Inducible NO Synthase–Dependent S -Nitrosylation and Activation of Arginase1 Contribute to Age-Related Endothelial Dysfunction

Author:

Santhanam Lakshmi1,Lim Hyun Kyo1,Lim Hyun Kyoung1,Miriel Victor1,Brown Tashalee1,Patel Meet1,Balanson Sarit1,Ryoo Sungwoo1,Anderson Mirinda1,Irani Kaikobad1,Khanday Firdous1,Di Costanzo Luigi1,Nyhan Daniel1,Hare Joshua M.1,Christianson David W.1,Rivers Richard1,Shoukas Artin1,Berkowitz Dan E.1

Affiliation:

1. From the Johns Hopkins University School of Medicine (L.S., H. Kyo Lim, H. Kyoung Lim, V.M., T.B., M.P., S.B., S.R., M.A., D.N., R.R., A.S., D.E.B.), Baltimore Md; Department of Anesthesiology and Pain Medicine (H. Kyo Lim), Yonsei University, Wonju, Korea; University of Pittsburgh Medical Center (K.I., F.K.), Pa; University of Miami Miller School of Medicine (J.M.H.), Fla; and Department of Chemistry (L.D.C., D.W.C.), University of Pennsylvania, Philadelphia.

Abstract

Endothelial function is impaired in aging because of a decrease in NO bioavailability. This may be, in part, attributable to increased arginase activity, which reciprocally regulates NO synthase (NOS) by competing for the common substrate, l -arginine. However, the high K m of arginase (>1 mmol/L) compared with NOS (2 to 20 μmol/L) seemingly makes direct competition for substrate unlikely. One of the mechanisms by which NO exerts its effects is by posttranslational modification through S -nitrosylation of protein cysteines. We tested the hypothesis that arginase1 activity is modulated by this mechanism, which serves to alter its substrate affinity, allowing competition with NOS for l -arginine. We demonstrate that arginase1 activity is altered by S -nitrosylation, both in vitro and ex vivo. Furthermore, using site-directed mutagenesis we demonstrate that 2 cysteine residues (C168 and C303) are able to undergo nitrosylation. S -Nitrosylation of C303 stabilizes the arginase1 trimer and reduces its K m value 6-fold. Finally, arginase1 nitrosylation is increased (and thus its K m decreased) in blood vessels from aging rats, likely contributing to impaired NO bioavailability and endothelial dysfunction. This is mediated by inducible NOS, which is expressed in the aging endothelium. These findings suggest that S -nitrosylated arginase1 can compete with NOS for l -arginine and contribute to endothelial dysfunction in the aging cardiovascular system.

Publisher

Ovid Technologies (Wolters Kluwer Health)

Subject

Cardiology and Cardiovascular Medicine,Physiology

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