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Chloride Homeostasis in Neurons With Special Emphasis on the Olivocerebellar System: Differential Roles for Transporters and Channels

机译:神经元中氯化物的稳态特别是小脑小脑系统:转运蛋白和通道的不同作用

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摘要

The intraneuronal ionic composition is an important determinant of brain functioning. There is growing evidence that aberrant homeostasis of the intracellular concentration of Cl ([Cl]i) evokes, in addition to that of Na+ and Ca2+, robust impairments of neuronal excitability and neurotransmission and thereby neurological conditions. More specifically, understanding the mechanisms underlying regulation of [Cl]i is crucial for deciphering the variability in GABAergic and glycinergic signaling of neurons, in both health and disease. The homeostatic level of [Cl]i is determined by various regulatory mechanisms, including those mediated by plasma membrane Cl channels and transporters. This review focuses on the latest advances in identification, regulation and characterization of Cl channels and transporters that modulate neuronal excitability and cell volume. By putting special emphasis on neurons of the olivocerebellar system, we establish that Cl channels and transporters play an indispensable role in determining their [Cl]i and thereby their function in sensorimotor coordination.
机译:神经内离子组成是脑功能的重要决定因素。越来越多的证据表明,除了Na + -([Cl -] i)浓度异常的稳态。 >和Ca 2 + 会严重损害神经元兴奋性和神经传递,进而损害神经系统疾病。更具体地说,了解[Cl -] i调控的基本机制对于破译神经元在健康和疾病方面的GABA能和甘氨酸能信号传导的变化至关重要。 [Cl -] i的稳态水平由多种调控机制决定,包括由质膜Cl -通道和转运蛋白介导的调控机制。这篇综述的重点是在调节,调节神经元兴奋性和细胞体积的Cl -通道和转运蛋白的鉴定,调控和表征方面的最新进展。通过特别强调小脑小脑系统的神经元,我们确定Cl -通道和转运蛋白在确定其[Cl -] i并从而确定其功能方面起着不可或缺的作用。感觉运动协调。

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