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Author Spotlight: Exploring Salidroside's Molecular Mechanisms in Breast Cancer Treatment
Published on: June 9, 2023
Endocrine Therapy-Resistant Breast Cancer Cells Are More Sensitive to Ceramide Kinase Inhibition and Elevated
Purab Pal1, Alec Millner2, Svetlana E Semina1
1Department of Physiology and Biophysics, College of Medicine, University of Illinois at Chicago, Chicago, IL 60612, USA.
Abstract:
ET resistance is a critical problem for estrogen receptor-positive (ER+) breast cancer. In this study, we have investigated how alterations in sphingolipids promote cell survival in ET-resistant breast cancer. We have performed LC-MS-based targeted sphingolipidomics of tamoxifen-sensitive and -resistant MCF-7 breast cancer cell lines. Follow-up studies included treatments of cell lines and patient-derived xenograft organoids (PDxO) with small molecule inhibitors; cytometric analyses to measure cell death, proliferation, and apoptosis; siRNA-mediated knockdown; RT-qPCR and Western blot for gene and protein expression; targeted lipid analysis; and lipid addback experiments. We found that tamoxifen-resistant cells have lower levels of ceramides and hexosylceramides compared to their tamoxifen-sensitive counterpart. Upon perturbing the sphingolipid pathway with small molecule inhibitors of key enzymes, we identified that CERK is essential for tamoxifen-resistant breast cancer cell survival, as well as a fulvestrant-resistant PDxO. CERK inhibition induces ceramide-mediated cell death in tamoxifen-resistant cells. Ceramide-1-phosphate (C1P) partially reverses CERK inhibition-induced cell death in tamoxifen-resistant cells, likely through lowering endogenous ceramide levels. Our findings suggest that ET-resistant breast cancer cells maintain lower ceramide levels as an essential pro-survival mechanism. Consequently, ET-resistant breast cancer models have a unique dependence on CERK as its activity can inhibit de novo ceramide production.
Insights
Estrogen receptor-positive breast cancer develops resistance to endocrine therapy (ET). This study reveals that lower ceramide levels promote survival in ET-resistant cells, highlighting Ceramide Kinase (CERK) as a therapeutic target.
Area of Science:
- Biochemistry
- Oncology
- Cell Biology
Background:
- Endocrine therapy (ET) resistance is a major challenge in estrogen receptor-positive (ER+) breast cancer treatment.
- Sphingolipid metabolism alterations are implicated in cancer cell survival and drug resistance.
Purpose of the Study:
- To investigate the role of sphingolipids in promoting cell survival in ET-resistant breast cancer.
- To identify potential therapeutic targets within the sphingolipid pathway for overcoming ET resistance.
Main Methods:
- LC-MS-based targeted sphingolipidomics on tamoxifen-sensitive and -resistant MCF-7 breast cancer cell lines.
- Treatment of cell lines and patient-derived xenograft organoids (PDxO) with small molecule inhibitors.
- Cytometric analyses, siRNA-mediated knockdown, RT-qPCR, Western blot, and lipid addback experiments.
Main Results:
- Tamoxifen-resistant cells exhibit lower ceramide and hexosylceramide levels compared to sensitive cells.
- Inhibition of Ceramide Kinase (CERK) induces ceramide-mediated cell death in ET-resistant cells and a fulvestrant-resistant PDxO.
- Ceramide-1-phosphate (C1P) partially reverses CERK inhibition-induced cell death, suggesting a role in modulating endogenous ceramide levels.
Conclusions:
- ET-resistant breast cancer cells maintain lower ceramide levels as a pro-survival mechanism.
- CERK is essential for ET-resistant breast cancer cell survival and represents a potential therapeutic vulnerability.
- Targeting CERK may offer a novel strategy to overcome endocrine therapy resistance in ER+ breast cancer.
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