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内向整流钾通道在哺乳动物心脏细胞上的激活特性。

Activation properties of the inward-rectifying potassium channel on mammalian heart cells.

作者信息

Tourneur Y, Mitra R, Morad M, Rougier O

机构信息

C.N.R.S. U.A. 244, Université Claude Bernard, Villeurbanne, France.

出版信息

J Membr Biol. 1987;97(2):127-35. doi: 10.1007/BF01869419.

Abstract

The early phase of activation of the inward-rectifying potassium channel is studied on single cells from guinea-pig heart. The current is quasi-instantaneous when it is outward, but activates with time when it is inward. This relaxation is exponential and its time-constant decreases with hyperpolarization. The I/V curve reflects a strong inward rectification and has a negative slope conductance on depolarization. Similar results were recorded in the absence of sodium, calcium, chloride ions and in isotonic potassium. Cesium slows down the phase of activation, and eventually appears to block the channels by suppression of the activation. Barium, conversely, does not affect the activation, but promotes an 'inactivation' of this current, which blocks it. These results are independent on the cells' dissociation method. They suggest that this current is the inward rectifier, called IK1 on heart. Its activation curve suggests that the inward and outward currents are flowing through the same channels. The inward rectifier is time- and voltage-dependent on heart as on other tissues. The effects of cesium and barium are also similar. The importance of its negative slope conductance is discussed.

摘要

在豚鼠心脏的单细胞上研究内向整流钾通道的早期激活阶段。电流向外时几乎是瞬间的,但向内时随时间激活。这种弛豫是指数性的,其时间常数随超极化而减小。I/V曲线反映出强烈的内向整流,在去极化时具有负斜率电导。在无钠、钙、氯离子以及等渗钾的情况下记录到了类似结果。铯减缓激活阶段,最终似乎通过抑制激活来阻断通道。相反,钡不影响激活,但促进该电流的“失活”,从而阻断它。这些结果与细胞的解离方法无关。它们表明这种电流是内向整流器,在心脏中称为IK1。其激活曲线表明内向和外向电流通过相同的通道流动。心脏中的内向整流器与其他组织一样,在时间和电压上是依赖的。还讨论了其负斜率电导的重要性。

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