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γ-原钙黏蛋白与神经黏附素-2 发生物理相互作用并发挥功能,负向调节抑制性突触密度,且对于正常的社交互动是必需的。

The γ-Protocadherins Interact Physically and Functionally with Neuroligin-2 to Negatively Regulate Inhibitory Synapse Density and Are Required for Normal Social Interaction.

机构信息

Iowa Neuroscience Institute, The University of Iowa, Iowa City, IA, 52242, USA.

Department of Biology, The University of Iowa, Iowa City, IA, 52242, USA.

出版信息

Mol Neurobiol. 2021 Jun;58(6):2574-2589. doi: 10.1007/s12035-020-02263-z. Epub 2021 Jan 20.

DOI:10.1007/s12035-020-02263-z
PMID:33471287
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC8137559/
Abstract

Cell adhesion molecules (CAMs) are key players in the formation of neural circuits during development. The γ-protocadherins (γ-Pcdhs), a family of 22 CAMs encoded by the Pcdhg gene cluster, are known to play important roles in dendrite arborization, axon targeting, and synapse development. We showed previously that multiple γ-Pcdhs interact physically with the autism-associated CAM neuroligin-1, and inhibit the latter's ability to promote excitatory synapse maturation. Here, we show that γ-Pcdhs can also interact physically with the related neuroligin-2, and inhibit this CAM's ability to promote inhibitory synapse development. In an artificial synapse assay, γ-Pcdhs co-expressed with neuroligin-2 in non-neuronal cells reduce inhibitory presynaptic maturation in contacting hippocampal axons. Mice lacking the γ-Pcdhs from the forebrain (including the cortex, the hippocampus, and portions of the amygdala) exhibit increased inhibitory synapse density and increased co-localization of neuroligin-2 with inhibitory postsynaptic markers in vivo. These Pcdhg mutants also exhibit defective social affiliation and an anxiety-like phenotype in behavioral assays. Together, these results suggest that γ-Pcdhs negatively regulate neuroligins to limit synapse density in a manner that is important for normal behavior.

摘要

细胞黏附分子(CAMs)是发育过程中神经回路形成的关键参与者。γ-原钙黏蛋白(γ-Pcdhs)是由 Pcdhg 基因簇编码的 22 种 CAM 家族之一,已知其在树突分支、轴突靶向和突触发育中发挥重要作用。我们之前表明,多个 γ-Pcdhs 与自闭症相关的 CAM 神经黏连蛋白-1 发生物理相互作用,并抑制后者促进兴奋性突触成熟的能力。在这里,我们表明 γ-Pcdhs 也可以与相关的神经黏连蛋白-2 发生物理相互作用,并抑制该 CAM 促进抑制性突触发育的能力。在人工突触测定中,与神经黏连蛋白-2 共表达的非神经元细胞中的 γ-Pcdhs 减少了接触海马轴突的抑制性突触前成熟。在前脑(包括皮层、海马体和部分杏仁核)中缺乏 γ-Pcdhs 的小鼠在体内表现出抑制性突触密度增加,以及神经黏连蛋白-2 与抑制性突触后标记物的共定位增加。这些 Pcdhg 突变体在行为测定中还表现出社交隶属关系缺陷和焦虑样表型。总之,这些结果表明 γ-Pcdhs 负调控神经黏连蛋白,以限制正常行为中突触密度的方式。

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