Saka Y, Fantes P, Yanagida M
Department of Biophysics, Faculty of Science, Kyoto University, Japan.
J Cell Sci Suppl. 1994;18:57-61. doi: 10.1242/jcs.1994.supplement_18.8.
The fission yeast cut5+ (identical to rad4+) gene is essential for S phase. Its temperature-sensitive (ts) mutation causes mitosis while S phase is inhibited: dependence of mitosis upon the completion of S phase is abolished. If DNA is damaged in mutant cells, however, cell division is arrested. Thus the checkpoint control system for DNA damage is functional, while that for DNA synthesis inhibition is not in the cut5 mutants. Transcription of the cut5+ gene is not under the direct control of cdc10+, which encodes a transcription factor for the START of cell cycle. The transcript level does not change during the cell cycle. The protein product has four distinct domains and is enriched in the nucleus. Its level does not alter during the cell cycle. The N-domain is important for cut5 protein function: it is essential for complementation of ts cut5 mutations and its overexpression blocks cell division. Furthermore, it resembles the N-terminal repeat domain of proto-oncoprotein Ect2, which, in the C-domain, contains a regulator-like sequence for small G proteins. We discuss a hypothesis that the cut5 protein is an essential component of the checkpoint control system for the completion of DNA synthesis. The restraint of mitosis until the completion of S phase is mediated by the cut5 protein, which can sense the state of chromosome duplication and negatively interacts with M phase regulators such as cdc25 and cdc2.
裂殖酵母的cut5+(等同于rad4+)基因对S期至关重要。其温度敏感(ts)突变在S期受抑制时会导致有丝分裂:有丝分裂对S期完成的依赖性被消除。然而,如果突变细胞中的DNA受损,细胞分裂就会停止。因此,DNA损伤的检查点控制系统是有功能的,而DNA合成抑制的检查点控制系统在cut5突变体中则没有功能。cut5+基因的转录不受cdc10+的直接控制,cdc10+编码细胞周期起始的转录因子。转录水平在细胞周期中不会改变。该蛋白质产物有四个不同的结构域,且在细胞核中富集。其水平在细胞周期中不会改变。N结构域对cut5蛋白功能很重要:它对ts cut5突变的互补是必需的,其过表达会阻断细胞分裂。此外,它类似于原癌蛋白Ect2的N端重复结构域,Ect2在C结构域中含有一个小G蛋白的调节样序列。我们讨论了一个假说,即cut5蛋白是DNA合成完成的检查点控制系统的一个重要组成部分。有丝分裂在S期完成之前受到抑制是由cut5蛋白介导的,cut5蛋白可以感知染色体复制的状态,并与诸如cdc25和cdc2等M期调节因子发生负向相互作用。