DeRyckere D, Smith C L, Martin G S
Department of Molecular and Cell Biology, University of California, Berkeley, California 94720-3204, USA.
Genetics. 1999 Apr;151(4):1445-57. doi: 10.1093/genetics/151.4.1445.
The fission yeast cdc18(+) gene is required for both initiation of DNA replication and the mitotic checkpoint that normally inhibits mitosis in the absence of DNA replication. The cdc18(+) gene product contains conserved Walker A and B box motifs. Studies of other ATPases have shown that these motifs are required for nucleotide binding and hydrolysis, respectively. We have observed that mutant strains in which either of these motifs is disrupted are inviable. The effects of these mutations were examined by determining the phenotypes of mutant strains following depletion of complementing wild-type Cdc18. In both synchronous and asynchronous cultures, the nucleotide-hydrolysis motif mutant (DE286AA) arrests with a 1C-2C DNA content, and thus exhibits no obvious defects in entry into S phase or in the mitotic checkpoint. In contrast, in cultures synchronized by hydroxyurea arrest and release, the nucleotide-binding motif mutant (K205A) exhibits the null phenotype, with 1C and <1C DNA content, indicating a block in entry into S phase and loss of checkpoint control. In asynchronous cultures this mutant exhibits a mixed phenotype: a percentage of the population displays the null phenotype, while the remaining fraction arrests with a 2C DNA content. Thus, the phenotype exhibited by the K205A mutant is dependent on the cell-cycle position at which wild-type Cdc18 is depleted. These data indicate that both nucleotide binding and hydrolysis are required for Cdc18 function. In addition, the difference in the phenotypes exhibited by the nucleotide-binding and hydrolysis motif mutants is consistent with a two-step model for Cdc18 function in which nucleotide binding and hydrolysis are required for distinct aspects of Cdc18 function that may be executed at different points in the cell cycle.
裂殖酵母cdc18(+)基因对于DNA复制的起始以及有丝分裂检查点都是必需的,该检查点通常在没有DNA复制时抑制有丝分裂。cdc18(+)基因产物包含保守的沃克A盒和B盒基序。对其他ATP酶的研究表明,这些基序分别是核苷酸结合和水解所必需的。我们观察到,其中任何一个基序被破坏的突变菌株都无法存活。通过在互补的野生型Cdc18耗尽后确定突变菌株的表型,来检测这些突变的影响。在同步和异步培养中,核苷酸水解基序突变体(DE286AA)以1C - 2C DNA含量停滞,因此在进入S期或有丝分裂检查点方面没有明显缺陷。相比之下,在通过羟基脲阻滞和释放同步化的培养物中,核苷酸结合基序突变体(K205A)表现出无效表型,DNA含量为1C和<1C,表明进入S期受阻且检查点控制丧失。在异步培养中,该突变体表现出混合表型:一部分群体表现出无效表型,而其余部分以2C DNA含量停滞。因此,K205A突变体表现出的表型取决于野生型Cdc18耗尽时的细胞周期位置。这些数据表明,核苷酸结合和水解对于Cdc18功能都是必需的。此外,核苷酸结合和水解基序突变体表现出的表型差异与Cdc18功能的两步模型一致,其中核苷酸结合和水解对于Cdc18功能的不同方面是必需的,这些方面可能在细胞周期的不同时间点执行。