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阿片受体中介定态吗啡稳定的活性构象的原子水平表征

Atomic-Level Characterization of the Methadone-Stabilized Active Conformation of -Opioid Receptor.

机构信息

Department of Pharmacological Sciences, Icahn School of Medicine at Mount Sinai, New York, New York.

Department of Pharmacological Sciences, Icahn School of Medicine at Mount Sinai, New York, New York

出版信息

Mol Pharmacol. 2020 Oct;98(4):475-486. doi: 10.1124/mol.119.119339. Epub 2020 Jul 17.

Abstract

Methadone is a synthetic opioid agonist with notoriously unique properties, such as lower abuse liability and induced relief of withdrawal symptoms and drug cravings, despite acting on the same opioid receptors triggered by classic opioids-in particular the -opioid receptor (MOR). Its distinct pharmacologic properties, which have recently been attributed to the preferential activation of -arrestin over G proteins, make methadone a standard-of-care maintenance medication for opioid addiction. Although a recent biophysical study suggests that methadone stabilizes different MOR active conformations from those stabilized by classic opioid drugs or G protein-biased agonists, how this drug modulates the conformational equilibrium of MOR and what specific active conformation of the receptor it stabilizes are unknown. Here, we report the results of submillisecond adaptive sampling molecular dynamics simulations of a predicted methadone-bound MOR complex and compare them with analogous data obtained for the classic opioid morphine and the G protein-biased ligand TRV130. The model, which is supported by existing experimental data, is analyzed using Markov state models and transfer entropy analysis to provide testable hypotheses of methadone-specific conformational dynamics and activation kinetics of MOR. SIGNIFICANCE STATEMENT: Opioid addiction has reached epidemic proportions in both industrialized and developing countries. Although methadone maintenance treatment represents an effective therapeutic approach for opioid addiction, it is not as widely used as needed. In this study, we contribute an atomic-level understanding of how methadone exerts its unique function in pursuit of more accessible treatments for opioid addiction. In particular, we present details of a methadone-specific active conformation of the -opioid receptor that has thus far eluded experimental structural characterization.

摘要

美沙酮是一种合成阿片类激动剂,具有独特的性质,例如滥用的可能性较低,并且可以缓解戒断症状和药物渴求,尽管它作用于与经典阿片类药物相同的阿片受体,特别是μ-阿片受体(MOR)。其独特的药理学特性,最近归因于β-arrestin 对 G 蛋白的优先激活,使美沙酮成为阿片类药物成瘾的标准维持药物。尽管最近的生物物理研究表明,美沙酮稳定的 MOR 活性构象与经典阿片类药物或 G 蛋白偏向激动剂稳定的构象不同,但该药物如何调节 MOR 的构象平衡以及它稳定的受体的具体活性构象尚不清楚。在这里,我们报告了预测的美沙酮结合 MOR 复合物的亚毫秒自适应采样分子动力学模拟的结果,并将其与经典阿片类药物吗啡和 G 蛋白偏向配体 TRV130 的类似数据进行了比较。该模型得到了现有实验数据的支持,使用马尔可夫状态模型和转移熵分析进行了分析,以提供关于美沙酮特异性构象动力学和 MOR 激活动力学的可测试假设。意义:阿片类药物成瘾在工业化国家和发展中国家都达到了流行的程度。尽管美沙酮维持治疗是治疗阿片类药物成瘾的有效方法,但它的使用并不像需要的那样广泛。在这项研究中,我们对美沙酮如何发挥其独特功能有了原子水平的理解,以期为阿片类药物成瘾寻求更易获得的治疗方法。特别是,我们提出了迄今为止逃避实验结构表征的μ-阿片受体的美沙酮特异性活性构象的细节。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4a78/7562981/605e459e5d62/mol.119.119339f1.jpg

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