Neuroscience Institute, New York University Langone Health, New York, NY, United States.
Department of Neuroscience and Physiology, New York University Grossman School of Medicine, New York, NY, United States.
Front Neural Circuits. 2023 Sep 29;17:1223891. doi: 10.3389/fncir.2023.1223891. eCollection 2023.
GABAergic inhibitory neurons are the principal source of inhibition in the brain. Traditionally, their role in maintaining the balance of excitation-inhibition has been emphasized. Beyond homeostatic functions, recent circuit mapping and functional manipulation studies have revealed a wide range of specific roles that GABAergic circuits play in dynamically tilting excitation-inhibition coupling across spatio-temporal scales. These span from gating of compartment- and input-specific signaling, gain modulation, shaping input-output functions and synaptic plasticity, to generating signal-to-noise contrast, defining temporal windows for integration and rate codes, as well as organizing neural assemblies, and coordinating inter-regional synchrony. GABAergic circuits are thus instrumental in controlling single-neuron computations and behaviorally-linked network activity. The activity dependent modulation of sensory and mnemonic information processing by GABAergic circuits is pivotal for the formation and maintenance of episodic memories in the hippocampus. Here, we present an overview of the local and long-range GABAergic circuits that modulate the dynamics of excitation-inhibition and disinhibition in the main output area of the hippocampus CA1, which is crucial for episodic memory. Specifically, we link recent findings pertaining to GABAergic neuron molecular markers, electrophysiological properties, and synaptic wiring with their function at the circuit level. Lastly, given that area CA1 is particularly impaired during early stages of Alzheimer's disease, we emphasize how these GABAergic circuits may contribute to and be involved in the pathophysiology.
GABA 能抑制性神经元是大脑中抑制的主要来源。传统上,它们在维持兴奋-抑制平衡中的作用一直受到重视。除了维持平衡的作用外,最近的回路映射和功能操作研究揭示了 GABA 能回路在跨时空尺度上动态倾斜兴奋-抑制偶联方面发挥着广泛的特定作用。这些作用范围从门控隔室和输入特异性信号、增益调制、塑造输入-输出功能和突触可塑性,到产生信号噪声比、定义整合和率码的时间窗口,以及组织神经集合和协调区域间同步。因此,GABA 能回路在控制单个神经元计算和与行为相关的网络活动方面起着重要作用。GABA 能回路对感觉和记忆信息处理的活动依赖性调制对于海马体中情景记忆的形成和维持至关重要。在这里,我们概述了调节海马体 CA1 主要输出区兴奋-抑制和去抑制动力学的局部和远程 GABA 能回路,这对于情景记忆至关重要。具体来说,我们将最近关于 GABA 能神经元分子标志物、电生理特性和突触连接的发现与它们在回路水平上的功能联系起来。最后,鉴于在阿尔茨海默病的早期阶段 CA1 区域特别受损,我们强调这些 GABA 能回路如何可能有助于并涉及病理生理学。