Jwa M, Song K
Department of Biochemistry, College of Science, Yonsei University, Seoul, Korea.
Mol Cells. 1998 Apr 30;8(2):240-5.
Coordination between karyokinesis and cytokinesis in the cell division cycle is fundamental to a precise transmission of duplicated genome into dividing daughter cells. byr4, a previously isolated essential gene, affects the mitotic cell cycle and cytokinesis in S. pombe. Phenotypic analyses of the null alleles and the overexpression of byr4 suggest that byr4 is a dosage-dependent coordinator of karyokinesis and cytokinesis (Song et al., 1996). In this study, the functional mechanisms of byr4 were investigated using a byr4 mutant that exhibits byr4 overexpression phenotypes in thiamine deficient media. Genetic suppression analyses of this byr4 mutant with other cytokinesis regulatory genes in S. pombe, cdc16, cdc7, cdc15, cdc14, and plo1, show that byr4 overexpression phenotypes are suppressed by the overexpression of cdc16 and cdc7, but not by plo1, cdc14, and cdc15. Also, the basal expression of byr4 and cdc7 suppresses the temperature-sensitive cdc16 mutation. However, the basal expression of either byr4 or cdc16 does not suppress the temperature-sensitive cdc7 mutation. The results of these suppression tests suggest that byr4 genetically interacts with cdc16 and cdc7: byr4 functions at the same level with or downstream of cdc16 and upstream of cdc7. In the present study, we also show that Byr4 interacts with Cdc16 and Spg1 in the yeast two-hybrid assays. Recent reports suggest a possible small GTPase pathway to regulate the timing of cytokinesis where Cdc16 functions as a GAP (GTPase activating protein), Spg1 as a GTPase, and Cdc7 as a downstream effector. Combined genetic and two-hybrid analyses of this study strongly suggest that Byr4 directly interacts with this possible small GTPase pathway including Cdc16, Spg1, and Cdc7 to regulate cytokinesis in S. pombe.
细胞分裂周期中核分裂与胞质分裂之间的协调对于将复制后的基因组精确传递到分裂的子细胞中至关重要。byr4是一个先前分离出的必需基因,它影响粟酒裂殖酵母的有丝分裂细胞周期和胞质分裂。对byr4无效等位基因和过表达的表型分析表明,byr4是核分裂和胞质分裂的剂量依赖性协调因子(宋等人,1996年)。在本研究中,使用在硫胺素缺乏培养基中表现出byr4过表达表型的byr4突变体来研究byr4的功能机制。对该byr4突变体与粟酒裂殖酵母中其他胞质分裂调节基因cdc16、cdc7、cdc15、cdc14和plo1进行遗传抑制分析,结果表明cdc16和cdc7的过表达可抑制byr4过表达表型,而plo1、cdc14和cdc15则不能。此外,byr4和cdc7的基础表达可抑制温度敏感型cdc16突变。然而,byr4或cdc16的基础表达均不能抑制温度敏感型cdc7突变。这些抑制试验的结果表明,byr4在遗传上与cdc16和cdc7相互作用:byr4与cdc16处于同一水平或在其下游发挥作用,且在cdc7的上游。在本研究中,我们还表明在酵母双杂交试验中Byr4与Cdc16和Spg1相互作用。最近的报道提出了一种可能的小GTP酶途径来调节胞质分裂的时间,其中Cdc16作为GAP(GTP酶激活蛋白)发挥作用,Spg1作为GTP酶,Cdc7作为下游效应物。本研究结合遗传分析和双杂交分析强烈表明,Byr4直接与包括Cdc16、Spg1和Cdc7在内的这一可能的小GTP酶途径相互作用,以调节粟酒裂殖酵母中的胞质分裂。