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轮状病毒核心壳亚结构域参与聚合酶包被到病毒样颗粒中。

Rotavirus core shell subdomains involved in polymerase encapsidation into virus-like particles.

机构信息

Virginia Tech Carilion Research Institute, Roanoke, VA, USA.

Virginia Tech Carilion School of Medicine, Roanoke, VA, USA.

出版信息

J Gen Virol. 2013 Aug;94(Pt 8):1818-1826. doi: 10.1099/vir.0.052951-0. Epub 2013 Apr 17.

DOI:10.1099/vir.0.052951-0
PMID:23596269
Abstract

The triple-layered rotavirus virion encases an 11-segmented, dsRNA genome and 11-12 copies of the viral polymerase (VP1). VP1 transcribes and replicates the genome while tethered beneath the VP2 core shell. Genome replication (i.e. minus-strand RNA synthesis) by VP1 occurs in association with core assembly. During this process, VP2 directly engages VP1, thereby (i) packaging the polymerase into a nascent core and (ii) triggering the enzyme to initiate minus-strand RNA synthesis on bound plus-strand RNA templates. Recent work has shed light on VP2 regions important for VP1 enzymic activity. In the current study, we sought to investigate VP2 subdomains involved in the encapsidation of VP1 into recombinant virus-like particles (VLPs), which are formed of VP2 and the middle layer virion protein (VP6). We showed that strain SA11 VLPs efficiently encapsidated SA11 VP1, but not the genetically divergent Bristol VP1. VLPs made with an SA11 VP2 mutant lacking residues 1-10 of the amino-terminal domain (NTD) were still able to encapsidate VP1; however, removal of the entire NTD (residues 1-102) completely abolished polymerase packaging. We also showed that a chimeric VP2 protein containing the NTD and dimer-forming subdomain of strain Bristol VP2 can efficiently encapsidate SA11 VP1. These results suggest that the VP2 NTD and dimer-forming subdomain play important, albeit non-specific, roles in both VP1 packaging and activation. When combined with previous work, the results of this study support the notion that the same VP2 regions that engage VP1 during activation are also involved in packaging the enzyme into the core.

摘要

三层轮状病毒衣壳包裹着一个 11 段的 dsRNA 基因组和 11-12 个病毒聚合酶(VP1)拷贝。VP1 在 VP2 核心壳下附着时转录和复制基因组。基因组复制(即负链 RNA 合成)由 VP1 与核心组装相关发生。在此过程中,VP2 直接与 VP1 结合,从而(i)将聚合酶包装到新生核心中,(ii)触发酶在结合的正链 RNA 模板上启动负链 RNA 合成。最近的工作揭示了 VP2 区域对 VP1 酶活性很重要。在本研究中,我们试图研究参与将 VP1 封装到重组病毒样颗粒(VLPs)中的 VP2 亚结构域,VLPs 由 VP2 和中层衣壳蛋白(VP6)组成。我们表明,SA11 株 VLPs 有效地封装了 SA11 VP1,但不能封装遗传上不同的 Bristol VP1。缺乏氨基末端结构域(NTD)1-10 残基的 SA11 VP2 突变体形成的 VLPs 仍然能够封装 VP1;然而,完全去除 NTD(残基 1-102)完全阻止了聚合酶的包装。我们还表明,含有 Bristol VP2 的 NTD 和二聚体形成亚结构域的嵌合 VP2 蛋白能够有效地封装 SA11 VP1。这些结果表明,VP2 NTD 和二聚体形成亚结构域在 VP1 包装和激活中发挥重要作用,尽管是非特异性的。当与以前的工作相结合时,本研究的结果支持这样一种观点,即在激活过程中与 VP1 结合的相同 VP2 区域也参与将酶包装到核心中。

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