首页> 外文OA文献 >DNA topoisomerase I inhibition by camptothecin induces escape of RNA polymerase II from promoter-proximal pause site, antisense transcription and histone acetylation at the human HIF-1α gene locus
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DNA topoisomerase I inhibition by camptothecin induces escape of RNA polymerase II from promoter-proximal pause site, antisense transcription and histone acetylation at the human HIF-1α gene locus

机译:喜树碱抑制DNA拓扑异构酶I诱导人HIF-1α基因位点RNA聚合酶II从启动子附近的暂停位点逃逸,反义转录和组蛋白乙酰化

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摘要

Top1 inhibition by camptothecin (CPT) perturbs RNA polymerase II (Pol II) density at promoters and along transcribed genes suggesting an involvement of Top1 in Pol II pausing. Here, we demonstrate that Top1 inhibition favors Pol II escape from a promoter-proximal pausing site of the human HIF-1α gene in living cells. Interestingly, alternative splicing at exon 11 was markedly altered in nascent HIF-1α mRNAs, and chromatin structure was also affected with enhanced histone acetylation and reduced nucleosome density in a manner dependent on cdk activity. Moreover, CPT increases transcription of a novel long RNA (5′aHIF1α), antisense to human HIF-1α mRNA, and a known antisense RNA at the 3′-end of the gene, while decreasing mRNA levels under normoxic and hypoxic conditions. The effects require Top1, but are independent from Top1-induced replicative DNA damage. Chromatin RNA immunoprecipitation results showed that CPT can activate antisense transcription mediated by cyclin-dependent kinase (cdk) activity. Thus, Top1 inhibition can trigger a transcriptional stress, involving antisense transcription and increased chromatin accessibility, which is dependent on cdk activity and deregulated Pol II pausing. A changed balance of antisense transcripts and mRNAs may then lead to altered regulation of HIF-1α activity in human cancer cells.
机译:喜树碱(CPT)对Top1的抑制作用会扰乱启动子和转录基因上的RNA聚合酶II(Pol II)密度,表明Top1参与了Pol II暂停。在这里,我们证明了Top1抑制作用有利于Pol II从活细胞中人类HIF-1α基因的启动子附近暂停位点逃逸。有趣的是,新生HIF-1αmRNA中外显子11的选择性剪接发生了显着改变,染色质结构也受到依赖于cdk活性的方式增强的组蛋白乙酰化和降低的核小体密度的影响。此外,CPT增加了新型长RNA(5'aHIF1α)的转录,对人类HIF-1αmRNA的反义和在基因3'端的已知反义RNA的转录,同时降低了在常氧和低氧条件下的mRNA水平。效果需要Top1,但与Top1诱导的复制性DNA损伤无关。染色质RNA免疫沉淀结果表明,CPT可以激活细胞周期蛋白依赖性激酶(cdk)活性介导的反义转录。因此,Top1抑制可触发转录压力,涉及反义转录和增加的染色质可及性,这取决于cdk活性和解除调控的Pol II暂停。反义转录物和mRNA平衡的改变可能导致人类癌细胞中HIF-1α活性的调节改变。

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