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Sustained MYB activity drives emergent enhancer activation and precise enhancer-promoter interactions [RNA-seq]

GSE296161 Mus musculus Expression profiling by high throughput sequencing 9 samples Submitted 2026/05/01 Platform GPL19057
Summary
Transcription factors (TFs) are key effectors of enhancer activity. MYB is a critical hematopoietic TF that is frequently dysregulated in cancer. Despite its well-established role, the exact mechanisms by which MYB influences enhancer function—and the specific stages of enhancer activation at which it operates—remain poorly understood. Using high resolution Micro-Capture-C, we show that upon MYB degradation, highly defined enhancer-promoter interactions at specific MYB binding sites are lost. Loss of these interactions, together with other hallmarks of enhancer activity—reduced H3 lysine-27 acetylation and enhancer RNA transcription—correlates with significant downregulation of target gene expression in leukemia, indicating that MYB mediates transcription activation via maintenance of enhancer function. When anchored to DNA within a gene desert region that is devoid of histone marks and active transcription, the MYB transactivation domain is sufficient and necessary for the nucleation of an enhancer-like region. This results in the activation of transcription from distal cryptic elements and the establishment of long-range chromatin interactions up to 400 kb away from the anchor point. Together, these results indicate that MYB activity alone is sufficient to induce long-range interactions and transcription, achieving this through highly precise enhancer-promoter crosstalk.
Published in
MYB activity drives emergent enhancer activation and enhancer-promoter interactions in acute lymphoblastic leukemia
Lau IJ, Bloye G, Smith AL et al. · Blood 2026 · PMID 41949410 · doi:10.1182/blood.2025030424
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Also filed as BioProject PRJNA1257938 and SRA study SRP582704. Searching any of these in the dataset finder brings you back here.

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