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N-Heterocycles Scaffolds as Quorum Sensing Inhibitors. Design, Synthesis, Biological and Docking Studies

Quorum sensing is a communication system among bacteria to sense the proper time to express their virulence factors. Quorum sensing inhibition is a therapeutic strategy to block bacterial mechanisms of virulence. The aim of this study was to synthesize and evaluate new bioisosteres of N-acyl homoser...

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Autores principales: Fuentes-Gutiérrez, Alfredo, Curiel-Quesada, Everardo, Correa-Basurto, José, Martínez-Muñoz, Alberto, Reyes-Arellano, Alicia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7765044/
https://www.ncbi.nlm.nih.gov/pubmed/33327584
http://dx.doi.org/10.3390/ijms21249512
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author Fuentes-Gutiérrez, Alfredo
Curiel-Quesada, Everardo
Correa-Basurto, José
Martínez-Muñoz, Alberto
Reyes-Arellano, Alicia
author_facet Fuentes-Gutiérrez, Alfredo
Curiel-Quesada, Everardo
Correa-Basurto, José
Martínez-Muñoz, Alberto
Reyes-Arellano, Alicia
author_sort Fuentes-Gutiérrez, Alfredo
collection PubMed
description Quorum sensing is a communication system among bacteria to sense the proper time to express their virulence factors. Quorum sensing inhibition is a therapeutic strategy to block bacterial mechanisms of virulence. The aim of this study was to synthesize and evaluate new bioisosteres of N-acyl homoserine lactones as Quorum sensing inhibitors in Chromobacterium violaceum CV026 by quantifying the specific production of violacein. Five series of compounds with different heterocyclic scaffolds were synthesized in good yields: thiazoles, 16a–c, thiazolines 17a–c, benzimidazoles 18a–c, pyridines 19a–c and imidazolines 32a–c. All 15 compounds showed activity as Quorum sensing inhibitors except 16a. Compounds 16b, 17a–c, 18a, 18c, 19c and 32b exhibited activity at concentrations of 10 µM and 100 µM, highlighting the activity of benzimidazole 18a (IC(50) = 36.67 µM) and 32b (IC(50) = 85.03 µM). Pyridine 19c displayed the best quorum sensing inhibition activity (IC(50) = 9.66 µM). Molecular docking simulations were conducted for all test compounds on the Chromobacterium violaceum CviR protein to gain insight into the process of quorum sensing inhibition. The in-silico data reveal that all 15 the compounds have higher affinity for the protein than the native AHL ligand (1). A strong correlation was found between the theoretical and experimental results.
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spelling pubmed-77650442020-12-27 N-Heterocycles Scaffolds as Quorum Sensing Inhibitors. Design, Synthesis, Biological and Docking Studies Fuentes-Gutiérrez, Alfredo Curiel-Quesada, Everardo Correa-Basurto, José Martínez-Muñoz, Alberto Reyes-Arellano, Alicia Int J Mol Sci Article Quorum sensing is a communication system among bacteria to sense the proper time to express their virulence factors. Quorum sensing inhibition is a therapeutic strategy to block bacterial mechanisms of virulence. The aim of this study was to synthesize and evaluate new bioisosteres of N-acyl homoserine lactones as Quorum sensing inhibitors in Chromobacterium violaceum CV026 by quantifying the specific production of violacein. Five series of compounds with different heterocyclic scaffolds were synthesized in good yields: thiazoles, 16a–c, thiazolines 17a–c, benzimidazoles 18a–c, pyridines 19a–c and imidazolines 32a–c. All 15 compounds showed activity as Quorum sensing inhibitors except 16a. Compounds 16b, 17a–c, 18a, 18c, 19c and 32b exhibited activity at concentrations of 10 µM and 100 µM, highlighting the activity of benzimidazole 18a (IC(50) = 36.67 µM) and 32b (IC(50) = 85.03 µM). Pyridine 19c displayed the best quorum sensing inhibition activity (IC(50) = 9.66 µM). Molecular docking simulations were conducted for all test compounds on the Chromobacterium violaceum CviR protein to gain insight into the process of quorum sensing inhibition. The in-silico data reveal that all 15 the compounds have higher affinity for the protein than the native AHL ligand (1). A strong correlation was found between the theoretical and experimental results. MDPI 2020-12-14 /pmc/articles/PMC7765044/ /pubmed/33327584 http://dx.doi.org/10.3390/ijms21249512 Text en © 2020 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
Fuentes-Gutiérrez, Alfredo
Curiel-Quesada, Everardo
Correa-Basurto, José
Martínez-Muñoz, Alberto
Reyes-Arellano, Alicia
N-Heterocycles Scaffolds as Quorum Sensing Inhibitors. Design, Synthesis, Biological and Docking Studies
title N-Heterocycles Scaffolds as Quorum Sensing Inhibitors. Design, Synthesis, Biological and Docking Studies
title_full N-Heterocycles Scaffolds as Quorum Sensing Inhibitors. Design, Synthesis, Biological and Docking Studies
title_fullStr N-Heterocycles Scaffolds as Quorum Sensing Inhibitors. Design, Synthesis, Biological and Docking Studies
title_full_unstemmed N-Heterocycles Scaffolds as Quorum Sensing Inhibitors. Design, Synthesis, Biological and Docking Studies
title_short N-Heterocycles Scaffolds as Quorum Sensing Inhibitors. Design, Synthesis, Biological and Docking Studies
title_sort n-heterocycles scaffolds as quorum sensing inhibitors. design, synthesis, biological and docking studies
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7765044/
https://www.ncbi.nlm.nih.gov/pubmed/33327584
http://dx.doi.org/10.3390/ijms21249512
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