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Updated: Nov 16, 2025

Transposon Mediated Integration of Plasmid DNA into the Subventricular Zone of Neonatal Mice to Generate Novel Models of Glioblastoma
Published on: February 22, 2015
SH3BGRL2 functions as a crucial tumor suppressor in glioblastoma tumorigenesis
Zhi Nie1, Shan Cai2, Zhimin Wei3
1Department of Neurology, First Affiliated Hospital of Kunming Medical University, Kunming, 650032, Yunnan, China.
Abstract:
Glioblastoma is the most common and severe primary intrinsic tumor of the central nervous system. Glioblastoma harbors glioma stem cells (GSCs) as it not only possesses self-renewal and differentiation properties but also accounts for significant chemotherapy resistance and recurrence. Thus, targeting GSCs may be essential in overcoming the resistance and recurrence thereby improving GBM treatment. However, the underlying mechanism to sustain GSCs remains largely unknown. Here, we report that SH3 domain binding glutamate-rich protein like 2 (SH3BGRL2) is weakly expressed in glioblastoma multiforme (GBM) and isocitrate dehydrogenase1 (IDH1) wildtype GBM and correlated with glioma patients' poor prognosis. Moreover, ectopic expression of SH3BGRL2 significantly inhibited GBM cell growth, migration, and GSCs self-renewal in vitro as well as tumor growth in vivo. Additionally, we found that SH3BGRL2 suppressed SOX2 and CD133 expression, which are key regulators involved in GSCs self-renewal. Collectively, our findings shed additional light on SH3BGRL2 has potential to serve as a biomarker and a potent therapeutic target for patients with glioma.
Insights
SH3BGRL2 is underexpressed in glioblastoma multiforme (GBM), a severe brain tumor. Its restoration inhibits GBM growth and glioma stem cell renewal, suggesting SH3BGRL2 as a therapeutic target.
Area of Science:
- Neuro-oncology
- Cancer biology
- Molecular medicine
Background:
- Glioblastoma (GBM) is a severe primary brain tumor.
- Glioma stem cells (GSCs) drive GBM resistance and recurrence.
- Mechanisms sustaining GSCs are largely unknown.
Purpose of the Study:
- Investigate the role of SH3BGRL2 in GBM.
- Determine if SH3BGRL2 can be a therapeutic target for GBM.
Main Methods:
- Assessed SH3BGRL2 expression in GBM tissues.
- Examined the effect of SH3BGRL2 on GBM cell growth, migration, and GSC self-renewal in vitro and in vivo.
- Analyzed the impact of SH3BGRL2 on SOX2 and CD133 expression.
Main Results:
- SH3BGRL2 is weakly expressed in GBM, correlating with poor prognosis.
- Ectopic SH3BGRL2 expression inhibited GBM cell growth, migration, and GSC self-renewal.
- SH3BGRL2 suppressed key GSC regulators SOX2 and CD133.
Conclusions:
- SH3BGRL2 plays a crucial role in GBM progression.
- SH3BGRL2 holds potential as a prognostic biomarker for glioma patients.
- SH3BGRL2 represents a promising therapeutic target for GBM.
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