Gingipain proteases from the bacterium <i>Porphyromonas gingivalis</i> confer protection against airway viral infection.

Rodriguez Hernandez, Carlos J; Cruz-Cruz, Alonso; Shrestha, Chandra L; Terekhova, Marina; Chen, Phylip; Perpich, John; Potempa, Barbara; Carey, Katherine et al. · Proc Natl Acad Sci U S A · 2026

basic_science · Level V

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Abstract

Physical interactions with bacterial colonizers at mucosal barrier surfaces can have beneficial or detrimental effects on viral infectivity and transmission. The oropharyngeal mucosal surface is a major portal of entry for many pathogenic respiratory viruses, such as respiratory syncytial virus (RSV), and also harbors a rich and diverse microbiome. Whether oropharyngeal bacteria directly or indirectly influence host susceptibility to respiratory viruses remains unknown. Here, we show that <i>Porphyromonas gingivalis</i>, an oral pathobiont, potently and uniquely suppresses airway epithelial antiviral immunity by degrading interferons (IFNs) and transcriptionally repressing multiple IFN-stimulated genes (ISGs), which are essential for providing resistance to viral infection. Despite inducing a state of IFN hyporesponsiveness, we found that <i>P. gingivalis</i> counterintuitively protected against severe infection by RSV and the closely related murine-specific Sendai virus (SeV) in two independent models: human airway bronchial epithelial transwell cultures and airway infection in mice. This protection was conferred by the activity of <i>P. gingivalis</i> cysteine proteases (gingipains) that cleaved envelope glycoproteins on RSV and SeV, thereby impairing their infectious capacity. Thus, our data show a nuanced role for <i>P. gingivalis</i> in modulating host susceptibility to viral infection. While <i>P. gingivalis</i> can significantly inhibit host IFN responses, its proteases preemptively reduce viral infectious capacity, protecting the host from severe damage associated with respiratory infections.

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