Song S, Lee K S
Laboratory of Metabolism, Division of Basic Sciences, National Cancer Institute, National Institutes of Health, Bethesda, Maryland 20892, USA.
J Cell Biol. 2001 Feb 5;152(3):451-69. doi: 10.1083/jcb.152.3.451.
Coordination of mitotic exit with timely initiation of cytokinesis is critical to ensure completion of mitotic events before cell division. The Saccharomyces cerevisiae polo kinase Cdc5 functions in a pathway leading to the degradation of mitotic cyclin Clb2, thereby permitting mitotic exit. Here we provide evidence that Cdc5 also plays a role in regulating cytokinesis and that an intact polo-box, a conserved motif in the noncatalytic COOH-terminal domain of Cdc5, is required for this event. Depletion of Cdc5 function leads to an arrest in cytokinesis. Overexpression of the COOH-terminal domain of Cdc5 (cdc5DeltaN), but not the corresponding polo-box mutant, resulted in connected cells. These cells shared cytoplasms with incomplete septa, and possessed aberrant septin ring structures. Provision of additional copies of endogenous CDC5 remedied this phenotype, suggesting a dominant-negative inhibition of cytokinesis. The polo-box-dependent interactions between Cdc5 and septins (Cdc11 and Cdc12) and genetic interactions between the dominant-negative cdc5DeltaN and Cyk2/Hof1 or Myo1 suggest that direct interactions between cdc5DeltaN and septins resulted in inhibition of Cyk2/Hof1- and Myo1-mediated cytokinetic pathways. Thus, we propose that Cdc5 may coordinate mitotic exit with cytokinesis by participating in both anaphase promoting complex activation and a polo-box-dependent cytokinetic pathway.
有丝分裂退出与胞质分裂的及时启动之间的协调对于确保在细胞分裂前完成有丝分裂事件至关重要。酿酒酵母的polo激酶Cdc5在导致有丝分裂周期蛋白Clb2降解的途径中发挥作用,从而允许有丝分裂退出。在此我们提供证据表明,Cdc5在调节胞质分裂中也发挥作用,并且完整的polo框(Cdc5非催化COOH末端结构域中的一个保守基序)对于此过程是必需的。Cdc5功能的缺失导致胞质分裂停滞。Cdc5的COOH末端结构域(cdc5DeltaN)的过表达,但相应的polo框突变体则不会,导致细胞相连。这些细胞共享细胞质且隔膜不完整,并具有异常的隔膜蛋白环结构。提供额外拷贝的内源性CDC5可纠正此表型,提示对胞质分裂的显性负性抑制。Cdc5与隔膜蛋白(Cdc11和Cdc12)之间的polo框依赖性相互作用以及显性负性cdc5DeltaN与Cyk2/Hof1或Myo1之间的遗传相互作用表明,cdc5DeltaN与隔膜蛋白之间的直接相互作用导致对Cyk2/Hof1和Myo1介导的胞质分裂途径的抑制。因此,我们提出Cdc5可能通过参与后期促进复合物激活和polo框依赖性胞质分裂途径来协调有丝分裂退出与胞质分裂。