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Only a Minority of the Inhibitory Inputs to Cerebellar Golgi Cells Originates from Local GABAergic Cells

机译:小脑高尔基细胞只有少数抑制性输入来自局部的GABA能细胞。

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摘要

Cerebellar Golgi cells (GoCs) efficiently control the spiking activity of granule cells through GABAA receptor-mediated tonic and phasic inhibition. Recent experiments provided compelling evidence for the extensive interconnection of GoCs through electrical synapses, but their chemical inhibitory synaptic inputs are debated. Here, we investigated the GABAergic synaptic inputs of GoCs using in vitro electrophysiology and quantitative light microscopy (LM) and electron microscopy (EM). We characterized GABAA receptor-mediated IPSCs in GoCs and Lugaro cells (LuCs), and found that IPSCs in GoCs have lower frequencies, smaller amplitudes, and much slower decay kinetics. Pharmacological and LM immunolocalization experiments revealed that GoCs express α3, whereas LuCs express α1 subunit-containing GABAA receptors. The selective expression and clustered distribution of the α3 subunit in GoCs allowed the quantitative analysis of GABAergic synapses on their dendrites in the molecular layer (ML). EM and LM experiments in rats, and wild-type and GlyT2-GFP transgenic mice revealed that only one third of axon terminals establishing GABAergic synapses on GoC dendrites contain GlyT2, ruling out LuCs, globular cells, and any noncortical glycinergic inputs as major inhibitory sources. We also show that axon terminals of stellate/basket cells very rarely innervate GlyT2-GFP-expressing GoCs, indicating that only a minority of the inhibitory inputs to GoCs in the ML originates from local interneurons, and the majority of their inhibitory inputs exclusively releases GABA.
机译:小脑高尔基细胞(GoCs)通过GABAA受体介导的强直和阶段性抑制来有效控制颗粒细胞的突触活性。最近的实验为GoC通过电突触的广泛互连提供了令人信服的证据,但对它们的化学抑制性突触输入有争议。在这里,我们使用体外电生理学和定量光学显微镜(LM)和电子显微镜(EM)研究了GoC的GABA能突触输入。我们对GoC和Lugaro细胞(LuCs)中的GABAA受体介导的IPSC进行了表征,发现GoC中的IPSC具有更低的频率,更小的幅度和更慢的衰减动力学。药理学和LM免疫定位实验表明,GoCs表达α3,而LuCs表达含有α1亚基的GABAA受体。 GoCs中α3亚基的选择性表达和簇状分布可以定量分析其在分子层(ML)中树突上的GABA能突触。在大鼠,野生型和GlyT2-GFP转基因小鼠中进行的EM和LM实验表明,只有三分之一的轴突末端在GoC树突上建立GABA能突触,其中含有GlyT2,排除了LuC,球状细胞和任何非皮质性甘氨酸能输入作为主要抑制源。我们还显示,星状/篮细胞的轴突末端很少支配表达GlyT2-GFP的GoC,这表明ML中GoCs的抑制输入只有少数来自局部中间神经元,而它们的大部分抑制输入仅释放GABA。 。

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