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Structural and functional basis of resistance to neuraminidase inhibitors of influenza B viruses.

Aaron J Oakley | Susan Barrett | Thomas S Peat | Janet Newman | Victor A Streltsov | Lynne Waddington | Takehiko Saito | Masato Tashiro | Jennifer L McKimm-Breschkin
Journal of medicinal chemistry | 2010

We have identified a virus, B/Perth/211/2001, with a spontaneous mutation, D197E in the neuraminidase (NA), which confers cross-resistance to all NA inhibitors. We analyzed enzyme properties of the D197 and E197 NAs and compared these to a D197N NA, known to arise after oseltamivir treatment. Zanamivir and peramivir bound slowly to the wild type NA, but binding of oseltamivir was more rapid. The D197E/N mutations resulted in faster binding of all three inhibitors. Analysis of the crystal structures of D197 and E197 NAs with and without inhibitors showed that the D197E mutation compromised the interaction of neighboring R150 with the N-acetyl group, common to the substrate sialic acid and all NA inhibitors. Although rotation of the E275 in the NA active site occurs upon binding peramivir in both the D197 and E197 NAs, this does not occur upon binding oseltamivir in the E197 NA. Lack of the E275 rotation would also account for the loss of slow binding and the partial resistance of influenza B wild type NAs to oseltamivir.

Pubmed ID: 20695427

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Associated grants

  • Agency: NIAID NIH HHS, United States
    Id: R01 AI062721
  • Agency: PHS HHS, United States
    Id: R01A1062721

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Cell line MDCK is a Spontaneously immortalized cell line with a species of origin Canis lupus familiaris

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