Niggli E, Lipp P
Department of Physiology, University of Bern, Switzerland.
Biophys J. 1994 Oct;67(4):1516-24. doi: 10.1016/S0006-3495(94)80625-3.
Properties of a transient current (Icont) believed to reflect a conformational change of the Na-Ca exchanger molecules after Ca2+ binding were investigated. Intracellular Ca2+ concentration jumps in isolated cardiac myocytes were generated with flash photolysis of caged Ca2+ dimethoxynitrophenamine, and membrane currents were simultaneously measured using the whole-cell variant of the patch-clamp technique. A previously unresolved shallow voltage dependence of Icont was revealed after developing an experimental protocol designed to compensate for the photoconsumption of the caged compound. This voltage dependence can be interpreted to reflect the distribution of Na-Ca exchanger conformational states with the Ca2+ binding site exposed to the inside of the cell immediately before the flash. Analysis performed by fitting a Boltzmann distribution to the observed data suggests that under control conditions most exchanger molecules reside in states with the Ca2+ binding site facing the outside of the cell. Dialysis of the cytosol with 3',4'-dichlorobenzamil, an organic inhibitor of the Na-Ca exchange, increased the magnitude of Icont and changed the voltage dependence, consistent with a parallel shift of the charge/voltage curve. This shift may result from intracellular DCB interfering with an Na(+)-binding or Na(+)-translocating step. These observations are consistent with Icont arising from a charge movement mediated by the Na-Ca exchanger molecules after binding of Ca2+.
对一种瞬态电流(Icont)的特性进行了研究,该电流被认为反映了Ca2+结合后钠钙交换蛋白分子的构象变化。利用笼状Ca2+二甲氧基硝基苯胺的闪光光解在分离的心肌细胞中产生细胞内Ca2+浓度跃变,并使用膜片钳技术的全细胞变体同时测量膜电流。在开发了一种旨在补偿笼状化合物光消耗的实验方案后,揭示了Icont先前未解决的浅电压依赖性。这种电压依赖性可以解释为反映了钠钙交换蛋白构象状态的分布,其中Ca2+结合位点在闪光前立即暴露于细胞内部。通过将玻尔兹曼分布拟合到观察数据进行的分析表明,在对照条件下,大多数交换蛋白分子处于Ca2+结合位点面向细胞外部的状态。用钠钙交换的有机抑制剂3',4'-二氯苯甲酰透析细胞质增加了Icont的幅度并改变了电压依赖性,这与电荷/电压曲线的平行移动一致。这种移动可能是由于细胞内的DCB干扰了Na(+)-结合或Na(+)-转运步骤。这些观察结果与Ca2+结合后由钠钙交换蛋白分子介导的电荷移动产生Icont一致。