Division of Hematology, Department of Medicine, Brigham and Women's Hospital, Boston, MA.
Harvard Medical School, Boston, MA.
Blood Adv. 2019 Oct 22;3(20):3092-3098. doi: 10.1182/bloodadvances.2018020834.
In addition to their primary roles in hemostasis and thrombosis, platelets participate in many other physiological and pathological processes, including, but not limited to inflammation, wound healing, tumor metastasis, and angiogenesis. Among their most interesting properties is the large number of bioactive proteins stored in their α-granules, the major storage granule of platelets. We previously showed that platelets differentially package pro- and antiangiogenic proteins in distinct α-granules that undergo differential release upon platelet activation. Nevertheless, how megakaryocytes achieve differential packaging is not fully understood. In this study, we use a mouse megakaryocyte culture system and endocytosis assay to establish when and where differential packaging occurs during platelet production. Live cell microscopy of primary mouse megakaryocytes incubated with fluorescently conjugated fibrinogen and endostatin showed differential endocytosis and packaging of the labeled proteins into distinct α-granule subpopulations. Super-resolution microscopy of mouse proplatelets and human whole-blood platelet α-granules simultaneously probed for 2 different membrane proteins (VAMP-3 and VAMP-8), and multiple granular content proteins (bFGF, ENDO, TSP, VEGF) confirmed differential packaging of protein contents into α-granules. These data suggest that megakaryocytes differentially sort and package α-granule contents, which are preserved as α-granule subpopulations during proplatelet extension and platelet production.
除了在止血和血栓形成中的主要作用外,血小板还参与许多其他生理和病理过程,包括但不限于炎症、伤口愈合、肿瘤转移和血管生成。它们最有趣的特性之一是大量生物活性蛋白储存在α-颗粒中,α-颗粒是血小板的主要储存颗粒。我们之前表明,血小板在不同的α-颗粒中差异包装促血管生成和抗血管生成蛋白,这些蛋白在血小板激活时会发生不同的释放。然而,巨核细胞如何实现差异包装还不完全清楚。在这项研究中,我们使用小鼠巨核细胞培养系统和内吞作用测定法,建立了在血小板生成过程中差异包装发生的时间和地点。用荧光标记的纤维蛋白原和内皮抑素孵育原代小鼠巨核细胞的活细胞显微镜观察显示,标记蛋白在不同的α-颗粒亚群中进行了差异内吞和包装。用超分辨率显微镜同时探测小鼠原血小板和人全血血小板α-颗粒中的 2 种不同的膜蛋白(VAMP-3 和 VAMP-8)和多种颗粒内容物蛋白(bFGF、ENDO、TSP、VEGF),证实了蛋白含量在α-颗粒中的差异包装。这些数据表明,巨核细胞对α-颗粒内容物进行差异分拣和包装,在原血小板延伸和血小板生成过程中,这些内容物被保存为α-颗粒亚群。