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Sox21 inhibits glioma progression in vivo by forming complexes with Sox2 and stimulating aberrant differentiation
Demet Caglayan1, Erika Lundin, Marianne Kastemar
1Department of Immunology, Genetics and Pathology, Rudbeck laboratory, Uppsala University, Uppsala, Sweden.
Abstract:
Sox2 is a transcription factor in neural stem cells and keeps the cells immature and proliferative. Sox2 is expressed in primary human glioma such as glioblastoma multiforme (GBM), primary glioma cells and glioma cell lines and is implicated in signaling pathways in glioma connected to malignancy. Sox21, the counteracting partner of Sox2, has the same expression pattern as Sox2 in glioma but in general induces opposite effects. In this study, Sox21 was overexpressed by using a tetracycline-regulated expression system (tet-on) in glioma cells. The glioma cells were injected subcutaneously into immunodeficient mice. The control tumors were highly proliferative, contained microvascular proliferation and large necrotic areas typical of human GBM. Induction of Sox21 in the tumor cells resulted in a significant smaller tumor size, and the effect correlated with the onset of treatment, where earlier treatment gave smaller tumors. Mice injected with glioma cells orthotopically into the brain survived significantly longer when Sox21 expression was induced. Tumors originating from glioma cells with an induced expression of Sox21 exhibited an increased formation of Sox2:Sox21 complexes and an upregulation of S100β, CNPase and Tuj1. Sox21 appears to decrease the stem-like cell properties of the tumor cells and initiate aberrant differentiation of glioma cells in vivo. Taken together our results indicate that Sox21 can function as a tumor suppressor during gliomagenesis mediated by a shift in the balance between Sox2 and Sox21. The wide distribution of Sox2 and Sox21 in GBM makes the Sox2/Sox21 axis a very interesting target for novel therapy of gliomas.
Insights
Sox21 overexpression suppressed glioma growth and improved survival in mice by decreasing stem-like properties. This suggests the Sox2/Sox21 balance is a potential therapeutic target for glioblastoma multiforme (GBM).
Area of Science:
- Neuro-oncology
- Molecular Biology
- Cancer Research
Background:
- Sox2 is a transcription factor crucial for neural stem cell maintenance and proliferation.
- Sox2 is highly expressed in glioblastoma multiforme (GBM) and linked to its malignancy.
- Sox21, a Sox2 partner, has similar expression but opposing effects in glioma.
Purpose of the Study:
- To investigate the functional role of Sox21 in glioma.
- To determine if Sox21 can counteract Sox2's oncogenic functions in GBM.
- To evaluate Sox21 as a potential therapeutic target for gliomas.
Main Methods:
- Overexpression of Sox21 in glioma cells using a tetracycline-regulated (tet-on) system.
- Subcutaneous injection of engineered glioma cells into immunodeficient mice to form tumors.
- Orthotopic implantation of glioma cells into the brains of mice for survival studies.
- Analysis of tumor characteristics, cell differentiation markers, and Sox2:Sox21 complex formation.
Main Results:
- Sox21 overexpression significantly reduced tumor size and proliferation in vivo.
- Earlier induction of Sox21 correlated with smaller tumor volumes.
- Mice with orthotopically implanted tumors showed significantly longer survival upon Sox21 induction.
- Induced Sox21 expression led to increased Sox2:Sox21 complexes and upregulation of differentiation markers (S100β, CNPase, Tuj1).
Conclusions:
- Sox21 acts as a tumor suppressor in gliomagenesis by reducing stem-like cell properties and promoting aberrant differentiation.
- Modulating the Sox2/Sox21 balance represents a promising therapeutic strategy for gliomas, particularly GBM.
- The Sox2/Sox21 axis is a significant target for novel glioma therapies due to its widespread distribution in GBM.
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