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Microarray Analysis of DNA Replication Timing

机译:DNA复制时间的微阵列分析

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摘要

Although all of the DNA in an eukaryotic cell replicates during the S-phase of cell cycle, there is a significant difference in the actual time in S-phase when a given chromosomal segment replicates. Methods are described here for generation of high-resolution temporal maps of DNA replication in synchronized human cells. This method does not require amplification of DNA before microarray hybridization and so avoids errors introduced during PCR. A major advantage of using this procedure is that it facilitates finer dissection of replication time in S-phase. Also, it helps delineate chromosomal regions that undergo biallelic or asynchronous replication, which otherwise are difficult to detect at a genome-wide scale by existing methods. The continuous TR50 (time of completion of 50% replication) maps of replication across chromosomal segments identify regions that undergo acute transitions in replication timing. These transition zones can play a significant role in identifying insulators that separate chromosomal domains with different chromatin modifications.
机译:尽管真核细胞中的所有DNA在细胞周期的S期复制,但是当给定的染色体片段复制时,S期的实际时间存在显着差异。本文介绍了在同步的人类细胞中生成DNA复制的高分辨率时间图的方法。该方法不需要在微阵列杂交之前扩增DNA,因此避免了PCR期间引入的错误。使用此过程的主要优点是,它有助于更​​好地解剖S期中的复制时间。而且,它有助于描绘经历双等位基因或异步复制的染色体区域,否则这些区域很难通过现有方法在全基因组范围内检测到。跨染色体片段的连续TR50(完成50%复制的时间)复制图可识别在复制时间上经历急剧转变的区域。这些过渡区在鉴定分离具有不同染色质修饰的染色体结构域的绝缘子中可以发挥重要作用。

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