Tatebayashi K, Kato J, Ikeda H
Department of Molecular Biology, Institute of Medical Science, University of Tokyo, P.O. Takanawa, Japan.
Genetics. 1998 Jan;148(1):49-57. doi: 10.1093/genetics/148.1.49.
The fission yeast DNA repair gene rad21+ is essential for cell growth. To investigate the function essential for cell proliferation, we have isolated a temperature-sensitive mutant of the rad21+ gene. The mutant, rad21-K1, showed abnormal mitosis at the nonpermissive temperature. Some cells contained abnormal nuclear structures, such as condensed chromosomes with short spindles, or chromosomes stretched or unequally separated by elongating spindles. Other cells exhibited the displaced nucleus or a cut-like phenotype. Similar abnormalities were observed when the Rad21 protein was depleted from cells. We therefore concluded that Rad21 is essential for proper segregation of chromosomes. Moreover, the rad21-K1 mutant is sensitive not only to UV and gamma-ray irradiation but to thiabendazole and hydroxyurea, indicating that Rad21 plays important roles in microtubule function, DNA repair, and S phase function. The relation to the microtubule function was further confirmed by the fact that rad21+ genetically interacts with tubulin genes, nda2+ and nda3+. Finally, the growth of the rad21-K1 mutant was inhibited at the permissive temperature by introduction of another mutation in the cut9+ gene, coding for a component of the 20S cyclosome/anaphase promoting complex, which is involved in ubiquitin-mediated proteolysis. The results suggest that these diverse functions of Rad21 may be facilitated through ubiquitin-mediated proteolysis.
裂殖酵母DNA修复基因rad21+对细胞生长至关重要。为了研究细胞增殖所必需的功能,我们分离出了rad21+基因的一个温度敏感突变体。该突变体rad21-K1在非允许温度下表现出异常的有丝分裂。一些细胞含有异常的核结构,如带有短纺锤体的浓缩染色体,或被伸长的纺锤体拉伸或不等分离的染色体。其他细胞表现出细胞核移位或类似切割的表型。当细胞中的Rad21蛋白被耗尽时,也观察到了类似的异常。因此,我们得出结论,Rad21对于染色体的正确分离至关重要。此外,rad21-K1突变体不仅对紫外线和γ射线照射敏感,而且对噻苯咪唑和羟基脲敏感,这表明Rad21在微管功能、DNA修复和S期功能中发挥着重要作用。rad21+与微管蛋白基因nda2+和nda3+发生遗传相互作用,这一事实进一步证实了其与微管功能的关系。最后,通过在编码20S环体/后期促进复合体(参与泛素介导的蛋白水解)的一个组分的cut9+基因中引入另一个突变,rad21-K1突变体在允许温度下的生长受到抑制。结果表明,Rad21的这些不同功能可能通过泛素介导的蛋白水解来实现。