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Centromere identity is specified by a single centromeric nucleosome in budding yeast

机译:着丝粒身份由发芽酵母中的单个着丝粒核小体确定

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Chromosome segregation ensures that DNA is equally divided between daughter cells during each round of cell division. The centromere (CEN) is the specific locus on each chromosome that directs formation of the kinetochore, the multiprotein complex that interacts with the spindle microtubules to promote proper chromosomal alignment and segregation during mitosis. CENs are organized into a specialized chromatin structure due to the incorporation of an essential CEN-specific histone H3 variant (CenH3) in the centromeric nucleosomes of all eukaryotes. Consistent with its essential role at the CEN, the loss or up-regulation of CenH3 results in mitotic defects. Despite the requirement for CenH3 in CEN function, it is unclear how CenH3 nucleosomes structurally organize centromeric DNA to promote formation of the kinetochore. To address this issue, we developed a modified chromatin immuno-precipitation approach to analyze the number and position of CenH3 nucleosomes at the budding yeast CEN. Using this technique, we show that yeast CENs have a single CenH3 nucleosome positioned over the CEN-determining elements. Therefore, a single CenH3 nucleosome forms the minimal unit of centromeric chromatin necessary for kinetochore assembly and proper chromosome segregation.
机译:染色体分离可确保在每一轮细胞分裂过程中,DNA在子细胞之间均分。着丝粒(CEN)是每个染色体上的特定基因座,它指导着动粒的形成,动粒是一种多蛋白复合物,它与纺锤体微管相互作用,促进有丝分裂过程中染色体的正确排列和分离。由于在所有真核生物的着丝粒核小体中都整合了必不可少的CEN特异性组蛋白H3变体(CenH3),因此CEN被组织成专门的染色质结构。与其在CEN上的基本作用一致,CenH3的丢失或上调会导致有丝分裂缺陷。尽管在CEN功能中需要CenH3,但尚不清楚CenH3核小体如何在结构上组织着丝粒DNA以促进动粒的形成。为了解决这个问题,我们开发了一种改良的染色质免疫沉淀方法来分析CenH3核小体在发芽酵母CEN上的数量和位置。使用这种技术,我们表明酵母CENs具有单个CenH3核小体位于CEN决定元件上。因此,单个CenH3核小体形成着丝粒组装和正确染色体分离所必需的着丝粒染色质的最小单位。

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