Schübeler Dirk, Scalzo David, Kooperberg Charles, van Steensel Bas, Delrow Jeffrey, Groudine Mark
Division of Basic Sciences, Fred Hutchinson Cancer Research Center, Seattle, Washington 98109, USA.
Nat Genet. 2002 Nov;32(3):438-42. doi: 10.1038/ng1005. Epub 2002 Sep 30.
Replication of the genome before mitotic cell division is a highly regulated process that ensures the fidelity of DNA duplication. DNA replication initiates at specific locations, termed origins of replication, and progresses in a defined temporal order during the S phase of the cell cycle. The relationship between replication timing and gene expression has been the subject of some speculation. A recent genome-wide analysis in Saccharomyces cerevisiae showed no association between replication timing and gene expression. In higher eukaryotes, the limited number of genomic loci analyzed has not permitted a firm conclusion regarding this association. To explore the relationship between DNA replication and gene expression in higher eukaryotes, we developed a strategy to measure the timing of DNA replication for thousands of genes in a single DNA array hybridization experiment. Using this approach, we generated a genome-wide map of replication timing for Drosophila melanogaster. Moreover, by surveying over 40% of all D. melanogaster genes, we found a strong correlation between DNA replication early in S phase and transcriptional activity. As this correlation does not exist in S. cerevisiae, this interplay between DNA replication and transcription may be a unique characteristic of higher eukaryotes.
有丝分裂细胞分裂之前基因组的复制是一个受到高度调控的过程,可确保DNA复制的准确性。DNA复制在特定位置起始,这些位置称为复制起点,并在细胞周期的S期按特定的时间顺序进行。复制时间与基因表达之间的关系一直是一些推测的主题。最近在酿酒酵母中进行的全基因组分析表明,复制时间与基因表达之间没有关联。在高等真核生物中,所分析的基因组位点数量有限,无法就这种关联得出确凿结论。为了探索高等真核生物中DNA复制与基因表达之间的关系,我们开发了一种策略,可在单个DNA阵列杂交实验中测量数千个基因的DNA复制时间。使用这种方法,我们生成了黑腹果蝇复制时间的全基因组图谱。此外,通过对超过40%的黑腹果蝇基因进行检测,我们发现S期早期的DNA复制与转录活性之间存在很强的相关性。由于酿酒酵母中不存在这种相关性,DNA复制与转录之间的这种相互作用可能是高等真核生物的一个独特特征。