Department of Biochemistry, Bose Institute, Kolkata, India.
FEMS Yeast Res. 2013 Jun;13(4):375-85. doi: 10.1111/1567-1364.12041. Epub 2013 Apr 2.
The Ctf19 multi-protein complex of the central kinetochore in Saccharomyces cerevisiae is required for precise chromosome segregation during mitosis. Of 11 proteins of this complex, at least six are required for cell survival when microtubules are defective. To find individual roles of these proteins in kinetochore stability, double deletion mutants of the corresponding genes were constructed in several combinations. The growth phenotype of all the mutants was in accordance with the current model of hierarchical assembly of kinetochore proteins except one that lacked CHL4 and IML3 genes in a tubulin-defective background (tub1-1 chl4 iml3). tub1-1 chl4 iml3 showed synergistic growth defect, decrease in minichromosome stability compared with its single mutants, and a greater accumulation of cells at the G2/M checkpoint of the cell cycle. Furthermore, in the absence of Iml3p, the two-hybrid interaction between Ctf19p (a member of the Ctf19 complex) and Dam1p (a member of the outer kinetochore DASH complex) was disrupted and the localization of Dam1p at the kinetochore was also compromised. These results indicate a role for Iml3p distinct from Chl4p at the kinetochore. Iml3p may be acting as a link between the central and the outer complexes thus contributing to a functional kinetochore.
酿酒酵母中央着丝粒的 Ctf19 多蛋白复合物对于有丝分裂过程中染色体的精确分离是必需的。在这个复合物的 11 种蛋白中,至少有 6 种在微管有缺陷时对于细胞存活是必需的。为了在着丝粒稳定性方面找到这些蛋白的个别作用,相应基因的双缺失突变体在几种组合中被构建。除了在微管缺陷背景下缺失 CHL4 和 IML3 基因的 tub1-1 chl4 iml3 突变体外,所有突变体的生长表型都与当前的着丝粒蛋白分层组装模型一致(tub1-1 chl4 iml3)。tub1-1 chl4 iml3 表现出协同生长缺陷,与单突变体相比,微染色体稳定性下降,并且细胞在细胞周期的 G2/M 检验点积累更多。此外,在 Iml3p 缺失的情况下,Ctf19p(Ctf19 复合物的成员)和 Dam1p(外着丝粒 DASH 复合物的成员)之间的双杂交相互作用被破坏,Dam1p 在着丝粒上的定位也受到影响。这些结果表明 Iml3p 在着丝粒上的作用不同于 Chl4p。Iml3p 可能作为中央和外复合物之间的连接物,从而有助于功能性着丝粒的形成。