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PMID: 14517171 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, Non-P.H.S. Research Support, U.S. Gov't, P.H.S.

Arginase reciprocally regulates nitric oxide synthase activity and contributes to endothelial dysfunction in aging blood vessels.

Circulation ·Vol. 108 ·No. 16 ·2003-10-21 ·Pages 2000-6

Berkowitz DE, White R, Li D, Minhas KM, Cernetich A, Kim S, Burke S, Shoukas AA, Nyhan D, Champion HC, Hare JM

Abstract

Although abnormal L-arginine NO signaling contributes to endothelial dysfunction in the aging cardiovascular system, the biochemical mechanisms remain controversial. L-arginine, the NO synthase (NOS) precursor, is also a substrate for arginase. We tested the hypotheses that arginase reciprocally regulates NOS by modulating L-arginine bioavailability and that arginase is upregulated in aging vasculature, contributing to depressed endothelial function. Inhibition of arginase with (S)-(2-boronoethyl)-L-cysteine, HCl (BEC) produced vasodilation in aortic rings from young (Y) adult rats (maximum effect, 46.4+/-9.4% at 10(-5) mol/L, P<0.01). Similar vasorelaxation was elicited with the additional arginase inhibitors N-hydroxy-nor-L-arginine (nor-NOHA) and difluoromethylornithine (DFMO). This effect required intact endothelium and was prevented by 1H-oxadiazole quinoxalin-1-one (P<0.05 and P<0.001, respectively), a soluble guanylyl cyclase inhibitor. DFMO-elicited vasodilation was greater in old (O) compared with Y rat aortic rings (60+/-6% versus 39+/-6%, P<0.05). In addition, BEC restored depressed L-arginine (10(-4) mol/L)-dependent vasorelaxant responses in O rings to those of Y. Arginase activity and expression were increased in O rings, whereas NOS activity and cyclic GMP levels were decreased. BEC and DFMO suppressed arginase activity and restored NOS activity and cyclic GMP levels in O vessels to those of Y. These findings demonstrate that arginase modulates NOS activity, likely by regulating intracellular L-arginine availability. Arginase upregulation contributes to endothelial dysfunction of aging and may therefore be a therapeutic target.

Keywords
NASA Discipline Cardiopulmonary NASA Program Biomedical Research and Countermeasures Non-NASA Center
MeSH Terms
Aging/metabolism,pathology Animals Arginase/antagonists & inhibitors,metabolism Arginine/pharmacology Blood Vessels/enzymology,pathology,physiopathology Cyclic GMP/metabolism Disease Models, Animal Endothelium, Vascular/enzymology,pathology,physiopathology Enzyme Inhibitors/pharmacology Guanylate Cyclase In Vitro Techniques Nitric Oxide Synthase/metabolism Rats Rats, Wistar Receptors, Cytoplasmic and Nuclear/antagonists & inhibitors Soluble Guanylyl Cyclase Vasodilation/drug effects Vasodilator Agents/pharmacology
Chemicals
Enzyme Inhibitors Receptors, Cytoplasmic and Nuclear Vasodilator Agents Arginine Nitric Oxide Synthase Arginase Guanylate Cyclase Soluble Guanylyl Cyclase Cyclic GMP
Authors & Affiliations
11 authors, click to expand affiliations / ORCID
Berkowitz Dan E
Department of Anesthesiology and Critical Care Medicine, Johns Hopkins Medical Institutions, Baltimore, Md, USA.
White Ron
Li Dechun
Minhas Khalid M
Cernetich Amy
Kim Soonyul
Burke Sean
Shoukas Artin A
Nyhan Daniel
Champion Hunter C
Hare Joshua M
Investigators
1 investigators, click to expand
Shoukas A A
Johns Hopkins U Sch Med, Baltimore, MD
Article Info
Journal
Circulation
Abbr.
Circulation
ISSN
1524-4539
Published
2003-10-21
Epub
2003-00-29
Pages
2000-6
Language
English
Region
United States
NLM ID
0147763
Subset
IM
Grants
NIA NIH HHS · R01AG021523 · United States
NHLBI NIH HHS · R01HL-65455 · United States
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