A Blocking Group Scan Using a Spherical Organometallic Complex Identifies an Unprecedented Binding Mode with Potent Activity In Vitro and In Vivo for the Opioid Peptide Dermorphin

Chemistry. 2016 Oct 4;22(41):14605-10. doi: 10.1002/chem.201602432. Epub 2016 Aug 24.

Abstract

Herein, the selective enforcement of one particular receptor-ligand interaction between specific domains of the μ-selective opioid peptide dermorphin and the μ opioid receptor is presented. For this, a blocking group scan is described which exploits the steric demand of a bis(quinolinylmethyl)amine rhenium(I) tricarbonyl complex conjugated to a number of different, strategically chosen positions of dermorphin. The prepared peptide conjugates lead to the discovery of two different binding modes: An expected N-terminal binding mode corresponds to the established view of opioid peptide binding, whereas an unexpected C-terminal binding mode is newly discovered. Surprisingly, both binding modes provide high affinity and agonistic activity at the μ opioid receptor in vitro. Furthermore, the unprecedented C-terminal binding mode shows potent dose-dependent antinociception in vivo. Finally, in silico docking studies support receptor activation by both dermorphin binding modes and suggest a biological relevance for dermorphin itself. Relevant ligand-protein interactions are similar for both binding modes, which is in line with previous protein mutation studies.

Keywords: bioorganometallic chemistry; metal-peptide conjugates; opioid receptors; peptides; structural biology.

MeSH terms

  • Analgesics, Opioid / chemistry
  • Analgesics, Opioid / metabolism*
  • Analgesics, Opioid / pharmacology
  • Binding Sites
  • Binding, Competitive
  • Coordination Complexes / chemistry
  • Coordination Complexes / metabolism*
  • Coordination Complexes / pharmacology
  • HEK293 Cells
  • Humans
  • Ligands
  • Molecular Docking Simulation
  • Molecular Structure
  • Opioid Peptides / chemistry
  • Opioid Peptides / metabolism*
  • Opioid Peptides / pharmacology
  • Protein Binding
  • Radioligand Assay
  • Receptors, Opioid, mu / metabolism*
  • Rhenium / chemistry*
  • Structure-Activity Relationship

Substances

  • Analgesics, Opioid
  • Coordination Complexes
  • Ligands
  • Opioid Peptides
  • Receptors, Opioid, mu
  • dermorphin
  • Rhenium