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通过相分离形成 Gephyrin 介导的抑制性突触后密度片层。

Gephyrin-mediated formation of inhibitory postsynaptic density sheet via phase separation.

机构信息

Division of Life Science, State Key Laboratory of Molecular Neuroscience, Hong Kong University of Science and Technology, Clear Water Bay, Kowloon, Hong Kong, China.

Center of Systems Biology and Human Health, Hong Kong University of Science and Technology, Clear Water Bay, Kowloon, Hong Kong, China.

出版信息

Cell Res. 2021 Mar;31(3):312-325. doi: 10.1038/s41422-020-00433-1. Epub 2020 Nov 2.

DOI:10.1038/s41422-020-00433-1
PMID:33139925
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC8027005/
Abstract

Inhibitory synapses are also known as symmetric synapses due to their lack of prominent postsynaptic densities (PSDs) under a conventional electron microscope (EM). Recent cryo-EM tomography studies indicated that inhibitory synapses also contain PSDs, albeit with a rather thin sheet-like structure. It is not known how such inhibitory PSD (iPSD) sheet might form. Here, we demonstrate that the key inhibitory synapse scaffold protein gephyrin, when in complex with either glycine or GABA receptors, spontaneously forms highly condensed molecular assemblies via phase separation both in solution and on supported membrane bilayers. Multivalent and specific interactions between the dimeric E-domain of gephyrin and the glycine/GABA receptor multimer are essential for the iPSD condensate formation. Gephyrin alone does not form condensates. The linker between the G- and E-domains of gephyrin inhibits the iPSD condensate formation via autoinhibition. Phosphorylation of specific residues in the linker or binding of target proteins such as dynein light chain to the linker domain regulates gephyrin-mediated glycine/GABA receptor clustering. Thus, analogous to excitatory PSDs, iPSDs are also formed by phase separation-mediated condensation of scaffold protein/neurotransmitter receptor complexes.

摘要

抑制性突触也被称为对称突触,因为在传统电子显微镜 (EM) 下它们缺乏明显的突触后密度 (PSD)。最近的冷冻电镜断层扫描研究表明,抑制性突触也含有 PSD,尽管其结构相当薄片状。目前尚不清楚这种抑制性 PSD(iPSD)片层是如何形成的。在这里,我们证明了当与甘氨酸或 GABA 受体结合时,关键的抑制性突触支架蛋白神经胶质蛋白原通过相分离在溶液中和支持的膜双层中自发形成高度浓缩的分子组装。神经胶质蛋白原二聚体的 E 结构域与甘氨酸/GABA 受体多聚体之间的多价和特异性相互作用对于 iPSD 凝聚物的形成是必不可少的。单独的神经胶质蛋白原不会形成凝聚物。神经胶质蛋白原的 G 结构域和 E 结构域之间的连接区通过自身抑制抑制 iPSD 凝聚物的形成。连接区中特定残基的磷酸化或与神经丝轻链等靶蛋白的结合调节神经胶质蛋白原介导的甘氨酸/GABA 受体聚集。因此,与兴奋性 PSD 类似,iPSD 也是通过支架蛋白/神经递质受体复合物的相分离介导的凝聚形成的。

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