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A Quinolinone Compound Inhibiting the Oligomerization of Nucleoprotein of Influenza A Virus Prevents the Selection of Escape Mutants

The emergence of resistance to currently available anti-influenza drugs has heightened the need for antivirals with novel mechanisms of action. The influenza A virus (IAV) nucleoprotein (NP) is highly conserved and essential for the formation of viral ribonucleoprotein (vRNP), which serves as the te...

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Autores principales: Makau, Juliann Nzembi, Watanabe, Ken, Otaki, Hiroki, Mizuta, Satoshi, Ishikawa, Takeshi, Kamatari, Yuji O., Nishida, Noriyuki
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7150793/
https://www.ncbi.nlm.nih.gov/pubmed/32204549
http://dx.doi.org/10.3390/v12030337
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author Makau, Juliann Nzembi
Watanabe, Ken
Otaki, Hiroki
Mizuta, Satoshi
Ishikawa, Takeshi
Kamatari, Yuji O.
Nishida, Noriyuki
author_facet Makau, Juliann Nzembi
Watanabe, Ken
Otaki, Hiroki
Mizuta, Satoshi
Ishikawa, Takeshi
Kamatari, Yuji O.
Nishida, Noriyuki
author_sort Makau, Juliann Nzembi
collection PubMed
description The emergence of resistance to currently available anti-influenza drugs has heightened the need for antivirals with novel mechanisms of action. The influenza A virus (IAV) nucleoprotein (NP) is highly conserved and essential for the formation of viral ribonucleoprotein (vRNP), which serves as the template for replication and transcription. Recently, using in silico screening, we identified an antiviral compound designated NUD-1 (a 4-hydroxyquinolinone derivative) as a potential inhibitor of NP. In this study, we further analyzed the interaction between NUD-1 and NP and found that the compound interferes with the oligomerization of NP, which is required for vRNP formation, leading to the suppression of viral transcription, protein synthesis, and nuclear export of NP. We further assessed the selection of resistant variants by serially passaging a clinical isolate of the 2009 H1N1 pandemic influenza virus in the presence of NUD-1 or oseltamivir. NUD-1 did not select for resistant variants after nine passages, whereas oseltamivir selected for resistant variants after five passages. Our data demonstrate that NUD-1 interferes with the oligomerization of NP and less likely induces drug-resistant variants than oseltamivir; hence, it is a potential lead compound for the development of novel anti-influenza drugs.
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spelling pubmed-71507932020-04-20 A Quinolinone Compound Inhibiting the Oligomerization of Nucleoprotein of Influenza A Virus Prevents the Selection of Escape Mutants Makau, Juliann Nzembi Watanabe, Ken Otaki, Hiroki Mizuta, Satoshi Ishikawa, Takeshi Kamatari, Yuji O. Nishida, Noriyuki Viruses Article The emergence of resistance to currently available anti-influenza drugs has heightened the need for antivirals with novel mechanisms of action. The influenza A virus (IAV) nucleoprotein (NP) is highly conserved and essential for the formation of viral ribonucleoprotein (vRNP), which serves as the template for replication and transcription. Recently, using in silico screening, we identified an antiviral compound designated NUD-1 (a 4-hydroxyquinolinone derivative) as a potential inhibitor of NP. In this study, we further analyzed the interaction between NUD-1 and NP and found that the compound interferes with the oligomerization of NP, which is required for vRNP formation, leading to the suppression of viral transcription, protein synthesis, and nuclear export of NP. We further assessed the selection of resistant variants by serially passaging a clinical isolate of the 2009 H1N1 pandemic influenza virus in the presence of NUD-1 or oseltamivir. NUD-1 did not select for resistant variants after nine passages, whereas oseltamivir selected for resistant variants after five passages. Our data demonstrate that NUD-1 interferes with the oligomerization of NP and less likely induces drug-resistant variants than oseltamivir; hence, it is a potential lead compound for the development of novel anti-influenza drugs. MDPI 2020-03-19 /pmc/articles/PMC7150793/ /pubmed/32204549 http://dx.doi.org/10.3390/v12030337 Text en © 2020 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Makau, Juliann Nzembi
Watanabe, Ken
Otaki, Hiroki
Mizuta, Satoshi
Ishikawa, Takeshi
Kamatari, Yuji O.
Nishida, Noriyuki
A Quinolinone Compound Inhibiting the Oligomerization of Nucleoprotein of Influenza A Virus Prevents the Selection of Escape Mutants
title A Quinolinone Compound Inhibiting the Oligomerization of Nucleoprotein of Influenza A Virus Prevents the Selection of Escape Mutants
title_full A Quinolinone Compound Inhibiting the Oligomerization of Nucleoprotein of Influenza A Virus Prevents the Selection of Escape Mutants
title_fullStr A Quinolinone Compound Inhibiting the Oligomerization of Nucleoprotein of Influenza A Virus Prevents the Selection of Escape Mutants
title_full_unstemmed A Quinolinone Compound Inhibiting the Oligomerization of Nucleoprotein of Influenza A Virus Prevents the Selection of Escape Mutants
title_short A Quinolinone Compound Inhibiting the Oligomerization of Nucleoprotein of Influenza A Virus Prevents the Selection of Escape Mutants
title_sort quinolinone compound inhibiting the oligomerization of nucleoprotein of influenza a virus prevents the selection of escape mutants
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7150793/
https://www.ncbi.nlm.nih.gov/pubmed/32204549
http://dx.doi.org/10.3390/v12030337
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