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Author Spotlight: A Selective Luciferase-Based Assay for Monitoring ATG4B 27 Activity in Cells
Published on: June 30, 2023
Identification of breast cancer cell subtypes sensitive to ATG4B inhibition
Svetlana Bortnik1,2, Courtney Choutka1,3, Hugo M Horlings4,5,6
1The Genome Sciences Centre, BC Cancer Agency, Vancouver, BC, Canada.
Abstract:
Autophagy, a lysosome-mediated degradation and recycling process, functions in advanced malignancies to promote cancer cell survival and contribute to cancer progression and drug resistance. While various autophagy inhibition strategies are under investigation for cancer treatment, corresponding patient selection criteria for these autophagy inhibitors need to be developed. Due to its central roles in the autophagy process, the cysteine protease ATG4B is one of the autophagy proteins being pursued as a potential therapeutic target. In this study, we investigated the expression of ATG4B in breast cancer, a heterogeneous disease comprised of several molecular subtypes. We examined a panel of breast cancer cell lines, xenograft tumors, and breast cancer patient specimens for the protein expression of ATG4B, and found a positive association between HER2 and ATG4B protein expression. We showed that HER2-positive cells, but not HER2-negative breast cancer cells, require ATG4B to survive under stress. In HER2-positive cells, cytoprotective autophagy was dependent on ATG4B under both starvation and HER2 inhibition conditions. Combined knockdown of ATG4B and HER2 by siRNA resulted in a significant decrease in cell viability, and the combination of ATG4B knockdown with trastuzumab resulted in a greater reduction in cell viability compared to trastuzumab treatment alone, in both trastuzumab-sensitive and -resistant HER2 overexpressing breast cancer cells. Together these results demonstrate a novel association of ATG4B positive expression with HER2 positive breast cancers and indicate that this subtype is suitable for emerging ATG4B inhibition strategies.
Insights
Autophagy inhibition targets cancer. ATG4B protein is linked to HER2-positive breast cancer, suggesting ATG4B inhibitors could treat this subtype, even with trastuzumab resistance.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- Autophagy promotes cancer survival and drug resistance.
- Targeting autophagy is a cancer treatment strategy.
- ATG4B is a key protein in autophagy and a potential therapeutic target.
Purpose of the Study:
- Investigate ATG4B expression in breast cancer subtypes.
- Determine the role of ATG4B in HER2-positive breast cancer.
- Evaluate ATG4B as a therapeutic target in combination with HER2 inhibition.
Main Methods:
- Examined ATG4B protein expression in breast cancer cell lines, xenografts, and patient specimens.
- Utilized siRNA to knockdown ATG4B and HER2.
- Assessed cell viability under stress conditions and in response to ATG4B knockdown and trastuzumab treatment.
Main Results:
- Found a positive association between HER2 and ATG4B protein expression in breast cancer.
- HER2-positive cells, unlike HER2-negative cells, require ATG4B for survival under stress.
- Combined ATG4B and HER2 inhibition significantly decreased cell viability.
- ATG4B knockdown enhanced trastuzumab efficacy in both sensitive and resistant HER2-positive cells.
Conclusions:
- ATG4B expression is associated with HER2-positive breast cancer.
- HER2-positive breast cancer patients are suitable candidates for ATG4B inhibition strategies.
- Targeting ATG4B offers a potential therapeutic approach for HER2-positive breast cancer, including resistant cases.
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