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Yellow fever vaccine propagation in primary human hepatocytes triggers antiviral and cytolytic responses

Kleinert, R. D. V.; Herrmann, M.; Goemer, A.; Sirkinti, L.; Miskey, C.; Brueggemann, Y.; Dixit, N.; Bechtel, T. S.; Beikirch, M.; Frericks, N.; Qu, B.; Sawatsky, B.; Ticha, O.; Hehner, J.; Grande, Y. F.; Herker, E.; Grove, J.; Steinmann, E.; Todt, D.; Brown, R. J. P.

2026-01-21 microbiology
10.64898/2026.01.21.700765 bioRxiv
Show abstract

Yellow fever virus (YFV) infection can cause severe-to-fatal liver damage in humans, while immunization with the attenuated 17D vaccine strain has an excellent safety record, priming protective host immunity in the absence of pathology. To investigate virus-host correlates associated with these differential clinical outcomes, we combined YFV genome-level evolutionary analyses with investigations of vaccine and virulent strain hepatotropism. Evolutionary analyses confirmed purifying selection is the dominant force driving global YFV genome divergence, with functional constraints associated with the YFV transmission cycle selecting against vaccine attenuating mutations in virulent strains. In immune deficient hepatoma cells, 17D exhibited enhanced early propagation, spreading and apoptosis induction when compared to virulent strains. Ex vivo infections performed in primary human hepatocytes (PHH) from multiple donors confirmed robust propagation of both 17D and virulent YFV strains. RNA-sequencing revealed consistent and shared induction of IFNB and IFNL1-4, modulating overlapping gene programs associated with antiviral responses, immunity, chemotaxis and inflammation, cell-death, metabolic reprogramming and protein translation. Subtle differences in virion production kinetics and the magnitude and tempo of PHH transcriptional responses were observed. Antiviral responses to 17D were activated earlier while responses to virulent YFV were delayed but enhanced, mirroring virus propagation kinetics. More broadly, cellular responses to YFV infection are likely dominated by paracrine IFN signalling, with enriched LRP1 expression coupled with impaired IFN production in PHH contributing to YFVs robust hepatotropism. In summary, we demonstrate comparable propagation kinetics and PHH transcriptional responses to vaccine and virulent YFV strains, highlighting impaired hepatotropism is not a correlate of vaccine attenuation. These data imply that unknown barriers restrict liver access and associated organ pathology upon vaccination with 17D.

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