Leibowitz M D, Dionne V E
Biophys J. 1984 Jan;45(1):153-63. doi: 10.1016/S0006-3495(84)84144-2.
The temporal relationships among junctional acetylcholine receptor single-channel currents have been examined to probe the mechanism of channel activation. We have presented an analytical approach, termed single-channel ensemble analysis, that allows one to estimate the kinetic transition rate constants for channel-opening and closing as well as the rate of leaving the specific doubly-liganded, closed state from which opening occurs. This approach may be applied to data produced by any number of independent channels as long as the probability of channel opening is low, a condition that is experimentally verifiable. The method has been independently validated using simulated single-channel data generated by computer from one or 100 hypothetical channels. Typical experimental values for the transition rate constants estimated from acetylcholine-activated single channels at the garter snake neuromuscular junction were: opening = 1,200 s-1, closing = 455 s-1, back rate for leaving the doubly-liganded, closed state = 3,200 s-1 at a transmembrane potential of -92 mV at room temperature. Each of these three rate constants was voltage dependent, with the closing rate decreasing e-fold for 173 mV of hyperpolarization, the opening rate increasing e-fold for 78 mV, and the unbinding rate increasing e-fold for 105 mV. The channel-closing rate was agonist dependent, being greater at all potentials for channels activated with carbamylcholine than for channels activated with acetylcholine. However, the single-channel conductance and reversal potential were the same for these two agonists.
为探究通道激活机制,研究了接头处乙酰胆碱受体单通道电流之间的时间关系。我们提出了一种分析方法,称为单通道整体分析,该方法能够估计通道开放和关闭的动力学转换速率常数,以及从发生开放的特定双配体、关闭状态离开的速率。只要通道开放概率较低(这一条件可通过实验验证),该方法就可应用于任意数量独立通道产生的数据。该方法已通过计算机模拟的单通道数据独立验证,这些数据由一个或100个假设通道生成。从束带蛇神经肌肉接头处乙酰胆碱激活的单通道估计的转换速率常数的典型实验值为:在室温下跨膜电位为 -92 mV 时,开放 = 1200 s⁻¹,关闭 = 455 s⁻¹,离开双配体、关闭状态的返回速率 = 3200 s⁻¹。这三个速率常数均依赖于电压,关闭速率在超极化 173 mV 时降低 e 倍,开放速率在 78 mV 时增加 e 倍,解离速率在 105 mV 时增加 e 倍。通道关闭速率依赖于激动剂,在所有电位下,用氨甲酰胆碱激活的通道的关闭速率都比用乙酰胆碱激活的通道大。然而,这两种激动剂的单通道电导和反转电位是相同的。