论文题目: | Influenza viral neuraminidase primes bacterial coinfection through TGF-β–mediated expression of host cell receptors. |
---|---|
作者: | Li Ning, Ren Aihui, Wang Xiaoshuang, Fan Xin, Zhao Yong, George F. Gao, Cleary Patrick, Wang Beinan* |
联系作者: | Wang Beinan* |
刊物名称: | Proceedings of the National Academy of Sciences |
期: | |
卷: | |
页: | |
年份: | 2014 |
影响因子: | 10.727 |
论文下载: | http://www.pnas.org/content/early/2014/12/17/1414422112.abstract |
摘要: | Influenza infection predisposes the host to secondary bacterial pneumonia, which is a major cause of mortality during influenza epidemics. The molecular mechanisms underlying the bacterial coinfection remain elusive. Neuraminidase (NA) of influenza A virus (IAV) enhances bacterial adherence and also activates TGF-β. Because TGF-β can up-regulate host adhesion molecules such as fibronectin and integrins for bacterial binding, we hypothesized that activated TGF-β during IAV infection contributes to secondary bacterial infection by up-regulating these host adhesion molecules. Flow cytometric analyses of a human lung epithelial cell line indicated that the expression of fibronectin and α5 integrin was up-regulated after IAV infection or treatment with recombinant NA and was reversed through the inhibition of TGF-β signaling. IAV-promoted adherence of group A Streptococcus (GAS) and other coinfective pathogens that require fibronectin for binding was prevented significantly by the inhibition of TGF-β. However, IAV did not promote the adherence of Lactococcus lactis unless this bacterium expressed the fibronectin-binding protein of GAS. Mouse experiments showed that IAV infection enhanced GAS colonization in the lungs of wild-type animals but not in the lungs of mice deficient in TGF-β signaling. Taken together, these results reveal a previously unrecognized mechanism: IAV NA enhances the expression of cellular adhesins through the activation of TGF-β, leading to increased bacterial loading in the lungs. Our results suggest that TGF-β and cellular adhesins may be potential pharmaceutical targets for the prevention of coinfection. |
京公网安备 11010502044263号