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Antiviral Activity of an Indole-Type Compound Derived from Natural Products, Identified by Virtual Screening by Interaction on Dengue Virus NS5 Protein

Dengue is an acute febrile illness caused by the Dengue virus (DENV), with a high number of cases worldwide. There is no available treatment that directly affects the virus or the viral cycle. The objective of this study was to identify a compound derived from natural products that interacts with th...

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Autores principales: García-Ariza, Leidy Lorena, González-Rivillas, Natalia, Díaz-Aguirre, Cindy Johanna, Rocha-Roa, Cristian, Padilla-Sanabria, Leonardo, Castaño-Osorio, Jhon Carlos
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10384440/
https://www.ncbi.nlm.nih.gov/pubmed/37515249
http://dx.doi.org/10.3390/v15071563
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author García-Ariza, Leidy Lorena
González-Rivillas, Natalia
Díaz-Aguirre, Cindy Johanna
Rocha-Roa, Cristian
Padilla-Sanabria, Leonardo
Castaño-Osorio, Jhon Carlos
author_facet García-Ariza, Leidy Lorena
González-Rivillas, Natalia
Díaz-Aguirre, Cindy Johanna
Rocha-Roa, Cristian
Padilla-Sanabria, Leonardo
Castaño-Osorio, Jhon Carlos
author_sort García-Ariza, Leidy Lorena
collection PubMed
description Dengue is an acute febrile illness caused by the Dengue virus (DENV), with a high number of cases worldwide. There is no available treatment that directly affects the virus or the viral cycle. The objective of this study was to identify a compound derived from natural products that interacts with the NS5 protein of the dengue virus through virtual screening and evaluate its in vitro antiviral effect on DENV-2. Molecular docking was performed on NS5 using AutoDock Vina software, and compounds with physicochemical and pharmacological properties of interest were selected. The preliminary antiviral effect was evaluated by the expression of the NS1 protein. The effect on viral genome replication and/or translation was determined by NS5 production using DENV-2 Huh-7 replicon through ELISA and viral RNA quantification using RT-qPCR. The in silico strategy proved effective in finding a compound (M78) with an indole-like structure and with an effect on the replication cycle of DENV-2. Treatment at 50 µM reduced the expression of the NS5 protein by 70% and decreased viral RNA by 1.7 times. M78 is involved in the replication and/or translation of the viral genome.
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spelling pubmed-103844402023-07-30 Antiviral Activity of an Indole-Type Compound Derived from Natural Products, Identified by Virtual Screening by Interaction on Dengue Virus NS5 Protein García-Ariza, Leidy Lorena González-Rivillas, Natalia Díaz-Aguirre, Cindy Johanna Rocha-Roa, Cristian Padilla-Sanabria, Leonardo Castaño-Osorio, Jhon Carlos Viruses Article Dengue is an acute febrile illness caused by the Dengue virus (DENV), with a high number of cases worldwide. There is no available treatment that directly affects the virus or the viral cycle. The objective of this study was to identify a compound derived from natural products that interacts with the NS5 protein of the dengue virus through virtual screening and evaluate its in vitro antiviral effect on DENV-2. Molecular docking was performed on NS5 using AutoDock Vina software, and compounds with physicochemical and pharmacological properties of interest were selected. The preliminary antiviral effect was evaluated by the expression of the NS1 protein. The effect on viral genome replication and/or translation was determined by NS5 production using DENV-2 Huh-7 replicon through ELISA and viral RNA quantification using RT-qPCR. The in silico strategy proved effective in finding a compound (M78) with an indole-like structure and with an effect on the replication cycle of DENV-2. Treatment at 50 µM reduced the expression of the NS5 protein by 70% and decreased viral RNA by 1.7 times. M78 is involved in the replication and/or translation of the viral genome. MDPI 2023-07-17 /pmc/articles/PMC10384440/ /pubmed/37515249 http://dx.doi.org/10.3390/v15071563 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
García-Ariza, Leidy Lorena
González-Rivillas, Natalia
Díaz-Aguirre, Cindy Johanna
Rocha-Roa, Cristian
Padilla-Sanabria, Leonardo
Castaño-Osorio, Jhon Carlos
Antiviral Activity of an Indole-Type Compound Derived from Natural Products, Identified by Virtual Screening by Interaction on Dengue Virus NS5 Protein
title Antiviral Activity of an Indole-Type Compound Derived from Natural Products, Identified by Virtual Screening by Interaction on Dengue Virus NS5 Protein
title_full Antiviral Activity of an Indole-Type Compound Derived from Natural Products, Identified by Virtual Screening by Interaction on Dengue Virus NS5 Protein
title_fullStr Antiviral Activity of an Indole-Type Compound Derived from Natural Products, Identified by Virtual Screening by Interaction on Dengue Virus NS5 Protein
title_full_unstemmed Antiviral Activity of an Indole-Type Compound Derived from Natural Products, Identified by Virtual Screening by Interaction on Dengue Virus NS5 Protein
title_short Antiviral Activity of an Indole-Type Compound Derived from Natural Products, Identified by Virtual Screening by Interaction on Dengue Virus NS5 Protein
title_sort antiviral activity of an indole-type compound derived from natural products, identified by virtual screening by interaction on dengue virus ns5 protein
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10384440/
https://www.ncbi.nlm.nih.gov/pubmed/37515249
http://dx.doi.org/10.3390/v15071563
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