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自噬在血小板激活时被诱导,对止血和血栓形成至关重要。

Autophagy is induced upon platelet activation and is essential for hemostasis and thrombosis.

作者信息

Ouseph Madhu M, Huang Yunjie, Banerjee Meenakshi, Joshi Smita, MacDonald Laura, Zhong Yu, Liu Huijuan, Li Xianting, Xiang Binggang, Zhang Guoying, Komatsu Masaaki, Yue Zhenyu, Li Zhenyu, Storrie Brian, Whiteheart Sidney W, Wang Qing Jun

机构信息

Department of Molecular and Cellular Biochemistry, University of Kentucky, Lexington, KY;

Department of Physiology and Biophysics, University of Arkansas for Medical Sciences, Little Rock, AR;

出版信息

Blood. 2015 Sep 3;126(10):1224-33. doi: 10.1182/blood-2014-09-598722. Epub 2015 Jul 24.

Abstract

Autophagy is important for maintaining cellular homeostasis, and thus its deficiency is implicated in a broad spectrum of human diseases. Its role in platelet function has only recently been examined. Our biochemical and imaging studies demonstrate that the core autophagy machinery exists in platelets, and that autophagy is constitutively active in resting platelets. Moreover, autophagy is induced upon platelet activation, as indicated by agonist-induced loss of the autophagy marker LC3II. Additional experiments, using inhibitors of platelet activation, proteases, and lysosomal acidification, as well as platelets from knockout mouse strains, show that agonist-induced LC3II loss is a consequence of platelet signaling cascades and requires proteases, acidic compartments, and membrane fusion. To assess the physiological role of platelet autophagy, we generated a mouse strain with a megakaryocyte- and platelet-specific deletion of Atg7, an enzyme required for LC3II production. Ex vivo analysis of platelets from these mice shows modest defects in aggregation and granule cargo packaging. Although these mice have normal platelet numbers and size distributions, they exhibit a robust bleeding diathesis in the tail-bleeding assay and a prolonged occlusion time in the FeCl3-induced carotid injury model. Our results demonstrate that autophagy occurs in platelets and is important for hemostasis and thrombosis.

摘要

自噬对于维持细胞内稳态至关重要,因此其功能缺陷与多种人类疾病相关。其在血小板功能中的作用直到最近才得到研究。我们的生化和成像研究表明,血小板中存在核心自噬机制,且自噬在静息血小板中持续活跃。此外,如激动剂诱导自噬标志物LC3II丢失所示,血小板激活时自噬被诱导。使用血小板激活抑制剂、蛋白酶、溶酶体酸化抑制剂以及敲除小鼠品系的血小板进行的额外实验表明,激动剂诱导的LC3II丢失是血小板信号级联反应的结果,并且需要蛋白酶、酸性区室和膜融合。为了评估血小板自噬的生理作用,我们构建了一种小鼠品系,其巨核细胞和血小板特异性缺失Atg7(一种产生LC3II所需的酶)。对这些小鼠的血小板进行的体外分析显示,它们在聚集和颗粒内容物包装方面存在适度缺陷。尽管这些小鼠的血小板数量和大小分布正常,但在尾部出血试验中它们表现出严重的出血倾向,在FeCl3诱导的颈动脉损伤模型中闭塞时间延长。我们的结果表明,自噬发生在血小板中,并且对止血和血栓形成很重要。

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Dissection of autophagy in human platelets.人体血小板自噬的剖析
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