mRNA转录周期的机制研究。

Patrick Cramer
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引用次数: 8

摘要

我们现在已经完成了延伸模式下12亚基酵母RNA聚合酶II的原子晶体学模型,DNA和RNA位于活性中心间隙,NTP底物位于RNA的生长端。从这些研究已经出现了详细的mRNA延伸的三维视图。我们将这种结构分析扩展到转录裂解因子TFIIS(转录因子IIS)结合的聚合酶延伸复合体,这是聚合酶从DNA捕获位点逃逸所必需的。该复合物的详细模型揭示了RNA聚合和切割的单一可调活性位点,以及RNA和聚合酶结构域位置的变化,反映了延伸复合物的动态性质。与3'-RNA加工因子Pcf11结合的聚合酶CTD (c端结构域)磷酸肽的额外结构提供了转录延伸与mRNA加工耦合的见解。CTD磷酸酶Scp1被困在中间酶状态的结构解释了在聚合酶循环过程中CTD去磷酸化。我们最近也报道了介体亚复合物的第一个晶体结构,它揭示了一个具有保守铰链的扩展螺旋褶皱。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mechanistic studies of the mRNA transcription cycle.

We have now completed an atomic crystallographic model of the 12-subunit yeast RNA polymerase II in elongation mode, with DNA and RNA in the active-centre cleft, and the NTP substrate at the growing end of the RNA. From these studies has emerged a detailed three-dimensional view of mRNA elongation. We have extended this structural analysis to a polymerase elongation complex bound by the transcript cleavage factor TFIIS (transcription factor IIS), which is required for polymerase escape from DNA arrest sites. A detailed model of this complex reveals a single tuneable active site for RNA polymerization and cleavage, and changes in the position of the RNA and polymerase domains, reflecting the dynamic nature of the elongation complex. An additional structure of a polymerase CTD (C-terminal domain) phosphopeptide bound by the 3'-RNA processing factor Pcf11 provides insights into the coupling of transcription elongation to mRNA processing. The structure of the CTD phosphatase Scp1 trapped in an intermediary enzymatic state explains CTD dephosphorylation during recycling of the polymerase. We also recently reported the first crystal structure of a Mediator subcomplex, which reveals an extended helical fold with a conserved hinge.

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