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Updated: Jun 25, 2025

Studying Triple Negative Breast Cancer Using Orthotopic Breast Cancer Model
Published on: March 20, 2020
MerTK Drives Proliferation and Metastatic Potential in Triple-Negative Breast Cancer
Mari Iida1, Bridget E Crossman1, Kourtney L Kostecki1
1Department of Human Oncology, University of Wisconsin-Madison, Madison, WI 53705, USA.
Abstract:
Triple-negative breast cancer (TNBC) is characterized by the absence of the estrogen receptor, progesterone receptor, and receptor tyrosine kinase HER2 expression. Due to the limited number of FDA-approved targeted therapies for TNBC, there is an ongoing need to understand the molecular underpinnings of TNBC for the development of novel combinatorial treatment strategies. This study evaluated the role of the MerTK receptor tyrosine kinase on proliferation and invasion/metastatic potential in TNBC. Immunohistochemical analysis demonstrated MerTK expression in 58% of patient-derived TNBC xenografts. The stable overexpression of MerTK in human TNBC cell lines induced an increase in proliferation rates, robust in vivo tumor growth, heightened migration/invasion potential, and enhanced lung metastases. NanoString nCounter analysis of MerTK-overexpressing SUM102 cells (SUM102-MerTK) revealed upregulation of several signaling pathways, which ultimately drive cell cycle progression, reduce apoptosis, and enhance cell survival. Proteomic profiling indicated increased endoglin (ENG) production in SUM102-MerTK clones, suggesting that MerTK creates a conducive environment for increased proliferative and metastatic activity via elevated ENG expression. To determine ENG's role in increasing proliferation and/or metastatic potential, we knocked out ENG in a SUM102-MerTK clone with CRISPR technology. Although this ENG knockout clone exhibited similar in vivo growth to the parental SUM102-MerTK clone, lung metastasis numbers were significantly decreased ~4-fold, indicating that MerTK enhances invasion and metastasis through ENG. Our data suggest that MerTK regulates a unique proliferative signature in TNBC, promoting robust tumor growth and increased metastatic potential through ENG upregulation. Targeting MerTK and ENG simultaneously may provide a novel therapeutic approach for TNBC patients.
Insights
MerTK receptor tyrosine kinase drives triple-negative breast cancer (TNBC) growth and metastasis, partly by increasing endoglin (ENG) expression. Simultaneous targeting of MerTK and ENG may offer new therapeutic strategies for TNBC.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- Triple-negative breast cancer (TNBC) lacks targeted therapies due to absent estrogen receptor, progesterone receptor, and HER2 expression.
- Understanding TNBC molecular drivers is crucial for developing novel combinatorial treatments.
- The role of MerTK receptor tyrosine kinase in TNBC proliferation and metastasis requires further investigation.
Purpose of the Study:
- To evaluate the role of MerTK in TNBC proliferation and invasion/metastatic potential.
- To investigate the downstream signaling pathways and molecular effectors regulated by MerTK in TNBC.
- To determine if endoglin (ENG) mediates MerTK's pro-metastatic effects in TNBC.
Main Methods:
- Immunohistochemistry to assess MerTK expression in patient-derived TNBC xenografts.
- Stable overexpression of MerTK in human TNBC cell lines (SUM102).
- NanoString nCounter analysis and proteomic profiling to identify MerTK-regulated pathways and proteins.
- CRISPR-Cas9 technology to knock out endoglin (ENG) in MerTK-overexpressing TNBC cells.
Main Results:
- MerTK was expressed in 58% of TNBC xenografts.
- MerTK overexpression increased TNBC cell proliferation, in vivo tumor growth, migration, invasion, and lung metastasis.
- MerTK signaling upregulated pathways promoting cell cycle progression and survival, and increased endoglin (ENG) production.
- ENG knockout in MerTK-overexpressing cells significantly reduced lung metastasis (~4-fold) while maintaining tumor growth.
Conclusions:
- MerTK promotes TNBC proliferation and metastasis, partly through upregulation of endoglin (ENG).
- MerTK regulates a distinct proliferative signature in TNBC.
- Simultaneous targeting of MerTK and ENG presents a potential novel therapeutic strategy for TNBC.
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