炎症
泡沫电池
串扰
胆固醇
巨噬细胞
内皮细胞活化
内皮
载脂蛋白E
内皮干细胞
生物
细胞生物学
癌症研究
免疫学
内分泌学
内科学
医学
生物化学
脂蛋白
疾病
物理
光学
体外
作者
Liming Yu,Lin Xu,Haiyan Chu,Jun Peng,Anastasia Sacharidou,Hsi-Hsien Hsieh,Ada Weinstock,SA Khan,Liqian Ma,José Gabriel Barcia Durán,Jeffrey G. McDonald,Erik R. Nelson,Sung Hee Park,Donald P. McDonnell,Kathryn J. Moore,Lily Huang,Edward A. Fisher,Chieko Mineo,Linzhang Huang,Philip W. Shaul
标识
DOI:10.1038/s41467-023-39586-z
摘要
Abstract Hypercholesterolemia and vascular inflammation are key interconnected contributors to the pathogenesis of atherosclerosis. How hypercholesterolemia initiates vascular inflammation is poorly understood. Here we show in male mice that hypercholesterolemia-driven endothelial activation, monocyte recruitment and atherosclerotic lesion formation are promoted by a crosstalk between macrophages and endothelial cells mediated by the cholesterol metabolite 27-hydroxycholesterol (27HC). The pro-atherogenic actions of macrophage-derived 27HC require endothelial estrogen receptor alpha (ERα) and disassociation of the cytoplasmic scaffolding protein septin 11 from ERα, leading to extranuclear ERα- and septin 11-dependent activation of NF-κB. Furthermore, pharmacologic inhibition of cyp27a1, which generates 27HC, affords atheroprotection by reducing endothelial activation and monocyte recruitment. These findings demonstrate cell-to-cell communication by 27HC, and identify a major causal linkage between the hypercholesterolemia and vascular inflammation that partner to promote atherosclerosis. Interventions interrupting this linkage may provide the means to blunt vascular inflammation without impairing host defense to combat the risk of atherosclerotic cardiovascular disease that remains despite lipid-lowering therapies.
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