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RIG-I-like receptor-induced IRF3 mediated pathway of apoptosis (RIPA): a new antiviral pathway

机译:RIG-I样受体诱导的IRF3介导的凋亡途径(RIPA):一种新的抗病毒途径

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摘要

The innate immune response is the first line of host defense to eliminate viral infection. Pattern recognition receptors in the cytosol, such as RIG-I-like receptors (RLR) and Nod-like receptors (NLR), and membrane bound Toll like receptors (TLR) detect viral infection and initiate transcription of a cohort of antiviral genes, including interferon (IFN) and interferon stimulated genes (ISGs), which ultimately block viral replication. Another mechanism to reduce viral spread is through RIPA, the RLR-induced IRF3-mediated pathway of apoptosis, which causes infected cells to undergo premature death. The transcription factor IRF3 can mediate cellular antiviral responses by both inducing antiviral genes and triggering apoptosis through the activation of RIPA. The mechanism of IRF3 activation in RIPA is distinct from that of transcriptional activation; it requires linear polyubiquitination of specific lysine residues of IRF3. Using RIPA-active, but transcriptionally inactive, IRF3 mutants, it was shown that RIPA can prevent viral replication and pathogenesis in mice.
机译:先天性免疫反应是消除病毒感染的宿主防御的第一线。胞浆中的模式识别受体,例如RIG-I样受体(RLR)和Nod样受体(NLR),以及膜结合的Toll样受体(TLR),可检测病毒感染并启动一系列抗病毒基因的转录,包括干扰素(IFN)和干扰素刺激基因(ISG),最终会阻止病毒复制。减少病毒传播的另一种机制是通过RIPA,RIPA是RLR诱导的IRF3介导的细胞凋亡途径,可导致感染的细胞过早死亡。转录因子IRF3可以通过诱导抗病毒基因并通过激活RIPA触发凋亡来介导细胞抗病毒反应。 RIPA中IRF3激活的机制不同于转录激活。它需要IRF3特定赖氨酸残基的线性多泛素化。使用具有RIPA活性但无转录活性的IRF3突变体,显示RIPA可以预防小鼠中的病毒复制和发病机理。

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