Saha Swati, Shan Yujie, Mesner Larry D, Hamlin Joyce L
Department of Biochemistry and Molecular Genetics, University of Virginia School of Medicine, Charlottesville, Virginia 22908, USA.
Genes Dev. 2004 Feb 15;18(4):397-410. doi: 10.1101/gad.1171404. Epub 2004 Feb 20.
The dihydrofolate reductase (DHFR) and 2BE2121 genes in the Chinese hamster are convergently transcribed in late G1 and ea ly S phase, and bracket an early-firing origin of replication that consists of a 55-kb zone of potential initiation sites. To test whether transcription through the DHFR gene is required to activate this origin in early S phase, we examined the two-dimension (2D) gel patterns of replication intermediates from several variants in which parts or all of the DHFR promote had been deleted. In those variants in which transcription was undetectable, initiation in the intergenic space was markedly suppressed (but not eliminated) in early S phase. Further more, replication of the locus required virtually the entire S period, as opposed to the usual 3-4 h. However, restoration of transcription with either the wild-type Chinese hamster promote or a Drosophila-based construct restored origin activity to the wild-type pattern. Surprisingly, 2D gel analysis of promote less variants revealed that initiation occurs at a low level in ea ly S phase not only in the intergenic region, but also in the body of the DHFR gene. The latter phenomenon has never been observed in the wild-type locus. These studies suggest that transcription through the gene normally increases the efficiency of origin firing in early S phase, but also suppresses initiation in the body of the gene, thus helping to define the boundaries of the downstream origin.
中国仓鼠中的二氢叶酸还原酶(DHFR)基因和2BE2121基因在G1晚期和S期早期进行反向转录,它们夹着一个早期激活的复制起点,该起点由一个包含55 kb潜在起始位点的区域组成。为了测试在S期早期激活该起点是否需要通过DHFR基因进行转录,我们检查了几个变体的复制中间体的二维(2D)凝胶图谱,这些变体中部分或全部DHFR启动子已被删除。在那些无法检测到转录的变体中,基因间区域的起始在S期早期受到明显抑制(但未消除)。此外,该位点的复制几乎需要整个S期,而不是通常的3 - 4小时。然而,用野生型中国仓鼠启动子或基于果蝇的构建体恢复转录后,起点活性恢复到野生型模式。令人惊讶的是,对缺失启动子的变体进行的2D凝胶分析表明,不仅在基因间区域,而且在DHFR基因内部,起始在S期早期都以低水平发生。后一种现象在野生型位点从未被观察到。这些研究表明,通过该基因的转录通常会提高S期早期起点激活的效率,但也会抑制基因内部的起始,从而有助于确定下游起点的边界。