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通过 SUMO 调节埃博拉病毒 VP24 蛋白。

Regulation of the Ebola Virus VP24 Protein by SUMO.

机构信息

Centro de Investigación en Medicina Molecular (CIMUS), Universidade de Santiago de Compostela, Santiago de Compostela, Spain.

Instituto de Investigaciones Sanitarias (IDIS), Santiago de Compostela, Spain.

出版信息

J Virol. 2019 Dec 12;94(1). doi: 10.1128/JVI.01687-19.

Abstract

Some viruses take advantage of conjugation of ubiquitin or ubiquitin-like proteins to enhance their own replication. One example is Ebola virus, which has evolved strategies to utilize these modification pathways to regulate the viral proteins VP40 and VP35 and to counteract the host defenses. Here, we show a novel mechanism by which Ebola virus exploits the ubiquitin and SUMO pathways. Our data reveal that minor matrix protein VP24 of Ebola virus is a bona fide SUMO target. Analysis of a SUMOylation-defective VP24 mutant revealed a reduced ability to block the type I interferon (IFN) pathway and to inhibit IFN-mediated STAT1 nuclear translocation, exhibiting a weaker interaction with karyopherin 5 and significantly diminished stability. Using glutathione -transferase (GST) pulldown assay, we found that VP24 also interacts with SUMO in a noncovalent manner through a SIM domain. Mutation of the SIM domain in VP24 resulted in a complete inability of the protein to downmodulate the IFN pathway and in the monoubiquitination of the protein. We identified SUMO deubiquitinating enzyme ubiquitin-specific-processing protease 7 (USP7) as an interactor and a negative modulator of VP24 ubiquitination. Finally, we show that mutation of one ubiquitination site in VP24 potentiates the IFN modulatory activity of the viral protein and its ability to block IFN-mediated STAT1 nuclear translocation, pointing to the ubiquitination of VP24 as a negative modulator of the VP24 activity. Altogether, these results indicate that SUMO interacts with VP24 and promotes its USP7-mediated deubiquitination, playing a key role in the interference with the innate immune response mediated by the viral protein. The Ebola virus VP24 protein plays a critical role in escape of the virus from the host innate immune response. Therefore, deciphering the molecular mechanisms modulating VP24 activity may be useful to identify potential targets amenable to therapeutics. Here, we identify the cellular proteins USP7, SUMO, and ubiquitin as novel interactors and regulators of VP24. These interactions may represent novel potential targets to design new antivirals with the ability to modulate Ebola virus replication.

摘要

一些病毒利用泛素或泛素样蛋白的连接来增强自身的复制。埃博拉病毒就是一个例子,它已经进化出利用这些修饰途径来调节病毒蛋白 VP40 和 VP35,并对抗宿主防御的策略。在这里,我们展示了埃博拉病毒利用泛素和 SUMO 途径的一种新机制。我们的数据显示,埃博拉病毒的次要基质蛋白 VP24 是真正的 SUMO 靶标。对 SUMO 化缺陷型 VP24 突变体的分析表明,其阻断 I 型干扰素 (IFN) 途径和抑制 IFN 介导的 STAT1 核转位的能力降低,与核孔蛋白 5 的相互作用减弱,稳定性显著降低。使用谷胱甘肽 - 转移酶 (GST) 下拉测定法,我们发现 VP24 还通过 SIM 结构域以非共价方式与 SUMO 相互作用。VP24 中的 SIM 结构域突变导致该蛋白完全丧失下调 IFN 途径的能力,并导致该蛋白的单泛素化。我们鉴定出 SUMO 去泛素化酶泛素特异性加工蛋白酶 7 (USP7) 为 VP24 的相互作用因子和负调节剂。最后,我们发现 VP24 中一个泛素化位点的突变增强了病毒蛋白的 IFN 调节活性及其阻断 IFN 介导的 STAT1 核转位的能力,这表明 VP24 的泛素化是 VP24 活性的负调节剂。总之,这些结果表明 SUMO 与 VP24 相互作用,并促进其 USP7 介导的去泛素化,在病毒蛋白介导的先天免疫反应干扰中发挥关键作用。埃博拉病毒 VP24 蛋白在病毒逃避宿主先天免疫反应中起着至关重要的作用。因此,解析调节 VP24 活性的分子机制可能有助于确定适合治疗的潜在靶点。在这里,我们确定了细胞蛋白 USP7、SUMO 和泛素作为 VP24 的新型相互作用因子和调节剂。这些相互作用可能代表了设计具有调节埃博拉病毒复制能力的新型抗病毒药物的新潜在靶点。

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