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Oncogenic role of Merlin/NF2 in glioblastoma
P A Guerrero1, W Yin1, L Camacho1
1Department of Pathology and Immunology, Baylor College of Medicine, Houston, TX, USA.
Abstract:
Glioblastoma is the most common and aggressive primary brain tumor in adults, with a poor prognosis because of its resistance to radiotherapy and chemotherapy. Merlin/NF2 (moesin-ezrin-radixin-like protein/neurofibromatosis type 2) is a tumor suppressor found to be mutated in most nervous system tumors; however, it is not mutated in glioblastomas. Merlin associates with several transmembrane receptors and intracellular proteins serving as an anchoring molecule. Additionally, it acts as a key component of cell motility. By selecting sub-populations of U251 glioblastoma cells, we observed that high expression of phosphorylated Merlin at serine 518 (S518-Merlin), NOTCH1 and epidermal growth factor receptor (EGFR) correlated with increased cell proliferation and tumorigenesis. These cells were defective in cell-contact inhibition with changes in Merlin phosphorylation directly affecting NOTCH1 and EGFR expression, as well as downstream targets HES1 (hairy and enhancer of split-1) and CCND1 (cyclin D1). Of note, we identified a function for S518-Merlin, which is distinct from what has been reported when the expression of Merlin is diminished in relation to EGFR and NOTCH1 expression, providing first-time evidence that demonstrates that the phosphorylation of S518-Merlin in glioblastoma promotes oncogenic properties that are not only the result of inactivation of the tumor suppressor role of Merlin but also an independent process implicating a Merlin-driven regulation of NOTCH1 and EGFR.
Insights
Phosphorylation of Merlin at S518 in glioblastoma cells drives tumor growth by regulating NOTCH1 and EGFR. This oncogenic process is independent of Merlin
Area of Science:
- Oncology
- Molecular Biology
- Cell Biology
Background:
- Glioblastoma is an aggressive brain tumor with poor prognosis due to treatment resistance.
- Merlin (NF2) is a tumor suppressor protein, but its mutation is not common in glioblastomas.
- Merlin functions in cell motility and associates with transmembrane receptors.
Purpose of the Study:
- To investigate the role of Merlin phosphorylation at serine 518 (S518-Merlin) in glioblastoma.
- To explore the relationship between S518-Merlin, NOTCH1, and epidermal growth factor receptor (EGFR) in glioblastoma tumorigenesis.
Main Methods:
- Selection of U251 glioblastoma cell sub-populations with varying Merlin expression.
- Analysis of Merlin phosphorylation at S518, NOTCH1, and EGFR expression.
- Assessment of downstream targets HES1 and CCND1.
Main Results:
- High S518-Merlin expression correlated with increased glioblastoma cell proliferation and tumorigenesis.
- Elevated S518-Merlin, NOTCH1, and EGFR were observed in cells with defective contact inhibition.
- Merlin phosphorylation at S518 directly influenced NOTCH1 and EGFR expression and their downstream targets.
Conclusions:
- Phosphorylated S518-Merlin promotes glioblastoma oncogenic properties independently of Merlin's tumor suppressor function.
- S518-Merlin plays a distinct role in regulating NOTCH1 and EGFR expression in glioblastoma.
- This study provides novel insights into Merlin's independent role in glioblastoma progression.
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