Enantiospecific effects of ketoconazole on aryl hydrocarbon receptor.

Azole antifungal ketoconazole (KET) was demonstrated to activate aryl hydrocarbon receptor (AhR). Since clinically used KET is a racemic mixture of two cis-enantiomers (2R,4S)-(+)-KET and (2S,4R)-(-)-KET, we examined the effects of KET enantiomers on AhR signaling pathway. (+)-KET dose-dependently a...

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Main Authors: Aneta Novotna, Martina Korhonova, Iveta Bartonkova, Anatoly A Soshilov, Michael S Denison, Katerina Bogdanova, Milan Kolar, Petr Bednar, Zdenek Dvorak
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2014-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC4084896?pdf=render
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spelling doaj-18bf0dc1297146709d3ab6749a235ed42020-11-25T00:47:27ZengPublic Library of Science (PLoS)PLoS ONE1932-62032014-01-0197e10183210.1371/journal.pone.0101832Enantiospecific effects of ketoconazole on aryl hydrocarbon receptor.Aneta NovotnaMartina KorhonovaIveta BartonkovaAnatoly A SoshilovMichael S DenisonKaterina BogdanovaMilan KolarPetr BednarZdenek DvorakAzole antifungal ketoconazole (KET) was demonstrated to activate aryl hydrocarbon receptor (AhR). Since clinically used KET is a racemic mixture of two cis-enantiomers (2R,4S)-(+)-KET and (2S,4R)-(-)-KET, we examined the effects of KET enantiomers on AhR signaling pathway. (+)-KET dose-dependently activated AhR in human gene reporter cell line AZ-AHR, and displayed 5-20× higher agonist activity (efficacy), as compared to (-)-KET; both enantiomers were AhR antagonists with equal potency (IC50). Consistently, (+)-KET strongly induced CYP1A1 mRNA and protein in human HepG2 cells, while (-)-KET exerted less than 10% of (+)-KET activity. In primary human hepatocytes, both enantiomers preferentially induced CYP1A2 over CYP1A1 mRNA and protein, and the potency of (+)-KET was slightly higher as compared to (-)-KET. Ligand binding assay with guinea pig liver cytosols revealed that both (+)-KET and (-)-KET are weak ligands of AhR that displaced [3H]-TCDD with comparable potency. Similarly, both enantiomers weakly transformed AhR to DNA-binding form with similar potency, as showed by EMSA, in guinea pig liver cytosolic extracts and nuclear extracts from mouse Hepa-1 cells. We also examined effects of KET on glucocorticoid receptor (GR), a regulator of AhR activity. Both KET enantiomers antagonized GR with similar potency, as revealed by gene reporter assay in AZ-GR cell line and down-regulation of tyrosine aminotransferase mRNA in human hepatocytes. Finally, we demonstrate enantiospecific antifungal activities of KET enantiomers in six Candida spp. strains. In conclusion, the significance of current study is providing the first evidence of enatiospecific effects of cis-enantiomers of ketoconazole on AhR-CYP1A pathway.http://europepmc.org/articles/PMC4084896?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Aneta Novotna
Martina Korhonova
Iveta Bartonkova
Anatoly A Soshilov
Michael S Denison
Katerina Bogdanova
Milan Kolar
Petr Bednar
Zdenek Dvorak
spellingShingle Aneta Novotna
Martina Korhonova
Iveta Bartonkova
Anatoly A Soshilov
Michael S Denison
Katerina Bogdanova
Milan Kolar
Petr Bednar
Zdenek Dvorak
Enantiospecific effects of ketoconazole on aryl hydrocarbon receptor.
PLoS ONE
author_facet Aneta Novotna
Martina Korhonova
Iveta Bartonkova
Anatoly A Soshilov
Michael S Denison
Katerina Bogdanova
Milan Kolar
Petr Bednar
Zdenek Dvorak
author_sort Aneta Novotna
title Enantiospecific effects of ketoconazole on aryl hydrocarbon receptor.
title_short Enantiospecific effects of ketoconazole on aryl hydrocarbon receptor.
title_full Enantiospecific effects of ketoconazole on aryl hydrocarbon receptor.
title_fullStr Enantiospecific effects of ketoconazole on aryl hydrocarbon receptor.
title_full_unstemmed Enantiospecific effects of ketoconazole on aryl hydrocarbon receptor.
title_sort enantiospecific effects of ketoconazole on aryl hydrocarbon receptor.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2014-01-01
description Azole antifungal ketoconazole (KET) was demonstrated to activate aryl hydrocarbon receptor (AhR). Since clinically used KET is a racemic mixture of two cis-enantiomers (2R,4S)-(+)-KET and (2S,4R)-(-)-KET, we examined the effects of KET enantiomers on AhR signaling pathway. (+)-KET dose-dependently activated AhR in human gene reporter cell line AZ-AHR, and displayed 5-20× higher agonist activity (efficacy), as compared to (-)-KET; both enantiomers were AhR antagonists with equal potency (IC50). Consistently, (+)-KET strongly induced CYP1A1 mRNA and protein in human HepG2 cells, while (-)-KET exerted less than 10% of (+)-KET activity. In primary human hepatocytes, both enantiomers preferentially induced CYP1A2 over CYP1A1 mRNA and protein, and the potency of (+)-KET was slightly higher as compared to (-)-KET. Ligand binding assay with guinea pig liver cytosols revealed that both (+)-KET and (-)-KET are weak ligands of AhR that displaced [3H]-TCDD with comparable potency. Similarly, both enantiomers weakly transformed AhR to DNA-binding form with similar potency, as showed by EMSA, in guinea pig liver cytosolic extracts and nuclear extracts from mouse Hepa-1 cells. We also examined effects of KET on glucocorticoid receptor (GR), a regulator of AhR activity. Both KET enantiomers antagonized GR with similar potency, as revealed by gene reporter assay in AZ-GR cell line and down-regulation of tyrosine aminotransferase mRNA in human hepatocytes. Finally, we demonstrate enantiospecific antifungal activities of KET enantiomers in six Candida spp. strains. In conclusion, the significance of current study is providing the first evidence of enatiospecific effects of cis-enantiomers of ketoconazole on AhR-CYP1A pathway.
url http://europepmc.org/articles/PMC4084896?pdf=render
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