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象鼻鱼小脑浦肯野细胞中的电压门控钠通道。

Voltage-gated sodium channels in cerebellar Purkinje cells of mormyrid fish.

作者信息

de Ruiter Martijn M, De Zeeuw Chris I, Hansel Christian

机构信息

Department of Neuroscience, Erasmus University Medical Center, Rotterdam, The Netherlands.

出版信息

J Neurophysiol. 2006 Jul;96(1):378-90. doi: 10.1152/jn.00906.2005. Epub 2006 Apr 5.

Abstract

Cerebellar Purkinje cells of mormyrid fish differ in some morphological as well as physiological parameters from their counterparts in mammals. Morphologically, Purkinje cells of mormyrids have larger dendrites that are characterized by a lower degree of branching in the molecular layer. Physiologically, there are differences in electrophysiological response patterns that are related to sodium channel activity: first, sodium spikes in mormyrid Purkinje cells have low amplitudes, typically not exceeding 30 mV. Second, the response to climbing fiber stimulation in mormyrid Purkinje cells does not consist of a complex spike (with an initial fast sodium spike) as in mammals, but instead it consists of an all-or-none excitatory postsynaptic potential, the so-called climbing fiber response. Because of these unique properties, we have begun to characterize mormyrid Purkinje cells electrophysiologically. In this study, we provide a description of voltage-gated Na+ channels and conductances in Purkinje cells of the mormyrid fish Gnathonemus petersii. Various types of Na+ channel alpha-subunits, i.e., Nav1.1, Nav1.2, and Nav1.6, have been described in rodent Purkinje cells. Using immunohistochemical techniques, we found that these subunits are present in Purkinje cells of mormyrids. To test whether these Na+ channel subunits can mediate fast inactivating and resurgent Na+ currents in Gnathonemus Purkinje cells, we conducted patch-clamp recordings in acutely dissociated cells and in cerebellar slices. Both types of Na+ currents could be measured in rat and fish Purkinje cells. These data show that, despite prominent differences in electrophysiological response characteristics, Purkinje cells of rats and mormyrids share the same voltage-gated Na+ conductances.

摘要

象鼻鱼的小脑浦肯野细胞在一些形态和生理参数上与哺乳动物的同类细胞有所不同。在形态上,象鼻鱼的浦肯野细胞具有更大的树突,其特征是在分子层中的分支程度较低。在生理上,与钠通道活性相关的电生理反应模式存在差异:首先,象鼻鱼浦肯野细胞中的钠峰电位幅度较低,通常不超过30毫伏。其次,象鼻鱼浦肯野细胞对攀缘纤维刺激的反应不像哺乳动物那样由复合峰电位(初始有快速钠峰电位)组成,而是由全或无的兴奋性突触后电位,即所谓的攀缘纤维反应组成。由于这些独特的特性,我们开始从电生理角度对象鼻鱼浦肯野细胞进行表征。在本研究中,我们描述了象鼻鱼彼得氏裸臀鱼浦肯野细胞中的电压门控钠通道和电导。啮齿动物的浦肯野细胞中已描述了各种类型的钠通道α亚基,即Nav1.1、Nav1.2和Nav1.6。使用免疫组织化学技术,我们发现这些亚基存在于象鼻鱼的浦肯野细胞中。为了测试这些钠通道亚基是否能介导彼得氏裸臀鱼浦肯野细胞中的快速失活和复苏钠电流,我们在急性分离的细胞和小脑切片中进行了膜片钳记录。大鼠和象鼻鱼的浦肯野细胞中都可以测量到这两种类型的钠电流。这些数据表明,尽管在电生理反应特征上存在显著差异,但大鼠和象鼻鱼的浦肯野细胞具有相同的电压门控钠电导。

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