首页> 外文期刊>Journal of Medicinal Chemistry >Structural Requirements for Eszopiclone and Zolpidem Binding to the gamma-Aminobutyric Acid Type-A (GABA(A)) Receptor Are Different
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Structural Requirements for Eszopiclone and Zolpidem Binding to the gamma-Aminobutyric Acid Type-A (GABA(A)) Receptor Are Different

机译:Eszopiclone和Zolpidem结合到A型γ-氨基丁酸(GABA(A))受体的结构要求是不同的

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摘要

The sleep-aids zolpidem and eszopiclone exert their effects by binding to and modulating gamma-aminobutyric acid type-A receptors (GABA(A)Rs), but little is known about the structural requirements for their actions. We made 24 cysteine mutations in the benzodiazepine (BZD) binding site of alpha(1)beta(2)gamma(2) GABA(A)Rs and measured zolpidem, eszopiclone, and BZD-site antagonist binding. Mutations in gamma(2)loop D and alpha(1)loops A and B altered the affinity of all ligands tested, indicating that these loops are important for BZD pocket structural integrity. In contrast, gamma(2)loop E and alpha(1)loop C mutations differentially affected ligand affinity, suggesting that these loops are important for ligand selectivity. In agreement with our mutagenesis data, eszopiclone docking yielded a single model stabilized by several hydrogen bonds. Zolpidem docking yielded three equally populated orientations with few polar interactions, suggesting that unlike eszopiclone, zolpidem relies more on shape recognition of the binding pocket than on specific residue interactions and may explain why zolpidem is highly alpha(1)- and gamma(2)-subunit selective.
机译:助眠药唑吡坦和依佐匹克隆通过结合并调节A型γ-氨基丁酸受体(GABA(A)Rs)发挥作用,但对其作用的结构要求知之甚少。我们在苯二氮卓(BZD)的alpha(1)beta(2)gamma(2)GABA(A)Rs结合位点中进行了24个半胱氨酸突变,并测定了唑吡坦,艾司佐匹克隆和BZD拮抗剂的结合位点。 γ(2)环D和alpha(1)环A和B中的突变改变了所有测试配体的亲和力,表明这些环对BZD口袋结构的完整性很重要。相反,γ(2)环E和alpha(1)环C突变差异影响配体亲和力,表明这些环对于配体选择性很重要。与我们的诱变数据一致,依佐匹克隆的对接产生了一个由多个氢键稳定的单一模型。唑吡坦对接产生三个极少相互作用的均等分布方向,这表明与唑佐匹克隆不同,唑吡坦更依赖于结合口袋的形状识别,而不是特定的残基相互作用,这也许可以解释为什么唑吡坦是高度α(1)-和γ(2)-亚基选择性。

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