Keller B U, Hartshorne R P, Talvenheimo J A, Catterall W A, Montal M
J Gen Physiol. 1986 Jul;88(1):1-23. doi: 10.1085/jgp.88.1.1.
Single channel currents of sodium channels purified from rat brain and reconstituted into planar lipid bilayers were recorded. The kinetics of channel gating were investigated in the presence of batrachotoxin to eliminate inactivation and an analysis was conducted on membranes with a single active channel at any given time. Channel opening is favored by depolarization and is strongly voltage dependent. Probability density analysis of dwell times in the closed and open states of the channel indicates the occurrence of one open state and several distinct closed states in the voltage (V) range-120 mV less than or equal to V less than or equal to +120 mV. For V less than or equal to 0, the transition rates between stages are exponentially dependent on the applied voltage, as described in mouse neuroblastoma cells (Huang, L. M., N. Moran, and G. Ehrenstein. 1984. Biophysical Journal. 45:313-322). In contrast, for V greater than or equal to 0, the transition rates are virtually voltage independent. Autocorrelation analysis (Labarca, P., J. Rice, D. Fredkin, and M. Montal. 1985. Biophysical Journal. 47:469-478) shows that there is no correlation in the durations of successive open or closing events. Several kinetic schemes that are consistent with the experimental data are considered. This approach may provide information about the mechanism underlying the voltage dependence of channel activation.
记录了从大鼠脑中纯化并重组到平面脂质双分子层中的钠通道单通道电流。在存在蛙毒素以消除失活的情况下研究了通道门控动力学,并对在任何给定时间具有单个活性通道的膜进行了分析。通道开放受去极化的促进,并且强烈依赖电压。对通道关闭和开放状态下驻留时间的概率密度分析表明,在电压(V)范围 -120 mV≤V≤ +120 mV 内存在一个开放状态和几个不同的关闭状态。对于 V≤0,各阶段之间的转换速率呈指数依赖于所施加的电压,如在小鼠神经母细胞瘤细胞中所描述的那样(Huang, L. M., N. Moran, and G. Ehrenstein. 1984. Biophysical Journal. 45:313 - 322)。相反,对于 V≥0,转换速率实际上与电压无关。自相关分析(Labarca, P., J. Rice, D. Fredkin, and M. Montal. 1985. Biophysical Journal. 47:469 - 478)表明,连续开放或关闭事件的持续时间之间没有相关性。考虑了几种与实验数据一致的动力学方案。这种方法可能提供有关通道激活电压依赖性潜在机制的信息。