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A Bicistronic MAVS Transcript Highlights a Class of Truncated Variants in Antiviral Immunity

机译:双顺反子MAVS成绩单突出显示了抗病毒免疫的一类截短的变体

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Bacterial and viral mRNAs are often polycistronic. Akin to alternative splicing, alternative translation of polycistronic messages is a mechanism to generate protein diversity and regulate gene function. Although a few examples exist, the use of polycistronic messages in mammalian cells is not widely appreciated. Here we report an example of alternative translation as a means of regulating innate immune signaling. MAVS, a regulator of antiviral innate immunity, is expressed from a bicistronic mRNA encoding a second protein, miniMAVS. This truncated variant interferes with interferon production induced by full-length MAVS, whereas both proteins positively regulate cell death. To identify other polycistronic messages, we carried out genomewide ribosomal profiling and identified a class of antiviral truncated variants. This study therefore reveals the existence of a functionally important bicistronic antiviral mRNA and suggests a widespread role for polycistronic mRNAs in the innate immune system.
机译:细菌和病毒的mRNA通常是多顺反子。与选择性剪接类似,多顺反子信息的选择性翻译是一种产生蛋白质多样性和调节基因功能的机制。尽管存在一些例子,但是在哺乳动物细胞中多顺反子信息的使用并未得到广泛认可。在这里,我们报告一个替代翻译的例子,作为调节先天免疫信号的一种手段。 MAVS是抗病毒先天免疫的调节剂,由编码第二种蛋白质miniMAVS的双顺反子mRNA表达。这种截短的变体干扰了全长MAVS诱导的干扰素产生,而这两种蛋白均能积极调节细胞死亡。为了鉴定其他多顺反子信息,我们进行了全基因组的核糖体谱分析,并鉴定了一类抗病毒截短的变体。因此,这项研究揭示了功能上重要的双顺反子抗病毒mRNA的存在,并暗示了多顺反子mRNA在先天免疫系统中的广泛作用。

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