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Chemistry/structural biology of psychedelic drugs and their receptor(s).

Ryan H Gumpper, David E Nichols

British journal of pharmacology October 2, 2024 DOI: 10.1111/bph.17361 via PubMed

Summary

AI-generated from the abstract

Classic serotonergic psychedelics come in three main chemical families: phenethylamines, ergolines, and tryptamines. Each family has distinct structural features that determine its psychedelic activity in humans. The 5-HT2A receptor, a G-protein coupled receptor, is the primary target for these compounds. Recent X-ray and cryoEM structures showing various ligands bound to the receptor reveal the atomic-level details of how different psychedelic molecules interact with this receptor. These structural insights help explain known pharmacological observations about how psychedelic drugs work and may guide future drug development.

Study at a glance

Characteristics Review Peer reviewed
Topics LSD Psilocybin
Keywords Psychedelic research Neuroscience Drug development Molecular biology Receptor binding
Citations 9
Key finding Three chemotypes of classic serotonergic psychedelics—phenethylamines, ergolines, and tryptamines—have distinct structural features that determine their activity at the 5-HT2A receptor, and recent structural biology studies reveal the atomic basis for their pharmacological effects.

Abstract

This brief review highlights some of the structure-activity relationships of classic serotonergic psychedelics. In particular, we discuss structural features of three chemotypes: phenethylamines, ergolines and certain tryptamines, which possess psychedelic activity in humans. Where they are known, we point out the underlying molecular mechanisms utilized by each of the three chemotypes of psychedelic molecules. With a focus on the 5-HT2A receptor subtype, a G-protein coupled receptor known to be the primary target of psychedelics, we refer to several X-ray and cryoEM structures, with a variety of ligands bound, to illustrate the underlying atomistic basis for some of the known pharmacological observations of psychedelic drug actions.

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