and metabolic syndrome.


Key words: ghrelin • endothelial nitric oxide synthase • nitric oxide • AMP-activated protein kinase • Akt • signal transduction • endothelial cells • endothelial dysfunction







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