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The heat shock response: A case study of chromatin dynamics in gene regulation

机译:热休克反应:基因调控中染色质动力学的案例研究

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Recent studies in transcriptional regulation using the Drosophila heat shock response system have elucidated many of the dynamic regulatory processes that govern transcriptional activation and repression. The classic view that the control of gene expression occurs at the point of RNA polymerase II (Pol II) recruitment is now giving way to a more complex outlook of gene regulation. Promoter chromatin dynamics coordinate with transcription factor binding to maintain the promoters of active genes accessible. For a large number of genes, the rate-limiting step in Pol II progression occurs during its initial elongation, where Pol II transcribes 30-50 bp and pauses for further signals. These paused genes have unique genic chromatin architecture and dynamics compared with genes where Pol II recruitment is rate limiting for expression. Further elongation of Pol II along the gene causes nucleosome turnover, a continuous process of eviction and replacement, which suggests a potential mechanism for Pol II transit along a nucleosomal template. In this review, we highlight recent insights into transcription regulation of the heat shock response and discuss how the dynamic regulatory processes involved at each transcriptional stage help to generate faithful yet highly responsive gene expression.
机译:使用果蝇热休克反应系统进行转录调控的最新研究阐明了许多控制转录激活和抑制的动态调控过程。关于基因表达控制发生在RNA聚合酶II(Pol II)募集时的经典观点,如今已被更复杂的基因调控观点所取代。启动子染色质动力学与转录因子结合相协调,以保持活性基因的启动子可及。对于大量基因,Pol II进程中的限速步骤发生在其初始延伸过程中,其中Pol II转录30-50 bp,并暂停以获取其他信号。与其中Pol II募集是表达速率限制的基因相比,这些暂停的基因具有独特的基因染色质结构和动力学。 Pol II沿着基因的进一步延伸会导致核小体更新,这是逐出和替换的连续过程,这表明Pol II沿着核小体模板迁移的潜在机制。在这篇综述中,我们重点介绍了对热休克反应的转录调控的最新见解,并讨论了在每个转录阶段涉及的动态调控过程如何帮助产生忠实而高度响应的基因表达。

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