Samejima I, Matsumoto T, Nakaseko Y, Beach D, Yanagida M
Department of Biophysics, Faculty of Science, Kyoto University, Japan.
J Cell Sci. 1993 May;105 ( Pt 1):135-43. doi: 10.1242/jcs.105.1.135.
Fission yeast cut mutants cause cytokinesis in the absence of normal nuclear division. These mutants show abnormal uncoupled mitosis and are known to be the result of mutations in the genes encoding DNA topoisomerase II, proteins related to spindle pole duplication, and a kinesin-related mitotic motor. We have screened 717 temperature-sensitive (ts) mutants by individually observing their cytological phenotypes at the restrictive temperature, and have newly isolated 25 cut mutants. Genetic analyses indicate that 14 of them fall into five previously identified loci, namely, top2, cut1, cut5, cut7 and cut9, whereas nine have been mapped onto seven new loci, designated cut13 to cut19. The cytological phenotypes of the newly identified cut mutants can be classified into three groups. One group consists of mutants in which a portion of the nuclear chromatin is stretched by the elongated spindle but the entire nucleus is not separated, reminiscent of, but not identical to, the phenotypes of top2 and cut1; mutants cut14-208, cut15-85, cut16-267 and cut17-275 display such a phenotype. Another group exhibits non-disjunctioned and condensed chromosomes in the presence of the spindle; cut13-131 belongs to this group. The cut19-708 mutant has also been found to have condensed chromosomes. The remaining group has a mixed phenotype of the above two groups; namely, stretched chromatin and condensed chromosomes; cut18-447 exhibits such a phenotype. The isolation and characterization of the mutated genes will be the subjects of future investigations.
裂殖酵母切割突变体在没有正常核分裂的情况下导致胞质分裂。这些突变体表现出异常的未偶联有丝分裂,已知是编码DNA拓扑异构酶II、与纺锤体极复制相关的蛋白质以及一种与驱动蛋白相关的有丝分裂马达的基因突变的结果。我们通过在限制温度下单独观察它们的细胞学表型,筛选了717个温度敏感(ts)突变体,并新分离出25个切割突变体。遗传分析表明,其中14个属于五个先前确定的基因座,即top2、cut1、cut5、cut7和cut9,而另外9个已定位到七个新基因座,命名为cut13至cut19。新鉴定的切割突变体的细胞学表型可分为三组。一组由这样的突变体组成,其中一部分核染色质被拉长的纺锤体拉伸,但整个细胞核未分离,这让人联想到但又不同于top2和cut1的表型;突变体cut14 - 208、cut15 - 85、cut16 - 267和cut17 - 275表现出这种表型。另一组在有纺锤体的情况下表现出染色体不分离和浓缩;cut13 - 131属于这一组。还发现cut19 - 708突变体有浓缩的染色体。其余一组具有上述两组的混合表型;即染色质拉伸和染色体浓缩;cut18 - 447表现出这种表型。突变基因的分离和表征将是未来研究的主题。