Integrated analysis of single-cell chromatin state and transcriptome identified common vulnerability despite glioblastoma heterogeneity Journal Article


Authors: Raviram, R.; Raman, A.; Preissl, S.; Ning, J.; Wu, S.; Koga, T.; Zhang, K.; Brennan, C. W.; Zhu, C.; Luebeck, J.; Van Deynze, K.; Han, J. Y.; Hou, X.; Ye, Z.; Mischel, A. K.; Li, Y. E.; Fang, R.; Baback, T.; Mugford, J.; Han, C. Z.; Glass, C. K.; Barr, C. L.; Mischel, P. S.; Bafna, V.; Escoubet, L.; Ren, B.; Chen, C. C.
Article Title: Integrated analysis of single-cell chromatin state and transcriptome identified common vulnerability despite glioblastoma heterogeneity
Abstract: In 2021, the World Health Organization reclassified glioblastoma, the most common form of adult brain cancer, into isocitrate dehydrogenase (IDH)-wild-type glioblastomas and grade IV IDH mutant (G4 IDHm) astrocytomas. For both tumor types, intratumoral heterogeneity is a key contributor to therapeutic failure. To better define this heterogeneity, genome-wide chromatin accessibility and transcription profiles of clinical samples of glioblastomas and G4 IDHm astrocytomas were analyzed at single-cell resolution. These profiles afforded resolution of intratumoral genetic heterogeneity, including delineation of cell-to-cell variations in distinct cell states, focal gene amplifications, as well as extrachromosomal circular DNAs. Despite differences in IDH mutation status and significant intratumoral heterogeneity, the profiled tumor cells shared a common chromatin structure defined by open regions enriched for nuclear factor 1 transcription factors (NFIA and NFIB). Silencing of NFIA or NFIB suppressed in vitro and in vivo growths of patient-derived glioblastomas and G4 IDHm astrocytoma models. These findings suggest that despite distinct genotypes and cell states, glioblastoma/G4 astrocytoma cells share dependency on core transcriptional programs, yielding an attractive platform for addressing therapeutic challenges associated with intratumoral heterogeneity.
Keywords: adult; genetics; mutation; brain tumor; brain neoplasms; metabolism; pathology; chromatin; glioblastoma; astrocytoma; transcriptome; isocitrate dehydrogenase; single cell; humans; human; amplicons; extrachromosomal dna
Journal Title: Proceedings of the National Academy of Sciences of the United States of America
Volume: 120
Issue: 20
ISSN: 0027-8424
Publisher: National Academy of Sciences  
Date Published: 2023-05-16
Start Page: e2210991120
Language: English
DOI: 10.1073/pnas.2210991120
PUBMED: 37155843
PROVIDER: scopus
PMCID: PMC10194019
DOI/URL:
Notes: Article -- Export Date: 1 June 2023 -- Source: Scopus
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