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Suppression of Proinflammatory Signal Transduction and Gene Expression by the Dual Nucleic Acid Binding Domains of the Vaccinia Virus E3L Proteins

机译:牛痘病毒E3L蛋白的双核酸结合域抑制促炎信号转导和基因表达。

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摘要

Cells have evolved elaborate mechanisms to counteract the onslaught of viral infections. To activate these defenses, the viral threat must be recognized. Danger signals, or pathogen-associated molecular patterns, that are induced by pathogens include double-stranded RNA (dsRNA), viral single-stranded RNA, glycolipids, and CpG DNA. Understanding the signal transduction pathways activated and host gene expression induced by these danger signals is vital to understanding virus-host interactions. The vaccinia virus E3L protein is involved in blocking the host antiviral response and increasing pathogenesis, functions that map to separate C-terminal dsRNA- and N-terminal Z-DNA-binding domains. Viruses containing mutations in these domains allow modeling of the role of dsRNA and Z-form nucleic acid in the host response to virus infection. Deletions in the Z-DNA- or dsRNA-binding domains led to activation of signal transduction cascades and up-regulation of host gene expression, with many genes involved in the inflammatory response. These data suggest that poxviruses actively inhibit cellular recognition of viral danger signals and the subsequent cellular response to the viral threat.
机译:细胞已经进化出复杂的机制来抵消病毒感染的袭击。要激活这些防御措施,必须认识到病毒威胁。病原体诱导的危险信号或与病原体相关的分子模式包括双链RNA(dsRNA),病毒单链RNA,糖脂和CpG DNA。了解由这些危险信号激活的信号转导途径和诱导的宿主基因表达对于了解病毒-宿主相互作用至关重要。牛痘病毒E3L蛋白参与阻断宿主抗病毒应答并增加发病机理,其功能映射至分离的C端dsRNA-和N端Z-DNA结合域。在这些结构域中包含突变的病毒可以模拟dsRNA和Z型核酸在宿主对病毒感染的反应中的作用。 Z-DNA或dsRNA结合域的缺失导致信号转导级联反应的激活和宿主基因表达的上调,其中许多基因参与了炎症反应。这些数据表明,痘病毒可积极抑制细胞对病毒危险信号的识别以及随后对病毒威胁的细胞反应。

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