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Published on: March 30, 2019
CAMSAP3 negatively regulates lung cancer cell invasion and angiogenesis through nucleolin/HIF-1α mRNA complex
Suthasinee Seephan1, So-Ichiro Sasaki2, Onsurang Wattanathamsan3
1Pharmaceutical Sciences and Technology Graduate Program, Faculty of Pharmaceutical Sciences, Chulalongkorn University, Bangkok, Thailand.
Aims:
Cancer metastasis is a major cause of lung cancer-related mortality, so identification of related molecular mechanisms is of interest. Calmodulin-regulated spectrin-associated protein 3 (CAMSAP3) has been implicated in lung cancer malignancies; however, its role in metastatic processes, including invasion and angiogenesis, is largely unknown.
Main Method:
The clinical relevance of CAMSAP3 expression in lung cancer was evaluated. The relevance of CAMSAP3 expression to in vitro cell invasion and angiogenesis was assessed in human lung cancer cells and endothelial cells, respectively. The molecular mechanism was identified by qRT-PCR, immunoprecipitation, mass spectrometry, and RNA immunoprecipitation. The in vivo metastatic and angiogenic activities of lung cancer cells were assessed.
Key Findings:
Low CAMSAP3 expression was found in malignant lung tissues and strongly correlated with a poor prognosis in lung adenocarcinoma (LUAD). CAMSAP3-knockout NSCLC exhibited high invasive ability, and CAMSAP3 knockout induced HUVEC proliferation and tube formation; these effects were significantly attenuated by reintroduction of exogenous wild-type CAMSAP3. Mechanistically, in the absence of CAMSAP3, the expression of hypoxia-inducible factor-1α (HIF-1α) was upregulated, which increased the levels of downstream HIF-1α targets such as vascular endothelial growth factor A (VEGFA) and matrix metalloproteinases (MMPs) 2 and 9. Proteomic analysis revealed that nucleolin (NCL) bound to CAMSAP3 to regulate HIF-1α mRNA stabilization. In addition, CAMSAP3-knockout lung cancer cells displayed highly aggressive behavior in metastasis and angiogenesis in vivo.
Significance:
This study reveals that CAMSAP3 plays a negative regulatory role in lung cancer cell metastatic behavior both in vitro and in vivo through NCL/HIF-1α mRNA complex stabilization.
Insights
Calmodulin-regulated spectrin-associated protein 3 (CAMSAP3) suppresses lung cancer metastasis. Low CAMSAP3 expression promotes invasion and angiogenesis by stabilizing hypoxia-inducible factor-1α (HIF-1α) mRNA via nucleolin (NCL).
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- Lung cancer metastasis is a leading cause of cancer mortality.
- The role of Calmodulin-regulated spectrin-associated protein 3 (CAMSAP3) in lung cancer metastasis, invasion, and angiogenesis is largely unknown.
Purpose of the Study:
- To investigate the clinical relevance of CAMSAP3 expression in lung cancer.
- To elucidate the molecular mechanisms by which CAMSAP3 influences lung cancer invasion and angiogenesis.
Main Methods:
- Assessed CAMSAP3 expression in lung cancer tissues and correlated it with prognosis.
- Evaluated the effects of CAMSAP3 on in vitro cell invasion and angiogenesis.
- Utilized qRT-PCR, immunoprecipitation, mass spectrometry, and RNA immunoprecipitation to identify molecular mechanisms.
- Assessed in vivo metastatic and angiogenic activities.
Main Results:
- Low CAMSAP3 expression correlated with poor prognosis in lung adenocarcinoma.
- CAMSAP3 knockout increased lung cancer cell invasion and angiogenesis.
- CAMSAP3 deficiency led to upregulation of hypoxia-inducible factor-1α (HIF-1α) and its downstream targets (VEGFA, MMPs).
- Nucleolin (NCL) was identified as a binding partner of CAMSAP3, regulating HIF-1α mRNA stabilization.
Conclusions:
- CAMSAP3 acts as a negative regulator of lung cancer metastasis.
- The NCL/HIF-1α mRNA complex is a key mechanism through which CAMSAP3 controls metastatic behavior.
- CAMSAP3 deficiency promotes aggressive lung cancer phenotypes in vitro and in vivo.
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