Department of Experimental Biomedicine, University Hospital and Rudolf Virchow Center, DFG Research Center for Experimental Biomedicine, University of Würzburg, Würzburg Department of Neurology, University of Würzburg, Würzburg Biocenter, University of Würzburg, Würzburg, Germany.
J Thromb Haemost. 2012 Nov;10(11):2361-72. doi: 10.1111/j.1538-7836.2012.04924.x.
Platelet activation and aggregation are crucial for primary hemostasis, but can also result in occlusive thrombus formation. Agonist-induced platelet activation involves different signaling pathways leading to the activation of phospholipases, which produce second messengers. The role of phospholipase C (PLC) in platelet activation is well established, but less is known about the relevance of phospholipase D (PLD).
The aim of this study was to determine a potential function of PLD2 in platelet physiology. Thus, we investigated the function of PLD2 in platelet signaling and thrombus formation, by generating mice lacking PLD2 or both PLD1 and PLD2. Adhesion, activation and aggregation of PLD-deficient platelets were analyzed in vitro and in vivo.
Whereas the absence of PLD2 resulted in reduced PLD activity in platelets, it had no detectable effect on the function of the cells in vitro and in vivo. However, the combined deficiency of both PLD isoforms resulted in defective α-granule release and protection in a model of FeCl3 -induced arteriolar thrombosis, effects that were not observed in mice lacking only one PLD isoform.
These results reveal redundant roles of PLD1 and PLD2 in platelet α-granule secretion, and indicate that this may be relevant for pathologic thrombus formation.
血小板的激活和聚集对于初级止血至关重要,但也可能导致闭塞性血栓形成。激动剂诱导的血小板激活涉及不同的信号通路,导致磷脂酶的激活,产生第二信使。磷脂酶 C(PLC)在血小板激活中的作用已得到充分证实,但磷脂酶 D(PLD)的相关性知之甚少。
本研究旨在确定 PLD2 在血小板生理学中的潜在功能。因此,我们通过生成缺乏 PLD2 或同时缺乏 PLD1 和 PLD2 的小鼠,研究了 PLD2 在血小板信号转导和血栓形成中的功能。在体外和体内分析了 PLD 缺陷血小板的黏附、激活和聚集。
尽管 PLD2 的缺失导致血小板中 PLD 活性降低,但在体外和体内对细胞的功能没有可检测到的影响。然而,两种 PLD 同工酶的联合缺失导致 FeCl3 诱导的小动脉血栓形成模型中α-颗粒释放和保护受损,而在仅缺乏一种 PLD 同工酶的小鼠中则没有观察到这些作用。
这些结果揭示了 PLD1 和 PLD2 在血小板α-颗粒分泌中的冗余作用,并表明这可能与病理性血栓形成有关。