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Analogues of Natural Chalcones as Efficient Inhibitors of AKR1C3

Naturally occurring substances are valuable resources for drug development. In this respect, chalcones are known to be antiproliferative agents against prostate cancer cell lines through various mechanisms or targets. Based on the literature and preliminary results, we aimed to study and optimise th...

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Autores principales: Möller, Gabriele, Temml, Veronika, Cala Peralta, Antonio, Gruet, Océane, Richomme, Pascal, Séraphin, Denis, Viault, Guillaume, Kraus, Luisa, Huber-Cantonati, Petra, Schopfhauser, Elisabeth, Pachmayr, Johanna, Tokarz, Janina, Schuster, Daniela, Helesbeux, Jean-Jacques, Dyar, Kenneth Allen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8876231/
https://www.ncbi.nlm.nih.gov/pubmed/35208174
http://dx.doi.org/10.3390/metabo12020099
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author Möller, Gabriele
Temml, Veronika
Cala Peralta, Antonio
Gruet, Océane
Richomme, Pascal
Séraphin, Denis
Viault, Guillaume
Kraus, Luisa
Huber-Cantonati, Petra
Schopfhauser, Elisabeth
Pachmayr, Johanna
Tokarz, Janina
Schuster, Daniela
Helesbeux, Jean-Jacques
Dyar, Kenneth Allen
author_facet Möller, Gabriele
Temml, Veronika
Cala Peralta, Antonio
Gruet, Océane
Richomme, Pascal
Séraphin, Denis
Viault, Guillaume
Kraus, Luisa
Huber-Cantonati, Petra
Schopfhauser, Elisabeth
Pachmayr, Johanna
Tokarz, Janina
Schuster, Daniela
Helesbeux, Jean-Jacques
Dyar, Kenneth Allen
author_sort Möller, Gabriele
collection PubMed
description Naturally occurring substances are valuable resources for drug development. In this respect, chalcones are known to be antiproliferative agents against prostate cancer cell lines through various mechanisms or targets. Based on the literature and preliminary results, we aimed to study and optimise the efficiency of a series of chalcones to inhibit androgen-converting AKR1C3, known to promote prostate cancer. A total of 12 chalcones with different substitution patterns were synthesised. Structure–activity relationships associated with these modifications on AKR1C3 inhibition were analysed by performing enzymatic assays and docking simulations. In addition, the selectivity and cytotoxicity of the compounds were assessed. In enzymatic assays, C-6′ hydroxylated derivatives were more active than C-6′ methoxylated derivatives. In contrast, C-4 methylation increased activity over C-4 hydroxylation. Docking results supported these findings with the most active compounds fitting nicely in the binding site and exhibiting strong interactions with key amino acid residues. The most effective inhibitors were not cytotoxic for HEK293T cells and selective for 17β-hydroxysteroid dehydrogenases not primarily involved in steroid hormone metabolism. Nevertheless, they inhibited several enzymes of the steroid metabolism pathways. Favourable substitutions that enhanced AKR1C3 inhibition of chalcones were identified. This study paves the way to further develop compounds from this series or related flavonoids with improved inhibitory activity against AKR1C3.
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spelling pubmed-88762312022-02-26 Analogues of Natural Chalcones as Efficient Inhibitors of AKR1C3 Möller, Gabriele Temml, Veronika Cala Peralta, Antonio Gruet, Océane Richomme, Pascal Séraphin, Denis Viault, Guillaume Kraus, Luisa Huber-Cantonati, Petra Schopfhauser, Elisabeth Pachmayr, Johanna Tokarz, Janina Schuster, Daniela Helesbeux, Jean-Jacques Dyar, Kenneth Allen Metabolites Article Naturally occurring substances are valuable resources for drug development. In this respect, chalcones are known to be antiproliferative agents against prostate cancer cell lines through various mechanisms or targets. Based on the literature and preliminary results, we aimed to study and optimise the efficiency of a series of chalcones to inhibit androgen-converting AKR1C3, known to promote prostate cancer. A total of 12 chalcones with different substitution patterns were synthesised. Structure–activity relationships associated with these modifications on AKR1C3 inhibition were analysed by performing enzymatic assays and docking simulations. In addition, the selectivity and cytotoxicity of the compounds were assessed. In enzymatic assays, C-6′ hydroxylated derivatives were more active than C-6′ methoxylated derivatives. In contrast, C-4 methylation increased activity over C-4 hydroxylation. Docking results supported these findings with the most active compounds fitting nicely in the binding site and exhibiting strong interactions with key amino acid residues. The most effective inhibitors were not cytotoxic for HEK293T cells and selective for 17β-hydroxysteroid dehydrogenases not primarily involved in steroid hormone metabolism. Nevertheless, they inhibited several enzymes of the steroid metabolism pathways. Favourable substitutions that enhanced AKR1C3 inhibition of chalcones were identified. This study paves the way to further develop compounds from this series or related flavonoids with improved inhibitory activity against AKR1C3. MDPI 2022-01-21 /pmc/articles/PMC8876231/ /pubmed/35208174 http://dx.doi.org/10.3390/metabo12020099 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Möller, Gabriele
Temml, Veronika
Cala Peralta, Antonio
Gruet, Océane
Richomme, Pascal
Séraphin, Denis
Viault, Guillaume
Kraus, Luisa
Huber-Cantonati, Petra
Schopfhauser, Elisabeth
Pachmayr, Johanna
Tokarz, Janina
Schuster, Daniela
Helesbeux, Jean-Jacques
Dyar, Kenneth Allen
Analogues of Natural Chalcones as Efficient Inhibitors of AKR1C3
title Analogues of Natural Chalcones as Efficient Inhibitors of AKR1C3
title_full Analogues of Natural Chalcones as Efficient Inhibitors of AKR1C3
title_fullStr Analogues of Natural Chalcones as Efficient Inhibitors of AKR1C3
title_full_unstemmed Analogues of Natural Chalcones as Efficient Inhibitors of AKR1C3
title_short Analogues of Natural Chalcones as Efficient Inhibitors of AKR1C3
title_sort analogues of natural chalcones as efficient inhibitors of akr1c3
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8876231/
https://www.ncbi.nlm.nih.gov/pubmed/35208174
http://dx.doi.org/10.3390/metabo12020099
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