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March 12, 2026Nucleic Acids Research0 citationsOpen Access

3D-super-enhancers are condensate-associated cis -regulatory communities

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JLJie LvKMKelsey A. MaherLDLi Dong

Key Points

  • The aim is to identify and characterize 3D-super-enhancers and their roles in gene regulation through transcriptional condensates.
  • Developed an algorithm named BOUQUET to integrate genome topology and chromatin occupancy data.
  • Used graph theory to associate cis-regulatory elements with target genes.
  • Conducted microscopy analyses to observe co-localization of genes within co-activator puncta.
  • Identified a small subset of 3D-super-enhancers that are protein-rich and associated with cell identity genes.
  • Found quantitative correlations between community protein accumulation and gene expression phenotypes.
  • Demonstrated co-localization of genes within 3D-super-enhancers inside single co-activator condensates.

Abstract

Transcription proteins are concentrated at nuclear transcriptional condensates. These condensates contain cis-regulatory elements (CREs), including enhancers and promoters, that are thought to regulate genes in the same condensate. The roles of condensates are of great current interest, but research into their function is limited by an inability to comprehensively identify their associated CREs. Here, we present a conceptual framework and algorithm, BOUQUET, for integrating genome topology, chromatin occupancy, and graph theory to associate CREs and transcription protein machinery with target genes and identify exceptionally protein-rich communities that interact with condensates. BOUQUET uncovers surprising quantitative correlations between community protein accumulation and gene expression phenotypes by combining accurate CRE-gene assignment with co-activator binding profiles. A small subset of communities, which we call "3D-super-enhancers (3D-SEs)," is exceptionally protein-rich. BOUQUET-predicted 3D-SEs are comparable in number to co-activator nuclear puncta, and all genes known to interact with co-activator condensates in embryonic stem cells are within 3D-SEs. 3D-SEs are enriched for association with cell identity genes across mammalian tissues. Microscopy analyses show frequent co-localization and co-expression of genes from the same 3D-SE within a single co-activator punctum, suggesting 3D-SE components interact with co-activator condensates. Thus, 3D-SEs correspond to co-activator puncta, and our approaches nominate the CREs and genes within them as being condensate-associated.

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Cite This Study

Lv et al. (2026) studied this question.

synapsesocial.com/papers/69b2588496eeacc4fcec834ehttps://doi.org/10.1093/nar/gkag191
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