Correlation Engine 2.0
Clear Search sequence regions


  • arrestin 3 (1)
  • arrestins (1)
  • cellular (1)
  • human (2)
  • ligand (4)
  • morphinan (1)
  • opioid (1)
  • receptor (10)
  • sodium (2)
  • μ opioid receptor (4)
  • Sizes of these terms reflect their relevance to your search.

    The μ-opioid receptor (MOPr) is a clinically important G protein-coupled receptor that couples to Gi/o proteins and arrestins. At present, the receptor conformational changes that occur following agonist binding and activation are poorly understood. This study has employed molecular dynamics simulations to investigate the binding mode and receptor conformational changes induced by structurally similar opioid ligands of widely differing intrinsic agonist efficacy, norbuprenorphine, buprenorphine, and diprenorphine. Bioluminescence resonance energy transfer assays for Gi activation and arrestin-3 recruitment in human embryonic kidney 293 cells confirmed that norbuprenorphine is a high efficacy agonist, buprenorphine a low efficacy agonist, and diprenorphine an antagonist at the MOPr. Molecular dynamics simulations revealed that these ligands adopt distinct binding poses and engage different subsets of residues, despite sharing a common morphinan scaffold. Notably, norbuprenorphine interacted with sodium ion-coordinating residues W2936.48 and N1503.35, whilst buprenorphine and diprenorphine did not. Principal component analysis of the movements of the receptor transmembrane domains showed that the buprenorphine-bound receptor occupied a distinct set of conformations to the norbuprenorphine-bound receptor. Addition of an allosteric sodium ion caused the receptor and ligand to adopt an inactive conformation. The differences in ligand-residue interactions and receptor conformations observed here may underlie the differing efficacies for cellular signalling outputs for these ligands. Copyright © 2017 The Authors. Published by Elsevier Ltd.. All rights reserved.

    Citation

    Katy J Sutcliffe, Graeme Henderson, Eamonn Kelly, Richard B Sessions. Drug Binding Poses Relate Structure with Efficacy in the μ Opioid Receptor. Journal of molecular biology. 2017 Jun 16;429(12):1840-1851

    Expand section icon Mesh Tags

    Expand section icon Substances


    PMID: 28502792

    View Full Text