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Giulia Rossetti

2 papers in the library · 2 citations · publishing 2025-2026

Papers

Design, Synthesis, and In Vitro Characterization of a Tryptamine-Based Visible-Light Photoswitchable 5-HT2AR Ligand Showing Efficacy Preference for β-Arrestin over Mini-Gq.

Journal of Medicinal Chemistry June 18, 2025 Alexandra Sink, Eline Pottie, Samuel J Carter et al. 2 citations

A photoswitchable ligand for the serotonin 2A receptor (5-HT2AR) was designed to independently study G protein- and β-arrestin2-dependent signaling pathways. The cis-photoisomer binds the receptor with greater affinity than the trans-isomer, at nanomolar concentrations. In functional assays, this ligand showed a preference for recruiting β-arrestin2 over mini-Gαq relative to LSD, offering a tool to investigate β-arrestin2's role in 5-HT2AR signaling and its potential involvement in psychedelic effects.

Binding pose depth modulates photoswitchable ligands’ efficacy at the 5-HT2A receptor

Communications Chemistry February 12, 2026 Verena Weber, Giacomo Salvadori, Federico Natale et al.

The efficacy of photoswitchable ligands for the human 5-HT2A receptor depends on the vertical depth of ligand insertion into the orthosteric binding pocket, determined by the position of a methoxy substituent. Molecular dynamics simulations show that a para-methoxy ligand (compound 1) acts as a weak antagonist in its trans form because it forms hydrogen bonds with Asp231 and Thr160, anchoring it deeper and preventing engagement with activation-critical residues. A meta-methoxy ligand (compound 2) lacks these anchoring interactions, adopts a shallower pose, and maintains agonist activity in both forms. The authors propose that ligand insertion depth is a critical determinant of efficacy, offering a framework for designing light-sensitive GPCR ligands with tunable signaling.