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Published on: February 16, 2015
MEK2 is a prognostic marker and potential chemo-sensitizing target for glioma patients undergoing temozolomide
Hua He1, Maojin Yao2, Wenhao Zhang3
1Department of Neurosurgery, Changzheng Hospital, Second Affiliated Hospital of Second Military Medical University, 415 Fengyang Road, Shanghai 200003, P.R.China.
Abstract:
Although temozolomide (TMZ) is the first-line chemotherapeutic agent for glioblastoma, it is often non-curative due to drug resistance. To overcome the resistance of glioblastoma cells to TMZ, it is imperative to identify prognostic markers for outcome prediction and to develop chemo-sensitizing agents. Here, the gene expression profiles of TMZ-resistant and TMZ-sensitive samples were compared by microarray analysis, and mitogen-activated protein kinase kinase 2 (MEK2) was upregulated specifically in resistant glioma cells but not in sensitive tumor cells or non-tumor tissues. Moreover, a comprehensive analysis of patient data revealed that the increased level of MEK2 expression correlated well with the advancement of glioma grade and worse prognosis in response to TMZ treatment. Furthermore, reducing the level of MEK2 in U251 glioma cell lines or xenografted glioma models through shRNA-mediated gene knockdown inhibited cell proliferation and enhanced the sensitivity of cells toward TMZ treatment. Further analysis of tumor samples from glioma patients by real-time PCR indicated that an increased MEK2 expression level was closely associated with the activation of many drug resistance genes. Finally, these resistance genes were downregulated after MEK2 was silenced in vitro, suggesting that the mechanism of MEK2-induced chemo-resistance could be mediated by the transcriptional activation of these resistance genes. Collectively, our data indicated that the expression level of MEK2 could serve as a prognostic marker for glioma chemotherapy and that MEK2 antagonists can be used as chemo-sensitizers to enhance the treatment efficacy of TMZ.
Insights
Mitogen-activated protein kinase kinase 2 (MEK2) is upregulated in drug-resistant glioblastoma. Silencing MEK2 inhibits proliferation and resensitizes cells to temozolomide (TMZ), suggesting MEK2 as a prognostic marker and therapeutic target for glioblastoma.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Temozolomide (TMZ) is a first-line treatment for glioblastoma but often fails due to drug resistance.
- Identifying prognostic markers and chemo-sensitizing agents is crucial for overcoming TMZ resistance.
Purpose of the Study:
- To investigate the role of gene expression in TMZ resistance in glioblastoma.
- To identify potential prognostic markers and therapeutic targets for improving glioblastoma chemotherapy.
Main Methods:
- Microarray analysis to compare gene expression in TMZ-resistant and sensitive glioblastoma samples.
- Correlation analysis of MEK2 expression with glioma grade and patient prognosis.
- shRNA-mediated gene knockdown of MEK2 in cell lines and xenograft models.
- Real-time PCR to assess drug resistance gene expression after MEK2 silencing.
Main Results:
- Mitogen-activated protein kinase kinase 2 (MEK2) was significantly upregulated in TMZ-resistant glioblastoma cells.
- Increased MEK2 expression correlated with higher glioma grade and poorer prognosis with TMZ treatment.
- MEK2 knockdown inhibited glioblastoma cell proliferation and enhanced sensitivity to TMZ.
- MEK2 silencing downregulated multiple drug resistance genes, suggesting MEK2 mediates chemo-resistance via transcriptional activation.
Conclusions:
- MEK2 expression levels can serve as a prognostic marker for glioblastoma chemotherapy outcomes.
- MEK2 antagonists show potential as chemo-sensitizing agents to improve TMZ treatment efficacy in glioblastoma.
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