Fisher D L, Nurse P
Cell Cycle Laboratory, Imperial Cancer Research Fund, London, UK.
EMBO J. 1996 Feb 15;15(4):850-60.
Deletion of the fission yeast mitotic B-type cyclin gene cdc13 causes cells to undergo successive rounds of DNA replication. We have used a strain which expresses cdc13 conditionally to investigate re-replication. Activity of Start genes cdc2 and cdc10 is necessary and p34cdc2 kinase is active in re-replicating cells. We tested to see whether other cyclins were required for re-replication using cdc13delta. Further deletion of cig1 and puc1 had no effect, but deletion of cig2/cyc17 caused a severe delay in re-replication. Deletion of cig1 and cig2/cyc17 together abolished re-replication completely and cells arrested in G1. This, and analysis of the temperature sensitive cdc13-117 mutant, suggests that cdc13 can effectively substitute for the G1 cyclin activity of cig2/cyc17. We have characterized p56cdc13 activity and find evidence that in the absence of G1 cyclins, S-phase is delayed until the mitotic p34cdc2-p56cdc13 kinase is sufficiently active. These data suggest that a single oscillation of p34cdc2 kinase activity provided by a single B-type cyclin can promote ordered progression into both DNA replication and mitosis, and that the level of cyclin-dependent kinase activity may act as a master regulator dictating whether cells undergo S-phase or mitosis.
裂殖酵母有丝分裂B型细胞周期蛋白基因cdc13的缺失会导致细胞连续进行多轮DNA复制。我们使用了一种条件性表达cdc13的菌株来研究再复制。起始基因cdc2和cdc10的活性是必需的,并且p34cdc2激酶在再复制细胞中具有活性。我们使用cdc13delta测试了其他细胞周期蛋白是否是再复制所必需的。进一步缺失cig1和puc1没有影响,但缺失cig2/cyc17会导致再复制严重延迟。同时缺失cig1和cig2/cyc17完全消除了再复制,细胞停滞在G1期。这一点以及对温度敏感的cdc13 - 117突变体的分析表明,cdc13可以有效地替代cig2/cyc17的G1期细胞周期蛋白活性。我们对p56cdc13活性进行了表征,并发现证据表明在没有G1期细胞周期蛋白的情况下,S期会延迟,直到有丝分裂的p34cdc2 - p56cdc13激酶充分激活。这些数据表明,由单个B型细胞周期蛋白提供的p34cdc2激酶活性的单次振荡可以促进有序进入DNA复制和有丝分裂,并且细胞周期蛋白依赖性激酶活性水平可能作为一个主要调节因子决定细胞是进入S期还是有丝分裂。