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Isolation, Characterization, and Purification of Macrophages from Tissues Affected by Obesity-related Inflammation
Published on: April 3, 2017
Bmal1 is involved in the regulation of macrophage cholesterol homeostasis
Xiaoyue Pan1,2,3, John O'Hare3, Cyrus Mowdawalla3
1Department of Foundations of Medicine, NYU Grossman Long Island School of Medicine, Mineola, New York, USA.
Insights
Macrophage Bmal1 deficiency increases cholesterol accumulation and atherosclerosis by altering lipoprotein uptake and efflux. Restoring Bmal1 may prevent this cardiovascular disease.
Area of Science:
- Cardiovascular Science
- Molecular Biology
- Immunology
Background:
- Atherosclerotic cardiovascular disease is a significant global health issue.
- Cholesterol accumulation in macrophages is critical for atherosclerosis development.
- The role of Bmal1 in macrophage function and atherosclerosis requires clarification.
Purpose of the Study:
- To investigate the function of Bmal1 in macrophages.
- To determine the impact of Bmal1 deficiency on cholesterol metabolism and atherosclerosis.
- To elucidate the molecular mechanisms by which Bmal1 regulates these processes.
Main Methods:
- Utilized global and myeloid-specific Bmal1-deficient mouse models.
- Analyzed macrophage cholesterol levels, lipoprotein uptake (oxLDL), and cholesterol efflux (Abca1, Abcg1).
- Investigated the expression of lysosomal cholesterol egress genes (Npc1, Npc2) and regulatory elements.
Main Results:
- Myeloid-specific Bmal1 deficiency led to increased macrophage cholesterol and exacerbated atherosclerosis.
- Bmal1-deficient macrophages showed enhanced oxLDL uptake via Cd36.
- Reduced cholesterol efflux due to diminished Abca1/Abcg1 and impaired lysosomal egress (Npc1/Npc2).
- Bmal1 directly binds to Npc1/Npc2 promoters and indirectly regulates Cd36 and Abca1/Abcg1.
Conclusions:
- Macrophage Bmal1 is a critical regulator of cholesterol metabolism.
- Bmal1 controls lipoprotein uptake, cholesterol efflux, and lysosomal egress.
- Targeting macrophage Bmal1 may offer a novel therapeutic strategy for atherosclerosis prevention.
Abstract:
Atherosclerotic cardiovascular disease is a major contributor to the global disease burden. We previously demonstrated that Clock-mutant mice, and mice with global or liver-specific Bmal1 deficiency, exhibit enhanced atherosclerosis because of overproduction of lipoproteins and sustained hyperlipidemia. Atherosclerosis initiation depends on cholesterol accumulation in subendothelial macrophages (Mφs). To clarify the role of Bmal1 in Mφ function and atherosclerosis, we used several global and myeloid-specific Bmal1-deficient mouse models. Mφ-specific Bmal1-deficient mice had similar plasma lipid levels, higher Mφ cholesterol content, and displayed greater atherosclerosis compared with controls. We attempted to understand molecular mechanisms for increased cellular cholesterol levels. Bmal1-deficient Mφs exhibited: (a) elevated expression of Cd36 and uptake of oxLDL; (b) diminished expression of Abca1 and Abcg1, and decreased cholesterol efflux and reverse cholesterol transport; and (c) reduced Npc1 and Npc2 expression and diminished cholesterol egress from lysosomes. Molecular studies revealed that Bmal1 directly regulates basal and cyclic expression of Npc1 and Npc2 by binding the E-box motif (CANNTG) sequence recognized by Bmal1 in their promoters and indirectly regulates the basal and temporal regulation of Cd36 and Abca1/Abcg1 involving Rev-erbα and Znf202 repressors, respectively. In conclusion, Mφ Bmal1 is a key regulator of the uptake of modified lipoproteins, cholesterol efflux, lysosomal cholesterol egress, and atherosclerosis and, therefore, may be a master regulator of cholesterol metabolism in Mφs. Restoration of Mφ Bmal1 expression or blocking of factors that decrease its activity may be effective in preventing atherosclerosis.

