宿主因子 VCPIP1 作为乙型肝炎病毒多功能阳性调节因子的鉴定和特征描述。

IF 4 2区 医学 Q2 VIROLOGY
Journal of Virology Pub Date : 2024-12-17 Epub Date: 2024-11-04 DOI:10.1128/jvi.01581-24
Ning Kang, Nannan Liu, Mu Liu, Shimei Zhang, Yang Yang, Jia Hou, Dan Tan, Zixiang Gao, Youhua Xie, Zhongliang Shen, Jing Liu
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引用次数: 0

摘要

慢性乙型肝炎病毒(HBV)感染仍然是一项重要的公共卫生挑战。病毒共价闭合环状 DNA(cccDNA)持续存在于受感染的肝细胞中,是转录所有病毒 RNA 的模板。HBV 调控蛋白 X(HBx)与其他病毒蛋白和细胞蛋白相互作用,在病毒生命周期中发挥多种功能,包括调节cccDNA的转录活性。在这里,我们利用接近标记和蛋白质组分析筛选与 HBx 相互作用的宿主蛋白。发现的候选蛋白之一--去泛素化酶含缬氨酸蛋白相互作用蛋白1(VCPIP1)直接与HBx结合,并通过减少蛋白酶体降解稳定HBx,这证实了最近的一篇报道。使用一系列 HBV 复制和感染模型证明了 VCPIP1 介导的 HBV 转录、抗原表达和基因组复制上调。更重要的是,在没有 HBx 的情况下,VCPIP1 也能上调 HBV。机理研究发现,VCPIP1 HBx独立于HBV增强子I/X启动子(EnI/Xp),部分通过促进YY1转录因子与EnI/Xp的结合,积极调节其启动子和增强子的活性。本文介绍的结果扩展了最近描述的 VCPIP1 在 HBV 生命周期中的作用,并将其确定为该病毒的多功能正调控因子:重要性:乙型肝炎病毒(HBV)编码的调节蛋白 HBx 通过与病毒蛋白和细胞蛋白相互作用,在病毒生命周期和细胞过程中发挥关键作用。鉴定与 HBx 相互作用的蛋白可能会揭示宿主与病毒相互作用的新方面。在这项研究中,通过近距离标记和蛋白质组学分析发现了多种与HBx相互作用的宿主因子,其中含缬氨酸蛋白相互作用蛋白1(VCPIP1)被证实能直接结合HBx并减少其蛋白酶体降解,这与最近的一项报道相吻合。除了上调表达 HBx 的 HBV 外,我们还发现 VCPIP1 还能正向调节缺乏 HBx 表达的突变型 HBV。研究表明,VCPIP1 的这种独立于 HBx 的新功能涉及它与一个病毒启动子/增强子元件的关联,它能上调后者的启动子和增强子活性。这些结果证明 VCPIP1 是一种通过多种不同机制发挥作用的 HBV 正调控因子,也可能有助于揭示 VCPIP1 的新型细胞功能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Identification and characterization of host factor VCPIP1 as a multi-functional positive regulator of hepatitis B virus.

Chronic infection with hepatitis B virus (HBV) remains an important public health challenge. Viral covalently closed circular DNA (cccDNA) persists in infected hepatocytes and serves as the template for transcribing all viral RNA species. HBV regulatory protein X (HBx) interacts with other viral and cellular proteins to play diverse functions in viral life cycle, including modulation of cccDNA transcription activity. Here, we used proximity labeling coupled with proteomic analysis to screen for HBx-interacting host proteins. One of the identified candidates, deubiquitinating enzyme valosin-containing protein-interacting protein 1 (VCPIP1), directly binds HBx and stabilizes HBx by reducing its proteasomal degradation, which corroborated a recent report. VCPIP1-mediated upregulation of HBV transcription, antigen expression, and genome replication was demonstrated using a series of HBV replication and infection models. More importantly, VCPIP1 was found to upregulate HBV in the absence of HBx. Mechanistic studies revealed that VCPIP1 HBx-independently associates with HBV enhancer I/X promoter (EnI/Xp) and positively modulates both its promoter and enhancer activities, partially through promoting the binding of YY1 transcription factor to EnI/Xp. Results presented here expand the recently described role of VCPIP1 in HBV life cycle and establish it as a multi-functional positive regulator of this virus.

Importance: Hepatitis B virus (HBV) encodes the regulatory protein HBx that plays crucial roles in viral life cycle and cellular processes through interacting with viral and cellular proteins. Identifying HBx-interacting proteins may reveal novel aspects of host-virus interactions. In this work, proximity labeling coupled with proteomic analysis identified multiple HBx-interacting host factors, and among these, valosin-containing protein-interacting protein 1 (VCPIP1) was confirmed to directly bind HBx and reduce its proteasomal degradation, corroborating a recent report. In addition to upregulating HBx-expressing HBV, we showed that VCPIP1 also positively regulates mutant HBV lacking HBx expression. This novel HBx-independent function of VCPIP1 was shown to involve its association with one viral promoter/enhancer element, which upregulated the latter's promoter and enhancer activities. These results establish VCPIP1 as a positive regulator of HBV that acts through multiple, diverse mechanisms and might also contribute toward revealing novel cellular functions of VCPIP1.

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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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