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重组γ-氨基丁酸A型(GABAA)受体中[3H]乙炔基双环原苯甲酸酯([3H]EBOB)的结合

[3H]Ethynylbicycloorthobenzoate ([3H]EBOB) binding in recombinant GABAA receptors.

作者信息

Yagle Monica A, Martin Michael W, de Fiebre Christopher M, de Fiebre NancyEllen C, Drewe John A, Dillon Glenn H

机构信息

Department of Pharmacology and Neuroscience, University of North Texas Health Science Center, TX 76107, USA.

出版信息

Neurotoxicology. 2003 Dec;24(6):817-24. doi: 10.1016/S0161-813X(03)00051-2.

Abstract

Ethynylbicycloorthobenzoate (EBOB) is a recently developed ligand that binds to the convulsant site of the GABAA receptor. While a few studies have examined the binding of [3H]EBOB in vertebrate brain tissue and insect preparations, none have examined [3H]EBOB binding in preparations that express known configurations of the GABAA receptor. We have thus examined [3H]EBOB binding in HEK293 cells stably expressing human alpha1beta2gamma2 and alpha2beta2gamma2 GABAA receptors, and the effects of CNS convulsants on its binding. The ability of the CNS convulsants to displace the prototypical convulsant site ligand, [35S]TBPS, was also assessed. Saturation analysis revealed [3H]EBOB binding at a single site, with a K(d) of approximately 9 nM in alpha1beta2gamma2 and alpha2beta2gamma2 receptors. Binding of both [3H]EBOB and [35S]TBPS was inhibited by dieldrin, lindane, tert-butylbicycloorthobenzoate (TBOB), PTX, TBPS, and pentylenetetrazol (PTZ) at one site in a concentration-dependent fashion. Affinities were in the high nM to low microM range for all compounds except PTZ (low mM range), and the rank order of potency for these convulsants to displace [3H]EBOB and [35S]TBPS was the same. Low [GABA] stimulated [3H]EBOB binding, while higher [GABA] (greater than 10 microM) inhibited [3H]EBOB binding. Overall, our data demonstrate that [3H]EBOB binds to a single, high affinity site in alpha1beta2gamma2 and alpha2beta2gamma2 GABAA receptors, and modulation of its binding is similar to that seen with [35S]TBPS. [3H]EBOB has a number of desirable traits that may make it preferable to [35S]TBPS for analysis of the convulsant site of the GABAA receptor.

摘要

乙炔基双环原苯甲酸酯(EBOB)是一种最近开发的配体,它与GABAA受体的惊厥位点结合。虽然有一些研究检测了[3H]EBOB在脊椎动物脑组织和昆虫制剂中的结合情况,但尚无研究检测[3H]EBOB在表达已知构型GABAA受体的制剂中的结合情况。因此,我们检测了[3H]EBOB在稳定表达人α1β2γ2和α2β2γ2 GABAA受体的HEK293细胞中的结合情况,以及中枢神经系统惊厥剂对其结合的影响。还评估了中枢神经系统惊厥剂取代原型惊厥位点配体[35S]TBPS的能力。饱和分析显示,[3H]EBOB在α1β2γ2和α2β2γ2受体中的单个位点结合,K(d)约为9 nM。[3H]EBOB和[35S]TBPS的结合在一个位点上被狄氏剂、林丹、叔丁基双环原苯甲酸酯(TBOB)、PTX、TBPS和戊四氮(PTZ)以浓度依赖性方式抑制。除PTZ(低毫摩尔范围)外,所有化合物的亲和力在高纳摩尔到低微摩尔范围内,这些惊厥剂取代[3H]EBOB和[35S]TBPS的效力顺序相同。低浓度的[GABA]刺激[3H]EBOB结合,而较高浓度的[GABA](大于10 microM)抑制[3H]EBOB结合。总体而言,我们的数据表明,[3H]EBOB在α1β2γ2和α2β2γ2 GABAA受体中与单个高亲和力位点结合,其结合的调节与[35S]TBPS相似。[3H]EBOB具有许多理想的特性,这可能使其在分析GABAA受体的惊厥位点时比[35S]TBPS更具优势。

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