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Conservation of replication timing reveals global and local regulation of replication origin activity

机译:复制时间的节省揭示了复制起点活动的全局和局部调控

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摘要

DNA replication initiates from defined locations called replication origins; some origins are highly active, whereas others are dormant and rarely used. Origins also differ in their activation time, resulting in particular genomic regions replicating at characteristic times and in a defined temporal order. Here we report the comparison of genome replication in four budding yeast species: Saccharomyces cerevisiae, S. paradoxus, S. arboricolus, and S. bayanus. First, we find that the locations of active origins are predominantly conserved between species, whereas dormant origins are poorly conserved. Second, we generated genome-wide replication profiles for each of these species and discovered that the temporal order of genome replication is highly conserved. Therefore, active origins are not only conserved in location, but also in activation time. Only a minority of these conserved origins show differences in activation time between these species. To gain insight as to the mechanisms by which origin activation time is regulated we generated replication profiles for a S. cerevisiae/S. bayanus hybrid strain and find that there are both local and global regulators of origin function.
机译:DNA复制从定义的位置开始,称为复制起点;一些起源活跃,而另一些则处于休眠状态,很少使用。起源的激活时间也不同,从而导致特定的基因组区域在特征时间和定义的时间顺序中复制。在这里,我们报告了四种发芽酵母物种中的基因组复制的比较:酿酒酵母,悖论链球菌,S。arboricolus和S. bayanus。首先,我们发现活跃起源的位置在物种之间主要是保守的,而休眠起源的保守性很差。其次,我们为这些物种中的每一个生成了全基因组复制概况,并发现基因组复制的时间顺序是高度保守的。因此,活跃的起源不仅在位置上被保存,而且在激活时间上也被保存。这些保守来源中只有极少数在这些物种之间显示出活化时间的差异。为了了解有关调节起源激活时间的机制,我们生成了酿酒酵母/ S的复制谱。 an蒲杂种菌株,发现既有本地功能,又有全球性的起源功能调节剂。

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