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PMID: 15917810 Published · ppublish English Journal Article Research Support, N.I.H., Extramural Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

Vascular respiratory uncoupling increases blood pressure and atherosclerosis.

Nature ·Vol. 435 ·No. 7041 ·2005-05-26 ·Pages 502-6

Bernal-Mizrachi C, Gates AC, Weng S, Imamura T, Knutsen RH, DeSantis P, Coleman T, Townsend RR, Muglia LJ, Semenkovich CF

Abstract

The observations that atherosclerosis often occurs in non-smokers without elevated levels of low-density lipoprotein cholesterol, and that most atherosclerosis loci so far identified in mice do not affect systemic risk factors associated with atherosclerosis, suggest that as-yet-unidentified mechanisms must contribute to vascular disease. Arterial walls undergo regional disturbances of metabolism that include the uncoupling of respiration and oxidative phosphorylation, a process that occurs to some extent in all cells and may be characteristic of blood vessels being predisposed to the development of atherosclerosis. To test the hypothesis that inefficient metabolism in blood vessels promotes vascular disease, we generated mice with doxycycline-inducible expression of uncoupling protein-1 (UCP1) in the artery wall. Here we show that UCP1 expression in aortic smooth muscle cells causes hypertension and increases dietary atherosclerosis without affecting cholesterol levels. UCP1 expression also increases superoxide production and decreases the availability of nitric oxide, evidence of oxidative stress. These results provide proof of principle that inefficient metabolism in blood vessels can cause vascular disease.

MeSH Terms
Aconitate Hydratase/metabolism Animals Aorta/cytology Apolipoproteins E/deficiency,genetics Arteriosclerosis/genetics,physiopathology Blood Pressure/physiology Carrier Proteins/genetics,metabolism Cell Respiration/physiology Cholesterol/blood Diet Doxycycline/pharmacology Gene Expression/drug effects Ion Channels Membrane Proteins/genetics,metabolism Mice Mice, Transgenic Mitochondrial Proteins Muscle, Smooth, Vascular/cytology,metabolism Oxidative Stress Phenotype RNA, Messenger/genetics,metabolism Reactive Oxygen Species/metabolism Renin/blood Sodium/urine Superoxides/metabolism Transgenes/genetics Uncoupling Agents/metabolism Uncoupling Protein 1
Chemicals
Apolipoproteins E Carrier Proteins Ion Channels Membrane Proteins Mitochondrial Proteins RNA, Messenger Reactive Oxygen Species Ucp1 protein, mouse Uncoupling Agents Uncoupling Protein 1 Superoxides Cholesterol Sodium Renin Aconitate Hydratase Doxycycline
Authors & Affiliations
10 authors, click to expand affiliations / ORCID
Bernal-Mizrachi Carlos
Department of Medicine, Division of Endocrinology, Metabolism & Lipid Research, Washington University School of Medicine, St Louis, Missouri 63110, USA.
Gates Allison C
Weng Sherry
Imamura Takuji
Knutsen Russell H
DeSantis Pascual
Coleman Trey
Townsend R Reid
Muglia Louis J
Semenkovich Clay F
Article Info
Journal
Nature
Abbr.
Nature
ISSN
1476-4687
Published
2005-05-26
Pages
502-6
Language
English
Region
England
NLM ID
0410462
Subset
IM
Grants
NIDDK NIH HHS · R01 DK088083 · United States
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