Byron K L, Taylor C W
Department of Pharmacology, University of Cambridge, United Kingdom.
J Biol Chem. 1993 Apr 5;268(10):6945-52.
Monolayers of fura-2-loaded A7r5 cells, a cell line derived from rat embryonic aorta, generated spontaneous Ca2+ spikes that were synchronized within the cell population. These Ca2+ spikes were abolished by removal of extracellular Ca2+ or addition of nimodipine (50 nM), and their frequency was increased by depolarization with high K+ or by treatment with BAYK 8644 (1 microM), indicating that Ca2+ entry through L-type Ca2+ channels is required for Ca2+ spiking. Several lines of evidence indicate that mobilization of intracellular Ca2+ stores is not necessary for this Ca2+ spiking. 1) Ryanodine (0.1-50 microM) neither stimulated Ca2+ mobilization nor affected Ca2+ spiking; 2) the complex effects of caffeine were mimicked by theophylline, 8-bromo-cyclic adenosine 3':5'-monophosphate (8-bromo-cAMP), and forskolin, suggesting that the caffeine effects may be mediated by cAMP and not by ryanodine receptors; 3) prolonged incubation with thapsigargin (50 nM), which depletes intracellular Ca2+ stores, did not affect the frequency of Ca2+ spiking; 4) Ba2+ or Sr2+ could substitute for Ca2+ in the spike-generating mechanism even when intracellular stores were depleted of Ca2+. Under conditions where the sarcoplasmic reticulum (SR) contained Ca2+, Ba2+ spikes did not cause Ca2+ mobilization. The mechanisms involved in generating spontaneous Ca2+ spiking in A7r5 cells are therefore likely to reside in the sarcolemma and to operate independently of SR Ca2+ uptake and release.
用fura - 2负载的A7r5细胞单层,这是一种源自大鼠胚胎主动脉的细胞系,能产生在细胞群体内同步的自发性Ca2 + 尖峰。去除细胞外Ca2 + 或添加尼莫地平(50 nM)可消除这些Ca2 + 尖峰,用高K + 去极化或用BAYK 8644(1 microM)处理可增加其频率,这表明通过L型Ca2 + 通道的Ca2 + 内流是Ca2 + 尖峰形成所必需的。几条证据表明,细胞内Ca2 + 储存库的动员对于这种Ca2 + 尖峰形成并非必要。1) 雷诺丁(0.1 - 50 microM)既不刺激Ca2 + 动员也不影响Ca2 + 尖峰;2) 茶碱、8 - 溴环腺苷3':5'-单磷酸(8 - 溴 - cAMP)和福斯高林模拟了咖啡因的复杂作用,表明咖啡因的作用可能由cAMP介导而非由雷诺丁受体介导;3) 用毒胡萝卜素(50 nM)长时间孵育可耗尽细胞内Ca2 + 储存库,但不影响Ca2 + 尖峰的频率;4) 即使细胞内储存库中的Ca2 + 耗尽,Ba2 + 或Sr2 + 也可在尖峰产生机制中替代Ca2 + 。在肌浆网(SR)含有Ca2 + 的条件下,Ba2 + 尖峰不会引起Ca2 + 动员。因此,A7r5细胞中产生自发性Ca2 + 尖峰的机制可能存在于肌膜中,并且独立于SR Ca2 + 的摄取和释放而运作。