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Conserved Region CR2 of Epstein-Barr Virus Nuclear Antigen Leader Protein Is a Multifunctional Domain That Mediates Self-Association as well as Nuclear Localization and Nuclear Matrix Association

机译:爱泼斯坦-巴尔病毒核抗原前导蛋白的保守区CR2是介导自结合以及核定位和核基质结合的多功能域。

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摘要

Self-association of viral proteins is important for many of their functions, including enzymatic, transcriptional, and transformational activities. Epstein-Barr virus (EBV) nuclear antigen leader protein (EBNA-LP) contains various numbers of W1W2 repeats and a unique carboxyl-terminal Y1Y2 domain. It was reported that EBNA-LP associates with a variety of cellular proteins and plays a critical role in EBV-induced transformation. We report here that EBNA-LP self-associates in vivo and the domain responsible for the homotypic association is a multifunctional domain mediating nuclear localization, nuclear matrix association, and EBNA-2-dependent coactivator function of the protein. Our conclusions are based on the following observations. (i) EBNA-LP interacts with itself or its derivatives in the yeast two-hybrid system. (ii) A purified chimeric protein consisting of glutathione S-transferase fused to EBNA-LP specifically formed complexes with EBNA-LP transiently expressed in COS-7 cells. (iii) When Flag epitope-tagged EBNA-LP with either one or two W1W2 repeats and EBNA-LP containing four W1W2 repeats were coexpressed in COS-7 cells, the latter was specifically coimmunoprecipitated with the former. (iv) Mutational analyses of EBNA-LP with deletion mutants revealed that the region between codons 19 and 39 (relative to the first amino acid residue of the W2 domain) is essential for self-association of the protein. The mapped region almost completely overlaps with CR2 and CR3, regions conserved among a subset of primate γ-herpesviruses and critical for EBNA-2-dependent coactivator function. Amino acid substitutions in CR2 alone abolished the ability of the protein to self-interact. This laboratory previously reported that CR2 is also responsible for nuclear localization and nuclear matrix association (A. Yokoyama, Y. Kawaguchi, I. Kitabayashi, M. Ohki, and K. Hirai, Virology 279:401–413, 2001). (v) Sucrose gradient sedimentation showed that amino acid substitutions in CR2 reduced the ability of the protein to form protein complexes in B cells. These results suggest that self-association of EBNA-LP may be important for its various functions and interactions of the protein with multiple cellular proteins.
机译:病毒蛋白的自缔合对其许多功能都很重要,包括酶促,转录和转化活性。爱泼斯坦巴尔病毒(EBV)核抗原前导蛋白(EBNA-LP)包含各种数量的W1W2重复序列和一个独特的羧基末端Y1Y2结构域。据报道,EBNA-LP与多种细胞蛋白缔合,并且在EBV诱导的转化中起关键作用。我们在这里报告,EBNA-LP在体内自我关联,负责同型关联的域是介导蛋白质的核定位,核基质缔合和EBNA-2依赖性共激活功能的多功能域。我们的结论基于以下观察。 (i)EBNA-LP在酵母双杂交系统中与其自身或其衍生物相互作用。 (ii)由融合至EBNA-LP的谷胱甘肽S-转移酶组成的纯化的嵌合蛋白,与在COS-7细胞中瞬时表达的EBNA-LP特异性地形成复合物。 (iii)当带有一个或两个W1W2重复序列的Flag表位标记的EBNA-LP和含有四个W1W2重复序列的EBNA-LP在COS-7细胞中共表达时,后者与前者特异性免疫沉淀。 (iv)对具有缺失突变体的EBNA-LP的突变分析表明,密码子19和39之间的区域(相对于W2结构域的第一个氨基酸残基)对于蛋白质的自缔合至关重要。映射的区域与CR2和CR3几乎完全重叠,CR2和CR3是在灵长类γ疱疹病毒子集中保守的区域,并且对EBNA-2依赖性共激活子功能至关重要。仅CR2中的氨基酸取代就消除了蛋白质自我相互作用的能力。该实验室先前曾报道CR2还负责核定位和核基质缔合(A. Yokoyama,Y. Kawaguchi,I. Kitabayashi,M. Ohki和K. Hirai,Virology 279:401-413,2001)。 (v)蔗糖梯度沉降表明CR2中的氨基酸取代降低了蛋白质在B细胞中形成蛋白质复合物的能力。这些结果表明,EBNA-LP的自缔合对于其各种功能以及该蛋白与多种细胞蛋白的相互作用可能很重要。

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