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Binding domain mutations provide insight into CTCF's relationship with chromatin and its contribution to gene regulation (RNA-seq, exit from pluripotency)

GSE277846 Mus musculus Expression profiling by high throughput sequencing 16 samples 2025/02/20 GPL24247
Summary
Here we used a series of CTCF mutations to explore CTCF’s relationship with chromatin and its contribution to gene regulation. CTCF’s impact depends on the genomic context of bound sites and the unique binding properties of WT and mutant CTCF proteins. Specifically, CTCF’s signal strength is linked to changes in accessibility, and the ability to block cohesin is linked to its binding stability. Multivariate modelling reveals that both CTCF and accessibility contribute independently to cohesin binding and insulation, however CTCF signal strength has a stronger effect. CTCF and chromatin have a bidirectional relationship such that at CTCF sites, accessibility is reduced in a cohesin-dependent, mutant specific fashion. In addition, each mutant alters TF binding and accessibility in an indirect manner, changes which impart the most influence on rewiring transcriptional networks and the cell’s ability to differentiate. Collectively, the mutant perturbations provide a rich resource for determining CTCF’s site-specific effects.
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NCBI GEO page ↗ Paper (PMID 40118069) ↗ {# Names what the click gives you. "Open in finder" meant nothing to a visitor who arrived from a search engine and has never seen the tool. #} Find more mouse RNA-seq datasets →
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