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December 8, 2025Cancer Research0 citations

Abstract A006: Transcription factors ASCL1 and OLIG2 drive glioblastoma initiation but inversely regulate tumor cell types and migration

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TVTou Yia Vue

Key Points

  • The study aims to elucidate the roles of transcription factors ASCL1 and OLIG2 in glioblastoma initiation and cellular behavior.
  • Utilized a mouse model for glioblastoma to analyze tumor formation and progression
  • Investigated the combinatorial roles of ASCL1 and OLIG2 through genetic manipulation
  • Employed single-cell RNA sequencing to assess cell type diversity and migration patterns
  • ASCL1 and OLIG2 are essential for glioblastoma initiation
  • Somatic mutations in progenitor cells lead to dysregulation of these transcription factors
  • High ASCL1 levels are linked to increased migratory behavior in neural stem cell-like tumor cells
  • Identified key gene expressions associated with cancer metastasis and therapeutic resistance

Abstract

Abstract Glioblastomas (GBMs) are highly aggressive, infiltrative, and heterogeneous brain tumors driven by complex genetic alterations. The basic-helix-loop-helix (bHLH) transcription factors ASCL1 and OLIG2 are dynamically co-expressed in GBMs; however, their combinatorial roles in regulating the plasticity and heterogeneity of GBM cells are unclear. Here, we show that induction of somatic mutations in subventricular zone (SVZ) progenitor cells leads to the dysregulation of ASCL1 and OLIG2, which then function redundantly and are required for brain tumor formation in a mouse model of GBM. Subsequently, the binding of ASCL1 and OLIG2 to each other’s loci and to downstream target genes then determines the cell types and degree of migration of tumor cells. Single-cell RNA sequencing (scRNA-seq) reveals that a high level of ASCL1 is key in specifying highly migratory neural stem cell (NSC) /astrocyte-like tumor cell types, which are marked by upregulation of ribosomal protein, oxidative phosphorylation, cancer metastasis, and therapeutic resistance genes. Citation Format: Tou Yia Vue. Transcription factors ASCL1 and OLIG2 drive glioblastoma initiation but inversely regulate tumor cell types and migration abstract. In: Proceedings of the AACR Special Conference in Cancer Research: Cancer Evolution: The Dynamics of Progression and Persistence; 2025 Dec 4-6; Albuquerque, NM. Philadelphia (PA): AACR; Cancer Res 2025;85 (23Suppl): Abstract nr A006.

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Cite This Study

Tou Yia Vue (2025) studied this question.

synapsesocial.com/papers/693624ce4fa91c937236cf52https://doi.org/10.1158/1538-7445.canevol25-a006
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1CNSC-16. TRANSCRIPTION FACTORS ASCL1 AND OLIG2 DRIVE GLIOBLASTOMA INITIATION AND CO-REGULATE TUMOR CELL TYPES AND MIGRATION2025
  2. 2Abstract 256: A novel transcriptional complex of OLIG2-STAT5 mediates glioma stem cell self renewal and invasion2024
  3. 3STEM-19. OLIG2 AND STAT5 TRANSCRIPTIONAL AXIS DRIVES GLIOMA STEM CELL PROLIFERATION AND INVASION2025
  4. 4Abstract A040: Reactive oligodendrocytes promote glioblastoma progression through CCL5/CCR5-mediated glioma stem cell maintenance2026
  5. 5Abstract 6228: Reactive oligodendrocytes promote glioblastoma progression through CCL5/CCR5-mediated glioma stem cell maintenance2026