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Events during eucaryotic rRNA transcription initiation and elongation: conversion from the closed to the open promoter complex requires nucleotide substrates.

机译:真核rRNA转录起始和延伸过程中的事件:从封闭的启动子复合物到开放的启动子复合物的转化需要核苷酸底物。

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摘要

Chemical footprinting and topological analysis were carried out on the Acanthamoeba castellanii rRNA transcription initiation factor (TIF) and RNA polymerase I complexes with DNA during transcription initiation and elongation. The results show that the binding of TIF and polymerase to the promoter does not alter the supercoiling of the DNA template and the template does not become sensitive to modification by diethylpyrocarbonate, which can identify melted DNA regions. Thus, in contrast to bacterial RNA polymerase, the eucaryotic RNA polymerase I-promoter complex is in a closed configuration preceding addition of nucleotides in vitro. Initiation and 3'-O-methyl CTP-limited translocation by RNA polymerase I results in separation of the polymerase-TIF footprints, leaving the TIF footprint unaltered. In contrast, initiation and translocation result in a significant change in the conformation of the polymerase-DNA complex, culminating in an unwound DNA region of at least 10 base pairs.
机译:在转录启动和延伸过程中,对棘阿米棘壳虫rRNA转录起始因子(TIF)和RNA聚合酶I与DNA的复合物进行了化学印迹和拓扑分析。结果表明,TIF和聚合酶与启动子的结合不会改变DNA模板的超螺旋,并且该模板对焦碳酸二乙酯的修饰不敏感,后者可以识别融化的DNA区域。因此,与细菌RNA聚合酶相反,在体外添加核苷酸之前,真核RNA聚合酶I-启动子复合物处于封闭构型。 RNA聚合酶I的启动和3'-O-甲基CTP限制的易位导致聚合酶TIF足迹的分离,而TIF足迹保持不变。相反,起始和易位导致聚合酶-DNA复合物构象的显着变化,最终达到至少10个碱基对的未缠绕DNA区域。

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  • 作者

    Bateman, E; Paule, M R;

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  • 年度 1988
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  • 原文格式 PDF
  • 正文语种 en
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