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Genome-Wide Analysis of Nascent Transcription in Saccharomyces cerevisiae

机译:酿酒酵母新生转录的全基因组分析

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摘要

The assessment of transcriptional regulation requires a genome-wide survey of active RNA polymerases. Thus, we combined the nuclear run-on assay, which labels and captures nascent transcripts, with high-throughput DNA sequencing to examine transcriptional activity in exponentially growing Saccharomyces cerevisiae. Sequence read data from these nuclear run-on libraries revealed that transcriptional regulation in yeast occurs not only at the level of RNA polymerase recruitment to promoters but also at postrecruitment steps. Nascent synthesis signals are strongly enriched at TSS throughout the yeast genome, particularly at histone loci. Nascent transcripts reveal antisense transcription for more than 300 genes, with the read data providing support for the activity of distinct promoters driving transcription in opposite directions rather than bidirectional transcription from single promoters. By monitoring total RNA in parallel, we found that transcriptional activity accounts for 80% of the variance in transcript abundance. We computed RNA stabilities from nascent and steady-state transcripts for each gene and found that the most stable and unstable transcripts encode proteins whose functional roles are consistent with these stabilities. We also surveyed transcriptional activity after heat shock and found that most, but not all, heat shock-inducible genes increase their abundance by increasing their RNA synthesis. In summary, this study provides a genome-wide view of RNA polymerase activity in yeast, identifies regulatory steps in the synthesis of transcripts, and analyzes transcript stabilities.
机译:转录调控的评估需要活性RNA聚合酶的全基因组调查。因此,我们将标记和捕获新生转录本的核运行试验与高通量DNA测序相结合,以检查指数生长的酿酒酵母中的转录活性。来自这些核运行库的序列读取数据表明,酵母中的转录调控不仅发生在将RNA聚合酶募集到启动子的水平,而且发生在招聘后的步骤。新生的合成信号在整个酵母基因组中,特别是在组蛋白基因座处,在TSS处高度富集。新生的转录本揭示了300多个基因的反义转录,读取的数据为不同启动子以相反方向驱动转录而不是从单个启动子进行双向转录提供了支持。通过并行监测总RNA,我们发现转录活性占转录本丰度变化的80%。我们从每个基因的新生和稳态转录本计算出RNA的稳定性,发现最稳定和不稳定的转录本编码的蛋白质的功能作用与这些稳定性一致。我们还调查了热激后的转录活性,发现大多数(但不是全部)热激诱导型基因通过增加其RNA合成来增加其丰度。总而言之,这项研究提供了酵母中RNA聚合酶活性的全基因组视图,确定了转录本合成中的调控步骤,并分析了转录本的稳定性。

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