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Evaluation of Interactions of Human Cytomegalovirus Immediate-Early IE2 Regulatory Protein with Small Ubiquitin-Like Modifiers and Their Conjugation Enzyme Ubc9

机译:评价人类巨细胞病毒立即早期IE2调节蛋白与类似泛素的小修饰剂及其结合酶Ubc9的相互作用。

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摘要

The human cytomegalovirus (HCMV) major immediate-early protein IE2 is a nuclear phosphoprotein that is believed to be a key regulator in both lytic and latent infections. Using yeast two-hybrid screening, small ubiquitin-like modifiers (SUMO-1, SUMO-2, and SUMO-3) and a SUMO-conjugating enzyme (Ubc9) were isolated as IE2-interacting proteins. In vitro binding assays with glutathione S-transferase (GST) fusion proteins provided evidence for direct protein-protein interaction. Mapping data showed that the C-terminal end of SUMO-1 is critical for interaction with IE2 in both yeast and in vitro binding assays. IE2 was efficiently modified by SUMO-1 or SUMO-2 in cotransfected cells and in cells infected with a recombinant adenovirus expressing HCMV IE2, although the level of modification was much lower in HCMV-infected cells. Two lysine residues at positions 175 and 180 were mapped as major alternative SUMO-1 conjugation sites in both cotransfected cells and an in vitro sumoylation assay and could be conjugated by SUMO-1 simultaneously. Although mutations of these lysine residues did not interfere with the POD (or ND10) targeting of IE2, overexpression of SUMO-1 enhanced IE2-mediated transactivation in a promoter-dependent manner in reporter assays. Interestingly, many other cellular proteins identified as IE2 interaction partners in yeast two-hybrid assays also interact with SUMO-1, suggesting that either directly bound or covalently conjugated SUMO moieties may act as a bridge for interactions between IE2 and other SUMO-1-modified or SUMO-1-interacting proteins. When we investigated the intracellular localization of SUMO-1 in HCMV-infected cells, the pattern changed from nuclear punctate to predominantly nuclear diffuse in an IE1-dependent manner at very early times after infection, but with some SUMO-1 protein now associated with IE2 punctate domains. However, at late times after infection, SUMO-1 was predominantly detected within viral DNA replication compartments containing IE2. Taken together, these results show that HCMV infection causes the redistribution of SUMO-1 and that IE2 both physically binds to and is covalently modified by SUMO moieties, suggesting possible modulation of both the function of SUMO-1 and protein-protein interactions of IE2 during HCMV infection.
机译:人类巨细胞病毒(HCMV)主要即早蛋白IE2是一种核磷蛋白,被认为是裂解和潜伏感染的关键调节因子。使用酵母双杂交筛选,小的泛素样修饰剂(SUMO-1,SUMO-2和SUMO-3)和一个SUMO偶联酶(Ubc9)被分离为IE2相互作用蛋白。谷胱甘肽S-转移酶(GST)融合蛋白的体外结合测定提供了直接蛋白相互作用的证据。映射数据表明,SUMO-1的C末端对于在酵母和体外结合试验中与IE2的相互作用至关重要。在共转染的细胞和感染了表达HCMV IE2的重组腺病毒的细胞中,IE2被SUMO-1或SUMO-2有效地修饰,尽管修饰水平在HCMV感染的细胞中要低得多。 175和180位的两个赖氨酸残基被定位为两个共转染细胞中的主要替代SUMO-1缀合位点,并进行了体外sumoyation测定,可以同时被SUMO-1缀合。尽管这些赖氨酸残基的突变不干扰IE2的POD(或ND10)靶向,但SUMO-1的过表达在报告基因检测中以启动子依赖性方式增强了IE2介导的反式激活。有趣的是,在酵母双杂交检测中被鉴定为IE2相互作用伴侣的许多其他细胞蛋白也与SUMO-1相互作用,这表明直接结合或共价缀合的SUMO部分可能充当IE2与其他SUMO-1-修饰的相互作用的桥梁。或SUMO-1相互作用蛋白。当我们调查HCMV感染细胞中SUMO-1的细胞内定位时,在感染后很早的时候,模式便以IE1依赖性的方式从核点状转变为主要的核扩散,但现在有一些SUMO-1蛋白与IE2相关点状域。然而,在感染后的晚期,主要在含有IE2的病毒DNA复制区室中检测到SUMO-1。综上所述,这些结果表明,HCMV感染会引起SUMO-1的重新分布,而IE2会与SUMO部分物理结合并被其共价修饰,这表明SUMO-1的功能和IE2的蛋白-蛋白质相互作用均可能受到调节HCMV感染。

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