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Leishmania mexicana Trypanothione Reductase Inhibitors: Computational and Biological Studies

Leishmanicidal drugs have many side effects, and drug resistance to all of them has been documented. Therefore, the development of new drugs and the identification of novel therapeutic targets are urgently needed. Leishmania mexicana trypanothione reductase (LmTR), a NADPH-dependent flavoprotein oxi...

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Autores principales: Matadamas-Martínez, Félix, Hernández-Campos, Alicia, Téllez-Valencia, Alfredo, Vázquez-Raygoza, Alejandra, Comparán-Alarcón, Sandra, Yépez-Mulia, Lilián, Castillo, Rafael
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6767256/
https://www.ncbi.nlm.nih.gov/pubmed/31487860
http://dx.doi.org/10.3390/molecules24183216
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author Matadamas-Martínez, Félix
Hernández-Campos, Alicia
Téllez-Valencia, Alfredo
Vázquez-Raygoza, Alejandra
Comparán-Alarcón, Sandra
Yépez-Mulia, Lilián
Castillo, Rafael
author_facet Matadamas-Martínez, Félix
Hernández-Campos, Alicia
Téllez-Valencia, Alfredo
Vázquez-Raygoza, Alejandra
Comparán-Alarcón, Sandra
Yépez-Mulia, Lilián
Castillo, Rafael
author_sort Matadamas-Martínez, Félix
collection PubMed
description Leishmanicidal drugs have many side effects, and drug resistance to all of them has been documented. Therefore, the development of new drugs and the identification of novel therapeutic targets are urgently needed. Leishmania mexicana trypanothione reductase (LmTR), a NADPH-dependent flavoprotein oxidoreductase important to thiol metabolism, is essential for parasite viability. Its absence in the mammalian host makes this enzyme an attractive target for the development of new anti-Leishmania drugs. Herein, a tridimensional model of LmTR was constructed and the molecular docking of 20 molecules from a ZINC database was performed. Five compounds (ZINC04684558, ZINC09642432, ZINC12151998, ZINC14970552, and ZINC11841871) were selected (docking scores −10.27 kcal/mol to −5.29 kcal/mol and structurally different) and evaluated against recombinant LmTR (rLmTR) and L. mexicana promastigote. Additionally, molecular dynamics simulation of LmTR-selected compound complexes was achieved. The five selected compounds inhibited rLmTR activity in the range of 32.9% to 40.1%. The binding of selected compounds to LmTR involving different hydrogen bonds with distinct residues of the molecule monomers A and B is described. Compound ZINC12151998 (docking score −10.27 kcal/mol) inhibited 32.9% the enzyme activity (100 µM) and showed the highest leishmanicidal activity (IC(50) = 58 µM) of all the selected compounds. It was more active than glucantime, and although its half-maximal cytotoxicity concentration (CC(50) = 53 µM) was higher than that of the other four compounds, it was less cytotoxic than amphotericin B. Therefore, compound ZINC12151998 provides a promising starting point for a hit-to-lead process in our search for new anti-Leishmania drugs that are more potent and less cytotoxic.
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spelling pubmed-67672562019-10-02 Leishmania mexicana Trypanothione Reductase Inhibitors: Computational and Biological Studies Matadamas-Martínez, Félix Hernández-Campos, Alicia Téllez-Valencia, Alfredo Vázquez-Raygoza, Alejandra Comparán-Alarcón, Sandra Yépez-Mulia, Lilián Castillo, Rafael Molecules Article Leishmanicidal drugs have many side effects, and drug resistance to all of them has been documented. Therefore, the development of new drugs and the identification of novel therapeutic targets are urgently needed. Leishmania mexicana trypanothione reductase (LmTR), a NADPH-dependent flavoprotein oxidoreductase important to thiol metabolism, is essential for parasite viability. Its absence in the mammalian host makes this enzyme an attractive target for the development of new anti-Leishmania drugs. Herein, a tridimensional model of LmTR was constructed and the molecular docking of 20 molecules from a ZINC database was performed. Five compounds (ZINC04684558, ZINC09642432, ZINC12151998, ZINC14970552, and ZINC11841871) were selected (docking scores −10.27 kcal/mol to −5.29 kcal/mol and structurally different) and evaluated against recombinant LmTR (rLmTR) and L. mexicana promastigote. Additionally, molecular dynamics simulation of LmTR-selected compound complexes was achieved. The five selected compounds inhibited rLmTR activity in the range of 32.9% to 40.1%. The binding of selected compounds to LmTR involving different hydrogen bonds with distinct residues of the molecule monomers A and B is described. Compound ZINC12151998 (docking score −10.27 kcal/mol) inhibited 32.9% the enzyme activity (100 µM) and showed the highest leishmanicidal activity (IC(50) = 58 µM) of all the selected compounds. It was more active than glucantime, and although its half-maximal cytotoxicity concentration (CC(50) = 53 µM) was higher than that of the other four compounds, it was less cytotoxic than amphotericin B. Therefore, compound ZINC12151998 provides a promising starting point for a hit-to-lead process in our search for new anti-Leishmania drugs that are more potent and less cytotoxic. MDPI 2019-09-04 /pmc/articles/PMC6767256/ /pubmed/31487860 http://dx.doi.org/10.3390/molecules24183216 Text en © 2019 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
Matadamas-Martínez, Félix
Hernández-Campos, Alicia
Téllez-Valencia, Alfredo
Vázquez-Raygoza, Alejandra
Comparán-Alarcón, Sandra
Yépez-Mulia, Lilián
Castillo, Rafael
Leishmania mexicana Trypanothione Reductase Inhibitors: Computational and Biological Studies
title Leishmania mexicana Trypanothione Reductase Inhibitors: Computational and Biological Studies
title_full Leishmania mexicana Trypanothione Reductase Inhibitors: Computational and Biological Studies
title_fullStr Leishmania mexicana Trypanothione Reductase Inhibitors: Computational and Biological Studies
title_full_unstemmed Leishmania mexicana Trypanothione Reductase Inhibitors: Computational and Biological Studies
title_short Leishmania mexicana Trypanothione Reductase Inhibitors: Computational and Biological Studies
title_sort leishmania mexicana trypanothione reductase inhibitors: computational and biological studies
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6767256/
https://www.ncbi.nlm.nih.gov/pubmed/31487860
http://dx.doi.org/10.3390/molecules24183216
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