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Studying Cerebellar Circuits by Remote Control of Selected Neuronal Types with GABAA Receptors

机译:通过GABAA受体对选定神经元类型的远程控制来研究小脑回路

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摘要

Although GABAA receptor-mediated inhibition of cerebellar Purkinje cells by molecular layer interneurons (MLIs) has been studied intensely at the cellular level, it has remained unclear how this inhibition regulates cerebellum-dependent behaviour. We have implemented two complementary approaches to investigate the function of the MLI-Purkinje cell synapse on the behavioural level. In the first approach we permanently disrupted inhibitory fast synaptic transmission at the synapse by genetically removing the postsynaptic GABAA receptors from Purkinje cells (PC-Δγ2 mice). We found that chronic disruption of the MLI-Purkinje cell synapse strongly impaired cerebellar learning of the vestibular occular reflex (VOR), presumably by disrupting the temporal patterns of Purkinje cell activity. However, in PC-Δγ2 mice the baseline VOR reflex was only mildly affected; indeed PC-Δγ2 mice show no ataxia or gait abnormalities, suggesting that MLI control of Purkinje cell activity is either not involved in ongoing motor tasks or that the system compensates for its loss. To investigate the latter possibility we developed an alternative genetic technique; we made the MLI-Purkinje cell synapse selectively sensitive to rapid manipulation with the GABAA receptor modulator zolpidem (PC-γ2-swap mice). Minutes after intraperitoneal zolpidem injection, these PC-γ2-swap mice developed severe motor abnormalities, revealing a substantial contribution of the MLI-Purkinje cell synapses to real time motor control. The cell-type selective permanent knockout of synaptic GABAergic input and the fast reversible modulation of GABAergic input at the same synapse illustrate how pursuing both strategies gives a fuller view.
机译:尽管已经在细胞水平上对分子层间神经元(MLI)对GABAA受体介导的小脑浦肯野细胞的抑制作用进行了深入研究,但仍不清楚这种抑制作用如何调节小脑依赖的行为。我们已经实施了两种补充方法,以在行为水平上研究MLI-Purkinje细胞突触的功能。在第一种方法中,我们通过从浦肯野细胞(PC-Δγ2小鼠)遗传去除突触后GABAA受体,永久性破坏了突触中抑制性快速突触传递。我们发现,MLI-Purkinje细胞突触的慢性破坏强烈削弱了前庭眼反射(VOR)的小脑学习,大概是通过破坏了Purkinje细胞活性的时间模式。但是,在PC-Δγ2小鼠中,基线VOR反射仅受到了轻微影响;实际上,PC-Δγ2小鼠没有共济失调或步态异常,这表明正在进行的运动任务不涉及MLI控制浦肯野细胞活性,或者该系统补偿了其损失。为了研究后者的可能性,我们开发了另一种遗传技术。我们使MLI-Purkinje细胞突触对使用GABAA受体调节剂唑吡坦(PC-γ2-交换小鼠)的快速操作选择性敏感。腹膜内注射唑吡坦后数分钟,这些PC-γ2交换小鼠出现了严重的运动异常,显示出MLI-Purkinje细胞突触对实时运动控制的重要贡献。突触GABA能输入的细胞类型选择性永久敲除和同一突触中GABA能输入的快速可逆调节说明了如何采用这两种策略可以提供更全面的了解。

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