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小鼠心肌细胞中单个钠离子通道的多模态作用

Multimodal action of single Na+ channels in myocardial mouse cells.

作者信息

Böhle T, Benndorf K

机构信息

Department of Physiology, University of Cologne, Germany.

出版信息

Biophys J. 1995 Jan;68(1):121-30. doi: 10.1016/S0006-3495(95)80166-9.

Abstract

Unitary Na+ currents of myocardial mouse cells were studied at room temperature in 10 cell-attached patches, each containing one and only one channel. Small-pore patch pipettes (resistance 10-97 M omega when filled with 200% Tyrode's solution) with exceptionally thick walls were used. Observed were both rapidly inactivating (6 patches) and slowly inactivating (3 patches) Na+ currents. In one patch, a slow transition from rather fast to slow inactivation was detected over a time of 0.5 h. A short and a long component of the open-channel life time were recorded at the beginning, but only a short one at the end of the experiment. Concomitantly, the first latency was slowed. Amplitude histograms showed that the electrochemical driving force across the pore of the channel did not change during this time. In three patches, a fast and repetitive switching between different modes of Na+ channel action could be clearly identified by plotting the long-time course of the averaged current per trace. The ensemble-averaged current formed in each mode was different in kinetics and amplitude. Each mode had a characteristic mean open-channel life time and distribution of first latency, but the predominant single-channel current amplitude was unaffected by mode switches. It is concluded that two types of changes in kinetics may happen in a single Na+ channel: fast and reversible switches between different modes, and a slow loss of inactivation.

摘要

在室温下,对10个膜片钳细胞贴附式记录中的小鼠心肌细胞的单一钠离子电流进行了研究,每个记录中仅包含一个且只有一个通道。使用了壁厚异常厚的小孔膜片钳吸管(充满200%台氏液时电阻为10 - 97 MΩ)。观察到了快速失活的钠离子电流(6个记录)和缓慢失活的钠离子电流(3个记录)。在一个记录中,在0.5小时的时间内检测到从相当快速失活向缓慢失活的缓慢转变。实验开始时记录到了开放通道寿命的短成分和长成分,但实验结束时只记录到了短成分。同时,首次潜伏期延长。幅度直方图显示,在此期间跨通道孔的电化学驱动力没有变化。在三个记录中,通过绘制每条记录的平均电流的长时间进程,可以清楚地识别出钠离子通道作用的不同模式之间的快速重复切换。在每种模式下形成的总体平均电流在动力学和幅度上都不同。每种模式都有其特征性的平均开放通道寿命和首次潜伏期分布,但主要的单通道电流幅度不受模式切换的影响。得出的结论是,单个钠离子通道可能会发生两种动力学变化:不同模式之间的快速可逆切换,以及失活的缓慢丧失。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9588/1281668/6ec54cfd5b3c/biophysj00067-0124-a.jpg

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