Phylogenetic diversity and functional efficacy of the C-terminally expressed heptapeptide unit in the opioid

E Bojnik1, E Boynik, M Corbani

  • 1Institute of Biochemistry, Biological Research Centre, Hungarian Academy of Sciences, 6726 Szeged, Temesvari krt 62, Hungary.

Neuroscience
|January 19, 2011
PubMed

Insights

Evolution has generated diverse Met-enkephalin-Arg6-Phe7 (MERF) heptapeptide variants across vertebrates. These novel opioid peptides exhibit significant mu-opioid receptor (MOP) binding and G-protein activation, expanding the natural neuropeptide library.

Area of Science:

  • Neuroscience
  • Biochemistry
  • Evolutionary Biology

Background:

  • Met-enkephalin-Arg6-Phe7 (MERF) is a potent endogenous opioid derived from proenkephalin-A (PENK).
  • PENK is the precursor for Met- and Leu-enkephalin, playing a crucial role in the endogenous opioid system.

Purpose of the Study:

  • To conduct a bioinformatic survey of PENK prepropeptides in vertebrates.
  • To identify and characterize novel heptapeptide orthologs of MERF.
  • To investigate the functional bioactivities of these novel heptapeptides.

Main Methods:

  • Bioinformatic analysis of PENK sequences from 56 vertebrate species.
  • Chemical synthesis of identified heptapeptides, MERF, and Met-enkephalin.
  • Radioligand binding competition assays using selective opioid radioligands.
  • G-protein activation assays ([35S]GTPγS) in rat brain membranes.
  • Agonist-induced internalization assays of human mu-opioid receptor (hMOP-EGFP).

Main Results:

  • Discovered sequence polymorphism in the heptapeptide region of PENK prepropeptides across vertebrates.
  • Identified four novel heptapeptide orthologs (e.g., YGGFMGY, YGGFMRY, YGGFMKF, YGGFMRI) from 15 animal species.
  • Synthesized peptides demonstrated good to modest equilibrium binding affinities, with a slight preference for mu-opioid receptors (MOP) over delta-opioid receptors (DOP).
  • All novel heptapeptides potently activated G-proteins and promoted MOP internalization.

Conclusions:

  • C-terminally processed PENK heptapeptide orthologs possess significant bioactivities.
  • These findings expand the known repertoire of endogenous opioid peptides.
  • The identified variants represent novel additions to the evolutionarily generated
  • natural combinatorial neuropeptide library.

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