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Published on: August 16, 2018
Activation of μ receptors by SR-17018 through a distinctive mechanism
Samuel Singleton1, Clara Dieterle1, David J Walker1
1Institute of Academic Anaesthesia, Division of Systems Medicine, School of Medicine, Ninewells Hospital, University of Dundee, Dundee, DD1 9SY, UK.
Abstract:
Agonists at μ opioid receptors relieve acute pain, however, their long-term use is limited by side effects, which may involve β-arrestin2. Agonists biased against β-arrestin2 recruitment may be advantageous. However, the classification of bias may be compromised by assays utilising overexpressed μ receptors which overestimate efficacy for G-protein activation. There is a need for re-evaluation with restricted receptor availability to determine accurate agonist efficacies. We depleted μ receptor availability in PathHunter CHO cells using the irreversible antagonist, β-funaltrexamine (β-FNA), and compared efficacies and apparent potencies of twelve agonists, including several previously reported as biased, in β-arrestin2 recruitment and cAMP assays. With full receptor availability all agonists had partial efficacy for stimulating β-arrestin2 recruitment relative to DAMGO, while only TRV130 and buprenorphine were partial agonists as inhibitors of cAMP accumulation. Limiting receptor availability by prior exposure to β-FNA (100 nM) revealed morphine, oxycodone, PZM21, herkinorin, U47700, tianeptine and U47931e are also partial agonists in the cAMP assay. The efficacies of all agonists, except SR-17018, correlated between β-arrestin2 recruitment and cAMP assays, with depleted receptor availability in the latter. Furthermore, naloxone and cyprodime exhibited non-competitive antagonism of SR-17018 in the β-arrestin2 recruitment assay. Limited antagonism by naloxone was also non-competitive in the cAMP assay, while cyprodime was competitive. Furthermore, SR-17018 only negligibly diminished β-arrestin2 recruitment stimulated by DAMGO (1 μM), whereas fentanyl, morphine and TRV130 all exhibited the anticipated competitive inhibition. The data suggest that SR-17018 achieves bias against β-arrestin2 recruitment through interactions with μ receptors outside the orthosteric agonist site. This article is part of the Special Issue on "Ligand Bias".
Insights
New research re-evaluates μ opioid receptor agonists using limited receptor availability. This method accurately classifies agonist bias, revealing novel insights into their efficacy and potential for reduced side effects in pain management.
Area of Science:
- Pharmacology
- Neuroscience
- Biochemistry
Background:
- μ opioid receptor agonists are effective for acute pain but limited by side effects, potentially mediated by β-arrestin2.
- β-arrestin2-biased agonists offer potential advantages, but their classification is challenged by assays using overexpressed receptors.
Purpose of the Study:
- To re-evaluate μ opioid receptor agonist efficacies and bias using restricted receptor availability.
- To accurately determine agonist potencies and efficacies in β-arrestin2 recruitment and cAMP assays.
Main Methods:
- Depletion of μ opioid receptor availability in PathHunter CHO cells using β-funaltrexamine (β-FNA).
- Comparison of twelve agonists' efficacies and potencies in β-arrestin2 recruitment and cAMP assays under varying receptor availability.
Main Results:
- Limiting receptor availability identified additional partial agonists in the cAMP assay, including morphine and oxycodone.
- Agonist efficacies correlated between assays when receptor availability was limited, except for SR-17018.
- SR-17018 demonstrated bias against β-arrestin2 recruitment, suggesting interaction outside the orthosteric agonist site.
Conclusions:
- Restricted receptor availability provides a more accurate method for classifying μ opioid receptor agonist bias.
- SR-17018 exhibits β-arrestin2 bias through a distinct mechanism.
- Findings contribute to the development of safer opioid analgesics with improved side effect profiles.
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