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小鼠小脑薄片小叶VIII中zebrin阳性和阴性浦肯野细胞的电生理兴奋性和平行纤维突触特性

Electrophysiological Excitability and Parallel Fiber Synaptic Properties of Zebrin-Positive and -Negative Purkinje Cells in Lobule VIII of the Mouse Cerebellar Slice.

作者信息

Nguyen-Minh Viet T, Tran-Anh Khoa, Luo Yuanjun, Sugihara Izumi

机构信息

Department of Systems Neurophysiology, Graduate School of Medical and Dental Sciences, Tokyo Medical and Dental University, Tokyo, Japan.

Center for Brain Integration Research, Tokyo Medical and Dental University, Tokyo, Japan.

出版信息

Front Cell Neurosci. 2019 Jan 8;12:513. doi: 10.3389/fncel.2018.00513. eCollection 2018.

Abstract

Heterogeneous populations of cerebellar Purkinje cells (PCs) are arranged into separate longitudinal stripes, which have different topographic afferent and efferent axonal connections presumably involved in different functions, and also show different electrophysiological properties in firing pattern and synaptic plasticity. However, whether the differences in molecular expression that define heterogeneous PC populations affect their electrophysiological properties has not been much clarified. Since the expression pattern of many of such molecules, including glutamate transporter EAAT4, replicates that of aldolase C or zebrin II, we recorded from PCs of different "zebrin types" (zebrin-positive = aldolase C-positive = Z+; and Z-) in identified neighboring stripes in vermal lobule VIII, in which Z+ and Z- stripes occupy similar widths, in the Aldoc-Venus mouse cerebellar slice preparation. Regarding basic cellular electrophysiological properties, no significant differences were observed in input resistance or in occurrence probability of types of firing patterns between Z+ and Z- PCs. However, the firing frequency of the tonic firing type was higher in Z- PCs than in Z+ PCs. In the case of parallel fiber (PF)-PC synaptic transmission, no significant differences were observed between Z+ and Z- PCs in interval dependency of paired pulse facilitation or in time course of synaptic current measured without or with the blocker of glutamate receptor desensitization. These results indicate that different expression levels of the molecules that are associated with the zebrin type may affect the intrinsic firing property of PCs but not directly affect the basic electrophysiological properties of PF-PC synaptic transmission significantly in lobule VIII. The results suggest that the zebrin types of PCs in lobule VIII is linked with some intrinsic electrophysiological neuronal characteristics which affect the firing frequency of PCs. However, the results also suggest that the molecular expression differences linked with zebrin types of PCs does not much affect basic electrophysiological properties of PF-PC synaptic transmission in a physiological condition in lobule VIII.

摘要

小脑浦肯野细胞(PCs)的异质性群体被排列成单独的纵向条纹,这些条纹具有不同的拓扑传入和传出轴突连接,可能参与不同的功能,并且在放电模式和突触可塑性方面也表现出不同的电生理特性。然而,定义异质性PC群体的分子表达差异是否会影响其电生理特性,目前尚未完全阐明。由于许多此类分子的表达模式,包括谷氨酸转运体EAAT4,与醛缩酶C或斑马蛋白II的表达模式一致,我们在Aldoc-Venus小鼠小脑切片制备中,从小脑蚓部小叶VIII中确定的相邻条纹中不同“斑马蛋白类型”(斑马蛋白阳性=醛缩酶C阳性=Z+;和Z-)的PCs进行记录,其中Z+和Z-条纹占据相似的宽度。关于基本的细胞电生理特性,在Z+和Z- PCs之间,输入电阻或放电模式类型的发生概率没有观察到显著差异。然而,Z- PCs中强直放电类型的放电频率高于Z+ PCs。在平行纤维(PF)-PC突触传递的情况下,在配对脉冲易化的间隔依赖性或在使用或不使用谷氨酸受体脱敏阻滞剂测量的突触电流的时间进程方面,Z+和Z- PCs之间没有观察到显著差异。这些结果表明,与斑马蛋白类型相关的分子的不同表达水平可能会影响PCs的内在放电特性,但不会在小叶VIII中显著直接影响PF-PC突触传递的基本电生理特性。结果表明,小叶VIII中PCs的斑马蛋白类型与一些影响PCs放电频率的内在电生理神经元特征有关。然而,结果还表明,与PCs的斑马蛋白类型相关的分子表达差异在小叶VIII的生理条件下对PF-PC突触传递的基本电生理特性影响不大。

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