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尾草履虫纤毛反向反应的离子控制。一种钙假说。

Ionic control of the reversal response of cilia in Paramecium caudatum. A calcium hypothesis.

作者信息

Naitoh Y

出版信息

J Gen Physiol. 1968 Jan;51(1):85-103. doi: 10.1085/jgp.51.1.85.

Abstract

The duration of ciliary reversal of Paramecium caudatum in response to changes in external ionic factors was determined with various ionic compositions of both equilibration and stimulation media. The reversal response was found to occur when calcium ions bound by an inferred cellular cation exchange system were liberated in exchange for externally applied cations other than calcium. Factors which affect the duration of the response were (a) initial amount of calcium bound by the cation exchange system, (b) final amount of calcium bound by the system after equilibration with the stimulation medium, and (c) concentration of calcium ions in the stimulation medium. An empirical equation is presented which relates the duration of the response to these three factors. On the basis of these and previously published data, the following hypothesis is proposed for the mechanism underlying ciliary reversal in response to cationic stimulation: Ca(++) liberated from the cellular cation exchange system activates a contractile system which is energized by ATP. Contraction of this component results in the reversal of effective beat direction of cilia by a mechanism not yet understood. The duration of reversal in live paramecia is related to the time course of bound calcium release.

摘要

利用平衡培养基和刺激培养基的各种离子组成,测定了尾草履虫对外部离子因素变化的纤毛反转持续时间。当通过推测的细胞阳离子交换系统结合的钙离子被释放出来,以交换除钙以外的外部施加的阳离子时,发现会发生反转反应。影响反应持续时间的因素有:(a)阳离子交换系统结合的初始钙量;(b)与刺激培养基平衡后系统结合的最终钙量;(c)刺激培养基中钙离子的浓度。提出了一个经验方程,将反应持续时间与这三个因素联系起来。基于这些数据和之前发表的数据,针对阳离子刺激引起纤毛反转的潜在机制提出了以下假设:从细胞阳离子交换系统释放的Ca(++)激活了一个由ATP供能的收缩系统。该成分的收缩通过一种尚未明了的机制导致纤毛有效搏动方向的反转。活草履虫中反转的持续时间与结合钙释放的时间进程有关。

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