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定义与γ-氨基丁酸A型受体的亲和力。

Defining affinity with the GABAA receptor.

作者信息

Jones M V, Sahara Y, Dzubay J A, Westbrook G L

机构信息

Vollum Institute, Oregon Health Sciences University, Portland, Oregon 97201, USA.

出版信息

J Neurosci. 1998 Nov 1;18(21):8590-604. doi: 10.1523/JNEUROSCI.18-21-08590.1998.

Abstract

At nicotinic and glutamatergic synapses, the duration of the postsynaptic response depends on the affinity of the receptor for transmitter (Colquhoun et al., 1977;Pan et al., 1993). Affinity is often thought to be determined by the ligand unbinding rate, whereas the binding rate is assumed to be diffusion-limited. In this view, the receptor selects for those ligands that form a stable complex on binding, but binding is uniformly fast and does not itself affect selectivity. We tested these assumptions for the GABAA receptor by dissecting the contributions of microscopic binding and unbinding kinetics for agonists of equal efficacy but of widely differing affinities. Agonist pulses applied to outside-out patches of cultured rat hippocampal neurons revealed that agonist unbinding rates could not account for affinity if diffusion-limited binding was assumed. However, direct measurement of the instantaneous competition between agonists and a competitive antagonist revealed that binding rates were orders of magnitude slower than expected for free diffusion, being more steeply correlated with affinity than were the unbinding rates. The deviation from diffusion-limited binding indicates that a ligand-specific energy barrier between the unbound and bound states determines GABAA receptor selectivity. This barrier and our kinetic observations can be quantitatively modeled by requiring the participation of movable elements within a flexible GABA binding site.

摘要

在烟碱能和谷氨酸能突触中,突触后反应的持续时间取决于受体对递质的亲和力(科尔昆等人,1977年;潘等人,1993年)。通常认为亲和力由配体解离速率决定,而结合速率被假定为扩散限制的。按照这种观点,受体选择那些在结合时形成稳定复合物的配体,但结合是均匀快速的,且结合本身并不影响选择性。我们通过剖析具有同等效力但亲和力差异很大的激动剂的微观结合和解离动力学贡献,对GABAA受体的这些假设进行了测试。施加于培养的大鼠海马神经元外向型膜片上的激动剂脉冲显示,如果假定为扩散限制结合,激动剂解离速率无法解释亲和力。然而,对激动剂与竞争性拮抗剂之间瞬时竞争的直接测量表明,结合速率比自由扩散预期的慢几个数量级,与亲和力的相关性比解离速率更陡峭。与扩散限制结合的偏差表明,未结合态与结合态之间的配体特异性能垒决定了GABAA受体的选择性。通过要求在灵活的GABA结合位点内有可移动元件参与,这个能垒和我们的动力学观察结果可以进行定量建模。

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