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Packaged and free STMV RNA genomes adopt distinct conformational states

机译:包装和免费的STMV RNA基因组采用不同的构象状态

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摘要

The RNA genomes of viruses likely undergo multiple functionally important conformational changes during their replication cycles, changes that are poorly understood at present. We used two complementary in-solution RNA structure probing strategies (SHAPE-MaP and RING-MaP) to examine the structure of the RNA genome of satellite tobacco mosaic virus inside authentic virions and in a capsid-free state. Both RNA states feature similar three-domain architectures in which each major replicative function – translation, capsid coding, and genome synthesis – fall into distinct domains. There are, however, large conformational differences between the in-virion and capsid-free states, primarily in one arm of the central T domain. These data support a model in which the packaged capsid-bound RNA is constrained in a local high-energy conformation by the native capsid shell. The removal of the viral capsid then allows the RNA genome to relax into a more thermodynamically stable conformation. These data support a model in which the RNA architecture of the central T domain changes during capsid assembly and disassembly and may play a role in genome packaging.
机译:病毒的RNA基因组在其复制周期中可能会经历多个功能上重要的构象变化,这种变化目前尚不清楚。我们使用两种互补的溶液中RNA结构探测策略(SHAPE-MaP和RING-MaP)来检查卫星病毒花叶病毒在真实病毒体内部和无衣壳状态下的RNA基因组结构。两种RNA状态都具有相似的三域结构,其中每个主要的复制功能(翻译,衣壳编码和基因组合成)都属于不同的域。然而,在病毒体状态和无衣壳状态之间,主要在中央T结构域的一个臂上,存在很大的构象差异。这些数据支持了一个模型,其中包装的衣壳结合RNA被天然衣壳限制在局部高能构象中。病毒衣壳的去除然后使RNA基因组松弛成更热力学稳定的构象。这些数据支持一个模型,其中在衣壳组装和拆卸过程中,中央T结构域的RNA结构发生变化,并可能在基因组包装中起作用。

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