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病理性疼痛中环突触神经连接蛋白-神经黏连蛋白相互作用的调制。

Modulation of Trans-Synaptic Neurexin-Neuroligin Interaction in Pathological Pain.

机构信息

Department of Anesthesiology, Beijing Chaoyang Hospital, Capital Medical University, Beijing 100020, China.

Department of Anesthesiology, Beijing Friendship Hospital, Capital Medical University, Beijing 100030, China.

出版信息

Cells. 2022 Jun 16;11(12):1940. doi: 10.3390/cells11121940.

Abstract

Synapses serve as the interface for the transmission of information between neurons in the central nervous system. The structural and functional characteristics of synapses are highly dynamic, exhibiting extensive plasticity that is shaped by neural activity and regulated primarily by trans-synaptic cell-adhesion molecules (CAMs). Prototypical trans-synaptic CAMs, such as neurexins (Nrxs) and neuroligins (Nlgs), directly regulate the assembly of presynaptic and postsynaptic molecules, including synaptic vesicles, active zone proteins, and receptors. Therefore, the trans-synaptic adhesion mechanisms mediated by Nrx-Nlg interaction can contribute to a range of synaptopathies in the context of pathological pain and other neurological disorders. The present review provides an overview of the current understanding of the roles of Nrx-Nlg interaction in the regulation of trans-synaptic connections, with a specific focus on Nrx and Nlg structures, the dynamic shaping of synaptic function, and the dysregulation of Nrx-Nlg in pathological pain. Additionally, we discuss a range of proteins capable of modulating Nrx-Nlg interactions at the synaptic cleft, with the objective of providing a foundation to guide the future development of novel therapeutic agents for managing pathological pain.

摘要

突触作为中枢神经系统神经元之间信息传递的接口。突触的结构和功能特性具有高度动态性,表现出广泛的可塑性,这种可塑性受神经活动的影响,并主要由突触间细胞粘附分子(CAMs)调节。典型的突触间 CAMs,如神经连接蛋白(Nrxs)和神经连接蛋白配体(Nlgs),直接调节突触前和突触后分子的组装,包括突触小泡、活性区蛋白和受体。因此,Nrx-Nlg 相互作用介导的突触间粘附机制可能导致病理性疼痛和其他神经紊乱背景下的一系列突触病。本综述概述了目前对 Nrx-Nlg 相互作用在调节突触连接中的作用的理解,特别关注 Nrx 和 Nlg 结构、突触功能的动态形成以及 Nrx-Nlg 在病理性疼痛中的失调。此外,我们还讨论了一系列能够在突触间隙调节 Nrx-Nlg 相互作用的蛋白质,旨在为指导未来开发用于病理性疼痛管理的新型治疗药物提供基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/43ef/9222181/ae496fe5154e/cells-11-01940-g001.jpg

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