Center for Neuroscience and Functional Connectomics, Korea Institute of Science and Technology (KIST), 02792 Seoul, Republic of Korea.
Neuroscience Program, University of Science and Technology, 34113 Daejeon, Republic of Korea.
Proc Natl Acad Sci U S A. 2018 May 8;115(19):5004-5009. doi: 10.1073/pnas.1721187115. Epub 2018 Apr 24.
Tonic inhibition in the brain is mediated through an activation of extrasynaptic GABA receptors by the tonically released GABA, resulting in a persistent GABAergic inhibitory action. It is one of the key regulators for neuronal excitability, exerting a powerful action on excitation/inhibition balance. We have previously reported that astrocytic GABA, synthesized by monoamine oxidase B (MAOB), mediates tonic inhibition via GABA-permeable bestrophin 1 (Best1) channel in the cerebellum. However, the role of astrocytic GABA in regulating neuronal excitability, synaptic transmission, and cerebellar brain function has remained elusive. Here, we report that a reduction of tonic GABA release by genetic removal or pharmacological inhibition of Best1 or MAOB caused an enhanced neuronal excitability in cerebellar granule cells (GCs), synaptic transmission at the parallel fiber-Purkinje cell (PF-PC) synapses, and motor performance on the rotarod test, whereas an augmentation of tonic GABA release by astrocyte-specific overexpression of MAOB resulted in a reduced neuronal excitability, synaptic transmission, and motor performance. The bidirectional modulation of astrocytic GABA by genetic alteration of Best1 or MAOB was confirmed by immunostaining and in vivo microdialysis. These findings indicate that astrocytes are the key player in motor coordination through tonic GABA release by modulating neuronal excitability and could be a good therapeutic target for various movement and psychiatric disorders, which show a disturbed excitation/inhibition balance.
大脑中的紧张性抑制是通过紧张性释放的 GABA 激活突触外 GABA 受体来介导的,导致持续的 GABA 能抑制作用。它是神经元兴奋性的关键调节剂之一,对兴奋/抑制平衡发挥强大作用。我们之前曾报道过,星形胶质细胞 GABA 通过单胺氧化酶 B(MAOB)合成,通过小脑中的 GABA 通透性贝斯特林 1(Best1)通道介导紧张性抑制。然而,星形胶质细胞 GABA 在调节神经元兴奋性、突触传递和小脑脑功能方面的作用仍然难以捉摸。在这里,我们报告说,通过 Best1 或 MAOB 的基因缺失或药理学抑制减少紧张性 GABA 释放会导致小脑颗粒细胞 (GC) 的神经元兴奋性增强、平行纤维-浦肯野细胞 (PF-PC) 突触的突触传递增强以及旋转棒测试中的运动表现增强,而通过星形胶质细胞特异性过表达 MAOB 增加紧张性 GABA 释放会导致神经元兴奋性、突触传递和运动表现降低。通过 Best1 或 MAOB 的基因改变对星形胶质细胞 GABA 的双向调节通过免疫染色和体内微透析得到证实。这些发现表明,星形胶质细胞通过调节神经元兴奋性成为运动协调的关键参与者,并且可能是各种运动和精神障碍的良好治疗靶点,这些障碍表现出兴奋/抑制平衡失调。