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Inhibition Analysis and High-Resolution Crystal Structure of Mus musculus Glutathione Transferase P1-1

Multidrug resistance is a significant barrier that makes anticancer therapies less effective. Glutathione transferases (GSTs) are involved in multidrug resistance mechanisms and play a significant part in the metabolism of alkylating anticancer drugs. The purpose of this study was to screen and sele...

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Autores principales: Kupreienko, Oleksii, Pouliou, Fotini, Konstandinidis, Konstantinos, Axarli, Irene, Douni, Eleni, Papageorgiou, Anastassios C., Labrou, Nikolaos E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10136361/
https://www.ncbi.nlm.nih.gov/pubmed/37189361
http://dx.doi.org/10.3390/biom13040613
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author Kupreienko, Oleksii
Pouliou, Fotini
Konstandinidis, Konstantinos
Axarli, Irene
Douni, Eleni
Papageorgiou, Anastassios C.
Labrou, Nikolaos E.
author_facet Kupreienko, Oleksii
Pouliou, Fotini
Konstandinidis, Konstantinos
Axarli, Irene
Douni, Eleni
Papageorgiou, Anastassios C.
Labrou, Nikolaos E.
author_sort Kupreienko, Oleksii
collection PubMed
description Multidrug resistance is a significant barrier that makes anticancer therapies less effective. Glutathione transferases (GSTs) are involved in multidrug resistance mechanisms and play a significant part in the metabolism of alkylating anticancer drugs. The purpose of this study was to screen and select a lead compound with high inhibitory potency against the isoenzyme GSTP1-1 from Mus musculus (MmGSTP1-1). The lead compound was selected following the screening of a library of currently approved and registered pesticides that belong to different chemical classes. The results showed that the fungicide iprodione [3-(3,5-dichlorophenyl)-2,4-dioxo-N-propan-2-ylimidazolidine-1-carboxamide] exhibited the highest inhibition potency (ΙC(50) = 11.3 ± 0.5 μΜ) towards MmGSTP1-1. Kinetics analysis revealed that iprodione functions as a mixed-type inhibitor towards glutathione (GSH) and non-competitive inhibitor towards 1-chloro-2,4-dinitrobenzene (CDNB). X-ray crystallography was used to determine the crystal structure of MmGSTP1-1 at 1.28 Å resolution as a complex with S-(p-nitrobenzyl)glutathione (Nb-GSH). The crystal structure was used to map the ligand-binding site of MmGSTP1-1 and to provide structural data of the interaction of the enzyme with iprodione using molecular docking. The results of this study shed light on the inhibition mechanism of MmGSTP1-1 and provide a new compound as a potential lead structure for future drug/inhibitor development.
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spelling pubmed-101363612023-04-28 Inhibition Analysis and High-Resolution Crystal Structure of Mus musculus Glutathione Transferase P1-1 Kupreienko, Oleksii Pouliou, Fotini Konstandinidis, Konstantinos Axarli, Irene Douni, Eleni Papageorgiou, Anastassios C. Labrou, Nikolaos E. Biomolecules Article Multidrug resistance is a significant barrier that makes anticancer therapies less effective. Glutathione transferases (GSTs) are involved in multidrug resistance mechanisms and play a significant part in the metabolism of alkylating anticancer drugs. The purpose of this study was to screen and select a lead compound with high inhibitory potency against the isoenzyme GSTP1-1 from Mus musculus (MmGSTP1-1). The lead compound was selected following the screening of a library of currently approved and registered pesticides that belong to different chemical classes. The results showed that the fungicide iprodione [3-(3,5-dichlorophenyl)-2,4-dioxo-N-propan-2-ylimidazolidine-1-carboxamide] exhibited the highest inhibition potency (ΙC(50) = 11.3 ± 0.5 μΜ) towards MmGSTP1-1. Kinetics analysis revealed that iprodione functions as a mixed-type inhibitor towards glutathione (GSH) and non-competitive inhibitor towards 1-chloro-2,4-dinitrobenzene (CDNB). X-ray crystallography was used to determine the crystal structure of MmGSTP1-1 at 1.28 Å resolution as a complex with S-(p-nitrobenzyl)glutathione (Nb-GSH). The crystal structure was used to map the ligand-binding site of MmGSTP1-1 and to provide structural data of the interaction of the enzyme with iprodione using molecular docking. The results of this study shed light on the inhibition mechanism of MmGSTP1-1 and provide a new compound as a potential lead structure for future drug/inhibitor development. MDPI 2023-03-29 /pmc/articles/PMC10136361/ /pubmed/37189361 http://dx.doi.org/10.3390/biom13040613 Text en © 2023 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
Kupreienko, Oleksii
Pouliou, Fotini
Konstandinidis, Konstantinos
Axarli, Irene
Douni, Eleni
Papageorgiou, Anastassios C.
Labrou, Nikolaos E.
Inhibition Analysis and High-Resolution Crystal Structure of Mus musculus Glutathione Transferase P1-1
title Inhibition Analysis and High-Resolution Crystal Structure of Mus musculus Glutathione Transferase P1-1
title_full Inhibition Analysis and High-Resolution Crystal Structure of Mus musculus Glutathione Transferase P1-1
title_fullStr Inhibition Analysis and High-Resolution Crystal Structure of Mus musculus Glutathione Transferase P1-1
title_full_unstemmed Inhibition Analysis and High-Resolution Crystal Structure of Mus musculus Glutathione Transferase P1-1
title_short Inhibition Analysis and High-Resolution Crystal Structure of Mus musculus Glutathione Transferase P1-1
title_sort inhibition analysis and high-resolution crystal structure of mus musculus glutathione transferase p1-1
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10136361/
https://www.ncbi.nlm.nih.gov/pubmed/37189361
http://dx.doi.org/10.3390/biom13040613
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