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Centromeric Barrier Disruption Leads to Mitotic Defects in Schizosaccharomyces pombe

机译:着丝粒屏障破坏导致粟酒裂殖酵母的有丝分裂缺陷。

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摘要

Centromeres are cis-acting chromosomal domains that direct kinetochore formation, enabling faithful chromosome segregation and preserving genome stability. The centromeres of most eukaryotic organisms are structurally complex, composed of nonoverlapping, structurally and functionally distinct chromatin subdomains, including the specialized core chromatin that underlies the kinetochore and pericentromeric heterochromatin. The genomic and epigenetic features that specify and preserve the adjacent chromatin subdomains critical to centromere identity are currently unknown. Here we demonstrate that chromatin barriers regulate this process in Schizosaccharomyces pombe. Reduced fitness and mitotic chromosome segregation defects occur in strains that carry exogenous DNA inserted at centromere 1 chromatin barriers. Abnormal phenotypes are accompanied by changes in the structural integrity of both the centromeric core chromatin domain, containing the conserved CENP-ACnp1 protein, and the flanking pericentric heterochromatin domain. Barrier mutant cells can revert to wild-type growth and centromere structure at a high frequency after the spontaneous excision of integrated exogenous DNA. Our results reveal a previously undemonstrated role for chromatin barriers in chromosome segregation and in the prevention of genome instability.
机译:着丝粒是顺式作用的染色体结构域,可指导线粒体形成,实现忠实的染色体分离并保持基因组稳定性。大多数真核生物的着丝粒结构复杂,由不重叠的,结构和功能上不同的染色质亚结构域组成,包括形成动粒和围绕着丝粒的异染色质的专门核心染色质。目前尚不清楚指定和保留对着丝粒身份至关重要的相邻染色质亚结构域的基因组和表观遗传学特征。在这里,我们证明染色质屏障调节粟酒裂殖酵母中的这一过程。适应性降低和有丝分裂染色体分离缺陷发生在携带在着丝粒1染色质屏障处插入外源DNA的菌株中。异常的表型伴随着包含保守的CENP-A Cnp1 蛋白的着丝粒核心染色质结构域和侧翼的周边中心异染色质结构域的结构完整性的变化。自发切除整合的外源DNA后,障碍突变细胞可以高频率恢复为野生型生长和着丝粒结构。我们的研究结果揭示了染色质屏障在染色体分离和预防基因组不稳定方面的前所未有的作用。

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