Influenza A virus initiates genome selection through promoter-dependent nuclear export
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Influenza A virus replicates its segmented RNA genome in the nucleus in the context of viral ribonucleoprotein (vRNP) complexes. Newly synthesised vRNPs are exported to the cytoplasm for virion assembly, whereas structurally similar complementary RNPs (cRNPs), which function as replication intermediates, are not incorporated into virions. The molecular basis for this selectivity remains unclear. Here, combining promoter mutagenesis, single-molecule fluorescence in situ hybridisation (smFISH), virus-like particle (VLP) assays and cryo-electron microscopy (cryo-EM), we find that cRNPs are retained in the nucleus and that export competence is encoded by promoter architecture, with the length of the single-stranded 3′ promoter region as the principal contributing feature and promoter sequence and duplex architecture further modulating export efficiency. cRNPs carrying export-competent promoters are incorporated into virus-like particles, demonstrating a functional link between nuclear export and packaging competence. Cryo-EM analyses reveal that both 3′ vRNA and cRNA promoters bind a common polymerase surface site but are associated with distinct polymerase conformational landscapes, with only the vRNA promoter being compatible with an encapsidase conformation of the polymerase. Together, our findings identify a promoter-dependent checkpoint that links RNA promoter architecture and polymerase conformation to RNP export and packaging. These results demonstrate that influenza virus initiates genome selection in the nucleus and reveal nuclear export as an early step in genome selection.