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Computational insights into the G-protein-biased activation and inactivation mechanisms of the μ opioid receptor

机译:关于μ阿片受体的G蛋白偏向激活和失活机制的计算见解

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摘要

The μ opioid receptor (OR), a member of the class A subfamily of G-protein coupled receptors (GPCRs), is a major target for the treatment of pain. G-protein biased μ-OR agonists promise to be developed as analgesics. Thus, TRV130, the first representative μ-OR ligand with G-protein bias, has entered into phase III clinical trials. To identify the detailed G-protein-biased activation and inactivation mechanisms of the μ-OR, we constructed five μ-OR systems that were in complexes with the G-protein-biased agonists TRV130 and BU72, the antagonists β-FNA and naltrexone, as well as the free receptor. We performed a series of conventional molecular dynamics simulations and analyses of G-protein-biased activation and inactivation mechanisms of μ-OR. Our results, together with previously reported mutation results, revealed the operating mode of the activation switch composed of residues W6.48 and Y7.43 (Ballesteros/Weinstein numbering), the activity of which was responsible for down- and up-regulation, respectively, of the β-arrestin signaling, which in turn affected G-protein-biased activation of μ-OR. TRV130 was found to stabilize W6.48 by interacting with Y7.43. In addition, we obtained useful information regarding μ-OR-biased activation, such as strong stabilization of W7.35 through a hydrophobic ring interaction in the TRV130 system. These findings may facilitate understanding of μ-OR biased activation and the design of new biased ligands for GPCRs.
机译:μ阿片受体(OR)是G蛋白偶联受体(GPCR)的A类亚家族的成员,是治疗疼痛的主要目标。偏向G蛋白的μ-OR激动剂有望被开发为止痛药。因此,TRV130是第一个具有G蛋白偏倚的代表性μ-OR配体,现已进入III期临床试验。为了确定μ-OR的详细的G蛋白偏向的激活和失活机制,我们构建了五个与G蛋白偏向激动剂TRV130和BU72,拮抗剂β-FNA和纳曲酮复合的μ-OR系统,以及自由受体。我们进行了一系列常规的分子动力学模拟,并对G蛋白偏向μ-OR的激活和失活机制进行了分析。我们的结果以及先前报道的突变结果揭示了由残基W 6.48 和Y 7.43 (Ballesteros / Weinstein编号)组成的激活开关的操作模式,它分别负责β-arrestin信号的下调和上调,进而影响G蛋白偏向的μ-OR激活。发现TRV130通过与Y 7.43 相互作用来稳定W 6.48 。此外,我们获得了有关μ-OR偏置活化的有用信息,例如通过TRV130系统中的疏水环相互作用对W 7.35 的强稳定作用。这些发现可能有助于理解μ-OR偏向激活和用于GPCR的新偏向配体的设计。

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