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Interaction of N-methyl-2-alkenyl-4-quinolones with ATP-dependent MurE ligase of Mycobacterium tuberculosis: antibacterial activity, molecular docking and inhibition kinetics

OBJECTIVES: The aim of this study was to comprehensively evaluate the antibacterial activity and MurE inhibition of a set of N-methyl-2-alkenyl-4-quinolones found to inhibit the growth of fast-growing mycobacteria. METHODS: Using the spot culture growth inhibition assay, MICs were determined for Myc...

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Autores principales: Guzman, Juan David, Wube, Abraham, Evangelopoulos, Dimitrios, Gupta, Antima, Hüfner, Antje, Basavannacharya, Chandrakala, Rahman, Md. Mukhleshur, Thomaschitz, Christina, Bauer, Rudolf, McHugh, Timothy Daniel, Nobeli, Irene, Prieto, Jose M., Gibbons, Simon, Bucar, Franz, Bhakta, Sanjib
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3133487/
https://www.ncbi.nlm.nih.gov/pubmed/21622974
http://dx.doi.org/10.1093/jac/dkr203
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author Guzman, Juan David
Wube, Abraham
Evangelopoulos, Dimitrios
Gupta, Antima
Hüfner, Antje
Basavannacharya, Chandrakala
Rahman, Md. Mukhleshur
Thomaschitz, Christina
Bauer, Rudolf
McHugh, Timothy Daniel
Nobeli, Irene
Prieto, Jose M.
Gibbons, Simon
Bucar, Franz
Bhakta, Sanjib
author_facet Guzman, Juan David
Wube, Abraham
Evangelopoulos, Dimitrios
Gupta, Antima
Hüfner, Antje
Basavannacharya, Chandrakala
Rahman, Md. Mukhleshur
Thomaschitz, Christina
Bauer, Rudolf
McHugh, Timothy Daniel
Nobeli, Irene
Prieto, Jose M.
Gibbons, Simon
Bucar, Franz
Bhakta, Sanjib
author_sort Guzman, Juan David
collection PubMed
description OBJECTIVES: The aim of this study was to comprehensively evaluate the antibacterial activity and MurE inhibition of a set of N-methyl-2-alkenyl-4-quinolones found to inhibit the growth of fast-growing mycobacteria. METHODS: Using the spot culture growth inhibition assay, MICs were determined for Mycobacterium tuberculosis H(37)Rv, Mycobacterium bovis BCG and Mycobacterium smegmatis mc(2)155. MICs were determined for Mycobacterium fortuitum, Mycobacterium phlei, methicillin-resistant Staphylococcus aureus, Escherichia coli and Pseudomonas aeruginosa using microplate dilution assays. Inhibition of M. tuberculosis MurE ligase activity was determined both by colorimetric and HPLC methods. Computational modelling and binding prediction of the quinolones in the MurE structure was performed using Glide. Kinetic experiments were conducted for understanding possible competitive relations of the quinolones with the endogenous substrates of MurE ligase. RESULTS: The novel synthetic N-methyl-2-alkenyl-4-quinolones were found to be growth inhibitors of M. tuberculosis and rapid-growing mycobacteria as well as methicillin-resistant S. aureus, while showing no inhibition for E. coli and P. aeruginosa. The quinolones were found to be inhibitory to MurE ligase of M. tuberculosis in the micromolar range (IC(50) ∼40–200 μM) when assayed either spectroscopically or by HPLC. Computational docking of the quinolones on the published M. tuberculosis MurE crystal structure suggested that the uracil recognition site is a probable binding site for the quinolones. CONCLUSIONS: N-methyl-2-alkenyl-4-quinolones are inhibitors of mycobacterial and staphylococcal growth, and show MurE ligase inhibition. Therefore, they are considered as a starting point for the development of increased affinity MurE activity disruptors.
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spelling pubmed-31334872011-07-12 Interaction of N-methyl-2-alkenyl-4-quinolones with ATP-dependent MurE ligase of Mycobacterium tuberculosis: antibacterial activity, molecular docking and inhibition kinetics Guzman, Juan David Wube, Abraham Evangelopoulos, Dimitrios Gupta, Antima Hüfner, Antje Basavannacharya, Chandrakala Rahman, Md. Mukhleshur Thomaschitz, Christina Bauer, Rudolf McHugh, Timothy Daniel Nobeli, Irene Prieto, Jose M. Gibbons, Simon Bucar, Franz Bhakta, Sanjib J Antimicrob Chemother Original Research OBJECTIVES: The aim of this study was to comprehensively evaluate the antibacterial activity and MurE inhibition of a set of N-methyl-2-alkenyl-4-quinolones found to inhibit the growth of fast-growing mycobacteria. METHODS: Using the spot culture growth inhibition assay, MICs were determined for Mycobacterium tuberculosis H(37)Rv, Mycobacterium bovis BCG and Mycobacterium smegmatis mc(2)155. MICs were determined for Mycobacterium fortuitum, Mycobacterium phlei, methicillin-resistant Staphylococcus aureus, Escherichia coli and Pseudomonas aeruginosa using microplate dilution assays. Inhibition of M. tuberculosis MurE ligase activity was determined both by colorimetric and HPLC methods. Computational modelling and binding prediction of the quinolones in the MurE structure was performed using Glide. Kinetic experiments were conducted for understanding possible competitive relations of the quinolones with the endogenous substrates of MurE ligase. RESULTS: The novel synthetic N-methyl-2-alkenyl-4-quinolones were found to be growth inhibitors of M. tuberculosis and rapid-growing mycobacteria as well as methicillin-resistant S. aureus, while showing no inhibition for E. coli and P. aeruginosa. The quinolones were found to be inhibitory to MurE ligase of M. tuberculosis in the micromolar range (IC(50) ∼40–200 μM) when assayed either spectroscopically or by HPLC. Computational docking of the quinolones on the published M. tuberculosis MurE crystal structure suggested that the uracil recognition site is a probable binding site for the quinolones. CONCLUSIONS: N-methyl-2-alkenyl-4-quinolones are inhibitors of mycobacterial and staphylococcal growth, and show MurE ligase inhibition. Therefore, they are considered as a starting point for the development of increased affinity MurE activity disruptors. Oxford University Press 2011-08 2011-05-28 /pmc/articles/PMC3133487/ /pubmed/21622974 http://dx.doi.org/10.1093/jac/dkr203 Text en © The Author 2011. Published by Oxford University Press on behalf of the British Society for Antimicrobial Chemotherapy. http://creativecommons.org/licenses/by-nc/2.5/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons. org/licenses/by-nc/2.5), which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Research
Guzman, Juan David
Wube, Abraham
Evangelopoulos, Dimitrios
Gupta, Antima
Hüfner, Antje
Basavannacharya, Chandrakala
Rahman, Md. Mukhleshur
Thomaschitz, Christina
Bauer, Rudolf
McHugh, Timothy Daniel
Nobeli, Irene
Prieto, Jose M.
Gibbons, Simon
Bucar, Franz
Bhakta, Sanjib
Interaction of N-methyl-2-alkenyl-4-quinolones with ATP-dependent MurE ligase of Mycobacterium tuberculosis: antibacterial activity, molecular docking and inhibition kinetics
title Interaction of N-methyl-2-alkenyl-4-quinolones with ATP-dependent MurE ligase of Mycobacterium tuberculosis: antibacterial activity, molecular docking and inhibition kinetics
title_full Interaction of N-methyl-2-alkenyl-4-quinolones with ATP-dependent MurE ligase of Mycobacterium tuberculosis: antibacterial activity, molecular docking and inhibition kinetics
title_fullStr Interaction of N-methyl-2-alkenyl-4-quinolones with ATP-dependent MurE ligase of Mycobacterium tuberculosis: antibacterial activity, molecular docking and inhibition kinetics
title_full_unstemmed Interaction of N-methyl-2-alkenyl-4-quinolones with ATP-dependent MurE ligase of Mycobacterium tuberculosis: antibacterial activity, molecular docking and inhibition kinetics
title_short Interaction of N-methyl-2-alkenyl-4-quinolones with ATP-dependent MurE ligase of Mycobacterium tuberculosis: antibacterial activity, molecular docking and inhibition kinetics
title_sort interaction of n-methyl-2-alkenyl-4-quinolones with atp-dependent mure ligase of mycobacterium tuberculosis: antibacterial activity, molecular docking and inhibition kinetics
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3133487/
https://www.ncbi.nlm.nih.gov/pubmed/21622974
http://dx.doi.org/10.1093/jac/dkr203
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