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首页> 外文期刊>Cellular and molecular life sciences: CMLS >Spinocerebellar ataxia type 19/22 mutations alter heterocomplex Kv4.3 channel function and gating in a dominant manner
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Spinocerebellar ataxia type 19/22 mutations alter heterocomplex Kv4.3 channel function and gating in a dominant manner

机译:脊髓小脑共济失调19/22型突变改变杂合Kv4.3通道功能并以显性方式门控

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摘要

The dominantly inherited cerebellar ataxias are a heterogeneous group of neurodegenerative disorders caused by Purkinje cell loss in the cerebellum. Recently, we identified loss-of-function mutations in the KCND3 gene as the cause of spinocerebellar ataxia type 19/22 (SCA19/22), revealing a previously unknown role for the voltage-gated potassium channel, Kv4.3, in Purkinje cell survival. However, how mutant Kv4.3 affects wild-type Kv4.3 channel functioning remains unknown. We provide evidence that SCA19/22-mutant Kv4.3 exerts a dominant negative effect on the trafficking and surface expression of wild-type Kv4.3 in the absence of its regulatory subunit, KChIP2. Notably, this dominant negative effect can be rescued by the presence of KChIP2. We also found that all SCA19/22-mutant subunits either suppress wild-type Kv4.3 current amplitude or alter channel gating in a dominant manner. Our findings suggest that altered Kv4.3 channel localization and/or functioning resulting from SCA19/22 mutations may lead to Purkinje cell loss, neurodegeneration and ataxia.
机译:优势遗传的小脑共济失调是由小脑浦肯野细胞丢失引起的一组神经退行性疾病。最近,我们发现KCND3基因的功能丧失突变是脊髓小脑共济失调19/22型(SCA19 / 22)的原因,揭示了电压门控钾通道Kv4.3在浦肯野细胞中的先前未知的作用生存。但是,突变体Kv4.3如何影响野生型Kv4.3通道功能仍然未知。我们提供的证据表明,在缺乏其调控亚基KChIP2的情况下,SCA19 / 22突变Kv4.3对野生型Kv4.3的运输和表面表达起着显着的负面作用。值得注意的是,这种主要的负面影响可以通过KChIP2的存在得以挽救。我们还发现,所有SCA19 / 22突变亚基要么抑制野生型Kv4.3电流幅度,要么以显性方式改变通道门控。我们的发现表明,由SCA19 / 22突变引起的Kv4.3通道定位和/或功能改变可能导致Purkinje细胞丢失,神经变性和共济失调。

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