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PIC activation through functional interplay between Mediator and TFIIH

机译:通过介体和TFIIH之间的功能相互作用来激活PIC

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摘要

The multiprotein Mediator coactivator complex functions in large part by controlling formation and function of the promoter-bound preinitiation complex (PIC), which consists of RNA polymerase II (Pol II) and general transcription factors. However, precisely how Mediator impacts the PIC, especially post-recruitment, has remained unclear. Here, we have studied Mediator effects on basal transcription in an in vitro transcription system reconstituted from purified components. Our results reveal a close functional interplay between Mediator and TFIIH in the early stages of PIC development. We find that under conditions when TFIIH is not normally required for transcription, Mediator actually represses transcription. TFIIH, whose recruitment to the PIC is known to be facilitated by the Mediator, then acts to relieve Mediator-induced repression to generate an active form of the PIC. Gel mobility shift analyses of PICs and characterization of TFIIH preparations carrying mutant XPB translocase subunit further indicate that this relief of repression is achieved through expending energy via ATP hydrolysis, suggesting that it is coupled to TFIIH’s established promoter melting activity. Our interpretation of these results is that Mediator functions as an assembly factor that facilitates PIC maturation through its various stages. Whereas the overall effect of the Mediator is to stimulate basal transcription, its initial engagement with the PIC generates a transcriptionally inert PIC intermediate, which necessitates energy expenditure to complete the process.
机译:多蛋白介体共激活因子复合物在很大程度上通过控制由RNA聚合酶II(Pol II)和一般转录因子组成的启动子结合的预启动复合物(PIC)的形成和功能来发挥作用。但是,调解人究竟如何影响PIC,尤其是招聘后,仍不清楚。在这里,我们已经研究了由纯化成分组成的体外转录系统中介体对基础转录的影响。我们的结果表明,在PIC开发的早期阶段,Mediator和TFIIH之间存在密切的功能相互作用。我们发现在正常情况下不需要转录TFIIH的情况下,Mediator实际上抑制了转录。 TFIIH已知会由调解员协助其向PIC征募,然后采取行动减轻调解员引起的镇压,以产生积极形式的PIC。对PIC的凝胶迁移率位移分析和带有突变XPB转位酶亚基的TFIIH制剂的特征进一步表明,这种抑制作用的减轻是通过ATP水解消耗能量来实现的,这表明它与TFIIH既定的启动子解链活性有关。我们对这些结果的解释是,介体起着组装因子的作用,可促进PIC在各个阶段的成熟。尽管介体的总体作用是刺激基础转录,但其与PIC的初始结合会产生转录惰性的PIC中间体,这需要能量消耗才能完成该过程。

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