Institute of Human Genetics, CNRS, Montpellier, France.
Agropolymer Engineering and Emerging Technologies, University of Montpellier, Montpellier, France.
Nat Struct Mol Biol. 2017 Mar;24(3):290-299. doi: 10.1038/nsmb.3363. Epub 2017 Jan 23.
Although some features underlying replication-origin activation in metazoan cells have been determined, little is known about their regulation during metazoan development. Using the nascent-strand purification method, here we identified replication origins throughout Caenorhabditis elegans embryonic development and found that the origin repertoire is thoroughly reorganized after gastrulation onset. During the pluripotent embryonic stages (pregastrula), potential cruciform structures and open chromatin are determining factors that establish replication origins. The observed enrichment of replication origins in transcription factor-binding sites and their presence in promoters of highly transcribed genes, particularly operons, suggest that transcriptional activity contributes to replication initiation before gastrulation. After the gastrula transition, when embryonic differentiation programs are set, new origins are selected at enhancers, close to CpG-island-like sequences, and at noncoding genes. Our findings suggest that origin selection coordinates replication initiation with transcriptional programs during metazoan development.
虽然已经确定了真核细胞中复制起始激活的一些特征,但对于它们在真核生物发育过程中的调控知之甚少。本文利用新生链纯化方法,在秀丽隐杆线虫胚胎发育过程中鉴定了复制起始点,并发现起始点库在原肠胚发生后被彻底重组。在多能胚胎阶段(原肠胚前期),潜在的十字形结构和开放染色质是建立复制起始点的决定因素。观察到复制起始点在转录因子结合位点的富集,以及它们在高转录基因(特别是操纵子)启动子中的存在,表明转录活性有助于原肠胚发生前的复制起始。在原肠胚过渡之后,当胚胎分化程序确定时,新的起始点在增强子、接近 CpG 岛样序列和非编码基因处被选择。我们的研究结果表明,在真核生物发育过程中,起始点的选择协调了复制起始与转录程序。