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Long-Distance Cooperative and Antagonistic RNA Polymerase Dynamics via DNA Supercoiling

机译:通过DNA Supercoiling长途合作和拮抗RNA聚合酶动态

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摘要

Genes are often transcribed by multiple RNA polymerases (RNAPs) at densities that can vary widely across genes and environmental conditions. Here, we provide in vitro and in vivo evidence for a built-in mechanism by which co-transcribing RNAPs display either collaborative or antagonistic dynamics over long distances (>2 kb) through transcription-induced DNA supercoiling. In Escherichia coli, when the promoter is active, co-transcribing RNAPs translocate faster than a single RNAP, but their average speed is not altered by large variations in promoter strength and thus RNAP density. Environmentally induced promoter repression reduces the elongation efficiency of already-loaded RNAPs, causing premature termination and quick synthesis arrest of no-longerneeded proteins. This negative effect appears independent of RNAP convoy formation and is abrogated by topoisomerase I activity. Antagonistic dynamics can also occur between RNAPs from divergently transcribed gene pairs. Our findings may be broadly applicable given that transcription on topologically constrained DNA is the norm across organisms.
机译:基因通常由多个RNA聚合酶(RNAAP)转录,所述密度可以在基因和环境条件下广泛变化。在这里,我们提供体外和体内证据,用于通过转录诱导的DNA Supercoiling共转录RNAP,通过转录RNS,通过转录诱导的DNA超磁性显示长距离(> 2kb)。在大肠杆菌中,当启动子是活性的时,共转录RNAPs易转移比单个RNAP快,但它们的平均速度不会通过启动子强度的大变化而改变,因此RNAP密度。环保诱导的启动子抑制降低了已经装载的RNAP的伸长率,导致无长长的蛋白质的过早终止和快速合成停滞。这种负面效应似乎与RNAP样品植物形成无关,并通过拓扑异构酶I活性消除。拮抗动力学也可以在来自分歧转录的基因对之间发生的。我们的研究结果可以广泛适用于拓扑限制的DNA的转录是跨生物体的常态。

著录项

  • 来源
    《Cell》 |2019年第1期|共30页
  • 作者单位

    Yale Univ Microbial Sci Inst West Haven CT 06516 USA;

    Yale Univ Microbial Sci Inst West Haven CT 06516 USA;

    Yale Univ Microbial Sci Inst West Haven CT 06516 USA;

    Yale Univ Microbial Sci Inst West Haven CT 06516 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 细胞生物学;
  • 关键词

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