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PMID: 11278710 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

The binding of oxidized low density lipoprotein (ox-LDL) to ox-LDL receptor-1 reduces the intracellular concentration of nitric oxide in endothelial cells through an increased production of superoxide.

The Journal of biological chemistry ·Vol. 276 ·No. 17 ·2001-04-27 ·Pages 13750-5

Cominacini L, Rigoni A, Pasini AF, Garbin U, Davoli A, Campagnola M, Pastorino AM, Lo Cascio V, Sawamura T

Abstract

Oxidized low density lipoprotein (ox-LDL) has been suggested to affect endothelium-dependent vascular tone through a decreased biological activity of endothelium-derived nitric oxide (NO). Oxidative inactivation of NO is regarded as an important cause of its decreased biological activity, and in this context superoxide (O(2)) is known to inactivate NO in a chemical reaction during which peroxynitrite is formed. In this study we examined the effect of ox-LDL on the intracellular NO concentration in bovine aortic endothelial cells and whether this effect is influenced by ox-LDL binding to the endothelial receptor lectin-like ox-LDL receptor-1 (LOX-1) through the formation of reactive oxygen species and in particular of O(2). ox-LDL induced a significant dose-dependent decrease in intracellular NO concentration both in basal and stimulated conditions after less than 1 min of incubation with bovine aortic endothelial cells (p < 0.01). In the same experimental conditions ox-LDL also induced O(2) generation (p < 0.001). In the presence of radical scavengers and anti-LOX-1 monoclonal antibody, O(2) formation induced by ox-LDL was reduced (p < 0.001) with a contemporary rise in intracellular NO concentration (p < 0.001). ox-LDL did not significantly modify the ability of endothelial nitric oxide synthase to metabolize l-arginine to l-citrulline. The results of this study show that one of the pathophysiological consequences of ox-LDL binding to LOX-1 may be the inactivation of NO through an increased cellular production of O(2).

MeSH Terms
Allopurinol/pharmacology Animals Antibodies, Monoclonal/pharmacology Antioxidants/pharmacology Aorta/metabolism Ascorbic Acid/pharmacology Aspirin/pharmacology Bradykinin/pharmacology CHO Cells Catecholamines/pharmacology Cattle Cells, Cultured Chromans/pharmacology Cricetinae Dose-Response Relationship, Drug Endothelium, Vascular/metabolism Enzyme Inhibitors/pharmacology Flow Cytometry Free Radical Scavengers/pharmacology Hemostatics/pharmacology Humans Imidazolines Lipoproteins, LDL/metabolism Mice Nitric Oxide/metabolism Oxygen/metabolism Probucol/pharmacology Protein Binding Reactive Oxygen Species/metabolism Receptors, LDL/metabolism Receptors, Oxidized LDL Scavenger Receptors, Class E Superoxides/metabolism Thrombin/pharmacology Time Factors omega-N-Methylarginine/pharmacology
Chemicals
Antibodies, Monoclonal Antioxidants Catecholamines Chromans Enzyme Inhibitors Free Radical Scavengers Hemostatics Imidazolines Lipoproteins, LDL OLR1 protein, human Olr1 protein, mouse Reactive Oxygen Species Receptors, LDL Receptors, Oxidized LDL Scavenger Receptors, Class E oxidized low density lipoprotein Superoxides omega-N-Methylarginine Nitric Oxide Allopurinol (3,4-dihydroxyphenylamino)-2-imidazoline Thrombin Probucol Ascorbic Acid Aspirin 6-hydroxy-2,5,7,8-tetramethylchroman-2-carboxylic acid Oxygen Bradykinin
Authors & Affiliations
9 authors, click to expand affiliations / ORCID
Cominacini L
Department of Biomedical and Surgical Sciences, Verona University, 37134 Verona, Italy. comina@medicinad.univr.it
Rigoni A
Pasini A F
Garbin U
Davoli A
Campagnola M
Pastorino A M
Lo Cascio V
Sawamura T
Article Info
Journal
The Journal of biological chemistry
Abbr.
J Biol Chem
ISSN
0021-9258
Published
2001-04-27
Epub
2001-00-24
Pages
13750-5
Language
English
Region
United States
NLM ID
2985121R
Subset
IM
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