Segal M, Clarke D J, Reed S I
Department of Molecular Biology, MB7, The Scripps Research Institute, La Jolla, California 92037, USA.
J Cell Biol. 1998 Oct 5;143(1):135-45. doi: 10.1083/jcb.143.1.135.
In Saccharomyces cerevisiae, a single cyclin-dependent kinase, Cdc28, regulates both G1/S and G2/M phase transitions by associating with stage-specific cyclins. During progression through S phase and G2/M, Cdc28 is activated by the B-type cyclins Clb1-6. Because of functional redundancy, specific roles for individual Clbs have been difficult to assign. To help genetically define such roles, strains carrying a cdc28(ts) allele, combined with single CLB deletions were studied. We assumed that by limiting the activity of the kinase, these strains would be rendered more sensitive to loss of individual Clbs. By this approach, a novel phenotype associated with CLB5 mutation was observed. Homozygous cdc28-4(ts) clb5 diploids were inviable at room temperature. Cells were defective in spindle positioning, leading to migration of undivided nuclei into the bud. Occasionally, misplaced spindles were observed in cdc28-4 clb5 haploids; additional deletion of CLB6 caused full penetrance. Thus, CLB5 effects proper preanaphase spindle positioning, yet the requirement differs in haploids and diploids. The execution point for the defect corresponded to the time of Clb5-dependent kinase activation. Nevertheless, lethality of cdc28-4 clb5 diploids was not rescued by CLB2 or CLB4 overexpression, indicating a specificity of Clb5 function beyond temporality of expression.
在酿酒酵母中,单一的细胞周期蛋白依赖性激酶Cdc28通过与阶段特异性细胞周期蛋白结合来调节G1/S和G2/M期转换。在S期和G2/M期进程中,Cdc28被B型细胞周期蛋白Clb1 - 6激活。由于功能冗余,单个Clb的具体作用难以确定。为了从遗传学角度明确这些作用,研究了携带cdc28(ts)等位基因并结合单个CLB缺失的菌株。我们假设通过限制激酶的活性,这些菌株对单个Clb的缺失会更敏感。通过这种方法,观察到了一种与CLB5突变相关的新表型。纯合的cdc28 - 4(ts) clb5二倍体在室温下无法存活。细胞在纺锤体定位方面存在缺陷,导致未分裂的细胞核迁移到芽中。偶尔,在cdc28 - 4 clb5单倍体中会观察到纺锤体位置错误;额外缺失CLB6会导致完全显性。因此,CLB5影响前期纺锤体的正确定位,但单倍体和二倍体中的需求不同。缺陷的执行点与Clb5依赖性激酶激活的时间相对应。然而,CLB2或CLB4的过表达并不能挽救cdc28 - 4 clb5二倍体的致死性,这表明Clb5功能具有超越表达时间性的特异性。