PM2.5 promotes replication of VSV by ubiquitination degradation of phospho-IRF3 in A549 cells
Jing Wu, Kehui Zhu, Xiaolu Luo, Yajing Han, Baohuan Zhang, Zichen Wang, Shirui Dong, Xiaoqian Zou, Xiaojing Chen, Hongxuan Liu, Tianyuan Wu, Zhong Zheng, Yuefeng Xie, Jierong Zhao, Yumei Liu, Zihao W
Journal:TOXICOLOGY IN VITRO
IF:3.07
DOI:10.1016/j.tiv.2019.104698
PMID:
Published:2019-10-24
research field:细胞生物学免疫学环境科学病毒学
Abstract
Both PM2.5 and respiratory viruses are part of the atmospheric constituents. Respiratory viruses are often associated with PM2.5 exposure, but the mechanism of toxicity remains to be explored. The vitro models that adequately reproduce healthy cells or diseased cells exposing to PM2.5 and infecting VSV can provide a useful tool for studying innate immune mechanisms and investigating new therapeutic focus. In the environment of PM2.5, an infection model in which VSV infected A549 cells was established, that mimics the state in which the antiviral innate immune pathways are activated after the respiratory system is infected with RNA viruses. Subsequently, the model was exposed to PM2.5 for 24 h. PM2.5 could be ingested by A549 cells and synergize with VSV to inhibit cell viability and promote apoptosis. The expression of VSV-G were more abundant after VSV-infected A549 cells were exposed to PM2.5. Furthermore, PM2.5 inhibits VSV-induced IFN-β expression in A549 cells. ISG15, CCL-5, and CXCL-10 had the same expression tendency with IFN-β mRNA, consistently. Interestingly, when MG132 was applied, the expression of p-IRF-3 and IFN-β proteins reduced by PM2.5 were refreshed. Conversely, the expression of VSV-G proteins were decreased. PM2.5 could degrade p-IRF-3 proteins by ubiquitination pathway to inhibit VSV-induced IFN-β expression in A549 cells. Therefore, replication of the VSV viruses was promoted.
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