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SEASTAR: systematic evaluation of alternative transcription start sites in RNA

机译:SEASTAR:系统评估RNA中其他转录起始位点

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摘要

Alternative first exons diversify the transcriptomes of eukaryotes by producing variants of the 5′ Untranslated Regions (5′UTRs) and N-terminal coding sequences. Accurate transcriptome-wide detection of alternative first exons typically requires specialized experimental approaches that are designed to identify the 5′ ends of transcripts. We developed a computational pipeline SEASTAR that identifies first exons from RNA-seq data alone then quantifies and compares alternative first exon usage across multiple biological conditions. The exons inferred by SEASTAR coincide with transcription start sites identified directly by CAGE experiments and bear epigenetic hallmarks of active promoters. To determine if differential usage of alternative first exons can yield insights into the mechanism controlling gene expression, we applied SEASTAR to an RNA-seq dataset that tracked the reprogramming of mouse fibroblasts into induced pluripotent stem cells. We observed dynamic temporal changes in the usage of alternative first exons, along with correlated changes in transcription factor expression. Using a combined sequence motif and gene set enrichment analysis we identified N-Myc as a regulator of alternative first exon usage in the pluripotent state. Our results demonstrate that SEASTAR can leverage the available RNA-seq data to gain insights into the control of gene expression and alternative transcript variation in eukaryotic transcriptomes.
机译:备选的第一外显子通过产生5'非翻译区(5'UTR)和N-末端编码序列的变体使真核生物的转录组多样化。准确地在转录组范围内检测替代的第一个外显子通常需要专门的实验方法,这些方法旨在识别转录物的5'末端。我们开发了一条计算管道SEASTAR,该SEASTAR仅从RNA-seq数据中识别出第一外显子,然后量化并比较了多种生物学条件下第一外显子的替代用途。 SEASTAR推断的外显子与CAGE实验直接鉴定的转录起始位点相符,并带有活性启动子的表观遗传学标记。为了确定是否可以交替使用替代的第一个外显子来深入了解控制基因表达的机制,我们将SEASTAR应用于RNA-seq数据集,该数据集追踪了小鼠成纤维细胞重编程为诱导性多能干细胞的过程。我们观察到替代第一外显子的使用中的动态时间变化,以及转录因子表达的相关变化。使用组合的序列基序和基因集富集分析,我们确定了N-Myc在多能态中是替代性第一外显子使用的调节剂。我们的结果表明,SEASTAR可以利用现有的RNA-seq数据来深入了解真核转录组中基因表达的控制和替代转录变异。

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