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犬心室肌细胞的单个钠通道:电压依赖性以及激活和失活的相对速率。

Single sodium channels from canine ventricular myocytes: voltage dependence and relative rates of activation and inactivation.

作者信息

Berman M F, Camardo J S, Robinson R B, Siegelbaum S A

机构信息

Department of Pharmacology, Columbia University, College of Physicians and Surgeons, New York, NY 10032.

出版信息

J Physiol. 1989 Aug;415:503-31. doi: 10.1113/jphysiol.1989.sp017734.

Abstract
  1. Single sodium channel currents were recorded from canine ventricular myocytes in cell-attached patches. The relative rates of single-channel activation vs. inactivation as well as the voltage dependence of the rate of open-channel inactivation were studied. 2. Ensemble-averaged sodium currents showed relatively normal activation and inactivation kinetics, although the mid-point of the steady-state inactivation (h infinity) curve was shifted by 20-30 mV in the hyperpolarizing direction. This shift was due to the bath solution, which contained isotonic KCl to depolarize the cell to 0 mV. 3. Steady-state activation showed less of a voltage shift. The threshold for eliciting channel opening was around -70 mV and the mid-point of activation occurred near -50 mV. 4. The decline of the ensemble-averaged sodium current during a maintained depolarization was fitted by a single exponential function characterizing the apparent time constant of inactivation (tau h). The apparent rate of inactivation was voltage dependent, with tau h decreasing e-fold for a 15.4 mV depolarization. 5. The relative contributions of the rates of single-channel activation and inactivation in determining the time course of current decay (tau h) were examined using the approach of Aldrich, Corey & Stevens (1983). Mean channel open time (tau o) showed significant voltage dependence, increasing from 0.5 ms at -70 mV to around 0.8 ms at -40 mV. At -70 mV tau h was much greater than tau o, while at -40 mV the two time constants were similar. 6. The degree to which the kinetics of single-channel activation contribute to tau h was studied using the first latency distribution. The first latency function was fitted by two exponentials. The slow component was voltage dependent, decreasing from 19 ms at -70 mV to 0.5 ms at -40 mV. The fast component (0.1-0.5 ms) was not well resolved. 7. Comparing the first latency distribution with the time course of the ensemble-averaged sodium current at -40 mV showed that activation is nearly complete by the time of peak inward sodium current. However, at -70 mV, activation overlaps significantly with the apparent time course of inactivation of the ensemble-averaged current. 8. Using the methods of Aldrich et al. (1983) we also measured the apparent rate of open-channel closing (a) and open-channel inactivation (b). Both rates were voltage dependent, with a showing an e-fold decrease for an 11 mV depolarization and b showing an e-fold increase for a 30 mV depolarization.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 在细胞贴附式膜片钳记录犬心室肌细胞的单钠通道电流。研究了单通道激活与失活的相对速率以及开放通道失活速率的电压依赖性。2. 尽管稳态失活(h无穷大)曲线的中点在超极化方向上偏移了20 - 30 mV,但整体平均钠电流显示出相对正常的激活和失活动力学。这种偏移是由于浴液中含有等渗KCl,使细胞去极化至0 mV。3. 稳态激活显示出较小的电压偏移。引发通道开放的阈值约为 - 70 mV,激活中点出现在 - 50 mV附近。4. 在持续去极化期间,整体平均钠电流的衰减用表征失活表观时间常数(tau h)的单指数函数拟合。失活的表观速率是电压依赖性的,对于15.4 mV的去极化,tau h下降一个e倍。5. 使用Aldrich、Corey和Stevens(1983年)的方法研究了单通道激活和失活速率在确定电流衰减时间进程(tau h)中的相对贡献。平均通道开放时间(tau o)显示出显著的电压依赖性,从 - 70 mV时的0.5 ms增加到 - 40 mV时的约0.8 ms。在 - 70 mV时,tau h远大于tau o,而在 - 40 mV时,这两个时间常数相似。6. 使用首次潜伏期分布研究单通道激活动力学对tau h的贡献程度。首次潜伏期函数用两个指数拟合。慢成分是电压依赖性的,从 - 70 mV时的19 ms降至 - 40 mV时的0.5 ms。快成分(0.1 - 0.5 ms)未得到很好的分辨。7. 将 - 40 mV时的首次潜伏期分布与整体平均钠电流的时间进程进行比较表明,在向内钠电流峰值时激活几乎完成。然而,在 - 70 mV时,激活与整体平均电流失活的表观时间进程有显著重叠。8. 使用Aldrich等人(1983年)的方法,我们还测量了开放通道关闭(a)和开放通道失活(b)的表观速率。这两个速率都是电压依赖性的,对于11 mV的去极化,a下降一个e倍,对于30 mV的去极化,b增加一个e倍。(摘要截断于400字)

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