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The impact of viral RNA on the association rates of capsid protein assembly: bacteriophage MS2 as a case study.

机译:病毒RNA对衣壳蛋白装配的结合率的影响:以噬菌体MS2为例。

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摘要

A large number of single-stranded RNA viruses, which form a major class of all viruses, co-assemble their protein container and their genomic material. The multiple roles of the viral genome in this process are presently only partly understood. Recent experimental results indicate that RNA, in addition to its function as a repository for genetic information, could play important functional roles during the assembly of the viral protein containers. An investigation of the impact of genomic RNA on the association of the protein subunits may therefore provide further insights into the mechanism of virus assembly. We study here the impact of viral RNA on the association rates of the capsid proteins during virus assembly. As a case study, we consider the viral capsid of bacteriophage MS2, which is formed from 60 asymmetric (AB) and 30 symmetric (CC) protein dimers. Using Brownian dynamics simulations, we investigate the effect of the binding of an RNA stem-loop (the translational repressor) on the association rates of the capsid protein dimers. Our analysis shows that translational repressor binding results in self-association of AB dimers being inhibited, whilst association of AB with CC dimers is greatly enhanced. This provides an explanation for experimental results in which an alternating assembly pattern of AB and CC dimer addition to the growing assembly intermediate has been observed to be the dominant mode of assembly. The presence of the RNA hence dramatically decreases the number of dominant assembly pathways and thereby reduces the complexity of the self-assembly process of these viruses.
机译:构成所有病毒的主要类别的大量单链RNA病毒会共同组装其蛋白质容器和其基因组材料。目前仅部分了解了病毒基因组在该过程中的多种作用。最近的实验结果表明,RNA除了具有作为遗传信息存储库的功能外,在病毒蛋白容器的组装过程中还可以发挥重要的功能作用。因此,对基因组RNA对蛋白质亚基缔合的影响的研究可能会提供对病毒装配机制的进一步了解。我们在这里研究病毒RNA在病毒装配过程中对衣壳蛋白结合率的影响。作为案例研究,我们考虑由60个不对称(AB)和30个对称(CC)蛋白二聚体形成的噬菌体MS2的病毒衣壳。使用布朗动力学模拟,我们研究了RNA茎环(翻译阻遏物)的结合对衣壳蛋白二聚体缔合率的影响。我们的分析表明,翻译阻遏物结合导致AB二聚体的自缔合受到抑制,而AB与CC二聚体的缔合则大大增强。这为实验结果提供了解释,其中观察到向生长中的组装中间体中添加AB和CC二聚体的交替组装模式是组装的主要方式。因此,RNA的存在极大地减少了主要组装途径的数量,从而降低了这些病毒自组装过程的复杂性。

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