K294E change in the rotavirus factory forming protein NSP2 stabilizes a rare C-terminal conformation.

IF 2.4 3区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY
Sarah L Nichols, Thomas Hollis, Freddie R Salsbury, Sarah M Esstman
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Abstract

Rotaviruses (RVs) induce the formation of cytoplasmic viral factories, termed viroplasms, which are the sites of early particle assembly and viral RNA synthesis. The RV octameric nonstructural protein 2 (NSP2) plays critical, albeit incompletely understood, roles during viroplasm biogenesis. Previous work by our lab demonstrated that a RV bearing a lysine-to-glutamic acid (K294E) change in the flexible C-terminus of NSP2 exhibits defects in viral replication and induces smaller, more numerous viroplasms as compared to the wildtype (WT) virus. In this study, we sought to better understand if/how this K294E amino acid change altered the structure and/or dynamics of the NSP2 protein. We first determined the X-ray crystal structures of untagged, recombinant NSP2K294E and NSP2WT. We found that both proteins formed highly similar octamers and crystallized in the I422 space group. To better understand the possible impacts of the K294E change on the conformations and backbone flexibility of NSP2, we performed molecular dynamics simulations. The results showed that NSP2K294E adopted distinct C-terminal conformations relative to NSP2WT and had subtle flexibility differences. Most notably, the data suggest that the K294E change stabilized a rare C-terminal conformation that was only infrequently sampled by NSP2WT. This shift in conformational preference may help explain why NSP2K294E displayed decreased capacity to mediate robust viroplasm formation during RV infection. These results provide mechanistic insights into how a single amino acid change in the NSP2 C-terminus can have large effects on structural ensemble, shedding light on features of the protein that underpin RV viroplasm formation.

轮状病毒工厂形成蛋白NSP2中K294E的改变稳定了一种罕见的c端构象。
轮状病毒(RVs)诱导细胞质病毒工厂的形成,称为病毒质,是早期颗粒组装和病毒RNA合成的场所。RV八聚体非结构蛋白2 (NSP2)在病毒质生物发生过程中起着至关重要的作用,尽管尚未完全了解。我们实验室之前的工作表明,与野生型(WT)病毒相比,在NSP2的柔性c端携带赖氨酸到谷氨酸(K294E)变化的RV在病毒复制中表现出缺陷,并诱导更小、更多的病毒质。在这项研究中,我们试图更好地了解K294E氨基酸的变化是否/如何改变NSP2蛋白的结构和/或动力学。我们首先确定了未标记的重组NSP2K294E和NSP2WT的x射线晶体结构。我们发现这两种蛋白质形成了高度相似的八聚体,并在I422空间群中结晶。为了更好地了解K294E变化对NSP2构象和主链柔韧性的可能影响,我们进行了分子动力学模拟。结果表明,与NSP2K294E相比,NSP2K294E具有明显的c端构象,柔韧性也有细微的差异。最值得注意的是,数据表明K294E的变化稳定了一种罕见的c端构象,而这种构象在NSP2WT中很少被采样。这种构象偏好的转变可能有助于解释为什么NSP2K294E在RV感染期间表现出介导强病毒质形成的能力下降。这些结果提供了关于NSP2 c端单个氨基酸变化如何对结构集合产生重大影响的机制见解,揭示了支撑RV病毒质形成的蛋白质的特征。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Biomolecular Structure & Dynamics
Journal of Biomolecular Structure & Dynamics 生物-生化与分子生物学
CiteScore
8.90
自引率
9.10%
发文量
597
审稿时长
2 months
期刊介绍: The Journal of Biomolecular Structure and Dynamics welcomes manuscripts on biological structure, dynamics, interactions and expression. The Journal is one of the leading publications in high end computational science, atomic structural biology, bioinformatics, virtual drug design, genomics and biological networks.
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