Department of Biochemistry, Microbiology and Bio-informatics, Laval University, Québec City, Québec, Canada.
Neuroscience Axis, CRCHUQ, Laval University, Québec City, Québec, Canada.
Nat Rev Neurosci. 2022 Aug;23(8):476-492. doi: 10.1038/s41583-022-00599-0. Epub 2022 May 30.
GABAergic inhibitory circuits play an essential role in coordinating various hippocampal functions. Several decades of work dedicated to a thorough characterization of hippocampal inhibitory populations have highlighted how specific types of interneuron can contribute to network activity. Recent studies have used genetically targeted recordings and peturbations of activity during memory-related behaviours to determine how interneurons that inhibit distinct subcellular domains of principal cells or specialize in principal cell disinhibition may sculpt hippocampal memory. These studies highlight unique contributions of distinct interneuron types to the temporal binding of hippocampal ensembles, synaptic plasticity and the acquisition of spatial and contextual information. Here, we review the current state of knowledge around hippocampal inhibition and memory by discussing the multifaceted roles of populations of inhibitory cells at different stages of hippocampal mnemonic processing.
GABA 能抑制性回路在协调海马体各种功能方面发挥着重要作用。几十年来,人们致力于深入研究海马体抑制性群体,这突显了特定类型的中间神经元如何有助于网络活动。最近的研究使用基因靶向记录和在与记忆相关的行为期间对活动进行干扰,以确定抑制主要细胞不同亚细胞域或专门抑制主要细胞去抑制的中间神经元如何塑造海马体记忆。这些研究强调了不同中间神经元类型对海马体集合的时间绑定、突触可塑性以及空间和上下文信息获取的独特贡献。在这里,我们通过讨论海马体记忆处理不同阶段的抑制细胞群体的多方面作用,回顾了当前关于海马体抑制和记忆的知识状态。