Yuste-Rojas M, Cross F R
Rockefeller University, New York, NY 10021, USA.
Mol Gen Genet. 2000 Feb;263(1):60-72. doi: 10.1007/pl00008676.
We screened for mutations that resulted in lethality when the G1 cyclin Cln2p was overexpressed throughout the cell cycle in Saccharomyces cerevisiae. Mutations in five complementation groups were found to give this phenotype, and three of the mutated genes were identified as MEC1, NUP170, and CDC14. Mutations in CDC14 may have been recovered in the screen because Cdc14p may reduce the cyclin B (Clb)-associated Cdc28 kinase activity in late mitosis, and Cln2p may normally activate Clb-Cdc28 kinase activity by related mechanisms. In agreement with the idea that cdc14 mutations elevate Clb-Cdc28 kinase activity, deletion of the gene for the Clb-Cdc28 inhibitor Sic1 caused synthetic lethality with cdc14-1, as did the deletion of HCT1, which is required for proteolysis of Clb2p. Surprisingly, deletion of the gene for the major B-type cyclin, CLB2, also caused synthetic lethality with the cdc14-1 mutation. The clb2 cdc14 strains arrested with replicated but unseparated DNA and unseparated spindle pole bodies; this phenotype is distinct from the late mitotic arrest of the sic1::TRP1 cdc14-1 and the cdc14-1 hct1::LEU2 double mutants and of the cdc14 CLN2 overexpressor. We found genetic interactions between CDC14 and the replication initiator gene CDC6, extending previous observations of interactions between the late mitotic function of Cdc14p and control of DNA replication. We also describe genetic interactions between CDC28 and CDC14.
我们筛选了在酿酒酵母细胞周期中过表达G1期细胞周期蛋白Cln2p时导致致死性的突变。发现五个互补组中的突变会产生这种表型,其中三个突变基因被鉴定为MEC1、NUP170和CDC14。在筛选中可能恢复了CDC14的突变,因为Cdc14p可能在有丝分裂后期降低细胞周期蛋白B(Clb)相关的Cdc28激酶活性,而Cln2p可能通常通过相关机制激活Clb-Cdc28激酶活性。与cdc14突变会提高Clb-Cdc28激酶活性的观点一致,Clb-Cdc28抑制剂Sic1的基因缺失与cdc14-1产生合成致死性,Clb2p蛋白水解所需的HCT1基因缺失也如此。令人惊讶的是,主要B型细胞周期蛋白CLB2的基因缺失也与cdc14-1突变产生合成致死性。clb2 cdc14菌株因DNA复制但未分离以及纺锤极体未分离而停滞;这种表型不同于sic1::TRP1 cdc14-1和cdc14-1 hct1::LEU2双突变体以及cdc14 CLN2过表达体的有丝分裂后期停滞。我们发现CDC14与复制起始基因CDC6之间存在遗传相互作用,扩展了先前关于Cdc14p的有丝分裂后期功能与DNA复制控制之间相互作用的观察结果。我们还描述了CDC28与CDC14之间的遗传相互作用。