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一个混合 GABA-甘氨酸视网膜回路的组织和出现,为小鼠 ON 持续的α视网膜神经节细胞提供抑制。

Organization and emergence of a mixed GABA-glycine retinal circuit that provides inhibition to mouse ON-sustained alpha retinal ganglion cells.

机构信息

Department of Ophthalmology and Visual Sciences, University of Wisconsin-Madison, Madison, WI, USA; Department of Neuroscience, University of Wisconsin-Madison, Madison, WI, USA.

Department of Ophthalmology and Visual Sciences, University of Wisconsin-Madison, Madison, WI, USA; McPherson Eye Research Institute, University of Wisconsin-Madison, Madison, WI, USA.

出版信息

Cell Rep. 2021 Mar 16;34(11):108858. doi: 10.1016/j.celrep.2021.108858.

Abstract

In the retina, amacrine interneurons inhibit retinal ganglion cell (RGC) dendrites to shape retinal output. Amacrine cells typically use either GABA or glycine to exert synaptic inhibition. Here, we combined transgenic tools with immunohistochemistry, electrophysiology, and 3D electron microscopy to determine the composition and organization of inhibitory synapses across the dendritic arbor of a well-characterized RGC type in the mouse retina: the ON-sustained alpha RGC. We find mixed GABA-glycine receptor synapses across this RGC type, unveiling the existence of "mixed" inhibitory synapses in the retinal circuit. Presynaptic amacrine boutons with dual release sites are apposed to ON-sustained alpha RGC postsynapses. We further reveal the sequence of postsynaptic assembly for these mixed synapses: GABA receptors precede glycine receptors, and a lack of early GABA receptor expression impedes the recruitment of glycine receptors. Together our findings uncover the organization and developmental profile of an additional motif of inhibition in the mammalian retina.

摘要

在视网膜中,无长突细胞抑制性中间神经元抑制视网膜神经节细胞 (RGC) 树突,从而形成视网膜输出。无长突细胞通常使用 GABA 或甘氨酸来发挥突触抑制作用。在这里,我们结合了转基因工具、免疫组织化学、电生理学和 3D 电子显微镜技术,以确定在小鼠视网膜中一种特征明确的 RGC 类型(ON 持续的 alpha RGC)的整个树突分支上抑制性突触的组成和组织。我们发现这种 RGC 类型存在混合的 GABA-甘氨酸受体突触,揭示了视网膜回路中存在“混合”抑制性突触。具有双重释放位点的突触前无长突细胞末梢与 ON 持续的 alpha RGC 突触后末梢相对。我们进一步揭示了这些混合突触的突触后组装顺序:GABA 受体先于甘氨酸受体,早期缺乏 GABA 受体表达会阻碍甘氨酸受体的募集。总之,我们的发现揭示了哺乳动物视网膜中抑制的另一种模式的组织和发育特征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7001/8030271/f9f45ada3f80/nihms-1684389-f0002.jpg

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