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首页> 外文期刊>Journal of Molecular Biology >Sequence-dependent Kinetic Model for Transcription Elongation by RNA Polymerase.
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Sequence-dependent Kinetic Model for Transcription Elongation by RNA Polymerase.

机译:RNA聚合酶转录延伸的序列依赖性动力学模型。

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摘要

We present a kinetic model for the sequence-dependent motion of RNA polymerase (RNAP) during transcription elongation. For each NTP incorporation, RNAP has a net forward translocation of one base-pair along the DNA template. However, this process may involve the exploration of back-tracked and forward-tracked translocation modes. In our model, the kinetic rates for the reaction pathway, calculated based on the stabilities of the transcription elongation complex (TEC), necessarily lead to sequence-dependent NTP incorporation rates. Simulated RNAP elongation kinetics is in good agreement with data from transcription gels and single-molecule studies. The model provides a kinetic explanation for well-known back-tracked pauses at transcript positions with unstable TECs. It also predicts a new type of pause caused by an energetically unfavorable transition from pre to post-translocation modes.
机译:我们提出了RNA聚合酶(RNAP)在转录延伸过程中依赖序列的运动的动力学模型。对于每次NTP掺入,RNAP沿DNA模板都有一个碱基对的净正向移位。但是,此过程可能涉及对后移和前移移位模式的探索。在我们的模型中,基于转录延伸复合物(TEC)的稳定性计算的反应途径动力学速率必然会导致序列依赖性NTP掺入速率。模拟的RNAP延伸动力学与转录凝胶和单分子研究的数据非常吻合。该模型为TEC不稳定的转录本位置上的众所周知的回溯停顿提供了动力学解释。它还预测了由从迁移前模式到迁移后模式的能量不利过渡导致的新型暂停。

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