Gene Activation and repression by the glucocorticoid receptor are mediated by sequestering Ep300 and two modes of chromatin binding
Sarusi Portuguez, A.; Grbesa, I.; Tal, M.; Deitch, R.; Raz, D.; Weismann, R.; Schwartz, M.; Loza, O.; Sung, M.-H.; Kaplan, T.; Hakim, O.
Show abstract
The transcription factor glucocorticoid receptor (GR) is a key mediator of stress response and a broad range of physiological processes. How can GR rapidly activate the expression of some genes while repress others, remains an open question due to the challenge to associate GR binding sites (GBSs) to their distant gene targets. Mapping the full 3D scope of GR-responsive promoters using high-resolution 4C-seq unravelled spatial separation between chromatin interaction networks of GR-activated and repressed genes. Analysing GR binding sites and other regulatory loci in their functional 3D context revealed that GR sequesters the co-activator Ep300 from active non-GBS enhancers in both activated and repressed gene compartments. While this is sufficient for rapid gene repression, gene activation is countered by productive recruitment of Ep300 to GBS. Importantly, in GR-activated compartments Klf4 binding at non-GBS regulatory elements cluster in 3D with GBS and antagonizes GR activation. In addition, we revealed ROR and Rev-erb transcription factors as novel co-regulators for GR-mediated gene expression.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Gene-to-Gene Coordinated Regulation of Transcription and Alternative splicing by 3D Chromatin Remodeling upon NF-κB activation 96%
- Oncogenic YAP mediates changes in chromatin accessibility and activity that drive cell cycle gene expression and cell migration 95%
- Transcription factor RFX7 governs a tumor suppressor network in response to p53 and stress 95%
Similar papers in this journal
- β-actin dependent chromatin remodeling mediates compartment level changes in 3D genome architecture 96%
- Chondrogenic Enhancer Landscape of Limb and Axial Skeleton Development 94%
- Transcriptional Responses of Cancer Cells to Heat Shock-Inducing Stimuli Involve Amplification of Robust HSF1 Binding 94%
Similar papers in this journal
- Integrative multi-omics analyses reveal multi-modal FOXG1 functions acting on epigenetic processes and in concert with NEUROD1 to regulate synaptogenesis in the mouse hippocampus 95%
- Human transcription factor combinations mapped by footprinting with deaminase 94%
- False-Positive IRESes from Hoxa9 and other genes resulting from errors in mammalian 5' UTR annotations 94%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.