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电生理证据表明,一种新的草履虫突变体存在缺陷的钙离子控制机制。

Electrophysiological evidence suggests a defective Ca2+ control mechanism in a new Paramecium mutant.

作者信息

Evans T C, Hennessey T, Nelson D L

机构信息

Department of Biochemistry, College of Agricultural and Life Sciences, University of Wisconsin-Madison 53706.

出版信息

J Membr Biol. 1987;98(3):275-83. doi: 10.1007/BF01871189.

Abstract

A new mutant of Paramecium tetraurelia, k-shyA, was characterized behaviorally and electrophysiologically. The mutant cell exhibited prolonged backward swimming episodes in response to depolarizing conditions. Electrophysiological comparison of k-shyA with wild type cells under voltage clamp revealed that the properties of three Ca2+-regulated currents were altered in the mutant. (i) The voltage-dependent Ca2+ current recovered from Ca2+-dependent inactivation two- to 10-fold more slowly than wild type. Ca2+ current amplitudes were also reduced in the mutant, but could be restored by EGTA injection. (ii) The decay of the Ca2+-dependent K+ tail current was slower in the mutant. (iii) The decay of the Ca2+-dependent Na+ tail current was also slower in the mutant. All other membrane properties studied, including the resting membrane potential and resistance and the voltage-sensitive K+ currents, were normal in k-shyA. Considered together, these observations are consistent with a defect in the ability of k-shyA to reduce the free intracellular Ca2+ concentration following stimulation. The possible targets of the genetic lesion and alternative explanations are discussed. The k-shy mutants may provide a useful tool for molecular and physiological analyses of the regulation of Ca2+ metabolism in Paramecium.

摘要

对一种新的四膜虫突变体k-shyA进行了行为学和电生理学特征分析。该突变体细胞在去极化条件下表现出延长的向后游动期。在电压钳制下对k-shyA与野生型细胞进行电生理学比较发现,突变体中三种Ca2+调节电流的特性发生了改变。(i)电压依赖性Ca2+电流从Ca2+依赖性失活中恢复的速度比野生型慢2至10倍。突变体中的Ca2+电流幅度也降低了,但通过注射EGTA可以恢复。(ii)突变体中Ca2+依赖性K+尾电流的衰减较慢。(iii)突变体中Ca2+依赖性Na+尾电流的衰减也较慢。研究的所有其他膜特性,包括静息膜电位、电阻和电压敏感性K+电流,在k-shyA中都是正常的。综合考虑,这些观察结果与k-shyA在刺激后降低细胞内游离Ca2+浓度的能力存在缺陷一致。讨论了基因损伤的可能靶点和其他解释。k-shy突变体可能为四膜虫Ca2+代谢调节的分子和生理学分析提供有用的工具。

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