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Published on: November 28, 2015
NEK2 enhances malignancies of glioblastoma via NIK/NF-κB pathway
Jianyang Xiang1,2, Wahafu Alafate1,2, Wei Wu1,2
1Department of Neurosurgery, The First Affiliated Hospital of Xi'an Jiaotong University, Xi'an, Shaanxi, 710061, China.
Abstract:
Glioblastoma (GBM) is one of the most lethal primary brain tumor with a poor median survival less than 15 months. Despite the development of the clinical strategies over the decades, the outcomes for GBM patients remain dismal due to the strong proliferation and invasion ability and the acquired resistance to radiotherapy and chemotherapy. Therefore, developing new biomarkers and therapeutic strategies targeting GBM is in urgent need. In this study, gene expression datasets and relevant clinical information were extracted from public cancers/glioma datasets, including TCGA, GRAVENDEEL, REMBRANDT, and GILL datasets. Differentially expressed genes were analyzed and NEK2 was picked as a candidate gene for subsequent validation. Human tissue samples and corresponding data were collected from our center and detected by immunohistochemistry analysis. Molecular biological assays and in vivo xenograft transplantation were performed to confirm the bioinformatic findings. High-throughput RNA sequencing, followed by KEGG analysis, GSEA analysis and GO analysis were conducted to identify potential signaling pathways related to NEK2 expression. Subsequent mechanism assays were used to verify the relationship between NEK2 and NF-κB signaling. Overall, we identified that NEK2 is significantly upregulated in GBM and the higher expression of NEK2 exhibited a poorer prognosis. Functionally, NEK2 knockdown attenuated cell proliferation, migration, invasion, and tumorigenesis of GBM while NEK2 overexpression promoted the GBM progression. Furthermore, High-throughput RNA sequencing and bioinformatics analysis indicated that NEK2 was positively related to the NF-κB signaling pathway in GBM. Mechanically, NEK2 activated the noncanonical NF-κB signaling pathway by phosphorylating NIK and increasing the activity and stability of NIK. In conclusion, NEK2 promoted the progression of GBM through activation of noncanonical NF-κB signaling, indicating that NEK2- NF-κB axis could be a potential drug target for GBM.
Insights
NEK2 is highly expressed in glioblastoma (GBM), promoting tumor growth and invasion. Targeting the NEK2-NF-κB pathway offers a potential therapeutic strategy for this lethal brain cancer.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Glioblastoma (GBM) is an aggressive brain tumor with poor prognosis.
- Current treatments face challenges due to GBM's invasive nature and resistance.
- Novel biomarkers and therapeutic targets for GBM are urgently needed.
Purpose of the Study:
- To investigate the role of NEK2 in GBM progression.
- To identify the signaling pathways regulated by NEK2 in GBM.
- To explore the NEK2-NF-κB axis as a potential therapeutic target.
Main Methods:
- Analysis of public gene expression datasets (TCGA, GRAVENDEEL, REMBRANDT, GILL).
- Immunohistochemistry, molecular assays, and in vivo xenograft models.
- High-throughput RNA sequencing, KEGG, GSEA, and GO analyses.
- Mechanistic studies on NEK2 and NF-κB signaling.
Main Results:
- NEK2 is significantly upregulated in GBM, correlating with poorer prognosis.
- NEK2 knockdown inhibited GBM cell proliferation, migration, invasion, and tumorigenesis.
- NEK2 overexpression promoted GBM progression.
- NEK2 activates the noncanonical NF-κB pathway by phosphorylating NIK.
Conclusions:
- NEK2 drives GBM progression via activation of the noncanonical NF-κB signaling pathway.
- The NEK2-NF-κB axis represents a promising therapeutic target for GBM treatment.
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