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Computational analysis of calcium signaling and membrane electrophysiology in cerebellar Purkinje neurons associated with ataxia

机译:小脑浦肯野神经元与共济失调相关的钙信号传导和膜电生理的计算分析

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摘要

BackgroundMutations in the smooth endoplasmic reticulum (sER) calcium channel Inositol Trisphosphate Receptor type 1 (IP3R1) in humans with the motor function coordination disorders Spinocerebellar Ataxia Types 15 and 16 (SCA15/16) and in a corresponding mouse model, the IP3R1delta18/delta18 mice, lead to reduced IP3R1 levels. We posit that increasing IP3R1 sensitivity to IP3 in ataxias with reduced IP3R1 could restore normal calcium response. On the other hand, in mouse models of the human polyglutamine (polyQ) ataxias, SCA2, and SCA3, the primary finding appears to be hyperactive IP3R1-mediated calcium release. It has been suggested that the polyQ SCA1 mice may also show hyperactive IP3R1. Yet, SCA1 mice show downregulated gene expression of IP3R1, Homer, metabotropic glutamate receptor (mGluR), smooth endoplasmic reticulum Ca-ATP-ase (SERCA), calbindin, parvalbumin, and other calcium signaling proteins.
机译:背景患有运动功能协调障碍的脊髓小脑共济失调15型和16型(SCA15 / 16)的人以及相应的小鼠模型中IP3R1的平滑内质网(sER)钙通道肌醇三磷酸受体1型(IP3R1)的突变delta18 / delta18 小鼠导致IP3R1水平降低。我们认为在IP3R1减少的共济失调中增加IP3R1对IP3的敏感性可以恢复正常的钙反应。另一方面,在人多谷氨酰胺(polyQ)共济失调,SCA2和SCA3的小鼠模型中,主要发现似乎是过度活跃的IP3R1介导的钙释放。已经提出,polyQ SCA1小鼠也可能显示过度活跃的IP3R1。然而,SCA1小鼠显示IP3R1,Homer,代谢型谷氨酸受体(mGluR),平滑内质网Ca-ATP酶(SERCA),钙结合蛋白,小白蛋白和其他钙信号蛋白的基因表达下调。

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