EMD-42245

Single-particle
3.31 Å
EMD-42245 Deposition: 06/10/2023
Map released: 01/05/2024
Last modified: 30/10/2024
Overview 3D View Sample Experiment Validation Volume Browser Additional data Links
Overview 3D View Sample Experiment Validation Volume Browser Additional data Links

EMD-42245

Serotonin 1E receptor (5-HT1eR)-Gi1 Complex bound with Setiptiline

EMD-42245

Single-particle
3.31 Å
EMD-42245 Deposition: 06/10/2023
Map released: 01/05/2024
Last modified: 30/10/2024
Overview 3D View Sample Experiment Validation Volume Browser Additional data Links
Sample Organism: Homo sapiens, Mus musculus
Sample: Quaternary complex of serotonin receptor 5-HT1eR with the Gi1 heterotrimer
Fitted models: 8uh3 (Avg. Q-score: 0.477)

Deposition Authors: Wacker D , Parpounas AK , Warren AL , Zilberg G
Structural insights into the unexpected agonism of tetracyclic antidepressants at serotonin receptors 5-HT 1e R and 5-HT 1F R.
Zilberg G , Parpounas AK , Warren AL , Fiorillo B , Provasi D , Filizola M , Wacker D
(2024) Sci Adv , 10 , eadk4855 - eadk4855
PUBMED: 38630816
DOI: doi:10.1126/sciadv.adk4855
ISSN: 2375-2548
Abstract:
Serotonin [5-hydroxytryptamine (5-HT)] acts via 13 different receptors in humans. Of these receptor subtypes, all but 5-HT1eR have confirmed roles in native tissue and are validated drug targets. Despite 5-HT1eR's therapeutic potential and plausible druggability, the mechanisms of its activation remain elusive. To illuminate 5-HT1eR's pharmacology in relation to the highly homologous 5-HT1FR, we screened a library of aminergic receptor ligands at both receptors and observe 5-HT1eR/5-HT1FR 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-HT1eR 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-HT1eR and 5-HT1FR contribute to the agonist activity of these antidepressants.