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首页> 外文期刊>Genes to cells : >Condensin function at centromere chromatin facilitates proper kinetochore tension and ensures correct mitotic segregation of sister chromatids.
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Condensin function at centromere chromatin facilitates proper kinetochore tension and ensures correct mitotic segregation of sister chromatids.

机译:着丝粒染色质上的凝缩蛋白功能有助于适当的线粒体张力,并确保姐妹染色单体的正确有丝分裂隔离。

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摘要

The condensin complex is essential for sister chromatid segregation in eukaryotic mitosis. Nevertheless, in budding yeast, condensin mutations result in massive mis-segregation of chromosomes containing the nucleolar organizer, while other chromosomes, which also contain condensin binding sites, remain genetically stable. To investigate this phenomenon we analyzed the mechanism of the cell-cycle arrest elicited by condensin mutations. Under restrictive conditions, the majority of condensin-deficient cells arrest in metaphase. This metaphase arrest is mediated by the spindle checkpoint, particularly by the spindle-kinetochore tension-controlling pathway. Inactivation of the spindle checkpoint in condensin mutants resulted in frequent chromosome non-disjunction, eliminating the bias in chromosome mis-segregation towards rDNA-containing chromosomes. The spindle tension defect in condensin-impaired cells is likely mediated by structural defects in centromere chromatin reflected by the partial loss of the centromere histone Cse4p. These findings show that, in addition to its essential role in rDNA segregation, condensin mediates segregation of the whole genome by maintaining the centromere structure in Saccharomyces cerevisiae.
机译:凝聚素复合物对于真核有丝分裂中姐妹染色单体的分离至关重要。然而,在发芽酵母中,凝集素突变会导致含有核仁组织者的染色体发生大量的错误分离,而其他也包含凝缩素结合位点的染色体仍保持遗传稳定性。为了研究这种现象,我们分析了凝集素突变引起的细胞周期停滞的机制。在限制性条件下,大多数缺乏凝集素的细胞会在中期停滞。这种中期停滞是由纺锤体检查点介导的,特别是纺锤体-线粒体张力控制途径。 condensin突变体中纺锤体检查点的失活导致频繁的染色体不分离,从而消除了染色体错向包含rDNA的染色体的偏向。凝集素受损细胞的纺锤体张力缺陷很可能是由着丝粒染色质的结构缺陷介导的,着丝粒组蛋白Cse4p的部分丢失反映了这种缺陷。这些发现表明,凝集素除了在rDNA分离中起重要作用外,还通过维持酿酒酵母中的着丝粒结构来介导整个基因组的分离。

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