bioRxiv · 10.1101/2023.09.11.557127
Discovery of a functionally selective serotonin 5-HT1A receptor agonist for the treatment of pain
Abstract
The G protein-coupled serotonin receptor 5-HT1AR mediates antinociception and may serve as a valuable target for the treatment of pain. Starting from a chemical library, ST171, a bitopic chemotype activating 5-HT1AR was evolved. In vitro pharmacological investigations of ST171 revealed potent and selective Gi activation (EC50 = 0.3 nM), with marginal Gs and {beta}-arrestin recruitment. Preclinical studies in mice showed that ST171 was effective in acute and chronic (inflammatory and neuropathic) pain models, without causing sedation. Comparison of cryo-EM structures of a 5-HT1AR-Gi complex bound to the functionally biased agonist ST171, with a structure bound to the functionally balanced agonist befiradol, showed that both ligands bind to the same orthosteric site, but address different exo-sites. The individual poses are associated with ligand-specific helical dispositions and rearrangements of microdomains. Complementation of these studies with molecular dynamics simulations allowed us to derive structural features associated with ST171s functional selectivity, a phenomenon that may be crucial to the discovery of more effective and safe GPCR drugs.
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Ullrich, A., Schneider, J., Braz, J. M., Neu, E., Staffen, N., Stanek, M., Blahova, J., Hove, T., Albert, T., Allikalt, A., Lober, S., Bhardwaj, K., Rodriguez-Rosado, S., Fink, E. A., Rasmussen, T., Hubner, H., Inoue, A. A., Shoichet, B. K., Basbaum, A., Bottcher, B., Weikert, D., Gmeiner, P.. 2023-09-14. Discovery of a functionally selective serotonin 5-HT1A receptor agonist for the treatment of pain. https://doi.org/10.1101/2023.09.11.557127
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