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Designing cyclopentapeptide inhibitor as potential antiviral drug for dengue virus ns5 methyltransferase

NS5 methyltransferase (Mtase) has a crucial role in the replication of dengue virus. There are two active sites on NS5 Mtase i.e., SAM and RNA-cap binding sites. Inhibition of the NS5 Mtase activity is expected to prevent the propagation of dengue virus. This study was conducted to design cyclic pep...

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Autores principales: Idrus, Syarifuddin, Tambunan, Usman Sumo Friend, Zubaidi, Ahmad Ardilla
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Biomedical Informatics 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3346019/
https://www.ncbi.nlm.nih.gov/pubmed/22570514
http://dx.doi.org/10.6026/97320630008348
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author Idrus, Syarifuddin
Tambunan, Usman Sumo Friend
Zubaidi, Ahmad Ardilla
author_facet Idrus, Syarifuddin
Tambunan, Usman Sumo Friend
Zubaidi, Ahmad Ardilla
author_sort Idrus, Syarifuddin
collection PubMed
description NS5 methyltransferase (Mtase) has a crucial role in the replication of dengue virus. There are two active sites on NS5 Mtase i.e., SAM and RNA-cap binding sites. Inhibition of the NS5 Mtase activity is expected to prevent the propagation of dengue virus. This study was conducted to design cyclic peptide ligands as enzyme inhibitors of dengue virus NS5 Mtase through computational approach. Cyclopentapeptides were designed as ligand of SAM binding site as much as 1635 and 736 cyclopentpeptides were designed as ligand of RNA-cap binding site. Interaction between ligand and NS5 Mtase has been conducted on the Docking simulation. The result shows that cyclopentapeptide CTWYC was the best peptide candidate on SAM binding site, with estimated free binding energy -30.72 kca/mol. Cyclopentapeptide CYEFC was the best peptide on RNA-cap binding site with estimated free binding energy -22.89 kcal/mol. Both peptides did not have tendency toward toxicity properties. So it is expected that both CTWYC and CYEFC ligands could be used as a potential antiviral drug candidates, which can inhibit the SAM and RNA-cap binding sites of dengue virus NS5 Mtase.
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spelling pubmed-33460192012-05-08 Designing cyclopentapeptide inhibitor as potential antiviral drug for dengue virus ns5 methyltransferase Idrus, Syarifuddin Tambunan, Usman Sumo Friend Zubaidi, Ahmad Ardilla Bioinformation Hypothesis NS5 methyltransferase (Mtase) has a crucial role in the replication of dengue virus. There are two active sites on NS5 Mtase i.e., SAM and RNA-cap binding sites. Inhibition of the NS5 Mtase activity is expected to prevent the propagation of dengue virus. This study was conducted to design cyclic peptide ligands as enzyme inhibitors of dengue virus NS5 Mtase through computational approach. Cyclopentapeptides were designed as ligand of SAM binding site as much as 1635 and 736 cyclopentpeptides were designed as ligand of RNA-cap binding site. Interaction between ligand and NS5 Mtase has been conducted on the Docking simulation. The result shows that cyclopentapeptide CTWYC was the best peptide candidate on SAM binding site, with estimated free binding energy -30.72 kca/mol. Cyclopentapeptide CYEFC was the best peptide on RNA-cap binding site with estimated free binding energy -22.89 kcal/mol. Both peptides did not have tendency toward toxicity properties. So it is expected that both CTWYC and CYEFC ligands could be used as a potential antiviral drug candidates, which can inhibit the SAM and RNA-cap binding sites of dengue virus NS5 Mtase. Biomedical Informatics 2012-04-30 /pmc/articles/PMC3346019/ /pubmed/22570514 http://dx.doi.org/10.6026/97320630008348 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
Idrus, Syarifuddin
Tambunan, Usman Sumo Friend
Zubaidi, Ahmad Ardilla
Designing cyclopentapeptide inhibitor as potential antiviral drug for dengue virus ns5 methyltransferase
title Designing cyclopentapeptide inhibitor as potential antiviral drug for dengue virus ns5 methyltransferase
title_full Designing cyclopentapeptide inhibitor as potential antiviral drug for dengue virus ns5 methyltransferase
title_fullStr Designing cyclopentapeptide inhibitor as potential antiviral drug for dengue virus ns5 methyltransferase
title_full_unstemmed Designing cyclopentapeptide inhibitor as potential antiviral drug for dengue virus ns5 methyltransferase
title_short Designing cyclopentapeptide inhibitor as potential antiviral drug for dengue virus ns5 methyltransferase
title_sort designing cyclopentapeptide inhibitor as potential antiviral drug for dengue virus ns5 methyltransferase
topic Hypothesis
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3346019/
https://www.ncbi.nlm.nih.gov/pubmed/22570514
http://dx.doi.org/10.6026/97320630008348
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