Jeffery Daniel C B, Kakusho Naoko, You Zhiying, Gharib Marlene, Wyse Brandon, Drury Erin, Weinreich Michael, Thibault Pierre, Verreault Alain, Masai Hisao, Yankulov Krassimir
a Department of Molecular and Cellular Biology ; University of Guelph ; Guelph , Ontario , Canada.
Cell Cycle. 2015;14(1):74-85. doi: 10.4161/15384101.2014.973745.
Chromatin Assembly Factor I (CAF-I) plays a key role in the replication-coupled assembly of nucleosomes. It is expected that its function is linked to the regulation of the cell cycle, but little detail is available. Current models suggest that CAF-I is recruited to replication forks and to chromatin via an interaction between its Cac1p subunit and the replication sliding clamp, PCNA, and that this interaction is stimulated by the kinase CDC7. Here we show that another kinase, CDC28, phosphorylates Cac1p on serines 94 and 515 in early S phase and regulates its association with chromatin, but not its association with PCNA. Mutations in the Cac1p-phosphorylation sites of CDC28 but not of CDC7 substantially reduce the in vivo phosphorylation of Cac1p. However, mutations in the putative CDC7 target sites on Cac1p reduce its stability. The association of CAF-I with chromatin is impaired in a cdc28-1 mutant and to a lesser extent in a cdc7-1 mutant. In addition, mutations in the Cac1p-phosphorylation sites by both CDC28 and CDC7 reduce gene silencing at the telomeres. We propose that this phosphorylation represents a regulatory step in the recruitment of CAF-I to chromatin in early S phase that is distinct from the association of CAF-I with PCNA. Hence, we implicate CDC28 in the regulation of chromatin reassembly during DNA replication. These findings provide novel mechanistic insights on the links between cell-cycle regulation, DNA replication and chromatin reassembly.
染色质组装因子I(CAF-I)在与复制偶联的核小体组装过程中发挥关键作用。预计其功能与细胞周期调控相关,但具体细节尚不清楚。目前的模型表明,CAF-I通过其Cac1p亚基与复制滑动夹PCNA之间的相互作用被招募到复制叉和染色质上,并且这种相互作用受到激酶CDC7的刺激。在此我们表明,另一种激酶CDC28在S期早期使Cac1p的丝氨酸94和515磷酸化,并调节其与染色质的结合,但不调节其与PCNA的结合。CDC28而非CDC7的Cac1p磷酸化位点突变会显著降低Cac1p在体内的磷酸化水平。然而,Cac1p上假定的CDC7靶位点突变会降低其稳定性。在cdc28 - 1突变体中CAF-I与染色质的结合受损,在cdc7 - 1突变体中受损程度较小。此外,CDC28和CDC7导致的Cac1p磷酸化位点突变都会降低端粒处的基因沉默。我们提出,这种磷酸化代表了S期早期将CAF-I招募到染色质的一个调控步骤,这与CAF-I和PCNA的结合不同。因此,我们认为CDC28参与了DNA复制过程中染色质重新组装的调控。这些发现为细胞周期调控、DNA复制和染色质重新组装之间的联系提供了新的机制见解。