The methyltransferase Setdb2 mediates virus-induced susceptibility to bacterial superinfection

Infection with influenza virus can result in bacterial superinfection, but the mechanisms underlying this process are unclear. Bergthaler and colleagues demonstrate that influenza virus upregulates the methyltransferase Setdb2, which attenuates select proinflammatory gene expression and heightens su...

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Published inNature immunology Vol. 16; no. 1; pp. 67 - 74
Main Authors Schliehe, Christopher, Flynn, Elizabeth K, Vilagos, Bojan, Richson, Udochuku, Swaminathan, Savitha, Bosnjak, Berislav, Bauer, Lisa, Kandasamy, Richard K, Griesshammer, Isabel M, Kosack, Lindsay, Schmitz, Frank, Litvak, Vladimir, Sissons, James, Lercher, Alexander, Bhattacharya, Anannya, Khamina, Kseniya, Trivett, Anna L, Tessarollo, Lino, Mesteri, Ildiko, Hladik, Anastasiya, Merkler, Doron, Kubicek, Stefan, Knapp, Sylvia, Epstein, Michelle M, Symer, David E, Aderem, Alan, Bergthaler, Andreas
Format Journal Article
LanguageEnglish
Published New York Nature Publishing Group US 01.01.2015
Nature Publishing Group
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Summary:Infection with influenza virus can result in bacterial superinfection, but the mechanisms underlying this process are unclear. Bergthaler and colleagues demonstrate that influenza virus upregulates the methyltransferase Setdb2, which attenuates select proinflammatory gene expression and heightens susceptibility to bacterial infection. Immune responses are tightly regulated to ensure efficient pathogen clearance while avoiding tissue damage. Here we report that Setdb2 was the only protein lysine methyltransferase induced during infection with influenza virus. Setdb2 expression depended on signaling via type I interferons, and Setdb2 repressed expression of the gene encoding the neutrophil attractant CXCL1 and other genes that are targets of the transcription factor NF-κB. This coincided with occupancy by Setdb2 at the Cxcl1 promoter, which in the absence of Setdb2 displayed diminished trimethylation of histone H3 Lys9 (H3K9me3). Mice with a hypomorphic gene-trap construct of Setdb2 exhibited increased infiltration of neutrophils during sterile lung inflammation and were less sensitive to bacterial superinfection after infection with influenza virus. This suggested that a Setdb2-mediated regulatory crosstalk between the type I interferons and NF-κB pathways represents an important mechanism for virus-induced susceptibility to bacterial superinfection.
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Present address: GeneDx Inc., Gaithersburg, MD, USA.
Present address: Institute of Molecular Biotechnology (IMBA) of the Austrian Academy of Sciences, Vienna, Austria.
ISSN:1529-2908
1529-2916
1529-2916
DOI:10.1038/ni.3046