Abstract / Summary
N6-methyladenosine (m6A) RNA modifications regulate diverse cellular processes, including the response to virus infection. However, how m6A controls antiviral gene expression and whether effects on viral replication are due to direct modification of viral RNA or regulation of cellular transcripts remain unclear. Herein, we analysed how m6A modifications control the cell-autonomous innate immune response to influenza A virus (IAV) infection. Depletion or inhibition of the m6A writer METTL3 or the m6A reader YTHDF2 restricts IAV replication. However, using a quantitative method to identify m6A sites, we did not detect substantial m6A modification of viral RNA. In contrast, many IAV-induced cellular transcripts were m6A modified in their coding region, including those that encode pattern recognition receptors and direct antiviral proteins. Inhibition of interferon signalling restored IAV replication after METTL3 inhibition, highlighting that m6A controls the antiviral response to infection. METTL3 inhibition increased expression of the paralogous antiviral proteins IFITM2 and IFITM3, which were required for the antiviral activity of the METTL3 inhibitor. We propose that m6A modifications regulate the expression of antiviral proteins to limit the magnitude of their induction and balance antiviral activity with maintaining cellular homeostasis.