Fox J E, Austin C D, Reynolds C C, Steffen P K
Gladstone Foundation Laboratories for Cardiovascular Disease, Department of Pathology, University of California, San Francisco 94140-0608.
J Biol Chem. 1991 Jul 15;266(20):13289-95.
One of the responses of platelets to stimulation is activation of intracellular calpain (the Ca(2+)-dependent protease). Previously, we have shown that activation of calpain in platelets is involved in the generation of platelet procoagulant activity. Because procoagulant activity is present on the microvesicles that are shed from activated platelets, in this study we examined whether calpain is involved in the shedding of microvesicles. Platelets were incubated with the physiological agonists collagen or thrombin. The extent of activation of calpain correlated positively with the amount of procoagulant-containing microvesicles that formed, and the shedding of procoagulant-containing microvesicles was inhibited by calpeptin, MDL, and EST (E-64-d), three membrane-penetrating inhibitors of calpain. The protein composition of the microvesicles shed from aggregating platelets was similar to that of microvesicles shed by platelets in which the association of the membrane skeleton with the plasma membrane had been disrupted by incubation of platelets with dibucaine or ionophore A23187. Furthermore, like microvesicles shed from dibucaine- or ionophore A23187-treated platelets, those shed from the aggregating platelets possessed procoagulant activity. These results are consistent with the possibility that activation of calpain in aggregating platelets causes the shedding of procoagulant-containing microvesicles. We suggest that the shedding of microvesicles results from the calpain-induced hydrolysis of the platelet membrane skeleton.
血小板对刺激的反应之一是细胞内钙蛋白酶(钙依赖性蛋白酶)的激活。此前,我们已经表明血小板中钙蛋白酶的激活与血小板促凝活性的产生有关。由于促凝活性存在于从活化血小板脱落的微泡上,因此在本研究中我们检测了钙蛋白酶是否参与微泡的脱落。将血小板与生理激动剂胶原或凝血酶一起孵育。钙蛋白酶的激活程度与形成的含促凝剂微泡的量呈正相关,并且含促凝剂微泡的脱落受到钙蛋白酶的三种膜穿透抑制剂钙蛋白酶抑制肽、MDL和EST(E-64-d)的抑制。聚集血小板脱落的微泡的蛋白质组成与用丁卡因或离子载体A23187孵育血小板后膜骨架与质膜的结合被破坏的血小板脱落的微泡相似。此外,与从丁卡因或离子载体A23187处理的血小板脱落的微泡一样,聚集血小板脱落的微泡也具有促凝活性。这些结果与聚集血小板中钙蛋白酶的激活导致含促凝剂微泡脱落的可能性一致。我们认为微泡的脱落是由钙蛋白酶诱导的血小板膜骨架水解引起的。