Ep300 sequestration to functionally distinct glucocorticoid receptor binding loci underlie rapid gene activation and repression

Author:

Portuguez Avital Sarusi1,Grbesa Ivana1ORCID,Tal Moran1,Deitch Rachel1,Raz Dana1,Kliker Limor1,Weismann Ran1,Schwartz Michal1,Loza Olga1,Cohen Leslie1,Marchenkov-Flam Libi1,Sung Myong-Hee2,Kaplan Tommy34ORCID,Hakim Ofir1ORCID

Affiliation:

1. The Mina and Everard Goodman Faculty of Life Sciences, Bar-Ilan University , Building 206, Ramat-Gan 5290002, Israel

2. Laboratory of Molecular Biology and Immunology, NIA, National Institutes of Health , Baltimore, MD 21224, USA

3. School of Computer Science and Engineering, The Hebrew University of Jerusalem , Jerusalem 91904, Israel

4. Faculty of Medicine, The Hebrew University of Jerusalem , Jerusalem 91121, Israel

Abstract

Abstract The rapid transcriptional response to the transcription factor, glucocorticoid receptor (GR), including gene activation or repression, is mediated by the spatial association of genes with multiple GR binding sites (GBSs) over large genomic distances. However, only a minority of the GBSs have independent GR-mediated activating capacity, and GBSs with independent repressive activity were rarely reported. To understand the positive and negative effects of GR we mapped the regulatory environment of its gene targets. We show that the chromatin interaction networks of GR-activated and repressed genes are spatially separated and vary in the features and configuration of their GBS and other non-GBS regulatory elements. The convergence of the KLF4 pathway in GR-activated domains and the STAT6 pathway in GR-repressed domains, impose opposite transcriptional effects to GR, independent of hormone application. Moreover, the ROR and Rev-erb transcription factors serve as positive and negative regulators, respectively, of GR-mediated gene activation. We found that the spatial crosstalk between GBSs and non-GBSs provides a physical platform for sequestering the Ep300 co-activator from non-GR regulatory loci in both GR-activated and -repressed gene compartments. While this allows rapid gene repression, Ep300 recruitment to GBSs is productive specifically in the activated compartments, thus providing the basis for gene induction.

Funder

Marie Curie Integration

Israel Science Foundation

United States - Israel Binational Science Foundation

Publisher

Oxford University Press (OUP)

Subject

Genetics

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