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首页> 外文期刊>Molecular Microbiology >Growth inhibition mediated by excess negative supercoiling: the interplay between transcription elongation, R-loop formation and DNA topology
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Growth inhibition mediated by excess negative supercoiling: the interplay between transcription elongation, R-loop formation and DNA topology

机译:过度负超螺旋介导的生长抑制:转录延伸,R环形成和DNA拓扑之间的相互作用

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摘要

It has been known for a long time that supercoiling can affect gene expression at the level of promoter activity. Moreover, the results of a genome-wide analysis have recently led to the proposal that supercoiling could play a role in the regulation of gene expression at this level by acting as a second messenger, relaying environmental signals to regulatory networks. Although evidence is lacking for a regulatory role of supercoiling following transcription initiation, recent results from both yeast and bacteria suggest that the effect of supercoiling on gene expression can be considerably more dramatic after this initiation step. Transcription-induced supercoiling and its associated R-loops seem to be involved in this effect. In this context, one major function of topoisomerases would be to prevent the generation of excess negative supercoiling by transcription elongation, to inhibit R-loop formation and allow gene expression. This function would be especially evident when substantial and rapid gene expression is required for stress resistance, and it may explain, at least in part, why topoisomerase I synthesis is directed from stress-induced promoters in Escherichia coli. Growth inhibition mediated by excess negative supercoiling might be related to this interplay between transcription elongation and supercoiling.
机译:长期以来已知超螺旋可以在启动子活性水平上影响基因表达。此外,全基因组分析的结果最近提出了这样的建议,即超螺旋可以通过充当第二信使,将环境​​信号传递到调节网络,从而在该水平上调节基因表达。尽管缺乏证据证明转录启动后超螺旋的调节作用,但酵母和细菌的最新结果表明,超螺旋对基因表达的影响在该起始步骤之后会更加明显。转录诱导的超螺旋及其相关的R环似乎参与了这种作用。在这种情况下,拓扑异构酶的一项主要功能是通过转录延伸防止过度负超螺旋的产生,抑制R环的形成并允许基因表达。当需要大量且快速的基因表达来抵抗胁迫时,该功能将特别明显,并且可以至少部分解释为何拓扑异构酶I合成是由大肠杆菌中的胁迫诱导启动子指导的。过量负超螺旋介导的生长抑制可能与转录伸长和超螺旋之间的相互作用有关。

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