Shirahige K, Hori Y, Shiraishi K, Yamashita M, Takahashi K, Obuse C, Tsurimoto T, Yoshikawa H
Nara Institute of Science and Technology, Ikoma, Japan.
Nature. 1998 Oct 8;395(6702):618-21. doi: 10.1038/27007.
We have shown previously that chromosome VI of Saccharomyces cerevisiae contains nine origins of DNA replication that differ in initiation frequency and replicate sequentially during the S phase of the cell cycle. Here we show that there are links between activation of these multiple origins and regulation of S-phase progression. We study the effects of a DNA-damaging agent, methyl methane sulphonate (MMS), and of mutations in checkpoint genes such as rad53 on the activity of origins, measured by two-dimensional gel analysis, and on cell-cycle progression, measured by fluorescence-activated cell sorting. We find that when MMS slows down S-phase progression it also selectively blocks initiation from late origins. A rad53 mutation enhances late and/or inefficient origins and releases the initiation block by MMS. Mutation of rad53 also results in a late origin becoming early replicating. We conclude that rad53 regulates the timing of initiation of replication from late origins during normal cell growth and blocks initiation from late origins in MMS-treated cells. rad53 is, therefore, involved in the cell's surveillance of S-phase progression. We also find that orc2, which encodes subunit 2 of the origin-recognition complex, is involved in suppression of late origins.
我们之前已经表明,酿酒酵母的第六条染色体包含九个DNA复制起点,这些起点的起始频率不同,并且在细胞周期的S期依次复制。在这里,我们表明这些多个起点的激活与S期进程的调控之间存在联系。我们研究了一种DNA损伤剂甲磺酸甲酯(MMS)以及诸如rad53等检查点基因突变对起点活性的影响(通过二维凝胶分析测量),以及对细胞周期进程的影响(通过荧光激活细胞分选测量)。我们发现,当MMS减缓S期进程时,它也会选择性地阻断晚期起点的起始。rad53突变增强了晚期和/或低效起点,并解除了MMS对起始的阻断。rad53突变还导致一个晚期起点变为早期复制。我们得出结论,rad53在正常细胞生长过程中调节晚期起点的复制起始时间,并在MMS处理的细胞中阻断晚期起点的起始。因此,rad53参与了细胞对S期进程的监测。我们还发现,编码起点识别复合物亚基2的orc2参与了晚期起点的抑制。