Menashi S, Authi K S, Carey F, Crawford N
Biochem J. 1984 Sep 1;222(2):413-7. doi: 10.1042/bj2220413.
By using density-gradient fractionation and high-voltage free-flow electrophoresis, human platelet membranes were separated into highly purified subfractions of surface (SM) and intracellular (IM) origin. Associated exclusively with the IM fraction is an ATP-dependent Ca2+ uptake that, in the absence of oxalate, reaches steady-state levels in 5-10 min. When Ca2+-EGTA buffers were used to control the external Ca2+ concentrations (range 0.1-50 microM) there was an increase in the intravesicle steady-state level of Ca2+ up to 10 microM external Ca2+ concentration. Above this level the intravesicle space becomes saturated at a concentration between 10 and 20 nmol of Ca2+ X (mg of protein)-1. The ionophore A23187 promotes a rapid and almost total release of the sequestered Ca2+ (greater than 90%, t1/2 1-2 min). The presence of oxalate in the external medium greatly enhances the Ca2+ accumulation to levels as high as 200 nmol X (mg of protein)-1, but the uptake process is more variable and rarely reaches steady-state level even after 2 h incubation. Moreover, accumulation in the presence of oxalate effects ionophore release with less than 80% depletion in 45-60 min. These findings, taken together with the known presence in the platelet of a wide variety of functional and metabolic processes triggered by this cation, suggest that the platelet IM has a key role in controlling cytosolic Ca2+ concentrations.
通过使用密度梯度分级分离法和高压自由流动电泳法,人血小板膜被分离成表面(SM)和细胞内(IM)来源的高度纯化亚组分。仅与IM组分相关的是一种ATP依赖的Ca2+摄取,在没有草酸盐的情况下,该摄取在5 - 10分钟内达到稳态水平。当使用Ca2+ - EGTA缓冲液控制外部Ca2+浓度(范围为0.1 - 50 microM)时,囊泡内Ca2+的稳态水平在外部Ca2+浓度达到10 microM时会增加。高于此水平,囊泡内空间在Ca2+浓度为10至20 nmol X(mg蛋白质)-1之间达到饱和。离子载体A23187促进螯合的Ca2+快速且几乎完全释放(大于90%,t1/2为1 - 2分钟)。外部介质中草酸盐的存在极大地增强了Ca2+的积累,使其水平高达200 nmol X(mg蛋白质)-1,但摄取过程更具变异性,即使在孵育2小时后也很少达到稳态水平。此外,在草酸盐存在下的积累对离子载体释放的影响是在45 - 60分钟内耗尽不到80%。这些发现,连同已知血小板中由这种阳离子触发的多种功能和代谢过程的存在,表明血小板IM在控制细胞质Ca2+浓度方面具有关键作用。