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Packaging of a Polymer by a Viral Capsid: The Interplay between Polymer Length and Capsid Size

机译:通过病毒衣壳包装聚合物:聚合物长度和衣壳大小之间的相互作用

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摘要

We report a study of the in vitro self-assembly of virus-like particles formed by the capsid protein of cowpea chlorotic mottle virus and the anionic polymer poly(styrene sulfonate) (PSS) for five molecular masses ranging from 400 kDa to 3.4 MDa. The goal is to explore the effect on capsid size of the competition between the preferred curvature of the protein and the molecular mass of the packaged cargo. The capsid size distribution for each polymer was unimodal, but two distinct sizes were observed: 22 nm for the lower molecular masses, jumping to 27 nm at a molecular mass of 2 MDa. A model is provided for the formation of the virus-like particles that accounts for both the PSS and capsid protein self-interactions and the interactions between the protein and PSS. Our study suggests that the size of the encapsidated polymer cargo is the deciding factor for the selection of one distinct capsid size from several possible sizes with the same inherent symmetry.
机译:我们报告了由cow豆绿叶斑驳病毒的衣壳蛋白和阴离子聚合物聚(苯乙烯磺酸盐)(PSS)形成的病毒样颗粒的体外自组装的五个分子质量,范围从400 kDa到3.4 MDa。目的是探索蛋白质的优选曲率与包装货物的分子量之间竞争对衣壳大小的影响。每种聚合物的衣壳大小分布是单峰的,但观察到两个不同的大小:较低的分子质量为22 nm,在2 MDa的分子质量下跃升至27 nm。提供了用于形成病毒样颗粒的模型,该模型解释了PSS和衣壳蛋白的自相互作用以及该蛋白与PSS之间的相互作用。我们的研究表明,衣壳化聚合物货物的大小是从具有相同内在对称性的几种可能大小中选择一种不同衣壳大小的决定因素。

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