BAF complex maintains glioma stem cells in pediatric H3K27M-glioma [scRNA-seq]
Source: NCBI BioProject (ID PRJNA877247)

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Project name: BAF complex maintains glioma stem cells in pediatric H3K27M-glioma [scRNA-seq]
Description: Diffuse midline gliomas (DMGs) are uniformly fatal pediatric central nervous system cancers, refractory to standard of care therapeutic modalities. The primary genetic drivers are a set of recurrent amino acid substitutions in genes encoding histone H3 (H3.3 and H3.1, K27M), which are currently undruggable. These H3K27M oncohistones perturb normal chromatin architecture, resulting in an aberrant epigenetic landscape, which we interrogated here for epigenetic dependencies using a CRISPR screen in patient-derived H3K27M-glioma neurospheres. We show that H3K27M-glioma cells are dependent on core components of the mammalian SWI/SNF (BAF) chromatin remodeling complex for maintaining glioma stem cells in a cycling, oligodendrocyte precursor cell (OPC)-like state. Genetic perturbation of the BAF catalytic subunit SMARCA4 (BRG1), as well as pharmacological suppression opposes proliferation, promotes differentiation, and improves overall survival of patient-derived xenograft (PDX) models. In summary, we demonstrate that therapeutic inhibition of BAF complex has translational potential for children with H3K27M-gliomas.Overall design: Gene expression profiling by single cell RNAseq of BT869 cells upon SMARCA4 knockout.
Data type: Transcriptome or Gene expression
Sample scope: Multiisolate
Relevance: Medical
Organization: Dana-Farber Cancer Institute
Literatures
  1. PMID: 36305736
Last updated: 2022-09-06
Statistics: 1728 samples; 1728 experiments; 1728 runs