首页> 美国卫生研究院文献>The Journal of General Virology >Murine cytomegalovirus major immediate-early protein 3 interacts with cellular and viral proteins in viral DNA replication compartments and is important for early gene activation
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Murine cytomegalovirus major immediate-early protein 3 interacts with cellular and viral proteins in viral DNA replication compartments and is important for early gene activation

机译:鼠巨细胞病毒主要的早期蛋白质3与病毒DNA复制区室中的细胞和病毒蛋白质相互作用对于早期基因激活很重要

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摘要

Murine cytomegalovirus (MCMV) immediate-early protein 3 (IE3) is essential for successful viral infection. This study developed MCMVs with an EGFP-fused IE3 gene in order to study IE3 gene expression, subnuclear distribution and biological function, as well as to examine the interaction of IE3 with cellular and viral proteins. The generated viruses included MCMVIE3gfp, in which IE1 was completely removed by the in-frame fusion of exons 3 and 5 and the C terminus of IE3 was tagged with EGFP, and MCMVIE1/3gfp, in which IE1 was kept intact and EGFP was also fused to the C terminus of IE3. Unlike human CMV (HCMV), whose growth was significantly reduced when IE2 (the HCMV homologue of IE3 in MCMV) was tagged with EGFP, MCMVs with IE3–EGFP presented an unchanged replication profile. Using these new constructs, the distribution of IE3 was revealed as well as its interaction with viral and cellular proteins, especially proteins pertaining to DNA replication (M44 and E1) and cellular intrinsic defence [promyelocytic leukemia protein and histone deacetylases (HDACs)]. It was also shown that IE3 domains co-localize with DNA replication domains, and IE3 attracted other required proteins into IE3 domains via protein–protein interactions. In addition, IE3 was shown to interact with HDAC2 and to eliminate the inhibitory effect of HDAC2 on early viral gene production. Together, these results suggest that IE3 acts as a key protein for viral DNA replication by establishing pre-replication domains via recruitment of the required viral and cellular proteins, and by reducing host defences.
机译:鼠巨细胞病毒(MCMV)即早蛋白质3(IE3)对于成功的病毒感染至关重要。这项研究开发了具有EGFP融合IE3基因的MCMV,以研究IE3基因表达,亚核分布和生物学功能,以及研究IE3与细胞和病毒蛋白的相互作用。产生的病毒包括MCMVIE3gfp和MCMVIE1 / 3gfp,其中MCMVIE3gfp通过外显子3和5的框内融合将IE1完全去除,IE3的C末端标记有EGFP,MCMVIE1 / 3gfp则使IE1保持完整并融合了EGFP。到IE3的C总站。不像人类CMV(HCMV),当用EGFP标记IE2(MCMV中IE3的HCMV同源物)时,其生长会显着降低,而带有IE3–EGFP的MCMV呈现出不变的复制特性。使用这些新构建体,揭示了IE3的分布及其与病毒和细胞蛋白的相互作用,尤其是与DNA复制有关的蛋白(M44和E1)和细胞内在防御[早幼粒细胞白血病蛋白和组蛋白脱乙酰基酶(HDAC)]。还显示IE3域与DNA复制域共定位,并且IE3通过蛋白质间相互作用将其他必需的蛋白质吸引到IE3域中。另外,显示IE3与HDAC2相互作用并消除HDAC2对早期病毒基因产生的抑制作用。总之,这些结果表明,IE3通过募集所需的病毒和细胞蛋白并减少宿主防御来建立复制前结构域,从而成为病毒DNA复制的关键蛋白。

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