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Nitro-oleic acid a ligand of CD36 reduces cholesterol accumulation by modulating oxidized-LDL uptake and cholesterol efflux in RAW264.7 macrophages

机译:硝基 - 油酸CD36的配体通过在Raw264.7巨噬细胞中调节氧化-LDL摄取和胆固醇渗透来减少胆固醇积累

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摘要

Macrophages play a pivotal role in the early stages of atherosclerosis development; they excessively accumulate cholesterol in the cytosol in response to modified Low Density Lipoprotein (mLDL). The mLDL are incorporated through scavenger receptors. CD36 is a high-affinity cell surface scavenger receptor that facilitates the binding and uptake of long-chain fatty acids and mLDL into the cell. Numerous structurally diverse ligands can initiate signaling responses through CD36 to regulate cell metabolism, migration, and angiogenesis. Nitro-fatty acids are endogenous electrophilic lipid mediators that react with and modulate the function of multiple enzymes and transcriptional regulatory proteins. These actions induce the expression of several anti-inflammatory and cytoprotective genes and limit pathologic responses in experimental models of atherosclerosis, cardiac ischemia/reperfusion, and inflammatory diseases. Pharmacological and genetic approaches were used to explore the actions of nitro-oleic acid (NO2-OA) on macrophage lipid metabolism. Pure synthetic NO2-OA dose-dependently increased CD36 expression in RAW264.7 macrophages and this up-regulation was abrogated in BMDM from Nrf2-KO mice. Ligand binding analysis revealed that NO2-OA specifically interacts with CD36, thus limiting the binding and uptake of mLDL. Docking analysis shows that NO2-OA establishes a low binding energy interaction with the alpha helix containing Lys164 in CD36. NO2-OA also restored autophagy flux in mLDL-loaded macrophages, thus reversing cholesterol deposition within the cell. In aggregate, these results indicate that NO2-OA reduces cholesterol uptake by binding to CD36 and increases cholesterol efflux by restoring autophagy.
机译:巨噬细胞在动脉粥样硬化发展的早期阶段发挥关键作用;它们响应于改性的低密度脂蛋白(MLDL),它们过度累积在细胞溶胶中的胆固醇。 MLDL通过清除剂受体掺入。 CD36是一种高亲和力细胞表面清除剂受体,促进长链脂肪酸和MLDL进入细胞的结合和吸收。许多结构不同的配体可以通过CD36开始信号响应来调节细胞代谢,迁移和血管生成。硝基 - 脂肪酸是内源性亲电子脂质介质,其反应并调节多种酶和转录调节蛋白的功能。这些动作诱导了几种抗炎和细胞保护基因的表达,并在动脉粥样硬化,心脏缺血/再灌注和炎症疾病中的实验模型中限制病理反应。药理学和遗传方法用于探讨硝基 - 油酸(NO2-OA)对巨噬细胞脂质代谢的作用。纯合成NO2-OA剂量依赖性地增加了RAW264.7中的CD36表达,巨噬细胞和该上调在NRF2-KO小鼠中删除了BMDM。配体结合分析显示NO2-OA特别与CD36相互作用,从而限制MLDL的结合和摄取。对接分析表明,NO2-OA与CD36中的含有Lys164的α螺旋建立低结合能相互作用。 NO2-OA还在MLDL加载的巨噬细胞中恢复自噬助焊剂,从而逆转细胞内的胆固醇沉积。在聚集体中,这些结果表明NO2-OA通过与CD36结合而降低胆固醇吸收,并通过恢复自噬增加胆固醇流出。

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