首页> 美国卫生研究院文献>Journal of Virology >CCAAT/Enhancer Binding Protein α Binds to the Epstein-Barr Virus (EBV) ZTA Protein through Oligomeric Interactions and Contributes to Cooperative Transcriptional Activation of the ZTA Promoter through Direct Binding to the ZII and ZIIIB Motifs during Induction of the EBV Lytic Cycle
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CCAAT/Enhancer Binding Protein α Binds to the Epstein-Barr Virus (EBV) ZTA Protein through Oligomeric Interactions and Contributes to Cooperative Transcriptional Activation of the ZTA Promoter through Direct Binding to the ZII and ZIIIB Motifs during Induction of the EBV Lytic Cycle

机译:CCAAT /增强子结合蛋白α通过寡聚相互作用与爱泼斯坦-巴尔病毒(EBV)ZTA蛋白结合并通过在诱导EBV裂解周期的过程中直接结合ZII和ZIIIB基元来促进ZTA启动子的协同转录激活。

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摘要

The Epstein-Barr virus (EBV)-encoded ZTA protein interacts strongly with and stabilizes the cellular CCAAT/enhancer binding protein α (C/EBPα), leading to the induction of p21-mediated G1 cell cycle arrest. Despite the strong interaction between these two basic leucine zipper (bZIP) family proteins, the ZTA and C/EBPα subunits do not heterodimerize, as indicated by an in vitro cross-linking assay with in vitro-cotranslated 35S-labeled C/EBPα and 35S-labeled ZTA protein. Instead, they evidently form a higher-order oligomeric complex that competes with C/EBPα binding but not with ZTA binding in electrophoretic mobility shift assays (EMSAs). Glutathione S-transferase affinity assays with mutant ZTA proteins revealed that the basic DNA binding domain and the key leucine zipper residues required for homodimerization are all required for the interaction with C/EBPα. ZTA is known to bind to two ZRE sites within the ZTA promoter and to positively autoregulate its own expression in transient cotransfection assays, but there is conflicting evidence about whether it does so in vivo. Examination of the proximal ZTA upstream promoter region by in vitro EMSA analysis revealed two high-affinity C/EBP binding sites (C-2 and C-3), which overlap the ZII and ZIIIB motifs, implicated as playing a key role in lytic cycle induction. A chromatin immunoprecipitation assay confirmed the in vivo binding of both endogenous C/EBPα and ZTA protein to the ZTA promoter after lytic cycle induction but not during the latent state in EBV-infected Akata cells. Reporter assays revealed that cotransfected C/EBPα activated the ZTA promoter even more effectively than cotransfected ZTA. However, synergistic activation of the ZTA promoter was not observed when ZTA and C/EBPα were cotransfected together in either HeLa or DG75 cells. Mutagenesis of either the ZII or the ZIIIB sites in the ZTA promoter strongly reduced C/EBPα transactivation, suggesting that these sites act cooperatively. Furthermore, the introduction of exogenous C/EBPα into EBV-infected HeLa-BX1 cells induced endogenous ZTA mRNA and protein expression, as demonstrated by both reverse transcription-PCR and immunoblotting assays. Finally, double-label immunofluorescence assays suggested that EAD protein expression was activated even better than ZTA expression in latently infected C/EBPα-transfected Akata cells, perhaps because of the presence of a strong B-cell-specific repressed chromatin conformation on the ZTA promoter itself during EBV latency.
机译:爱泼斯坦-巴尔病毒(EBV)编码的ZTA蛋白与细胞CCAAT /增强子结合蛋白α(C /EBPα)强烈相互作用并使其稳定,从而诱导了p21介导的G1细胞周期阻滞。尽管这两个基本的亮氨酸拉链(bZIP)家族蛋白之间有很强的相互作用,但ZTA和C /EBPα亚基并没有异二聚体,如体外共交联的 35 的体外交联测定所表明的那样。 S标记的C /EBPα和 35 S标记的ZTA蛋白。相反,它们显然形成了一种高阶寡聚复合物,在电泳迁移率迁移分析(EMSA)中与C /EBPα结合而不与ZTA结合竞争。用突变ZTA蛋白进行的谷胱甘肽S-转移酶亲和力测定表明,与C /EBPα相互作用均需要同型二聚化所需的基本DNA结合结构域和关键亮氨酸拉链残基。已知ZTA可以结合ZTA启动子内的两个ZRE位点,并在瞬时共转染测定中积极地自动调节其自身的表达,但是关于它是否在体内如此存在矛盾的证据。通过体外EMSA分析检查近端ZTA上游启动子区域,发现两个高亲和力C / EBP结合位点(C-2和C-3)与ZII和ZIIIB基序重叠,提示在裂解周期中起关键作用感应。染色质免疫沉淀试验证实,在裂解周期诱导后,内源性C /EBPα和ZTA蛋白在体内均与ZTA启动子结合,但在EBV感染的Akata细胞中未处于潜伏状态。记者分析显示,与共转染的ZTA相比,共转染的C /EBPα激活ZTA启动子的效率更高。但是,在HeLa或DG75细胞中将ZTA和C /EBPα共转染时,未观察到ZTA启动子的协同激活。 ZTA启动子中ZII或ZIIIB位点的诱变作用大大降低了C /EBPα反式激活,表明这些位点协同作用。此外,将外源性C /EBPα导入EBV感染的HeLa-BX1细胞中可诱导内源性ZTA mRNA和蛋白质表达,这已通过逆转录PCR和免疫印迹试验证实。最后,双标记免疫荧光分析表明,在潜伏感染的C /EBPα转染的Akata细胞中,EAD蛋白的表达甚至比ZTA表达的活化更好,这也许是因为ZTA启动子上存在强烈的B细胞特异性抑制的染色质构象。本身在EBV潜伏期。

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