Makise Masaki, Takehara Masaya, Kuniyasu Akihiko, Matsui Nanako, Nakayama Hitoshi, Mizushima Tohru
Graduate School of Medical and Pharmaceutical Sciences, Kumamoto University, Kumamoto 862-0973, Japan.
J Biol Chem. 2009 Feb 6;284(6):3396-407. doi: 10.1074/jbc.M804293200. Epub 2008 Dec 8.
The initiation of chromosomal DNA replication is tightly regulated to achieve genome replication just once per cell cycle and cyclin-dependent kinase (CDK) plays an important role in this process. Adenine nucleotides that bind to the origin recognition complex (ORC) are also suggested to be involved in this process. Of the six subunits of the Saccharomyces cerevisiae ORC (Orc1-6p), both Orc1p and Orc5p have ATP binding activity, and both Orc2p and Orc6p are phosphorylated by CDK in cells. In this study we constructed a series of yeast strains expressing phospho-mimetic mutants of Orc2p or Orc6p and found that expression of a Ser-188 mutant of Orc2p (Orc2-5Dp) delays G1-S transition and S phase progression and causes the accumulation of cells with 2C DNA content. Using antibody that specifically recognizes Ser-188-phosphorylated Orc2p, we showed that Ser-188 is phosphorylated by CDK in a cell cycle-regulated manner. Expression of Orc2-5Dp caused phosphorylation of Rad53p and inefficient loading of the six minichromosome maintenance proteins. These results suggest that the accumulation of cells with 2C DNA content is due to inefficient origin firing and induction of the cell cycle checkpoint response and that dephosphorylation of Ser-188 of Orc2p in late M or G1 phase may be involved in pre-RC formation. In vitro, a purified mutant ORC containing Orc2-5Dp lost Orc5p ATP binding activity. This is the first demonstration of a link between phosphorylation of the ORC and its ability to bind ATP, which may be important for the cell cycle-regulated initiation of DNA replication.
染色体DNA复制的起始受到严格调控,以确保每个细胞周期基因组仅复制一次,而细胞周期蛋白依赖性激酶(CDK)在此过程中发挥重要作用。与起源识别复合物(ORC)结合的腺嘌呤核苷酸也被认为参与了这一过程。酿酒酵母ORC的六个亚基(Orc1-6p)中,Orc1p和Orc5p都具有ATP结合活性,且Orc2p和Orc6p在细胞中都被CDK磷酸化。在本研究中,我们构建了一系列表达Orc2p或Orc6p磷酸模拟突变体的酵母菌株,发现Orc2p的Ser-188突变体(Orc2-5Dp)的表达延迟了G1-S期转换和S期进程,并导致具有2C DNA含量的细胞积累。使用特异性识别Ser-188磷酸化Orc2p的抗体,我们表明Ser-188在细胞周期中受到CDK的调控磷酸化。Orc2-5Dp的表达导致Rad53p的磷酸化以及六种微型染色体维持蛋白的加载效率低下。这些结果表明,具有2C DNA含量的细胞积累是由于起始点激活效率低下和细胞周期检查点反应的诱导,并且Orc2p的Ser-188在M期末或G1期的去磷酸化可能参与了前复制复合体(pre-RC)的形成。在体外,含有Orc2-5Dp的纯化突变体ORC失去了Orc5p的ATP结合活性。这首次证明了ORC的磷酸化与其结合ATP的能力之间的联系,这可能对细胞周期调控的DNA复制起始很重要。