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首页> 外文期刊>Genome Biology >High-resolution transcription atlas of the mitotic cell cycle in budding yeast.
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High-resolution transcription atlas of the mitotic cell cycle in budding yeast.

机译:萌芽酵母中有丝分裂细胞周期的高分辨率转录图谱。

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摘要

Extensive transcription of non-coding RNAs has been detected in eukaryotic genomes and is thought to constitute an additional layer in the regulation of gene expression. Despite this role, their transcription through the cell cycle has not been studied; genome-wide approaches have only focused on protein-coding genes. To explore the complex transcriptome architecture underlying the budding yeast cell cycle, we used 8 bp tiling arrays to generate a 5 minute-resolution, strand-specific expression atlas of the whole genome. RESULTS: We discovered 523 antisense transcripts, of which 80 cycle or are located opposite periodically expressed mRNAs, 135 unannotated intergenic non-coding RNAs, of which 11 cycle, and 109 cell-cycle-regulated protein-coding genes that had not previously been shown to cycle. We detected periodic expression coupling of sense and antisense transcript pairs, including antisense transcripts opposite of key cell-cycle regulators, like FAR1 and TAF2. CONCLUSIONS: Our dataset presents the most comprehensive resource to date on gene expression during the budding yeast cell cycle. It reveals periodic expression of both protein-coding and non-coding RNA and profiles the expression of non-annotated RNAs throughout the cell cycle for the first time. This data enables hypothesis-driven mechanistic studies concerning the functions of non-coding RNAs.
机译:在真核基因组中已检测到非编码RNA的大量转录,并被认为构成了基因表达调控的另一层。尽管有这种作用,但尚未研究它们在细胞周期中的转录。全基因组方法仅集中于蛋白质编码基因。为了探索出芽酵母细胞周期背后的复杂转录组架构,我们使用了8 bp的切片阵列来生成5分钟分辨率的全基因组链特异性表达图谱。结果:我们发现了523个反义转录本,其中80个周期或位于相反的周期性表达的mRNA,135个未注释的基因间非编码RNA,其中11个周期以及109个细胞周期调节的蛋白质编码基因以前未显示循环。我们检测到有义和反义转录物对的周期性表达偶联,包括与关键细胞周期调节子(如FAR1和TAF2)相反的反义转录物。结论:我们的数据集提供了迄今为止在萌芽的酵母细胞周期中有关基因表达的最全面的资源。它揭示了蛋白质编码和非编码RNA的周期性表达,并首次在整个细胞周期内分析了非注释RNA的表达。该数据使有关非编码RNA功能的假设驱动的机理研究成为可能。

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