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Rev-erbα dynamically modulates chromatin looping to control circadian gene transcription.

Citation
Kim, Y. H., et al. “Rev-Erbα Dynamically Modulates Chromatin Looping To Control Circadian Gene Transcription.”. Science (New York, N.y.), pp. 1274-1277.
Center University of Pennsylvania
Author Yong Hoon Kim, Sajid A Marhon, Yuxiang Zhang, David J Steger, Kyoung-Jae Won, Mitchell A Lazar
Abstract

Mammalian physiology exhibits 24-hour cyclicity due to circadian rhythms of gene expression controlled by transcription factors that constitute molecular clocks. Core clock transcription factors bind to the genome at enhancer sequences to regulate circadian gene expression, but not all binding sites are equally functional. We found that in mice, circadian gene expression in the liver is controlled by rhythmic chromatin interactions between enhancers and promoters. Rev-erbα, a core repressive transcription factor of the clock, opposes functional loop formation between Rev-erbα-regulated enhancers and circadian target gene promoters by recruitment of the NCoR-HDAC3 co-repressor complex, histone deacetylation, and eviction of the elongation factor BRD4 and the looping factor MED1. Thus, a repressive arm of the molecular clock operates by rhythmically modulating chromatin loops to control circadian gene transcription.

Year of Publication
2018
Journal
Science (New York, N.Y.)
Volume
359
Issue
6381
Number of Pages
1274-1277
Date Published
12/2018
ISSN Number
1095-9203
DOI
10.1126/science.aao6891
Alternate Journal
Science
PMID
29439026
PMCID
PMC5995144
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