Uukuniemi virus infection causes a pervasive remodelling of the RNA-binding proteome in tick cell cultures
Cellular RNA-binding proteins (RBPs) are pivotal for the viral lifecycle, mediating key host-virus interactions that promote or repress virus infection. While these interactions have been largely studied in the vertebrate host, no comprehensive analyses of protein-RNA interactions occurring in cells of arbovirus vectors, in particular ticks, have been performed to date. Here we systematically identified the responses of the RNA-binding proteome (RBPome) to infection with a prototype bunyavirus (Uukuniemi virus; UUKV) in tick cells and discovered changes in RNA-binding activity for 283 proteins. In an orthogonal approach, we analysed the composition of the viral ribonucleoprotein by immunoprecipitation of UUKV nucleocapsid protein (N) in infected cells. We found many tick RBPs that are regulated by UUKV infection and associate with viral nucleocapsid protein complexes. We confirmed experimentally that these RBPs impact UUKV infection. This includes the tick homolog of topoisomerase 3B (TOP3B), a protein able to manipulate the topology of RNA, which showed an effect on viral particle production. Our data thus reveals the first protein-RNA interaction map for infected tick cells. Research highlightsO_LIUUKV RNAs interact with nearly three hundred tick cell RBPs. C_LIO_LIDemonstrated an enrichment of N protein interactors within the upregulated RIC data suggesting a direct involvement in viral RNA metabolism and translation. C_LIO_LIDeveloped a robust methodology to silence gene expression in tick cell cultures. C_LIO_LIThe TOP3B complex facilitates efficient packaging of UUKV virions. C_LI