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细胞蛋白 CAD 通过核蛋白 NP 募集到埃博拉病毒包含体中,以促进基因组复制和转录。

The Cellular Protein CAD is Recruited into Ebola Virus Inclusion Bodies by the Nucleoprotein NP to Facilitate Genome Replication and Transcription.

机构信息

Institute of Molecular Virology and Cell Biology, Friedrich-Loeffler-Institut, 17493 Greifswald-Insel Riems, Germany.

出版信息

Cells. 2020 May 1;9(5):1126. doi: 10.3390/cells9051126.

Abstract

Ebola virus (EBOV) is a zoonotic pathogen causing severe hemorrhagic fevers in humans and non-human primates with high case fatality rates. In recent years, the number and extent of outbreaks has increased, highlighting the importance of better understanding the molecular aspects of EBOV infection and host cell interactions to control this virus more efficiently. Many viruses, including EBOV, have been shown to recruit host proteins for different viral processes. Based on a genome-wide siRNA screen, we recently identified the cellular host factor carbamoyl-phosphate synthetase 2, aspartate transcarbamylase, and dihydroorotase (CAD) as being involved in EBOV RNA synthesis. However, mechanistic details of how this host factor plays a role in the EBOV life cycle remain elusive. In this study, we analyzed the functional and molecular interactions between EBOV and CAD. To this end, we used siRNA knockdowns in combination with various reverse genetics-based life cycle modelling systems and additionally performed co-immunoprecipitation and co-immunofluorescence assays to investigate the influence of CAD on individual aspects of the EBOV life cycle and to characterize the interactions of CAD with viral proteins. Following this approach, we could demonstrate that CAD directly interacts with the EBOV nucleoprotein NP, and that NP is sufficient to recruit CAD into inclusion bodies dependent on the glutaminase (GLN) domain of CAD. Further, siRNA knockdown experiments indicated that CAD is important for both viral genome replication and transcription, while substrate rescue experiments showed that the function of CAD in pyrimidine synthesis is indeed required for those processes. Together, this suggests that NP recruits CAD into inclusion bodies via its GLN domain in order to provide pyrimidines for EBOV genome replication and transcription. These results define a novel mechanism by which EBOV hijacks host cell pathways in order to facilitate genome replication and transcription and provide a further basis for the development of host-directed broad-spectrum antivirals.

摘要

埃博拉病毒(EBOV)是一种人畜共患病病原体,可导致人类和非人类灵长类动物出现严重的出血热,并具有很高的病死率。近年来,埃博拉病毒的暴发次数和范围有所增加,这突显了更好地了解埃博拉病毒感染和宿主细胞相互作用的分子方面的重要性,以便更有效地控制这种病毒。许多病毒,包括埃博拉病毒,都已被证明会招募宿主蛋白来完成不同的病毒过程。我们最近通过全基因组 siRNA 筛选,发现细胞宿主因子氨甲酰磷酸合成酶 2、天冬氨酸转氨甲酰酶和二氢乳清酸酶(CAD)参与了埃博拉病毒 RNA 的合成。然而,宿主因子在埃博拉病毒生命周期中发挥作用的机制细节仍不清楚。在这项研究中,我们分析了埃博拉病毒与 CAD 之间的功能和分子相互作用。为此,我们使用 siRNA 敲低技术,结合各种基于反向遗传学的生命周期建模系统,另外还进行了共免疫沉淀和共免疫荧光测定,以研究 CAD 对埃博拉病毒生命周期各个方面的影响,并鉴定 CAD 与病毒蛋白的相互作用。通过这种方法,我们可以证明 CAD 与埃博拉病毒核蛋白 NP 直接相互作用,并且 NP 足以通过 CAD 的谷氨酰胺酶(GLN)结构域将 CAD 招募到包含体中。此外,siRNA 敲低实验表明 CAD 对于病毒基因组的复制和转录都很重要,而底物挽救实验表明 CAD 在嘧啶合成中的功能对于这些过程确实是必需的。综上所述,这些结果表明 NP 通过其 GLN 结构域将 CAD 招募到包含体中,以便为埃博拉病毒基因组的复制和转录提供嘧啶。这些结果定义了一种新的机制,埃博拉病毒通过这种机制劫持宿主细胞途径,以促进基因组的复制和转录,并为开发针对宿主的广谱抗病毒药物提供了进一步的基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0031/7290923/308ad7e3ecc6/cells-09-01126-g001.jpg

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