High-resolution 4C reveals rapid p53-dependent chromatin reorganization of the CDKN1A locus in response to stress

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Abstract

A regulatory program involving hundreds of genes is coordinated by p53 to prevent carcinogenesis in response to stress. Given the importance of chromatin loops in gene regulation, we investigated whether DNA interactions participate in the p53 stress response. To shed light on this issue, we measured the binding dynamics of cohesin in response to stress. We reveal that cohesin is remodeled at specific loci during the stress response and that its binding within genes negatively correlates with transcription. At p53 target genes, stressinduced eviction of cohesin from gene bodies is concomitant to spatial reorganization of loci through the disruption of functional chromatin loops. These findings demonstrate that chromatin loops can be remodeled upon stress and contribute to the p53-driven stress response. Additionally, we also propose a mechanism whereby transcription-coupled eviction of cohesin from CDKN1A might act as a molecular switch to control spatial interactions between regulatory elements.

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Millau, J. F., Wijchers, P., & Gaudreau, L. (2016). High-resolution 4C reveals rapid p53-dependent chromatin reorganization of the CDKN1A locus in response to stress. PLoS ONE, 11(10). https://doi.org/10.1371/journal.pone.0163885

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