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首页> 外文期刊>Nucleic acids research >Transcription start site analysis reveals widespread divergent transcription in D. melanogaster and core promoter-encoded enhancer activities
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Transcription start site analysis reveals widespread divergent transcription in D. melanogaster and core promoter-encoded enhancer activities

机译:转录起始位点分析揭示了D. melanogaster中广泛的不同转录和核心启动子编码的增强子活性

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Mammalian gene promoters and enhancers share many properties. They are composed of a unified promoter architecture of divergent transcripton initiation and gene promoters may exhibit enhancer function. However, it is currently unclear how expression strength of a regulatory element relates to its enhancer strength and if the unifying architecture is conserved across Metazoa. Here we investigate the transcription initiation landscape and its associated RNA decay in Drosophila melanogaster. We find that the majority of active gene-distal enhancers and a considerable fraction of gene promoters are divergently transcribed. We observe quantitative relationships between enhancer potential, expression level and core promoter strength, providing an explanation for indirectly related histone modifications that are reflecting expression levels. Lowly abundant unstable RNAs initiated from weak core promoters are key characteristics of gene-distal developmental enhancers, while the housekeeping enhancer strengths of gene promoters reflect their expression strengths. The seemingly separable layer of regulation by gene promoters with housekeeping enhancer potential is also indicated by chromatin interaction data. Our results suggest a unified promoter architecture of many D. melanogaster regulatory elements, that is universal across Metazoa, whose regulatory functions seem to be related to their core promoter elements.
机译:哺乳动物基因启动子和增强子具有许多特性。它们由发散转录子起始的统一启动子结构组成,基因启动子可表现出增强子功能。然而,目前尚不清楚调节元件的表达强度如何与其增强子强度相关,以及统一结构在后生动物中是否保守。在这里,我们调查果蝇黑腹果蝇的转录起始态及其相关的RNA衰变。我们发现大多数活性基因远距离增强子和相当一部分基因启动子被不同地转录。我们观察到增强子电位,表达水平和核心启动子强度之间的定量关系,为反映表达水平的间接相关的组蛋白修饰提供了解释。由弱核心启动子启动的低丰度不稳定RNA是基因远端发育增强子的关键特征,而基因启动子的管家增强子强度反映了它们的表达强度。染色质相互作用数据也表明了具有看家增强子潜能的基因启动子似乎可分离的调节层。我们的结果表明,许多D. melanogaster调控元件具有统一的启动子结构,这在后生动物中普遍存在,其调控功能似乎与其核心启动子元件有关。

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