Screening for neuraminidase inhibitor resistance markers among avian influenza viruses of the N4, N5, N6, and N8 neuraminidase subtypes

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Title
Screening for neuraminidase inhibitor resistance markers among avian influenza viruses of the N4, N5, N6, and N8 neuraminidase subtypes
Author(s)
W S Choi; J H Jeong; J J Kwon; S J Ahn; K K S Lloren; H I Kwon; H B Chae; Jungwon HwangMyung Hee Kim; C J Kim; R J Webby; E A Govorkova; Y K Choi; Y H Baek; M S Song
Bibliographic Citation
Journal of Virology, vol. 92, no. 1, pp. e01580-e01580
Publication Year
2018
Abstract
Several subtypes of avian influenza viruses (AIVs) are emerging as novel human pathogens, and the frequency of related infections has increased in recent years. Although neuraminidase (NA) inhibitors (NAIs) are the only class of antiviral drugs available for therapeutic intervention for AIV-infected patients, studies on NAI resistance among AIVs have been limited, and markers of resistance are poorly understood. Previously, we identified unique NAI resistance substitutions in AIVs of the N3, N7, and N9 NA subtypes. Here, we report profiles of NA substitutions that confer NAI resistance in AIVs of the N4, N5, N6, and N8 NA subtypes using genefragmented random mutagenesis. We generated libraries of mutant influenza viruses using reverse genetics (RG) and selected resistant variants in the presence of the NAIs oseltamivir carboxylate and zanamivir in MDCK cells. In addition, two substitutions, H274Y and R292K (N2 numbering), were introduced into each NA gene for comparison. We identified 37 amino acid substitutions within the NA gene, 16 of which (4 in N4, 4 in N5, 4 in N6, and 4 in N8) conferred resistance to NAIs (oseltamivir carboxylate, zanamivir, or peramivir) as determined using a fluorescence-based NA inhibition assay. Substitutions conferring NAI resistance were mainly categorized as either novel NA subtype specific (G/N147V/I, A246V, and I427L) or previously reported in other subtypes (E119A/D/V, Q136K, E276D, R292K, and R371K). Our results demonstrate that each NA subtype possesses unique NAI resistance markers, and knowledge of these substitutions in AIVs is important in facilitating antiviral susceptibility monitoring of NAI resistance in AIVs. ⓒ 2017 American Society for Microbiology.
Keyword
Avian influenza virusN4N5N6N8Neuraminidase inhibitorRandom mutagenesisResistance
ISSN
0022-538X
Publisher
Amer Soc Microb
Full Text Link
http://dx.doi.org/10.1128/JVI.01580-17
Type
Article
Appears in Collections:
Division of A.I. & Biomedical Research > Microbiome Convergence Research Center > 1. Journal Articles
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