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Pervasive RNA Binding Protein Enrichment on TAD Boundaries Regulates TAD Organization [RNA-seq]

GSE277220 Homo sapiens Expression profiling by high throughput sequencing 4 samples Submitted 2025/02/12 Platform GPL20795
Summary
Mammalian genome is hierarchically organized by CTCF and cohesin through loop extrusion mechanism to facilitate the organization of topologically associating domains (TADs). Mounting evidence suggests additional factors/mechanisms exist to orchestrate TAD formation and maintenance. In this study, we investigate the potential role of RNA binding proteins (RBPs) in TAD organization. By integrated analyses of global RBP binding and 3D genome mapping profiles from both K562 and HepG2 cells, our study unveils the prevalent enrichment of RBPs on TAD boundaries and define boundary associated RBPs (baRBPs). We found that baRBP binding is correlated with enhanced TAD insulation strength and in a CTCF independent manner. Moreover, baRBP binding is associated with nascent promoter transcription. Additional experimental testing was performed using RBFox2 as a paradigm. Knockdown of RBFox2 in K562 cells causes moderate TAD reorganization. Moreover, RBFox2 enrichment on TAD boundaries is a conserved phenomenon in C2C12 myoblast (MB) cells. RBFox2 is down-regulated and its bound boundaries are remodeled during MB differentiation into myotubes (MTs). Finally, transcriptional inhibition indeed decreases RBFox2 binding and disrupts TAD boundary insulation. Altogether, our findings demonstrate that RBPs can play active role in modulating TAD organization through co-transcriptional association and synergistic action with nascent promoter transcripts.
Published in
Pervasive RNA-binding protein enrichment on TAD boundaries regulates TAD organization
Sun Q, Zhou Q, Qiao Y et al. · Nucleic acids research 2025 · PMID 39777468 · doi:10.1093/nar/gkae1271
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Also filed as BioProject PRJNA1161385 and SRA study SRP532798. Searching any of these in the dataset finder brings you back here.

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