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Rac inhibition as a novel therapeutic strategy for EGFR/HER2 targeted therapy resistant breast cancer
Luis D Borrero-García1, Maria Del Mar Maldonado1, Julia Medina-Velázquez1
1Department of Biochemistry, School of Medicine, University of Puerto Rico Medical Sciences Campus, San Juan, Puerto Rico.
Background:
Even though targeted therapies are available for cancers expressing oncogenic epidermal growth receptor (EGFR) and (or) human EGFR2 (HER2), acquired or intrinsic resistance often confounds therapy success. Common mechanisms of therapy resistance involve activating receptor point mutations and (or) upregulation of signaling downstream of EGFR/HER2 to Akt and (or) mitogen activated protein kinase (MAPK) pathways. However, additional pathways of resistance may exist thus, confounding successful therapy.
Methods:
To determine novel mechanisms of EGFR/HER2 therapy resistance in breast cancer, gefitinib or lapatinib resistant variants were created from SKBR3 breast cancer cells. Syngenic therapy sensitive and resistant SKBR3 variants were characterized for mechanisms of resistance by mammosphere assays, viability assays, and western blotting for total and phospho proteins.
Results:
Gefitinib and lapatinib treatments reduced mammosphere formation in the sensitive cells, but not in the therapy resistant variants, indicating enhanced mesenchymal and cancer stem cell-like characteristics in therapy resistant cells. The therapy resistant variants did not show significant changes in known therapy resistant pathways of AKT and MAPK activities downstream of EGFR/HER2. However, these cells exhibited elevated expression and activation of the small GTPase Rac, which is a pivotal intermediate of GFR signaling in EMT and metastasis. Therefore, the potential of the Rac inhibitors EHop-016 and MBQ-167 to overcome therapy resistance was tested, and found to inhibit viability and induce apoptosis of therapy resistant cells.
Conclusions:
Rac inhibition may represent a viable strategy for treatment of EGFR/HER2 targeted therapy resistant breast cancer.
Insights
Targeted therapies for EGFR/HER2 breast cancer can fail due to resistance. This study found that inhibiting the Rac pathway can overcome this resistance, offering a new treatment strategy.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- Targeted therapies for cancers with EGFR/HER2 mutations are available but often fail due to resistance.
- Resistance mechanisms include receptor mutations and altered downstream signaling pathways (Akt, MAPK).
- Novel resistance pathways may exist, complicating treatment success.
Purpose of the Study:
- To investigate novel mechanisms of resistance to EGFR/HER2 targeted therapies in breast cancer.
- To identify potential therapeutic strategies to overcome treatment resistance.
Main Methods:
- Created gefitinib and lapatinib resistant SKBR3 breast cancer cell variants.
- Characterized sensitive and resistant variants using mammosphere, viability, and Western blot assays.
- Assessed activation of Akt, MAPK, and Rac pathways.
Main Results:
- Resistant cells showed enhanced mesenchymal and cancer stem cell characteristics.
- No significant changes in Akt or MAPK pathways were observed.
- Elevated expression and activation of the small GTPase Rac were detected in resistant cells.
- Rac inhibitors (EHop-016, MBQ-167) reduced viability and induced apoptosis in resistant cells.
Conclusions:
- Rac pathway activation is a novel mechanism of EGFR/HER2 targeted therapy resistance in breast cancer.
- Inhibiting Rac may be a viable strategy to treat resistant breast cancer.
- Rac inhibitors demonstrate potential in overcoming therapy resistance.
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