Abstract
<jats:p>Rabies virus phosphoprotein (P protein) antagonizes interferon signalling by selectively targeting activated STAT1 protein, but the structural basis for the selective recognition of activated STAT1 has remained unclear. Here we report cryo-EM structures of tyrosine-phosphorylated STAT1 (pY-STAT1) in complex with the C-terminal domain of P protein (P-CTD). P-CTD engages the pY-STAT1 tetramer through three discrete interfaces, contacting two DNA-binding domains within a pY-mediated STAT1 dimer and the N-terminal domain of a third STAT1 protomer. This binding mode explains how P-CTD selectively recognizes activated STAT1, occludes surfaces required for importin α5 and DNA binding, and stabilizes the compact tetrameric state, thereby restricting the conformational transition required for cooperative DNA binding. Cell-based assays further indicate that distinct P-CTD surfaces differentially contribute to antagonism of type I and type II interferon signalling. Further, by acting as an anchoring molecule, P-CTD also enabled structural elucidation of the complete STAT1 structures in the tetramer. Together, these data reveal critical mechanisms in viral immune evasion and pathogenesis, and fundamental innate immune signaling.</jats:p>