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首页> 外文期刊>The Journal of biological chemistry >Histone Variant H2A.Z Regulates Centromere Silencing and Chromosome Segregation in Fission Yeast
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Histone Variant H2A.Z Regulates Centromere Silencing and Chromosome Segregation in Fission Yeast

机译:组蛋白变型H2A.z调节裂变酵母中的Centromere沉默和染色体隔离

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摘要

The incorporation of histone variant H2A.Z into nucleosomes plays essential roles in regulating chromatin structure and gene expression. A multisubunit complex containing chromatin remodeling protein Swr1 is responsible for the deposition of H2A.Z in budding yeast and mammals. Here, we show that the JmjC domain protein Msc1 is a novel component of the fission yeast Swr1 complex and is required for Swr1-mediated incorporation of H2A.Z into nucleosomes at gene promoters. Loss of Msc1, Swr1, or H2A.Z results in loss of silencing at centromeres and defective chromosome segregation, although centromeric levels of CENP-A, a centromere-specific histone H3 variant that is required for setting up the chromatin structure at centromeres, remain unchanged. Intriguingly, H2A.Z is required for the expression of another centromere protein, CENP-C, and overexpression of CENP-C rescues centromere silencing defects associated with H2A.Z loss. These results demonstrate the importance of H2A.Z and CENP-C in maintaining a silenced chromatin state at centromeres.
机译:将组蛋白变体H2a.z掺入核体中的掺入在调节染色质结构和基因表达中起重要作用。含有染色质重塑蛋白SWR1的多管络合物是负责在萌芽酵母和哺乳动物中的H2A.z的沉积。在这里,我们表明JMJC结构域蛋白质MSC1是裂变酵母SWR1复合物的新组分,并且SWR1介导的H2A.Z掺入基因启动子的核体中。 MSC1,SWR1或H2A.z的丧失导致沉默在焦粒子和染色体染色体偏析中的丧失,但CENP-A的浓度,依赖于焦粒子的染色质结构所需的焦粒细胞特异性组蛋白H3变体保留不变。有趣的是,H2A.Z是表达另一种Centromere蛋白,CENP-C和CENP-C的过表达所需的CENP-C救援与H2A.z损失相关的枯萎病缺陷。这些结果证明了H2A.Z和CENP-C在焦粒子保持沉默的染色质状态方面的重要性。

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