Leaked genomic and mitochondrial DNA contribute to the host response to noroviruses in a STING-dependent manner
The cGAS-STING pathway is central to the IFN response against DNA viruses. However, recent studies are increasingly demonstrating its role in the restriction of some RNA viruses. Here we show that the cGAS-STING pathway also contributes to the IFN response against noroviruses, positive-sense single-stranded RNA viruses that are now one of the most common causes of infectious gastroenteritis world-wide. We show a significant reduction in IFN-{beta} induction and a corresponding increase in viral replication in norovirus-infected cells following STING inhibition, knockdown or deletion. Upstream of STING, we show that cells lacking either cGAS or IFI16 also have severely impaired IFN responses. Further, we demonstrate that immunostimulatory host genome-derived DNA, and to a lesser extent mitochondrial DNA, accumulate in the cytosol of norovirus-infected cells. And lastly, overexpression of the viral NS4 protein was sufficient to drive the accumulation of cytosolic DNA. Together, our data elucidate a role for cGAS, IFI16 and STING in the restriction of noroviruses, and demonstrate for the first time the utility of host genomic DNA as a damage-associated molecular pattern in cells infected with an RNA virus. HighlightsO_LIcGAS, IFI16 and STING are required for a robust IFN response against noroviruses C_LIO_LINuclear and mitochondrial DNA accumulate in the cytosols of infected cells C_LIO_LIViral NS4 mediates accumulation of cytosolic DNA C_LI