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A FADD-dependent innate immune mechanism in mammalian cells

机译:FADD依赖于哺乳动物细胞的先天免疫机制

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Vertebrate innate immunity provides a first line of defence against pathogens such as viruses and bacteria. Viral infection activates a potent innate immune response, which can be triggered by double-stranded (ds) RNA produced during viral replication(1-3). Here, we report that mammalian cells lacking the death-domain-containing protein FADD(4,5) are defective in intracellular dsRNA-activated gene expression, including production of type I (a/b) interferons, and are thus very susceptible to viral infection. The signalling pathway incorporating FADD is largely independent of Toll-like receptor 3 and the dsRNA-dependent kinase PKR, but seems to require receptor interacting protein 1 as well as Tank-binding kinase 1-mediated activation of the transcription factor IRF-3. The requirement for FADD in mammalian host defence is evocative of innate immune signalling in Drosophila, in which a FADD-dependent pathway responds to bacterial infection by activating the transcription of antimicrobial genes(6). These data therefore suggest the existence of a conserved pathogen recognition pathway in mammalian cells that is essential for the optimal induction of type I interferons and other genes important for host defence.
机译:脊椎动物的先天免疫力为抵御诸如病毒和细菌等病原体提供了第一道防线。病毒感染会激活强大的先天免疫反应,这种反应可以由病毒复制过程中产生的双链(ds)RNA触发(1-3)。在这里,我们报告哺乳动物细胞缺乏包含死亡域的蛋白质FADD(4,5)在细胞内dsRNA激活的基因表达(包括产生I型(a / b)干扰素)中存在缺陷,因此对病毒非常敏感感染。包含FADD的信号通路在很大程度上独立于Toll样受体3和dsRNA依赖性激酶PKR,但似乎需要受体相互作用蛋白1以及Tank结合激酶1介导的转录因子IRF-3活化。哺乳动物宿主防御中对FADD的需求唤起了果蝇的先天免疫信号传导,其中FADD依赖性途径通过激活抗菌素基因的转录来响应细菌感染(6)。因此,这些数据表明哺乳动物细胞中存在保守的病原体识别途径,这对于最佳诱导I型干扰素和其他对宿主防御至关重要的基因至关重要。

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