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Reduced uptake of oxidized low density lipoproteins in monocyte-derived macrophages from CD36-deficient subjects
S Nozaki1, H Kashiwagi, S Yamashita
1Second Department of Internal Medicine, Osaka University Medical School, Japan.
Insights
CD36 is a key receptor for oxidized low-density lipoprotein (OxLDL) uptake in macrophages, playing a significant role in cholesterol accumulation and foam cell formation. Further research is needed to fully understand CD36's in vivo function.
Area of Science:
- Biochemistry
- Immunology
- Cell Biology
Background:
- Oxidized low-density lipoprotein (OxLDL) contributes to atherosclerosis.
- CD36 is a scavenger receptor implicated in lipid metabolism.
- The precise physiological role of CD36 in OxLDL uptake requires clarification.
Purpose of the Study:
- To investigate the role of CD36 as a receptor for OxLDL.
- To quantify the contribution of CD36 to OxLDL binding and uptake in macrophages.
- To assess the impact of CD36 deficiency on cholesteryl ester accumulation.
Main Methods:
- Analysis of monocyte-derived macrophages from CD36-deficient subjects and normal controls.
- Scatchard analysis for 125I-OxLDL binding kinetics.
- Competition assays using an anti-CD36 antibody (OKM5).
- Measurement of cholesteryl ester mass accumulation after OxLDL incubation.
Main Results:
- Macrophages from CD36-deficient subjects showed approximately 40% lower maximum binding of 125I-OxLDL compared to controls.
- An anti-CD36 antibody suppressed OxLDL uptake by 53% in normal macrophages but not in CD36-deficient ones.
- Cholesteryl ester accumulation was reduced by approximately 40% in CD36-deficient macrophages.
Conclusions:
- CD36 functions as a physiological receptor for OxLDL.
- While CD36 is important, other receptors also contribute to OxLDL uptake.
- Further in vivo studies are necessary to determine the quantitative role of CD36 in foam cell formation.
Abstract:
To clarify the physiological roles of CD36 as an oxidized low density lipoprotein (OxLDL) receptor, we analyzed the monocyte-derived macrophages from normal and two CD36-deficient subjects, since we identified the molecular abnormalities (Kashiwagi, H., Y. Tomiyama, Y. Kosugi, M. Shiraga, R. H. Lipsky, Y. Kanayama, Y. Kurata, and Y. Matsuzawa 1994. Blood. 83:3545-3552; and Kashiwagi, H., Y. Tomiyama, S. Honda, S. Kosugi, M. Shiraga, N. Nagao, S. Sekiguchi, Y. Kanayama, Y. Kurata, and Y. Matsuzawa. 1995. J. Clin. Invest. 95:1040-1046). Scatchard analysis of 125I-OxLDL binding showed a linear plot and the maximum binding was lower by approximately 40% in the macrophages from subjects with CD36 deficiency than those from normal controls. Competition studies showed that the uptake of 125I-OxLDL was suppressed by OKM5, an antibody against CD36, by 53% in normal control macrophages, but not in the CD36-deficient macrophages. After incubation with OxLDL for 24 h, cholesteryl ester mass accumulation was reduced by approximately 40% in the macrophages from CD36-deficient subjects than those from normal controls. These results suggest that CD36 is one of the physiological receptors for OxLDL. Since specific binding of OxLDL was only reduced by approximately 40% in spite of the complete deficiency of CD36, several other receptors also may have some role in OxLDL uptake. Further studies will be needed to assess the quantitative role of CD36 in foam cell formation in vivo.
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