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Updated: Nov 24, 2025

Murine Model for Non-invasive Imaging to Detect and Monitor Ovarian Cancer Recurrence
Published on: November 2, 2014
UBE2N Regulates Paclitaxel Sensitivity of Ovarian Cancer via Fos/P53 Axis
Qiuyuan Zhu1, Jieyuan Chen1, Peipei Pan2
1Department of Gynecology, The First Affiliated Hospital of Wenzhou Medical University, Wenzhou, Zhejiang 325000, People's Republic of China.
Background:
Chemo-resistance is still considered one of the key factors in the mortality of ovarian cancer. In this work, we found that ubiquitin-conjugating enzyme E2 N (UBE2N) is downregulated in paclitaxel-resistant ovarian cancer cells. It suggests UBE2N to be critical in the regulation of paclitaxel sensitivity in ovarian cancer.
Materials And Methods:
Ovarian cancer cells with stably overexpressed UBE2N were injected into nude mice to assess tumor growth and paclitaxel sensitivity in vivo. The MTT assay was applied to observe the effect of UBE2N expression on paclitaxel sensitivity. A real-time PCR array, specific for human cancer drug resistance, was used to examine the potential downstream target genes of UBE2N. The expression of UBE2N and potential downstream target genes was determined by Western blotting. The analysis of Gene Ontology and protein-protein interactions of these differentially expressed genes (DEGs) was performed using online tools. To evaluate the prognostic value of hub genes expression for ovarian cancer patients treated with paclitaxel, we applied the online survival analysis tool.
Results:
Overexpressed UBE2N enhanced the paclitaxel sensitivity of ovarian cancer cells in vitro and in vivo. Thirteen upregulated DEGs and 11 downregulated DEGs were identified when we knockdown UBE2N. Meanwhile, 9 hub genes with a high degree of connectivity were selected. Only Fos proto-oncogene, AP-1 transcription factor subunit (Fos), was overexpressed upon decreasing UBE2N levels, indicating a poor outcome for patients treated with paclitaxel. Moreover, reduced UBE2N could increase Fos expression and reduce P53. Furthermore, reversed regulation of Fos and P53 based on UBE2N reduction could reverse paclitaxel sensitivity, respectively.
Conclusion:
Our study suggests that UBE2N could be used as a therapeutic agent for paclitaxel-resistant ovarian cancer through Fos/P53 pathway. Further studies are needed to elucidate the specific mechanism.
Insights
Ubiquitin-conjugating enzyme E2 N (UBE2N) downregulation is linked to paclitaxel resistance in ovarian cancer. Restoring UBE2N shows potential for overcoming chemo-resistance by targeting the Fos/P53 pathway.
Area of Science:
- Oncology
- Molecular Biology
- Drug Resistance
Background:
- Chemo-resistance significantly contributes to ovarian cancer mortality.
- Downregulation of ubiquitin-conjugating enzyme E2 N (UBE2N) observed in paclitaxel-resistant ovarian cancer cells.
- UBE2N plays a critical role in regulating paclitaxel sensitivity in ovarian cancer.
Purpose of the Study:
- To investigate the role of UBE2N in paclitaxel resistance in ovarian cancer.
- To identify downstream targets of UBE2N involved in chemo-resistance.
- To evaluate UBE2N as a potential therapeutic target for overcoming paclitaxel resistance.
Main Methods:
- In vivo studies using nude mice injected with ovarian cancer cells overexpressing UBE2N.
- MTT assay to assess paclitaxel sensitivity.
- Real-time PCR array and Western blotting to analyze UBE2N and downstream gene expression.
- Bioinformatic analysis (Gene Ontology, protein-protein interactions) of differentially expressed genes.
- Survival analysis to evaluate prognostic value of hub genes.
Main Results:
- Overexpression of UBE2N enhanced paclitaxel sensitivity both in vitro and in vivo.
- Knockdown of UBE2N led to differential expression of 24 genes, with Fos proto-oncogene, AP-1 transcription factor subunit (Fos) being upregulated.
- Reduced UBE2N increased Fos expression and decreased P53 expression.
- Reversing Fos and P53 regulation counteracted the effect of UBE2N reduction on paclitaxel sensitivity.
Conclusions:
- UBE2N is a critical regulator of paclitaxel sensitivity in ovarian cancer.
- The Fos/P53 pathway is implicated in UBE2N-mediated chemo-resistance.
- UBE2N holds potential as a therapeutic agent for paclitaxel-resistant ovarian cancer.
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