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Published on: December 19, 2014
Cellular cholesterol regulates expression of the macrophage type B scavenger receptor, CD36
J Han1, D P Hajjar, J M Tauras
1Department of Pathology and Center of Vascular Biology, Cornell University Medical College, 1300 York Avenue, New York, NY 10021, USA.
Insights
Cellular cholesterol levels regulate CD36 expression in macrophages. High cholesterol increases CD36, promoting oxidized LDL uptake, while cholesterol depletion decreases it, impacting atherosclerosis development.
Area of Science:
- Molecular Biology
- Cell Biology
- Cardiovascular Research
Background:
- CD36 is a scavenger receptor on macrophages involved in oxidized low-density lipoprotein (OxLDL) uptake.
- OxLDL uptake by macrophages is implicated in atherosclerosis development.
- Previous work showed native and modified LDLs increase CD36 mRNA and protein.
Purpose of the Study:
- To investigate how cellular cholesterol content affects macrophage CD36 expression.
- To determine the relationship between cholesterol levels and CD36-mediated OxLDL binding.
- To elucidate the regulatory mechanism of cholesterol on CD36 expression.
Main Methods:
- Macrophage cholesterol depletion using beta-cyclodextrins (beta-CD, MebetaCD).
- Macrophage cholesterol loading using MebetaCD:cholesterol complexes.
- Quantification of CD36 mRNA and protein levels.
- Measurement of 125I-labeled OxLDL binding.
- Flow cytometry for surface CD36 expression.
- Kinetics studies and mRNA half-life analysis with actinomycin D.
Main Results:
- Cholesterol depletion significantly decreased CD36 mRNA and OxLDL binding.
- Cholesterol loading increased CD36 mRNA, OxLDL binding, and surface CD36 expression.
- CD36 expression changes paralleled cellular cholesterol levels.
- Type A scavenger receptor mRNA levels were unaffected by cholesterol manipulation.
- Changes in CD36 mRNA preceded changes in cellular cholesterol, occurring at the transcriptional level.
Conclusions:
- Macrophage CD36 expression is directly regulated by cellular cholesterol content.
- Cholesterol enhances CD36 expression, while cholesterol efflux down-regulates it.
- This cholesterol-driven regulation of CD36 may perpetuate foam cell formation in atherosclerosis via a self-regulatory mechanism.
Abstract:
CD36, the macrophage type B scavenger receptor, binds and internalizes oxidized low density lipoprotein (OxLDL), and may potentially play a role in the development of atherosclerosis. We reported that the native and modified low density lipoproteins increased CD36 mRNA and protein ( J. Biol. Chem. 272: 21654-21659). In this study, we investigated the effect of alterations of cellular cholesterol content on macrophage expression of CD36. Depletion of cholesterol by treatment with beta-cyclodextrins (beta-cyclodextrin [beta-CD] and methylated beta-cyclodextrin [MebetaCD]) significantly decreased CD36 mRNA and 125I-labeled OxLDL binding. Conversely, loading macrophages with cholesterol or cholesteryl ester (acetate) with MebetaCD:cholesterol complexes increased CD36 mRNA, 125I-labeled OxLDL binding, and CD36 surface expression as determined by fluorescence activated cell sorting. Thus, CD36 expression paralleled cellular cholesterol levels after removal of cholesterol with beta-cyclodextrins or addition of cholesterol with MebetaCD:cholesterol complexes. Neither cholesterol depletion nor loading altered expression of type A scavenger receptor mRNA. Kinetics studies showed that changes in CD36 mRNA occurred after changes of cellular cholesterol. Neither beta-cyclodextrins nor MebetaCD:cholesterol altered CD36 mRNA half-life in the presence of actinomycin D, suggesting that alterations in CD36 expression by cholesterol occur at the transcriptional level. These experiments demonstrate that CD36 expression is enhanced by cholesterol and down-regulated by cholesterol efflux, and imply that macrophage expression of CD36 and foam cell formation in atherosclerotic lesions may be perpetuated by a cycle in which lipids drive expression of CD36 in a self-regulatory manner.
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