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草履虫静息膜电位的自发波动:细胞内Ca2+引起的放大作用。

Spontaneous fluctuation of the resting membrane potential in Paramecium: amplification caused by intracellular Ca2+.

作者信息

Nakaoka Yasuo, Imaji Takafumi, Hara Masahiro, Hashimoto Noboru

机构信息

Biophysical Dynamics Laboratories, Graduate School of Frontier Bioscience, Osaka University, Toyonaka, Osaka 560-8531, Japan.

出版信息

J Exp Biol. 2009 Jan;212(Pt 2):270-6. doi: 10.1242/jeb.023283.

Abstract

The ciliated protozoan Paramecium spontaneously changes its swimming direction in the absence of external stimuli. Such behavior is based on resting potential fluctuations, the amplitudes of which reach a few mV. When the resting potential fluctuation is positive and large, a spike-like depolarization is frequently elicited that reverses the beating of the cilia associated with directional changes during swimming. We aimed to study how the resting potential fluctuation is amplified. Simultaneous measurements of the resting potential and intracellular Ca(2+) (Ca(2+)) from a deciliated cell showed that positive potential fluctuations were frequently accompanied by a small increase in Ca(2+). This result suggests that Ca(2+) influx through the somatic membrane occurs during the resting state. The mean amplitude of the resting potential fluctuation was largely decreased by either an intracellular injection of a calcium chelater (BAPTA) or by an extracellular addition of Ba(2+). Hence, a small increase in Ca(2+) amplifies the resting potential fluctuation. Simulation analysis of the potential fluctuation was made by assuming that Ca(2+) and K(+) channels of surface membrane are fluctuating between open and closed states. The simulated fluctuation increased to exhibit almost the same amplitude as the measured fluctuation using the assumption that a small Ca(2+) influx activates Ca(2+) channels in a positive feedback manner.

摘要

纤毛原生动物草履虫在没有外部刺激的情况下会自发改变其游动方向。这种行为基于静息电位波动,其幅度可达几毫伏。当静息电位波动为正向且幅度较大时,经常会引发类似尖峰的去极化,这会使与游动过程中方向改变相关的纤毛摆动发生反转。我们旨在研究静息电位波动是如何被放大的。对一个去纤毛细胞的静息电位和细胞内钙离子浓度([Ca(2+)]i)进行同步测量发现,正向电位波动经常伴随着[Ca(2+)]i的小幅增加。这一结果表明,在静息状态下会有钙离子通过体细胞细胞膜内流。通过细胞内注射钙螯合剂(BAPTA)或细胞外添加Ba(2+),静息电位波动的平均幅度都大幅降低。因此,[Ca(2+)]i的小幅增加会放大静息电位波动。通过假设表面膜的钙离子通道和钾离子通道在开放和关闭状态之间波动,对电位波动进行了模拟分析。使用小量钙离子内流以正反馈方式激活钙离子通道这一假设,模拟波动增加并呈现出与实测波动几乎相同的幅度。

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