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DUSP4 is associated with increased resistance against anti-HER2 therapy in breast cancer
Otília Menyhart1, Jan Budczies2, Gyöngyi Munkácsy1
1Semmelweis University 2nd Department of Pediatrics, Budapest, Hungary.
Abstract:
The majority of patients develop resistance against suppression of HER2-signaling mediated by trastuzumab in HER2 positive breast cancer (BC). HER2 overexpression activates multiple signaling pathways, including the mitogen-activated protein kinase (MAPK) cascade. MAPK phosphatases (MKPs) are essential regulators of MAPKs and participate in many facets of cellular regulation, including proliferation and apoptosis. We aimed to identify whether differential MKPs are associated with resistance to targeted therapy in patients previously treated with trastuzumab. Using gene chip data of 88 HER2-positive, trastuzumab treated BC patients, candidate MKPs were identified by Receiver Operator Characteristics analysis performed in R. Genes were ranked using their achieved area under the curve (AUC) values and were further restricted to markers significantly associated with worse survival. Functional significance of the two strongest predictive markers was evaluated in vitro by gene silencing in HER2 overexpressing, trastuzumab resistant BC cell lines SKTR and JIMT-1. The strongest predictive MKPs were DUSP4/MKP-2 (AUC=0.75, p=0.0096) and DUSP6/MKP-3 (AUC=0.77, p=5.29E-05). Higher expression for these correlated to worse survival (DUSP4: HR=2.05, p=0.009 and DUSP6: HR=2, p=0.0015). Silencing of DUSP4 had significant sensitization effects - viability of DUSP4 siRNA transfected, trastuzumab treated cells decreased significantly compared to scramble-siRNA transfected controls (SKTR: p=0.016; JIMT-1: p=0.016). In contrast, simultaneous treatment with DUSP6 siRNA and trastuzumab did not alter cell proliferation. Our findings suggest that DUSP4 may represent a new potential target to overcome trastuzumab resistance.
Insights
Resistance to trastuzumab in HER2-positive breast cancer is linked to MAPK phosphatases (MKPs). DUSP4, a specific MKP, shows potential as a new target to overcome this resistance.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Trastuzumab is a targeted therapy for HER2-positive breast cancer (BC).
- Many patients develop resistance to trastuzumab, necessitating new therapeutic strategies.
- HER2 signaling activates pathways like MAPK, regulated by MAPK phosphatases (MKPs).
Purpose of the Study:
- To identify specific MKPs associated with trastuzumab resistance in HER2-positive BC.
- To evaluate the functional role of key MKPs in overcoming treatment resistance.
- To explore DUSP4 as a potential therapeutic target for resistant breast cancer.
Main Methods:
- Gene chip data analysis of 88 HER2-positive BC patients treated with trastuzumab.
- Receiver Operator Characteristics (ROC) analysis to identify candidate MKPs.
- In vitro gene silencing using siRNA in trastuzumab-resistant BC cell lines (SKTR, JIMT-1).
Main Results:
- DUSP4/MKP-2 and DUSP6/MKP-3 were identified as the strongest predictive MKPs for trastuzumab resistance.
- Higher expression of DUSP4 and DUSP6 correlated with worse patient survival.
- Silencing DUSP4 sensitized resistant cells to trastuzumab, significantly reducing viability.
- Silencing DUSP6 did not affect cell proliferation in combination with trastuzumab.
Conclusions:
- DUSP4 is strongly associated with trastuzumab resistance in HER2-positive breast cancer.
- DUSP4 warrants further investigation as a potential therapeutic target to overcome trastuzumab resistance.
- Targeting DUSP4 may offer a novel strategy for treating patients with resistant HER2-positive breast cancer.
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