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Homology modeling, molecular docking and electrostatic potential analysis of MurF ligase from Klebsiella pneumonia
In spite of availability of moderately protective vaccine and antibiotics, new antibacterial agents are urgently needed to decrease the global incidence of Klebsiella pneumonia infections. MurF ligase, a key enzyme, which participates in the bacterial cell wall assembly, is indispensable to existenc...
Autores principales: | , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Biomedical Informatics
2012
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3374357/ https://www.ncbi.nlm.nih.gov/pubmed/22715301 http://dx.doi.org/10.6026/97320630008466 |
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author | Sivaramakrishnan, Venkatabalasubramanian Thiyagarajan, Chinnaiyan Kalaivanan, Sivakumaran Selvakumar, Raj Anusuyadevi, Muthuswamy Jayachandran, Kesavan Swaminathan |
author_facet | Sivaramakrishnan, Venkatabalasubramanian Thiyagarajan, Chinnaiyan Kalaivanan, Sivakumaran Selvakumar, Raj Anusuyadevi, Muthuswamy Jayachandran, Kesavan Swaminathan |
author_sort | Sivaramakrishnan, Venkatabalasubramanian |
collection | PubMed |
description | In spite of availability of moderately protective vaccine and antibiotics, new antibacterial agents are urgently needed to decrease the global incidence of Klebsiella pneumonia infections. MurF ligase, a key enzyme, which participates in the bacterial cell wall assembly, is indispensable to existence of K. pneumonia. MurF ligase lack mammalian vis-à-vis and have high specificity, uniqueness, and occurrence only in eubacteria, epitomizing them as promising therapeutic targets for intervention. In this study, we present a unified approach involving homology modeling and molecular docking studies on MurF ligase enzyme. As part of this study, a homology model of K. pneumonia (MurF ligase) enzyme was predicted for the first time in order to carry out structurebased drug design. The accuracy of the model was further validated using different computational approaches. The comparative molecular docking study on this enzyme was undertaken using different phyto-ligands from Desmodium sp. and a known antibiotic Ciprofloxacin. The docking analysis indicated the importance of hotspots (HIS 281 and ASN 282) within the MurF binding pocket. The Lipinski's rule of five was analyzed for all ligands considered for this study by calculating the ADME/Tox, drug likeliness using Qikprop simulation. Only ten ligands were found to comply with the Lipinski rule of five. Based on the molecular docking results and Lipinki values 6-Methyltetrapterol A was confirmed as a promising lead compound. The present study should therefore play a guiding role in the experimental design and development of 6-Methyltetrapterol A as a bactericidal agent. |
format | Online Article Text |
id | pubmed-3374357 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2012 |
publisher | Biomedical Informatics |
record_format | MEDLINE/PubMed |
spelling | pubmed-33743572012-06-19 Homology modeling, molecular docking and electrostatic potential analysis of MurF ligase from Klebsiella pneumonia Sivaramakrishnan, Venkatabalasubramanian Thiyagarajan, Chinnaiyan Kalaivanan, Sivakumaran Selvakumar, Raj Anusuyadevi, Muthuswamy Jayachandran, Kesavan Swaminathan Bioinformation Hypothesis In spite of availability of moderately protective vaccine and antibiotics, new antibacterial agents are urgently needed to decrease the global incidence of Klebsiella pneumonia infections. MurF ligase, a key enzyme, which participates in the bacterial cell wall assembly, is indispensable to existence of K. pneumonia. MurF ligase lack mammalian vis-à-vis and have high specificity, uniqueness, and occurrence only in eubacteria, epitomizing them as promising therapeutic targets for intervention. In this study, we present a unified approach involving homology modeling and molecular docking studies on MurF ligase enzyme. As part of this study, a homology model of K. pneumonia (MurF ligase) enzyme was predicted for the first time in order to carry out structurebased drug design. The accuracy of the model was further validated using different computational approaches. The comparative molecular docking study on this enzyme was undertaken using different phyto-ligands from Desmodium sp. and a known antibiotic Ciprofloxacin. The docking analysis indicated the importance of hotspots (HIS 281 and ASN 282) within the MurF binding pocket. The Lipinski's rule of five was analyzed for all ligands considered for this study by calculating the ADME/Tox, drug likeliness using Qikprop simulation. Only ten ligands were found to comply with the Lipinski rule of five. Based on the molecular docking results and Lipinki values 6-Methyltetrapterol A was confirmed as a promising lead compound. The present study should therefore play a guiding role in the experimental design and development of 6-Methyltetrapterol A as a bactericidal agent. Biomedical Informatics 2012-05-31 /pmc/articles/PMC3374357/ /pubmed/22715301 http://dx.doi.org/10.6026/97320630008466 Text en © 2012 Biomedical Informatics This is an open-access article, which permits unrestricted use, distribution, and reproduction in any medium, for non-commercial purposes, provided the original author and source are credited. |
spellingShingle | Hypothesis Sivaramakrishnan, Venkatabalasubramanian Thiyagarajan, Chinnaiyan Kalaivanan, Sivakumaran Selvakumar, Raj Anusuyadevi, Muthuswamy Jayachandran, Kesavan Swaminathan Homology modeling, molecular docking and electrostatic potential analysis of MurF ligase from Klebsiella pneumonia |
title | Homology modeling, molecular docking and electrostatic potential analysis of MurF ligase from Klebsiella pneumonia |
title_full | Homology modeling, molecular docking and electrostatic potential analysis of MurF ligase from Klebsiella pneumonia |
title_fullStr | Homology modeling, molecular docking and electrostatic potential analysis of MurF ligase from Klebsiella pneumonia |
title_full_unstemmed | Homology modeling, molecular docking and electrostatic potential analysis of MurF ligase from Klebsiella pneumonia |
title_short | Homology modeling, molecular docking and electrostatic potential analysis of MurF ligase from Klebsiella pneumonia |
title_sort | homology modeling, molecular docking and electrostatic potential analysis of murf ligase from klebsiella pneumonia |
topic | Hypothesis |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3374357/ https://www.ncbi.nlm.nih.gov/pubmed/22715301 http://dx.doi.org/10.6026/97320630008466 |
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