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γ-氨基丁酸A型受体的最新进展

An update on GABAA receptors.

作者信息

Mehta A K, Ticku M K

机构信息

Department of Pharmacology, The University of Texas Health Science Center at San Antonio, 7703 Floyd Curl Drive, San Antonio, TX 78284-7764, USA.

出版信息

Brain Res Brain Res Rev. 1999 Apr;29(2-3):196-217. doi: 10.1016/s0165-0173(98)00052-6.

Abstract

Recent advances in molecular biology and complementary information derived from neuropharmacology, biochemistry and behavior have dramatically increased our understanding of various aspects of GABAA receptors. These studies have revealed that the GABAA receptor is derived from various subunits such as alpha1-alpha6, beta1-beta3, gamma1-gamma3, delta, epsilon, pi, and rho1-3. Furthermore, two additional subunits (beta4, gamma4) of GABAA receptors in chick brain, and five isoforms of the rho-subunit in the retina of white perch (Roccus americana) have been identified. Various techniques such as mutation, gene knockout and inhibition of GABAA receptor subunits by antisense oligodeoxynucleotides have been used to establish the physiological/pharmacological significance of the GABAA receptor subunits and their native receptor assemblies in vivo. Radioligand binding to the immunoprecipitated receptors, co-localization studies using immunoaffinity chromatography and immunocytochemistry techniques have been utilized to establish the composition and pharmacology of native GABAA receptor assemblies. Partial agonists of GABAA receptors are being developed as anxiolytics which have fewer and less severe side effects as compared to conventional benzodiazepines because of their lower efficacy and better selectivity for the GABAA receptor subtypes. The subunit requirement of various drugs such as anxiolytics, anticonvulsants, general anesthetics, barbiturates, ethanol and neurosteroids, which are known to elicit at least some of their pharmacological effects via the GABAA receptors, have been investigated during the last few years so as to understand their exact mechanism of action. Furthermore, the molecular determinants of clinically important drug-targets have been investigated. These aspects of GABAA receptors have been discussed in detail in this review article.

摘要

分子生物学的最新进展以及从神经药理学、生物化学和行为学获得的补充信息,极大地增进了我们对GABAA受体各方面的理解。这些研究表明,GABAA受体由多种亚基组成,如α1-α6、β1-β3、γ1-γ3、δ、ε、π和ρ1-3。此外,已在鸡脑中鉴定出GABAA受体的另外两个亚基(β4、γ4),并在白鲈(美洲犬牙石首鱼)视网膜中鉴定出ρ亚基的五种异构体。已采用多种技术,如突变、基因敲除以及反义寡脱氧核苷酸抑制GABAA受体亚基,来确定GABAA受体亚基及其天然受体组装体在体内的生理/药理学意义。利用放射性配体与免疫沉淀受体结合、免疫亲和色谱和免疫细胞化学技术进行共定位研究,以确定天然GABAA受体组装体的组成和药理学特性。GABAA受体的部分激动剂正被开发为抗焦虑药,与传统苯二氮䓬类药物相比,因其疗效较低且对GABAA受体亚型的选择性更好,副作用更少且更轻微。在过去几年中,已对多种药物(如抗焦虑药、抗惊厥药、全身麻醉药、巴比妥类药物、乙醇和神经甾体)的亚基需求进行了研究,这些药物已知至少部分药理作用是通过GABAA受体介导的,以便了解其确切作用机制。此外,还对临床重要药物靶点的分子决定因素进行了研究。本文将详细讨论GABAA受体的这些方面。

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