Nunn D L, Taylor C W
Department of Pharmacology, University of Cambridge, UK.
Mol Pharmacol. 1992 Jan;41(1):115-9.
Ca2+ within intracellular stores has been proposed to act with cytosolic inositol 1,4,5-trisphosphate (InsP3) to cause opening of the integral Ca2+ channel of the InsP3 receptor, leading to mobilization of intracellular Ca2+ stores [FEBS Lett. 263:5-9 (1990)]. We have tested that suggestion in saponin-permeabilized rat hepatocytes by manipulating the Ca2+ content of the stores and then determining their sensitivity to InsP3, while keeping the cytosolic Ca2+ concentration constant. Stores depleted of Ca2+ by incubation with ionomycin were significantly less sensitive to InsP3, an effect thought likely to result from the decrease in luminal free Ca2+ concentration rather than from direct effects of ionomycin on InsP3 binding or Ca2+ permeability. The luminal free Ca2+ concentration of stores loaded in the presence of pyrophosphate appeared to be substantially reduced, and again there was a significant inverse correlation between the estimated free Ca2+ concentration of the stores and their sensitivity to InsP3. By following the kinetics of 45Ca2+ uptake into empty stores in the presence of inositol trisphosphorothioate, a stable InsP3 analogue, we demonstrated that stores respond to inositol trisphosphorothioate only after their luminal free Ca2+ concentration exceeds a critical level. We conclude that InsP3 and luminal Ca2+ together regulate Ca2+ mobilization from intracellular stores, and we discuss some of the implications of this interaction for the complex Ca2+ signals evoked by extracellular stimuli.
细胞内储存库中的Ca2+被认为可与胞质中的肌醇1,4,5-三磷酸(InsP3)共同作用,使InsP3受体的整合Ca2+通道开放,从而导致细胞内Ca2+储存库的动员[《欧洲生物化学学会联合会快报》263:5 - 9 (1990)]。我们通过操纵储存库中的Ca2+含量,然后在保持胞质Ca2+浓度恒定的情况下测定它们对InsP3的敏感性,在皂素通透的大鼠肝细胞中验证了这一观点。用离子霉素孵育使Ca2+耗尽的储存库对InsP3的敏感性显著降低,这种效应可能是由于腔内游离Ca2+浓度降低所致,而非离子霉素对InsP3结合或Ca2+通透性的直接影响。在焦磷酸存在下加载的储存库的腔内游离Ca2+浓度似乎大幅降低,并且储存库的估计游离Ca2+浓度与其对InsP3敏感性之间再次存在显著的负相关。通过在稳定的InsP3类似物肌醇三磷酸硫代酯存在下追踪45Ca2+进入空储存库的动力学,我们证明储存库仅在其腔内游离Ca2+浓度超过临界水平后才对肌醇三磷酸硫代酯作出反应。我们得出结论,InsP3和腔内Ca2+共同调节细胞内储存库的Ca2+动员,并且我们讨论了这种相互作用对细胞外刺激诱发的复杂Ca2+信号的一些影响。