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Proposed Mode of Binding and Action of Positive Allosteric Modulators at Opioid Receptors

机译:在阿片样物质受体上的正构构调节剂的结合和作用的拟议模式

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Available crystal structures of opioid receptors provide a high-resolution picture of ligand binding at the primary ("orthosteric") site, that is, the site targeted by endogenous ligands. Recently, positive allosteric modulators of opioid receptors have also been discovered, but their modes of binding and action remain unknown. Here, we use a metadynamics-based strategy to efficiently sample the binding process of a recently discovered positive allosteric modulator of the delta-opioid receptor, BMS-986187, in the presence of the orthosteric agonist SNC-80, and with the receptor embedded in an explicit lipid water environment. The dynamics of BMS-986187 were enhanced by biasing the potential acting on the ligand receptor distance and ligand receptor interaction contacts. Representative lowest-energy structures from the reconstructed free-energy landscape revealed two alternative ligand binding poses at an allosteric site delineated by transmembrane (TM) helices TM1, TM2, and TM7, with some participation of TM6. Mutations of amino acid residues at these proposed allosteric sites were found to either affect the binding of BMS-986187 or its ability to modulate the affinity and/or efficacy of SNC-80. Taken together, these combined experimental and computational studies provide the first atomic-level insight into the modulation of opioid receptor binding and signaling by allosteric modulators.
机译:阿片受体的可用晶体结构提供了在主要(“正构位”)位点(即内源性配体靶向的位点)的配体结合的高分辨率图片。最近,还发现了阿片受体的正构构调节剂,但其结合和作用方式仍然未知。在这里,我们使用基于元动力学的策略,在正构激动剂SNC-80存在且嵌入受体的情况下,有效地采样了最近发现的δ阿片类受体正变构调节剂BMS-986187的结合过程。明确的脂质水环境。通过偏置作用于配体受体距离和配体受体相互作用接触的电位,可以增强BMS-986187的动力学。来自重构的自由能景观的代表性最低能级结构揭示了在跨膜(TM)螺旋TM1,TM2和TM7所描绘的变构位点上的两个替代配体结合姿势,TM6的参与。发现在这些提议的变构位点的氨基酸残基的突变影响BMS-986187的结合或其调节SNC-80的亲和力和/或功效的能力。综合起来,这些组合的实验和计算研究为变构调节剂对阿片样物质受体结合和信号传导的调节提供了第一个原子级的见解。

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