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首页> 外文期刊>Molecular and Cellular Biology >Analyses of promoter-proximal pausing by RNA polymerase II on the hsp70 heat shock gene promoter in a Drosophila nuclear extract.
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Analyses of promoter-proximal pausing by RNA polymerase II on the hsp70 heat shock gene promoter in a Drosophila nuclear extract.

机译:果蝇核提取物中hsp70热休克基因启动子上RNA聚合酶II引起的启动子近端暂停分析。

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Analyses of Drosophila cells have revealed that RNA polymerase II is paused in a region 20 to 40 nucleotides downstream from the transcription start site of the hsp70 heat shock gene when the gene is not transcriptionally active. We have developed a cell-free system that reconstitutes this promoter-proximal pausing. The paused polymerase has been detected by monitoring the hyperreactivity of thymines in the transcription bubble toward potassium permanganate. The pattern of permanganate reactivity for the hsp70 promoter in the reconstituted system matches the pattern found on the promoter after it has been introduced back into files by P-element-mediated transposition. Matching patterns of permanganate reactivity are also observed for a non-heat shock promoter, the histone H3 promoter. Further analysis of the hsp70 promoter in the reconstituted system reveals that pausing does not depend on sequence-specific interactions located immediately downstream from the pause site. Sequences upstream from the TATA box influence the recruitment of polymerase rather than the efficiency of pausing. Kinetic analysis indicates that the polymerase rapidly enters the paused state and remains stably in this state for at least 25 min. Further analysis shows that the paused polymerase will initially resume elongation when Sarkosyl is added but loses this capacity within minutes of pausing. Using an alpha-amanitin-resistant polymerase, we provide evidence that promoter-proximal pausing does not require the carboxy-terminal domain of the polymerase.
机译:果蝇细胞的分析表明,当该基因没有转录活性时,RNA聚合酶II会在hsp70热休克基因转录起始位点下游20至40个核苷酸的区域内暂停。我们已经开发了一种无细胞系统,可以重新构成启动子附近的暂停。通过监测转录气泡中的胸腺嘧啶对高锰酸钾的高反应性,已经检测到聚合酶已暂停。重组系统中hsp70启动子的高锰酸盐反应性模式与启动子通过P元素介导的转位引入文件后发现的模式匹配。对于非热激促进剂,组蛋白H3启动子,也观察到了高锰酸盐反应性的匹配模式。在重组系统中对hsp70启动子的进一步分析表明,暂停并不取决于位于暂停位点下游的序列特异性相互作用。 TATA框上游的序列影响聚合酶的募集而不是暂停的效率。动力学分析表明聚合酶迅速进入暂停状态并稳定地保持该状态至少25分钟。进一步的分析表明,加入Sarkosyl后,暂停的聚合酶将首先恢复伸长,但在暂停后的几分钟内失去该能力。使用抗α-amanitin的聚合酶,我们提供的证据表明,启动子近端暂停不需要聚合酶的羧基末端结构域。

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