首页> 美国卫生研究院文献>The Journal of Biophysical and Biochemical Cytology >Replicon Clusters Are Stable Units of Chromosome Structure: Evidence That Nuclear Organization Contributes to the Efficient Activation and Propagation of S Phase in Human Cells
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Replicon Clusters Are Stable Units of Chromosome Structure: Evidence That Nuclear Organization Contributes to the Efficient Activation and Propagation of S Phase in Human Cells

机译:复制子簇是染色体结构的稳定单位:核组织有助于人类细胞中S相有效激活和繁殖的证据

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摘要

In proliferating cells, DNA synthesis must be performed with extreme precision. We show that groups of replicons, labeled together as replicon clusters, form stable units of chromosome structure. HeLa cells were labeled with 5-bromodeoxyuridine (BrdU) at different times of S phase. At the onset of S phase, clusters of replicons were activated in each of ∼750 replication sites. The majority of these replication “foci” were shown to be individual replicon clusters that remained together, as stable cohorts, throughout the following 15 cell cycles. In individual cells, the same replication foci were labeled with BrdU and 5-iododeoxyuridine at the beginning of different cell cycles. In DNA fibers, 95% of replicons in replicon clusters that were labeled at the beginning of one S phase were also labeled at the beginning of the next. This shows that a subset of origins are activated both reliably and efficiently in different cycles.The majority of replication forks activated at the onset of S phase terminated 45–60 min later. During this interval, secondary replicon clusters became active. However, while the activation of early replicons is synchronized at the onset of S phase, different secondary clusters were activated at different times. Nevertheless, replication foci pulse labeled during any short interval of S phase were stable for many cell cycles. We propose that the coordinated replication of related groups of replicons, that form stable replicon clusters, contributes to the efficient activation and propagation of S phase in mammalian cells.
机译:在增殖细胞中,DNA合成必须极其精确。我们显示复制子的组,一起标记为复制子簇,形成染色体结构的稳定单元。在S期的不同时间用5-溴脱氧尿苷(BrdU)标记HeLa细胞。在S期开始时,复制子簇在大约750个复制位点中被激活。这些复制“焦点”的大部分显示为单个复制子簇,在接下来的15个细胞周期中,它们作为稳定的队列保持在一起。在单个细胞中,相同的复制灶在不同细胞周期开始时用BrdU和5-碘脱氧尿苷标记。在DNA纤维中,在一个S期开始时标记的复制子簇中95%的复制子也在下一个开始时标记。这表明在不同的周期中都可以可靠而有效地激活起源的子集。大多数复制叉在S期开始时被激活,在45-60分钟后终止。在此间隔内,辅助复制子群集变为活动状态。但是,虽然早期复制子的激活在S期开始时是同步的,但不同的次级簇在不同的时间被激活。然而,在任何短间隔的S期中标记的复制灶脉冲在许多细胞周期中都是稳定的。我们建议,形成稳定的复制子簇的相关复制子组的协调复制,有助于哺乳动物细胞中S期的有效激活和繁殖。

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