Brown G W, Kelly T J
Department of Molecular Biology and Genetics, Johns Hopkins University School of Medicine, Baltimore, Maryland 21205, USA.
J Biol Chem. 1998 Aug 21;273(34):22083-90. doi: 10.1074/jbc.273.34.22083.
Members of the Cdc7 family of protein kinases are essential for the initiation of DNA replication in all eukaryotes, but their precise biochemical function is unclear. We have purified the fission yeast Cdc7 homologue Hsk1 approximately 30,000-fold, to near homogeneity. Purified Hsk1 has protein kinase activity on several substrates and is capable of autophosphorylation. Point mutations in highly conserved regions of Hsk1 inactivate the kinase in vitro and in vivo. Overproduction of two of the mutant hsk1 alleles blocks initiation of DNA replication and deranges the mitotic checkpoint, a phenotype consistent with a role for Hsk1 in the early stages of initiation. The purified Hsk1 kinase can be separated into two active forms, a Hsk1 monomer and a heterodimer consisting of Hsk1 complexed with a co-purifying polypeptide, Dfp1. Association with Dfp1 stimulates phosphorylation of exogenous substrates but has little effect on autokinase activity. We have identified Dfp1 as the fission yeast homologue of budding yeast Dbf4. Purified Hsk1 phosphorylates the Cdc19 (Mcm2) subunit of the six-member minichromosome maintenance protein complex purified from fission yeast. Since minichromosome maintenance proteins have been implicated in the initiation of DNA replication, the essential function of Hsk1 at the G1/S transition may be mediated by phosphorylation of Cdc19. Furthermore, the phosphorylation of critical substrates by Hsk1 kinase is likely regulated by association with a Dbf4-like co-factor.
蛋白激酶Cdc7家族成员对于所有真核生物中DNA复制的起始至关重要,但其精确的生化功能尚不清楚。我们已将裂殖酵母Cdc7同源物Hsk1纯化了约30,000倍,达到近乎均一的状态。纯化后的Hsk1对多种底物具有蛋白激酶活性,并且能够进行自身磷酸化。Hsk1高度保守区域的点突变在体外和体内均使该激酶失活。两个突变的hsk1等位基因的过量表达会阻断DNA复制的起始,并扰乱有丝分裂检查点,这一表型与Hsk1在起始早期阶段的作用一致。纯化后的Hsk1激酶可分为两种活性形式,一种是Hsk1单体,另一种是由Hsk1与共纯化的多肽Dfp1复合而成的异二聚体。与Dfp1结合可刺激外源底物的磷酸化,但对自身激酶活性影响很小。我们已鉴定出Dfp1是芽殖酵母Dbf4的裂殖酵母同源物。纯化后的Hsk1可磷酸化从裂殖酵母中纯化出的六聚体微型染色体维持蛋白复合物的Cdc19(Mcm2)亚基。由于微型染色体维持蛋白与DNA复制的起始有关,Hsk1在G1/S转换时的基本功能可能是通过Cdc19的磷酸化来介导的。此外,Hsk1激酶对关键底物的磷酸化可能受与Dbf4样辅助因子结合的调控。