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Circadian Enhancers Coordinate Multiple Phases of Rhythmic Gene Transcription In Vivo

机译:昼夜节律的生物体内协调有节奏的基因转录的多个阶段。

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Mammalian transcriptomes display complex circadian rhythms with multiple phases of gene expression that cannot be accounted for by current models of the molecular clock. We have determined the underlying mechanisms by measuring nascent RNA transcription around the clock in mouse liver. Unbiased examination of enhancer RNAs (eRNAs) that cluster in specific circadian phases identified functional enhancers driven by distinct transcription factors (TFs). We further identify on a global scale the components of the TF cistromes that function to orchestrate circadian gene expression. Integrated genomic analyses also revealed mechanisms by which a single circadian factor controls opposing transcriptional phases. These findings shed light on the diversity and specificity of TF function in the generation of multiple phases of circadian gene transcription in a mammalian organ.
机译:哺乳动物的转录组显示复杂的昼夜节律,具有基因表达的多个阶段,这不能由当前的分子钟模型来解释。我们已经通过全天候测量小鼠肝脏中新生RNA转录来确定其潜在机制。对聚集在特定昼夜节律阶段的增强子RNA(eRNA)的公正检查确定了由独特转录因子(TF)驱动的功能增强子。我们进一步确定在全球范围内的TF cistroms的功能,以协调昼夜节律基因的表达。整合的基因组分析还揭示了单个昼夜节律因子控制相反转录阶段的机制。这些发现揭示了在哺乳动物器官中昼夜节律基因转录的多个阶段的产生中TF功能的多样性和特异性。

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