Unravelling the Role of O-glycans in Influenza A Virus Infection

Publication date

2018-11-06

Authors

Mayr, Juliane
Lau, Kam
Lai, Jimmy C C
Gagarinov, Ivan A.ISNI 0000000492294519
Shi, Yun
McAtamney, Sarah
Chan, Renee W Y
Nicholls, John
von Itzstein, Mark
Haselhorst, Thomas

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Document Type

Article
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Abstract

The initial stage of host cell infection by influenza A viruses (IAV) is mediated through interaction of the viral haemagglutinin (HA) with cell surface glycans. The binding requirement of IAVs for Galβ(1,4)Glc/ GlcNAc (lactose/lactosamine) glycans with a terminal α(2,6)-linked (human receptors) or α(2,3)-linked (avian receptors) N-acetylneuraminic residue commonly found on N-glycans, is well-established. However the role and significance of sialylated Galβ(1,3)GalNAc (core 1) epitopes that are typical O-glycoforms in influenza virus pathogenesis remains poorly detailed. Here we report a multidisciplinary study using NMR spectroscopy, virus neutralization assays and molecular modelling, into the potential for IAV to engage sialyl-Galβ(1,3)GalNAc O-glycoforms for cell attachment. H5 containing virus like particles (VLPs) derived from an H5N1 avian IAV strain show a significant involvement of the O-glycan-specific GalNAc residue, coordinated by a EQTKLY motif conserved in highly pathogenic avian influenza (HPAI) strains. Notably, human pandemic H1N1 influenza viruses shift the preference from 'human-like' α(2,6)-linkages in sialylated Galβ(1,4)Glc/GlcNAc fragments to 'avian-like' α(2,3)-linkages in sialylated Galβ(1,3)GalNAc without involvement of the GalNAc residue. Overall, our study suggests that sialylated Galβ(1,3)GalNAc as O-glycan core 1 glycoforms are involved in the influenza A virus life cycle and play a particularly crucial role during infection of HPAI strains.

Keywords

article, avian influenza (H5N1), cell adhesion, controlled study, human, influenza A (H1N1), Influenza A virus, life cycle, molecular model, nonhuman, nuclear magnetic resonance spectroscopy, pandemic, virus like agent, virus neutralization, n acetylglucosamine, unclassified drug

Citation

Mayr, J, Lau, K, Lai, J C C, Gagarinov, I A, Shi, Y, McAtamney, S, Chan, R W Y, Nicholls, J, von Itzstein, M & Haselhorst, T 2018, 'Unravelling the Role of O-glycans in Influenza A Virus Infection', Scientific Reports, vol. 8, no. 1, 16382, pp. 1-12. https://doi.org/10.1038/s41598-018-34175-3