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通过整合应激反应通路激活 ATF3 调节固有免疫反应以限制寨卡病毒。

Activation of ATF3 via the integrated stress response pathway regulates innate immune response to restrict Zika virus.

机构信息

Department of Biological Sciences, College of Arts and Sciences, University at Albany-SUNY, Albany, New York, USA.

The RNA Institute, College of Arts and Sciences, University at Albany-SUNY, Albany, New York, USA.

出版信息

J Virol. 2024 Oct 22;98(10):e0105524. doi: 10.1128/jvi.01055-24. Epub 2024 Aug 30.

Abstract

UNLABELLED

Zika virus (ZIKV) is a re-emerging mosquito-borne flavivirus that can have devastating health consequences. The developmental and neurological effects of a ZIKV infection arise in part from the virus triggering cellular stress pathways and perturbing transcriptional programs. To date, the underlying mechanisms of transcriptional control directing viral restriction and virus-host interaction are understudied. Activating Transcription Factor 3 (ATF3) is a stress-induced transcriptional effector that modulates the expression of genes involved in a myriad of cellular processes, including inflammation and antiviral responses, to restore cellular homeostasis. While ATF3 is known to be upregulated during ZIKV infection, the mode by which ATF3 is activated, and the specific role of ATF3 during ZIKV infection is unknown. In this study, we show via inhibitor and RNA interference approaches that ZIKV infection initiates the integrated stress response pathway to activate ATF4 which in turn induces ATF3 expression. Additionally, by using CRISPR-Cas9 system to delete ATF3, we found that ATF3 acts to limit ZIKV gene expression in A549 cells. We also determined that ATF3 enhances the expression of antiviral genes such as STAT1 and other components in the innate immunity pathway to induce an ATF3-dependent anti-ZIKV response. Our study reveals crosstalk between the integrated stress response and innate immune response pathways and highlights an important role for ATF3 in establishing an antiviral effect during ZIKV infection.

IMPORTANCE

Zika virus (ZIKV) is a re-emerging mosquito-borne flavivirus that co-opts cellular mechanisms to support viral processes that can reprogram the host transcriptional profile. Such viral-directed transcriptional changes and the pro- or anti-viral outcomes remain understudied. We previously showed that ATF3, a stress-induced transcription factor, is significantly upregulated in ZIKV-infected mammalian cells, along with other cellular and immune response genes. We now define the intracellular pathway responsible for ATF3 activation and elucidate the impact of ATF3 expression on ZIKV infection. We show that during ZIKV infection, the integrated stress response pathway stimulates ATF3 which enhances the innate immune response to antagonize ZIKV infection. This study establishes a link between viral-induced stress response and transcriptional regulation of host defense pathways and thus expands our knowledge of virus-mediated transcriptional mechanisms and transcriptional control of interferon-stimulated genes during ZIKV infection.

摘要

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寨卡病毒(ZIKV)是一种重新出现的蚊媒黄病毒,可对健康造成严重后果。ZIKV 感染的发育和神经影响部分源于病毒触发细胞应激途径和扰乱转录程序。迄今为止,指导病毒限制和病毒-宿主相互作用的转录控制的潜在机制研究还不够。激活转录因子 3(ATF3)是一种应激诱导的转录效应物,可调节参与众多细胞过程(包括炎症和抗病毒反应)的基因表达,以恢复细胞内稳态。虽然已知 ZIKV 感染时 ATF3 上调,但 ATF3 被激活的方式以及 ZIKV 感染过程中 ATF3 的具体作用尚不清楚。在这项研究中,我们通过抑制剂和 RNA 干扰方法表明,ZIKV 感染会引发整合应激反应途径,从而激活 ATF4,进而诱导 ATF3 表达。此外,通过使用 CRISPR-Cas9 系统删除 ATF3,我们发现 ATF3 可限制 A549 细胞中的 ZIKV 基因表达。我们还确定 ATF3 增强了抗病毒基因(如 STAT1)和先天免疫途径中的其他成分的表达,以诱导依赖 ATF3 的抗 ZIKV 反应。我们的研究揭示了整合应激反应和先天免疫反应途径之间的串扰,并强调了 ATF3 在 ZIKV 感染期间建立抗病毒作用中的重要作用。

重要性

寨卡病毒(ZIKV)是一种重新出现的蚊媒黄病毒,它利用细胞机制来支持病毒过程,从而重新编程宿主转录谱。这种病毒指导的转录变化和促或抗病毒结果仍研究不足。我们之前曾表明,应激诱导的转录因子 ATF3 在感染 ZIKV 的哺乳动物细胞中以及其他细胞和免疫反应基因中显著上调。现在,我们定义了负责 ATF3 激活的细胞内途径,并阐明了 ATF3 表达对 ZIKV 感染的影响。我们表明,在 ZIKV 感染期间,整合应激反应途径刺激 ATF3,从而增强先天免疫反应以拮抗 ZIKV 感染。这项研究建立了病毒诱导的应激反应与宿主防御途径转录调节之间的联系,从而扩展了我们对病毒介导的转录机制和 ZIKV 感染过程中干扰素刺激基因转录控制的认识。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3464/11494902/8ca32778bc8b/jvi.01055-24.f001.jpg

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