日本脑炎病毒 NS5 蛋白与核蛋白相互作用,促进病毒复制。

IF 4 2区 医学 Q2 VIROLOGY Journal of Virology Pub Date : 2024-08-20 Epub Date: 2024-07-30 DOI:10.1128/jvi.00858-24
Arundhati Deb, Shilpi Nagpal, Rajnesh Kumari Yadav, Harsh Thakur, Deepak Nair, Vengadesan Krishnan, Sudhanshu Vrati
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引用次数: 0

摘要

日本脑炎病毒(JEV)是一种节肢动物传播的加链黄病毒,可导致人类病毒性脑炎,病死率很高。具有 RNA 依赖性 RNA 聚合酶活性的 JEV 非结构蛋白 5(NS5)与病毒蛋白和宿主蛋白相互作用,构成复制复合物。我们发现多功能蛋白 Nucleolin (NCL) 是与 NS5 相互作用的几种宿主蛋白之一。我们证明了病毒感染的 HeLa 细胞中 JEV NS5 与 NCL 的相互作用和共定位。siRNA 介导的 NCL 敲除表明,病毒的有效复制需要 NCL。重要的是,JEV在过度表达外源NCL的细胞中生长出更高的滴度,这证明了NCL的促病毒作用。我们证明了 NS5 与 NCL 的 RRM 和 GAR 结构域相互作用。我们的研究表明,含有 G-quadruplex (GQ) 结构的 NCL 结合适配体 AS1411 和 GQ 配体 BRACO-19 能显著抑制 JEV 的复制。在 HeLa 细胞中,外源 NCL 的过表达可以克服 AS1411 和 BRACO-19 的抗病毒作用。我们证实,从含有 GQ 序列的 JEV 基因组 RNA 的 3'-NCR 提取的合成 RNA 可在体外与 NCL 结合。病毒 RNA 合成需要与 3'-NCR 结合的复制复合物。重要意义日本脑炎病毒(JEV)在东南亚和西太平洋地区的大部分地方流行,引起脑炎流行,病死率很高。虽然有组织培养的 JEV 疫苗,但目前还没有抗病毒疗法。JEV NS5 蛋白具有 RNA 依赖性 RNA 聚合酶活性。它与几种宿主蛋白和病毒蛋白一起构成了病毒复制所需的复制复合物。了解 NS5 与宿主蛋白的相互作用有助于设计新型抗病毒药物。我们发现 Nucleolin(NCL)是 JEV NS5 的一个重要宿主蛋白相互作用体,在病毒复制过程中具有促进病毒复制的作用。与 NS5 相互作用的 NCL 与 JEV RNA 的 3'-NCR 中的 G-quadruplex (GQ) 结构序列结合。这可能会使复制复合物沿着基因组 RNA 平滑移动,从而促进病毒复制。这项研究首次报道了宿主蛋白 NCL 如何通过 GQ 结合帮助 JEV 复制。
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Japanese encephalitis virus NS5 protein interacts with nucleolin to enhance the virus replication.

Japanese encephalitis virus (JEV) is an arthropod-borne, plus-strand flavivirus causing viral encephalitis in humans with a high case fatality rate. The JEV non-structural protein 5 (NS5) with the RNA-dependent RNA polymerase activity interacts with the viral and host proteins to constitute the replication complex. We have identified the multifunctional protein Nucleolin (NCL) as one of the several NS5-interacting host proteins. We demonstrate the interaction and colocalization of JEV NS5 with NCL in the virus-infected HeLa cells. The siRNA-mediated knockdown of NCL indicated that it was required for efficient viral replication. Importantly, JEV grew to higher titers in cells over-expressing exogenous NCL, demonstrating its pro-viral role. We demonstrated that NS5 interacted with the RRM and GAR domains of NCL. We show that the NCL-binding aptamer AS1411 containing the G-quadruplex (GQ) structure and the GQ ligand BRACO-19 caused significant inhibition of JEV replication. The antiviral effect of AS1411 and BRACO-19 could be overcome in HeLa cells by the overexpression of exogenous NCL. We demonstrated that the synthetic RNAs derived from the 3'-NCR of JEV genomic RNA containing the GQ sequence could bind NCL in vitro. The replication complex binding to the 3'-NCR is required for the viral RNA synthesis. It is likely that NCL present in the replication complex destabilizes the GQ structures in the genomic RNA, thus facilitating the movement of the replication complex resulting in efficient virus replication.IMPORTANCEJapanese encephalitis virus (JEV) is endemic in most parts of South-East Asia and the Western Pacific region, causing epidemics of encephalitis with a high case fatality rate. While a tissue culture-derived JEV vaccine is available, no antiviral therapy exists. The JEV NS5 protein has RNA-dependent RNA polymerase activity. Together with several host and viral proteins, it constitutes the replication complex necessary for virus replication. Understanding the interaction of NS5 with the host proteins could help design novel antivirals. We identified Nucleolin (NCL) as a crucial host protein interactor of JEV NS5 having a pro-viral role in virus replication. The NS5-interacting NCL binds to the G-quadruplex (GQ) structure sequence in the 3'-NCR of JEV RNA. This may smoothen the movement of the replication complex along the genomic RNA, thereby facilitating the virus replication. This study is the first report on how NCL, a host protein, helps in JEV replication through GQ-binding.

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来源期刊
Journal of Virology
Journal of Virology 医学-病毒学
CiteScore
10.10
自引率
7.40%
发文量
906
审稿时长
1 months
期刊介绍: Journal of Virology (JVI) explores the nature of the viruses of animals, archaea, bacteria, fungi, plants, and protozoa. We welcome papers on virion structure and assembly, viral genome replication and regulation of gene expression, genetic diversity and evolution, virus-cell interactions, cellular responses to infection, transformation and oncogenesis, gene delivery, viral pathogenesis and immunity, and vaccines and antiviral agents.
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