Josephson Ira R, Guia Antonio, Lakatta Edward G, Stern Michael D
Laboratory of Cardiovascular Science, Gerontology Research Center, National Institute on Aging, National Institutes of Health, 5600 Nathan Shock Drive, Baltimore, MD 21224, USA.
Biophys J. 2002 Nov;83(5):2587-94. doi: 10.1016/S0006-3495(02)75269-7.
The accompanying paper (Josephson, I. R., A. Guia, E. G. Lakatta, and M. D. Stern. 2002. Biophys. J. 83:2575-2586) examined the effects of conditioning prepulses on the kinetics of unitary L-type Ca(2+) channel currents using Ca(2+) and Ba(2+) ions to determine the ionic-dependence of gating mechanisms responsible for channel inactivation and facilitation. Here we demonstrate that in addition to alterations in gating kinetics, the conductance of single L-type Ca(2+) channels was also dependent on the prior conditioning voltage and permeant ions. All recordings were made in the absence of any Ca(2+) channel agonists. Strongly depolarizing prepulses produced an increased frequency of long-duration (mode 2) openings during the test voltage steps. Mode 2 openings also displayed >25% larger single channel current amplitude (at 0 mV) than briefer (but well-resolved) mode 1 openings. The conductance of mode 2 openings was 26 pS for 105 mM Ba(2+), 18 pS for 5 mM Ba(2+), and 6 pS for 5 mM Ca(2+) ions; these values were 70% greater than the conductance of Ca(2+) channel openings of all durations (mode 1 and mode 2). Thus, the prepulse-driven shift into mode 2 gating results in a longer-lived Ca(2+) channel conformation that, in addition, displays altered permeation properties. These results, and those in the accompanying paper, support the hypothesis that multiple aspects of single L-type Ca(2+) channel behavior (gating kinetics, modal transitions, and ion permeation) are interrelated and are modulated by the magnitude of the conditioning depolarization and the nature and concentration of the ions permeating the channel.
随附论文(约瑟夫森,I.R.,A.吉亚,E.G.拉卡塔和M.D.斯特恩。2002年。《生物物理杂志》83:2575 - 2586)使用钙离子和钡离子研究了条件预脉冲对单一L型钙通道电流动力学的影响,以确定负责通道失活和易化的门控机制的离子依赖性。在此我们证明,除了门控动力学的改变外,单一L型钙通道的电导还取决于先前的条件电压和渗透离子。所有记录均在无任何钙通道激动剂的情况下进行。强去极化预脉冲在测试电压阶跃期间使长时程(模式2)开放的频率增加。模式2开放在0 mV时的单通道电流幅度也比更短暂(但分辨良好)的模式1开放大25%以上。对于105 mM钡离子,模式2开放的电导为26 pS;对于5 mM钡离子,为18 pS;对于5 mM钙离子,为6 pS;这些值比所有持续时间(模式1和模式2)的钙通道开放电导大70%。因此,预脉冲驱动的向模式2门控的转变导致钙通道构象寿命更长,此外,其渗透特性也发生改变。这些结果以及随附论文中的结果支持这样一种假设,即单一L型钙通道行为的多个方面(门控动力学、模式转变和离子渗透)是相互关联的,并受到条件去极化的幅度以及渗透通道的离子的性质和浓度的调节。