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Regulation of transcription by the heterogeneous nuclear ribonucleoprotein E1B-AP5 is mediated by complex formation with the novel bromodomain-containing protein BRD7

机译:异源核糖核蛋白E1B-AP5对转录的调控是通过与新型含溴结构域的蛋白B​​RD7形成复合体来介导的

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E1B-AP5 was initially identified as a target of the early adenovirus E1B-55 kDa protein during the course of lytic infection. E1B-AP5 belongs to the heterogeneous nuclear ribonucleoprotein family and was demonstrated to be involved in mRNA processing and transport [Gabler, Schutt, Groitl, Wolf, Shenk and Dobner (1998) J. Virol. 72, 7960-7971]. In the present paper, we demonstrate that E1B-AP5 differentially regulates basic and ligand-dependent transcription. We found that E1B-AP5 represses basic transcription driven by several virus and cellular promoters, and mapped the repression activity to the N-terminal part of the protein. In contrast with basic repression, E1B-AP5 activated the glucocorticoid-dependent promoter in the absence of dexamethasone, but did not contribute to the dexamethasone-induced activation. Mutant analysis indicated the presence of an additional cellular factor that modulates E1B-AP5 transcriptional activity. Using yeast two-hybrid screening, we identified a novel chromatin-associated bromodomain-containing protein, BRD7, as an E1B-AP5 interaction partner. We confirmed E1B-AP5-BRD7 complex formation in vivo and in vitro. We found that, although BRD7 binds to histones H2A, H2B, H3 and H4 through its bromodomain, this domain was not necessary for the interaction with E1B-AP5. Indeed, the triple complex formation of E1B-AP5, BRD7 and histones was demonstrated. Disruption of the E1B-AP5-BRD7 complex increased E1B-AP5 repression activity for basic transcription and converted it from being an activator of the hormone-dependent promoter into being a strong repressor. We conclude that complex formation between BRD7 and EIB-AP5 links chromatin events with mRNA processing at the level of transcriptional regulation. [References: 38]
机译:E1B-AP5最初被确定为在溶菌感染过程中早期腺病毒E1B-55 kDa蛋白的靶标。 E1B-AP5属于异质核糖核蛋白家族,并被证明参与mRNA的加工和运输[Gabler,Schutt,Groitl,Wolf,Shenk和Dobner(1998)J.Virol.J.Biol.215:403-10。 72,7960-7971]。在本文中,我们证明了E1B-AP5差异调节基础和配体依赖的转录。我们发现,E1B-AP5抑制由几种病毒和细胞启动子驱动的基本转录,并将该抑制活性映射到该蛋白质的N端部分。与基本阻抑相反,在没有地塞米松的情况下,E1B-AP5激活了糖皮质激素依赖性启动子,但对地塞米松诱导的激活没有贡献。突变分析表明存在额外的细胞因子,可调节E1B-AP5转录活性。使用酵母双杂交筛选,我们确定了一种新型的染色质相关的含溴结构域的蛋白质,BRD7,作为E1B-AP5相互作用的伙伴。我们在体内和体外证实了E1B-AP5-BRD7复合物的形成。我们发现,尽管BRD7通过其溴结构域与组蛋白H2A,H2B,H3和H4结合,但该结构域对于与E1B-AP5的相互作用不是必需的。确实,证明了E1B-AP5,BRD7和组蛋白的三重复合物形成。 E1B-AP5-BRD7复合物的破坏增加了E1B-AP5的基本转录抑制活性,并将其从激素依赖性启动子的激活剂转变为强大的阻遏剂。我们得出的结论是,BRD7和EIB-AP5之间的复杂形成将染色质事件与转录调控水平上的mRNA处理联系起来。 [参考:38]

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