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癌蛋白MDM2对卡波西肉瘤相关疱疹病毒ORF50蛋白丰度的调控

Regulation of the Abundance of Kaposi's Sarcoma-Associated Herpesvirus ORF50 Protein by Oncoprotein MDM2.

作者信息

Chang Tzu-Hsuan, Wang Shie-Shan, Chen Lee-Wen, Shih Ying-Ju, Chang Li-Kwan, Liu Shih-Tung, Chang Pey-Jium

机构信息

Graduate Institute of Biomedical Sciences, College of Medicine, Chang-Gung University, Taoyuan, Taiwan.

Department of Pediatric Surgery, Chang-Gung Memorial Hospital, Chiayi, Taiwan.

出版信息

PLoS Pathog. 2016 Oct 3;12(10):e1005918. doi: 10.1371/journal.ppat.1005918. eCollection 2016 Oct.

Abstract

The switch between latency and the lytic cycle of Kaposi's sarcoma-associated herpesvirus (KSHV) is controlled by the expression of virally encoded ORF50 protein. Thus far, the regulatory mechanism underlying the protein stability of ORF50 is unknown. Our earlier studies have demonstrated that a protein abundance regulatory signal (PARS) at the ORF50 C-terminal region modulates its protein abundance. The PARS region consists of PARS-I (aa 490-535) and PARS-II (aa 590-650), and mutations in either component result in abundant expression of ORF50. Here, we show that ORF50 protein is polyubiquitinated and its abundance is controlled through the proteasomal degradation pathway. The PARS-I motif mainly functions as a nuclear localization signal in the control of ORF50 abundance, whereas the PARS-II motif is required for the binding of ubiquitin enzymes in the nucleus. We find that human oncoprotein MDM2, an ubiquitin E3 ligase, is capable of interacting with ORF50 and promoting ORF50 degradation in cells. The interaction domains between both proteins are mapped to the PARS region of ORF50 and the N-terminal 220-aa region of MDM2. Additionally, we identify lysine residues at positions 152 and 154 in the N-terminal domain of ORF50 critically involved in MDM2-mediated downregulation of ORF50 levels. Within KSHV-infected cells, the levels of MDM2 were greatly reduced during viral lytic cycle and genetic knockdown of MDM2 in these cells favored the enhancement of ORF50 expression, supporting that MDM2 is a negative regulator of ORF50 expression. Collectively, the study elucidates the regulatory mechanism of ORF50 stability and implicates that MDM2 may have a significant role in the maintenance of viral latency by lowering basal level of ORF50.

摘要

卡波西肉瘤相关疱疹病毒(KSHV)潜伏期与裂解周期之间的转换由病毒编码的ORF50蛋白的表达控制。迄今为止,ORF50蛋白稳定性的调控机制尚不清楚。我们早期的研究表明,ORF50 C末端区域的蛋白质丰度调节信号(PARS)调节其蛋白质丰度。PARS区域由PARS-I(第490 - 535位氨基酸)和PARS-II(第590 - 650位氨基酸)组成,任一成分的突变都会导致ORF50的大量表达。在这里,我们表明ORF50蛋白被多聚泛素化,其丰度通过蛋白酶体降解途径受到控制。PARS-I基序在控制ORF50丰度方面主要作为核定位信号起作用,而PARS-II基序是核内泛素酶结合所必需的。我们发现人类癌蛋白MDM2,一种泛素E3连接酶,能够与ORF50相互作用并促进其在细胞中的降解。两种蛋白之间的相互作用结构域定位于ORF50的PARS区域和MDM2的N末端220个氨基酸区域。此外,我们确定ORF50 N末端结构域中第152和154位的赖氨酸残基在MDM2介导的ORF50水平下调中起关键作用。在KSHV感染的细胞中,MDM2的水平在病毒裂解周期中大幅降低,并且在这些细胞中对MDM2进行基因敲低有利于ORF50表达的增强,支持MDM2是ORF50表达的负调节因子。总体而言,该研究阐明了ORF50稳定性的调控机制,并暗示MDM2可能通过降低ORF50的基础水平在维持病毒潜伏期方面发挥重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/de3f/5047794/31a7a4a71283/ppat.1005918.g007.jpg

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