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微小RNA 223增强ABCA1蛋白稳定性并促进胆固醇负荷巨噬细胞的外流

MicroRNA 223 Enhances ABCA1 Protein Stability and Supports Efflux in Cholesterol-Burdened Macrophages.

作者信息

Syed Rafay, Rengasamy Palanivel, Rajagopalan Sanjay, Deiuliis Jeffrey A, Maiseyeu Andrei

机构信息

Department of Medicine, Division of Cardiovascular Medicine, University of Maryland, Baltimore, MD, USA.

Case Cardiovascular Research Institute (CVRI), Case Western Reserve University, Cleveland, OH, USA.

出版信息

Cell Biochem Biophys. 2025 Jun;83(2):1943-1954. doi: 10.1007/s12013-024-01603-3. Epub 2024 Nov 14.

Abstract

Macrophages are present in all vertebrates as part of the innate immune system, which protects from pathogens and scavenges sterol rich, cellular debris and modified lipoproteins. Thus, resident macrophages are prone to excessive levels of intracellular cholesterol esters. Intramacrophage cholesterol esters can efflux via cell surface transporters, ABCA1 and ABCG1, to lipoprotein carriers such as apo-AI and HDL. Systemically, Apo-AI and HDL facilitate trafficking of cholesterol back to the liver, in a process called reverse cholesterol transport. Impaired macrophage cholesterol efflux is a primary factor in the etiology of atherosclerosis. We hypothesized that microRNA 223 (miR-223) regulated macrophage LDL metabolism, due to predicted binding to Sp1 and Sp3 mRNA, transcriptional regulators of ABCA1 expression. Primary mouse (WT, miR-223 KO) macrophages were loaded with acetylated LDL and stimulated with LPS to form an inflammatory foam cell phenotype. miR-223 KO foam cells demonstrated impaired efflux to both apo-AI and HDL. While transcriptional regulation was intact in miR-223 KO foam cells, ABCA1 protein degradation was greatly accelerated. Blockade of both proteasomal and lysosomal degradation pathways rescued miR-223 deficiency-mediated ABCA1 degradation to the WT levels. Our findings demonstrate that miR-223 expression in macrophages is required for maintenance of ABCA1 and ABCG1 proteins.

摘要

巨噬细胞作为先天性免疫系统的一部分存在于所有脊椎动物中,该系统可抵御病原体并清除富含固醇的细胞碎片和修饰的脂蛋白。因此,驻留巨噬细胞容易积累过多的细胞内胆固醇酯。巨噬细胞内的胆固醇酯可通过细胞表面转运蛋白ABCA1和ABCG1外流至脂蛋白载体,如载脂蛋白A-I(apo-AI)和高密度脂蛋白(HDL)。在全身水平,apo-AI和HDL有助于将胆固醇转运回肝脏,这一过程称为逆向胆固醇转运。巨噬细胞胆固醇外流受损是动脉粥样硬化病因中的一个主要因素。我们推测,微小RNA 223(miR-223)可调节巨噬细胞低密度脂蛋白(LDL)代谢,因为其可与ABCA1表达的转录调节因子Sp1和Sp3的mRNA预测性结合。将原代小鼠(野生型、miR-223基因敲除型)巨噬细胞用乙酰化LDL负载,并用地塞米松刺激以形成炎性泡沫细胞表型。miR-223基因敲除型泡沫细胞对apo-AI和HDL的外流均受损。虽然miR-223基因敲除型泡沫细胞中的转录调节完整,但ABCA1蛋白降解大大加速。阻断蛋白酶体和溶酶体降解途径可将miR-223缺乏介导的ABCA1降解挽救至野生型水平。我们的研究结果表明,巨噬细胞中miR-223的表达对于维持ABCA1和ABCG1蛋白是必需的。

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