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首页> 外文期刊>Journal of General Physiology >Estimating binding affinities of the nicotinic receptor for low-efficacy ligands using mixtures of agonists and two-dimensional concentration-response relationships
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Estimating binding affinities of the nicotinic receptor for low-efficacy ligands using mixtures of agonists and two-dimensional concentration-response relationships

机译:使用激动剂和二维浓度-响应关系的混合物估算烟碱受体对低效配体的结合亲和力

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The phenomenon of ligand-induced ion channel gating hinges upon the ability of a receptor channel to bind ligand molecules with conformation-specific affinities. However, our understanding of this fundamental phenomenon is notably limited, not only because the changes in binding site structure and ligand conformation that occur upon gating are largely unknown but, also, because the strength of these ligand-receptor interactions are experimentally elusive. Both high- and low-efficacy ligands pose a number of analytical and experimental challenges that can render the estimation of their conformation-specific binding affinities impossible. In this paper, we present a novel assay that overcomes some of the hurdles presented by weak agonists of the muscle nicotinic receptor and allows the estimation of their closed-state affinities. The method, which we have termed the "activation-competition" assay, consists of a single-channel concentration-response assay performed in the presence of a binary mixture of ligands of widely different efficacies. By plotting the channel response (i.e., the open probability) as a function of the concentration of each agonist in the mixture, interpreting the observed response in the framework of a plausible kinetic scheme, and fitting the open probability surface with the corresponding function, the affinities of the closed receptor for the two agonists can be simultaneously extracted as free parameters. Here, we applied this methodology to estimate the closed-state affinity of the muscle nicotinic receptor for choline ( a very weak agonist) using acetylcholine (ACh) as the partner in the mixture. We estimated the dissociation equilibrium constant of choline (KD) from the wild type's closed state to be 4.1 +/- 0.5 mM (and that of ACh to be 106 +/- 6 mu M). We also discuss the use of accurate estimates of affinities for low-efficacy agonists as a tool to discriminate between binding and gating effects of mutations, and in the context of the rational design of therapeutic drugs.
机译:配体诱导的离子通道门控现象取决于受体通道以构象特异性亲和力结合配体分子的能力。但是,我们对这种基本现象的理解受到了极大的限制,这不仅是因为在选通时发生的结合位点结构和配体构象的变化在很大程度上是未知的,而且还因为这些配体-受体相互作用的强度在实验上难以捉摸。高效率和低效率的配体都带来了许多分析和实验挑战,这些挑战可能使得无法估计其构象特异性结合亲和力。在本文中,我们提出了一种新颖的测定方法,该方法克服了肌肉烟碱样受体微弱激动剂带来的一些障碍,并可以估算其闭合状态亲和力。我们将这种方法称为“激活竞争”测定法,该方法由在效率相差很大的配体的二元混合物存在下进行的单通道浓度响应测定法组成。通过绘制通道响应(即打开概率)随混合物中每种激动剂浓度的函数关系图,在合理的动力学方案框架内解释观察到的响应,并用相应的函数拟合打开概率表面,封闭受体对两个激动剂的亲和力可以同时作为自由参数提取。在这里,我们使用这种方法来估计胆碱(一种非常弱的激动剂)对胆碱(一种非常弱的激动剂)的肌肉烟碱受体的闭合状态亲和力。我们估计胆碱(KD)从野生型的关闭状态的解离平衡常数为4.1 +/- 0.5 mM(而ACh的解离平衡常数为106 +/- 6μM)。我们还将讨论对低效激动剂的亲和力的准确估计,以此作为区分突变的结合和门控效应的工具,以及在合理设计治疗药物的背景下。

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