Single-Cell Transcriptomics in Medulloblastoma Reveals Tumor-Initiating Progenitors and Oncogenic Cascades during Tumorigenesis and Relapse

髓母细胞瘤单细胞转录组学揭示肿瘤起始祖细胞和肿瘤发生及复发过程中的致癌级联反应

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作者:Liguo Zhang ,Xuelian He ,Xuezhao Liu ,Feng Zhang ,L Frank Huang ,Andrew S Potter ,Lingli Xu ,Wenhao Zhou ,Tao Zheng ,Zaili Luo ,Kalen P Berry ,Allison Pribnow ,Stephanie M Smith ,Christine Fuller ,Blaise V Jones ,Maryam Fouladi ,Rachid Drissi ,Zeng-Jie Yang ,W Clay Gustafson ,Marc Remke ,Scott L Pomeroy ,Emily J Girard ,James M Olson ,A Sorana Morrissy ,Maria C Vladoiu ,Jiao Zhang ,Weidong Tian ,Mei Xin ,Michael D Taylor ,S Steven Potter ,Martine F Roussel ,William A Weiss ,Q Richard Lu

Abstract

Progenitor heterogeneity and identities underlying tumor initiation and relapse in medulloblastomas remain elusive. Utilizing single-cell transcriptomic analysis, we demonstrated a developmental hierarchy of progenitor pools in Sonic Hedgehog (SHH) medulloblastomas, and identified OLIG2-expressing glial progenitors as transit-amplifying cells at the tumorigenic onset. Although OLIG2+ progenitors become quiescent stem-like cells in full-blown tumors, they are highly enriched in therapy-resistant and recurrent medulloblastomas. Depletion of mitotic Olig2+ progenitors or Olig2 ablation impeded tumor initiation. Genomic profiling revealed that OLIG2 modulates chromatin landscapes and activates oncogenic networks including HIPPO-YAP/TAZ and AURORA-A/MYCN pathways. Co-targeting these oncogenic pathways induced tumor growth arrest. Together, our results indicate that glial lineage-associated OLIG2+ progenitors are tumor-initiating cells during medulloblastoma tumorigenesis and relapse, suggesting OLIG2-driven oncogenic networks as potential therapeutic targets. Keywords: AURORA-A/MYCN; HIPPO-YAP/TAZ; OLIG2; OPC-like; glial progenitors; medulloblastomas; progenitor heterogeneity; recurrent tumors; single-cell transcriptomics; sonic hedgehog (SHH) signaling.

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