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GLUT1 and TUBB4 in Glioblastoma Could be Efficacious Targets
Maheedhara R Guda1, Collin M Labak1, Sara Ibrahim Omar2
1Department of Cancer Biology and Pharmacology, University of Illinois College of Medicine at Peoria, Peoria, IL 61605, USA.
Abstract:
Glioblastoma multiforme (GBM) is the most aggressive and deadly brain tumor, portending a median 13-month survival even following gross total resection with adjuvant chemotherapy and radiotherapy. This prognosis necessitates improved therapies for the disease. A target of interest for novel chemotherapies is the Warburg Effect, which describes the tumor's shift away from oxidative phosphorylation towards glycolysis. Here, we elucidate GLUT1 (Glucose transporter 1) and one of its associated binding partners, TUBB4 (Tubulin 4), as potentially druggable targets in GBM. Using data mining approach, we demonstrate that GLUT1 is overexpressed as a function of tumor grade in astrocytoma's and that its overexpression is associated with poorer prognosis. Using both mass spectrometry performed on hGBM (human glioblastoma patient specimen) and in silico modeling, we show that GLUT1 interacts with TUBB4, and more accurately demonstrates GLUT1's binding with fasentin. Proximity ligation assay (PLA) and immunoprecipitation studies confirm GLUT1 interaction with TUBB4. Treatment of GSC33 and GSC28 cells with TUBB4 inhibitor, CR-42-24, reduces the expression of GLUT1 however, TUBB4 expression is unaltered upon fasentin treatment. Using human pluripotent stem cell antibody array, we demonstrate reduced levels of Oct3/4, Nanog, Sox2, Sox17, Snail and VEGFR2 (Vascular endothelial growth factor receptor 2) upon CR-42-24 treatment. Overall, our data confirm that silencing TUBB4 or GLUT1 reduce GSC tumorsphere formation, self-renewal and proliferation in vitro. These findings suggest GLUT1 and its binding partner TUBB4 as druggable targets that warrant further investigation in GBM.
Insights
Glucose transporter 1 (GLUT1) and Tubulin 4 (TUBB4) are potential therapeutic targets for glioblastoma multiforme (GBM). Inhibiting TUBB4 reduces GLUT1 expression and GBM cell growth, suggesting new treatment strategies.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Glioblastoma multiforme (GBM) is an aggressive brain tumor with poor prognosis.
- The Warburg Effect, increased glycolysis in tumors, is a hallmark of GBM.
- Novel therapeutic targets are needed to improve GBM treatment outcomes.
Purpose of the Study:
- To investigate Glucose transporter 1 (GLUT1) and Tubulin 4 (TUBB4) as potential therapeutic targets in GBM.
- To elucidate the interaction between GLUT1 and TUBB4 in GBM.
- To assess the therapeutic potential of targeting GLUT1 and TUBB4 in GBM.
Main Methods:
- Data mining to analyze GLUT1 expression and prognosis in astrocytomas.
- Mass spectrometry and in silico modeling to identify GLUT1-binding partners.
- Proximity ligation assay (PLA) and immunoprecipitation to confirm GLUT1-TUBB4 interaction.
- In vitro studies using GBM stem cells (GSCs) treated with TUBB4 inhibitor CR-42-24.
Main Results:
- GLUT1 is overexpressed in higher-grade astrocytomas and correlates with poorer prognosis.
- GLUT1 interacts with TUBB4 in human GBM specimens.
- Treatment with TUBB4 inhibitor CR-42-24 reduced GLUT1 expression and key stem cell markers (Oct3/4, Nanog, Sox2, Sox17, Snail, VEGFR2) in GSCs.
- Silencing GLUT1 or TUBB4 inhibited GSC tumorsphere formation, self-renewal, and proliferation in vitro.
Conclusions:
- GLUT1 and TUBB4 are validated as druggable targets in GBM.
- Targeting the GLUT1-TUBB4 interaction shows promise for novel GBM therapies.
- Further investigation of GLUT1 and TUBB4 as therapeutic targets is warranted for GBM treatment.
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