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mu-Opioid receptor activates signaling pathways implicated in cell survival and translational control

R D Polakiewicz1, S M Schieferl, A C Gingras

  • 1Cell Signaling Laboratory, New England Biolabs, Beverly, Massachusetts 01915, USA.

Insights

Mu-opioid agonists activate phosphoinositide 3-kinase (PI3K) signaling, influencing neuronal survival pathways. This research details how mu-opioid receptor stimulation impacts Akt, p70 S6 kinase, and 4E-BP1, affecting neuronal processes.

Area of Science:

  • Neuropharmacology
  • Molecular Biology
  • Cell Signaling

Background:

  • The mu-opioid receptor is crucial for morphine's effects, yet its intracellular signaling is poorly understood.
  • Understanding these pathways is key to developing targeted therapies for pain and addiction.

Purpose of the Study:

  • To elucidate the intracellular signaling mechanisms activated by mu-opioid receptor agonists.
  • To identify specific downstream effectors involved in the phosphoinositide 3-kinase (PI3K) cascade.

Main Methods:

  • Utilized a cell line expressing the mu-opioid receptor.
  • Administered the specific agonist [D-Ala2,N-Me-Phe4,Gly5-ol]enkephalin (DAMGO).
  • Employed PI3K inhibitors (wortmannin, LY294002) and rapamycin to block signaling pathways.

Main Results:

  • DAMGO stimulated Akt, p70 S6 kinase, and 4E-BP1/2 phosphorylation via a PI3K-dependent pathway.
  • Akt phosphorylation at serine 473 and p70 S6 kinase phosphorylation were inhibited by PI3K inhibitors.
  • DAMGO-induced 4E-BP1 phosphorylation impaired its binding to eIF-4E, affecting translation.

Conclusions:

  • Mu-opioid receptor activation triggers PI3K-dependent signaling cascades.
  • These pathways are linked to neuronal survival and translational control.
  • Findings provide insights into mu-opioid receptor's role in neuronal development and synaptic plasticity.

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