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RGS14 在 CA2 海马体、杏仁核和基底神经节中的表达:对人类大脑生理学和疾病的影响。

RGS14 expression in CA2 hippocampus, amygdala, and basal ganglia: Implications for human brain physiology and disease.

机构信息

Department of Pharmacology and Chemical Biology, Emory University School of Medicine, Atlanta, Georgia, USA.

出版信息

Hippocampus. 2023 Mar;33(3):166-181. doi: 10.1002/hipo.23492. Epub 2022 Dec 21.

Abstract

RGS14 is a multifunctional scaffolding protein that is highly expressed within postsynaptic spines of pyramidal neurons in hippocampal area CA2. Known roles of RGS14 in CA2 include regulating G protein, H-Ras/ERK, and calcium signaling pathways to serve as a natural suppressor of synaptic plasticity and postsynaptic signaling. RGS14 also shows marked postsynaptic expression in major structures of the limbic system and basal ganglia, including the amygdala and both the ventral and dorsal subdivisions of the striatum. In this review, we discuss the signaling functions of RGS14 and its role in postsynaptic strength (long-term potentiation) and spine structural plasticity in CA2 hippocampal neurons, and how RGS14 suppression of plasticity impacts linked behaviors such as spatial learning, object memory, and fear conditioning. We also review RGS14 expression in the limbic system and basal ganglia and speculate on its possible roles in regulating plasticity in these regions, with a focus on behaviors related to emotion and motivation. Finally, we explore the functional implications of RGS14 in various brain circuits and speculate on its possible roles in certain disease states such as hippocampal seizures, addiction, and anxiety disorders.

摘要

RGS14 是一种多功能支架蛋白,在海马 CA2 区锥体神经元的突触后棘中高度表达。RGS14 在 CA2 中的已知作用包括调节 G 蛋白、H-Ras/ERK 和钙信号通路,作为突触可塑性和突触后信号的天然抑制剂。RGS14 在后脑岛和基底神经节的主要结构中也表现出明显的突触后表达,包括杏仁核和纹状体的腹侧和背部分区。在这篇综述中,我们讨论了 RGS14 的信号功能及其在 CA2 海马神经元突触后强度(长时程增强)和棘突结构可塑性中的作用,以及 RGS14 对可塑性的抑制如何影响空间学习、物体记忆和恐惧条件反射等相关行为。我们还回顾了 RGS14 在边缘系统和基底神经节中的表达,并推测其在调节这些区域可塑性中的可能作用,重点关注与情绪和动机相关的行为。最后,我们探讨了 RGS14 在各种脑回路中的功能意义,并推测其在某些疾病状态(如海马癫痫、成瘾和焦虑障碍)中的可能作用。

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