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Updated: Feb 2, 2026

Translational Orthotopic Models of Glioblastoma Multiforme
Published on: February 17, 2023
SOX21 suppresses glioblastoma growth by repressing AP-1 activity
Eltjona Rrapaj1,2, Juan Yuan1, Idha Kurtsdotter1
1Department of Cell and Molecular Biology, Karolinska Institutet, Stockholm, Sweden.
Abstract:
Treatment-resistant glioblastoma stem and precursor cells (GPCs) drive glioblastoma (GBM) growth and recurrence. Thus, targeting the molecular machinery that sustains GPCs in an undifferentiated and self-renewing state is a promising therapeutic strategy. The transcription factor SOX21 effectively suppresses the tumorigenic capacity of GPCs, but the mechanism by which SOX21 impedes GPC features is unknown. By engineering patient-derived GPCs with a transgenic TetOn system we show that SOX21 expression induces an anti-tumorigenic transcriptional program, aligning with clinical data demonstrating a positive correlation between SOX21 levels and improved GBM patient survival. Induced SOX21 expression in GPCs within pre-established GBM reduces their capacity to sustain tumor growth and significantly extends the survival of the orthotopically transplanted mice. Mechanistically, SOX21 functions as a tumor suppressor by binding a large set of AP-1-targeted chromatin regions, leading to epigenetic repression of AP-1-activated genes. Consistently, the anti-tumorigenic activities of SOX21 are largely replicated by AP-1 inhibitors, which decrease GPC proliferation and survival, while overexpression of the AP-1 family member, c-JUN, counteracts these effects. Our findings identify SOX21 as a key regulator that prevents GPC malignancy by targeting and repressing an AP-1-driven, tumor-promoting gene expression program. These results highlight SOX21-regulated pathways as promising therapeutic targets for GBM.
Insights
SOX21 acts as a tumor suppressor in glioblastoma (GBM) by repressing AP-1-driven genes, thereby reducing stem cell malignancy. This finding offers new therapeutic targets for GBM treatment.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Treatment-resistant glioblastoma stem and precursor cells (GPCs) drive tumor growth and recurrence.
- Targeting GPC self-renewal is a key therapeutic strategy for glioblastoma (GBM).
Purpose of the Study:
- To elucidate the mechanism by which SOX21 suppresses GPC tumorigenic capacity.
- To identify SOX21-regulated pathways as potential therapeutic targets for GBM.
Main Methods:
- Engineered patient-derived GPCs using a TetOn system to control SOX21 expression.
- Analyzed SOX21's effect on GPC proliferation, survival, and tumor growth in vivo.
- Investigated SOX21's molecular mechanism by examining its interaction with chromatin and AP-1-targeted genes.
Main Results:
- SOX21 expression induced an anti-tumorigenic transcriptional program in GPCs.
- Increased SOX21 levels correlated with improved GBM patient survival.
- SOX21 functions as a tumor suppressor by epigenetically repressing AP-1-activated genes, reducing GPC proliferation and survival.
- AP-1 inhibitors mimicked SOX21's anti-tumorigenic effects, while c-JUN overexpression counteracted them.
Conclusions:
- SOX21 is a critical regulator that inhibits GPC malignancy by targeting an AP-1-driven, tumor-promoting gene expression program.
- SOX21-regulated pathways represent promising therapeutic targets for GBM.
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