Brass L F
J Biol Chem. 1984 Oct 25;259(20):12571-5.
Platelets maintain a low cytosolic free Ca2+ concentration by limiting Ca2+ influx from plasma and promoting Ca2+ efflux. The present studies examine the role of the plasma membrane Na+ gradient in these processes. The Na+ gradient in intact unstimulated platelets was altered by incubating the platelets with ouabain or by replacing extracellular Na+ with N-methyl-D-glucamine or choline. Ca2+ flux across the plasma membrane and the amount of exchangeable Ca2+ in the platelet cytosol were measured by observing 45Ca2+ influx and efflux under steady-state conditions. The cytosolic free Ca2+ concentration was measured with the fluorescent probe quin2. At extracellular Na+ concentrations below 50 mM, the size of the cytosolic exchangeable Ca2+ pool increased by 48%. The size of the exchangeable Ca2+ pool sequestered in the dense tubular system increased by 356%. Ca2+ flux across the plasma membrane increased by 38%. There was, however, no change in total platelet Ca2+ and little, if any, change in the cytosolic free Ca2+ concentration. Similar effects were produced by incubating platelets with ouabain. These observations demonstrate a marked influence of the plasma membrane Na+ gradient on Ca2+ homeostasis in platelets. The nature of the changes, however, suggests that Na+/Ca2+ exchange cannot be sole basis for Ca2+ efflux from platelets.
血小板通过限制血浆中钙离子的内流并促进钙离子外流来维持低细胞质游离钙离子浓度。本研究探讨质膜钠梯度在这些过程中的作用。通过用哇巴因孵育血小板或用N-甲基-D-葡糖胺或胆碱替代细胞外钠离子来改变完整未刺激血小板中的钠梯度。在稳态条件下,通过观察45Ca2+的内流和外流来测量跨质膜的Ca2+通量以及血小板细胞质中可交换Ca2+的量。用荧光探针喹啉2测量细胞质游离Ca2+浓度。在细胞外钠离子浓度低于50 mM时,细胞质可交换Ca2+池的大小增加了48%。致密管状系统中隔离的可交换Ca2+池的大小增加了356%。跨质膜的Ca2+通量增加了38%。然而,血小板总钙含量没有变化,细胞质游离Ca2+浓度即使有变化也很小。用哇巴因孵育血小板也产生了类似的效果。这些观察结果表明质膜钠梯度对血小板中Ca2+稳态有显著影响。然而,变化的性质表明钠/钙交换不可能是血小板中Ca2+外流的唯一基础。