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Ccp1 modulates epigenetic stability at centromeres and affects heterochromatin distribution in Schizosaccharomyces pombe

机译:Ccp1调节着丝粒的表观遗传稳定性并影响粟酒裂殖酵母中的异染色质分布

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摘要

Distinct chromatin organization features, such as centromeres and heterochromatin domains, are inherited epigenetically. However, the mechanisms that modulate the accuracy of epigenetic inheritance, especially at the individual nucleosome level, are not well-understood. Here, using ChIP and next-generation sequencing (ChIP-Seq), we characterized Ccp1, a homolog of the histone chaperone Vps75 in budding yeast that functions in centromere chromatin duplication and heterochromatin maintenance in fission yeast (Schizosaccharomyces pombe). We show that Ccp1 is enriched at the central core regions of the centromeres. Of note, among all histone chaperones characterized, deletion of the ccp1 gene uniquely reduced the rate of epigenetic switching, manifested as position effect variegation within the centromeric core region (CEN-PEV). In contrast, gene deletion of other histone chaperones either elevated the PEV switching rates or did not affect centromeric PEV. Ccp1 and the kinetochore components Mis6 and Sim4 were mutually dependent for centromere or kinetochore association at the proper levels. Moreover, Ccp1 influenced heterochromatin distribution at multiple loci in the genome, including the subtelomeric and the pericentromeric regions. We also found that Gar2, a protein predominantly enriched in the nucleolus, functions similarly to Ccp1 in modulating the epigenetic stability of centromeric regions, although its mechanism remained unclear. Together, our results identify Ccp1 as an important player in modulating epigenetic stability and maintaining proper organization of multiple chromatin domains throughout the fission yeast genome.
机译:不同的染色质组织特征,如着丝粒和异染色质结构域,是表观遗传的。但是,调节表观遗传的准确性,特别是在单个核小体水平上的机制尚不清楚。在这里,我们使用ChIP和下一代测序(ChIP-Seq),对Ccp1进行了表征,Ccp1是发芽酵母中组蛋白伴侣Vps75的同源物,在裂殖酵母(Schizosaccharomyces pombe)中着丝粒染色质复制和异染色质维持中起作用。我们表明,Ccp1在着丝粒的中央核心区域富集。值得注意的是,在所有表征的组蛋白分子伴侣中,ccp1基因的缺失独特地降低了表观遗传转换的速率,表现为着丝粒核心区域(CEN-PEV)中的位置效应变异。相反,其他组蛋白伴侣的基因缺失或者提高了PEV转换率,或者不影响着丝粒PEV。 Ccp1和线粒体成分Mis6和Sim4在适当的水平上相互依赖着丝粒或线粒体。此外,Ccp1影响基因组中多个基因座的异染色质分布,包括亚端粒和着丝粒附近。我们还发现,Gar2是一种主要富集在核仁中的蛋白质,在调节着丝粒区域的表观遗传稳定性方面,其功能类似于Ccp1,尽管其机理尚不清楚。总之,我们的结果表明Ccp1是调节表观遗传稳定性和在整个裂变酵母基因组中维持多个染色质结构域正确组织的重要参与者。

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