Mackiewicz U, Emanuel K, Lewartowski B
Department of Clinical Physiology, Medical Center of Postgraduate Education, Warsaw, Poland.
J Physiol Pharmacol. 2001 Sep;52(3):459-69.
BayK8644(-)(BayK), an agonist of L-type Ca2+ channels has been recently shown to impair excitation-contraction coupling in cardiac myocytes by increasing Ca2+ leak from the sarcoplasmic reticulum (SR) and by decreasing the gain factor of calcium induced release of calcium. It has been proposed that BayK affects the properties of ryanodine receptors (RyRs) of SR by binding to the sarcolemmal dihydropyridine receptors (DHPRs). This would suggest that the linkage between these receptors is more direct than currently sought. However, it has been recently found that BayK may also directly affect the RyRs increasing their open probability. In this paper we tested the effect of BayK on excitation-contraction coupling in single ventricular myocytes of guinea-pig heart superfused with 5 mM Ni2+ which blocks the L-type Ca2+ current and Na+/Ca2+ exchange. We have previously shown that it is possible to activate in these cells nearly normal Ca2+ transients and contractions despite total inhibition of ICa. This eliminated the effect of ICa increased by BayK on excitation contraction coupling thus simplifying the studied system. 0.5 microM BayK increased the diastolic [Ca2+]i and decreased the diastolic length in stimulated or rested cells superfused with Ni2+, decreased by approximately 50% amplitude of Ca2+ transients and contractions and decreased by approximately 70% the responses of cells to rapid superfusion of 15mM caffeine used as an indirect index of the SR Ca2+ content. The effects on diastolic length and [Ca2+]i in rested cells were not affected by 20 microM nifedipine. We conclude that under our experimental conditions the dominating mechanism of suppression of excitation-contraction coupling by BayK was depletion of the SR Ca2+ by the direct effect on the RyRs.
L型钙通道激动剂BayK8644(-)(BayK)最近被证明可通过增加肌浆网(SR)的钙泄漏以及降低钙诱导钙释放的增益因子来损害心肌细胞的兴奋-收缩偶联。有人提出,BayK通过与肌膜二氢吡啶受体(DHPRs)结合来影响SR的ryanodine受体(RyRs)的特性。这表明这些受体之间的联系比目前所认为的更为直接。然而,最近发现BayK也可能直接影响RyRs,增加其开放概率。在本文中,我们测试了BayK对豚鼠心脏单个心室肌细胞兴奋-收缩偶联的影响,这些细胞用5 mM Ni2+进行灌流,Ni2+可阻断L型钙电流和钠/钙交换。我们之前已经表明,尽管ICa被完全抑制,但在这些细胞中仍有可能激活近乎正常的钙瞬变和收缩。这消除了BayK增加的ICa对兴奋-收缩偶联的影响,从而简化了研究系统。0.5 microM BayK增加了灌流Ni2+的受刺激或静息细胞的舒张期[Ca2+]i,并缩短了舒张期长度,使钙瞬变和收缩的幅度降低了约50%,使细胞对15mM咖啡因快速灌流的反应降低了约70%,15mM咖啡因用作SR钙含量的间接指标。20 microM硝苯地平对静息细胞的舒张期长度和[Ca2+]i的影响不受影响。我们得出结论,在我们的实验条件下,BayK抑制兴奋-收缩偶联的主要机制是通过对RyRs的直接作用使SR钙耗竭。