生物
胶质母细胞瘤
生态系统
建筑
计算生物学
进化生物学
生态学
遗传学
癌症研究
考古
历史
作者
Masashi Nomura,Avishay Spitzer,Kevin C. Johnson,Luciano Garofano,Djamel Nehar-Belaid,Noam Galili Darnell,Alissa Greenwald,Lillian Bussema,Young Taek Oh,Frederick S. Varn,Fulvio D’Angelo,Simon Gritsch,Kevin Anderson,Simona Migliozzi,L. Nicolas Gonzalez Castro,Tamrin ChowdhFury,Nicolas Robine,Catherine Reeves,Jong Bae Park,Anuja Lipsa
出处
期刊:Nature Genetics
[Nature Portfolio]
日期:2025-05-01
卷期号:57 (5): 1155-1167
被引量:69
标识
DOI:10.1038/s41588-025-02167-5
摘要
In isocitrate dehydrogenase wildtype glioblastoma (GBM), cellular heterogeneity across and within tumors may drive therapeutic resistance. Here we analyzed 121 primary and recurrent GBM samples from 59 patients using single-nucleus RNA sequencing and bulk tumor DNA sequencing to characterize GBM transcriptional heterogeneity. First, GBMs can be classified by their broad cellular composition, encompassing malignant and nonmalignant cell types. Second, in each cell type we describe the diversity of cellular states and their pathway activation, particularly an expanded set of malignant cell states, including glial progenitor cell-like, neuronal-like and cilia-like. Third, the remaining variation between GBMs highlights three baseline gene expression programs. These three layers of heterogeneity are interrelated and partially associated with specific genetic aberrations, thereby defining three stereotypic GBM ecosystems. This work provides an unparalleled view of the multilayered transcriptional architecture of GBM. How this architecture evolves during disease progression is addressed in the companion manuscript by Spitzer et al. Integrated single-cell transcriptomic and genetic characterization of 121 adult glioblastomas identifies heterogeneity at cell type, cell state and baseline expression program levels associated with specific mutations that form three stereotypical ecosystems.
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