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首页> 外文期刊>Virology >Epstein-Barr virus nuclear antigen 3C targets p53 and modulates its transcriptional and apoptotic activities.
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Epstein-Barr virus nuclear antigen 3C targets p53 and modulates its transcriptional and apoptotic activities.

机译:爱泼斯坦巴尔病毒核抗原3C靶向p53,并调节其转录和凋亡活性。

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The p53 tumor suppressor gene is one of the most commonly mutated genes in human cancers and the corresponding encoded protein induces apoptosis or cell-cycle arrest at the G1/S checkpoint in response to DNA damage. To date, previous studies have shown that antigens encoded by human tumor viruses such as SV40 large T antigen, adenovirus E1A and HPV E6 interact with p53 and disrupt its functional activity. In a similar fashion, we now show that EBNA3C, one of the EBV latent antigens essential for the B-cell immortalization in vitro, interacts directly with p53. Additionally, we mapped the interaction of EBNA3C with p53 to the C-terminal DNA-binding and the tetramerization domain of p53, and the region of EBNA3C responsible for binding to p53 was mapped to the N-terminal domain of EBNA3C (residues 130-190), previously shown to interact with a number of important cell-cycle components, specifically SCF(Skp2), cyclin A, and cMyc. Furthermore, we demonstrate that EBNA3C substantially represses the transcriptional activity of p53 in luciferase based reporter assays, and rescues apoptosis induced by ectopic p53 expression in SAOS-2 (p53(-/-)) cells. Interestingly, we also show that the DNA-binding ability of p53 is diminished in the presence of EBNA3C. Thus, the interaction between the p53 and EBNA3C provides new insights into the mechanism(s) by which the EBNA3C oncoprotein can alter cellular gene expression in EBV associated human cancers.
机译:p53抑癌基因是人类癌症中最常见的突变基因之一,相应的编码蛋白可响应DNA损伤在G1 / S检查点诱导凋亡或细胞周期停滞。迄今为止,以前的研究表明,由人肿瘤病毒编码的抗原,例如SV40大T抗原,腺病毒E1A和HPV E6与​​p53相互作用并破坏其功能活性。现在,以类似的方式,我们显示EBNA3C(对B细胞永生化至关重要的EBV潜在抗原之一)与p53直接相互作用。此外,我们将EBNA3C与p53的相互作用映射至C端DNA结合和p53的四聚结构域,并将负责与p53结合的EBNA3C区域映射至EBNA3C的N端结构域(残基130-190) ),以前显示与许多重要的细胞周期成分相互作用,特别是SCF(Skp2),细胞周期蛋白A和cMyc。此外,我们证明EBNA3C在基于荧光素酶的报告基因检测中基本上抑制了p53的转录活性,并拯救了异位p53在SAOS-2(p53(-/-))细胞中诱导的凋亡。有趣的是,我们还显示在EBNA3C存在下,p53的DNA结合能力会降低。因此,p53和EBNA3C之间的相互作用为EBNA3C癌蛋白可以改变EBV相关人类癌症中细胞基因表达的机制提供了新见解。

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