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血小板中 Cdc42 缺失的小鼠以分泌增加为主导的血小板功能的多种改变。

Multiple alterations of platelet functions dominated by increased secretion in mice lacking Cdc42 in platelets.

机构信息

Department of Vascular Medicine, University Clinic, University of Würzburg and Rudolf Virchow Center, DFG Research Center for Experimental Biomedicine, Würzburg, Germany.

出版信息

Blood. 2010 Apr 22;115(16):3364-73. doi: 10.1182/blood-2009-09-242271. Epub 2010 Feb 4.

Abstract

Platelet activation at sites of vascular injury is crucial for hemostasis, but it may also cause myocardial infarction or stroke. Cytoskeletal reorganization is essential for platelet activation and secretion. The small GTPase Cdc42 has been implicated as an important mediator of filopodia formation and exocytosis in various cell types, but its exact function in platelets is not established. Here, we show that the megakaryocyte/platelet-specific loss of Cdc42 leads to mild thrombocytopenia and a small increase in platelet size in mice. Unexpectedly, Cdc42-deficient platelets were able to form normally shaped filopodia and spread fully on fibrinogen upon activation, whereas filopodia formation upon selective induction of GPIb signaling was reduced compared with wild-type platelets. Furthermore, Cdc42-deficient platelets showed enhanced secretion of alpha granules, a higher adenosine diphosphate (ADP)/adenosine triphosphate (ATP) content, increased aggregation at low agonist concentrations, and enhanced aggregate formation on collagen under flow. In vivo, lack of Cdc42 resulted in faster occlusion of ferric chloride-injured arterioles. The life span of Cdc42-deficient platelets was markedly reduced, suggesting increased clearing of the cells under physiologic conditions. These data point to novel multiple functions of Cdc42 in the regulation of platelet activation, granule organization, degranulation, and a specific role in GPIb signaling.

摘要

血小板在血管损伤部位的激活对于止血至关重要,但也可能导致心肌梗死或中风。细胞骨架重组对于血小板的激活和分泌至关重要。小 GTP 酶 Cdc42 被认为是各种细胞类型中形成丝状伪足和胞吐作用的重要介质,但它在血小板中的确切功能尚未确定。在这里,我们表明 Cdc42 在巨核细胞/血小板中的特异性缺失导致小鼠轻度血小板减少和血小板体积略有增加。出乎意料的是,Cdc42 缺陷型血小板能够正常形成丝状伪足,并在激活时完全铺展在纤维蛋白原上,而与野生型血小板相比,选择性诱导 GPIb 信号时的丝状伪足形成减少。此外,Cdc42 缺陷型血小板表现出α颗粒分泌增强、二磷酸腺苷(ADP)/三磷酸腺苷(ATP)含量更高、低激动剂浓度下聚集增加以及在流动条件下胶原上的聚集形成增强。在体内,缺乏 Cdc42 导致三氯化铁损伤的小动脉更快闭塞。Cdc42 缺陷型血小板的寿命明显缩短,表明在生理条件下细胞清除增加。这些数据表明 Cdc42 在调节血小板激活、颗粒组织、脱颗粒以及 GPIb 信号中的特定作用方面具有新的多种功能。

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