KMT2C and KMT2D amplify GRHL2-driven enhancer activation
Boileau, R. M.; Chen, K.; Blelloch, R.
Show abstract
The activation of cis-regulatory enhancers is essential for cell fate specification by driving cell type-specific gene expression. Differentiation models are widely used to study enhancer biology but the asynchronous and interdependent nature of gene regulatory changes during cell state transitions can complicate mechanistic studies. To overcome these limitations, here we develop a tamoxifen-gated system for acute enhancer activation in embryonic stem cells (ESCs) based on GRHL2, a pioneer transcription factor which naturally becomes expressed as naive ESCs differentiate into the formative ESC state. Using this system, we investigate the functional relationship between GRHL2 and the histone mono-methyltransferases KMT2C and KMT2D (KMT2C/D). GRHL2 readily binds its target sites independent of KMT2C/D. However, in the absence of KMT2C/D, there are dramatic reductions in H3K4me1/2, P300 recruitment, and H3K27ac deposition at these sites as well as diminished transcriptional activation. Still, strikingly, a basal level of active enhancer mark acquisition and transcriptional activation occurs. Consistent with these findings, during the naive to formative ESC differentiation, GRHL2 enhancer remodeling and target expression is also strongly but incompletely dependent on KMT2C/D. Together, these results define a functional co-activator relationship in which KMT2C/D act as important amplifiers of GRHL2-driven enhancer activation in ESCs and establish a rapid inducible system for dissecting the kinetics and enzymatic dependencies of pioneer transcription factor mediated enhancer remodeling.
Matching journals
The top 7 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Cis-regulatory architecture of human ESC-derived hypothalamic neuron differentiation aids in variant-to-gene mapping of relevant common complex traits 97%
- H3K36 Methylation - a Guardian of Epigenome Integrity 96%
- Intellectual disability-associated factor Zbtb11 cooperates with NRF-2/GABP to control mitochondrial function 96%
Similar papers in this journal
- PRC2 Promotes Canalisation during Endodermal Differentiation 96%
- Epigenome and transcriptome changes in KMT2D-related Kabuki syndrome Type 1 iPSCs, neuronal progenitors and cortical neurons 95%
- TFAP2 paralogs facilitate chromatin access for MITF at pigmentation genes but inhibit expression of cell-cell adhesion genes independently of MITF 94%
Similar papers in this journal
- Discovery and characterization of LNCSOX17 as an essential regulator in human endoderm formation 96%
- SMARCAD1 and TOPBP1 contribute to heterochromatin maintenance at the transition from the 2C-like to the pluripotent state 96%
- Epigenetic reprogramming by TET enzymes impacts co-transcriptional R-loops 96%
Similar papers in this journal
Similar papers in this journal
- Functional specialization of MITF, TFEB and TFE3 drives radically distinct adaptive gene expression programs in melanoma. 95%
- YAP1 is a key regulator of EWS::FLI1-dependent malignant transformation upon IGF-1 mediated reprogramming of bone mesenchymal stem cells 95%
- FOXA2 controls the anti-oxidant response in FH-deficient cells 95%
"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.