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Evidence that avian reovirus sigma NS is an RNA chaperone: implications for genome segment assortment

机译:禽呼肠孤病毒sigma NS是RNA伴侣的证据:对基因组片段分类的影响

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Reoviruses are important human, animal and plant pathogens having 10-12 segments of double-stranded genomic RNA. The mechanisms controlling the assortment and packaging of genomic segments in these viruses, remain poorly understood. RNA-protein and RNA-RNA interactions between viral genomic segment precursors have been implicated in the process. While non-structural viral RNA-binding proteins, such as avian reovirus sigma NS, are essential for virus replication, the mechanism by which they assist packaging is unclear. Here we demonstrate that sigma NS assembles into stable elongated hexamers in vitro, which bind single-stranded nucleic acids with high affinity, but little sequence specificity. Using ensemble and single molecule fluorescence spectroscopy, we show that sigma NS also binds to a partially double-stranded RNA, resulting in gradual helix unwinding. The hexamer can bind multiple RNA molecules and exhibits strand-annealing activity, thus mediating conversion of metastable, intramolecular stem-loops into more stable heteroduplexes. We demonstrate that the ARV sigma NS acts as an RNA chaperone facilitating specific RNA-RNA interactions between genomic precursors during segment assortment and packaging.
机译:呼肠孤病毒是具有10-12个双链基因组RNA片段的重要人类,动物和植物病原体。控制这些病毒中基因组片段的分类和包装的机制仍然知之甚少。病毒基因组片段前体之间的RNA-蛋白质和RNA-RNA相互作用已牵涉其中。虽然非结构性病毒RNA结合蛋白(如禽呼肠孤病毒sigma NS)对于病毒复制至关重要,但它们辅助包装的机制尚不清楚。在这里,我们证明了sigma NS在体外组装成稳定的细长六聚体,该六聚体以高亲和力但几乎没有序列特异性地结合单链核酸。使用集成和单分子荧光光谱法,我们显示sigma NS还与部分双链RNA结合,导致逐渐解开螺旋。六聚体可以结合多个RNA分子并表现出链退火活性,从而介导亚稳态分子内茎环向更稳定的异源双链体的转化。我们证明,ARV sigma NS充当RNA分子伴侣,可在片段分类和包装过程中促进基因组前体之间的特定RNA-RNA相互作用。

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