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[3H]蝇蕈醇与牛脑膜中GABAA受体结合的动力学

Kinetics of [3H]muscimol binding to the GABAA receptor in bovine brain membranes.

作者信息

Agey M W, Dunn S M

机构信息

Department of Physiology and Biophysics, University of Iowa, Iowa City 52242.

出版信息

Biochemistry. 1989 May 16;28(10):4200-8. doi: 10.1021/bi00436a012.

Abstract

The binding of the GABA receptor agonist [3H]muscimol to membrane preparations from bovine cerebral cortex has been investigated in equilibrium and kinetic experiments. Equilibrium binding curves are biphasic and suggest that [3H]muscimol binds to both high-affinity (Kd approximately 10 nM) and low-affinity (Kd approximately 0.5 microM) sites. Binding to each class of sites is inhibited by GABA and by the specific GABAA receptor antagonist bicuculline. The kinetics of [3H]muscimol binding have been measured by using both manual filtration assays and an automated rapid filtration technique which permits the measurement of ligand dissociation on subsecond time scales. Association and dissociation curves are biphasic at all concentrations of [3H]muscimol studied, even under conditions of low receptor saturation when no significant occupancy of the low-affinity sites would be expected. These results cannot be simply explained by the presence of two populations of binding sites in the membrane preparations but suggest the existence of two forms of the monoliganded receptor. Dissociation constants for these two forms have been estimated to be 16 and 82 nM at 23 degrees C. At higher ligand concentrations, kinetic measurements have suggested that the binding of [3H]muscimol to low-affinity sites is accompanied by a slow conformational change of the receptor-ligand complex.

摘要

已在平衡和动力学实验中研究了GABA受体激动剂[³H]蝇蕈醇与牛大脑皮质膜制剂的结合情况。平衡结合曲线呈双相,表明[³H]蝇蕈醇与高亲和力(Kd约为10 nM)和低亲和力(Kd约为0.5 μM)位点均有结合。GABA和特异性GABAA受体拮抗剂荷包牡丹碱可抑制与每类位点的结合。已通过手动过滤测定法和自动快速过滤技术测量了[³H]蝇蕈醇结合的动力学,该自动快速过滤技术允许在亚秒时间尺度上测量配体解离。在所研究的所有[³H]蝇蕈醇浓度下,结合和解离曲线均呈双相,即使在受体低饱和度条件下,预计低亲和力位点无明显占据时也是如此。这些结果不能简单地用膜制剂中存在两种结合位点群体来解释,而是表明存在单配体受体的两种形式。在23℃下,这两种形式的解离常数估计分别为16 nM和82 nM。在较高配体浓度下,动力学测量表明[³H]蝇蕈醇与低亲和力位点的结合伴随着受体 - 配体复合物的缓慢构象变化。

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