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PMID: 42236943 已发表 · ppublish 英语

Acquired genetic and cell-state changes in IDH-mutant glioma progression.

Nature ·第 655 卷 ·第 8124 期 ·2026-07-00

Johnson KC, Spitzer A, Varn FS, Nomura M, Garofano L, Chowdhury T, Lipsa A, Zhang L, Fernández EC, Barak T, Gulhan Ercan-Sencicek A, Peksen AB, Anderson KJ, Tesileanu CMS, Amin SB, Kocakavuk E, Zhao D, D'Angelo F, Migliozzi S, Bussema L, Gritsch S, Moon HE, Paek SH, Bielle F, Laurenge A, Di Stefano AL, Mathon B, Picca A, Sanson M, Hau AC, Hertel F, Grzyb K, Zhao Z, Wang Q, Jiang T, Miller JJ, Wakimoto H, Cahill DP, Moliterno J, Günel M, Hermes B, Sanai N, Golebiewska A, Niclou SP, Huse J, Alfred Yung WK, Lasorella A, Suvà ML, Iavarone A, Tirosh I, Verhaak RGW

摘要

Gliomas with mutant isocitrate dehydrogenase (IDH) are malignant brain tumours that typically arise in early to mid-adulthood and nearly always recur following treatment1,2. However, the genetic and cellular-state changes that drive IDH-mutant glioma progression under treatment remain incompletely understood. Here we integrated single-nucleus transcriptomic profiles, chromatin accessibility profiles and bulk DNA and RNA sequencing from 75 temporally separated gliomas across 35 patients comprising both the oligodendroglioma and astrocytoma IDH-mutant glioma tumour types. We show that malignant cell states transcriptionally resemble stages of normal glial-neuronal lineage development or a reactive mesenchymal-like state, mirroring states previously described in IDH wild-type glioblastoma3,4. Malignant cell states displayed distinct chromatin accessibility profiles that were comparable between both IDH-mutant glioma types. The abundance of less differentiated malignant cells increased with grade and with genetic alterations such as PDGFRA amplification. Longitudinal analysis highlighted two major malignant cell-state transition patterns. First, reduced lineage differentiation and increased proliferative malignant cells at recurrence were enriched in gliomas that acquired recurrence-associated genetic events. These included treatment-associated hypermutation, increased copy number changes and cell cycle alterations. Second, increased mesenchymal-like-state abundance occurred independently of acquired genetic alterations and instead coincided with elevated macrophage expression. Overall, our findings provide an integrative model that traces the cell intrinsic and extrinsic factors that shape cellular states during IDH-mutant glioma disease progression.

文献信息
期刊
Nature
期刊简称
Nature
ISSN
1476-4687
发表日期
2026-07-00
语言
英语
国家/地区
England
NLM ID
0410462
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