首页> 外文OA文献 >Epstein-Barr Virus Nuclear Antigen 3C and Prothymosin Alpha Interact with the p300 Transcriptional Coactivator at the CH1 and CH3/HAT Domains and Cooperate in Regulation of Transcription and Histone Acetylation
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Epstein-Barr Virus Nuclear Antigen 3C and Prothymosin Alpha Interact with the p300 Transcriptional Coactivator at the CH1 and CH3/HAT Domains and Cooperate in Regulation of Transcription and Histone Acetylation

机译:爱泼斯坦-巴尔病毒核抗原3C和前胸腺素α在CH1和CH3 / HAT域与p300转录共激活因子相互作用,并共同调控转录和组蛋白乙酰化

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摘要

The Epstein-Barr virus nuclear antigen 3C (EBNA3C), encoded by Epstein-Barr virus (EBV), is essential for mediating transformation of human B lymphocytes. Previous studies demonstrated that EBNA3C interacts with a small, nonhistone, highly acidic, high-mobility group-like nuclear protein prothymosin alpha (ProTα) and the transcriptional coactivator p300 in complexes from EBV-infected cells. These complexes were shown to be associated with histone acetyltransferase (HAT) activity in that they were able to acetylate crude histones in vitro. In this report we show that ProTα interacts with p300 similarly to p53 and other known oncoproteins at the CH1 amino-terminal domain as well as at a second domain downstream of the bromodomain which includes the CH3 region and HAT domain. Similarly, EBNA3C also interacts with p300 at regions which include the CH1 and CH3/HAT domains, suggesting that ProTα and EBNAC3C may interact in a complex with p300. We also show that ProTα activates transcription when targeted to promoters by fusion to the GAL4 DNA binding domain and that this activation is enhanced by the addition of an exogenous source of p300 under the control of a heterologous promoter. This overall activity is down-modulated in the presence of EBNA3C. These results further establish the interaction of cellular coactivator p300 with ProTα and demonstrate that the associated activities resulting from this interaction, which plays a role in acetylation of histones and coactivation, can be regulated by EBNA3C. Furthermore, this study establishes for the first time a transcriptional role for ProTα in recruitment or stabilization of coactivator p300, as well as other basal transcription factors, at the nucleosomes for regulation of transcription.
机译:由爱泼斯坦巴尔病毒(EBV)编码的爱泼斯坦巴尔病毒核抗原3C(EBNA3C),对于介导人类B淋巴细胞的转化至关重要。先前的研究表明,EBNA3C与小的非组蛋白,高酸性,高迁移率的类核蛋白原胸腺素α(ProTα)和转录共激活因子p300在EBV感染细胞复合物中相互作用。这些复合物与组蛋白乙酰转移酶(HAT)活性有关,因为它们能够在体外乙酰化粗组蛋白。在本报告中,我们显示ProTα与p300和p53和其他已知的癌蛋白在CH1氨基末端结构域以及在溴结构域下游的第二个结构域(包括CH3和HAT结构域)下游的相互作用相似。同样,EBNA3C在包含CH1和CH3 / HAT结构域的区域也与p300相互作用,这表明ProTα和EBNAC3C可能与p300形成复合体。我们还表明,当ProTα通过与GAL4 DNA结合结构域融合而靶向启动子时,它会激活转录,并且通过在异源启动子的控制下添加p300外源来增强这种激活。在EBNA3C的存在下,这种总体活性被下调。这些结果进一步建立了细胞共激活因子p300与ProTα的相互作用,并证明了由这种相互作用产生的相关活性在EBNA3C的调控下对组蛋白的乙酰化和共激活起了作用。此外,该研究首次确定了ProTα在核小体中用于调节转录的辅酶p300以及其他基础转录因子的募集或稳定中的转录作用。

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