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Updated: Jun 2, 2026

Enrichment of Mammalian Tissues and Xenopus Oocytes with Cholesterol
Published on: March 25, 2020
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.
Abstract:
μ-Opioid receptor (OPRM1) is mainly localized in lipid raft microdomains but internalizes through clathrin-dependent pathways. Our previous studies demonstrated that disruption of lipid rafts by cholesterol-depletion reagent blocked the agonist-induced internalization of OPRM1 and G protein-dependent signaling. The present study demonstrated that reduction of cholesterol level decreased and culturing cells in excess cholesterol increased the agonist-induced internalization and desensitization of OPRM1, respectively. Further analyses indicated that modulation of cellular cholesterol level did not affect agonist-induced receptor phosphorylation but did affect membrane translocation of β-arrestins. The translocation of β-arrestins was blocked by cholesterol reduction, and the effect could be reversed by incubating with cholesterol. OptiPrep gradient separation of lipid rafts revealed that excess cholesterol retained more receptors in lipid raft domains and facilitated the recruitment of β-arrestins to these microdomains upon agonist activation. Moreover, excess cholesterol could evoke receptor internalization and protein kinase C-independent extracellular signal-regulated kinases activation upon morphine treatment. Therefore, these results suggest that cholesterol not only can influence OPRM1 localization in lipid rafts but also can effectively enhance the recruitment of β-arrestins and thereby affect the agonist-induced trafficking and agonist-dependent signaling of OPRM1.
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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