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Transmembrane Protein TMEM230, a Target of Glioblastoma Therapy
Cinzia Cocola1,2, Valerio Magnaghi3, Edoardo Abeni1
1Institute for Biomedical Technologies, National Research Council, Milan, Italy.
Abstract:
Glioblastomas (GBM) are the most aggressive tumors originating in the brain. Histopathologic features include circuitous, disorganized, and highly permeable blood vessels with intermittent blood flow. These features contribute to the inability to direct therapeutic agents to tumor cells. Known targets for anti-angiogenic therapies provide minimal or no effect in overall survival of 12-15 months following diagnosis. Identification of novel targets therefore remains an important goal for effective treatment of highly vascularized tumors such as GBM. We previously demonstrated in zebrafish that a balanced level of expression of the transmembrane protein TMEM230/C20ORF30 was required to maintain normal blood vessel structural integrity and promote proper vessel network formation. To investigate whether TMEM230 has a role in the pathogenesis of GBM, we analyzed its prognostic value in patient tumor gene expression datasets and performed cell functional analysis. TMEM230 was found necessary for growth of U87-MG cells, a model of human GBM. Downregulation of TMEM230 resulted in loss of U87 migration, substratum adhesion, and re-passaging capacity. Conditioned media from U87 expressing endogenous TMEM230 induced sprouting and tubule-like structure formation of HUVECs. Moreover, TMEM230 promoted vascular mimicry-like behavior of U87 cells. Gene expression analysis of 702 patients identified that TMEM230 expression levels distinguished high from low grade gliomas. Transcriptomic analysis of patients with gliomas revealed molecular pathways consistent with properties observed in U87 cell assays. Within low grade gliomas, elevated TMEM230 expression levels correlated with reduced overall survival independent from tumor subtype. Highest level of TMEM230 correlated with glioblastoma and ATP-dependent microtubule kinesin motor activity, providing a direction for future therapeutic intervention. Our studies support that TMEM230 has both glial tumor and endothelial cell intracellular and extracellular functions. Elevated levels of TMEM230 promote glial tumor cell migration, extracellular scaffold remodeling, and hypervascularization and abnormal formation of blood vessels. Downregulation of TMEM230 expression may inhibit both low grade glioma and glioblastoma tumor progression and promote normalization of abnormally formed blood vessels. TMEM230 therefore is both a promising anticancer and antiangiogenic therapeutic target for inhibiting GBM tumor cells and tumor-driven angiogenesis.
Insights
TMEM230 is a protein crucial for blood vessel formation. Its elevated levels promote glioblastoma growth and abnormal blood vessels, making it a promising therapeutic target for brain tumors.
Area of Science:
- Neuro-oncology
- Vascular Biology
- Cancer Therapeutics
Background:
- Glioblastomas (GBM) are aggressive brain tumors with abnormal vasculature, hindering treatment efficacy.
- Current anti-angiogenic therapies show limited impact on GBM patient survival.
- Novel therapeutic targets are essential for treating highly vascularized brain tumors.
Purpose of the Study:
- To investigate the role of transmembrane protein TMEM230/C20ORF30 in glioblastoma pathogenesis.
- To analyze the prognostic value and functional significance of TMEM230 in GBM.
- To explore TMEM230 as a potential therapeutic target for GBM and related gliomas.
Main Methods:
- Analysis of TMEM230 expression in patient tumor gene expression datasets (702 patients).
- Functional assays using U87-MG glioblastoma cells and human umbilical vein endothelial cells (HUVECs).
- Cellular analysis included migration, adhesion, re-passaging, and vascular mimicry assays.
- Transcriptomic analysis to identify associated molecular pathways.
Main Results:
- TMEM230 is necessary for U87-MG glioblastoma cell growth, migration, and adhesion.
- TMEM230 expression levels distinguish high-grade from low-grade gliomas.
- Elevated TMEM230 correlates with reduced survival in low-grade gliomas and glioblastoma.
- TMEM230 promotes vascular mimicry and tubule formation in endothelial cells.
- Highest TMEM230 levels associate with glioblastoma and kinesin motor activity.
Conclusions:
- TMEM230 plays critical roles in both glial tumor cells and endothelial cells.
- Elevated TMEM230 promotes GBM cell migration, scaffold remodeling, and aberrant angiogenesis.
- Downregulating TMEM230 may inhibit glioma progression and normalize tumor vasculature.
- TMEM230 represents a promising dual anticancer and anti-angiogenic therapeutic target for GBM.
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