MicroRNA-144 Silencing Protects Against Atherosclerosis in Male, but Not Female Mice

基因沉默 氧甾醇 ABCA1 生物 内科学 小RNA 胆固醇逆向转运 内分泌学 胆固醇 脂蛋白 低密度脂蛋白受体 基因 运输机 医学 遗传学
作者
Joan Cheng,Angela Cheng,Bethan L. Clifford,Xiaohui Wu,Ulf Hedin,Lars Mäegdefessel,Nathalie Pamir,Tamer Sallam,Elizabeth J. Tarling,Thomas Q. de Aguiar Vallim
出处
期刊:Arteriosclerosis, Thrombosis, and Vascular Biology [Lippincott Williams & Wilkins]
卷期号:40 (2): 412-425 被引量:41
标识
DOI:10.1161/atvbaha.119.313633
摘要

Objective: Atherosclerosis is a leading cause of death in developed countries. MicroRNAs act as fine-tuners of gene expression and have been shown to have important roles in the pathophysiology and progression of atherosclerosis. We, and others, previously demonstrated that microRNA-144 (miR-144) functions to post-transcriptionally regulate ABCA1 (ATP binding cassette transporter A1) and plasma HDL (high-density lipoprotein) cholesterol levels. Here, we explore how miR-144 inhibition may protect against atherosclerosis. Approach and Results: We demonstrate that miR-144 silencing reduced atherosclerosis in male, but not female low-density lipoprotein receptor null ( Ldlr −/− ) mice. MiR-144 antagonism increased circulating HDL cholesterol levels, remodeled the HDL particle, and enhanced reverse cholesterol transport. Notably, the effects on HDL and reverse cholesterol transport were more pronounced in male mice suggesting sex-specific differences may contribute to the effects of silencing miR-144 on atherosclerosis. As a molecular mechanism, we identify the oxysterol metabolizing enzyme CYP7B1 (cytochrome P450 enzyme 7B1) as a miR-144 regulated gene in male, but not female mice. Consistent with miR-144-dependent changes in CYP7B1 activity, we show decreased levels of 27-hydroxycholesterol, a known proatherogenic sterol and the endogenous substrate for CYP7B1 in male, but not female mice. Conclusions: Our data demonstrate silencing miR-144 has sex-specific effects and that treatment with antisense oligonucleotides to target miR-144 might result in enhancements in reverse cholesterol transport and oxysterol metabolism in patients with cardiovascular disease.
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