Parker R I, Gralnick H R
Clinical Pathology Department, Clinical Center, National Institutes of Health, Bethesda, Maryland, USA.
J Lab Clin Med. 1997 Nov;130(5):520-9. doi: 10.1016/s0022-2143(97)90129-3.
We have studied the energy requirements (adenosine triphosphate) for the expression of platelet-von Willbrand factor on platelets under conditions in which glycolysis and/or oxidative phosphorylation were inhibited. We found that platelet-vWf expression on the surfaces of both unstimulated and stimulated platelets required energy and was maximally decreased when metabolic ATP was maximally depleted. Platelet-vWf expression correlated directly with estimates of adenylate energy charge in both unstimulated and stimulated platelets. In addition, platelet shape change and agonist-induced intracellular Ca2+ flux were maintained at lower AECs than were either platelet aggregation or alpha-granule secretion. Our results indicate that the surface expression of platelet-vWf on unstimulated platelets is a dynamic process, and that energy is required to maintain basal amounts of platelet-vWf on the platelet surface. Our data also suggest that the metabolic ATP required to effect changes in platelet shape is less than that necessary to maintain basal platelet-vWf surface expression or to produce full alpha-granule secretion. We show that platelet-shape change in the absence of alpha-granule secretion can result in an increase in platelet-vWf surface expression.
我们研究了在糖酵解和/或氧化磷酸化受到抑制的条件下,血小板表达血小板血管性血友病因子(von Willbrand factor,vWf)所需的能量(三磷酸腺苷)。我们发现,未刺激和刺激的血小板表面上血小板vWf的表达均需要能量,并且当代谢性三磷酸腺苷(ATP)被最大程度耗尽时,其表达量会最大程度降低。在未刺激和刺激的血小板中,血小板vWf的表达与腺苷酸能荷的估计值直接相关。此外,与血小板聚集或α-颗粒分泌相比,在较低的能荷水平下,血小板形状变化和激动剂诱导的细胞内钙离子通量仍能维持。我们的结果表明,未刺激的血小板表面上血小板vWf的表达是一个动态过程,维持血小板表面上血小板vWf的基础量需要能量。我们的数据还表明,引起血小板形状变化所需的代谢性ATP少于维持血小板vWf表面基础表达或产生完全α-颗粒分泌所需的ATP。我们表明,在没有α-颗粒分泌的情况下血小板形状变化可导致血小板vWf表面表达增加。