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Spatial transcriptomics reveals niche-specific enrichment and vulnerabilities of radial glial stem-like cells in malignant gliomas

Yanming Ren, Zongyao Huang, Lingling Zhou, Peng Xiao, Junwei Song, Ping He, Chuanxing Xie, Ran Zhou, Menghan Li, Xiangqun Dong, Qing Mao, Chao You, Jianguo Xu, Yanhui Liu, Zhigang Lan

Nature Communications · 2023 · ▲ 247 citations

Abstract

Diffuse midline glioma-H3K27M mutant (DMG) and glioblastoma (GBM) are the most lethal brain tumors that primarily occur in pediatric and adult patients, respectively. Both tumors exhibit significant heterogeneity, shaped by distinct genetic/epigenetic drivers, transcriptional programs including RNA splicing, and microenvironmental cues in glioma niches. However, the spatial organization of cellular states and niche-specific regulatory programs remain to be investigated. Here, we perform a spatial profiling of DMG and GBM combining short- and long-read spatial transcriptomics, and single-cell transcriptomic datasets. We identify clinically relevant transcriptional programs, RNA isoform diversity, and multi-cellular ecosystems across different glioma niches. We find that while the tumor core enriches for oligodendrocyte precursor-like cells, radial glial stem-like (RG-like) cells are enriched in the neuron-rich invasive niche in both DMG and GBM. Further, we identify niche-specific regulatory programs for RG-like cells, and functionally confirm that FAM20C mediates invasive growth of RG-like cells in a neuron-rich microenvironment in a human neural stem cell derived orthotopic DMG model. Together, our results provide a blueprint for understanding the spatial architecture and niche-specific vulnerabilities of DMG and GBM.

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Provenance

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OpenAlex
DOI
10.1038/s41467-023-36707-6
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2026-07-25 MST

Cite this

APA
Ren, Y., Huang, Z., Zhou, L., Xiao, P., Song, J., He, P., Xie, C., Zhou, R., Li, M., Dong, X., Mao, Q., You, C., Xu, J., Liu, Y., Lan, Z., Zhang, T., Gan, Q., Yang, Y., Chen, T., &amp; Huang, B. (2023). Spatial transcriptomics reveals niche-specific enrichment and vulnerabilities of radial glial stem-like cells in malignant gliomas. <em>Nature Communications</em>. https://doi.org/10.1038/s41467-023-36707-6
Vancouver
Ren Y, Huang Z, Zhou L, Xiao P, Song J, He P, et al. Spatial transcriptomics reveals niche-specific enrichment and vulnerabilities of radial glial stem-like cells in malignant gliomas. Nature Communications. 2023. doi:10.1038/s41467-023-36707-6.
BibTeX
@article{yanming2023Spatia, title = {Spatial transcriptomics reveals niche-specific enrichment and vulnerabilities of radial glial stem-like cells in malignant gliomas}, author = {Yanming Ren and Zongyao Huang and Lingling Zhou and Peng Xiao and Junwei Song and Ping He and Chuanxing Xie and Ran Zhou and Menghan Li and Xiangqun Dong and Qing Mao and Chao You and Jianguo Xu and Yanhui Liu and Zhigang Lan and Tiejun Zhang and Qi Gan and Yuan Yang and Teng‐Yun Chen and Bowen Huang and Yang Xiang and Anqi Xiao and Yun Ou and Zhengzheng Su and Lu Chen}, journal = {Nature Communications}, year = {2023}, doi = {10.1038/s41467-023-36707-6}, }

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