Gregan Juraj, Lindner Karola, Brimage Lydia, Franklin Roger, Namdar Mandana, Hart Elizabeth A, Aves Stephen J, Kearsey Stephen E
Department of Zoology, University of Oxford, Oxford, OX1 3PS, United Kingdom.
Mol Biol Cell. 2003 Sep;14(9):3876-87. doi: 10.1091/mbc.e03-02-0090. Epub 2003 Jun 13.
Using a cytological assay to monitor the successive chromatin association of replication proteins leading to replication initiation, we have investigated the function of fission yeast Cdc23/Mcm10 in DNA replication. Inactivation of Cdc23 before replication initiation using tight degron mutations has no effect on Mcm2 chromatin association, and thus pre-replicative complex (pre-RC) formation, although Cdc45 chromatin binding is blocked. Inactivating Cdc23 during an S phase block after Cdc45 has bound causes a small reduction in Cdc45 chromatin binding, and replication does not terminate in the absence of Mcm10 function. These observations show that Cdc23/Mcm10 function is conserved between fission yeast and Xenopus, where in vitro analysis has indicated a similar requirement for Cdc45 binding, but apparently not compared with Saccharomyces cerevisiae, where Mcm10 is needed for Mcm2 chromatin binding. However, unlike the situation in Xenopus, where Mcm10 chromatin binding is dependent on Mcm2-7, we show that the fission yeast protein is bound to chromatin throughout the cell cycle in growing cells, and only displaced from chromatin during quiescence. On return to growth, Cdc23 chromatin binding is rapidly reestablished independently from pre-RC formation, suggesting that chromatin association of Cdc23 provides a link between proliferation and competence to execute DNA replication.
我们使用一种细胞学检测方法来监测导致复制起始的复制蛋白的连续染色质结合,从而研究了裂殖酵母Cdc23/Mcm10在DNA复制中的功能。使用紧密降解子突变在复制起始前使Cdc23失活,对Mcm2染色质结合没有影响,因此对复制前复合体(pre-RC)的形成也没有影响,尽管Cdc45的染色质结合被阻断。在Cdc45结合后处于S期阻滞时使Cdc23失活,会导致Cdc45染色质结合略有减少,并且在没有Mcm10功能的情况下复制不会终止。这些观察结果表明,Cdc23/Mcm10的功能在裂殖酵母和非洲爪蟾之间是保守的,在非洲爪蟾中体外分析表明对Cdc(45)结合有类似的需求,但与酿酒酵母明显不同,在酿酒酵母中Mcm10是Mcm2染色质结合所必需的。然而,与非洲爪蟾的情况不同,在非洲爪蟾中Mcm10染色质结合依赖于Mcm2-7,我们发现裂殖酵母蛋白在生长细胞中整个细胞周期都与染色质结合,并且仅在静止期从染色质上被取代。恢复生长时,Cdc23染色质结合迅速重新建立,独立于pre-RC的形成,这表明Cdc23的染色质结合提供了增殖与执行DNA复制能力之间的联系。