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γ-氨基丁酸A(GABA(A))受体表面表达的调控,特别涉及GABARAP(γ-氨基丁酸A受体相关蛋白)和PRIP(磷脂酶C相关但无催化活性蛋白)的参与

Regulation of GABA(A)-receptor surface expression with special reference to the involvement of GABARAP (GABA(A) receptor-associated protein) and PRIP (phospholipase C-related, but catalytically inactive protein).

作者信息

Kanematsu Takashi, Mizokami Akiko, Watanabe Keiko, Hirata Masato

机构信息

Laboratory of Molecular and Cellular Biochemistry, Faculty of Dental Science and Station for Collaborative Research, Kyushu University, Fukuoka, Japan.

出版信息

J Pharmacol Sci. 2007 Aug;104(4):285-92. doi: 10.1254/jphs.cp0070063. Epub 2007 Aug 10.

Abstract

GABA(A) receptors are heteropentameric ligand-gated chloride channels composed of a variety of subunits, including alpha1 - 6, beta1 - 3, gamma1 - 3, delta, epsilon, theta, and pi, and play a key role in controlling inhibitory neuronal activity. Modification of the efficacy of the synaptic strength is produced by changes in both the number of neuronal surface receptors and pentameric molecular assembly, leading to differences of sensitivity to neurotransmitters and neuromimetic drugs. Therefore, it is important to understand the molecular mechanisms regulating the so-called "life cycle of GABA(A) receptors" including sequential pentameric assembly at the site synthesized, intracellular transport through the Golgi apparatus and the cytoplasm, insertion into the cell membrane, functional modulation at the cell surface, and finally internalization, followed by either recycling back to the surface membrane or lysosomal degradation. This review is focused on events related to the surface expression of the receptor containing the gamma2 subunit and clathrin/AP2 complex-mediated phospho-regulated endocytosis of the receptor, with special reference to the function of novel GABA(A) receptor modulators, GABARAP (GABA(A) receptor-associated protein) and PRIP (phospholipase C-related, but catalytically inactive protein).

摘要

GABA(A)受体是由多种亚基组成的异源五聚体配体门控氯离子通道,这些亚基包括α1 - 6、β1 - 3、γ1 - 3、δ、ε、θ和π,在控制抑制性神经元活动中起关键作用。神经元表面受体数量和五聚体分子组装的变化都会导致突触强度效能的改变,进而引起对神经递质和拟神经药物敏感性的差异。因此,了解调节所谓“GABA(A)受体生命周期”的分子机制非常重要,这一过程包括在合成位点的顺序五聚体组装、通过高尔基体和细胞质的细胞内运输、插入细胞膜、在细胞表面的功能调节,以及最终的内化,随后要么循环回到表面膜,要么进行溶酶体降解。本综述聚焦于与含γ2亚基受体的表面表达以及网格蛋白/AP2复合物介导的受体磷酸化调节内吞作用相关的事件,特别提及新型GABA(A)受体调节剂GABARAP(GABA(A)受体相关蛋白)和PRIP(磷脂酶C相关但无催化活性蛋白)的功能。

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