Jang S W, Elsasser S, Campbell J L, Kim J
Graduate School of Biotechnology, Department of Genetic Engineering, Kyung Hee University, Yongin, Kyonggi-Do, 449-701, Korea.
Biochem J. 2001 Mar 15;354(Pt 3):655-61. doi: 10.1042/0264-6021:3540655.
The Cdc6 protein (Cdc6p) has essential roles in regulating initiation of DNA replication. Cdc6p is recruited to origins of replication by the origin recognition complex (ORC) late in mitosis; Cdc6p in turn recruits minichromosome maintenance (Mcm) proteins to form the pre-replicative complex. Cdc6p is thought to interact with one or more Mcm proteins but this point has not yet been demonstrated. In the present study we observed that Cdc6p interacted significantly only with Mcm2p out of six Mcm proteins in yeast two-hybrid cells. Our results indicate that the interaction of Cdc6p with Mcm2p is specific, although we cannot exclude the possibility that the interaction might not be direct. In attempts to identify domains of Cdc6p important for interaction with Mcm2p, we tested interactions of various deleted versions of Cdc6p with Mcm2p and also with Cdc4p, which was previously known to interact with Cdc6p. The portion of Cdc6p from amino acid residues 51 to 394 was able to interact with Mcm2p. During the course of the studies we also discovered a previously undetected Cdc4p interaction domain between residues 51 and 394. Interestingly, when all six putative Cdc28 phosphorylation sites in Cdc6p were changed to alanine, a 6-7-fold increase in binding to Mcm2p was observed. This result suggests that unphosphorylated Cdc6p has higher affinity than phosphorylated Cdc6p for Mcm2p; this might partly explain the previous observation that Cdc6p failed to load Mcm proteins on replication origins during S phase when the cyclin-dependent protein kinase was active, thus helping to prevent the reinitiation of activated replicons.
细胞分裂周期蛋白6(Cdc6p)在调控DNA复制起始过程中发挥着重要作用。有丝分裂后期,Cdc6p被复制起始识别复合体(ORC)招募至复制起点;Cdc6p进而招募微小染色体维持(Mcm)蛋白,形成前复制复合体。人们认为Cdc6p会与一种或多种Mcm蛋白相互作用,但这一点尚未得到证实。在本研究中,我们观察到在酵母双杂交细胞中,Cdc6p仅与六种Mcm蛋白中的Mcm2p有显著相互作用。我们的结果表明,Cdc6p与Mcm2p的相互作用具有特异性,尽管我们不能排除这种相互作用可能不是直接的可能性。为了确定Cdc6p中与Mcm2p相互作用重要的结构域,我们测试了Cdc6p各种缺失版本与Mcm2p以及与Cdc4p(先前已知其与Cdc6p相互作用)的相互作用。Cdc6p中从氨基酸残基51至394的部分能够与Mcm2p相互作用。在研究过程中,我们还发现了Cdc4p在残基51和394之间一个先前未检测到的相互作用结构域。有趣的是,当Cdc6p中所有六个假定的Cdc28磷酸化位点都变为丙氨酸时,观察到与Mcm2p的结合增加了6至7倍。这一结果表明,未磷酸化的Cdc6p比磷酸化的Cdc6p对Mcm2p具有更高的亲和力;这可能部分解释了先前的观察结果,即当细胞周期蛋白依赖性蛋白激酶活跃时,Cdc6p在S期无法将Mcm蛋白加载到复制起点上,从而有助于防止已激活的复制子重新起始。