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Published on: August 12, 2015
RNF214 silencing attenuates prostate cancer progression and modulates mTOR signaling through CAV1 ubiquitination
Zongqiang Wu1, Zhiming Huang1, Shangfan Liao2
1Department of Urology, Sanming First Hospital Affiliated to Fujian Medical University, No. 29, Lidong Street, Sanyuan District, Sanming City, Fujian Province, China.
Background:
Although both RNF214 and CAV1 are implicated in tumor progression and signaling regulation, the role of the RNF214-CAV1 axis in prostate cancer (PCa) remains unclear. This study aims to explore how RNF214 modulates CAV1 stability via ubiquitination and its influence on PCa progression and mTOR signaling.
Methods:
The expression patterns and functional impact of RNF214 were assessed using clinical PCa tissues, cultured cell lines, and mouse xenograft models. Gene silencing experiments were conducted to evaluate effects on cell proliferation, migration, and signaling activity. Protein interactions and ubiquitination were examined via GST pull-down and co-immunoprecipitation. Immunohistochemistry was used to assess proliferation and pathway markers in vivo.
Results:
RNF214 expression was elevated in PCa samples, whereas CAV1 was downregulated, with an inverse correlation observed at both transcript and protein levels. RNF214 knockdown inhibited proliferation and migration of PCa cells, accompanied by upregulation of CAV1. A direct interaction between RNF214 and CAV1 was confirmed, and CAV1 ubiquitination was enhanced by RNF214. Dual knockdown of RNF214 and CAV1 restored cell growth and mTOR pathway activity, including phosphorylation of 4EBP1, S6K1, and S6. In xenograft models, tumor suppression induced by RNF214 silencing was reversed by CAV1 co-depletion. Immunohistochemistry showed corresponding changes in Ki67, PTEN, and CAV1 expression.
Conclusion:
RNF214 promotes prostate tumor progression by ubiquitinating and targeting CAV1 for degradation, thereby sustaining mTOR signaling. These findings highlight the RNF214-CAV1 axis as a potential therapeutic target in PCa.
Insights
RNF214 promotes prostate cancer by degrading CAV1 via ubiquitination, activating mTOR signaling. Targeting the RNF214-CAV1 axis may offer new prostate cancer therapies.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- RNF214 and CAV1 are known to influence tumor progression and signaling.
- The specific role of the RNF214-CAV1 interaction in prostate cancer (PCa) is not well understood.
- This study investigates the RNF214-CAV1 axis in PCa development and mTOR signaling.
Purpose of the Study:
- To elucidate the mechanism by which RNF214 affects CAV1 stability through ubiquitination.
- To determine the impact of the RNF214-CAV1 axis on prostate cancer progression.
- To explore the relationship between RNF214, CAV1, and the mTOR signaling pathway in PCa.
Main Methods:
- Assessed RNF214 expression and function in clinical PCa tissues, cell lines, and xenograft models.
- Utilized gene silencing, GST pull-down, and co-immunoprecipitation to study protein interactions and ubiquitination.
- Examined proliferation, migration, and signaling pathway markers (e.g., Ki67, PTEN, mTOR components) using in vitro and in vivo techniques.
Main Results:
- RNF214 expression was elevated, while CAV1 was downregulated in PCa, showing an inverse correlation.
- RNF214 directly interacted with CAV1, enhancing its ubiquitination and degradation, which suppressed PCa cell proliferation and migration.
- Dual knockdown of RNF214 and CAV1 restored cell growth and mTOR pathway activity, confirming the axis's role.
Conclusions:
- RNF214 promotes prostate tumor progression by ubiquitinating CAV1, leading to its degradation and sustained mTOR signaling.
- The RNF214-CAV1 axis represents a novel regulatory mechanism in prostate cancer.
- Targeting the RNF214-CAV1 interaction offers a potential therapeutic strategy for prostate cancer.
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