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含 GABA 受体:功能作用与治疗潜力。

6-Containing GABA Receptors: Functional Roles and Therapeutic Potentials.

机构信息

Center for Brain Research, Department of Molecular Neurosciences (W.S.), and Center for Brain Research, Department of Pathobiology of the Nervous System (M.E., J.F.), Medical University Vienna, Vienna, Austria; Graduate Institute of Pharmacology (L.-C.C., M.T.L.), and Graduate Institute of Brain and Mind Sciences, College of Medicine, National Taiwan University, Taipei, Taiwan (L.-C.C., M.T.L.); Faculty of Pharmacy, Department of Pharmacology, University of Belgrade, Belgrade, Serbia (M.M.S.); Faculty of Pharmaceutical Sciences, UCSI University, Kuala Lumpur, Malaysia (M.T.L.); and Graduate Institute of Acupuncture Science, China Medical University, Taichung, Taiwan (L.-C.C.)

Center for Brain Research, Department of Molecular Neurosciences (W.S.), and Center for Brain Research, Department of Pathobiology of the Nervous System (M.E., J.F.), Medical University Vienna, Vienna, Austria; Graduate Institute of Pharmacology (L.-C.C., M.T.L.), and Graduate Institute of Brain and Mind Sciences, College of Medicine, National Taiwan University, Taipei, Taiwan (L.-C.C., M.T.L.); Faculty of Pharmacy, Department of Pharmacology, University of Belgrade, Belgrade, Serbia (M.M.S.); Faculty of Pharmaceutical Sciences, UCSI University, Kuala Lumpur, Malaysia (M.T.L.); and Graduate Institute of Acupuncture Science, China Medical University, Taichung, Taiwan (L.-C.C.).

出版信息

Pharmacol Rev. 2022 Jan;74(1):238-270. doi: 10.1124/pharmrev.121.000293.

Abstract

GABA receptors containing the 6 subunit are highly expressed in cerebellar granule cells and less abundantly in many other neuronal and peripheral tissues. Here, we for the first time summarize their importance for the functions of the cerebellum and the nervous system. The cerebellum is not only involved in motor control but also in cognitive, emotional, and social behaviors. 62 GABA receptors located at cerebellar Golgi cell/granule cell synapses enhance the precision of inputs required for cerebellar timing of motor activity and are thus involved in cognitive processing and adequate responses to our environment. Extrasynaptic 6 GABA receptors regulate the amount of information entering the cerebellum by their tonic inhibition of granule cells, and their optimal functioning enhances input filtering or contrast. The complex roles of the cerebellum in multiple brain functions can be compromised by genetic or neurodevelopmental causes that lead to a hypofunction of cerebellar 6-containing GABA receptors. Animal models mimicking neuropsychiatric phenotypes suggest that compounds selectively activating or positively modulating cerebellar 6-containing GABA receptors can alleviate essential tremor and motor disturbances in Angelman and Down syndrome as well as impaired prepulse inhibition in neuropsychiatric disorders and reduce migraine and trigeminal-related pain via 6-containing GABA receptors in trigeminal ganglia. Genetic studies in humans suggest an association of the human GABA receptor 6 subunit gene with stress-associated disorders. Animal studies support this conclusion. Neuroimaging and post-mortem studies in humans further support an involvement of 6-containing GABA receptors in various neuropsychiatric disorders, pointing to a broad therapeutic potential of drugs modulating 6-containing GABA receptors. SIGNIFICANCE STATEMENT: 6-Containing GABA receptors are abundantly expressed in cerebellar granule cells, but their pathophysiological roles are widely unknown, and they are thus out of the mainstream of GABA receptor research. Anatomical and electrophysiological evidence indicates that these receptors have a crucial function in neuronal circuits of the cerebellum and the nervous system, and experimental, genetic, post-mortem, and pharmacological studies indicate that selective modulation of these receptors offers therapeutic prospects for a variety of neuropsychiatric disorders and for stress and its consequences.

摘要

GABA 受体含有 6 亚基在小脑颗粒细胞中高度表达,在许多其他神经元和外周组织中表达较少。在这里,我们首次总结了它们对小脑和神经系统功能的重要性。小脑不仅参与运动控制,还参与认知、情感和社会行为。位于小脑高尔基细胞/颗粒细胞突触的 62 GABA 受体增强了运动活动小脑定时所需输入的精度,因此参与认知处理和对我们环境的适当反应。突触外 6 GABA 受体通过对颗粒细胞的紧张性抑制调节进入小脑的信息量,其最佳功能增强了输入滤波或对比。小脑在多种大脑功能中的复杂作用可能因导致小脑含 6 GABA 受体功能低下的遗传或神经发育原因而受到损害。模拟神经精神表型的动物模型表明,选择性激活或正向调节小脑含 6 GABA 受体的化合物可以缓解特发性震颤和 Angelman 及唐氏综合征中的运动障碍,以及改善神经精神障碍中的预脉冲抑制,并通过三叉神经节中的 6 含 GABA 受体减轻偏头痛和三叉神经相关疼痛。人类的遗传研究表明,人类 GABA 受体 6 亚基基因与应激相关疾病有关。动物研究支持这一结论。人类的神经影像学和尸检研究进一步支持 6 含 GABA 受体参与各种神经精神障碍,表明调节 6 含 GABA 受体的药物具有广泛的治疗潜力。意义陈述:6 含 GABA 受体在小脑颗粒细胞中大量表达,但它们的病理生理作用尚不清楚,因此不在 GABA 受体研究的主流之外。解剖学和电生理学证据表明,这些受体在小脑和神经系统的神经元回路中具有至关重要的功能,实验、遗传、尸检和药理学研究表明,选择性调节这些受体为多种神经精神障碍以及应激及其后果提供了治疗前景。

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