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A new paradigm for the roles of the genome in ssRNA viruses

机译:基因组在ssRNA病毒中的作用的新范式

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Recent work with RNA phages and an ssRNA plant satellite virus challenges the widely held view that the sequences and structures of genomic RNAs are unimportant for virion assembly. In the T=3 phages, RNA-coat protein interactions occur throughout the genome, defining the quasiconformers of their protein shells. In the plant virus, there are multiple packaging signals dispersed throughout the genome that overcome electrostatic barriers to protein self-assembly. Both viral coat proteins cause the solution structures of their cognate genomes to collapse into a form that is readily encapsidated in a two-stage assembly process. Such similar behavior in two structurally unrelated viral protein folds implies that this might be a conserved feature of many viral assembly reactions. These results suggest a highly defined structure for the RNA in the virions, consistent with recent structural studies. They also have implications both for subsequent genome release during infection and for the evolution of viral sequences.
机译:RNA噬菌体和ssRNA植物卫星病毒的最新研究挑战了人们普遍认为的观点,即基因组RNA的序列和结构对于病毒体组装并不重要。在T = 3噬菌体中,RNA外壳蛋白相互作用在整个基因组中发生,从而定义了其蛋白壳的准同形体。在植物病毒中,有多个包装信号分散在整个基因组中,这些信号克服了蛋白质自组装的静电障碍。两种病毒外壳蛋白均导致其同源基因组的溶液结构坍塌成易于在两步组装过程中被衣壳化的形式。两个结构无关的病毒蛋白折叠中的此类相似行为暗示,这可能是许多病毒装配反应的保守特征。这些结果表明病毒体中RNA的结构高度明确,与最近的结构研究一致。它们还对感染期间随后的基因组释放以及病毒序列的进化都有影响。

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