Structural pharmacology and therapeutic potential of 5-methoxytryptamines.
Audrey L Warren, David Lankri, Michael J Cunningham, Inis C Serrano, Lyonna F Parise, Andrew C Kruegel, Priscilla Duggan, Gregory Zilberg, Michael J Capper, Václav Havel, Scott J Russo, Dalibor Sames, Daniel Wacker
Nature June 1, 2024 DOI: 10.1038/s41586-024-07403-2 via PubMed
Summary
AI-generated from the abstractPsychedelic substances like LSD and psilocybin show potential for treating neuropsychiatric disorders, primarily acting through the serotonin 5-HT2A receptor. However, 5-HT1A also contributes to the effects of tryptamine hallucinogens, especially 5-MeO-DMT from Colorado River toad toxin. Using cryo-EM structures, medicinal chemistry, and mouse behavior, researchers mapped how 5-MeO-DMT engages 5-HT1A. They characterized molecular determinants of signaling potency, efficacy, and selectivity at both 5-HT1A and 5-HT2A. A 5-HT1A-selective analogue of 5-MeO-DMT lacked hallucinogenic effects but retained anxiolytic-like and antidepressant-like activity in socially defeated animals, uncovering molecular aspects that may aid developing new neuropsychiatric medications.
Study at a glance
| Characteristics | Experimental study with structural biology, medicinal chemistry, and animal behavior Peer reviewed |
|---|---|
| Population | Mice (socially defeated animals) |
| Interventions | 5-MeO-DMT LSD 5-HT1A-selective 5-MeO-DMT analogue |
| Keywords | Mental health Neuroscience Drug development Psychopharmacology Medicinal chemistry |
| Citations | 74 |
| Key finding | A 5-HT1A-selective analogue of 5-MeO-DMT lacks hallucinogenic-like effects but retains anxiolytic-like and antidepressant-like activity in socially defeated mice. |
Abstract
Psychedelic substances such as lysergic acid diethylamide (LSD) and psilocybin show potential for the treatment of various neuropsychiatric disorders1-3. These compounds are thought to mediate their hallucinogenic and therapeutic effects through the serotonin (5-hydroxytryptamine (5-HT)) receptor 5-HT2A (ref. 4). However, 5-HT1A also plays a part in the behavioural effects of tryptamine hallucinogens5, particularly 5-methoxy-N,N-dimethyltryptamine (5-MeO-DMT), a psychedelic found in the toxin of Colorado River toads6. Although 5-HT1A is a validated therapeutic target7,8, little is known about how psychedelics engage 5-HT1A and which effects are mediated by this receptor. Here we map the molecular underpinnings of 5-MeO-DMT pharmacology through five cryogenic electron microscopy (cryo-EM) structures of 5-HT1A, systematic medicinal chemistry, receptor mutagenesis and mouse behaviour. Structure-activity relationship analyses of 5-methoxytryptamines at both 5-HT1A and 5-HT2A enable the characterization of molecular determinants of 5-HT1A signalling potency, efficacy and selectivity. Moreover, we contrast the structural interactions and in vitro pharmacology of 5-MeO-DMT and analogues to the pan-serotonergic agonist LSD and clinically used 5-HT1A agonists. We show that a 5-HT1A-selective 5-MeO-DMT analogue is devoid of hallucinogenic-like effects while retaining anxiolytic-like and antidepressant-like activity in socially defeated animals. Our studies uncover molecular aspects of 5-HT1A-targeted psychedelics and therapeutics, which may facilitate the future development of new medications for neuropsychiatric disorders.