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Insight into the Effect of Inhibitor Resistant S130G Mutant on Physico-Chemical Properties of SHV Type Beta-Lactamase: A Molecular Dynamics Study

Bacterial resistance is a serious threat to human health. The production of β-lactamase, which inactivates β-lactams is most common cause of resistance to the β-lactam antibiotics. The Class A enzymes are most frequently encountered among the four β-lactamases in the clinic isolates. Mutations in cl...

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Autores principales: Baig, Mohd Hassan, Sudhakar, D. Raja, Kalaiarasan, Ponnusamy, Subbarao, Naidu, Wadhawa, Gulshan, Lohani, Mohtashim, Khan, M Kalim A, Khan, Asad U.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4257546/
https://www.ncbi.nlm.nih.gov/pubmed/25479359
http://dx.doi.org/10.1371/journal.pone.0112456
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author Baig, Mohd Hassan
Sudhakar, D. Raja
Kalaiarasan, Ponnusamy
Subbarao, Naidu
Wadhawa, Gulshan
Lohani, Mohtashim
Khan, M Kalim A
Khan, Asad U.
author_facet Baig, Mohd Hassan
Sudhakar, D. Raja
Kalaiarasan, Ponnusamy
Subbarao, Naidu
Wadhawa, Gulshan
Lohani, Mohtashim
Khan, M Kalim A
Khan, Asad U.
author_sort Baig, Mohd Hassan
collection PubMed
description Bacterial resistance is a serious threat to human health. The production of β-lactamase, which inactivates β-lactams is most common cause of resistance to the β-lactam antibiotics. The Class A enzymes are most frequently encountered among the four β-lactamases in the clinic isolates. Mutations in class A β-lactamases play a crucial role in substrate and inhibitor specificity. SHV and TEM type are known to be most common class A β-lactamases. In the present study, we have analyzed the effect of inhibitor resistant S130G point mutation of SHV type Class-A β-lactamase using molecular dynamics and other in silico approaches. Our study involved the use of different in silico methods to investigate the affect of S130G point mutation on the major physico-chemical properties of SHV type class A β-lactamase. We have used molecular dynamics approach to compare the dynamic behaviour of native and S130G mutant form of SHV β-lactamase by analyzing different properties like root mean square deviation (RMSD), H-bond, Radius of gyration (Rg) and RMS fluctuation of mutation. The results clearly suggest notable loss in the stability of S130G mutant that may further lead to decrease in substrate specificity of SHV. Molecular docking further indicates that S130G mutation decreases the binding affinity of all the three inhibitors in clinical practice.
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spelling pubmed-42575462014-12-15 Insight into the Effect of Inhibitor Resistant S130G Mutant on Physico-Chemical Properties of SHV Type Beta-Lactamase: A Molecular Dynamics Study Baig, Mohd Hassan Sudhakar, D. Raja Kalaiarasan, Ponnusamy Subbarao, Naidu Wadhawa, Gulshan Lohani, Mohtashim Khan, M Kalim A Khan, Asad U. PLoS One Research Article Bacterial resistance is a serious threat to human health. The production of β-lactamase, which inactivates β-lactams is most common cause of resistance to the β-lactam antibiotics. The Class A enzymes are most frequently encountered among the four β-lactamases in the clinic isolates. Mutations in class A β-lactamases play a crucial role in substrate and inhibitor specificity. SHV and TEM type are known to be most common class A β-lactamases. In the present study, we have analyzed the effect of inhibitor resistant S130G point mutation of SHV type Class-A β-lactamase using molecular dynamics and other in silico approaches. Our study involved the use of different in silico methods to investigate the affect of S130G point mutation on the major physico-chemical properties of SHV type class A β-lactamase. We have used molecular dynamics approach to compare the dynamic behaviour of native and S130G mutant form of SHV β-lactamase by analyzing different properties like root mean square deviation (RMSD), H-bond, Radius of gyration (Rg) and RMS fluctuation of mutation. The results clearly suggest notable loss in the stability of S130G mutant that may further lead to decrease in substrate specificity of SHV. Molecular docking further indicates that S130G mutation decreases the binding affinity of all the three inhibitors in clinical practice. Public Library of Science 2014-12-05 /pmc/articles/PMC4257546/ /pubmed/25479359 http://dx.doi.org/10.1371/journal.pone.0112456 Text en © 2014 Baig et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Baig, Mohd Hassan
Sudhakar, D. Raja
Kalaiarasan, Ponnusamy
Subbarao, Naidu
Wadhawa, Gulshan
Lohani, Mohtashim
Khan, M Kalim A
Khan, Asad U.
Insight into the Effect of Inhibitor Resistant S130G Mutant on Physico-Chemical Properties of SHV Type Beta-Lactamase: A Molecular Dynamics Study
title Insight into the Effect of Inhibitor Resistant S130G Mutant on Physico-Chemical Properties of SHV Type Beta-Lactamase: A Molecular Dynamics Study
title_full Insight into the Effect of Inhibitor Resistant S130G Mutant on Physico-Chemical Properties of SHV Type Beta-Lactamase: A Molecular Dynamics Study
title_fullStr Insight into the Effect of Inhibitor Resistant S130G Mutant on Physico-Chemical Properties of SHV Type Beta-Lactamase: A Molecular Dynamics Study
title_full_unstemmed Insight into the Effect of Inhibitor Resistant S130G Mutant on Physico-Chemical Properties of SHV Type Beta-Lactamase: A Molecular Dynamics Study
title_short Insight into the Effect of Inhibitor Resistant S130G Mutant on Physico-Chemical Properties of SHV Type Beta-Lactamase: A Molecular Dynamics Study
title_sort insight into the effect of inhibitor resistant s130g mutant on physico-chemical properties of shv type beta-lactamase: a molecular dynamics study
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4257546/
https://www.ncbi.nlm.nih.gov/pubmed/25479359
http://dx.doi.org/10.1371/journal.pone.0112456
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