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PMID: 11034947 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, Non-P.H.S.

Oxidized LDL upregulates angiotensin II type 1 receptor expression in cultured human coronary artery endothelial cells: the potential role of transcription factor NF-kappaB.

Circulation ·Vol. 102 ·No. 16 ·2000-10-17 ·Pages 1970-6

Li D, Saldeen T, Romeo F, Mehta JL

Abstract

We demonstrated earlier that angiotensin II (Ang II), by AT(1) receptor activation, upregulates oxidized LDL (ox-LDL) endothelial receptor LOX-1 gene expression and uptake of ox-LDL in human coronary artery endothelial cells (HCAECs). In this study, we investigated the regulation of Ang II receptors (AT1R and AT2R) by ox-LDL and the role of the redox-sensitive transcription factor NF-kappaB in this process. HCAECs were incubated with ox-LDL for 24 hours. Ox-LDL (10 to 40 microg protein/mL) upregulated AT1R but not AT2R, mRNA, or protein. Ox-LDL degraded IkappaBalpha in cytoplasm and activated transcription factor NF-kappaB (P65) in HCAEC nuclear extract. Treatment of cells with the antioxidant alpha-tocopherol (10 to 50 micromol/L) attenuated ox-LDL-mediated degradation of IkappaBalpha and activation of NF-kappaB (P65) and inhibited the upregulation of AT1R mRNA and protein. The role of NF-kappaB signal transduction was further examined by use of an NF-kappaB inhibitor, caffeic acid phenethyl ester (CAPE). Pretreatment of cells with CAPE inhibited ox-LDL-mediated degradation of IkappaBalpha and NF-kappaB activation and inhibited ox-LDL-induced upregulation of AT1R expression. Incubation of cells with both ox-LDL and Ang II increased cell injury, measured as cell viability and LDH release, compared with either ox-LDL or Ang II alone. alpha-Tocopherol as well as the specific AT1R blocker CV11974 (candesartan) attenuated the cell-injurious effects of ox-LDL. These observations suggest an important role of ox-LDL-mediated AT1R upregulation in cell injury. In this process, NF-kappaB activation seems to play a critical role in signal transduction. These findings provide a basis for the use of antioxidants and AT1R blockers in designing therapy of atherosclerosis.

MeSH Terms
Angiotensin II/metabolism,pharmacology Angiotensin Receptor Antagonists Arteries/cytology,metabolism Caffeic Acids/pharmacology Cell Survival/drug effects Cells, Cultured Coronary Vessels/cytology,metabolism DNA-Binding Proteins/metabolism Endothelium, Vascular/cytology,metabolism Humans I-kappa B Proteins L-Lactate Dehydrogenase/metabolism Lipoproteins, LDL/metabolism,pharmacology NF-KappaB Inhibitor alpha NF-kappa B/antagonists & inhibitors,metabolism Phenylethyl Alcohol/analogs & derivatives,pharmacology RNA, Messenger/metabolism Receptor, Angiotensin, Type 1 Receptor, Angiotensin, Type 2 Receptors, Angiotensin/genetics,metabolism Up-Regulation/drug effects,physiology Vitamin E/metabolism,pharmacology
Chemicals
Angiotensin Receptor Antagonists Caffeic Acids DNA-Binding Proteins I-kappa B Proteins Lipoproteins, LDL NF-kappa B NFKBIA protein, human RNA, Messenger Receptor, Angiotensin, Type 1 Receptor, Angiotensin, Type 2 Receptors, Angiotensin oxidized low density lipoprotein Angiotensin II NF-KappaB Inhibitor alpha Vitamin E L-Lactate Dehydrogenase caffeic acid phenethyl ester Phenylethyl Alcohol
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Li D
Departments of Medicine and Physiology, University of Arkansas and VA Medical Center, Little Rock, USA.
Saldeen T
Romeo F
Mehta J L
Article Info
Journal
Circulation
Abbr.
Circulation
ISSN
1524-4539
Published
2000-10-17
Pages
1970-6
Language
English
Region
United States
NLM ID
0147763
Subset
IM
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