绘制人类星形胶质细胞的发育轨迹揭示胶质母细胞瘤的分化

IF 17.3 1区 生物学 Q1 CELL BIOLOGY Nature Cell Biology Pub Date : 2025-01-08 DOI:10.1038/s41556-024-01583-9
Caitlin Sojka, Hsiao-Lin V. Wang, Tarun N. Bhatia, Yangping Li, Pankaj Chopra, Anson Sing, Anna Voss, Alexia King, Feng Wang, Kevin Joseph, Vidhya M. Ravi, Jeffrey Olson, Kimberly Hoang, Edjah Nduom, Victor G. Corces, Bing Yao, Steven A. Sloan
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摘要

胶质母细胞瘤(GBM)被定义为异质性和弹性细胞群,密切反映神经发育细胞类型。虽然GBM与早期和未成熟的细胞状态相呼应,但由于缺乏胶质细胞和神经元谱系的高分辨率轨迹,确定这些肿瘤中被破坏的特定发育程序一直受到阻碍。在这里,我们描绘了人类星形胶质细胞成熟的过程,以揭示由GBM反映的离散发育阶段和属性。我们利用在培养中维持了近2年的皮质类器官,绘制了人类星形胶质细胞成熟的转录组学和表观基因组图谱。通过这种方法,我们记录了一个多阶段的发展过程。我们的人类星形胶质细胞成熟的时间过程包括一个分子上独特的中间时期,作为成熟静止上游的谱系承诺检查点。这个中间阶段是将idh野生型肿瘤星形细胞谱系细胞与静止星形细胞群分开的发育偏差位点。有趣的是,idh1突变的肿瘤星形细胞谱系细胞是这种发育扰动的例外,其中未成熟的特性由于d-2-羟基戊二酸肿瘤代谢物暴露而受到抑制。我们提出这种反抗是idh1突变相关的表观遗传失调的结果,我们发现成熟基因中的DNA羟甲基化(5hmC)是一种可能的机制。总之,这项研究阐明了GBM星形细胞谱系细胞中不同的细胞状态畸变,并提出了实验和治疗探索的发育靶点。
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Mapping the developmental trajectory of human astrocytes reveals divergence in glioblastoma
Glioblastoma (GBM) is defined by heterogeneous and resilient cell populations that closely reflect neurodevelopmental cell types. Although it is clear that GBM echoes early and immature cell states, identifying the specific developmental programmes disrupted in these tumours has been hindered by a lack of high-resolution trajectories of glial and neuronal lineages. Here we delineate the course of human astrocyte maturation to uncover discrete developmental stages and attributes mirrored by GBM. We generated a transcriptomic and epigenomic map of human astrocyte maturation using cortical organoids maintained in culture for nearly 2 years. Through this approach, we chronicled a multiphase developmental process. Our time course of human astrocyte maturation includes a molecularly distinct intermediate period that serves as a lineage commitment checkpoint upstream of mature quiescence. This intermediate stage acts as a site of developmental deviation separating IDH-wild-type neoplastic astrocyte-lineage cells from quiescent astrocyte populations. Interestingly, IDH1-mutant tumour astrocyte-lineage cells are the exception to this developmental perturbation, where immature properties are suppressed as a result of d-2-hydroxyglutarate oncometabolite exposure. We propose that this defiance is a consequence of IDH1-mutant-associated epigenetic dysregulation, and we identified biased DNA hydroxymethylation (5hmC) in maturation genes as a possible mechanism. Together, this study illustrates a distinct cellular state aberration in GBM astrocyte-lineage cells and presents developmental targets for experimental and therapeutic exploration. Sojka et al. analyse the transcriptomic and epigenomic landscape of human astrocyte maturation and identify an epigenetically regulated intermediate state associated with aberrant development in glioblastoma.
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来源期刊
Nature Cell Biology
Nature Cell Biology 生物-细胞生物学
CiteScore
28.40
自引率
0.90%
发文量
219
审稿时长
3 months
期刊介绍: Nature Cell Biology, a prestigious journal, upholds a commitment to publishing papers of the highest quality across all areas of cell biology, with a particular focus on elucidating mechanisms underlying fundamental cell biological processes. The journal's broad scope encompasses various areas of interest, including but not limited to: -Autophagy -Cancer biology -Cell adhesion and migration -Cell cycle and growth -Cell death -Chromatin and epigenetics -Cytoskeletal dynamics -Developmental biology -DNA replication and repair -Mechanisms of human disease -Mechanobiology -Membrane traffic and dynamics -Metabolism -Nuclear organization and dynamics -Organelle biology -Proteolysis and quality control -RNA biology -Signal transduction -Stem cell biology
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