Cargando…

A Structure-Activity Relationship Comparison of Imidazodiazepines Binding at Kappa, Mu, and Delta Opioid Receptors and the GABA(A) Receptor

Analgesic and anti-inflammatory properties mediated by the κ opioid receptor (KOR) have been reported for oxadiazole imidazodiazepines. Affinities determined by radioligand competition assays of more than seventy imidazodiazepines using cell homogenates from HEK293 cells that overexpress KOR, µ opio...

Descripción completa

Detalles Bibliográficos
Autores principales: Li, Guanguan, Nieman, Amanda N., Mian, Md Yeunus, Zahn, Nicolas M., Mikulsky, Brandon N., Poe, Michael M., Methuku, Kashi R., Liu, Yongfeng, Cook, James M., Stafford, Douglas C., Arnold, Leggy A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7503500/
https://www.ncbi.nlm.nih.gov/pubmed/32854311
http://dx.doi.org/10.3390/molecules25173864
_version_ 1783584408214700032
author Li, Guanguan
Nieman, Amanda N.
Mian, Md Yeunus
Zahn, Nicolas M.
Mikulsky, Brandon N.
Poe, Michael M.
Methuku, Kashi R.
Liu, Yongfeng
Cook, James M.
Stafford, Douglas C.
Arnold, Leggy A.
author_facet Li, Guanguan
Nieman, Amanda N.
Mian, Md Yeunus
Zahn, Nicolas M.
Mikulsky, Brandon N.
Poe, Michael M.
Methuku, Kashi R.
Liu, Yongfeng
Cook, James M.
Stafford, Douglas C.
Arnold, Leggy A.
author_sort Li, Guanguan
collection PubMed
description Analgesic and anti-inflammatory properties mediated by the κ opioid receptor (KOR) have been reported for oxadiazole imidazodiazepines. Affinities determined by radioligand competition assays of more than seventy imidazodiazepines using cell homogenates from HEK293 cells that overexpress KOR, µ opioid receptor (MOR), and δ opioid receptor (DOR) are presented. Affinities to synaptic, benzodiazepine-sensitive receptors (BZR) were determined with rat brain extract. The highest affinity for KOR was recorded for GL-I-30 (Ki of 27 nM) and G-protein recruitment was observed with an EC(50) of 32 nM. Affinities for MOR and DOR were weak for all compounds. Ester and amide imidazodiazepines were among the most active KOR ligands but also competed with (3)H-flunitrazepam for brain extract binding, which is mediated predominately by gamma aminobutyric acid type A receptors (GABA(A)R) of the α(1-3)β(2-3)γ(1-2) subtypes. Imidazodiazepines with carboxylic acid and primary amide groups did not bind KOR but interacted strongly with GABA(A)Rs. Pyridine substitution reduced KOR affinity. Oxadiazole imidazodiazepines exhibited good KOR binding and interacted weakly with BZR, whereas oxazole imidazodiazepines were more selective towards BZR. Compounds that lack the imidazole moiety, the pendent phenyl, or pyridine substitutions exhibited insignificant KOR affinities. It can be concluded that a subset of imidazodiazepines represents novel KOR ligands with high selectivity among opioid receptors.
format Online
Article
Text
id pubmed-7503500
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-75035002020-09-23 A Structure-Activity Relationship Comparison of Imidazodiazepines Binding at Kappa, Mu, and Delta Opioid Receptors and the GABA(A) Receptor Li, Guanguan Nieman, Amanda N. Mian, Md Yeunus Zahn, Nicolas M. Mikulsky, Brandon N. Poe, Michael M. Methuku, Kashi R. Liu, Yongfeng Cook, James M. Stafford, Douglas C. Arnold, Leggy A. Molecules Article Analgesic and anti-inflammatory properties mediated by the κ opioid receptor (KOR) have been reported for oxadiazole imidazodiazepines. Affinities determined by radioligand competition assays of more than seventy imidazodiazepines using cell homogenates from HEK293 cells that overexpress KOR, µ opioid receptor (MOR), and δ opioid receptor (DOR) are presented. Affinities to synaptic, benzodiazepine-sensitive receptors (BZR) were determined with rat brain extract. The highest affinity for KOR was recorded for GL-I-30 (Ki of 27 nM) and G-protein recruitment was observed with an EC(50) of 32 nM. Affinities for MOR and DOR were weak for all compounds. Ester and amide imidazodiazepines were among the most active KOR ligands but also competed with (3)H-flunitrazepam for brain extract binding, which is mediated predominately by gamma aminobutyric acid type A receptors (GABA(A)R) of the α(1-3)β(2-3)γ(1-2) subtypes. Imidazodiazepines with carboxylic acid and primary amide groups did not bind KOR but interacted strongly with GABA(A)Rs. Pyridine substitution reduced KOR affinity. Oxadiazole imidazodiazepines exhibited good KOR binding and interacted weakly with BZR, whereas oxazole imidazodiazepines were more selective towards BZR. Compounds that lack the imidazole moiety, the pendent phenyl, or pyridine substitutions exhibited insignificant KOR affinities. It can be concluded that a subset of imidazodiazepines represents novel KOR ligands with high selectivity among opioid receptors. MDPI 2020-08-25 /pmc/articles/PMC7503500/ /pubmed/32854311 http://dx.doi.org/10.3390/molecules25173864 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Li, Guanguan
Nieman, Amanda N.
Mian, Md Yeunus
Zahn, Nicolas M.
Mikulsky, Brandon N.
Poe, Michael M.
Methuku, Kashi R.
Liu, Yongfeng
Cook, James M.
Stafford, Douglas C.
Arnold, Leggy A.
A Structure-Activity Relationship Comparison of Imidazodiazepines Binding at Kappa, Mu, and Delta Opioid Receptors and the GABA(A) Receptor
title A Structure-Activity Relationship Comparison of Imidazodiazepines Binding at Kappa, Mu, and Delta Opioid Receptors and the GABA(A) Receptor
title_full A Structure-Activity Relationship Comparison of Imidazodiazepines Binding at Kappa, Mu, and Delta Opioid Receptors and the GABA(A) Receptor
title_fullStr A Structure-Activity Relationship Comparison of Imidazodiazepines Binding at Kappa, Mu, and Delta Opioid Receptors and the GABA(A) Receptor
title_full_unstemmed A Structure-Activity Relationship Comparison of Imidazodiazepines Binding at Kappa, Mu, and Delta Opioid Receptors and the GABA(A) Receptor
title_short A Structure-Activity Relationship Comparison of Imidazodiazepines Binding at Kappa, Mu, and Delta Opioid Receptors and the GABA(A) Receptor
title_sort structure-activity relationship comparison of imidazodiazepines binding at kappa, mu, and delta opioid receptors and the gaba(a) receptor
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7503500/
https://www.ncbi.nlm.nih.gov/pubmed/32854311
http://dx.doi.org/10.3390/molecules25173864
work_keys_str_mv AT liguanguan astructureactivityrelationshipcomparisonofimidazodiazepinesbindingatkappamuanddeltaopioidreceptorsandthegabaareceptor
AT niemanamandan astructureactivityrelationshipcomparisonofimidazodiazepinesbindingatkappamuanddeltaopioidreceptorsandthegabaareceptor
AT mianmdyeunus astructureactivityrelationshipcomparisonofimidazodiazepinesbindingatkappamuanddeltaopioidreceptorsandthegabaareceptor
AT zahnnicolasm astructureactivityrelationshipcomparisonofimidazodiazepinesbindingatkappamuanddeltaopioidreceptorsandthegabaareceptor
AT mikulskybrandonn astructureactivityrelationshipcomparisonofimidazodiazepinesbindingatkappamuanddeltaopioidreceptorsandthegabaareceptor
AT poemichaelm astructureactivityrelationshipcomparisonofimidazodiazepinesbindingatkappamuanddeltaopioidreceptorsandthegabaareceptor
AT methukukashir astructureactivityrelationshipcomparisonofimidazodiazepinesbindingatkappamuanddeltaopioidreceptorsandthegabaareceptor
AT liuyongfeng astructureactivityrelationshipcomparisonofimidazodiazepinesbindingatkappamuanddeltaopioidreceptorsandthegabaareceptor
AT cookjamesm astructureactivityrelationshipcomparisonofimidazodiazepinesbindingatkappamuanddeltaopioidreceptorsandthegabaareceptor
AT stafforddouglasc astructureactivityrelationshipcomparisonofimidazodiazepinesbindingatkappamuanddeltaopioidreceptorsandthegabaareceptor
AT arnoldleggya astructureactivityrelationshipcomparisonofimidazodiazepinesbindingatkappamuanddeltaopioidreceptorsandthegabaareceptor
AT liguanguan structureactivityrelationshipcomparisonofimidazodiazepinesbindingatkappamuanddeltaopioidreceptorsandthegabaareceptor
AT niemanamandan structureactivityrelationshipcomparisonofimidazodiazepinesbindingatkappamuanddeltaopioidreceptorsandthegabaareceptor
AT mianmdyeunus structureactivityrelationshipcomparisonofimidazodiazepinesbindingatkappamuanddeltaopioidreceptorsandthegabaareceptor
AT zahnnicolasm structureactivityrelationshipcomparisonofimidazodiazepinesbindingatkappamuanddeltaopioidreceptorsandthegabaareceptor
AT mikulskybrandonn structureactivityrelationshipcomparisonofimidazodiazepinesbindingatkappamuanddeltaopioidreceptorsandthegabaareceptor
AT poemichaelm structureactivityrelationshipcomparisonofimidazodiazepinesbindingatkappamuanddeltaopioidreceptorsandthegabaareceptor
AT methukukashir structureactivityrelationshipcomparisonofimidazodiazepinesbindingatkappamuanddeltaopioidreceptorsandthegabaareceptor
AT liuyongfeng structureactivityrelationshipcomparisonofimidazodiazepinesbindingatkappamuanddeltaopioidreceptorsandthegabaareceptor
AT cookjamesm structureactivityrelationshipcomparisonofimidazodiazepinesbindingatkappamuanddeltaopioidreceptorsandthegabaareceptor
AT stafforddouglasc structureactivityrelationshipcomparisonofimidazodiazepinesbindingatkappamuanddeltaopioidreceptorsandthegabaareceptor
AT arnoldleggya structureactivityrelationshipcomparisonofimidazodiazepinesbindingatkappamuanddeltaopioidreceptorsandthegabaareceptor