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草履虫的离子通道:从遗传学、电生理学到生物化学

Ionic channels of Paramecium: from genetics and electrophysiology to biochemistry.

作者信息

Adoutte A, Ling K Y, Forte M, Ramanathan R, Nelson D, Kung C

出版信息

J Physiol (Paris). 1981 May;77(9):1145-59.

PMID:6286966
Abstract

This paper reviews the combined genetical, electrophysiological and biochemical analysis of excitation that has been carried out in Paramecium. Paramecium cells display graded Ca++ action potentials in response to a variety of stimuli. These action potentials regulate the orientation of the ciliary beat hence the cell's swimming behaviour. A large array of mutants displaying altered behaviour have been isolated and mapped to over 20 loci. Detailed electrophysiological analyses have been carried out on several classes of mutants revealing defects in specific ion channels in some cases. Mutants have proven very useful to analyze channel properties, to unravel interactions between channels and to discover the function of these channels in a variety of cellular processes. Some important channels are located in the ciliary membranes and cilia as well as ciliary membranes can now be purified in high purity and reasonable yield. These fractions have been used recently in a variety of biochemical approaches to gain insight into the molecular components of the excitation machinery. Specific alterations in some minor membrane proteins have been found in two mutants as well as a specific defect in sphingolipids in a third mutant. Those alterations had to be distinguished from large scale variations in membrane proteins and lipids that occur in this organism in response to modifications in growth conditions. Several other recent biochemical developments are reviewed and the advantages as well as the difficulties of the genetic approach to the molecular study of biological processes are discussed.

摘要

本文综述了对草履虫进行的兴奋过程的遗传学、电生理学和生物化学联合分析。草履虫细胞对多种刺激会产生分级的Ca++动作电位。这些动作电位调节纤毛摆动的方向,从而调节细胞的游动行为。已经分离出大量行为改变的突变体,并将其定位到20多个基因座。对几类突变体进行了详细的电生理学分析,在某些情况下揭示了特定离子通道的缺陷。事实证明,突变体对于分析通道特性、揭示通道之间的相互作用以及发现这些通道在各种细胞过程中的功能非常有用。一些重要的通道位于纤毛膜和纤毛中,现在可以以高纯度和合理产量纯化纤毛膜。最近,这些组分已被用于各种生化方法,以深入了解兴奋机制的分子成分。在两个突变体中发现了一些次要膜蛋白的特定改变,在第三个突变体中发现了鞘脂的特定缺陷。必须将这些改变与该生物体因生长条件改变而发生的膜蛋白和脂质的大规模变化区分开来。本文还综述了其他一些近期的生化进展,并讨论了遗传学方法在生物过程分子研究中的优点和困难。

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