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Updated: May 11, 2026

Tropomodulin 3 Overexpression as a Marker for Platinum Resistance and Immune Infiltration in Ovarian Cancer
Published on: August 2, 2024
TR3 modulates platinum resistance in ovarian cancer
Andrew J Wilson1, Annie Y Liu, Joseph Roland
1Division of Gynecologic Oncology, Department of Obstetrics and Gynecology, Vanderbilt University School of Medicine, B1100 Medical Center North, Nashville, TN 37232, USA.
Abstract:
In metastatic ovarian cancer, resistance to platinum chemotherapy is common. Although the orphan nuclear receptor TR3 (nur77/NR4A1) is implicated in mediating chemotherapy-induced apoptosis in cancer cells, its role in ovarian cancer has not been determined. In an ovarian cancer tissue microarray, TR3 protein expression was elevated in stage I tumors, but downregulated in a significant subset of metastatic tumors. Moreover, TR3 expression was significantly lower in platinum-resistant tumors in patients with metastatic disease, and low TR3 staining was associated with poorer overall and progression-free survival. We have identified a direct role for TR3 in cisplatin-induced apoptosis in ovarian cancer cells. Nucleus-to-cytoplasm translocation of TR3 was observed in cisplatin-sensitive (OVCAR8, OVCAR3, and A2780PAR) but not cisplatin-resistant (NCI/ADR-RES and A2780CP20) ovarian cancer cells. Immunofluorescent analyses showed clear overlap between TR3 and mitochondrial Hsp60 in cisplatin-treated cells, which was associated with cytochrome c release. Ovarian cancer cells with stable shRNA- or transient siRNA-mediated TR3 downregulation displayed substantial reduction in cisplatin effects on apoptotic markers and cell growth in vitro and in vivo. Mechanistic studies showed that the cisplatin-induced cytoplasmic TR3 translocation required for apoptosis induction was regulated by JNK activation and inhibition of Akt. Finally, cisplatin resistance was partially overcome by ectopic TR3 overexpression and by treatment with the JNK activator anisomycin and Akt pathway inhibitor, wortmannin. Our results suggest that disruption of TR3 activity, via downregulation or nuclear sequestration, likely contributes to platinum resistance in ovarian cancer. Moreover, we have described a treatment strategy aimed at overcoming platinum resistance by targeting TR3.
Insights
Reduced expression of TR3 (nuclear receptor subfamily 4 group A member 1) is linked to platinum resistance in ovarian cancer. Restoring TR3 levels may help overcome this resistance.
Area of Science:
- Oncology
- Molecular Biology
- Cellular Biology
Background:
- Platinum chemotherapy resistance is a significant challenge in metastatic ovarian cancer.
- The role of the orphan nuclear receptor TR3 (NR4A1) in ovarian cancer chemoresistance was previously undetermined.
Purpose of the Study:
- To investigate the role of TR3 in ovarian cancer chemoresistance.
- To explore TR3's mechanism in cisplatin-induced apoptosis.
- To evaluate TR3 as a therapeutic target for overcoming platinum resistance.
Main Methods:
- Analysis of TR3 protein expression in ovarian cancer tissue microarrays.
- Assessment of TR3 localization and its correlation with apoptosis markers in cisplatin-sensitive and resistant cell lines.
- In vitro and in vivo studies using TR3 downregulation (shRNA/siRNA) and overexpression.
- Investigation of signaling pathways (JNK, Akt) regulating TR3 translocation.
Main Results:
- TR3 expression was downregulated in metastatic and platinum-resistant ovarian tumors, correlating with poorer survival.
- TR3 translocation from the nucleus to the cytoplasm upon cisplatin treatment was observed in sensitive cells but not resistant cells.
- TR3 downregulation reduced cisplatin-induced apoptosis and cell death.
- TR3 cytoplasmic translocation was regulated by JNK activation and Akt inhibition.
- Ectopic TR3 expression and modulation of JNK/Akt pathways partially overcame cisplatin resistance.
Conclusions:
- Downregulation or nuclear sequestration of TR3 contributes to platinum resistance in ovarian cancer.
- TR3 plays a critical role in mediating cisplatin-induced apoptosis.
- Targeting TR3 presents a potential strategy to overcome platinum resistance in ovarian cancer.
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