σ1 Receptor modulation of G-protein-coupled receptor signaling: Potentiation of opioid transduction independent from receptor binding

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Abstract

σ Ligands modulate opioid actions in vivo, with agonists diminishing morphine analgesia and antagonists enhancing the response. Using human BE(2)-C neuroblastoma cells that natively express opioid receptors and human embryonic kidney (HEK) cells transfected with a cloned μ opioid receptor, we now demonstrate a similar modulation of opioid function, as assessed by guanosine 5Y-O-(3-[35S]thio)triphosphate ([35S]GTPγS) binding, by σ1 receptors. σ Ligands do not compete opioid receptor binding. Administered alone, neither σ agonists nor antagonists significantly stimulated [35S]GTPγS binding. Yet σ receptor selective antagonists, but not agonists, shifted the EC50 of opioid-induced stimulation of [35S]GTPγS binding by 3- to 10-fold to the left. This enhanced potency was seen without a change in the efficacy of the opioid, as assessed by the maximal stimulation of [ 35S]GTPγS binding. σ1 Receptors physically associate with μ opioid receptors, as shown by coimmunoprecipitation studies in transfected HEK cells, implying a direct interaction between the proteins. Thus, σ receptors modulate opioid transduction without influencing opioid receptor binding. RNA interference knockdown of σ1 in BE(2)-C cells also potentiated μ opioid-induced stimulation of [35S] GTPγS binding. These modulatory actions are not limited to μ and δ opioid receptors. In mouse brain membrane preparations, σ1-selective antagonists also potentiated both opioid receptor and muscarinic acetylcholine receptor-mediated stimulation of [ 35S]GTPγS binding, suggesting a broader role for σ receptors in modulating G-protein-coupled receptor signaling. Copyright © 2010 The American Society for Pharmacology and Experimental Therapeutics.

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APA

Kim, F. J., Kovalyshyn, I., Burgman, M., Neilan, C., Chien, C. C., & Pasternak, G. W. (2010). σ1 Receptor modulation of G-protein-coupled receptor signaling: Potentiation of opioid transduction independent from receptor binding. Molecular Pharmacology, 77(4), 695–703. https://doi.org/10.1124/mol.109.057083

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