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ATP-dependent chromatin remodeling shapes the long noncoding RNA landscape

机译:ATP依赖的染色质重塑塑造了长期的非编码RNA格局

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摘要

Long noncoding RNAs (lncRNAs) are pervasively transcribed across eukaryotic genomes, but functions of only a very small subset of them have been demonstrated. This has led to active debate about whether many of them have any biological functions. In addition, very few regulators of lncRNAs have been identified. We developed a novel genetic screen using reconstituted RNAi in Saccharomyces cerevisiae and systematically identified a large number of putative lncRNA repressors. Among them, we found that four highly conserved chromatin remodeling factors are global lncRNA repressors that play major roles in shaping the eukaryotic lncRNA transcriptome. Importantly, we identified >250 antisense lncRNAs (CRRATs [chromatin remodeling-repressed antisense transcripts]) whose repression by these chromatin remodeling factors is required for the maintenance of normal levels of overlapping mRNA transcripts. Our results strongly suggest that regulation of mRNA through repression of antisense lncRNAs is far more broadly used than previously appreciated.
机译:长的非编码RNA(lncRNA)在真核生物基因组中普遍转录,但已证明它们中只有很小一部分的功能。这引起了关于其中许多是否具有生物学功能的激烈争论。另外,几乎没有鉴定到lncRNA的调节子。我们开发了一种在酿酒酵母中使用重组RNAi的新型遗传筛选技术,并系统地鉴定了许多推定的lncRNA阻遏物。其中,我们发现四个高度保守的染色质重塑因子是全局lncRNA阻遏物,它们在塑造真核lncRNA转录组中起主要作用。重要的是,我们鉴定了> 250个反义lncRNA(CRRATs [染色质重塑抑制的反义转录物]),它们需要被这些染色质重塑因子抑制才能维持正常水平的重叠mRNA转录物。我们的结果强烈表明,通过反义lncRNA的抑制来调节mRNA的用途远比以前认识到的更为广泛。

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