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The phenylalanine-and-glycine repeats of NUP98 oncofusions form condensates that selectively partition transcriptional coactivators

GSE280397 Mus musculus Genome binding/occupancy profiling by high throughput sequencing 8 samples Submitted 2025/01/30 Platform GPL21626
Summary
Recurrent cancer-causing fusions of NUP98 produce higher-order assemblies known as condensates. How NUP98 oncofusion-driven condensates activate oncogenes remainspoorly understood. Here, we investigate NUP98-PHF23, a leukemogenic chimera of the FG-repeat region of NUP98 and the H3K4me3-binding PHD finger of PHF23. Our integrated analyses using mutagenesis, proteomics, genomics, and condensate reconstitution demonstrate that the PHD finger targets condensates to H3K4me3-demarcated developmental genes and the FG repeats determine condensate composition and gene activation. The FG repeats are necessary to form condensates that partition a specific set of transcriptional regulators, notably the MLL family of H3K4 methylation-writing enzymes and BRD4. The FG repeats are sufficient, when tethered to the genome, to partition these transcriptional regulators and activate genes. NUP98-PHF23 assembles chromatin-bound condensates that partition multiple positive regulators, initiating a feed-forward loop of reading-and-writing active histone modifications. This network of interactions enforces an open chromatin landscape at proto-oncogenes, thereby driving cancerous transcriptional programs.
Published in
The phenylalanine-and-glycine repeats of NUP98 oncofusions form condensates that selectively partition transcriptional coactivators
Ahn JH, Guo Y, Lyons H et al. · Molecular cell 2025 · PMID 39922194 · doi:10.1016/j.molcel.2024.12.026
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Also filed as BioProject PRJNA1178313 and SRA study SRP541452. Searching any of these in the dataset finder brings you back here.

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