SARS-CoV-2 NSP14 induces AP-1 transcriptional activity via its interaction with MEK

IF 3.2 3区 医学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY Molecular immunology Pub Date : 2024-09-11 DOI:10.1016/j.molimm.2024.09.001
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Abstract

The NSP14 protein of SARS-CoV-2 not only facilitates viral replication but also plays a pivotal role in activating the host immune system by enhancing cytokine production. In this study, we found that NSP14 markedly activated the activator protein 1 (AP-1) pathway by increasing the phosphorylation of ERK (p-ERK), which enters the nucleus and promotes AP-1 transcription. The screening of the main proteins of the ERK pathway revealed that NSP14 could interact with MEK, a kinase of ERK, and increase the level of phosphorylated MEK. The addition of the MEK inhibitor U0126 suppressed the level of p-ERK induced by NSP14 and partly blocked cytokine production, suggesting that NSP14 activates MEK to enhance AP-1 signaling. Further investigation demonstrated that the ExoN domain of NSP14 might be crucial for the interaction and activation of MEK. These results suggest a novel mechanism by which NSP14 of SARS-CoV-2 induces a proinflammatory response in the host.

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SARS-CoV-2 NSP14 通过与 MEK 相互作用诱导 AP-1 转录活性
SARS-CoV-2 的 NSP14 蛋白不仅能促进病毒的复制,还能通过增强细胞因子的产生在激活宿主免疫系统方面发挥关键作用。在这项研究中,我们发现 NSP14 通过增加 ERK(p-ERK)的磷酸化显著激活了激活蛋白 1(AP-1)通路,ERK 进入细胞核并促进 AP-1 的转录。对ERK通路的主要蛋白进行筛选后发现,NSP14能与ERK的激酶MEK相互作用,提高磷酸化MEK的水平。加入MEK抑制剂U0126可抑制NSP14诱导的p-ERK水平,并部分阻断细胞因子的产生,这表明NSP14可激活MEK以增强AP-1信号传导。进一步的研究表明,NSP14的ExoN结构域可能是与MEK相互作用和激活MEK的关键。这些结果表明,SARS-CoV-2 的 NSP14 是一种诱导宿主产生促炎反应的新机制。
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来源期刊
Molecular immunology
Molecular immunology 医学-免疫学
CiteScore
6.90
自引率
2.80%
发文量
324
审稿时长
50 days
期刊介绍: Molecular Immunology publishes original articles, reviews and commentaries on all areas of immunology, with a particular focus on description of cellular, biochemical or genetic mechanisms underlying immunological phenomena. Studies on all model organisms, from invertebrates to humans, are suitable. Examples include, but are not restricted to: Infection, autoimmunity, transplantation, immunodeficiencies, inflammation and tumor immunology Mechanisms of induction, regulation and termination of innate and adaptive immunity Intercellular communication, cooperation and regulation Intracellular mechanisms of immunity (endocytosis, protein trafficking, pathogen recognition, antigen presentation, etc) Mechanisms of action of the cells and molecules of the immune system Structural analysis Development of the immune system Comparative immunology and evolution of the immune system "Omics" studies and bioinformatics Vaccines, biotechnology and therapeutic manipulation of the immune system (therapeutic antibodies, cytokines, cellular therapies, etc) Technical developments.
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