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High-fidelity promoter profiling reveals widespread alternative promoter usage and transposon-driven developmental gene expression

机译:高保真启动子分析揭示了广泛的替代启动子用法和转座子驱动的发育基因表达

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Many eukaryotic genes possess multiple alternative promoters with distinct expression specificities. Therefore, comprehensively annotating promoters and deciphering their individual regulatory dynamics is critical for gene expression profiling applications and for our understanding of regulatory complexity. We introduce RAMPAGE, a novel promoter activity profiling approach that combines extremely specific 5′-complete cDNA sequencing with an integrated data analysis workflow, to address the limitations of current techniques. RAMPAGE features a streamlined protocol for fast and easy generation of highly multiplexed sequencing libraries, offers very high transcription start site specificity, generates accurate and reproducible promoter expression measurements, and yields extensive transcript connectivity information through paired-end cDNA sequencing. We used RAMPAGE in a genome-wide study of promoter activity throughout 36 stages of the life cycle of Drosophila melanogaster, and describe here a comprehensive data set that represents the first available developmental time-course of promoter usage. We found that >40% of developmentally expressed genes have at least two promoters and that alternative promoters generally implement distinct regulatory programs. Transposable elements, long proposed to play a central role in the evolution of their host genomes through their ability to regulate gene expression, contribute at least 1300 promoters shaping the developmental transcriptome of D. melanogaster. Hundreds of these promoters drive the expression of annotated genes, and transposons often impart their own expression specificity upon the genes they regulate. These observations provide support for the theory that transposons may drive regulatory innovation through the distribution of stereotyped cis-regulatory modules throughout their host genomes.
机译:许多真核基因具有多个具有不同表达特异性的启动子。因此,对基因启动子进行全面注释并解读其各自的调控动态对于基因表达谱分析应用以及我们对调控复杂性的理解至关重要。我们介绍了RAMPAGE,这是一种新颖的启动子活性分析方法,将极其特异的5'-完全cDNA测序与集成的数据分析工作流程相结合,以解决当前技术的局限性。 RAMPAGE具有简化的协议,可快速轻松地生成高度多重的测序文库,提供非常高的转录起始位点特异性,生成准确且可重复的启动子表达测量值,并通过双末端cDNA测序产生大量的转录本连接信息。我们在果蝇整个生命周期的36个阶段的启动子活性的全基因组研究中使用了RAMPAGE,并在此描述了一个全面的数据集,该数据集代表了启动子使用的第一个可用的发展时间过程。我们发现,> 40%的发育表达基因具有至少两个启动子,而替代启动子通常执行不同的调控程序。长期以来,人们一直认为,转座因子通过调节基因表达的能力在其宿主基因组的进化中起着核心作用,它至少可贡献1300个启动子来塑造黑腹果蝇的转录组。数百个这些启动子驱动注释基因的表达,转座子通常对它们调控的基因赋予自己的表达特异性。这些观察结果为转座子可能通过在其宿主基因组中分布定型的顺式调控模块来推动调控创新的理论提供了支持。

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