4.5 Article

Cycles in spatial and temporal chromosomal organization driven by the circadian clock

Journal

NATURE STRUCTURAL & MOLECULAR BIOLOGY
Volume 20, Issue 10, Pages 1206-+

Publisher

NATURE PUBLISHING GROUP
DOI: 10.1038/nsmb.2667

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Funding

  1. European Molecular Biology Organization (EMBO) [ALTF 411-2009]
  2. NIH [R01-GM081634, AG041504, AG033888, LM010235-01A1, 5T15LM007743]
  3. Sirtris Pharmaceuticals [SP-48984]
  4. National Science Foundation [IIS-0513376]

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Dynamic transitions in the epigenome have been associated with regulated patterns of nuclear organization. The accumulating evidence that chromatin remodeling is implicated in circadian function prompted us to explore whether the clock may control nuclear architecture. We applied the chromosome conformation capture on chip technology in mouse embryonic fibroblasts (MEFs) to demonstrate the presence of circadian long-range interactions using the clock-controlled Dbp gene as bait. The circadian genomic interactions with Dbp were highly specific and were absent in MEFs whose clock was disrupted by ablation of the Bmal1 gene (also called Arntl). We establish that the Dbp circadian interactome contains a wide variety of genes and clock-related DNA elements. These findings reveal a previously unappreciated circadian and clock-dependent shaping of the nuclear landscape.

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