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Ligand efficacy modulates conformational dynamics of the µ-opioid receptor.

Jiawei ZhaoMatthias ElgetiEvan S O'BrienCecília P SárAmal Ei DaibaniJie HengXiaoou SunElizabeth WhiteTao CheWayne L HubbellBrian K KobilkaChunlai Chen
Published in: Nature (2024)
The µ-opioid receptor (µOR) is an important target for pain management 1 and molecular understanding of drug action on µOR will facilitate the development of better therapeutics. Here we show, using double electron-electron resonance and single-molecule fluorescence resonance energy transfer, how ligand-specific conformational changes of µOR translate into a broad range of intrinsic efficacies at the transducer level. We identify several conformations of the cytoplasmic face of the receptor that interconvert on different timescales, including a pre-activated conformation that is capable of G-protein binding, and a fully activated conformation that markedly reduces GDP affinity within the ternary complex. Interaction of β-arrestin-1 with the μOR core binding site appears less specific and occurs with much lower affinity than binding of G i .
Keyphrases
  • single molecule
  • energy transfer
  • pain management
  • chronic pain
  • molecular dynamics simulations
  • quantum dots
  • atomic force microscopy
  • living cells
  • binding protein
  • molecular dynamics
  • drug induced