Macrophage Mitochondrial Energy Status Regulates Cholesterol Efflux and Is Enhanced by Anti-miR33 in Atherosclerosis

被引:171
作者
Karunakaran, Denuja [1 ]
Thrush, A. Brianne [2 ]
My-Anh Nguyen [1 ,2 ]
Richards, Laura [1 ]
Geoffrion, Michele [1 ]
Singaravelu, Ragunath [2 ,3 ]
Ramphos, Eleni [1 ]
Shangari, Prakriti [1 ]
Ouimet, Mireille [4 ]
Pezacki, John P. [2 ,3 ]
Moore, Kathryn J. [4 ]
Perisic, Ljubica [5 ]
Maegdefessel, Lars [6 ]
Hedin, Ulf [5 ]
Harper, Mary-Ellen [2 ]
Rayner, Katey J. [1 ,2 ]
机构
[1] Univ Ottawa, Inst Heart, Ottawa, ON K1Y4W7, Canada
[2] Univ Ottawa, Dept Biochem Microbiol & Immunol, Ottawa, ON K1Y4W7, Canada
[3] Natl Res Council Canada, Ottawa, ON, Canada
[4] NYU, Sch Med, Marc & Ruti Bell Program Vasc Biol & Dis, Leon H Charney Div Cardiol, New York, NY 10003 USA
[5] Karolinska Inst, Dept Mol Med & Surg, Stockholm, Sweden
[6] Karolinska Inst, Dept Med, Stockholm, Sweden
基金
瑞典研究理事会;
关键词
atherosclerosis; cholesterol; macrophages; mitochondria; microRNA-33; mouse; FOAM-CELL-FORMATION; MICRORNA THERAPEUTICS; METABOLISM; MIR-33; DISEASE; MICE; TRANSPORTERS; ACID; HDL; COACTIVATORS;
D O I
10.1161/CIRCRESAHA.117.305624
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Rationale: Therapeutically targeting macrophage reverse cholesterol transport is a promising approach to treat atherosclerosis. Macrophage energy metabolism can significantly influence macrophage phenotype, but how this is controlled in foam cells is not known. Bioinformatic pathway analysis predicts that miR-33 represses a cluster of genes controlling cellular energy metabolism that may be important in macrophage cholesterol efflux. Objective: We hypothesized that cellular energy status can influence cholesterol efflux from macrophages, and that miR-33 reduces cholesterol efflux via repression of mitochondrial energy metabolism pathways. Methods and Results: In this study, we demonstrated that macrophage cholesterol efflux is regulated by mitochondrial ATP production, and that miR-33 controls a network of genes that synchronize mitochondrial function. Inhibition of mitochondrial ATP synthase markedly reduces macrophage cholesterol efflux capacity, and anti-miR33 required fully functional mitochondria to enhance ABCA1-mediated cholesterol efflux. Specifically, anti-miR33 derepressed the novel target genes PGC-1, PDK4, and SLC25A25 and boosted mitochondrial respiration and production of ATP. Treatment of atherosclerotic Apoe(-/-) mice with anti-miR33 oligonucleotides reduced aortic sinus lesion area compared with controls, despite no changes in high-density lipoprotein cholesterol or other circulating lipids. Expression of miR-33a/b was markedly increased in human carotid atherosclerotic plaques compared with normal arteries, and there was a concomitant decrease in mitochondrial regulatory genes PGC-1, SLC25A25, NRF1, and TFAM, suggesting these genes are associated with advanced atherosclerosis in humans. Conclusions: This study demonstrates that anti-miR33 therapy derepresses genes that enhance mitochondrial respiration and ATP production, which in conjunction with increased ABCA1 expression, works to promote macrophage cholesterol efflux and reduce atherosclerosis.
引用
收藏
页码:266 / 278
页数:13
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