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Published on: September 20, 2016
An opioid agonist that does not induce mu-opioid receptor--arrestin interactions or receptor internalization
C E Groer1, K Tidgewell, R A Moyer
1Department of Pharmacology, the Ohio State University College of Medicine, 333 W 10th Avenue, 5184A Graves Hall, Columbus, OH 43210, USA.
Abstract:
G protein-coupled receptor desensitization and trafficking are important regulators of opioid receptor signaling that can dictate overall drug responsiveness in vivo. Furthermore, different mu-opioid receptor (muOR) ligands can lead to varying degrees of receptor regulation, presumably because of distinct structural conformations conferred by agonist binding. For example, morphine binding produces a muOR with low affinity for beta-arrestin proteins and limited receptor internalization, whereas enkephalin analogs promote robust trafficking of both beta-arrestins and the receptors. Here, we evaluate muOR trafficking in response to activation by a novel mu-selective agonist derived from the naturally occurring plant product, salvinorin A. It is interesting that this compound, termed herkinorin, does not promote the recruitment of beta-arrestin-2 to the muOR and does not lead to receptor internalization. Moreover, whereas G protein-coupled receptor kinase overexpression can promote morphine-induced beta-arrestin interactions and muOR internalization, such manipulations do not promote herkinorin-induced trafficking. Studies in mice have shown that beta-arrestin-2 plays an important role in the development of morphine-induced tolerance, constipation, and respiratory depression. Therefore, drugs that can activate the receptor without recruiting the arrestins may be a promising step in the development of opiate analgesics that distinguish between agonist activity and receptor regulation and may ultimately lead to therapeutics designed to provide pain relief without the adverse side effects normally associated with the opiate narcotics.
Insights
A new compound, herkinorin, activates mu-opioid receptors (muOR) without triggering desensitization pathways. This suggests potential for pain relief without typical opiate side effects.
Area of Science:
- Pharmacology
- Neuroscience
- Molecular Biology
Background:
- G protein-coupled receptor (GPCR) desensitization and trafficking regulate opioid receptor signaling and drug response.
- Different mu-opioid receptor (muOR) ligands induce varying receptor regulation due to distinct conformations.
- Morphine binding causes limited muOR internalization, while enkephalins promote robust trafficking.
Purpose of the Study:
- To evaluate muOR trafficking in response to a novel mu-selective agonist, herkinorin, derived from salvinorin A.
- To investigate whether herkinorin recruits beta-arrestin proteins or induces receptor internalization.
- To determine if G protein-coupled receptor kinase (GPCRK) overexpression affects herkinorin-induced muOR trafficking.
Main Methods:
- Activation of muOR with herkinorin.
- Assessment of beta-arrestin-2 recruitment to muOR.
- Analysis of muOR internalization.
- Evaluation of GPCRK overexpression effects on herkinorin-induced trafficking.
Main Results:
- Herkinorin activates muOR without promoting beta-arrestin-2 recruitment or receptor internalization.
- GPCRK overexpression does not enhance herkinorin-induced muOR trafficking.
- Beta-arrestin-2 is crucial for morphine-induced tolerance, constipation, and respiratory depression in mice.
Conclusions:
- Herkinorin represents a distinct muOR agonist that bypasses arrestin recruitment and receptor trafficking.
- Drugs activating muOR without recruiting arrestins may offer pain relief with fewer adverse effects.
- This approach could lead to novel analgesics that separate receptor activation from regulatory pathways.
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