首页> 外文期刊>The Journal of Immunology: Official Journal of the American Association of Immunologists >Characterization of fish IRF3 as an IFN-inducible protein reveals evolving regulation of IFN response in vertebrates.
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Characterization of fish IRF3 as an IFN-inducible protein reveals evolving regulation of IFN response in vertebrates.

机译:鱼IRF3作为IFN诱导型蛋白的表征揭示了脊椎动物中IFN反应的不断调节。

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摘要

In mammals, IFN regulatory factor (IRF) 3 is a critical player in modulating transcription of type I IFN and IFN-stimulated genes (ISGs). In this study, we describe the roles of crucian carp (Carassius auratus L.) IRF3 in activating fish IFN and ISGs. Fish IRF3 exhibits a large sequence divergence from mammalian orthologs. Whereas mammalian IRF3 is constitutively expressed, fish IRF3 protein is significantly upregulated by IFN, poly-IC, and other stimuli known as IFN inducers in mammals. The IFN-inducible property of fish IRF3 is consistent with the comparative analysis of 5' flanking regulatory region of vertebrate IRF3 genes, which reveals the presence of typical IFN-stimulated response elements in fish and amphibians, but an absence in tetrapods. Furthermore, either IFN or poly-IC induces phosphorylation and cytoplasmic-to-nuclear translocation of IRF3, which seems essential for its function in that phosphomimic active IRF3 exhibits stronger transactivation than wild type IRF3. Finally, overexpression of fish IRF3 activates production of IFN that in turn triggers ISG transcription through Stat1 pathway, whereas transfection of dominant negative mutant IRF3-DN abrogates poly-IC induction of ISGs, probably owing to blockade of IFN production. Therefore, regulation of IFN response by vertebrate IRF3 is another ancient trait. These data provide evidence of the evolving function of vertebrate IRF3 on regulating IFN response.
机译:在哺乳动物中,IFN调节因子(IRF)3是调节I型IFN和IFN刺激基因(ISG)转录的关键因素。在这项研究中,我们描述了鱼IRF3在激活鱼IFN和ISG中的作用。鱼IRF3与哺乳动物直系同源物表现出很大的序列差异。哺乳动物IRF3组成型表达,而鱼类IRF3蛋白则被IFN,poly-IC和其他在哺乳动物中称为IFN诱导剂的刺激显着上调。鱼IRF3的IFN诱导特性与脊椎动物IRF3基因5'侧翼调控区的比较分析一致,该分析揭示了鱼和两栖动物中存在典型的IFN刺激反应元件,而四足动物中则没有。此外,IFN或poly-IC均可诱导IRF3的磷酸化和胞质至核的易位,这似乎对它的功能至关重要,因为具有磷酸化活性的IRF3表现出比野生型IRF3更强的反式激活作用。最后,鱼IRF3的过表达激活IFN的产生,进而通过Stat1途径触发ISG转录,而显性负突变体IRF3-DN的转染取消了ISG的多IC诱导,这可能是由于IFN产生的阻断。因此,脊椎动物IRF3对IFN应答的调节是另一个古老的特征。这些数据提供了脊椎动物IRF3在调节IFN反应中进化功能的证据。

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