Abstract
Influenza A virus (IAV) remains a global threat due to its ability to cause pandemics, making the identification of host factors essential for developing new antiviral strategies. In this study, we utilized CRISPR-based techniques to investigate host factors that impact IAV infectivity. Knockout of CMAS, a key enzyme in sialic acid biosynthesis, significantly reduced IAV binding and infection by disrupting sialic acid production on the cell surface. Overexpression of B4GALNT2 had similar effects, conferring resistance to IAV infection through diminished cell-surface binding. Overexpression of ADAR1, known for its role in RNA editing and immune regulation, impacted IAV replication minimally but enhanced coxsackie B virus replication. Such findings reveal the diverse roles of host factors in viral infection, offering insights for targeted therapeutic development against IAV and other pathogens.
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CITATION STYLE
Kyawe, P. P., Liu, P., Jiang, Z., Bradley, E. S., Cicuto, T., Trombly, M. I., … Wang, J. P. (2025). CRISPR editing of candidate host factors that impact influenza A virus infection. Microbiology Spectrum, 13(3). https://doi.org/10.1128/spectrum.02627-24
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