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Replication dynamics of individual loci in single living cells reveal changes in the degree of replication stochasticity through S phase

机译:单个活细胞中单个基因座的复制动力学揭示了S期复制随机性程度的变化

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摘要

Eukaryotic genomes are replicated under the control of a highly sophisticated program during the restricted time period corresponding to S phase. The most widely used replication timing assays, which are performed on populations of millions of cells, suggest that most of the genome is synchronously replicated on homologous chromosomes. We investigated the stochastic nature of this temporal program, by comparing the precise replication times of allelic loci within single vertebrate cells progressing through S phase at six loci replicated from very early to very late. We show that replication timing is strictly controlled for the three loci replicated in the first half of S phase. Out of the three loci replicated in the second part of S phase, two present a significantly more stochastic pattern. Surprisingly, we find that the locus replicated at the very end of S phase, presents stochasticity similar to those replicated in early S phase. We suggest that the richness of loci in efficient origins of replication, which decreases from early- to late-replicating regions, and the strength of interaction with the nuclear lamina may underlie the variation of timing control during S phase.
机译:真核基因组在对应于S期的有限时间内,在高度复杂的程序控制下复制。对数百万个细胞群体进行的最广泛使用的复制定时测定表明,大多数基因组是在同源染色体上同步复制的。通过比较从早期到很晚复制的六个基因座上经过S期的单个脊椎动物细胞中等位基因座的精确复制时间,我们研究了该时间程序的随机性。我们表明,对于在S期前半段复制的三个基因座,复制时间受到严格控制。在S期第二部分复制的三个基因座中,两个基因座呈现出明显更随机的模式。出乎意料的是,我们发现在S期末期复制的基因座具有与S期早期复制的基因座相似的随机性。我们建议有效复制起点中的基因座的丰富度,从早期复制区域到晚期复制区域减少,并且与核层板相互作用的强度可能是S期时序控制变化的基础。

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