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RNA polymerase II with open and closed trigger loops: active site dynamics and nucleic acid translocation.

机译:具有开放式和封闭式触发环的RNA聚合酶II:活性位点动力学和核酸易位。

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摘要

RNA polymerase II is the central eukaryotic enzyme in transcription from DNA to RNA. The dynamics of RNA polymerase II is described from molecular-dynamics simulations started from two crystal structures with open and closed trigger loop (TL) forms. Dynamic transitions between neutral and forward translocated states were observed, especially for the downstream DNA duplex. Dynamic rearrangements were also seen in the active site environment, including conformations in which the active site nucleotide assumed a possibly precatalytic conformation in close proximity to the terminal 3'-hydroxyl of the nascent RNA. Because nucleic acid translocation was observed primarily in the simulations with an open TL structure, whereas close approach of the active site nucleotide to the terminal RNA ribose predominantly occurred in the closed TL structure, a modified Brownian ratchet mechanism is proposed whereby thermally driven translocation is only possible with an open TL, and fidelity control and catalysis require TL closing.
机译:RNA聚合酶II是从DNA转录为RNA的核心真核酶。从分子动力学模拟描述了RNA聚合酶II的动力学,该分子动力学模拟是从两个具有开式和闭式触发环(TL)形式的晶体结构开始的。观察到中性和向前易位状态之间的动态过渡,特别是对于下游DNA双链体。在活性位点环境中也观察到了动态重排,包括其中活性位点核苷酸在与新生RNA的末端3'-羟基非常接近的位置呈现可能的预催化构象的构象。由于主要在模拟中以开放的TL结构观察到核酸易位,而在封闭的TL结构中主要发生活性位点核苷酸接近末端RNA核糖的接近方法,因此提出了一种改良的布朗棘轮机制,其中仅通过热驱动易位可能需要使用开放TL,而保真度控制和催化则需要TL封闭。

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