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Probing the Effects of Residues Located Outside the Agonist Binding Site on Drug-Receptor Selectivity in the Nicotinic Receptor

机译:探测位于激动剂结合位点之外的残基对烟碱受体中药物受体选择性的影响

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摘要

The nicotinic acetylcholine receptors (nAChRs) are a family of closely related but pharmacologically distinct neurotransmitter-gated ion channels. They are therapeutic targets for a wide range of neurological disorders, and a key issue in drug development is selective targeting among the more than 20 subtypes of nAChRs that are known. The present work evaluates a proposed hydrogen bonding interaction involving a residue known as the “loop B glycine” that distinguishes receptors that are highly responsive to ACh and nicotine from those that are much less so. We have performed structure–function studies on the loop B site, including unnatural amino acid mutagenesis, in three different nAChR subtypes and found that the correlation between agonist potency and this residue is strong. Low potency receptor subtypes have a glycine at this key site, and mutation to a residue with a side chain converts a low potency receptor to a high potency receptor. Innately high potency receptors have a lysine at the loop B site and show a decrease in potency for the reverse mutation (i.e., introducing a glycine). This residue lies outside of the agonist binding site, and studies of other residues at the agonist binding site show that the details of how changes at the loop B glycine site impact agonist potency vary for differing receptor subtypes. This suggests a model in which the loop B residue influences the global shape of the agonist binding site rather than modulating any specific interaction.
机译:烟碱乙酰胆碱受体(nAChRs)是一族紧密相关但在药理学上不同的神经递质门控离子通道。它们是多种神经系统疾病的治疗靶标,药物开发中的关键问题是在已知的20多种nAChR亚型中进行选择性靶向。本工作评估了一个提议的氢键相互作用,该相互作用涉及一个称为“环B甘氨酸”的残基,该残基将对ACh和尼古丁具有高响应性的受体与对ACh和尼古丁具有高响应性的受体区分开。我们在三种不同的nAChR亚型中对B环位点进行了结构功能研究,包括非天然氨基酸诱变,发现激动剂效价与该残基之间的相关性很强。低效受体亚型在此关键位点具有甘氨酸,突变为带有侧链的残基会将低效受体转变为高效受体。天生高效的受体在B环的位点具有赖氨酸,并显示出反向突变(即引入甘氨酸)的能力降低。该残基位于激动剂结合位点之外,并且对激动剂结合位点上其他残基的研究表明,对于不同的受体亚型,环B甘氨酸位点的变化如何影响激动剂效力的细节有所不同。这暗示了其中环B残基影响激动剂结合位点的整体形状而不调节任何特定相互作用的模型。

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