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Coordinated Destruction of Cellular Messages in Translation Complexes by the Gammaherpesvirus Host Shutoff Factor and the Mammalian Exonuclease Xrn1

机译:γ疱疹病毒宿主关闭因子和哺乳动物核酸外切酶Xrn1协同破坏翻译复合物中的细胞信息。

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摘要

Several viruses encode factors that promote host mRNA degradation to silence gene expression. It is unclear, however, whether cellular mRNA turnover pathways are engaged to assist in this process. In Kaposi's sarcoma-associated herpesvirus this phenotype is enacted by the host shutoff factor SOX. Here we show that SOX-induced mRNA turnover is a two-step process, in which mRNAs are first cleaved internally by SOX itself then degraded by the cellular exonuclease Xrn1. SOX therefore bypasses the regulatory steps of deadenylation and decapping normally required for Xrn1 activation. SOX is likely recruited to translating mRNAs, as it cosediments with translation initiation complexes and depletes polysomes. Cleaved mRNA intermediates accumulate in the 40S fraction, indicating that recognition occurs at an early stage of translation. This is the first example of a viral protein commandeering cellular mRNA turnover pathways to destroy host mRNAs, and suggests that Xrn1 is poised to deplete messages undergoing translation in mammalian cells.
机译:几种病毒编码促进宿主mRNA降解以沉默基因表达的因子。但是,尚不清楚是否参与了细胞mRNA转换途径来协助这一过程。在卡波济氏肉瘤相关的疱疹病毒中,这种表型是由宿主封闭因子SOX引起的。在这里,我们显示SOX诱导的mRNA转换是一个两步过程,其中mRNA首先被SOX自身内部切割,然后被细胞外切核酸酶Xrn1降解。因此,SOX绕过了Xrn1激活通常所需的去甲腺苷酸化和脱盖的调节步骤。由于SOX与翻译起始复合物并耗尽多核糖体,因此可能招募SOX来翻译mRNA。裂解的mRNA中间体在40S馏分中积累,表明识别发生在翻译的早期。这是病毒蛋白控制细胞mRNA转换途径破坏宿主mRNA的第一个例子,表明Xrn1有望耗尽哺乳动物细胞中正在翻译的信息。

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