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Integrative Multi-Omics Analysis In Vivo Identifies Influenza A Virus Host Factors

Authors: 
Shriver LP, Polacco B, Eckhardt M, Chang MW, Martínez-Romero C, Adkins-Travis K, Cahalane C, Haas K, Stein DA, Fourati S, Martin-Sancho L, Metreveli G, Johnson JR, Muñoz-Moreno R, Newton BW, Kaake RM, Zhou Y, Jimenez-Morales D, VonDollen J, Verschueren E, Swaney DL, Nguyen TT, Stevenson EJ, Stancliffe E, Patti GJ, Albrecht R, Moulton HM, Pache L, Sekaly RP, Benner C, Hultquist JF, Chanda SK, Garcia Sastre A, Krogan NJ
Citation: 
iScience. 22 September 2025
Abstract: 
Influenza A virus (IAV) infection remodels cellular processes to support viral replication. Modulation of host factors by the virus drives pathogenesis during infection, and these factors may serve as therapeutic targets. Here, we infect mice with two IAV strains, H1N1 and H5N1, and analyze lung tissue with multi-omics. Using network propagation analysis, we identify twenty-four distinct host modules altered by infection encompassing 2920 genes/proteins. Independently, we develop a computational pipeline, MidTOD, which integrates metabolomic data with other OMICs data-types, linking metabolites to gene/protein alterations. Combining datasets from both approaches reveals alterations in mitochondrial and peroxisomal metabolism in IAV-infected cells and identifies arginine:glycine amidinotransferase (GATM) as a host dependency factor in both human cells and mice. Inhibition of this enzyme reduces IAV-mediated pathology and host inflammatory responses after infection. Collectively, this work provides an integrated systems-level view of host changes during infection and identifies an abundance of IAV-host factors.
Epub: 
Not Epub
Organism or Cell Type: 
Balb/CJ mice; mouse embryonic fibroblasts (MEFs)
Delivery Method: 
intranasal peptide-linked