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ATF6 Signaling Is Required for Efficient West Nile Virus Replication by Promoting Cell Survival and Inhibition of Innate Immune Responses

机译:通过促进细胞存活和抑制先天免疫反应,有效的西尼罗河病毒复制需要aTF6信号传导

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摘要

West Nile virus strain Kunjin (WNV(KUN)) is an enveloped, positive-sense RNA virus within the virus family Flaviviridae. Many flaviviruses have been shown to manipulate multiple signaling pathways, including autophagic, innate immune, and stress responses, in order to benefit replication. In particular, we have demonstrated that WNV(KUN) regulates the unfolded protein response (UPR), skewing the downstream effectors toward chaperone expression and Xbp-1 activation while preventing PERK-mediated translation attenuation and C/EBP homologous protein (CHOP) upregulation. WNV(KUN)-regulated UPR signaling can then be hijacked in order to affect type I interferon (IFN) responses, preventing IFN-mediated STAT1 phosphorylation and nuclear translocation. To extend our previous observations, we aimed to investigate the contribution of ATF6- and IRE1-mediated signaling during WNV(KUN) replication and how the two sensors contribute to the inhibition of IFN signaling. ATF6-deficient cells infected with WNV(KUN) showed decreased protein and virion production. These cells also demonstrated increased eIF2α phosphorylation and CHOP transcription, absent in infected matched control cells. Thus, we propose that in the absence of ATF6, WNV(KUN) is incapable of manipulating the PERK-mediated response to infection. In contrast, infection of IRE1(-/-) knockout cells showed no discernible differences compared to IRE1(+/+) cells. However, both ATF6 and IRE1 were required for WNV(KUN)-induced inhibition of STAT1 phosphorylation. We suggest that the combination of abhorrent UPR signaling, promotion of cell death, and increased innate immune responses contributes to the replication defects in ATF6-deficient cells, thus demonstrating the dual importance of ATF6 in maintaining cell viability and modulating immune responses during WNV(KUN) infection.
机译:西尼罗河病毒株Kunjin(WNV(KUN))是黄病毒科病毒科中的一种有包膜的正义RNA病毒。已显示许多黄病毒可操纵多种信号传导途径,包括自噬,先天免疫和应激反应,以利于复制。特别是,我们已经证明WNV(KUN)调节未折叠的蛋白应答(UPR),使下游效应子偏向伴侣表达和Xbp-1激活,同时防止PERK介导的翻译减弱和C / EBP同源蛋白(CHOP)上调。然后可以劫持WNV(KUN)调节的UPR信号,以影响I型干扰素(IFN)反应,防止IFN介导的STAT1磷酸化和核易位。为了扩展我们之前的观察,我们旨在研究ATF6和IRE1介导的信号在WNV(KUN)复制过程中的作用,以及这两个传感器如何对IFN信号的抑制作出贡献。感染WNV(KUN)的ATF6缺陷细胞显示蛋白质和病毒体产量降低。这些细胞还显示出增强的eIF2α磷酸化和CHOP转录,在感染的匹配对照细胞中不存在。因此,我们建议在没有ATF6的情况下,WNV(KUN)无法操纵PERK介导的感染反应。相反,与IRE1(+ / +)细胞相比,IRE1(-/-)敲除细胞的感染没有明显区别。但是,ATF6和IRE1都是WNV(KUN)诱导的STAT1磷酸化抑制所必需的。我们建议,可恶的UPR信号传导,促进细胞死亡和增加先天免疫应答的组合有助于ATF6缺陷细胞中的复制缺陷,从而证明ATF6在维持细胞生存力和调节WNV(KUN)免疫应答中具有双重重要性) 感染。

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