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      Genome-wide profiling of the core clock protein BMAL1 targets reveals a strict relationship with metabolism.

      Molecular and Cellular Biology
      ARNTL Transcription Factors, genetics, metabolism, Animals, Biological Clocks, physiology, Cell Line, Chromatin Immunoprecipitation, Circadian Rhythm, Computational Biology, methods, Energy Metabolism, Gene Expression Profiling, Gene Expression Regulation, Genome, High-Throughput Screening Assays, Male, Mice, Mice, Inbred BALB C, Mice, Knockout, Microarray Analysis

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          Abstract

          Circadian rhythms are common to most organisms and govern much of homeostasis and physiology. Since a significant fraction of the mammalian genome is controlled by the clock machinery, understanding the genome-wide signaling and epigenetic basis of circadian gene expression is essential. BMAL1 is a critical circadian transcription factor that regulates genes via E-box elements in their promoters. We used multiple high-throughput approaches, including chromatin immunoprecipitation-based systematic analyses and DNA microarrays combined with bioinformatics, to generate genome-wide profiles of BMAL1 target genes. We reveal that, in addition to E-boxes, the CCAATG element contributes to elicit robust circadian expression. BMAL1 occupancy is found in more than 150 sites, including all known clock genes. Importantly, a significant proportion of BMAL1 targets include genes that encode central regulators of metabolic processes. The database generated in this study constitutes a useful resource to decipher the network of circadian gene control and its intimate links with several fundamental physiological functions.

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