Shirayama M, Matsui Y, Toh-e A
Department of Biological Sciences, Graduate School of Science, University of Tokyo, Japan.
Mol Gen Genet. 1996 May 23;251(2):176-85. doi: 10.1007/BF02172916.
LTE1 encodes a homolog of GDP-GTP exchange factors for the Ras superfamily and is required at low temperatures for cell cycle progression at the stage of the termination of M phase in Saccharomyces cerevisiae. We isolated extragenic suppressors which suppress the cold sensitivity of lte1 cells and confer a temperature-sensitive phenotype on cells. Cells mutant for the suppressor alone were arrested at telophase at non-permissive temperatures and the terminal phenotype was almost identical to that of lte1 cells at non-permissive temperatures. Genetic analysis revealed that the suppressor is allelic to CDC15, which encodes a protein kinase. The cdc15 mutations thus isolated were recessive with regard to the temperature-sensitive phenotype and were dominant with respect to suppression of lte1. We isolated CDC14 as a low-copy-number suppressor of cdc15-rlt1. CDC14 encodes a phosphotyrosine phosphatase (PTPase) and is essential for termination of M phase. An extra copy of CDC14 suppressed the temperature sensitivity of cdc15-rlt1 cells, but not that of cdc15-1 cells. In addition, some residues that are essential for the CDC14 PTPase activity were found to be non-essential for the suppression. These results strongly indicate that Cdc14 possesses dual functions; PTPase activity is needed for one function but not for the other. We postulate that the cooperative action of Cdc14 and Cdc15 plays an essential role in the termination of M phase.
LTE1编码一种Ras超家族GDP - GTP交换因子的同源物,在酿酒酵母中,低温时M期终止阶段的细胞周期进程需要该因子。我们分离出了一些基因外抑制子,它们可抑制lte1细胞的冷敏感性,并赋予细胞温度敏感型表型。仅携带该抑制子突变的细胞在非允许温度下会停滞在末期,其最终表型与非允许温度下的lte1细胞几乎相同。遗传分析表明,该抑制子与编码一种蛋白激酶的CDC15等位。由此分离出的cdc15突变在温度敏感型表型方面是隐性的,而在抑制lte1方面是显性的。我们分离出CDC14作为cdc15 - rlt1的低拷贝数抑制子。CDC14编码一种磷酸酪氨酸磷酸酶(PTPase),对M期的终止至关重要。额外一份CDC14可抑制cdc15 - rlt1细胞的温度敏感性,但不能抑制cdc15 - 1细胞的温度敏感性。此外,发现CDC14 PTPase活性所必需的一些残基对于这种抑制作用并非必需。这些结果有力地表明Cdc14具有双重功能;一种功能需要PTPase活性,而另一种功能则不需要。我们推测Cdc14和Cdc15的协同作用在M期的终止中起着至关重要的作用。