Cholesterol regulates micro-opioid receptor-induced beta-arrestin 2 translocation to membrane lipid rafts

Yu Qiu1, Yan Wang, Ping-Yee Law

  • 1Department of Pharmacology, University of Minnesota, Minnesota 55455-0217, USA.

Molecular Pharmacology
|April 27, 2011
PubMed

Insights

Cholesterol levels significantly impact the μ-opioid receptor (OPRM1). Modulating cholesterol affects OPRM1 internalization, β-arrestin recruitment, and downstream signaling pathways.

Area of Science:

  • Cell Biology
  • Pharmacology
  • Neuroscience

Background:

  • The μ-opioid receptor (OPRM1) is primarily located in lipid rafts but internalizes via clathrin-dependent routes.
  • Previous work showed cholesterol depletion disrupts OPRM1 internalization and signaling.

Purpose of the Study:

  • To investigate the role of cellular cholesterol levels in OPRM1 trafficking and signaling.
  • To determine how cholesterol modulates OPRM1's interaction with β-arrestins.

Main Methods:

  • Cells were treated with cholesterol-depleting agents or excess cholesterol.
  • Agonist-induced OPRM1 internalization, desensitization, phosphorylation, and β-arrestin translocation were measured.
  • OptiPrep gradient ultracentrifugation was used to separate lipid rafts.

Main Results:

  • Reducing cholesterol decreased OPRM1 internalization and β-arrestin translocation.
  • Excess cholesterol increased OPRM1 internalization and desensitization, retaining receptors in lipid rafts.
  • Cholesterol modulated β-arrestin recruitment to lipid rafts upon agonist activation.
  • Excess cholesterol enhanced morphine-induced ERK activation.

Conclusions:

  • Cholesterol influences OPRM1 localization within lipid rafts.
  • Cholesterol enhances β-arrestin recruitment, affecting OPRM1 trafficking and signaling.
  • Cellular cholesterol is a key regulator of OPRM1 function.

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