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Updated: Feb 2, 2026

Author Spotlight: Exploring the Role of FAM83A in Cervical Cancer
Published on: February 9, 2024
Brd4 inhibition suppresses HPV16 E6 expression and enhances chemoresponse: A potential new target in cervical cancer
Olga Rataj1, Juliane Haedicke-Jarboui1, Frank Stubenrauch1
1Institute for Medical Virology and Epidemiology of Viral Diseases, University Hospital Tübingen, Tübingen, Germany.
Abstract:
Although a vast amount of research underlines the roles of the HR HPV E6 and E7 oncogenes in HPV-induced carcinogenesis of cervical cancer, it remains unclear whether these oncogenes are also involved in the resistance of the cancer against chemotherapy. We examined the role of the HPV16 E6 oncogene in cisplatin resistance by analyzing its expression in newly established cisplatin-sensitive versus -resistant cervical cancer cell lines (CC7, CC10). Resistant variants were obtained by interval exposure treatment with 1-2 μM cisplatin for 8-9 months. Our results demonstrate that the expression level of HPV16 E6 directly correlates with the extent of cisplatin resistance in novel as well as established (SiHa) drug resistant cervical cancer cell lines. Overexpression of HPV16 E6 in cisplatin-naïve cells rendered these cells more resistant to cisplatin. Reducing E6 expression by JQ1 treatment reversed the drug resistant phenotype and strongly enhanced chemoresponse only in HPV-positive cisplatin-resistant variants and not in HPV-negative C33A cervical cancer cells. The level of E6 directly correlated with the extent of cisplatin sensitivity and was shown to be increased in newly established drug-resistant cell line variants, while reducing E6 expression using Brd4-inhibitors enhanced chemoresponse when co-delivered with cisplatin. Inhibition of Brd4 could represent a new therapeutic option by increasing treatment response in cervical cancer cells and might allow lower cisplatin dosages, thus reducing negative side effects.
Insights
The human papillomavirus (HPV) E6 oncogene drives cisplatin resistance in cervical cancer. Inhibiting E6 expression or Brd4 can restore chemotherapy sensitivity and reduce side effects.
Area of Science:
- Oncology
- Virology
- Molecular Biology
Background:
- High-risk human papillomavirus (HR HPV) E6 and E7 oncogenes are key in cervical cancer development.
- The role of these oncogenes in chemotherapy resistance remains largely unexplored.
Purpose of the Study:
- To investigate the involvement of the HPV16 E6 oncogene in cisplatin resistance in cervical cancer.
- To explore potential therapeutic strategies targeting E6 for enhanced chemotherapy response.
Main Methods:
- Established cisplatin-sensitive and resistant cervical cancer cell lines (CC7, CC10, SiHa).
- Analyzed HPV16 E6 expression levels in relation to cisplatin resistance.
- Utilized JQ1 and Brd4 inhibitors to modulate E6 expression and assess chemoresponse.
Main Results:
- HPV16 E6 expression positively correlated with cisplatin resistance in both novel and established cell lines.
- Overexpressing E6 increased cisplatin resistance in naïve cells.
- Reducing E6 expression via Brd4 inhibition reversed resistance and enhanced cisplatin efficacy in HPV-positive cells.
Conclusions:
- HPV16 E6 oncogene expression is a significant factor in cisplatin resistance in cervical cancer.
- Targeting E6 or Brd4 offers a potential therapeutic strategy to overcome chemoresistance.
- Brd4 inhibition may enable lower cisplatin dosages, reducing adverse effects.
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