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Activation of Apoptosis by Cytoplasmic Microinjection of Cytochrome c
Published on: June 29, 2011
SHCBP1 promotes cisplatin induced apoptosis resistance, migration and invasion through activating Wnt pathway
Aimei Zou1, Aibing Wu2, Meihua Luo1
1Department of Oncology, Shunde Hospital of Southern Medical University (The First People's Hospital of Shunde, Foshan, China.
Abstract:
Lung cancer is the leading cause for cancer death due to refractory nature to current treatment strategies, understanding the regulatory mechanism of therapy resistance of lung cancer is important for lung cancer therapy. Here, we aimed to study the role of SHCBP1 in lung cancer cisplatin resistance, we found SHCBP1 was upregulated in lung cancer tissues and cells, patients with high SHCBP1 had poor prognosis. SHC binding and spindle associated 1 (SHCBP1) overexpression promoted cisplatin induced apoptosis resistance, migration and invasion determined by apoptosis assay and transwell assay with or without Matrigel, while SHCBP1 knockdown inhibited cisplatin induced apoptosis resistance, migration and invasion. Wnt pathway promoted lung cancer progression, we found SHCBP1 activated Wnt pathway, characterized by promoting β-catenin nuclear translocation. Inhibition of Wnt pathway in SHCBP1 overexpression cells reversed the effect of SHCBP1 overexpression, confirming SHCBP1 promoted lung cancer progression through activating Wnt pathway. We also found SHCBP1 expression was positively corrected with Wnt pathway activity in lung cancer samples. In summary, we found SHCBP1 promoted cisplatin induced apoptosis resistance, migration and invasion through activating Wnt pathway, providing a potential target for lung cancer therapy.
Insights
SHC binding and spindle associated 1 (SHCBP1) promotes resistance to cisplatin chemotherapy in lung cancer. This protein activates the Wnt pathway, driving cancer progression and poor prognosis, offering a potential therapeutic target.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- Lung cancer is a leading cause of cancer mortality, often due to resistance to existing treatments.
- Understanding the mechanisms of therapy resistance is crucial for improving lung cancer treatment outcomes.
Purpose of the Study:
- To investigate the role of SHC binding and spindle associated 1 (SHCBP1) in cisplatin resistance in lung cancer.
- To elucidate the molecular mechanisms by which SHCBP1 influences lung cancer progression and treatment response.
Main Methods:
- Analysis of SHCBP1 expression in lung cancer tissues and cells.
- Assessment of apoptosis, migration, and invasion using apoptosis assays and transwell assays.
- Evaluation of Wnt pathway activation, including beta-catenin nuclear translocation.
- Inhibition of the Wnt pathway to determine its role in SHCBP1-mediated effects.
Main Results:
- SHCBP1 was found to be upregulated in lung cancer tissues and cells, correlating with poor patient prognosis.
- SHCBP1 overexpression enhanced resistance to cisplatin-induced apoptosis, promoted migration and invasion.
- SHCBP1 knockdown reversed these effects, sensitizing cells to cisplatin.
- SHCBP1 was shown to activate the Wnt pathway by promoting beta-catenin nuclear translocation.
- Inhibition of the Wnt pathway abrogated the pro-cancer effects of SHCBP1 overexpression.
- A positive correlation was observed between SHCBP1 expression and Wnt pathway activity in lung cancer samples.
Conclusions:
- SHCBP1 promotes cisplatin resistance, migration, and invasion in lung cancer by activating the Wnt pathway.
- SHCBP1 represents a potential therapeutic target for overcoming treatment resistance in lung cancer.
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