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Plasticity and Epigenetic Inheritance of Centromere-specific Histone H3 (CENP-A)-containing Nucleosome Positioning in the Fission Yeast

机译:可塑性和表观遗传的裂变酵母中组蛋白特定的组蛋白H3(CENP-A)包含核小体定位。

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摘要

Nucleosomes containing the specific histone H3 variant CENP-A mark the centromere locus on each chromatin and initiate kinetochore assembly. For the common type of regional centromeres, little is known in molecular detail of centromeric chromatin organization, its propagation through cell division, and how distinct organization patterns may facilitate kinetochore assembly. Here, we show that in the fission yeast S. pombe, a relatively small number of CENP-A/Cnp1 nucleosomes are found within the centromeric core and that their positioning relative to underlying DNA varies among genetically homogenous cells. Consistent with the flexible positioning of Cnp1 nucleosomes, a large portion of the endogenous centromere is dispensable for its essential activity in mediating chromosome segregation. We present biochemical evidence that Cnp1 occupancy directly correlates with silencing of the underlying reporter genes. Furthermore, using a newly developed pedigree analysis assay, we demonstrated the epigenetic inheritance of Cnp1 positioning and quantified the rate of occasional repositioning of Cnp1 nucleosomes throughout cell generations. Together, our results reveal the plasticity and the epigenetically inheritable nature of centromeric chromatin organization.
机译:含有特定组蛋白H3变异体CENP-A的核小体标记每个染色质上的着丝粒基因座并启动动粒组装。对于常见类型的区域着丝粒,对着丝粒染色质组织的分子细节,其通过细胞分裂的传播以及不同的组织模式如何促进线粒体组装了解甚少。在这里,我们显示在裂变酵母粟酒裂殖酵母中,在着丝粒核心内发现相对少量的CENP-A / Cnp1核小体,并且它们相对于基础DNA的位置在遗传同质细胞之间有所不同。与Cnp1核小体的灵活定位一致,内源着丝粒的很大一部分因其在介导染色体分离中的基本活性而可有可无。我们提供的生化证据表明Cnp1的占有与潜在的记者基因的沉默直接相关。此外,使用新开发的谱系分析方法,我们证明了Cnp1定位的表观遗传,并量化了整个细胞世代中Cnp1核小体偶尔重新定位的速率。总之,我们的结果揭示了着丝粒染色质组织的可塑性和表观遗传的可遗传性。

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