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Published on: August 2, 2024
Adrenergic Stimulation of DUSP1 Impairs Chemotherapy Response in Ovarian Cancer
Yu Kang1, Archana S Nagaraja2, Guillermo N Armaiz-Pena2
1Shanghai Key Laboratory of Female Reproductive Endocrine-Related Diseases, Obstetrics and Gynecology Hospital of Fudan University, Shanghai, P.R. China. Department of Gynecologic Oncology and Reproductive Medicine, The University of Texas MD Anderson Cancer Center, Houston, Texas.
Purpose:
Chronic adrenergic activation has been shown to associate with adverse clinical outcomes in cancer patients, but the underlying mechanisms are not well understood. The focus of the current study was to determine the functional and biologic effects of adrenergic pathways on response to chemotherapy in the context of ovarian cancer.
Experimental Design:
Increased DUSP1 production by sympathetic nervous system mediators (e.g., norepinephrine) was analyzed by real-time quantitative RT-PCR and by Western blotting. In vitro chemotherapy-induced cell apoptosis was examined by flow cytometry. For in vivo therapy, a well-characterized model of chronic stress was used.
Results:
Catecholamines significantly inhibited paclitaxel- and cisplatin-induced apoptosis in ovarian cancer cells. Genomic analyses of cells treated with norepinephrine identified DUSP1 as a potential mediator. DUSP1 overexpression resulted in reduced paclitaxel-induced apoptosis in ovarian cancer cells compared with control; conversely, DUSP1 gene silencing resulted in increased apoptosis compared with control cells. DUSP1 gene silencing in vivo significantly enhanced response to paclitaxel and increased apoptosis. In vitro analyses indicated that norepinephrine-induced DUSP1 gene expression was mediated through ADRB2 activation of cAMP-PLC-PKC-CREB signaling, which inhibits JNK-mediated phosphorylation of c-Jun and protects ovarian cancer cells from apoptosis. Moreover, analysis of The Cancer Genome Atlas data showed that increased DUSP1 expression was associated with decreased overall (P= 0.049) and progression-free (P= 0.0005) survival.
Conclusions:
These findings provide a new understanding of the mechanisms by which adrenergic pathways can impair response to chemotherapy and have implications for cancer management.
Insights
Adrenergic pathways, specifically norepinephrine, impair chemotherapy response in ovarian cancer by increasing DUSP1, hindering apoptosis. Targeting this pathway may improve cancer treatment outcomes.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Chronic adrenergic activation is linked to poor outcomes in cancer patients.
- Mechanisms underlying the impact of adrenergic pathways on cancer treatment remain unclear.
Purpose of the Study:
- To investigate the functional and biological effects of adrenergic signaling on chemotherapy response in ovarian cancer.
- To elucidate the role of DUSP1 in mediating these effects.
Main Methods:
- Sympathetic nervous system mediators like norepinephrine were analyzed for their effect on DUSP1 production using RT-PCR and Western blotting.
- In vitro studies assessed chemotherapy-induced apoptosis via flow cytometry.
- In vivo studies utilized a chronic stress model.
Main Results:
- Catecholamines inhibited paclitaxel- and cisplatin-induced apoptosis in ovarian cancer cells.
- Norepinephrine-induced DUSP1 expression was mediated by ADRB2 signaling, inhibiting apoptosis.
- DUSP1 overexpression reduced apoptosis, while DUSP1 gene silencing enhanced apoptosis and chemotherapy response in vivo.
- Increased DUSP1 expression correlated with poorer overall and progression-free survival in The Cancer Genome Atlas data.
Conclusions:
- Adrenergic pathways, through DUSP1 induction, can negatively impact chemotherapy efficacy in ovarian cancer.
- These findings offer novel insights into mechanisms of chemotherapy resistance and suggest potential therapeutic targets.
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