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Kv3.3 potassium channels and spinocerebellar ataxia

机译:Kv3.3钾通道与小脑共济失调

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The voltage-dependent potassium channel subunit Kv3.3 is expressed at high levels in cerebellar Purkinje cells, in auditory brainstem nuclei and in many other neurons capable of firing at high rates. In the cerebellum, it helps to shape the very characteristic complex spike of Purkinje cells. Kv3.3 differs from other closely related channels in that human mutations in the gene encoding Kv3.3 (KCNC3) result in a unique neurodegenerative disease termed spinocerebellar ataxia type 13 (SCA13). This primarily affects the cerebellum, but also results in extracerebellar symptoms. Different mutations produce either early onset SCA13, associated with delayed motor and impaired cognitive skill acquisition, or late onset SCA13, which typically produces cerebellar degeneration in middle age. This review covers the localization and physiological function of Kv3.3 in the central nervous system and how the normal function of the channel is altered by the disease-causing mutations. It also describes experimental approaches that are being used to understand how Kv3.3 mutations are linked to neuronal survival, and to develop strategies for treatment.
机译:电压依赖性钾通道亚基Kv3.3在小脑浦肯野细胞,听觉脑干核和许多其他能够快速激发的神经元中高水平表达。在小脑中,它有助于塑造浦肯野细胞非常有特征的复杂尖峰。 Kv3.3与其他紧密相关的渠道的不同之处在于,编码Kv3.3(KCNC3)的基因中的人类突变会导致一种独特的神经退行性疾病,称为脊髓小脑共济失调13型(SCA13)。这主要影响小脑,但也导致小脑外症状。不同的突变产生早期发作的SCA13(与运动和认知技能获得延迟有关),或晚期发作的SCA13(通常在中年引起小脑变性)。这篇综述涵盖了Kv3.3在中枢神经系统中的定位和生理功能,以及如何通过致病突变来改变通道的正常功能。它还描述了用于了解Kv3.3突变如何与神经元存活联系起来并制定治疗策略的实验方法。

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