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草履虫超极化时激活的钙电流的钙依赖性失活。

Calcium-dependent inactivation of the calcium current activated upon hyperpolarization of Paramecium tetraurelia.

作者信息

Preston R R, Saimi Y, Kung C

机构信息

Laboratory of Molecular Biology, University of Wisconsin-Madison 53706.

出版信息

J Gen Physiol. 1992 Aug;100(2):253-68. doi: 10.1085/jgp.100.2.253.

Abstract

The Ca2+ current activated upon hyperpolarization of Paramecium tetraurelia decays over a period of 150-200 ms during sustained steps under voltage clamp. At membrane potentials between -70 and approximately -100 mV, the time course of this inactivation is described by a single exponential function. Steps negative to approximately -100 mV elicit currents that decay biexponentially, however. Three lines of evidence suggest that this current's inactivation is a function of intracellular Ca2+ concentration rather than membrane potential: (a) Comparing currents with similar amplitudes but elicited at widely differing membrane potentials suggests that their time course of decay is a sole function of inward current magnitude. (b) The extent of current inactivation is correlated with the amount of Ca2+ entering the cell during hyperpolarization. (c) The onset and time course of recovery from inactivation can be hastened significantly by injecting cells with EGTA. We suggest that the decay of this current during hyperpolarization involves a Ca(2+)-dependent pathway.

摘要

在用电压钳进行持续电压钳制步骤时,四膜虫超极化激活的Ca2+电流在150 - 200毫秒的时间内衰减。在膜电位为-70至约-100 mV之间时,这种失活的时间进程可用单一指数函数描述。然而,当膜电位负于约-100 mV时引发的电流呈双指数衰减。三条证据表明,该电流的失活是细胞内Ca2+浓度的函数而非膜电位的函数:(a) 比较幅度相似但在相差很大的膜电位下引发的电流表明,它们的衰减时间进程仅是内向电流大小的函数。(b) 电流失活的程度与超极化期间进入细胞的Ca2+量相关。(c) 通过向细胞内注射乙二醇双乙醚二胺四乙酸(EGTA)可显著加速失活恢复的起始和时间进程。我们认为,这种电流在超极化期间的衰减涉及一条Ca(2+)依赖性途径。

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Calcium-mediated inactivation of calcium current in Paramecium.草履虫中钙介导的钙电流失活
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