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In vitro analysis of RNA polymerase II elongation complex dynamics

机译:RNA聚合酶II伸长率复合动力学的体外分析

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摘要

RNA polymerase II elongation complexes (ECs) were assembled from nuclear extract on immobilized DNA templates and analyzed by quantitative mass spectrometry. Time-course experiments showed that initiation factor TFIIF can remain bound to early ECs, while levels of core elongation factors Spt4-Spt5, Paf1C, Spt6-Spn1, and Elf1 remain steady. Importantly, the dynamic phosphorylation patterns of the Rpb1 C-terminal domain (CTD) and the factors that recognize them change as a function of postinitiation time rather than distance elongated. Chemical inhibition of Kin28/Cdk7 in vitro blocks both Ser5 and Ser2 phosphorylation, affects initiation site choice, and inhibits elongation efficiency. EC components dependent on CTD phosphorylation include capping enzyme, cap-binding complex, Set2, and the polymerase-associated factor (PAF1) complex. By recapitulating many known features of in vivo elongation, this system reveals new details that clarify how EC-associated factors change at each step of transcription.
机译:RNA聚合酶II伸长倍络合物(ECS)从固定的DNA模板上从核提取物组装并通过定量质谱分析。时间课程实验表明,发起因子TFIIF可以保持与早期ECS的结合,而核心伸长因子SPT4-SPT5,PAF1C,SPT6-SPN1和ELF1的水平保持稳定。重要的是,RPB1 C-末端域(CTD)的动态磷酸化模式和识别它们随着前进时间而不是距离改变的因素而不是细长的因素。在体外抑制KIN28 / CDK7的化学抑制均阻断SER5和SER2磷酸化,影响起始位点选择,并抑制伸长率。依赖于CTD磷酸化的EC组分包括封端酶,帽结合复合物,Set2和聚合酶相关因子(PAF1)复合物。通过重新承载在体内伸长率的许多已知特征,该系统揭示了新细节,以澄清EC相关因素在每一步转录时如何变化。

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