From the Department of Pulmonary Medicine, The University of Texas M. D. Anderson Cancer Center, Houston, Texas 77030.
the Escuela de Ingenieria y Ciencias, Instituto Tecnologico de Monterrey, Monterrey, Nuevo Leon 64849, Mexico.
J Biol Chem. 2019 Mar 29;294(13):4784-4792. doi: 10.1074/jbc.RA118.006922. Epub 2019 Jan 29.
Platelet degranulation, a form of regulated exocytosis, is crucial for hemostasis and thrombosis. Exocytosis in platelets is mediated by SNARE proteins, and in most mammalian cells this process is controlled by Munc18 (mammalian homolog of uncoordinated gene 18) proteins. Platelets express all Munc18 paralogs (Munc18-1, -2, and -3), but their roles in platelet secretion and function have not been fully characterized. Using Munc18-1, -2, and -3 conditional knockout mice, here we deleted expression of these proteins in platelets and assessed granule exocytosis. We measured products secreted by each type of platelet granule and analyzed EM platelet profiles by design-based stereology. We observed that the removal of Munc18-2 ablates the release of alpha, dense, and lysosomal granules from platelets, but we found no exocytic role for Munc18-1 or -3 in platelets. , Munc18-2-deficient platelets exhibited defective aggregation at low doses of collagen and impaired thrombus formation under shear stress. , megakaryocyte-specific Munc18-2 conditional knockout mice had a severe hemostatic defect and prolonged arterial and venous bleeding times. They were also protected against arterial thrombosis in a chemically induced model of arterial injury. Taken together, our results indicate that Munc18-2, but not Munc18-1 or Munc18-3, is essential for regulated exocytosis in platelets and platelet participation in thrombosis and hemostasis.
血小板脱颗粒作用是一种受调控的胞吐作用,对于止血和血栓形成至关重要。血小板中的胞吐作用是由 SNARE 蛋白介导的,在大多数哺乳动物细胞中,这个过程受 Munc18(uncoordinated gene 18 的哺乳动物同源物)蛋白的控制。血小板表达所有 Munc18 同源物(Munc18-1、-2 和 -3),但其在血小板分泌和功能中的作用尚未完全阐明。使用 Munc18-1、-2 和 -3 条件性敲除小鼠,我们在这里敲除了这些蛋白在血小板中的表达,并评估了颗粒的胞吐作用。我们测量了每种血小板颗粒分泌的产物,并通过基于设计的体视学分析了 EM 血小板图谱。我们观察到 Munc18-2 的缺失消除了血小板中 alpha、致密和溶酶体颗粒的释放,但我们没有发现 Munc18-1 或 -3 在血小板中具有胞吐作用。此外,Munc18-2 缺陷型血小板在低剂量胶原诱导下的聚集受损,在剪切应力下血栓形成受损。此外,巨核细胞特异性 Munc18-2 条件性敲除小鼠表现出严重的止血缺陷,动脉和静脉出血时间延长。它们还在化学诱导的动脉损伤模型中对动脉血栓形成具有保护作用。总之,我们的结果表明 Munc18-2 但不是 Munc18-1 或 Munc18-3 对于血小板中的受调控的胞吐作用以及血小板参与血栓形成和止血是必不可少的。