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首页> 外文期刊>Epigenetics & Chromatin >Epigenetic inheritance of an inducibly nucleosome-depleted promoter and its associated transcriptional state in the apparent absence of transcriptional activators
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Epigenetic inheritance of an inducibly nucleosome-depleted promoter and its associated transcriptional state in the apparent absence of transcriptional activators

机译:在明显缺乏转录激活因子的情况下,诱导型核小体耗尽型启动子的表观遗传遗传及其相关的转录状态

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Background Dynamic changes to the chromatin structure play a critical role in transcriptional regulation. This is exemplified by the Spt6-mediated histone deposition on to histone-depleted promoters that results in displacement of the general transcriptional machinery during transcriptional repression. Results Using the yeast PHO5 promoter as a model, we have previously shown that blocking Spt6-mediated histone deposition on to the promoter leads to persistent transcription in the apparent absence of transcriptional activators in vivo. We now show that the nucleosome-depleted PHO5 promoter and its associated transcriptionally active state can be inherited through DNA replication even in the absence of transcriptional activators. Transcriptional reinitiation from the nucleosome-depleted PHO5 promoter in the apparent absence of activators in vivo does not require Mediator. Notably, the epigenetic inheritance of the nucleosome-depleted PHO5 promoter through DNA replication does not require ongoing transcription. Conclusion Our results suggest that there may be a memory or an epigenetic mark on the nucleosome-depleted PHO5 promoter that is independent of the transcription apparatus and maintains the promoter in a nucleosome-depleted state through DNA replication.
机译:背景染色质结构的动态变化在转录调控中起关键作用。 Spt6介导的组蛋白沉积在组蛋白耗尽的启动子上的现象可以证明这一点,该蛋白在转录抑制过程中导致一般转录机制的移位。结果使用酵母PHO5启动子作为模型,我们先前已经表明,在体内显然不存在转录激活因子的情况下,阻断Spt6介导的组蛋白沉积在启动子上会导致持续转录。现在,我们显示即使在没有转录激活剂的情况下,核小体耗尽的PHO5启动子及其相关的转录活性状态也可以通过DNA复制来继承。在体内显然不存在激活剂的情况下,从核小体耗尽的PHO5启动子进行转录重新初始化不需要介体。值得注意的是,通过DNA复制获得的核小体PHO5启动子的表观遗传不需要进行转录。结论我们的结果表明,缺失核小体的PHO5启动子上可能存在记忆或表观遗传标记,其独立于转录装置,并通过DNA复制将启动子维持在缺失核小体的状态。

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