Multiple enhancers, often separated by vast genomic distances, regulate key genes. However, how the folding of individual chromatin fibres enables cell-type-restricted multi-enhancer regulation remains unclear. Here, using acute protein degradation and time-resolved chromatin conformation capture in mantle cell lymphoma, we found that the B cell-lineage-determining factor EBF1 organizes multiple enhancers around sparsely distributed genes essential for B cell identity and oncogenesis. Time-resolved sub-diffraction optical tracing of more than 100,000 chromatin fibres further revealed diverse topological conformations that facilitate multi-enhancer interactions. Mechanistically, we discovered that enhancer positioning at local topological centres is required for promoter engagement, with EBF1 acting as a permeable barrier to loop-extruding cohesin at enhancers. Extending these findings to T cell leukaemia, we show that lineage-determining transcription factors such as EBF1 and TCF1 radially position enhancers within gene loci to enable multi-enhancer regulation of key oncogenes at the single-allele level.
Lineage-determining transcription factors constrain cohesin to drive multi-enhancer oncogene regulation.
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作者:Zhou Yeqiao, Jay Atishay, Burget Noah, Friedrich Tobias, Yoon Sora, Alsing Jessica, Nir Guy, Grosschedl Rudolf, Vahedi Golnaz, Faryabi Robert B
| 期刊: | Nature Cell Biology | 影响因子: | 19.100 |
| 时间: | 2026 | 起止号: | 2026 Jan;28(1):149-165 |
| doi: | 10.1038/s41556-025-01827-2 | ||
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