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Compactness of viral genomes: effect of disperse and localized random mutations

机译:病毒基因组的紧凑性:分散和局部随机突变的影响

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摘要

Genomes of single-stranded RNA viruses have evolved to optimize several concurrent properties. One of them is the architecture of their genomic folds, which must not only feature precise structural elements at specific positions, but also allow for overall spatial compactness. The latter was shown to be disrupted by random synonymous mutations, a disruption which can consequently negatively affect genome encapsidation. In this study, we use three mutation schemes with different degrees of locality to mutate the genomes of phage MS2 and Brome Mosaic virus in order to understand the observed sensitivity of the global compactness of their folds. We find that mutating local stretches of their genomes' sequence or structure is less disruptive to their compactness compared to inducing randomly-distributed mutations. Our findings are indicative of a mechanism for the conservation of compactness acting on a global scale of the genomes, and have several implications for understanding the interplay between local and global architecture of viral RNA genomes.
机译:单链RNA病毒的基因组已经进化以优化几种同时性质。其中一个是它们的基因组折叠的结构,它不仅必须在特定位置特征精确的结构元件,而且还允许整体空间紧凑性。后者被动被随机同义突变破坏,这是可能对基因组封装产生负面影响的破坏。在这项研究中,我们使用三种突变方案具有不同程度的局部性,以突变噬菌体MS2和溴马赛克病毒的基因组,以了解其折叠的全球紧凑性的观察到的敏感性。与诱导随机分布的突变相比,我们发现其基因组序列或结构的局部延伸序列或结构的静音较小。我们的研究结果表明了一种保护在全球基因组规模上作用的紧凑性的机制,并且对理解病毒RNA基因组的局部和全球架构之间的相互作用具有若干含义。

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