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mRNA maturation in giant viruses: variation on a theme

机译:巨型病毒中的mRNA成熟:一个主题的变异

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Giant viruses from the Mimiviridae family replicate entirely in their host cytoplasm where their genes are transcribed by a viral transcription apparatus. mRNA polyadenylation uniquely occurs at hairpin-forming palindromic sequences terminating viral transcripts. Here we show that a conserved gene cluster both encode the enzyme responsible for the hairpin cleavage and the viral polyA polymerases (vPAP). Unexpectedly, the vPAPs are homodimeric and uniquely self-processive. The vPAP backbone structures exhibit a symmetrical architecture with two subdomains sharing a nucleotidyltransferase topology, suggesting that vPAPs originate from an ancestral duplication. A Poxvirus processivity factor homologue encoded by Megavirus chilensis displays a conserved 5'-GpppA 2'O methyltransferase activity but is also able to internally methylate the mRNAs' polyA tails. These findings elucidate how the arm wrestling between hosts and their viruses to access the translation machinery is taking place in Mimiviridae.
机译:来自Mimiviridae家族的巨型病毒完全在其宿主细胞质中复制,在此处它们的基因被病毒转录仪转录。 mRNA多聚腺苷酸独特地发生在终止病毒转录物的发夹形成回文序列上。在这里,我们显示一个保守的基因簇既编码负责发夹裂解的酶,又编码病毒的polyA聚合酶(vPAP)。出乎意料的是,vPAP是同型二聚体,并且具有独特的自我过程性。 vPAP骨架结构展示了一个对称结构,其中两个亚域共享一个核苷酸转移酶拓扑结构,这表明vPAP源自祖先复制。由墨西哥巨型病毒编码的痘病毒持续性因子同源物显示出保守的5'-GpppA 2'O甲基转移酶活性,但也能够内部甲基化mRNA的polyA尾巴。这些发现阐明了宿主病毒与其病毒之间的手臂搏斗如何在翻译病毒科中发生。

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