Structural insights into the unexpected agonism of tetracyclic antidepressants at serotonin receptors 5-HT<sub>1e</sub>R and 5-HT<sub>1F</sub>R.

Zilberg, Gregory; Parpounas, Alexandra K; Warren, Audrey L; Fiorillo, Bianca; Provasi, Davide; Filizola, Marta; Wacker, Daniel · Sci Adv · 2024

basic_science · Level V

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Abstract

Serotonin [5-hydroxytryptamine (5-HT)] acts via 13 different receptors in humans. Of these receptor subtypes, all but 5-HT<sub>1e</sub>R have confirmed roles in native tissue and are validated drug targets. Despite 5-HT<sub>1e</sub>R's therapeutic potential and plausible druggability, the mechanisms of its activation remain elusive. To illuminate 5-HT<sub>1e</sub>R's pharmacology in relation to the highly homologous 5-HT<sub>1F</sub>R, we screened a library of aminergic receptor ligands at both receptors and observe 5-HT<sub>1e</sub>R/5-HT<sub>1F</sub>R agonism by multicyclic drugs described as pan-antagonists at 5-HT receptors. Potent agonism by tetracyclic antidepressants mianserin, setiptiline, and mirtazapine suggests a mechanism for their clinically observed antimigraine properties. Using cryo-EM and mutagenesis studies, we uncover and characterize unique agonist-like binding poses of mianserin and setiptiline at 5-HT<sub>1e</sub>R distinct from similar drug scaffolds in inactive-state 5-HTR structures. Together with computational studies, our data suggest that these binding poses alongside receptor-specific allosteric coupling in 5-HT<sub>1e</sub>R and 5-HT<sub>1F</sub>R contribute to the agonist activity of these antidepressants.

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