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N-Phenylpyridine-3-Carboxamide and 6-Acetyl-1H-Indazole Inhibit the RNA Replication Step of the Dengue Virus Life Cycle
Dengue virus (DENV) is a Flavivirus that causes the most prevalent arthropod-borne viral disease. Clinical manifestation of DENV infection ranges from asymptomatic to severe symptoms that can lead to death. Unfortunately, no antiviral treatments against DENV are currently available. In order to iden...
Autores principales: | , , , , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
American Society for Microbiology
2023
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9933715/ https://www.ncbi.nlm.nih.gov/pubmed/36700643 http://dx.doi.org/10.1128/aac.01331-22 |
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author | Sow, Aïssatou Aïcha Pahmeier, Felix Ayotte, Yann Anton, Anaïs Mazeaud, Clément Charpentier, Tania Angelo, Léna Woo, Simon Cerikan, Berati Falzarano, Darryl Abrahamyan, Levon Lamarre, Alain Labonté, Patrick Cortese, Mirko Bartenschlager, Ralf LaPlante, Steven R. Chatel-Chaix, Laurent |
author_facet | Sow, Aïssatou Aïcha Pahmeier, Felix Ayotte, Yann Anton, Anaïs Mazeaud, Clément Charpentier, Tania Angelo, Léna Woo, Simon Cerikan, Berati Falzarano, Darryl Abrahamyan, Levon Lamarre, Alain Labonté, Patrick Cortese, Mirko Bartenschlager, Ralf LaPlante, Steven R. Chatel-Chaix, Laurent |
author_sort | Sow, Aïssatou Aïcha |
collection | PubMed |
description | Dengue virus (DENV) is a Flavivirus that causes the most prevalent arthropod-borne viral disease. Clinical manifestation of DENV infection ranges from asymptomatic to severe symptoms that can lead to death. Unfortunately, no antiviral treatments against DENV are currently available. In order to identify novel DENV inhibitors, we screened a library of 1,604 chemically diversified fragment-based compounds using DENV reporter viruses that allowed quantification of viral replication in infected cells. Following a validation screening, the two best inhibitor candidates were N-phenylpyridine-3-carboxamide (NPP3C) and 6-acetyl-1H-indazole (6A1HI). The half maximal effective concentration of NPP3C and 6A1H1 against DENV were 7.1 μM and 6.5 μM, respectively. 6A1H1 decreased infectious DENV particle production up to 1,000-fold without any cytotoxicity at the used concentrations. While 6A1HI was DENV-specific, NPP3C also inhibited the replication of other flaviviruses such as West Nile virus and Zika virus. Structure-activity relationship (SAR) studies with 151 analogues revealed key structural elements of NPP3C and 6A1HI required for their antiviral activity. Time-of-drug-addition experiments identified a postentry step as a target of these compounds. Consistently, using a DENV subgenomic replicon, we demonstrated that these compounds specifically impede the viral RNA replication step and exhibit a high genetic barrier-to-resistance. In contrast, viral RNA translation and the de novo biogenesis of DENV replication organelles were not affected. Overall, our data unveil NPP3C and 6A1H1 as novel DENV inhibitors. The information revealed by our SAR studies will help chemically optimize NPP3C and 6A1H1 in order to improve their anti-flaviviral potency and to challenge them in in vivo models. |
format | Online Article Text |
id | pubmed-9933715 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2023 |
publisher | American Society for Microbiology |
record_format | MEDLINE/PubMed |
spelling | pubmed-99337152023-02-17 N-Phenylpyridine-3-Carboxamide and 6-Acetyl-1H-Indazole Inhibit the RNA Replication Step of the Dengue Virus Life Cycle Sow, Aïssatou Aïcha Pahmeier, Felix Ayotte, Yann Anton, Anaïs Mazeaud, Clément Charpentier, Tania Angelo, Léna Woo, Simon Cerikan, Berati Falzarano, Darryl Abrahamyan, Levon Lamarre, Alain Labonté, Patrick Cortese, Mirko Bartenschlager, Ralf LaPlante, Steven R. Chatel-Chaix, Laurent Antimicrob Agents Chemother Antiviral Agents Dengue virus (DENV) is a Flavivirus that causes the most prevalent arthropod-borne viral disease. Clinical manifestation of DENV infection ranges from asymptomatic to severe symptoms that can lead to death. Unfortunately, no antiviral treatments against DENV are currently available. In order to identify novel DENV inhibitors, we screened a library of 1,604 chemically diversified fragment-based compounds using DENV reporter viruses that allowed quantification of viral replication in infected cells. Following a validation screening, the two best inhibitor candidates were N-phenylpyridine-3-carboxamide (NPP3C) and 6-acetyl-1H-indazole (6A1HI). The half maximal effective concentration of NPP3C and 6A1H1 against DENV were 7.1 μM and 6.5 μM, respectively. 6A1H1 decreased infectious DENV particle production up to 1,000-fold without any cytotoxicity at the used concentrations. While 6A1HI was DENV-specific, NPP3C also inhibited the replication of other flaviviruses such as West Nile virus and Zika virus. Structure-activity relationship (SAR) studies with 151 analogues revealed key structural elements of NPP3C and 6A1HI required for their antiviral activity. Time-of-drug-addition experiments identified a postentry step as a target of these compounds. Consistently, using a DENV subgenomic replicon, we demonstrated that these compounds specifically impede the viral RNA replication step and exhibit a high genetic barrier-to-resistance. In contrast, viral RNA translation and the de novo biogenesis of DENV replication organelles were not affected. Overall, our data unveil NPP3C and 6A1H1 as novel DENV inhibitors. The information revealed by our SAR studies will help chemically optimize NPP3C and 6A1H1 in order to improve their anti-flaviviral potency and to challenge them in in vivo models. American Society for Microbiology 2023-01-26 /pmc/articles/PMC9933715/ /pubmed/36700643 http://dx.doi.org/10.1128/aac.01331-22 Text en Copyright © 2023 Sow et al. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (https://creativecommons.org/licenses/by/4.0/) . |
spellingShingle | Antiviral Agents Sow, Aïssatou Aïcha Pahmeier, Felix Ayotte, Yann Anton, Anaïs Mazeaud, Clément Charpentier, Tania Angelo, Léna Woo, Simon Cerikan, Berati Falzarano, Darryl Abrahamyan, Levon Lamarre, Alain Labonté, Patrick Cortese, Mirko Bartenschlager, Ralf LaPlante, Steven R. Chatel-Chaix, Laurent N-Phenylpyridine-3-Carboxamide and 6-Acetyl-1H-Indazole Inhibit the RNA Replication Step of the Dengue Virus Life Cycle |
title | N-Phenylpyridine-3-Carboxamide and 6-Acetyl-1H-Indazole Inhibit the RNA Replication Step of the Dengue Virus Life Cycle |
title_full | N-Phenylpyridine-3-Carboxamide and 6-Acetyl-1H-Indazole Inhibit the RNA Replication Step of the Dengue Virus Life Cycle |
title_fullStr | N-Phenylpyridine-3-Carboxamide and 6-Acetyl-1H-Indazole Inhibit the RNA Replication Step of the Dengue Virus Life Cycle |
title_full_unstemmed | N-Phenylpyridine-3-Carboxamide and 6-Acetyl-1H-Indazole Inhibit the RNA Replication Step of the Dengue Virus Life Cycle |
title_short | N-Phenylpyridine-3-Carboxamide and 6-Acetyl-1H-Indazole Inhibit the RNA Replication Step of the Dengue Virus Life Cycle |
title_sort | n-phenylpyridine-3-carboxamide and 6-acetyl-1h-indazole inhibit the rna replication step of the dengue virus life cycle |
topic | Antiviral Agents |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9933715/ https://www.ncbi.nlm.nih.gov/pubmed/36700643 http://dx.doi.org/10.1128/aac.01331-22 |
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