Samuel J M, Fournier N, Simanis V, Millar J B
Division of Yeast Genetics, National Institute of Medical Research, Mill Hill, London, UK.
Mol Gen Genet. 2000 Oct;264(3):306-16. doi: 10.1007/s004380000324.
Hyperactivation of Cdc2 in fission yeast causes cells to undergo a lethal premature mitosis, a phenomenon called mitotic catastrophe. This phenotype is observed in cdc2-3w wee1-50 cells at high temperature and is suppressed by a single recessive mutant, mcs3-12. Mcs3 acts independently of the Wee1 kinase and Cdc25 phosphatase, two major regulators of Cdc2. We have isolated multicopy suppressors of the cell cycle arrest phenotype of mcs3-12 wee1-50 cdc25-22 cells, but did not identify the mcs3 gene itself. Instead several known mitotic regulators were isolated, including the Cdc25 phosphatase, Wis2 cyclophilin, Cek1 kinase, and an Hsp90 homologue, Swo1. We also isolated clones encoding non-functional, truncated forms of the Wee1 kinase and Dis2 type 1 phosphatase. In addition we identified a multicopy suppressor that encodes a structural homologue of the budding yeast SPO12 gene. We find that overexpression of fission yeast spo12 not only suppresses the phenotype of the mcs3-12 wee1-50 cdc25-22 strain, but also that of a win1-1 wee1-50 cdc25-22 strain at high temperature, indicating that the function of spo12 is not directly related to mcs3. We show that spo12 mRNA is periodically expressed during the fission yeast cell cycle, peaking at the G2/M transition coincidently with cdc15. Deletion of spo12, however, has no overt effect on either the mitotic or meiotic cell cycles, except when the function of the major B type cyclin, Cdc13, is compromised.
裂殖酵母中Cdc2的过度激活会导致细胞经历致死性的过早有丝分裂,这种现象称为有丝分裂灾难。在高温下,在cdc2-3w wee1-50细胞中可观察到这种表型,并且被一个单隐性突变体mcs3-12所抑制。Mcs3独立于Wee1激酶和Cdc25磷酸酶发挥作用,这两者是Cdc2的两个主要调节因子。我们分离出了mcs3-12 wee1-50 cdc25-22细胞周期停滞表型的多拷贝抑制子,但未鉴定出mcs3基因本身。相反,分离出了几个已知的有丝分裂调节因子,包括Cdc25磷酸酶、Wis2亲环蛋白、Cek1激酶和一个Hsp90同源物Swo1。我们还分离出了编码无功能截短形式的Wee1激酶和Dis2 1型磷酸酶的克隆。此外,我们鉴定出一个多拷贝抑制子,其编码芽殖酵母SPO12基因的结构同源物。我们发现,裂殖酵母spo12的过表达不仅能抑制mcs3-12 wee1-50 cdc25-22菌株的表型,还能抑制高温下win1-1 wee1-50 cdc25-22菌株的表型,这表明spo12的功能与mcs3没有直接关系。我们表明,spo12 mRNA在裂殖酵母细胞周期中周期性表达,在G2/M期与cdc15同时达到峰值。然而,spo12的缺失对有丝分裂或减数分裂细胞周期均无明显影响,除非主要的B型细胞周期蛋白Cdc13的功能受损。