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豚鼠心室肌细胞中爆发性钠通道的不同电导状态。

Different conductance states of the bursting Na channel in guinea-pig ventricular myocytes.

作者信息

Nilius B, Vereecke J, Carmeliet E

机构信息

Laboratory of Physiology, Leuven, Belgium.

出版信息

Pflugers Arch. 1989 Jan;413(3):242-8. doi: 10.1007/BF00583536.

Abstract

Single channel currents flowing through Na channels were studied in cell-attached patches from guinea-pig ventricular myocytes after removal of the fast component of inactivation by the S enantiomer of DPI 201-106. In addition to openings with a single channel conductance of 15 pS, two other types of events occur. A low conductance state has a single channel conductance of 5 pS, while a medium conductance state can sometimes be seen at 8 pS. These different conductance states can coexist in the same patch. The low conductance state appears to have the same kinetic properties as the high conductance state. However it is less sensitive to block by TTX. Averaged currents obtained from exclusively low conductance openings also show a decay (time constant at -30 mV of 0.8 +/- 0.4 s) which is not significantly different from the decay of the high conductance channel. The average open and closed times are also similar to the values for the high conductance channel. The medium conductance state has a single channel conductance of 8 pS and a reversal potential which is similar to the high conductance channel. Closings of the high conductance state to the medium conductance state can be observed as well as openings from the medium to the high conductance state. The average current of sweeps showing only the medium conductance state has the same time course and shows a similar TTX-sensitivity as the average current of the high conductance state. Also the voltage range for steady-state activation and inactivation for the medium conductance channel matches that of the high conductance channel.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

在通过DPI 201-106的S对映体去除失活的快速成分后,对豚鼠心室肌细胞的细胞贴附膜片中流经钠通道的单通道电流进行了研究。除了具有15 pS单通道电导的开放事件外,还出现了另外两种类型的事件。低电导状态的单通道电导为5 pS,而有时可观察到中等电导状态为8 pS。这些不同的电导状态可在同一膜片中共存。低电导状态似乎具有与高电导状态相同的动力学特性。然而,它对TTX阻断的敏感性较低。仅从低电导开放获得的平均电流也显示出衰减(-30 mV时的时间常数为0.8±0.4 s),这与高电导通道的衰减无显著差异。平均开放和关闭时间也与高电导通道的值相似。中等电导状态的单通道电导为8 pS,反转电位与高电导通道相似。可以观察到高电导状态向中等电导状态的关闭以及从中等电导状态到高电导状态的开放。仅显示中等电导状态的扫描的平均电流具有相同的时间进程,并且与高电导状态的平均电流显示出相似的TTX敏感性。此外,中等电导通道的稳态激活和失活的电压范围与高电导通道的匹配。(摘要截断于250字)

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