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RNF20 Is Critical for Snail-Mediated E-Cadherin Repression in Human Breast Cancer
Danping Wang1,2, Yifan Wang1,2,3, Xuebiao Wu4
1Department of Pathology and Pathophysiology, and Department of Surgical Oncology of the Second Affiliated Hospital, Zhejiang University School of Medicine, Hangzhou, China.
Background:
E-cadherin, a hallmark of epithelial-mesenchymal transition (EMT), is often repressed due to Snail-mediated epigenetic modification; however, the exact mechanism remains unclear. There is an urgent need to understand the determinants of tumor aggressiveness and identify potential therapeutic targets in breast cancer.
Experimental Design:
We studied the association of RNF20 with Snail and G9a by co-immunoprecipitation. We employed quantitative real-time PCR, ChIP, transwell assay, colony formation assay, and mammosphere assay to dissect the molecular events associated with the repression of E-cadherin in human breast cancer. We used a proteogenomic dataset that contains 105 breast tumor samples to determine the clinical relevance of RNF20 by Kaplan-Meier analyses.
Results:
In this study, we identified that Snail interacted with RNF20, an E3 ubiquitin-protein ligase responsible for monoubiquitination of H2BK120, and G9a, a methyltransferase for H3K9me2. RNF20 expression led to the inhibition of E-cadherin expression in the human breast cancer cells. Mechanically, we showed that RNF20 and H3K9m2 were enriched on the promoter of E-cadherin and knockdown of Snail reduced the enrichment of RNF20, showing a Snail-dependent manner. RNF20 expression enhanced breast cancer cell migration, invasion, tumorsphere and colony formation. Clinically, patients with high RNF20 expression had shorter overall survival.
Conclusion:
RNF20 expression contributes to EMT induction and breast cancer progression through Snail-mediated epigenetic suppression of E-cadherin expression, suggesting the importance of RNF20 in breast cancer.
Insights
RNF20 promotes breast cancer progression by epigenetically silencing E-cadherin via Snail. High RNF20 expression correlates with shorter survival, highlighting its role in tumor aggressiveness.
Area of Science:
- Molecular Biology
- Cancer Research
- Epigenetics
Background:
- E-cadherin is crucial in epithelial-mesenchymal transition (EMT) and often repressed in breast cancer.
- The precise mechanism of Snail-mediated E-cadherin repression requires further elucidation.
- Understanding breast cancer aggressiveness and identifying therapeutic targets are critical.
Purpose of the Study:
- To investigate the role of RNF20 in Snail-mediated epigenetic repression of E-cadherin in breast cancer.
- To determine the clinical relevance of RNF20 in breast cancer progression.
Main Methods:
- Co-immunoprecipitation to study RNF20-Snail-G9a interactions.
- Quantitative PCR, ChIP, transwell, colony formation, and mammosphere assays to analyze molecular events.
- Proteogenomic data from 105 breast tumors for Kaplan-Meier survival analysis.
Main Results:
- Snail interacts with RNF20 (E3 ubiquitin-protein ligase) and G9a (H3K9me2 methyltransferase).
- RNF20 expression inhibits E-cadherin and enhances breast cancer cell migration, invasion, and tumorsphere formation.
- RNF20 and H3K9me2 enrichment at the E-cadherin promoter is Snail-dependent; high RNF20 correlates with shorter patient survival.
Conclusions:
- RNF20 promotes EMT and breast cancer progression by epigenetically suppressing E-cadherin in a Snail-dependent manner.
- RNF20 is a potential therapeutic target for breast cancer.
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