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Transcription pausing: biological significance of thermal fluctuations biased by repetitive genomic sequences

机译:转录暂停:重复基因组序列偏向的热波动的生物学意义

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Transcription of DNA by RNA polymerase (RNAP) takes place in a cell environment dominated by thermal fluctuations. How are transcription reactions including initiation, elongation, and termination on genomic DNA so well-controlled during such fluctuations? A recent statistical mechanical approach using high-throughput sequencing data reveals that repetitive DNA sequence elements embedded into a genomic sequence provide the key mechanism to functionally bias the fluctuations of transcription elongation complexes. In particular, during elongation pausing, such repetitive sequence elements can increase the magnitude of one-dimensional diffusion of the RNAP enzyme on the DNA upstream of the pausing site, generating a large variation in the dwell times of RNAP pausing under the control of these genomic signals.
机译:通过RNA聚合酶(RNAP)转录DNA(RNAP)发生在由热波动的细胞环境中进行。 转录反应包括在此类波动期间如此良好控制的基因组DNA对基因组DNA的引发,伸长和终止? 最近使用高通量测序数据的统计机械方法揭示了嵌入到基因组序列中的重复DNA序列元素提供了在功能上偏压转录伸长型复合物的波动的关键机制。 特别地,在伸长率暂停期间,这种重复的序列元件可以增加RNAP酶对暂停部位上游的DNA的一维扩散的大小,在这些基因组的控制下产生RNAP暂停的停留时间的大变化 信号。

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