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Imidazole and nitroimidazole derivatives as NADH‐fumarate reductase inhibitors: Density functional theory studies, homology modeling, and molecular docking

Chagas disease is caused by Trypanosoma cruzi. Benznidazole and nifurtimox are drugs used for its therapy; nevertheless, they have collateral effects. NADH‐fumarate (FUM) reductase is a potential pharmacological target since it is essential for survival of parasite and is not found in humans. The ob...

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Autores principales: Campos‐Fernández, Linda, Ortiz‐Muñiz, Rocío, Cortés‐Barberena, Edith, Mares‐Sámano, Sergio, Garduño‐Juárez, Ramón, Soriano‐Correa, Catalina
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley & Sons, Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9541967/
https://www.ncbi.nlm.nih.gov/pubmed/35796405
http://dx.doi.org/10.1002/jcc.26959
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author Campos‐Fernández, Linda
Ortiz‐Muñiz, Rocío
Cortés‐Barberena, Edith
Mares‐Sámano, Sergio
Garduño‐Juárez, Ramón
Soriano‐Correa, Catalina
author_facet Campos‐Fernández, Linda
Ortiz‐Muñiz, Rocío
Cortés‐Barberena, Edith
Mares‐Sámano, Sergio
Garduño‐Juárez, Ramón
Soriano‐Correa, Catalina
author_sort Campos‐Fernández, Linda
collection PubMed
description Chagas disease is caused by Trypanosoma cruzi. Benznidazole and nifurtimox are drugs used for its therapy; nevertheless, they have collateral effects. NADH‐fumarate (FUM) reductase is a potential pharmacological target since it is essential for survival of parasite and is not found in humans. The objectives are to design and characterize the electronic structure of imidazole and nitroimidazole derivatives at DFT‐M06‐2X level in aqueous solution; also, to model the NADH‐FUM reductase and analyze its intermolecular interactions by molecular docking. Quantum‐chemical descriptors allowed to select the molecules with the best physicochemical properties and lowest toxicity. A high‐quality three‐dimensional structure of NADH‐FUM reductase was obtained by homology modeling. Water molecules do not have influence in the interaction between FUM and NADH‐FUM reductase. The main hydrogen‐binding interactions for FUM were identified in NADH, Lys172, and Arg89; while hydrophobic interactions in Phe479, Thr174, Met63. The molecules S3‐8, S2‐8, and S1‐8 could be inhibitors of NADH‐FUM reductase.
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spelling pubmed-95419672022-10-14 Imidazole and nitroimidazole derivatives as NADH‐fumarate reductase inhibitors: Density functional theory studies, homology modeling, and molecular docking Campos‐Fernández, Linda Ortiz‐Muñiz, Rocío Cortés‐Barberena, Edith Mares‐Sámano, Sergio Garduño‐Juárez, Ramón Soriano‐Correa, Catalina J Comput Chem Research Articles Chagas disease is caused by Trypanosoma cruzi. Benznidazole and nifurtimox are drugs used for its therapy; nevertheless, they have collateral effects. NADH‐fumarate (FUM) reductase is a potential pharmacological target since it is essential for survival of parasite and is not found in humans. The objectives are to design and characterize the electronic structure of imidazole and nitroimidazole derivatives at DFT‐M06‐2X level in aqueous solution; also, to model the NADH‐FUM reductase and analyze its intermolecular interactions by molecular docking. Quantum‐chemical descriptors allowed to select the molecules with the best physicochemical properties and lowest toxicity. A high‐quality three‐dimensional structure of NADH‐FUM reductase was obtained by homology modeling. Water molecules do not have influence in the interaction between FUM and NADH‐FUM reductase. The main hydrogen‐binding interactions for FUM were identified in NADH, Lys172, and Arg89; while hydrophobic interactions in Phe479, Thr174, Met63. The molecules S3‐8, S2‐8, and S1‐8 could be inhibitors of NADH‐FUM reductase. John Wiley & Sons, Inc. 2022-07-07 2022-09-05 /pmc/articles/PMC9541967/ /pubmed/35796405 http://dx.doi.org/10.1002/jcc.26959 Text en © 2022 The Authors. Journal of Computational Chemistry published by Wiley Periodicals LLC. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ (https://creativecommons.org/licenses/by-nc-nd/4.0/) License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Research Articles
Campos‐Fernández, Linda
Ortiz‐Muñiz, Rocío
Cortés‐Barberena, Edith
Mares‐Sámano, Sergio
Garduño‐Juárez, Ramón
Soriano‐Correa, Catalina
Imidazole and nitroimidazole derivatives as NADH‐fumarate reductase inhibitors: Density functional theory studies, homology modeling, and molecular docking
title Imidazole and nitroimidazole derivatives as NADH‐fumarate reductase inhibitors: Density functional theory studies, homology modeling, and molecular docking
title_full Imidazole and nitroimidazole derivatives as NADH‐fumarate reductase inhibitors: Density functional theory studies, homology modeling, and molecular docking
title_fullStr Imidazole and nitroimidazole derivatives as NADH‐fumarate reductase inhibitors: Density functional theory studies, homology modeling, and molecular docking
title_full_unstemmed Imidazole and nitroimidazole derivatives as NADH‐fumarate reductase inhibitors: Density functional theory studies, homology modeling, and molecular docking
title_short Imidazole and nitroimidazole derivatives as NADH‐fumarate reductase inhibitors: Density functional theory studies, homology modeling, and molecular docking
title_sort imidazole and nitroimidazole derivatives as nadh‐fumarate reductase inhibitors: density functional theory studies, homology modeling, and molecular docking
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9541967/
https://www.ncbi.nlm.nih.gov/pubmed/35796405
http://dx.doi.org/10.1002/jcc.26959
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