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Ca2+ accumulation into acidic organelles mediated by Ca2+- and vacuolar H+-ATPases in human platelets

机译:Ca2 +积聚在人血小板中由Ca2 +-和液泡H + -ATPase介导的酸性细胞器中

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摘要

Most physiological agonists increase cytosolic free [Ca2+](c) (cyto-solic free Ca2+ concentration) to regulate a variety of cellular processes. How different stimuli evoke distinct spatiotemporal Ca2+ responses remains unclear, and the presence of separate intracellular Ca2+ stores might be of great functional relevance. Ca2+ accumulation into intracellular compartments mainly depends on the activity of Ca2+- and H+-ATPases. Platelets present two separate Ca2+ stores differentiated by the distinct sensitivity to thapsigargin and TBHQ [2,5-di-(t-butyl)-1,4-hydroquinone]. Although one store has long been identified as the dense tubular system, the nature of the TBHQ-sensitive store remains uncertain. Treatment of platelets with GPN (glycylphenylalanine-2-naphthylamide) impaired Ca2+ release by TBHQ and reduced that evoked by thrombin. In contrast, GPN did not modify Ca2+ mobilization stimulated by ADP or AVP ([arginine] vasopressin). Treatment with nigericin, a proton carrier, and bafilomycin A I, an inhibitor of the vacuolar H+-ATPase, to dissipate the proton gradient into acidic organelles induces a transient increase in [Ca2+], that was abolished by previous treatment with the SERCA (sarcoplasmic/endoplasmic-reticulum Ca2+-ATPase) 3 inhibitor TBHQ. Depleted acidic stores after nigericin or bafilomycin A1 were refilled by SERCA 3. Thrombin, but not ADP or AVP, reduces the rise in [Ca2+], evoked by nigericin and bafilomycin A1. Our results indicate that the TBHQ-sensitive store in human platelets is an acidic organelle whose Ca2+ accumulation is regulated by both Ca2+ and vacuolar H+-ATPases.
机译:大多数生理激动剂会增加细胞内游离[Ca2 +](c)(细胞内游离Ca2 +的浓度)来调节各种细胞过程。尚不清楚不同的刺激如何引起不同的时空Ca2 +反应,并且单独的细胞内Ca2 +储存的存在可能与功能有很大关系。 Ca2 +积累到细胞内区室中主要取决于Ca2 +-和H + -ATPase的活性。血小板具有两个独立的Ca2 +贮藏库,其区别在于对毒胡萝卜素和TBHQ [2,5-二-(叔丁基)-1,4-氢醌]的敏感性不同。尽管长期以来一直认为一个商店是密集的管状系统,但是对TBHQ敏感的商店的性质仍然不确定。用GPN(甘氨酰苯丙氨酸-2-萘酰胺)处理血小板会损害TBHQ释放的Ca2 +,并减少凝血酶引起的释放。相反,GPN不会改变ADP或AVP([精氨酸]加压素)刺激的Ca2 +动员。用质子载体尼日尔和液泡H + -ATPase的抑制剂巴氟霉素AI处理,使质子梯度消散到酸性细胞器中,可引起[Ca2 +]的瞬时增加,而先前用SERCA(肌浆蛋白/内质网Ca2 + -ATPase)3抑制剂TBHQ。通过SERCA 3重新填充尼日利亚霉素或巴氟霉素A1后耗尽的酸性存储。凝血酶而不是ADP或AVP可以减少由尼日利亚霉素和巴氟霉素A1引起的[Ca2 +]升高。我们的结果表明,人血小板中的TBHQ敏感存储是一种酸性细胞器,其Ca2 +积累受Ca2 +和液泡H + -ATPase调节。

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