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Updated: May 21, 2025

A Syngeneic Orthotopic Osteosarcoma Sprague Dawley Rat Model with Amputation to Control Metastasis Rate
Published on: May 3, 2021
NEK2 promotes the progression of osteosarcoma through the AKT/p-AKT pathway and interacts with FoxM1
Xin Tan1, Xiaojing Liang1, Yi Feng1
1Department of Pathology, School of Basic Medical Science, Anhui Medical University, Hefei, 230032, People's Republic of China.
Abstract:
Osteosarcoma is a highly invasive and metastatic primary malignant bone tumor, and resistance to chemotherapy remains a major therapeutic challenge. Our previous studies showed that increased Forkhead box protein M1 (FoxM1) expression promotes osteosarcoma progression. While NIMA-related kinase 2 (NEK2) has emerged as a potential oncogenic factor, its functional role and molecular mechanisms in osteosarcoma remain poorly understood. Pearson's correlation analysis was performed to assess the relationship between FoxM1 and NEK2 expression using the GSE33382 dataset from GEO. Coimmunoprecipitation (Co-IP) was employed to investigate FoxM1-NEK2 interactions. NEK2 expression was modulated in the HOS and U2OS osteosarcoma cell lines through pharmacological inhibition (MBM-55), siRNA-mediated knockdown, and plasmid-mediated overexpression. Cellular proliferation was evaluated via CCK-8 and colony formation assays. Transwell migration/invasion assays and flow cytometry were performed to assess the metastatic potential and apoptosis, respectively. The protein levels of FoxM1, NEK2, and AKT/p-AKT were analyzed by Western blotting. Western blot analyses of FoxM1-overexpressing cell lines and RCM-1-treated cells revealed a positive correlation between NEK2 and FoxM1 levels. Co-IP confirmed their interaction. NEK2 knockdown significantly suppressed proliferation, migration, and invasion; enhanced cisplatin sensitivity (reduced the IC50); and promoted apoptosis. Conversely, NEK2 overexpression exacerbated malignant phenotypes and decreased chemosensitivity. Mechanistically, NEK2 activation was shown to drive osteosarcoma progression via AKT/p-AKT pathway activation. This study revealed that NEK2 promotes osteosarcoma proliferation, invasion, migration, and chemoresistance while inhibiting apoptosis, likely through AKT/p-AKT signaling. These effects may be regulated by FoxM1.
Insights
NIMA-related kinase 2 (NEK2) promotes osteosarcoma progression and chemoresistance by activating the AKT/p-AKT pathway. Inhibiting NEK2 suppresses tumor growth, metastasis, and enhances chemotherapy effectiveness in osteosarcoma.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- Osteosarcoma is a primary bone cancer characterized by high invasiveness and metastasis.
- Chemotherapy resistance is a significant challenge in treating osteosarcoma.
- Forkhead box protein M1 (FoxM1) promotes osteosarcoma progression, but the role of NIMA-related kinase 2 (NEK2) is unclear.
Purpose of the Study:
- To investigate the functional role and molecular mechanisms of NEK2 in osteosarcoma.
- To explore the relationship between FoxM1 and NEK2 in osteosarcoma.
- To determine NEK2's impact on osteosarcoma proliferation, migration, invasion, apoptosis, and chemosensitivity.
Main Methods:
- Pearson's correlation analysis of GEO dataset (GSE33382) for FoxM1 and NEK2 expression.
- Coimmunoprecipitation (Co-IP) to confirm FoxM1-NEK2 interaction.
- In vitro studies using osteosarcoma cell lines (HOS, U2OS) with NEK2 modulation (inhibition, knockdown, overexpression) and Western blotting, CCK-8, colony formation, Transwell, and flow cytometry assays.
Main Results:
- A positive correlation between NEK2 and FoxM1 expression was observed.
- NEK2 knockdown suppressed osteosarcoma proliferation, migration, and invasion, while enhancing cisplatin sensitivity and promoting apoptosis.
- NEK2 overexpression led to increased malignancy and decreased chemosensitivity, mediated via the AKT/p-AKT pathway.
Conclusions:
- NEK2 plays a crucial role in promoting osteosarcoma proliferation, invasion, migration, and chemoresistance.
- NEK2 activation of the AKT/p-AKT pathway is a key mechanism driving osteosarcoma progression.
- FoxM1 may regulate NEK2's function in osteosarcoma, suggesting potential therapeutic targeting of the NEK2-FoxM1-AKT axis.
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