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Methylindoles and Methoxyindoles are Agonists and Antagonists of Human Aryl Hydrocarbon Receptor.

Citation
Štěpánková, M., et al. “Methylindoles And Methoxyindoles Are Agonists And Antagonists Of Human Aryl Hydrocarbon Receptor.”. Molecular Pharmacology, pp. 631-644.
Center Albert Einstein College of Medicine
Author Martina Štěpánková, Iveta Bartoňková, Eva Jiskrová, Radim Vrzal, Sridhar Mani, Sandhya Kortagere, Zdeněk Dvořák
Abstract

Novel methylindoles were identified as endobiotic and xenobiotic ligands of the human aryl hydrocarbon receptor (AhR). We examined the effects of 22 methylated and methoxylated indoles on the transcriptional activity of AhRs. Employing reporter gene assays in AZ-AHR transgenic cells, we determined full agonist, partial agonist, or antagonist activities of tested compounds, having substantially variable EC, IC, and relative efficacies. The most effective agonists ( relative to 5 nM dioxin) of the AhR were 4-Me-indole (134%), 6-Me-indole (91%), and 7-MeO-indole (80%), respectively. The most effective antagonists of the AhR included 3-Me-indole (IC; 19 M), 2,3-diMe-indole (IC; 11 M), and 2,3,7-triMe-indole (IC; 12 M). Reverse transcription polymerase chain reaction analyses of CYP1A1 mRNA in LS180 cells confirmed the data from gene reporter assays. The compound leads, 4-Me-indole and 7-MeO-indole, induced substantial nuclear translocation of the AhR and enriched binding of the AhR to the CYP1A1 promoter, as observed using fluorescent immunohistochemistry and chromatin immunoprecipitation assays, respectively. Molecular modeling and docking studies suggest the agonists and antagonists likely share the same binding pocket but have unique binding modes that code for their affinity. Binding pocket analysis further revealed that 4-methylindole and 7-methoxyindole can simultaneously bind to the pocket and produce synergistic interactions. Together, these data show a dependence on subtle and specific chemical indole structures as AhR modulators and furthermore underscore the importance of complete evaluation of indole compounds as nuclear receptor ligands.

Year of Publication
2018
Journal
Molecular pharmacology
Volume
93
Issue
6
Number of Pages
631-644
Date Published
12/2018
ISSN Number
1521-0111
DOI
10.1124/mol.118.112151
Alternate Journal
Mol. Pharmacol.
PMID
29626056
PMCID
PMC5941192
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