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首页> 外文期刊>Scientific reports. >FOXO3a regulates rhinovirus-induced innate immune responses in airway epithelial cells
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FOXO3a regulates rhinovirus-induced innate immune responses in airway epithelial cells

机译:FOXO3A调节鼻病毒诱导的气道上皮细胞的先天免疫应答

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Forkhead transcription factor class O (FOXO)3a, which plays a critical role in a wide variety of cellular processes, was also found to regulate cell-type-specific antiviral responses. Airway epithelial cells express FOXO3a and play an important role in clearing rhinovirus (RV) by mounting antiviral type I and type III interferon (IFN) responses. To elucidate the role of FOXO3a in regulating antiviral responses, we generated airway epithelial cell-specific Foxo3a knockout (Scga1b1-Foxo3a-/-) mice and a stable FOXO3a knockout human airway epithelial cell line. Compared to wild-type, Scga1b1-Foxo3a-/- mice show reduced IFN-α, IFN-β, IFN-λ2/3 in response to challenge with RV or double-stranded (ds)RNA mimic, Poly Inosinic-polycytidylic acid (Poly I:C) indicating defective dsRNA receptor signaling. RV-infected Scga1b1-Foxo3a-/- mice also show viral persistence, enhanced lung inflammation and elevated pro-inflammatory cytokine levels. FOXO3a K/O airway epithelial cells show attenuated IFN responses to RV infection and this was associated with conformational change in mitochondrial antiviral signaling protein (MAVS) but not with a reduction in the expression of dsRNA receptors under unstimulated conditions. Pretreatment with MitoTEMPO, a mitochondrial-specific antioxidant corrects MAVS conformation and restores antiviral IFN responses to subsequent RV infection in FOXO3a K/O cells. Inhibition of oxidative stress also reduces pro-inflammatory cytokine responses to RV in FOXO3a K/O cells. Together, our results indicate that FOXO3a plays a critical role in regulating antiviral responses as well as limiting pro-inflammatory cytokine expression. Based on these results, we conclude that FOXO3a contributes to optimal viral clearance and prevents excessive lung inflammation following RV infection.
机译:还发现,在各种细胞过程中起关键作用的Forkhead转录因子o(Foxo)3a,用于调节细胞类型特异性抗病毒反应。气道上皮细胞表达Foxo3a并通过安装抗病毒型I和III型干扰素(IFN)反应在清除鼻病毒(RV)中起重要作用。为了阐明FOXO3A在调节抗病毒反应方面的作用,我们产生了气道上皮细胞特异性FOXO3A敲除(SCGA1B1-FOXO3A - / - / - )小鼠和稳定的FOXO3A敲除人气气道上皮细胞系。与野生型SCGA1B1-FOXO3A - / - 小鼠响应于用RV或双链(DS)RNA模拟,聚肌苷 - 多环酸()响应于攻击IFN-α,IFN-β,IFN-β2/ 3,IFN-β2/ 3响应于攻击。 poly i:c)表明DsRNA受体信号传导缺陷。 RV感染的SCGA1B1-FoxO3A - / - 小鼠还显示病毒持久性,增强的肺炎和升高的促炎细胞因子水平。 FOXO3A K / O气道上皮细胞显示对RV感染的衰减IFN反应,这与线粒体抗病毒信号蛋白(MAV)的构象变化有关,但在未刺激条件下没有减少DSRNA受体的表达。用Mitotempo预处理,一种线粒体特异性抗氧化剂校正MAVS构象并恢复抗病毒IFN反应在FOXO3A K / O细胞中随后的RV感染。氧化应激的抑制还降低了FoxO3A K / O细胞中对RV的促炎细胞因子响应。我们的结果表明Foxo3a在调节抗病毒反应以及限制促炎细胞因子表达方面发挥着关键作用。基于这些结果,我们得出结论,FOXO3A有助于最佳的病毒清除,防止在RV感染后过度肺炎。

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