Unknown

Dataset Information

0

BAF Complex Maintains Glioma Stem Cells in Pediatric H3K27M Glioma.


ABSTRACT: Diffuse midline gliomas are uniformly fatal pediatric central nervous system cancers that are refractory to standard-of-care therapeutic modalities. The primary genetic drivers are a set of recurrent amino acid substitutions in genes encoding histone H3 (H3K27M), which are currently undruggable. These H3K27M oncohistones perturb normal chromatin architecture, resulting in an aberrant epigenetic landscape. To interrogate for epigenetic dependencies, we performed a CRISPR screen and show that patient-derived H3K27M-glioma neurospheres are dependent on core components of the mammalian BAF (SWI/SNF) chromatin remodeling complex. The BAF complex maintains glioma stem cells in a cycling, oligodendrocyte precursor cell-like state, in which genetic perturbation of the BAF catalytic subunit SMARCA4 (BRG1), as well as pharmacologic suppression, opposes proliferation, promotes progression of differentiation along the astrocytic lineage, and improves overall survival of patient-derived xenograft models. In summary, we demonstrate that therapeutic inhibition of the BAF complex has translational potential for children with H3K27M gliomas.

Significance

Epigenetic dysregulation is at the core of H3K27M-glioma tumorigenesis. Here, we identify the BRG1-BAF complex as a critical regulator of enhancer and transcription factor landscapes, which maintain H3K27M glioma in their progenitor state, precluding glial differentiation, and establish pharmacologic targeting of the BAF complex as a novel treatment strategy for pediatric H3K27M glioma. See related commentary by Beytagh and Weiss, p. 2730. See related article by Mo et al., p. 2906.

SUBMITTER: Panditharatna E 

PROVIDER: S-EPMC9716260 | biostudies-literature | 2022 Dec

REPOSITORIES: biostudies-literature

altmetric image

Publications

BAF Complex Maintains Glioma Stem Cells in Pediatric H3K27M Glioma.

Panditharatna Eshini E   Marques Joana G JG   Wang Tingjian T   Trissal Maria C MC   Liu Ilon I   Jiang Li L   Beck Alexander A   Groves Andrew A   Dharia Neekesh V NV   Li Deyao D   Hoffman Samantha E SE   Kugener Guillaume G   Shaw McKenzie L ML   Mire Hafsa M HM   Hack Olivia A OA   Dempster Joshua M JM   Lareau Caleb C   Dai Lingling L   Sigua Logan H LH   Quezada Michael A MA   Stanton Ann-Catherine J AJ   Wyatt Meghan M   Kalani Zohra Z   Goodale Amy A   Vazquez Francisca F   Piccioni Federica F   Doench John G JG   Root David E DE   Anastas Jamie N JN   Jones Kristen L KL   Conway Amy Saur AS   Stopka Sylwia S   Regan Michael S MS   Liang Yu Y   Seo Hyuk-Soo HS   Song Kijun K   Bashyal Puspalata P   Jerome William P WP   Mathewson Nathan D ND   Dhe-Paganon Sirano S   Suvà Mario L ML   Carcaboso Angel M AM   Lavarino Cinzia C   Mora Jaume J   Nguyen Quang-De QD   Ligon Keith L KL   Shi Yang Y   Agnihotri Sameer S   Agar Nathalie Y R NYR   Stegmaier Kimberly K   Stiles Charles D CD   Monje Michelle M   Golub Todd R TR   Qi Jun J   Filbin Mariella G MG  

Cancer discovery 20221201 12


Diffuse midline gliomas are uniformly fatal pediatric central nervous system cancers that are refractory to standard-of-care therapeutic modalities. The primary genetic drivers are a set of recurrent amino acid substitutions in genes encoding histone H3 (H3K27M), which are currently undruggable. These H3K27M oncohistones perturb normal chromatin architecture, resulting in an aberrant epigenetic landscape. To interrogate for epigenetic dependencies, we performed a CRISPR screen and show that pati  ...[more]

Similar Datasets

2022-09-15 | GSE212786 | GEO
2022-09-15 | GSE212700 | GEO
2022-09-15 | GSE212782 | GEO
2022-09-15 | GSE212718 | GEO
2022-09-15 | GSE212679 | GEO
| PRJNA877246 | ENA
| PRJNA876906 | ENA
| PRJNA876732 | ENA
| PRJNA876941 | ENA
| PRJNA877247 | ENA