Abstract
The interferon (IFN)-inducible RNA editor ADAR1 p150 catalyzes adenosine-to-inosine (A-to-I) editing of host and viral double-stranded RNAs, limiting aberrant innate immune sensing and regulating gene expression. How ADAR1 p150 activity is regulated during host-virus interactions remains poorly understood. Here, we identify the IFN-stimulated gene OASL as an inhibitor of ADAR1 p150. OASL engages p150 through two distinct interactions: its N-terminal OAS domain associates with the RNA-binding domains in an RNA-dependent manner, whereas its C-terminal ubiquitin-like domains bind the Zα domain independently of RNA. Despite their distinct canonical functions, the OAS and ubiquitin-like domains converge to limit ADAR1 p150 RNA binding and suppress A-to-I editing across the transcriptome. OASL also reverses p150-mediated suppression of antiviral and innate immune gene expression and counteracts p150-mediated enhancement of measles virus and vesicular stomatitis virus replication. Thus, OASL restrains ADAR1 p150, linking interferon signaling to the control of RNA editing and antiviral immunity.