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Functional interplay between Mediator and TFIIB in preinitiation complex assembly in relation to promoter architecture

机译:预启动程序复杂组装中Mediator和TFIIB之间的功能相互作用与启动子体系结构有关

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摘要

Mediator is a large coregulator complex conserved from yeast to humans and involved in many human diseases, including cancers. Together with general transcription factors, it stimulates preinitiation complex (PIC) formation and activates RNA polymerase II (Pol II) transcription. In this study, we analyzed how Mediator acts in PIC assembly using in vivo, in vitro, and in silico approaches. We revealed an essential function of the Mediator middle module exerted through its Med10 subunit, implicating a key interaction between Mediator and TFIIB. We showed that this Mediator–TFIIB link has a global role on PIC assembly genome-wide. Moreover, the amplitude of Mediator's effect on PIC formation is gene-dependent and is related to the promoter architecture in terms of TATA elements, nucleosome occupancy, and dynamics. This study thus provides mechanistic insights into the coordinated function of Mediator and TFIIB in PIC assembly in different chromatin contexts.
机译:介体是从酵母到人类保存下来的一种大的核心调节因子复合物,涉及多种人类疾病,包括癌症。与一般转录因子一起,它刺激预起始复合物(PIC)的形成并激活RNA聚合酶II(Pol II)的转录。在这项研究中,我们使用体内,体外和计算机方法分析了介体在PIC组装中的作用。我们揭示了介体中间模块通过其Med10亚基发挥的基本功能,暗示了介体和TFIIB之间的关键相互作用。我们表明,该介体–TFIIB链接在全基因组PIC组装中具有全球性作用。此外,介体对PIC形成的影响的幅度是基因依赖性的,并且在TATA元件,核小体占有率和动力学方面与启动子结构有关。因此,本研究为在不同染色质环境下PIC组装中介体和TFIIB的协调功能提供了机械方面的见解。

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