Cargando…

Structure–Activity Assessment and In-Depth Analysis of Biased Agonism in a Set of Phenylalkylamine 5-HT(2A) Receptor Agonists

[Image: see text] Serotonergic psychedelics are described to have activation of the serotonin 2A receptor (5-HT(2A)) as their main pharmacological action. Despite their relevance, the molecular mechanisms underlying the psychedelic effects induced by certain 5-HT(2A) agonists remain elusive. One of...

Descripción completa

Detalles Bibliográficos
Autores principales: Pottie, Eline, Poulie, Christian B. M., Simon, Icaro A., Harpsøe, Kasper, D’Andrea, Laura, Komarov, Igor V., Gloriam, David E., Jensen, Anders A., Kristensen, Jesper L., Stove, Christophe P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2023
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10401645/
https://www.ncbi.nlm.nih.gov/pubmed/37474114
http://dx.doi.org/10.1021/acschemneuro.3c00267
_version_ 1785084710555222016
author Pottie, Eline
Poulie, Christian B. M.
Simon, Icaro A.
Harpsøe, Kasper
D’Andrea, Laura
Komarov, Igor V.
Gloriam, David E.
Jensen, Anders A.
Kristensen, Jesper L.
Stove, Christophe P.
author_facet Pottie, Eline
Poulie, Christian B. M.
Simon, Icaro A.
Harpsøe, Kasper
D’Andrea, Laura
Komarov, Igor V.
Gloriam, David E.
Jensen, Anders A.
Kristensen, Jesper L.
Stove, Christophe P.
author_sort Pottie, Eline
collection PubMed
description [Image: see text] Serotonergic psychedelics are described to have activation of the serotonin 2A receptor (5-HT(2A)) as their main pharmacological action. Despite their relevance, the molecular mechanisms underlying the psychedelic effects induced by certain 5-HT(2A) agonists remain elusive. One of the proposed hypotheses is the occurrence of biased agonism, defined as the preferential activation of certain signaling pathways over others. This study comparatively monitored the efficiency of a diverse panel of 4-position-substituted (and N-benzyl-derived) phenylalkylamines to induce recruitment of β-arrestin2 (βarr2) or miniGα(q) to the 5-HT(2A), allowing us to assess structure–activity relationships and biased agonism. All test compounds exhibited agonist properties with a relatively large range of both EC(50) and E(max) values. Interestingly, the lipophilicity of the 2C-X phenethylamines was correlated with their efficacy in both assays but yielded a stronger correlation in the miniGα(q)- than in the βarr2-assay. Molecular docking suggested that accommodation of the 4-substituent of the 2C-X analogues in a hydrophobic pocket between transmembrane helices 4 and 5 of 5-HT(2A) may contribute to this differential effect. Aside from previously used standard conditions (lysergic acid diethylamide (LSD) as a reference agonist and a 2 h activation profile to assess a compound’s activity), serotonin was included as a second reference agonist, and the compounds’ activities were also assessed using the first 30 min of the activation profile. Under all assessed circumstances, the qualitative structure–activity relationships remained unchanged. Furthermore, the use of two reference agonists allowed for the estimation of both “benchmark bias” (relative to LSD) and “physiology bias” (relative to serotonin).
format Online
Article
Text
id pubmed-10401645
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher American Chemical Society
record_format MEDLINE/PubMed
spelling pubmed-104016452023-08-05 Structure–Activity Assessment and In-Depth Analysis of Biased Agonism in a Set of Phenylalkylamine 5-HT(2A) Receptor Agonists Pottie, Eline Poulie, Christian B. M. Simon, Icaro A. Harpsøe, Kasper D’Andrea, Laura Komarov, Igor V. Gloriam, David E. Jensen, Anders A. Kristensen, Jesper L. Stove, Christophe P. ACS Chem Neurosci [Image: see text] Serotonergic psychedelics are described to have activation of the serotonin 2A receptor (5-HT(2A)) as their main pharmacological action. Despite their relevance, the molecular mechanisms underlying the psychedelic effects induced by certain 5-HT(2A) agonists remain elusive. One of the proposed hypotheses is the occurrence of biased agonism, defined as the preferential activation of certain signaling pathways over others. This study comparatively monitored the efficiency of a diverse panel of 4-position-substituted (and N-benzyl-derived) phenylalkylamines to induce recruitment of β-arrestin2 (βarr2) or miniGα(q) to the 5-HT(2A), allowing us to assess structure–activity relationships and biased agonism. All test compounds exhibited agonist properties with a relatively large range of both EC(50) and E(max) values. Interestingly, the lipophilicity of the 2C-X phenethylamines was correlated with their efficacy in both assays but yielded a stronger correlation in the miniGα(q)- than in the βarr2-assay. Molecular docking suggested that accommodation of the 4-substituent of the 2C-X analogues in a hydrophobic pocket between transmembrane helices 4 and 5 of 5-HT(2A) may contribute to this differential effect. Aside from previously used standard conditions (lysergic acid diethylamide (LSD) as a reference agonist and a 2 h activation profile to assess a compound’s activity), serotonin was included as a second reference agonist, and the compounds’ activities were also assessed using the first 30 min of the activation profile. Under all assessed circumstances, the qualitative structure–activity relationships remained unchanged. Furthermore, the use of two reference agonists allowed for the estimation of both “benchmark bias” (relative to LSD) and “physiology bias” (relative to serotonin). American Chemical Society 2023-07-20 /pmc/articles/PMC10401645/ /pubmed/37474114 http://dx.doi.org/10.1021/acschemneuro.3c00267 Text en © 2023 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by-nc-nd/4.0/Permits non-commercial access and re-use, provided that author attribution and integrity are maintained; but does not permit creation of adaptations or other derivative works (https://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Pottie, Eline
Poulie, Christian B. M.
Simon, Icaro A.
Harpsøe, Kasper
D’Andrea, Laura
Komarov, Igor V.
Gloriam, David E.
Jensen, Anders A.
Kristensen, Jesper L.
Stove, Christophe P.
Structure–Activity Assessment and In-Depth Analysis of Biased Agonism in a Set of Phenylalkylamine 5-HT(2A) Receptor Agonists
title Structure–Activity Assessment and In-Depth Analysis of Biased Agonism in a Set of Phenylalkylamine 5-HT(2A) Receptor Agonists
title_full Structure–Activity Assessment and In-Depth Analysis of Biased Agonism in a Set of Phenylalkylamine 5-HT(2A) Receptor Agonists
title_fullStr Structure–Activity Assessment and In-Depth Analysis of Biased Agonism in a Set of Phenylalkylamine 5-HT(2A) Receptor Agonists
title_full_unstemmed Structure–Activity Assessment and In-Depth Analysis of Biased Agonism in a Set of Phenylalkylamine 5-HT(2A) Receptor Agonists
title_short Structure–Activity Assessment and In-Depth Analysis of Biased Agonism in a Set of Phenylalkylamine 5-HT(2A) Receptor Agonists
title_sort structure–activity assessment and in-depth analysis of biased agonism in a set of phenylalkylamine 5-ht(2a) receptor agonists
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10401645/
https://www.ncbi.nlm.nih.gov/pubmed/37474114
http://dx.doi.org/10.1021/acschemneuro.3c00267
work_keys_str_mv AT pottieeline structureactivityassessmentandindepthanalysisofbiasedagonisminasetofphenylalkylamine5ht2areceptoragonists
AT pouliechristianbm structureactivityassessmentandindepthanalysisofbiasedagonisminasetofphenylalkylamine5ht2areceptoragonists
AT simonicaroa structureactivityassessmentandindepthanalysisofbiasedagonisminasetofphenylalkylamine5ht2areceptoragonists
AT harpsøekasper structureactivityassessmentandindepthanalysisofbiasedagonisminasetofphenylalkylamine5ht2areceptoragonists
AT dandrealaura structureactivityassessmentandindepthanalysisofbiasedagonisminasetofphenylalkylamine5ht2areceptoragonists
AT komarovigorv structureactivityassessmentandindepthanalysisofbiasedagonisminasetofphenylalkylamine5ht2areceptoragonists
AT gloriamdavide structureactivityassessmentandindepthanalysisofbiasedagonisminasetofphenylalkylamine5ht2areceptoragonists
AT jensenandersa structureactivityassessmentandindepthanalysisofbiasedagonisminasetofphenylalkylamine5ht2areceptoragonists
AT kristensenjesperl structureactivityassessmentandindepthanalysisofbiasedagonisminasetofphenylalkylamine5ht2areceptoragonists
AT stovechristophep structureactivityassessmentandindepthanalysisofbiasedagonisminasetofphenylalkylamine5ht2areceptoragonists