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Widespread Bidirectional Promoters Are The Major Source Of Cryptic Transcripts In Yeast

机译:广泛的双向启动子是酵母中隐秘转录本的主要来源

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Pervasive and hidden transcription is widespread in eukaryotes, but its global level, the mechanisms from which it originates and its functional significance are unclear. Cryptic unstable transcripts (CUTs) were recently described as a principal class of RNA polymerase II transcripts in Saccharomyces cerevisiae. These transcripts are targeted for degradation immediately after synthesis by the action of the Nrdl-exosome-TRAMP complexes. Although CUT degradation mechanisms have been analysed in detail, the genome-wide distribution at the nucleotide resolution and the prevalence of CUTs are unknown. Here we report the first high-resolution genomic map of CUTs in yeast, revealing a class of potentially functional CUTs and the intrinsic bidirectional nature of eukaryotic promoters. An RNA fraction highly enriched in CUTs was analysed by a 3' Long-SAGE (serial analysis of gene expression) approach adapted to deep sequencing. The resulting detailed genomic map of CUTs revealed that they derive from extremely widespread and very well defined transcription units and do not result from unspecific transcriptional noise. Moreover, the transcription of CUTs predominantly arises within nucleosome-free regions, most of which correspond to promoter regions of bona fide genes. Some of the CUTs start upstream from messenger RNAs and overlap their 5' end. Our study of glycolysis genes, as well as recent results from the literature, indicate that such concurrent transcription is potentially associated with regulatory mechanisms. Our data reveal numerous new CUTs with such a potential regulatory role. However, most of the identified CUTs corresponded to transcripts divergent from the promoter regions of genes, indicating that they represent by-products of divergent transcription occurring at many and possibly most promoters. Eukaryotic promoter regions are thus intrinsically bidirectional, a fundamental property that escaped previous analyses because in most cases divergent transcription generates short-lived unstable transcripts present at very low steady-state levels.
机译:普遍的和隐藏的转录在真核生物中很普遍,但是它的全球水平,它的起源机制和功能意义尚不清楚。最近,在啤酒酵母中,隐性不稳定转录本(CUT)被描述为RNA聚合酶II转录本的主要类别。这些转录物在合成后立即通过Nrdl-外来体-TRAMP复合物的作用被降解。尽管已经详细分析了CUT的降解机制,但尚不清楚核苷酸分辨率下的全基因组分布和CUT的普遍性。在这里,我们报告了酵母中CUT的第一个高分辨率基因组图谱,揭示了一类潜在的功能性CUT和真核启动子的内在双向特性。通过适用于深度测序的3'Long-SAGE(基因表达的序列分析)方法分析了富含CUT的RNA片段。 CUTs产生的详细基因组图谱表明,它们来自极为广泛且定义明确的转录单位,而不是源自非特异性转录噪声。此外,CUT的转录主要出现在无核小体的区域内,其中大部分对应于真正基因的启动子区域。一些CUT从信使RNA的上游开始,并重叠其5'末端。我们对糖酵解基因的研究以及来自文献的最新结果表明,这种并发转录可能与调节机制有关。我们的数据揭示了许多具有潜在监管作用的新型CUT。但是,大多数已鉴定的CUT对应于与基因启动子区域不同的转录本,表明它们代表了在许多甚至大多数启动子上发生的不同转录的副产物。因此,真核启动子区域本质上是双向的,这是逃避先前分析的基本特性,因为在大多数情况下,发散转录会产生以非常低的稳态水平存在的短暂的不稳定转录本。

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