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PMID: 17065353 Published · ppublish English Journal Article Research Support, N.I.H., Extramural Research Support, Non-U.S. Gov't

Endothelial nitric oxide synthase-dependent tyrosine nitration of prostacyclin synthase in diabetes in vivo.

Diabetes ·Vol. 55 ·No. 11 ·2006-11-00 ·Pages 3133-41

Nie H, Wu JL, Zhang M, Xu J, Zou MH

Abstract

There is evidence that reactive nitrogen species are implicated in diabetic vascular complications, but their sources and targets remain largely unidentified. In the present study, we aimed to study the roles of endothelial nitric oxide synthase (eNOS) in diabetes. Exposure of isolated bovine coronary arteries to high glucose (30 mmol/l d-glucose) but not to osmotic control mannitol (30 mmol/l) switched angiotensin II-stimulated prostacyclin (PGI(2))-dependent relaxation into a persistent vasoconstriction that was sensitive to either indomethacin, a cyclooxygenase inhibitor, or SQ29548, a selective thromboxane receptor antagonist. In parallel, high glucose, but not mannitol, significantly increased superoxide and 3-nitrotyrosine in PGI(2) synthase (PGIS). Concurrent administration of polyethylene-glycolated superoxide dismutase (SOD), l-nitroarginine methyl ester, or sepiapterin not only reversed the effects of high glucose on both angiotensin II-induced relaxation and PGI(2) release but also abolished high-glucose-enhanced PGIS nitration, as well as its association with eNOS. Furthermore, diabetes significantly suppressed PGIS activity in parallel with increased superoxide and PGIS nitration in the aortas of diabetic C57BL6 mice but had less effect in diabetic mice either lacking eNOS or overexpressing human SOD (hSOD(+/+)), suggesting an eNOS-dependent PGIS nitration in vivo. We conclude that diabetes increases PGIS nitration in vivo, likely via dysfunctional eNOS.

MeSH Terms
Animals Aorta/physiopathology Cytochrome P-450 Enzyme System/metabolism Diabetes Mellitus, Experimental/enzymology Endothelium, Vascular/enzymology Epoprostenol/pharmacology Humans Hyperglycemia/physiopathology Intramolecular Oxidoreductases/metabolism Male Mice Mice, Inbred C57BL Mice, Knockout Mice, Transgenic Nitric Oxide Synthase Type III/metabolism Reactive Nitrogen Species/physiology Superoxide Dismutase/deficiency,genetics,metabolism Superoxides/metabolism Tyrosine/analogs & derivatives,metabolism Vasodilation/drug effects
Chemicals
Reactive Nitrogen Species Superoxides 3-nitrotyrosine Tyrosine Cytochrome P-450 Enzyme System Epoprostenol Nitric Oxide Synthase Type III Superoxide Dismutase Intramolecular Oxidoreductases prostacyclin synthetase
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Nie Hong
BSEB 325, Section of Endocrinology and Diabetes, Department of Medicine, University of Oklahoma Health Science Center, Oklahoma City, OK 73104, USA.
Wu Ji-Liang
Zhang Miao
Xu Jian
Zou Ming-Hui
Article Info
Journal
Diabetes
Abbr.
Diabetes
ISSN
0012-1797
Published
2006-11-00
Pages
3133-41
Language
English
Region
United States
NLM ID
0372763
Subset
IM
Grants
NHLBI NIH HHS · HL07439 · United States
NHLBI NIH HHS · HL079584 · United States
NHLBI NIH HHS · HL080499 · United States
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