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The molecular topography of silenced chromatin in Saccharomyces cerevisiae

机译:酿酒酵母中沉默染色质的分子形貌

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摘要

Heterochromatin imparts regional, promoter-independent repression of genes and is epigenetically heritable. Understanding how silencing achieves this regional repression is a fundamental problem in genetics and development. Current models of yeast silencing posit that Sir proteins, recruited by transcription factors bound to the silencers, spread throughout the silenced region. To test this model directly at high resolution, we probed the silenced chromatin architecture by chromatin immunoprecipitation (ChIP) followed by next-generation sequencing (ChIP-seq) of Sir proteins, histones, and a key histone modification, H4K16-acetyl. These analyses revealed that Sir proteins are strikingly concentrated at and immediately adjacent to the silencers, with lower levels of enrichment over the promoters at HML and HMR, the critical targets for transcriptional repression. The telomeres also showed discrete peaks of Sir enrichment yet a continuous domain of hypoacetylated histone H4K16. Surprisingly, ChIP-seq of cross-linked chromatin revealed a distribution of nucleosomes at silenced loci that was similar to Sir proteins, whereas native nucleosome maps showed a regular distribution throughout silenced loci, indicating that cross-linking captured a specialized chromatin organization imposed by Sir proteins. This specialized chromatin architecture observed in yeast informs the importance of a steric contribution to regional repression in other organisms.
机译:异染色质赋予基因区域性的,不依赖启动子的抑制,并且是表观遗传的。了解沉默如何实现这种区域抑制是遗传学和发展中的一个基本问题。当前的酵母沉默模型认为,被沉默因子结合的转录因子募集的Sir蛋白遍布整个沉默区域。为了直接在高分辨率下测试该模型,我们通过染色质免疫沉淀(ChIP),然后对Sir蛋白,组蛋白和关键组蛋白修饰H4K16-乙酰进行了下一代测序(ChIP-seq),探究了沉默的染色质结构。这些分析表明,Sir蛋白惊人地集中在沉默子处并紧邻沉默子,在转录抑制的关键靶点HML和HMR上的启动子富集程度较低。端粒还显示出Sir富集的离散峰,但是次乙酰化组蛋白H4K16的连续域。出乎意料的是,交联染色质的ChIP-seq揭示了沉默位点上的核小体分布与Sir蛋白相似,而天然核小体图谱显示了整个沉默位点上的规则分布,这表明交联捕获了Sir施加的专门染色质组织蛋白质。在酵母中观察到的这种专门的染色质结构告诉我们空间对其他生物区域抑制的重要性。

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