GEO series
Evidence for coordinate epigenomic roles for CTCF and histone H3.3 in K27M diffuse midline gliomas [CUT&RUN]
GSE285841
Homo sapiens
Genome binding/occupancy profiling by high throughput sequencing
12 samples
2026/03/24
GPL24676
Summary
In this study we identified and characterized key chromatin domains in diffuse midline glioma cells, looking at well known types of domains including super enhancers, bivalent domains, and H3K4me3 broad domains as well as the chromatin states identified by chromHMM. In this context, we identified a key role for CTCF in maintaining H3K27me3 levels at bivalent domains, and demonstrated that the H3.3K27M mutation affects both CTCF localization and H3K27me3 at these regions. We further characterized a functional interaction between H3.3 and CTCF in diffuse midline glioma cells, finding that the H3.3K27M mutation affects CTCF localization, leading to an expansion of CTCF-bound domains including a large number of ectopic CTCF binding sites found in H3.3K27M but not WT cells. We also found that CTCF knockdown increases cell viability in H3.3K27M cells, and affected the expression of a set of genes highly enriched in active chromatin states and likely important for some of the oncogenic properties of these cells. Together, our results identified complex chromatin domains defined by combinations of epigenetic modifications, which may have implications for designing therapy regimens that include multiple epigenetic drugs to more effectively target the numerous changes in chromatin observed in glioma cells with H3.3K27M. We also defined an important role for the structural protein and transcription factor CTCF in influencing the epigenetic landscape and transcriptome in the context of the H3.3K27M mutation in diffuse midline glioma cells.
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Paper (PMID 42070015) ↗
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