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Rapid high-resolution measurement of DNA replication timing by droplet digital PCR

机译:通过液滴数码PCR快速高分辨率测量DNA复制时序

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摘要

Genomes are replicated in a reproducible temporal pattern. Current methods for assaying allele replication timing are time consuming and/or expensive. These include high-throughput sequencing which can be used to measure DNA copy number as a proxy for allele replication timing. Here, we use droplet digital PCR to study DNA replication timing at multiple loci in budding yeast and human cells. We establish that the method has temporal and spatial resolutions comparable to the high-throughput sequencing approaches, while being faster than alternative locus-specific methods. Furthermore, the approach is capable of allele discrimination. We apply this method to determine relative replication timing across timing transition zones in cultured human cells. Finally, multiple samples can be analysed in parallel, allowing us to rapidly screen kinetochore mutants for perturbation to centromere replication timing. Therefore, this approach is well suited to the study of locus-specific replication and the screening of cis- and trans-acting mutants to identify mechanisms that regulate local genome replication timing.
机译:基因组以可重复的时间模式复制。用于测定等位基因复制定时的当前方法是耗时和/或昂贵的。这些包括高通量测序,可用于测量DNA拷贝数作为等位基因复制定时的代理。在这里,我们使用液滴数码PCR在萌芽酵母和人细胞中研究多个基因座的DNA复制时序。我们确定该方法具有与高通量测序方法相当的时间和空间分辨率,同时比替代轨迹的特定方法更快。此外,该方法能够等位基因歧视。我们应用该方法以确定培养的人体细胞中定时过渡区的相对复制定时。最后,可以并行分析多个样品,允许我们快速筛选突变突变突变,​​以便对Centromere复制定时进行扰动。因此,这种方法非常适合于研究基因座特异性复制和筛查CIS-和反式作用突变体,以鉴定调节局部基因组复制时序的机制。

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