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Cell-cycle regulated transcription associates with DNA replication timing in yeast and human

机译:细胞周期调控的转录与酵母和人类中DNA复制的时间有关

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Background Eukaryotic DNA replication follows a specific temporal program, with some genomic regions consistently replicating earlier than others, yet what determines this program is largely unknown. Highly transcribed regions have been observed to replicate in early S-phase in all plant and animal species studied to date, but this relationship is thought to be absent from both budding yeast and fission yeast. No association between cell-cycle regulated transcription and replication timing has been reported for any species. Results Here I show that in budding yeast, fission yeast, and human, the genes most highly transcribed during S-phase replicate early, whereas those repressed in S-phase replicate late. Transcription during other cell-cycle phases shows either the opposite correlation with replication timing, or no relation. The relationship is strongest near late-firing origins of replication, which is not consistent with a previously proposed model—that replication timing may affect transcription—and instead suggests a potential mechanism involving the recruitment of limiting replication initiation factors during S-phase. Conclusions These results suggest that S-phase transcription may be an important determinant of DNA replication timing across eukaryotes, which may explain the well-established association between transcription and replication timing.
机译:背景真核DNA复制遵循特定的时间程序,某些基因组区域始终比其他基因组区域更早地进行复制,但是确定该程序的很大程度上未知。迄今为止,已观察到高转录区在所有研究的动植物物种中都在S期早期复制,但是认为这种关系在萌芽酵母和裂变酵母中均不存在。没有任何物种的细胞周期调控的转录和复制时间之间的关联的报道。结果在这里,我显示出在发芽酵母,裂变酵母和人类中,在S期转录最高的基因会早期复制,而在S期受抑制的基因则在后期复制。在其他细胞周期阶段的转录显示与复制时间相反的相关性,或者没有相关性。该关系在后期复制起点附近最强,这与先前提出的模型不一致(复制时间可能影响转录),而是暗示了一种潜在的机制,该机制涉及在S期募集限制性复制起始因子。结论这些结果表明,S期转录可能是跨真核生物的DNA复制时机的重要决定因素,这可能解释了转录与复制时机之间已确立的联系。

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