Pott Christian, Yip Mey, Goldhaber Joshua I, Philipson Kenneth D
Department of Physiology, David Geffen School of Medicine at the University of California, Los Angeles, California 90095, USA.
Biophys J. 2007 Feb 15;92(4):1431-7. doi: 10.1529/biophysj.106.091538. Epub 2006 Nov 17.
L-type Ca2+ current (I(Ca)) is reduced in myocytes from cardiac-specific Na+-Ca2+ exchanger (NCX) knockout (KO) mice. This is an important adaptation to prevent Ca2+ overload in the absence of NCX. However, Ca2+ channel expression is unchanged, suggesting that regulatory processes reduce I(Ca). We tested the hypothesis that an elevation in local Ca2+ reduces I(Ca) in KO myocytes. In patch-clamped myocytes from NCX KO mice, peak I(Ca) was reduced by 50%, and inactivation kinetics were accelerated as compared to wild-type (WT) myocytes. To assess the effects of cytosolic Ca2+ concentration on I(Ca), we used Ba2+ instead of Ca2+ as the charge carrier and simultaneously depleted sarcoplasmic reticular Ca2+ with thapsigargin and ryanodine. Under these conditions, we observed no significant difference in Ba2+ current between WT and KO myocytes. Also, dialysis with the fast Ca2+ chelator BAPTA eliminated differences in both I(Ca) amplitude and decay kinetics between KO and WT myocytes. We conclude that, in NCX KO myocytes, Ca2+-dependent inactivation of I(Ca) reduces I(Ca) amplitude and accelerates current decay kinetics. We hypothesize that the elevated subsarcolemmal Ca2+ that results from the absence of NCX activity inactivates some L-type Ca2+ channels. Modulation of subsarcolemmal Ca2+ by the Na+-Ca2+ exchanger may be an important regulator of excitation-contraction coupling.
在心脏特异性钠钙交换体(NCX)基因敲除(KO)小鼠的心肌细胞中,L型钙电流(I(Ca))降低。这是在缺乏NCX的情况下防止钙超载的重要适应性变化。然而,钙通道表达未改变,提示调节过程降低了I(Ca)。我们检验了局部钙升高会降低KO心肌细胞中I(Ca)的假说。在来自NCX KO小鼠的膜片钳记录的心肌细胞中,与野生型(WT)心肌细胞相比,I(Ca)峰值降低了50%,且失活动力学加快。为评估胞质钙浓度对I(Ca)的影响,我们用Ba2+代替Ca2+作为载流子,并同时用毒胡萝卜素和ryanodine耗尽肌浆网钙。在这些条件下,我们观察到WT和KO心肌细胞之间的Ba2+电流无显著差异。此外,用快速钙螯合剂BAPTA进行透析消除了KO和WT心肌细胞之间I(Ca)幅度和衰减动力学的差异。我们得出结论,在NCX KO心肌细胞中,I(Ca)的钙依赖性失活降低了I(Ca)幅度并加速了电流衰减动力学。我们推测,由于缺乏NCX活性导致的肌膜下钙升高使一些L型钙通道失活。钠钙交换体对肌膜下钙的调节可能是兴奋-收缩偶联的重要调节因子。