首页> 外文期刊>Biochemical and Biophysical Research Communications >Lack of CaV3.1 channels causes severe motor coordination defects and an age-dependent cerebellar atrophy in a genetic model of essential tremor.
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Lack of CaV3.1 channels causes severe motor coordination defects and an age-dependent cerebellar atrophy in a genetic model of essential tremor.

机译:CaV3.1通道的缺乏会导致严重的运动协调缺陷,并在基本震颤的遗传模型中导致年龄相关的小脑萎缩。

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摘要

T-type Ca(2+) channels have been implicated in tremorogenesis and motor coordination. The alpha1 subunit of the Ca(V)3.1 T-type Ca(2+) channel is highly expressed in motor pathways in the brain, but knockout of the Ca(V)3.1 gene (alpha(1G)(-/-)) per se causes no motor defects in mice. Thus, the role of Ca(V)3.1 channels in motor control remains obscure in vivo. Here, we investigated the effect of the Ca(V)3.1 knockout in the null genetic background of alpha1 GABA(A) receptor (alpha1(-/-)) by generating the double mutants (alpha1(-/-)/alpha(1G)(-/-)). alpha1(-/-)/alpha(1G)(-/-) mice showed severer motor abnormalities than alpha1(-/-) mice as measured by potentiated tremor activities at 20Hz and impaired motor learning. Propranolol, an anti-ET drug that is known to reduce the pathologic tremor in alpha1(-/-) mice, was not effective for suppressing the potentiated tremor in alpha1(-/-)/alpha(1G)(-/-) mice. In addition, alpha1(-/-)/alpha(1G)(-/-) mice showed an age-dependent loss of cerebellar Purkinje neurons. These results suggest that alpha1(-/-)/alpha(1G)(-/-) mice are a novel mouse model for a distinct subtype of ET in human and that Ca(V)3.1 T-type Ca(2+) channels play a role in motor coordination under pathological conditions.
机译:T型Ca(2+)通道已牵涉震颤和运动协调。 Ca(V)3.1 T型Ca(2+)通道的alpha1亚基在大脑中的运动途径中高度表达,但敲除Ca(V)3.1基因(alpha(1G)(-/-))本身在小鼠中不会引起运动缺陷。因此,Ca(V)3.1通道在运动控制中的作用在体内仍然不清楚。在这里,我们通过生成双突变体(alpha1(-/-)/ alpha(1G),研究了在alpha1 GABA(A)受体(alpha1(-/-))的无效遗传背景下Ca(V)3.1敲除的影响)(-/-))。通过在20Hz时增强的震颤活动和运动学习受损,alpha1(-/-)/ alpha(1G)(-/-)小鼠表现出比alpha1(-/-)小鼠更严重的运动异常。普萘洛尔是一种已知可减少alpha1(-/-)小鼠病理性震颤的抗ET药物,对抑制alpha1(-/-)/ alpha(1G)(-/-)小鼠的增强性震颤无效。 。此外,alpha1(-/-)/ alpha(1G)(-/-)小鼠表现出小脑浦肯野神经元的年龄依赖性丧失。这些结果表明alpha1(-/-)/ alpha(1G)(-/-)小鼠是人类ET独特亚型的新型小鼠模型,并且Ca(V)3.1 T型Ca(2+)通道在病理条件下在运动协调中发挥作用。

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