Synergistic insulation of regulatory domains by developmental genes and clusters of CTCF sites
Ealo, T.; Sanchez-Gaya, V.; Respuela, P.; Munoz-San Martin, M.; Martin-Batista, E.; Haro, E.; Rada-Iglesias, A.
Show abstract
The specificity of gene expression during development requires the insulation of regulatory domains to avoid inappropriate enhancer-gene interactions. In vertebrates, this insulator function is mostly attributed to clusters of CTCF sites located at topologically associating domain (TAD) boundaries. However, TAD boundaries allow a certain level of physical crosstalk across regulatory domains, which is at odds with the highly specific and precise expression of developmental genes. Here we show that developmental genes and nearby clusters of CTCF sites synergistically foster the robust insulation of regulatory domains. Firstly, we found that the TADs containing developmental genes have distinctive features, including the sequential organization of developmental genes and CTCF clusters near TAD boundaries. Most importantly, by genetically dissecting representative loci in mouse embryonic stem cells, we showed that developmental genes and CTCF sites synergistically strengthened the insulation capacity of nearby boundaries through different mechanisms. Namely, while CTCF sites prevent undesirable enhancer-gene contacts (i.e. physical insulation), developmental genes preferentially contribute to regulatory insulation through non-structural mechanisms involving promoter competition rather than enhancer blocking. Overall, our work provides important insights into the specificity of gene regulation, which in turn might help interpreting the pathological consequences of certain structural variants.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- The chromatin, topological and regulatory properties of pluripotency-associated poised enhancers are conserved in vivo 98%
- Enhancer-associated H3K4 methylation safeguards in vitro germlinecompetence 98%
- ATRX promotes heterochromatin formation to protect cells from G-quadruplex DNA-mediated stress 97%
Similar papers in this journal
- MLL3/MLL4 methyltransferase activities control early embryonic development and embryonic stem cell differentiation in a lineage-selective manner 97%
- Systematic Epigenome Editing Captures the Context-dependent Instructive Function of Chromatin Modifications 96%
- In vivo dissection of a clustered-CTCF domain boundary reveals developmental principles of regulatory insulation 96%
Similar papers in this journal
- INO80 promotes H2A.Z occupancy to regulate 1 cell fate transition in pluripotent stem cells 96%
- Recruitment of Homodimeric Proneural Factors by Conserved CAT-CAT E-Boxes Drives Major Epigenetic Reconfiguration in Cortical Neurogenesis 96%
- SETDB1 Fuels the Lung Cancer Phenotype by Modulating Epigenome, 3D Genome Organization and Chromatin Mechanical Properties 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.