首页> 美国卫生研究院文献>Frontiers in Neural Circuits >IP3R1 deficiency in the cerebellum/brainstem causes basal ganglia-independent dystonia by triggering tonic Purkinje cell firings in mice
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IP3R1 deficiency in the cerebellum/brainstem causes basal ganglia-independent dystonia by triggering tonic Purkinje cell firings in mice

机译:小脑/脑干中的IP3R1缺乏症通过触发小鼠强直浦肯野细胞激发而引起基底节非依赖性肌张力障碍

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摘要

The type 1 inositol 1,4,5- trisphosphate receptor (IP3R1) is a Ca2+ channel on the endoplasmic reticulum and is a predominant isoform in the brain among the three types of IP3Rs. Mice lacking IP3R1 show seizure-like behavior; however the cellular and neural circuit mechanism by which IP3R1 deletion causes the abnormal movements is unknown. Here, we found that the conditional knockout mice lacking IP3R1 specifically in the cerebellum and brainstem experience dystonia and show that cerebellar Purkinje cell (PC) firing patterns were coupled to specific dystonic movements. Recordings in freely behaving mice revealed epochs of low and high frequency PC complex spikes linked to body extension and rigidity, respectively. Remarkably, dystonic symptoms were independent of the basal ganglia, and could be rescued by inactivation of the cerebellum, inferior olive or in the absence of PCs. These findings implicate IP3R1-dependent PC firing patterns in cerebellum in motor coordination and the expression of dystonia through the olivo-cerebellar pathway.
机译:1型肌醇1,4,5-三磷酸受体(IP3R1)是内质网上的Ca 2 + 通道,是三种IP3R中脑中的主要同工型。缺乏IP3R1的小鼠表现出癫痫样行为。但是,IP3R1缺失引起异常运动的细胞和神经回路机制尚不清楚。在这里,我们发现有条件的基因敲除小鼠在小脑和脑干中缺乏IP3R1,它们会经历肌张力障碍,并表明小脑浦肯野(PC)放电模式与特定的肌张力运动有关。在行为自由的小鼠中的记录显示,低频和高频PC复合波尖峰分别与身体伸展和僵硬有关。值得注意的是,肌张力障碍的症状与基底神经节无关,可以通过使小脑,橄榄下等失活或在没有PC的情况下得以缓解。这些发现暗示小脑中IP3R1依赖性PC放电模式在运动协调和肌张力障碍通过小脑-小脑途径的表达。

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