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Novel mad2 Alleles Isolated in a Schizosaccharomyces pombe γ-Tubulin Mutant Are Defective in Metaphase Arrest Activity but Remain Functional for Chromosome Stability in Unperturbed Mitosis

机译:在粟酒裂殖酵母γ-微管蛋白突变体中分离的新型mad2等位基因在中期逮捕活动中有缺陷但在不受干扰的有丝分裂中保持染色体稳定性

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摘要

A previously isolated fission yeast γ-tubulin mutant containing apparently stabilized microtubules proliferated at an approximately identical rate as wild type, yet the mutant mitosis spindle dynamics were aberrant, particularly the kinetochore microtubule dynamics. Progression through mitosis in the mutant, however, resulted in mostly accurate chromosome segregation. In the absence of the spindle assembly checkpoint gene, mad2+, the spindle dynamics in the γ-tubulin mutant were greatly compromised, leading to a high incidence of chromosome missegregation. Unlike in wild-type cells, green fluorescent protein (GFP)-tagged Mad2 protein often accumulated near one of the poles of an elongating spindle in the γ-tubulin mutant. We isolated novel mad2 mutants that were defective in arresting mitotic progression upon gross perturbation of the spindle formation but remained functional for the viability of the γ-tubulin mutant. Further, the mad2 mutations did not appreciably destabilize minichromosomes in unperturbed mitoses. When overexpressed ectopically, these mutant Mad2 proteins sequestered wild-type Mad2, preventing its function in mitotic checkpoint arrest, but not in minichromosome stability. These results indicated that the Mad2 functions required for checkpoint arrest and chromosome stability in unperturbed mitosis are genetically discernible. Immunoprecipitation studies demonstrated that GFP-fused mutant Mad2 proteins formed a Mad1-containing complex with altered stability compared to that formed with wild-type Mad2, providing clues to the novel mad2 mutant phenotype.
机译:先前分离的包含明显稳定的微管的裂变酵母γ-微管蛋白突变体以与野生型大致相同的速率增殖,但是突变体的有丝分裂纺锤体动力学异常,特别是动粒体微管动力学。然而,突变体中有丝分裂的进展导致大多数染色体分离正确。在缺少纺锤体装配检查点基因mad2 + 的情况下,γ-微管蛋白突变体的纺锤体动力学受到极大损害,导致染色体错聚的发生率很高。与野生型细胞不同,绿色荧光蛋白(GFP)标记的Mad2蛋白通常在γ-微管蛋白突变体的伸长纺锤体的两极之一附近积累。我们分离了新颖的mad2突变体,该突变体在纺锤体形成的总体扰动中阻止有丝分裂进程具有缺陷,但仍对γ-微管蛋白突变体的活力具有功能。此外,mad2突变不会明显破坏稳定的有丝分裂中的微染色体的稳定性。当在异位表达过度时,这些突变的Mad2蛋白螯合野生型Mad2,从而阻止其在有丝分裂检查点停滞中起作用,但在微染色体稳定性中却没有。这些结果表明,在无扰动的有丝分裂中检查点停滞和染色体稳定性所需的Mad2功能在遗传上是可识别的。免疫沉淀研究表明,与野生型Mad2形成的蛋白质相比,GFP融合的突变Mad2蛋白质形成了具有Mad1的复合物,其稳定性发生了变化,这为新型mad2突变表型提供了线索。

著录项

  • 期刊名称 Genetics
  • 作者

    Yoshie Tange; Osami Niwa;

  • 作者单位
  • 年(卷),期 2007(175),4
  • 年度 2007
  • 页码 1571–1584
  • 总页数 14
  • 原文格式 PDF
  • 正文语种
  • 中图分类 遗传学;
  • 关键词

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