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Repressive and non-repressive chromatin at native telomeres in Saccharomyces cerevisiae

机译:酿酒酵母天然端粒的抑制和非抑制染色质

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Background In Saccharomyces cerevisiae genes that are located close to a telomere can become transcriptionally repressed by an epigenetic process known as telomere position effect. There is large variation in the level of the telomere position effect among telomeres, with many native ends exhibiting little repression. Results Chromatin analysis, using microccocal nuclease and indirect end labelling, reveals distinct patterns for ends with different silencing states. Differences were observed in the promoter accessibility of a subtelomeric reporter gene and a characteristic array of phased nucleosomes was observed on the centromere proximal side of core X at a repressive end. The silent information regulator proteins 2 - 4, the yKu heterodimer and the subtelomeric core X element are all required for the maintenance of the chromatin structure of repressive ends. However, gene deletions of particular histone modification proteins can eliminate the silencing without the disruption of this chromatin structure. Conclusion Our data identifies chromatin features that correlate with the silencing state and indicate that an array of phased nucleosomes is not sufficient for full repression.
机译:背景技术在酿酒酵母中,位于端粒附近的啤酒酵母基因可以通过表观遗传过程被称为端粒位置效应的转录抑制。端粒之间端粒位置效应的水平差异很大,许多天然末端几乎没有抑制作用。结果染色质分析使用微球菌核酸酶和间接末端标记,揭示了具有不同沉默状态的末端的独特模式。在亚端粒报道基因的启动子可及性上观察到差异,并且在核心X的着丝粒近端侧的抑制末端观察到相控核小体的特征阵列。沉默信息调节蛋白2-4,yKu异二聚体和亚端粒核心X元件都是维持阻抑末端染色质结构所必需的。但是,特定组蛋白修饰蛋白的基因缺失可以消除沉默,而不会破坏该染色质结构。结论我们的数据确定了与沉默状态相关的染色质特征,并表明相控核小体阵列不足以完全抑制。

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