Literature DB >> 22217114

Mechanism of drug resistance of hemagglutinin of influenza virus and potent scaffolds inhibiting its function.

Hiroshi Yanagita1, Norio Yamamoto, Hideyoshi Fuji, Xinli Liu, Masakazu Ogata, Mizuho Yokota, Hiroshi Takaku, Hideki Hasegawa, Takato Odagiri, Masato Tashiro, Tyuji Hoshino.   

Abstract

Highly pathogenic influenza viruses have become a global threat to humans. It is important to select an effective therapeutic option suitable for the subtypes in an epidemic or pandemic. To increase the options, the development of novel antiviral agents acting on targets different from those of the currently approved drugs is required. In this study, we performed molecular dynamics simulations on a spike protein on the viral envelop, hemagglutinin, for the wild-type and three kinds of mutants using a model system consisting of a trimeric hemagglutinin complex, viral lipid membrane, solvation waters, and ions. A natural product, stachyflin, which shows a high level of antiviral activity specific to some subtypes of influenza viruses, was examined on binding to the wild-type hemagglutinin by docking simulation. The compound potency of stachyflin is, however, easily lost due to resistant mutations. From a comparison of simulation results between the wild-type and the resistant mutants, the reason for the drug resistance of hemagglutinin was clarified. Next, 8 compounds were selected from a chemical database by in silico screening, considering the findings from the simulations. Inhibitory activities to suppress the proliferation of influenza virus were measured by cell-based antiviral assays, and two chemical scaffolds were found to be potent for an inhibitor. More than 30 derivatives bearing either of these two chemical scaffolds were synthesized, and cell culture assays were carried out to evaluate the compound potency. Several derivatives displayed a high compound potency, and 50% effective concentrations of two synthesized compounds were below 1 μM.

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Year:  2012        PMID: 22217114     DOI: 10.1021/cb200332k

Source DB:  PubMed          Journal:  ACS Chem Biol        ISSN: 1554-8929            Impact factor:   5.100


  3 in total

1.  A modular synthesis of tetracyclic meroterpenoid antibiotics.

Authors:  Raphael Wildermuth; Klaus Speck; Franz-Lucas Haut; Peter Mayer; Bianka Karge; Mark Brönstrup; Thomas Magauer
Journal:  Nat Commun       Date:  2017-12-12       Impact factor: 14.919

2.  Discovery of New Ginsenol-Like Compounds with High Antiviral Activity.

Authors:  Aleksandrina S Volobueva; Olga I Yarovaya; Marina V Kireeva; Sophia S Borisevich; Kseniya S Kovaleva; Iliya Ya Mainagashev; Yuri V Gatilov; Margarita G Ilyina; Vladimir V Zarubaev; Nariman F Salakhutdinov
Journal:  Molecules       Date:  2021-11-10       Impact factor: 4.411

3.  Antiviral activity of stachyflin on influenza A viruses of different hemagglutinin subtypes.

Authors:  Yurie Motohashi; Manabu Igarashi; Masatoshi Okamatsu; Takeshi Noshi; Yoshihiro Sakoda; Naoki Yamamoto; Kimihito Ito; Ryu Yoshida; Hiroshi Kida
Journal:  Virol J       Date:  2013-04-16       Impact factor: 4.099

  3 in total

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