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小鼠神经母细胞瘤细胞中缺乏快速失活的钠通道的爆发动力学。

Burst kinetics of sodium channels which lack fast inactivation in mouse neuroblastoma cells.

作者信息

Quandt F N

机构信息

Department of Medical Physiology, University of Calgary, Faculty of Medicine, Alberta, Canada.

出版信息

J Physiol. 1987 Nov;392:563-85. doi: 10.1113/jphysiol.1987.sp016797.

Abstract
  1. The kinetics of the slow inactivation process of Na+ channels were examined by recording single-channel currents from cultured neuroblastoma cells. 2. In order to directly examine slow inactivation, fast inactivation was first removed irreversibly by briefly exposing the internal surface of excised membranes to papain. Following treatment, the time constant for the inactivation of averaged membrane Na+ current increased by over two orders of magnitude, while the open time of individual channels increased by a factor of three. The two effects are consistent with the idea that papain can selectively remove fast inactivation of Na+ channels. 3. In the absence of fast inactivation, Na+ channels continued to open during maintained depolarization of the membrane to potentials less negative than -60 mV. Under these conditions, the opening occurred in bursts 50 ms to hundreds of milliseconds long, followed by silent periods lasting many seconds. The average burst length was found to be equal to the time constant of the decline in average evoked current measured at the same potential, indicating that a burst was terminated by entry of the channel into the slow inactivated state. 4. Histograms of open times revealed two populations of open states at any potential. Bursts could also be classified as either short or long bursts. Bursts appeared to be due to the gating of a single channel, and long bursts contained both types of open states, suggesting that a Na+ channel could have more than one open state. 5. The kinetics of bursts of Na+ channels were voltage dependent. As the membrane was depolarized, the burst length, interval between bursts, and open time all increased. Although the probability of an open channel during a burst increased to almost 1.0 with depolarization, any channel was open less than 0.5% of the time when measured throughout the depolarization. The increase in burst duration with depolarization would occur if the rate of slow inactivation is faster from closed states of the channel than from open states. 6. Records of membrane current evoked by a series of step depolarizations were clustered into those with openings of Na+ channels and those without openings. Records in which a channel did not inactivate during the depolarization were less likely to lead to hibernation, suggesting that this phenomenon is caused by the slow inactivation process.
摘要
  1. 通过记录培养的神经母细胞瘤细胞的单通道电流,研究了钠通道缓慢失活过程的动力学。2. 为了直接研究缓慢失活,首先通过将切除膜的内表面短暂暴露于木瓜蛋白酶,不可逆地去除快速失活。处理后,平均膜钠电流失活的时间常数增加了两个多数量级,而单个通道的开放时间增加了两倍。这两种效应与木瓜蛋白酶可选择性去除钠通道快速失活的观点一致。3. 在没有快速失活的情况下,当膜持续去极化到比 -60 mV 更正的电位时,钠通道继续开放。在这些条件下,开放以 50 毫秒到数百毫秒长的爆发形式出现,随后是持续数秒的沉默期。发现平均爆发长度等于在相同电位下测量的平均诱发电流下降的时间常数,表明爆发是由通道进入缓慢失活状态而终止的。4. 开放时间的直方图显示在任何电位下都有两种开放状态。爆发也可分为短爆发或长爆发。爆发似乎是由于单个通道的门控,长爆发包含两种类型的开放状态,表明钠通道可能有不止一种开放状态。5. 钠通道爆发的动力学是电压依赖性的。随着膜去极化,爆发长度、爆发间隔和开放时间均增加。尽管在爆发期间开放通道的概率随着去极化增加到几乎 1.0,但在整个去极化过程中测量时,任何通道开放的时间不到 0.5%。如果通道从关闭状态进入缓慢失活状态的速率比从开放状态更快,那么随着去极化爆发持续时间的增加就会发生。6. 由一系列阶跃去极化诱发的膜电流记录被聚类为有钠通道开放的记录和没有开放的记录。在去极化期间通道未失活的记录导致冬眠的可能性较小,表明这种现象是由缓慢失活过程引起的。

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