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Studies of meiosis disclose distinct roles of cohesion in the core centromere and pericentromeric regions

机译:减数分裂研究揭示了核心着丝粒和着丝粒区域的凝聚力的独特作用

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摘要

During meiosis, a single round of genome duplication is followed by two sequential rounds of chromosome segregation. Through this process, a diploid parent cell generates gametes with a haploid set of chromosomes. A characteristic of meiotic chromosome segregation is a stepwise loss of sister chromatid cohesion along chromosomal arms and at centromeres. Whereas arm cohesion plays an important role in ensuring homologue disjunction at meiosis I, persisting cohesion at pericentromeric regions throughout meiosis I is essential for the faithful equational segregation of sisters in the following meiosis II, similar to mitosis. A widely conserved pericentromeric protein called shugoshin, which associates with protein phosphatase 2A (PP2A), plays a critical role in this protection of cohesin. Another key aspect of meiosis I is the establishment of monopolar attachment of sister kinetochores to spindle microtubules. Cohesion or physical linkage at the core centromeres, where kinetochores assemble, may conjoin sister kinetochores, leading to monopolar attachment. A meiosis-specific kinetochore factor such as fission yeast Moa1 or budding yeast monopolin contributes to this regulation. We propose that cohesion at the core centromere and pericentromeric regions plays distinct roles, especially in defining the orientation of kinetochores.
机译:在减数分裂期间,单轮基因组复制之后是连续的两轮染色体分离。通过这个过程,二倍体亲代细胞产生具有单倍体染色体组的配子。减数分裂染色体分离的特征是沿着染色体臂和着丝粒的姐妹染色单体内聚力的逐步损失。手臂的凝聚力在确保I减数分裂中的同系物分离中起着重要作用,而在整个减数分裂I的整个着丝粒区域仍保持凝聚力,对于后续的减数分裂II中姐妹的等式方程式分离(与有丝分裂类似)至关重要。与蛋白质磷酸酶2A(PP2A)缔合的一种被广泛保存的叫做shugoshin的着丝粒蛋白在保护黏附素中起着至关重要的作用。减数分裂I的另一个关键方面是姐妹动植物单轴附着于纺锤体微管的建立。动植物聚集的核心着丝粒的凝聚力或物理联系可能会结合成对的动植物,导致单极附着。减数分裂特有的线粒体因子,例如裂变酵母Moa1或发芽酵母monopolin有助于这种调节。我们建议,核心着丝粒和着丝粒区域的凝聚力起着独特的作用,尤其是在确定动粒体的方向时。

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