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单纯疱疹病毒的IE110、IE175和IE63反式激活蛋白在亚细胞点状结构内的共定位相互作用评估。

Evaluation of colocalization interactions between the IE110, IE175, and IE63 transactivator proteins of herpes simplex virus within subcellular punctate structures.

作者信息

Mullen M A, Gerstberger S, Ciufo D M, Mosca J D, Hayward G S

机构信息

Department of Pharmacology and Molecular Sciences, Johns Hopkins University School of Medicine, Baltimore, Maryland 21205.

出版信息

J Virol. 1995 Jan;69(1):476-91. doi: 10.1128/JVI.69.1.476-491.1995.

Abstract

A number of previous studies have implied that three herpes simplex virus-encoded nuclear transactivator proteins, IE175 (ICP4), IE110 (ICP0), and IE63 (ICP27), may cooperate in transcriptional and posttranscriptional stimulation of viral gene expression. Using double-label immunofluorescence assays (IFA) in transient expression assays, we have examined the intracellular localization of these three proteins in DNA-transfected cells. The IE110 protein on its own forms spherical punctate domains within the nucleus, whereas the IE175 and IE63 proteins alone give uniform and speckled diffuse patterns, respectively. In infected cells, the IE110 punctate granules have been shown to correspond to novel preexisting subnuclear structures referred to as ND10 domains or PODs that contain a variety of cellular proteins, including SP100 and the PML proto-oncogene product. Cotransfection experiments with wild-type nuclear forms of both IE175 and IE110 provided direct evidence for partial redistribution of IE175 into the same punctate granules that contained IE110. Surprisingly, nuclear forms of IE110 were found to move a cytoplasmic form of IE175 into nuclear punctate structures, and a cytoplasmic form of IE110 was able to retain nuclear forms of IE175 in cytoplasmic punctate structures. Therefore, the punctate characteristic of IE110 appeared to both dominate the interactions and override the normal nuclear localization signals. The domains responsible for the interaction mapped to between codons 518 and 768 in 1E110 and to between codons 835 and 1029 in IE175. Importantly, a truncated nuclear form of the 1,298-amino-acid IE175 protein, which lacked the C-terminal domain beyond codon 834, was found to be excluded from the IE110 punctate granules. Cotransfection of nuclear or cytoplasmic IE110 with a truncated nuclear form of IE63 also led to partial redistribution of IE63 into either nuclear or cytoplasmic punctate granules containing IE110. Both the IE63-IE110 and IE175-IE110 colocalization interactions were demonstrated in Vero cells but not in 293 cells. Consequently, they differ from IE110 self-interactions, which correlate with in vitro dimerization and occur efficiently in both cell types. These interactions may help to explain the altered promoter target specificity and synergism observed when IE175 is cotransfected with IE110 in transactivation studies.

摘要

此前的多项研究表明,单纯疱疹病毒编码的三种核转录激活蛋白,即IE175(ICP4)、IE110(ICP0)和IE63(ICP27),可能在病毒基因表达的转录和转录后刺激过程中协同作用。在瞬时表达实验中,我们通过双标记免疫荧光分析(IFA),检测了这三种蛋白在DNA转染细胞中的细胞内定位。单独的IE110蛋白在细胞核内形成球形点状结构域,而单独的IE175和IE63蛋白分别呈现均匀和斑点状的弥散模式。在感染的细胞中,IE110点状颗粒已被证明对应于新存在的亚核结构,称为ND10结构域或PODs,其中包含多种细胞蛋白,包括SP100和PML原癌基因产物。用IE175和IE110的野生型核形式进行共转染实验,为IE175部分重新分布到含有IE110的相同点状颗粒中提供了直接证据。令人惊讶的是,发现IE110的核形式能将IE175的细胞质形式转移到核点状结构中,而IE110的细胞质形式能够将IE175的核形式保留在细胞质点状结构中。因此,IE110的点状特征似乎既主导了相互作用,又超越了正常的核定位信号。负责相互作用的结构域定位于IE110的518至768密码子之间以及IE175的835至1029密码子之间。重要的是,发现缺少834密码子之后C末端结构域的1298个氨基酸的IE175蛋白的截短核形式被排除在IE110点状颗粒之外。将核或细胞质形式的IE110与IE63的截短核形式共转染,也导致IE63部分重新分布到含有IE110的核或细胞质点状颗粒中。IE63-IE110和IE175-IE110的共定位相互作用在Vero细胞中得到证实,但在293细胞中未得到证实。因此,它们不同于IE110自身相互作用,后者与体外二聚化相关,且在两种细胞类型中均有效发生。这些相互作用可能有助于解释在反式激活研究中,当IE175与IE110共转染时观察到的启动子靶标特异性改变和协同作用。

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