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配体诱导 μ-和 κ-阿片受体激活或抑制的机制。

The mechanism of ligand-induced activation or inhibition of μ- and κ-opioid receptors.

机构信息

Ecole Polytechnique Fédérale de Lausanne (EPFL), Institute of Chemical Sciences and Engineering, Lausanne (Switzerland).

Department of Pharmacology, School of Medicine, Case Western Reserve University, Cleveland (USA).

出版信息

Angew Chem Int Ed Engl. 2015 Jun 22;54(26):7560-3. doi: 10.1002/anie.201501742. Epub 2015 May 12.

Abstract

G-protein-coupled receptors (GPCRs) are important targets for treating severe diseases. However why certain molecules act as activators whereas others, with similar structures, block GPCR activation, is poorly understood since the same molecule can activate one receptor subtype while blocking another closely related receptor. To shed light on these central questions, we used all-atom, long-time-scale molecular dynamics simulations on the κ-opioid and μ-opioid receptors (κOR and μOR). We found that water molecules penetrating into the receptor interior mediate the activating versus blocking effects of a particular ligand-receptor interaction. Both the size and the flexibility of the bound ligand regulated water influx into the receptor. The solvent-accessible inner surface area was found to be a parameter that can help predict the function of the bound ligand.

摘要

G 蛋白偶联受体(GPCRs)是治疗严重疾病的重要靶点。然而,为什么某些分子作为激活剂,而其他具有相似结构的分子则阻断 GPCR 激活,这一点理解得很差,因为同一分子可以激活一种受体亚型,同时阻断另一种密切相关的受体。为了解决这些核心问题,我们使用全原子、长时间尺度的分子动力学模拟方法,对 κ 阿片受体和 μ 阿片受体(κOR 和 μOR)进行了研究。我们发现,穿透受体内部的水分子介导了特定配体-受体相互作用的激活作用与阻断作用。结合配体的大小和灵活性调节了水向受体的流入。发现溶剂可及的内表面面积是一个可以帮助预测结合配体功能的参数。

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