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小泛素样修饰稳定登革病毒非结构蛋白5以支持病毒复制。

SUMO Modification Stabilizes Dengue Virus Nonstructural Protein 5 To Support Virus Replication.

作者信息

Su Chan-I, Tseng Chung-Hsin, Yu Chia-Yi, Lai Michael M C

机构信息

Department of Microbiology and Immunology, College of Medicine, National Cheng Kung University, Tainan, Taiwan.

Center of Infectious Disease and Signaling Research, National Cheng Kung University, Tainan, Taiwan.

出版信息

J Virol. 2016 Apr 14;90(9):4308-4319. doi: 10.1128/JVI.00223-16. Print 2016 May.

Abstract

UNLABELLED

Small ubiquitin-like modifier (SUMO) participates in a reversible posttranslational modification process (SUMOylation) that regulates a wide variety of cellular processes and plays important roles for numerous viruses during infection. However, the roles of viral protein SUMOylation in dengue virus (DENV) infection have not been elucidated. In this study, we found that the SUMOylation pathway was involved in the DENV life cycle, since DENV replication was reduced by silencing the cellular gene Ubc9, which encodes the sole E2-conjugating enzyme required for SUMOylation. By in vivo and in vitro SUMOylation assays, the DENV NS5 protein was identified as an authentic SUMO-targeted protein. By expressing various NS5 mutants, we found that the SUMO acceptor sites are located in the N-terminal domain of NS5 and that a putative SUMO-interacting motif (SIM) of this domain is crucial for its SUMOylation. A DENV replicon harboring the SUMOylation-defective SIM mutant showed a severe defect in viral RNA replication, supporting the notion that NS5 SUMOylation is required for DENV replication. SUMOylation-defective mutants also failed to suppress the induction of STAT2-mediated host antiviral interferon signaling. Furthermore, the SUMOylation of NS5 significantly increased the stability of NS5 protein, which could account for most of the biological functions of SUMOylated NS5. Collectively, these findings suggest that the SUMOylation of DENV NS5 is one of the mechanisms regulating DENV replication.

IMPORTANCE

SUMOylation is a common posttranslational modification that regulates cellular protein functions but has not been reported in the proteins of dengue virus. Here, we found that the replicase of DENV, nonstructural protein 5 (NS5), can be SUMOylated. It is well known that providing RNA-dependent RNA polymerase activity and antagonizing host antiviral IFN signaling are a "double indemnity" of NS5 to support DENV replication. Without SUMOylation, NS5 fails to maintain its protein stability, which consequently disrupts its function in viral RNA replication and innate immunity antagonism. DENV threatens billions of people worldwide, but no licensed vaccine or specific therapeutics are currently available. Thus, our findings suggest that rather than specifically targeting NS5 enzyme activity, NS5 protein stability is a novel drug target on the growing list of anti-DENV strategies.

摘要

未标记

小泛素样修饰物(SUMO)参与一种可逆的翻译后修饰过程(SUMO化),该过程调节多种细胞过程,并在感染期间对众多病毒发挥重要作用。然而,病毒蛋白SUMO化在登革病毒(DENV)感染中的作用尚未阐明。在本研究中,我们发现SUMO化途径参与了DENV的生命周期,因为通过沉默编码SUMO化所需唯一E2结合酶的细胞基因Ubc9,DENV复制减少。通过体内和体外SUMO化分析,DENV NS5蛋白被鉴定为真正的SUMO靶向蛋白。通过表达各种NS5突变体,我们发现SUMO受体位点位于NS5的N端结构域,并且该结构域的一个假定的SUMO相互作用基序(SIM)对其SUMO化至关重要。携带SUMO化缺陷型SIM突变体的DENV复制子在病毒RNA复制方面表现出严重缺陷,支持了NS5 SUMO化是DENV复制所必需的这一观点。SUMO化缺陷型突变体也未能抑制STAT2介导的宿主抗病毒干扰素信号的诱导。此外,NS5的SUMO化显著增加了NS5蛋白的稳定性,这可以解释SUMO化NS5的大部分生物学功能。总体而言,这些发现表明DENV NS5的SUMO化是调节DENV复制的机制之一。

重要性

SUMO化是一种常见的翻译后修饰,可调节细胞蛋白功能,但尚未在登革病毒蛋白中报道。在这里,我们发现DENV的复制酶非结构蛋白5(NS5)可以被SUMO化。众所周知,提供RNA依赖性RNA聚合酶活性和拮抗宿主抗病毒IFN信号是NS5支持DENV复制的“双重保障”。没有SUMO化,NS5无法维持其蛋白稳定性,从而破坏其在病毒RNA复制和先天免疫拮抗中的功能。DENV威胁着全球数十亿人,但目前尚无许可疫苗或特异性治疗方法。因此,我们的发现表明,NS5蛋白稳定性而非特异性靶向NS5酶活性,是抗DENV策略不断增加的清单上的一个新的药物靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5a10/4836324/ba59479cc6d6/zjv9990915840001.jpg

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