Jares Pedro, Luciani M Gloria, Blow J Julian
Wellcome Trust Biocentre, University of Dundee, DD1 5EH, UK.
BMC Mol Biol. 2004 Jun 28;5:5. doi: 10.1186/1471-2199-5-5.
Early in the cell cycle a pre-replicative complex (pre-RC) is assembled at each replication origin. This process involves the sequential assembly of the Origin Recognition Complex (ORC), Cdc6, Cdt1 and the MiniChromosome Maintenance (Mcm2-7) proteins onto chromatin to license the origin for use in the subsequent S phase. Licensed origins must then be activated by S phase-inducing cyclin-dependent kinases (S-CDKs) and the Dbf4/Cdc7 kinase.
We have cloned a Xenopus homologue of Dbf4 (XDbf4), the sequence of which confirms the results of Furukhori et al. We have analysed the role of XDbf4 in DNA replication using cell-free extracts of Xenopus eggs. Our results indicate that XDbf4 is the regulatory subunit of XCdc7 required for DNA replication. We show that XDbf4 binds to chromatin during interphase, but unlike XCdc7, its chromatin association is independent of pre-RC formation, occurring in the absence of licensing, XCdc6 and XORC. Moreover, we show that the binding of XCdc7 to chromatin is dependent on the presence of XDbf4, whilst under certain circumstances XDbf4 can bind to chromatin in the absence of XCdc7. We provide evidence that the chromatin binding of XDbf4 that occurs in the absence of licensing depends on checkpoint activation.
We have identified XDbf4 as a functional activator of XCdc7, and show that it is required to recruit XCdc7 to chromatin. Our results also suggest that XCdc7 and XDbf4 are differentially regulated, potentially responding to different cell cycle signals.
在细胞周期早期,复制前复合体(pre - RC)在每个复制起点组装。这个过程涉及到将起源识别复合体(ORC)、Cdc6、Cdt1和微小染色体维持蛋白(Mcm2 - 7)依次组装到染色质上,以使该起点获得许可,用于后续的S期。然后,获得许可的起点必须被S期诱导的细胞周期蛋白依赖性激酶(S - CDK)和Dbf4/Cdc7激酶激活。
我们克隆了非洲爪蟾Dbf4的同源物(XDbf4),其序列证实了Furukhori等人的研究结果。我们使用非洲爪蟾卵的无细胞提取物分析了XDbf4在DNA复制中的作用。我们的结果表明,XDbf4是DNA复制所需的XCdc7的调节亚基。我们发现,XDbf4在间期与染色质结合,但与XCdc7不同,其与染色质的结合不依赖于pre - RC的形成,在没有许可、XCdc6和XORC的情况下也会发生。此外,我们表明XCdc7与染色质的结合依赖于XDbf4的存在,而在某些情况下,XDbf4在没有XCdc7的情况下也能与染色质结合。我们提供的证据表明,在没有许可的情况下发生的XDbf4与染色质的结合依赖于检查点激活。
我们已确定XDbf4是XCdc7的功能性激活剂,并表明它是将XCdc7募集到染色质所必需的。我们的结果还表明,XCdc7和XDbf4受到不同的调节,可能对不同的细胞周期信号作出反应。