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RNF168 cooperates with RNF8 to mediate FOXM1 ubiquitination and degradation in breast cancer epirubicin treatment
M Kongsema1, S Zona1, U Karunarathna1
1Department of Surgery and Cancer, Imperial College London, London, UK.
Abstract:
The forkhead box M1 (FOXM1) transcription factor has a central role in genotoxic agent response in breast cancer. FOXM1 is regulated at the post-translational level upon DNA damage, but the key mechanism involved remained enigmatic. RNF168 is a ubiquitination E3-ligase involved in DNA damage response. Western blot and gene promoter-reporter analyses showed that the expression level and transcriptional activity of FOXM1 reduced upon RNF168 overexpression and increased with RNF168 depletion by siRNA, suggesting that RNF168 negatively regulates FOXM1 expression. Co-immunoprecipitation studies in MCF-7 cells revealed that RNF168 interacted with FOXM1 and that upon epirubicin treatment FOXM1 downregulation was associated with an increase in RNF168 binding and conjugation to the protein degradation-associated K48-linked polyubiquitin chains. Consistently, RNF168 overexpression resulted in an increase in turnover of FOXM1 in MCF-7 cells treated with the protein synthesis inhibitor cycloheximide. Conversely, RNF168, knockdown significantly enhanced the half-life of FOXM1 in both absence and presence of epirubicin. Using a SUMOylation-defective FOXM1-5x(K>R) mutant, we demonstrated that SUMOylation is required for the recruitment of RNF168 to mediate FOXM1 degradation. In addition, clonogenic assays also showed that RNF168 mediates epirubicin action through targeting FOXM1, as RNF168 could synergise with epirubicin to repress clonal formation in wild-type but not in FOXM1-deficient mouse embryo fibroblasts (MEFs). The physiological relevance of RNF168-mediated FOXM1 repression is further emphasized by the significant inverse correlation between FOXM1 and RNF168 expression in breast cancer patient samples. Moreover, we also obtained evidence that RNF8 recruits RNF168 to FOXM1 upon epirubicin treatment and cooperates with RNF168 to catalyse FOXM1 ubiquitination and degradation. Collectively, these data suggest that RNF168 cooperates with RNF8 to mediate the ubiquitination and degradation of SUMOylated FOXM1 in breast cancer genotoxic response.
Insights
RNF168 targets forkhead box M1 (FOXM1) for degradation in breast cancer cells responding to DNA damage. This E3-ligase, cooperating with RNF8, mediates epirubicin
Area of Science:
- Molecular Biology
- Cancer Research
- Cellular Signaling
Background:
- Forkhead box M1 (FOXM1) is crucial for breast cancer's response to genotoxic agents.
- Post-translational regulation of FOXM1 during DNA damage is not fully understood.
- RNF168, an E3-ubiquitin ligase, plays a role in DNA damage response.
Purpose of the Study:
- To elucidate the mechanism by which RNF168 regulates FOXM1 expression and activity.
- To investigate the role of RNF168 in mediating the effects of genotoxic agents on FOXM1.
- To explore the therapeutic potential of targeting the RNF168-FOXM1 axis in breast cancer.
Main Methods:
- Western blotting and gene promoter-reporter assays to assess FOXM1 expression and activity.
- Co-immunoprecipitation and ubiquitination assays to study protein interactions and modifications.
- Clonogenic assays in mouse embryo fibroblasts (MEFs) to evaluate functional consequences.
- Analysis of breast cancer patient samples for expression correlation.
Main Results:
- RNF168 overexpression reduced FOXM1 expression and activity, while RNF168 depletion increased them.
- RNF168 directly interacted with FOXM1, promoting its K48-linked polyubiquitination and degradation upon epirubicin treatment.
- SUMOylation of FOXM1 was necessary for RNF168 recruitment and subsequent degradation.
- RNF168 and RNF8 cooperate to ubiquitinate and degrade SUMOylated FOXM1, enhancing epirubicin's efficacy.
- An inverse correlation between FOXM1 and RNF168 expression was observed in breast cancer patients.
Conclusions:
- RNF168 acts as a negative regulator of FOXM1 in breast cancer genotoxic response.
- The RNF168-RNF8 complex targets SUMOylated FOXM1 for degradation, mediating epirubicin's action.
- Targeting RNF168 may represent a therapeutic strategy to enhance genotoxic agent efficacy in breast cancer.
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