CAP1: a novel extracellular vesicle marker linked to endothelial senescence in atherosclerosis.

IF 5.7 2区 生物学 Q1 BIOLOGY
Ignacio Hernandez, Laura Botana, Javier Diez-Mata, Laura Tesoro, Beatriz Jimenez-Guirado, Claudia Gonzalez-Cucharero, Nunzio Alcharani, Jose Luis Zamorano, Marta Saura, Carlos Zaragoza
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引用次数: 0

Abstract

Endothelial senescence (ES) contributes to aging-related disorders and triggers a senescence-associated secretory-pattern (SASP), releasing Extracellular Vesicles (EVs), potentially impacting atherosclerosis. We used EVs from young (8 weeks) and aged (24 months) ApoE-knockout mice to detect ES in human aortic (HAEC) and coronary (CAEC) endothelial cells. Age-related atherosclerosis was confirmed by increased atheroma plaque formation in aged compared to young ApoE-knockout mice fed a high-fat diet, and the contribution of EVs from aged ApoE-knockout mice on ES was evidenced by a replicative senescence assay in cultured HAEC and CAEC, starting with the promotion of ES. A proteomic analysis depicted the recently PCSK9-associated CAP1 protein as a cargo component in EVs from aged animals and highly expressed in mouse and human endarterectomy plaques. Gene silencing of CAP1 inhibited HAEC and CAEC ES while overexpressing CAP1 in these cells restored the senescent-phenotype. The in vivo contribution of CAP1 was assessed by injecting CAP1-containing EVs isolated from aged ApoE-knockout mice into wild-type (WT) mice fed either a regular or high-fat diet. Compared to the EVs from young mice, the CAP1-containing EVs led to a pronounced ES along with the formation of intraluminal atheroma plaques. Similarly, young ApoE-knockout mice developed thickened and calcified atheroma plaques, along with increased ß-Gal-positive aortic staining when injected with EVs isolated from aged ApoE-knockout mice, like the atheroma plaques observed in aged ApoE-knockout animals. In conclusion, early molecular targets of ES may contribute to better management of atherosclerosis, in which here we unveiled CAP1 as a new molecular target.

CAP1:一种与动脉粥样硬化中内皮细胞衰老相关的新型细胞外囊泡标志物。
内皮细胞衰老(ES)会导致衰老相关疾病,并引发衰老相关分泌模式(SASP),释放出细胞外囊泡(EVs),从而对动脉粥样硬化产生潜在影响。我们利用年轻(8 周)和衰老(24 个月)载脂蛋白E 基因敲除小鼠的 EVs 来检测人主动脉(HAEC)和冠状动脉(CAEC)内皮细胞中的 ES。与年轻的载脂蛋白E基因敲除小鼠相比,以高脂肪饮食喂养的老年载脂蛋白E基因敲除小鼠动脉粥样斑块形成增加,这证实了与年龄有关的动脉粥样硬化,在培养的HAEC和CAEC中进行的复制衰老试验证明了老年载脂蛋白E基因敲除小鼠的EVs对ES的贡献,ES首先得到促进。蛋白质组学分析显示,最近与 PCSK9 相关的 CAP1 蛋白是老年动物 EVs 的载货成分,并在小鼠和人类动脉粥样硬化斑块中高度表达。CAP1 基因沉默抑制了 HAEC 和 CAEC ES,而在这些细胞中过表达 CAP1 则恢复了衰老表型。通过将从老年载脂蛋白E基因敲除小鼠体内分离出的含CAP1的EV注射到以普通或高脂饮食喂养的野生型(WT)小鼠体内,对CAP1的体内贡献进行了评估。与来自年轻小鼠的EVs相比,含CAP1的EVs在形成动脉粥样斑块的同时也导致了明显的ES。同样,年轻的载脂蛋白E基因敲除小鼠在注射了从年老的载脂蛋白E基因敲除小鼠体内分离出的EVs后,动脉粥样斑块增厚并钙化,同时ß-Gal阳性主动脉染色增加,就像在年老的载脂蛋白E基因敲除动物体内观察到的动脉粥样斑块一样。总之,ES的早期分子靶标可能有助于更好地管理动脉粥样硬化,其中我们发现CAP1是一个新的分子靶标。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Biology Direct
Biology Direct 生物-生物学
CiteScore
6.40
自引率
10.90%
发文量
32
审稿时长
7 months
期刊介绍: Biology Direct serves the life science research community as an open access, peer-reviewed online journal, providing authors and readers with an alternative to the traditional model of peer review. Biology Direct considers original research articles, hypotheses, comments, discovery notes and reviews in subject areas currently identified as those most conducive to the open review approach, primarily those with a significant non-experimental component.
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