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Monitoring S phase progression globally and locally using BrdU incorporation in TK+ yeast strains

机译:监测S期进程 使用BrdU整合到TK +酵母中在全球和本地 毒株

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摘要

Eukaryotic chromosome replication is initiated from numerous origins and its activation is temporally controlled by cell cycle and checkpoint mechanisms. Yeast has been very useful in defining the genetic elements required for initiation of DNA replication, but simple and precise tools to monitor S phase progression are lacking in this model organism. Here we describe a TK+ yeast strain and conditions that allow incorporation of exogenous BrdU into genomic DNA, along with protocols to detect the sites of DNA synthesis in yeast nuclei or on combed DNA molecules. S phase progression is monitored by quantification of BrdU in total yeast DNA or on individual chromosomes. Using these tools we show that yeast chromosomes replicate synchronously and that DNA synthesis occurs at discrete subnuclear foci. Analysis of BrdU signals along single DNA molecules from hydroxyurea-arrested cells reveals that replication forks stall 8–9 kb from origins that are placed 46 kb apart on average. Quantification of total BrdU incorporation suggests that 190 ‘early’ origins have fired in these cells and that late replicating territories might represent up to 40% of the yeast genome. More generally, the methods outlined here will help understand the kinetics of DNA replication in wild-type yeast and refine the phenotypes of several mutants.
机译:真核染色体的复制是从许多起点开始的,其激活在时间上受细胞周期和检查点机制的控制。酵母在定义启动DNA复制所需的遗传元件方面非常有用,但是在这种模型生物中缺少简单而精确的工具来监测S期进程。在这里,我们描述了TK + 酵母菌株和允许将外源BrdU掺入基因组DNA的条件,以及检测酵母核中或梳状DNA分子上DNA合成位点的方案。通过定量酵母总DNA或单个染色体中的BrdU来监测S期进程。使用这些工具,我们表明酵母染色体同步复制,并且DNA合成发生在离散的亚核灶上。对来自羟基脲被捕集细胞的单个DNA分子上BrdU信号的分析表明,复制叉从平均间隔46 kb的起源处拖延了8–9 kb。 BrdU掺入总量的量化表明,这些细胞中发射了190个“早期”起源,并且复制后期 可能占酵母基因组的40%。更普遍, 此处概述的方法将有助于理解DNA动力学 在野生型酵母中复制并完善几种表型 突变体。

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