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四膜虫pwA组pawn突变体的膜电流

Membrane currents of pawn mutants of the pwA group in Paramecium tetraurelia.

作者信息

Satow Y, Kung C

出版信息

J Exp Biol. 1980 Feb;84:57-71. doi: 10.1242/jeb.84.1.57.

Abstract

Membrane currents were recorded from the wild type and two pawn mutants of the pwA complementation group in Paramecium tetraurelia under a voltage clamp. Most currents are not changed by the mutations. Transient inward currents of a leaky mutant, pwA132, upon step depolarizations are less than those in the wild type. The inward transient is completely lacking in a non-leaky mutant, pwA500. The time course of the residual inward currents in the leaky mutant is not significantly different from that of wild type. The voltage sensitivity of the Ca channels in the leaky mutant is also similar to that of wild type. The inward currents upon membrane hyperpolarizations in the mutants show normal characteristics in the presence or absence of external K+. With sufficiently large, prolonged depolarization, outward currents progressively develop in the wild type but decay in the mutants. The simplest conclusion we can draw is that the pwA mutations reduce the number of functional Ca channels but do not change the channel characteristics. From the conductance measurements, 45% of the Ca channels remain in the leaky mutant pwA132, and none remain in the non-leaky mutant pwA500. By subtracting the outward currents of pwA500 from the slow and prolonged outward currents of the wild type, we have tentatively separated a Ca-induced K+ current from the voltage-dependent K+ current. The time courses of these two currents differ by two orders of magnitude.

摘要

在电压钳制条件下,记录了四膜虫野生型及pwA互补群的两个pawn突变体的膜电流。大多数电流并未因突变而改变。在阶跃去极化时,渗漏突变体pwA132的瞬时内向电流小于野生型。非渗漏突变体pwA500则完全没有内向瞬变电流。渗漏突变体中残余内向电流的时间进程与野生型并无显著差异。渗漏突变体中钙通道的电压敏感性也与野生型相似。在有无外部钾离子存在的情况下,突变体膜超极化时的内向电流均表现出正常特征。在足够大且持续时间长的去极化作用下,野生型中会逐渐产生外向电流,而突变体中的外向电流则会衰减。我们能得出的最简单结论是,pwA突变减少了功能性钙通道的数量,但并未改变通道特性。通过电导测量,渗漏突变体pwA132中45%的钙通道仍然存在,而非渗漏突变体pwA500中则没有钙通道留存。通过从野生型缓慢且持续的外向电流中减去pwA500的外向电流,我们初步从电压依赖性钾电流中分离出了钙诱导钾电流。这两种电流的时间进程相差两个数量级。

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