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In Silico Screening and Molecular Dynamics Simulation Studies in the Identification of Natural Compound Inhibitors Targeting the Human Norovirus RdRp Protein to Fight Gastroenteritis

Norovirus (HNoV) is a leading cause of gastroenteritis globally, and there are currently no treatment options or vaccines available to combat it. RNA-dependent RNA polymerase (RdRp), one of the viral proteins that direct viral replication, is a feasible target for therapeutic development. Despite th...

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Autores principales: Obaid, Rami J., Shafie, Alaa, Malik, M. Shaheer, Al-Rooqi, Munirah M., Moussa, Ziad, Abdulaziz, Osama, Aljuaid, Abdulelah, Allahyani, Mamdouh, Almehmadi, Mazen, Anjum, Farah, Ahmed, Saleh A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10002960/
https://www.ncbi.nlm.nih.gov/pubmed/36902433
http://dx.doi.org/10.3390/ijms24055003
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author Obaid, Rami J.
Shafie, Alaa
Malik, M. Shaheer
Al-Rooqi, Munirah M.
Moussa, Ziad
Abdulaziz, Osama
Aljuaid, Abdulelah
Allahyani, Mamdouh
Almehmadi, Mazen
Anjum, Farah
Ahmed, Saleh A.
author_facet Obaid, Rami J.
Shafie, Alaa
Malik, M. Shaheer
Al-Rooqi, Munirah M.
Moussa, Ziad
Abdulaziz, Osama
Aljuaid, Abdulelah
Allahyani, Mamdouh
Almehmadi, Mazen
Anjum, Farah
Ahmed, Saleh A.
author_sort Obaid, Rami J.
collection PubMed
description Norovirus (HNoV) is a leading cause of gastroenteritis globally, and there are currently no treatment options or vaccines available to combat it. RNA-dependent RNA polymerase (RdRp), one of the viral proteins that direct viral replication, is a feasible target for therapeutic development. Despite the discovery of a small number of HNoV RdRp inhibitors, the majority of them have been found to possess a little effect on viral replication, owing to low cell penetrability and drug-likeness. Therefore, antiviral agents that target RdRp are in high demand. For this purpose, we used in silico screening of a library of 473 natural compounds targeting the RdRp active site. The top two compounds, ZINC66112069 and ZINC69481850, were chosen based on their binding energy (BE), physicochemical and drug-likeness properties, and molecular interactions. ZINC66112069 and ZINC69481850 interacted with key residues of RdRp with BEs of −9.7, and −9.4 kcal/mol, respectively, while the positive control had a BE of −9.0 kcal/mol with RdRp. In addition, hits interacted with key residues of RdRp and shared several residues with the PPNDS, the positive control. Furthermore, the docked complexes showed good stability during the molecular dynamic simulation of 100 ns. ZINC66112069 and ZINC69481850 could be proven as potential inhibitors of the HNoV RdRp in future antiviral medication development investigations.
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spelling pubmed-100029602023-03-11 In Silico Screening and Molecular Dynamics Simulation Studies in the Identification of Natural Compound Inhibitors Targeting the Human Norovirus RdRp Protein to Fight Gastroenteritis Obaid, Rami J. Shafie, Alaa Malik, M. Shaheer Al-Rooqi, Munirah M. Moussa, Ziad Abdulaziz, Osama Aljuaid, Abdulelah Allahyani, Mamdouh Almehmadi, Mazen Anjum, Farah Ahmed, Saleh A. Int J Mol Sci Article Norovirus (HNoV) is a leading cause of gastroenteritis globally, and there are currently no treatment options or vaccines available to combat it. RNA-dependent RNA polymerase (RdRp), one of the viral proteins that direct viral replication, is a feasible target for therapeutic development. Despite the discovery of a small number of HNoV RdRp inhibitors, the majority of them have been found to possess a little effect on viral replication, owing to low cell penetrability and drug-likeness. Therefore, antiviral agents that target RdRp are in high demand. For this purpose, we used in silico screening of a library of 473 natural compounds targeting the RdRp active site. The top two compounds, ZINC66112069 and ZINC69481850, were chosen based on their binding energy (BE), physicochemical and drug-likeness properties, and molecular interactions. ZINC66112069 and ZINC69481850 interacted with key residues of RdRp with BEs of −9.7, and −9.4 kcal/mol, respectively, while the positive control had a BE of −9.0 kcal/mol with RdRp. In addition, hits interacted with key residues of RdRp and shared several residues with the PPNDS, the positive control. Furthermore, the docked complexes showed good stability during the molecular dynamic simulation of 100 ns. ZINC66112069 and ZINC69481850 could be proven as potential inhibitors of the HNoV RdRp in future antiviral medication development investigations. MDPI 2023-03-05 /pmc/articles/PMC10002960/ /pubmed/36902433 http://dx.doi.org/10.3390/ijms24055003 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Obaid, Rami J.
Shafie, Alaa
Malik, M. Shaheer
Al-Rooqi, Munirah M.
Moussa, Ziad
Abdulaziz, Osama
Aljuaid, Abdulelah
Allahyani, Mamdouh
Almehmadi, Mazen
Anjum, Farah
Ahmed, Saleh A.
In Silico Screening and Molecular Dynamics Simulation Studies in the Identification of Natural Compound Inhibitors Targeting the Human Norovirus RdRp Protein to Fight Gastroenteritis
title In Silico Screening and Molecular Dynamics Simulation Studies in the Identification of Natural Compound Inhibitors Targeting the Human Norovirus RdRp Protein to Fight Gastroenteritis
title_full In Silico Screening and Molecular Dynamics Simulation Studies in the Identification of Natural Compound Inhibitors Targeting the Human Norovirus RdRp Protein to Fight Gastroenteritis
title_fullStr In Silico Screening and Molecular Dynamics Simulation Studies in the Identification of Natural Compound Inhibitors Targeting the Human Norovirus RdRp Protein to Fight Gastroenteritis
title_full_unstemmed In Silico Screening and Molecular Dynamics Simulation Studies in the Identification of Natural Compound Inhibitors Targeting the Human Norovirus RdRp Protein to Fight Gastroenteritis
title_short In Silico Screening and Molecular Dynamics Simulation Studies in the Identification of Natural Compound Inhibitors Targeting the Human Norovirus RdRp Protein to Fight Gastroenteritis
title_sort in silico screening and molecular dynamics simulation studies in the identification of natural compound inhibitors targeting the human norovirus rdrp protein to fight gastroenteritis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10002960/
https://www.ncbi.nlm.nih.gov/pubmed/36902433
http://dx.doi.org/10.3390/ijms24055003
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