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Long-range enhancer-controlled genes are hyper-sensitive to regulatory factor perturbations [High-throughput bulk RNA-seq].

GSE281752 Homo sapiens Expression profiling by high throughput sequencing 5 samples Submitted 2025/02/19 Platform GPL24676
Summary
Cell-type-specific gene activation is regulated by enhancers, sometimes located at large genomic distances from target gene promoters. Whether distal enhancers require specific factors to orchestrate gene regulation remains unclear. Here, we used enhancer distance-controlled reporter screens to find candidate factors. We depleted them and employed activity-by-contact predictions to genome-wide classify genes based on enhancer distance. Predicted distal enhancers typically control tissue-restricted genes and often are strong enhancers. We find cohesin, but also mediator, most specifically required for long-range activation, with cohesin repressing short-range gene activation and prioritizing distal over proximal HBB genes competing for shared enhancers. Long-range controlled genes are also most sensitive to perturbations of other regulatory proteins and to BET inhibitor JQ1, this being more a consequence of their distinct enhancer features than distance. Our work predicts that lengthening of intervening sequences can help limit the expression of target genes to specialized cells with optimal trans-factor environments.
Published in
Long-range enhancer-controlled genes are hypersensitive to regulatory factor perturbations
Tjalsma SJD, Rinzema NJ, Verstegen MJAM et al. · Cell genomics 2025 · PMID 40010352 · doi:10.1016/j.xgen.2025.100778
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Also filed as BioProject PRJNA1185644 and SRA study SRP544951. Searching any of these in the dataset finder brings you back here.

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