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Transcription Regulation by the Noncoding RNA SRG1 Requires Spt2-Dependent Chromatin Deposition in the Wake of RNA Polymerase II

机译:非编码RNA SRG1的转录调控要求RNA聚合酶II唤醒后Spt2依赖染色质沉积。

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摘要

Spt2 is a chromatin component with roles in transcription and posttranscriptional regulation. Recently, we found that Spt2 travels with RNA polymerase II (RNAP II), is involved in elongation, and plays important roles in chromatin modulations associated with this process. In this work, we dissect the function of Spt2 in the repression of SER3. This gene is repressed by a transcription interference mechanism involving the transcription of an adjacent intergenic region, SRG1, that leads to the production of a noncoding RNA (ncRNA). We find that Spt2 and Spt6 are required for the repression of SER3 by SRG1 transcription. Intriguingly, we demonstrate that these effects are not mediated through modulations of the SRG1 transcription rate. Instead, we show that the SRG1 region overlapping the SER3 promoter is occluded by randomly positioned nucleosomes that are deposited behind RNAP II transcribing SRG1 and that their deposition is dependent on the presence of Spt2. Our data indicate that Spt2 is required for the major chromatin deposition pathway that uses old histones to refold nucleosomes in the wake of RNAP II at the SRG1-SER3 locus. Altogether, these observations suggest a new mechanism of repression by ncRNA transcription involving a repressive nucleosomal structure produced by an Spt2-dependent pathway following RNAP II passage.
机译:Spt2是染色质成分,在转录和转录后调控中起作用。最近,我们发现Spt2与RNA聚合酶II(RNAP II)一起旅行,参与伸长,并在与此过程相关的染色质调节中起重要作用。在这项工作中,我们将剖析Spt2在抑制SER3中的功能。该基因被转录干扰机制所抑制,该机制涉及相邻基因间区域SRG1的转录,导致产生非编码RNA(ncRNA)。我们发现Srp2和Spt6是SRG1转录抑制SER3所必需的。有趣的是,我们证明了这些作用不是通过SRG1转录速率的调节介导的。相反,我们显示出与SER3启动子重叠的SRG1区被沉积在转录SRG1的RNAP II后的随机定位的核小体封闭,并且它们的沉积取决于Spt2的存在。我们的数据表明Spt2是主要染色质沉积途径所必需的,该途径使用旧的组蛋白在SRG1-SER3基因座处的RNAP II后重折叠核小体。总而言之,这些观察结果表明ncRNA转录抑制了一种新的机制,该机制涉及在RNAP II通过后由Spt2依赖性途径产生的抑制性核小体结构。

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