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首页> 外文期刊>European Review of Agricultural Economics >Cell-to-cell variability and robustness in S-phase duration from genome replication kinetics
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Cell-to-cell variability and robustness in S-phase duration from genome replication kinetics

机译:基因组复制动力学的S阶段持续时间中的细胞对细胞变异性和鲁棒性

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摘要

Genome replication, a key process for a cell, relies on stochastic initiation by replication origins, causing a variability of replication timing from cell to cell. While stochastic models of eukaryotic replication are widely available, the link between the key parameters and overall replication timing has not been addressed systematically. We use a combined analytical and computational approach to calculate how positions and strength of many origins lead to a given cell-to-cell variability of total duration of the replication of a large region, a chromosome or the entire genome. Specifically, the total replication timing can be framed as an extreme-value problem, since it is due to the last region that replicates in each cell. Our calculations identify two regimes based on the spread between characteristic completion times of all inter-origin regions of a genome. For widely different completion times, timing is set by the single specific region that is typically the last to replicate in all cells. Conversely, when the completion time of all regions are comparable, an extreme-value estimate shows that the cell-to-cell variability of genome replication timing has universal properties. Comparison with available data shows that the replication program of three yeast species falls in this extreme-value regime.
机译:基因组复制是一种细胞的关键过程,依赖于复制起源的随机发起,从而导致来自小区到小区的复制定时的可变性。虽然真核复制的随机模型是广泛的可用性的,但尚未系统地解决了关键参数和整体复制定时之间的链接。我们使用组合的分析和计算方法来计算许多起源的位置和强度如何导致给定的细胞对细胞变异的大区域复制的总持续时间,染色体或整个基因组。具体地,总复制定时可以被帧为极值问题,因为它是由于在每个小区中复制的最后一个区域。我们的计算根据基因组所有原产地区的特征完成时间之间的展开来确定两个方格。对于广泛不同的完成时间,定时由单个特定区域设置,通常是最后一次复制所有单元格。相反,当所有地区的完成时间相当时,极值估计表明基因组复制定时的细胞 - 细胞变异具有普遍性。与可用数据的比较表明,三种酵母种类的复制程序在这种极值方案中落下。

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