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Ginsenoside Rh2 Suppresses the Fanconi Anemia Pathway by Inhibiting NF-κB-Mediated FANCL Transcription in Bladder
Chen Li1, Guanglin Lv1, Zhuang Xiong1
1Department of Urology, Wuxi No. 2 People's Hospital, Wuxi, China.
Objectives:
Cisplatin, a frontline chemotherapeutic agent for bladder cancer (BC), induces DNA interstrand crosslinks that are primarily repaired through the Fanconi anemia (FA) pathway. Hyperactivation of this repair mechanism contributes to cisplatin resistance, underscoring the need for FA-targeted sensitizers. This study investigated the effect of ginsenoside Rh2 on FA signaling and cisplatin sensitivity in bladder cancer cells.
Methods:
Bladder cancer cell lines (T24, 5637, and RT4) were treated with cisplatin, with or without Rh2 pretreatment. FANCI/FANCD2 (ID2) complex monoubiquitination, FANCD2 foci formation, and interactions with downstream repair proteins (FANCP, FANCQ, PCNA) were examined. FANCL expression was analyzed at the transcriptional level, and rescue experiments were performed by FANCL overexpression. NF-κB signaling involvement was assessed using pharmacological agonists. A T24 xenograft model was used to validate in vivo efficacy.
Results:
Cisplatin induced ID2 complex monoubiquitination, confirming FA pathway activation. Rh2 pretreatment abolished this modification and reduced FANCD2 foci formation, leading to persistent interstrand crosslinks without affecting intrastrand repair. Rh2 disrupted FANCD2- FANCP/FANCQ/PCNA interactions and selectively suppressed FANCL transcription. Overexpression of FANCL restored ID2 monoubiquitination despite Rh2 exposure. NF-κB agonists reversed Rh2-induced FANCL downregulation and FA inhibition. In vivo, Rh2 combined with cisplatin significantly reduced tumor growth in T24 xenografts, whereas NF-κB stimulation counteracted this effect.
Conclusion:
Ginsenoside Rh2 suppresses NF-κB signaling to transcriptionally downregulate FANCL, thereby impairing FA pathway-mediated DNA repair and enhancing cisplatin cytotoxicity in bladder cancer. These findings highlight Rh2 as a potential combinatorial agent to overcome platinum resistance.
Insights
Ginsenoside Rh2 enhances cisplatin effectiveness in bladder cancer by blocking the Fanconi anemia (FA) DNA repair pathway. This natural compound targets NF-κB signaling, reducing FANCL expression and improving chemotherapy outcomes.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Cisplatin is a key chemotherapy for bladder cancer (BC).
- The Fanconi anemia (FA) pathway repairs cisplatin-induced DNA damage, but its hyperactivation leads to resistance.
- Targeting the FA pathway is crucial for overcoming cisplatin resistance in BC.
Purpose of the Study:
- To investigate the impact of ginsenoside Rh2 on FA signaling.
- To determine if Rh2 can sensitize bladder cancer cells to cisplatin.
Main Methods:
- Bladder cancer cell lines were treated with cisplatin and/or Rh2.
- FA pathway activation markers (ID2 monoubiquitination, FANCD2 foci) were assessed.
- FANCL expression, protein interactions, and NF-κB signaling were analyzed.
- In vivo efficacy was tested using a T24 xenograft model.
Main Results:
- Rh2 pretreatment inhibited cisplatin-induced FA pathway activation by reducing ID2 monoubiquitination and FANCD2 foci.
- Rh2 suppressed FANCL transcription and disrupted key protein interactions within the FA pathway.
- FANCL overexpression rescued the FA inhibition caused by Rh2.
- NF-κB signaling agonists reversed Rh2's effects on FANCL and FA inhibition.
- In vivo, Rh2 combined with cisplatin significantly inhibited tumor growth, an effect counteracted by NF-κB stimulation.
Conclusions:
- Ginsenoside Rh2 enhances cisplatin cytotoxicity in bladder cancer by inhibiting the FA DNA repair pathway via suppression of NF-κB signaling and FANCL transcription.
- Rh2 shows potential as a sensitizing agent to overcome platinum resistance in bladder cancer treatment.
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