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DNA replication timing influences gene expression level

机译:DNA复制时间会影响基因表达水平

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Eukaryotic genomes are replicated in a reproducible temporal order; however, the physiological significance is poorly understood. We compared replication timing in divergent yeast species and identified genomic features with conserved replication times. Histone genes were among the earliest replicating loci in all species. We specifically delayed the replication of HTA1 - HTB1 and discovered that this halved the expression of these histone genes. Finally, we showed that histone and cell cycle genes in general are exempt from Rtt109-dependent dosage compensation, suggesting the existence of pathways excluding specific loci from dosage compensation mechanisms. Thus, we have uncovered one of the first physiological requirements for regulated replication time and demonstrated a direct link between replication timing and gene expression.
机译:真核基因组以可重现的时间顺序复制。然而,生理意义尚不为人所知。我们比较了不同酵母物种中的复制时间,并确定了具有保守复制时间的基因组特征。组蛋白基因是所有物种中最早的复制基因座。我们特别延迟了HTA1-HTB1的复制,并发现这使这些组蛋白基因的表达减半。最后,我们表明,组蛋白和细胞周期基因通常不受Rtt109依赖性剂量补偿的影响,表明存在从剂量补偿机制中排除特定基因座的途径。因此,我们发现了调节复制时间的第一个生理要求,并证明了复制时间和基因表达之间的直接联系。

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