Krishnamurthi S, Morgan W A, Kakkar V V
Thrombosis Research Unit, King's College School of Medicine and Dentistry, Rayne Institute, London, England.
FEBS Lett. 1989 Jul 3;250(2):195-200. doi: 10.1016/0014-5793(89)80719-7.
The effect of extracellular Na+ [( Na+]e) removal on agonist-induced granule secretion in platelets in relation to [pH]i and [Ca2+]i changes was investigated. Substitution of [Na+]e with choline+ of K+ resulted in a significant enhancement of 5HT secretion induced by thrombin, collagen, U46619 and the protein kinase C activators, PMA and diC8. Increases in [Ca2+]i induced by thrombin and U46619 were slightly inhibited or unaffected in these buffers, but [pH]i increases induced by thrombin, U46619, PMA and diC8 were abolished and a drop in [pH]i (0.05 0.1 units below resting) was observed. Although preincubation with potassium acetate produced a big drop in [pH]i and greatly increased secretion with all the agonists, particularly in the absence of [Na+]e, clear evidence that [pH]i rises due to Na+/H+ exchange are inhibitory to secretion was obtained only with thrombin. Thus, (i) NH4Cl, which restored the increase in [pH]i in the absence of [Na+]e reduced the potentiated secretory response to thrombin, (ii) no increase in thrombin-induced secretion was observed when Na+ was replaced with Li+, which allowed a normal increase in [pH]i and (iii) ethyl isopropyl amiloride (EIPA) abolished the [pH]i rise and potentiated thrombin-induced secretion. With collagen and U46619, the results suggest that removal of [Na+]e per se rather than inhibition of Na+/H+ exchange results in enhanced secretion. It is concluded that [Na+]e per se and [pH]i elevations via Na+/H+ exchange both have important inhibitory roles in the control of platelet granule secretion.
研究了细胞外钠离子([Na⁺]e)去除对血小板中激动剂诱导的颗粒分泌的影响,以及与细胞内pH值([pH]i)和钙离子浓度([Ca²⁺]i)变化的关系。用胆碱⁺或钾⁺替代[Na⁺]e导致凝血酶、胶原蛋白、U46619以及蛋白激酶C激活剂PMA和二辛酯诱导的5-羟色胺(5HT)分泌显著增强。在这些缓冲液中,凝血酶和U46619诱导的[Ca²⁺]i增加略有抑制或未受影响,但凝血酶、U46619、PMA和二辛酯诱导的[pH]i增加被消除,并且观察到[pH]i下降(比静息值低0.05 - 0.1个单位)。尽管用醋酸钾预孵育会使[pH]i大幅下降,并使所有激动剂诱导的分泌大大增加,特别是在没有[Na⁺]e的情况下,但仅在凝血酶作用下才获得明确证据表明因钠氢交换导致的[pH]i升高对分泌有抑制作用。因此,(i)氯化铵在没有[Na⁺]e的情况下恢复了[pH]i的升高,降低了对凝血酶增强的分泌反应;(ii)当用锂离子替代钠离子时,未观察到凝血酶诱导的分泌增加,而锂离子允许[pH]i正常升高;(iii)乙基异丙基氨氯地平(EIPA)消除了[pH]i升高并增强了凝血酶诱导的分泌。对于胶原蛋白和U46619,结果表明去除[Na⁺]e本身而非抑制钠氢交换导致分泌增强。得出的结论是,[Na⁺]e本身以及通过钠氢交换引起的[pH]i升高在血小板颗粒分泌的控制中都具有重要的抑制作用。