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ZEB Negatively Regulates the Lytic-Switch BZLF1 Gene Promoter of Epstein-Barr Virus

机译:ZEB负调节EB病毒的Lytic-Switch BZLF1基因启动子。

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摘要

Epstein-Barr virus (EBV) is a human herpesvirus capable of establishing a latent state in B lymphocytes. The product of the immediate-early BZLF1 gene, Zta, is a transcriptional transactivator essential for viral DNA amplification and virion production. Previously, we identified a negative cis-acting element within the BZLF1 promoter termed ZV. ZV contains the sequence 5′-CAGGTA-3′ located at nucleotides −17 to −12 relative to the transcription initiation site. It sequence specifically binds a cellular factor, ZVR. Based on sequence binding specificity, we postulated that ZVR may be zinc finger E-box binding factor (ZEB) or a related zinc finger/homeodomain family member. We show here by immunoshift assays that ZVR and human ZEB specifically cross-react with an antibody to δEF1, the chicken homolog of ZEB. Competition electrophoretic mobility shift assays confirmed that ZEB binds to the ZV element with the same binding specificity as ZVR. Overexpression of ZEB in either B-lymphocytic DG75 cells or mammary epithelial MCF-7 cells repressed Zta-induced activation of the BZLF1 promoter four- to fivefold via the ZV site. Thus, we conclude that the previously identified cellular repressor ZVR is, in fact, ZEB. We also present evidence that other cellular factors likely affect the transcriptional activity of ZEB. Lastly, we identify a ZEB-binding site within the promoter of the lytic BRLF1 gene of EBV. We postulate that ZEB likely plays an important role in regulating the life cycle of EBV.
机译:爱泼斯坦-巴尔病毒(EBV)是一种人类疱疹病毒,能够在B淋巴细胞中建立潜在状态。 BZLF1早期基因Zta的产物是转录反式激活子,对病毒DNA扩增和病毒体生产至关重要。以前,我们在BZLF1启动子中鉴定了一个负的顺式作用元件,称为ZV。 ZV包含相对于转录起始位点位于核苷酸-17至-12的序列5'-CAGGTA-3'。它的序列特异性结合细胞因子ZVR。基于序列结合特异性,我们推测ZVR可能是锌指E-box结合因子(ZEB)或相关的锌指/同源域家族成员。我们在这里通过免疫转移测定法显示ZVR和人ZEB与δEF1(ZEB的鸡同源物)抗体特异性交叉反应。竞争电泳迁移率变动分析证实了ZEB以与ZVR相同的结合特异性结合ZV元件。 B淋巴细胞DG75细胞或乳腺上皮MCF-7细胞中ZEB的过表达通过ZV位点抑制Zta诱导的BZLF1启动子活化四到五倍。因此,我们得出结论,先前确定的细胞阻遏物ZVR实际上是ZEB。我们还提供了其他细胞因子可能影响ZEB转录活性的证据。最后,我们在EBV的裂解性BRLF1基因启动子中鉴定了一个ZEB结合位点。我们假设ZEB可能在调节EBV的生命周期中起重要作用。

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