Takei Yoshinori, Assenberg Magdalena, Tsujimoto Gozoh, Laskey Ronald
Medical Research Council (MRC) Cancer Cell Unit, Hutchison/MRC Research Centre, Hills Road, Cambridge CB2 2XZ, United Kingdom.
J Biol Chem. 2002 Nov 8;277(45):43121-5. doi: 10.1074/jbc.C200442200. Epub 2002 Sep 10.
Minichromosome maintenance (MCM) proteins are essential components of pre-replication complexes, which limit DNA replication to once per cell cycle. MCM3 acetylating protein, MCM3AP, binds and acetylates MCM3 and inhibits cell cycle progression. In the present study, we examined inhibition of the cell cycle by MCM3AP in a cell-free system. We show here that wild type MCM3AP, but not the acetylase-deficient mutant, inhibits initiation of DNA replication, but not elongation. Both wild type and acetylase-deficient mutant MCM3AP, however, can bind to chromatin through interaction with MCM3. These results indicate that MCM3 acetylase activity of MCM3AP is required to inhibit initiation of DNA replication and that association of MCM3AP to chromatin alone is not sufficient for the inhibition. We also show that interaction between MCM3 and MCM3AP is essential for nuclear localization and chromatin binding of MCM3AP. Furthermore, the chromatin binding of MCM3AP is temporally correlated with that of endogenous MCM3 when cells were released from mitosis. Hence, MCM3AP is a potent natural inhibitor of the initiation of DNA replication whose action is mediated by interaction with MCM3.
微小染色体维持(MCM)蛋白是前复制复合体的重要组成部分,它将DNA复制限制在每个细胞周期一次。MCM3乙酰化蛋白(MCM3AP)与MCM3结合并使其乙酰化,从而抑制细胞周期进程。在本研究中,我们在无细胞体系中检测了MCM3AP对细胞周期的抑制作用。我们在此表明,野生型MCM3AP而非乙酰化酶缺陷型突变体可抑制DNA复制的起始,但不抑制延伸。然而,野生型和乙酰化酶缺陷型突变体MCM3AP均可通过与MCM3相互作用结合至染色质。这些结果表明,MCM3AP的MCM3乙酰化酶活性是抑制DNA复制起始所必需的,且仅MCM3AP与染色质的结合不足以产生抑制作用。我们还表明,MCM3与MCM3AP之间的相互作用对于MCM3AP的核定位和染色质结合至关重要。此外,当细胞从有丝分裂中释放时,MCM3AP的染色质结合与内源性MCM3的染色质结合在时间上相关。因此,MCM3AP是一种有效的DNA复制起始天然抑制剂,其作用通过与MCM3的相互作用介导。