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POF Regulates the Expression of Genes on the Fourth Chromosome in Drosophila melanogaster by Binding to Nascent RNA

机译:POF通过结合新生RNA调控果蝇第四个染色体上的基因表达。

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摘要

In Drosophila, two chromosome-wide compensatory systems have been characterized: the dosage compensation system that acts on the male X chromosome and the chromosome-specific regulation of genes located on the heterochromatic fourth chromosome. Dosage compensation in Drosophila is accomplished by hypertranscription of the single male X chromosome mediated by the male-specific lethal (MSL) complex. The mechanism of this compensation is suggested to involve enhanced transcriptional elongation mediated by the MSL complex, while the mechanism of compensation mediated by the painting of fourth (POF) protein on the fourth chromosome has remained elusive. Here, we show that POF binds to nascent RNA, and this binding is associated with increased transcription output from chromosome 4. We also show that genes located in heterochromatic regions spend less time in transition from the site of transcription to the nuclear envelope. These results provide useful insights into the means by which genes in heterochromatic regions can overcome the repressive influence of their hostile environment.
机译:在果蝇中,已经表征了两个全染色体补偿系统:作用于雄性X染色体的剂量补偿系统和位于异色第四染色体上的基因的染色体特异性调控。果蝇中的剂量补偿是通过雄性特异性致死(MSL)复合体介导的单个雄性X染色体的超转录来实现的。建议这种补偿的机制涉及由MSL复合物介导的增强的转录延伸,而由第四染色体上的第四种(POF)蛋白的绘画介导的补偿的机制仍然难以捉摸。在这里,我们显示POF与新生RNA结合,并且这种结合与4号染色体的转录输出增加相关。我们还显示,位于异色区域的基因从转录位点到核被膜的过渡花费的时间更少。这些结果为了解异色区域中的基因如何克服其不利环境的阻遏性影响提供了有用的见识。

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