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Antiestrogenic effects of the novel sphingosine kinase-2 inhibitor ABC294640
James W Antoon1, Martin D White, William D Meacham
1Department of Pharmacology, Tulane University School of Medicine, New Orleans, Louisiana 70112, USA.
Abstract:
Alterations in sphingolipid metabolism have been shown to contribute to the development of endocrine resistance and breast cancer tumor survival. Sphingosine kinase (SK), in particular, is overexpressed in breast cancer and is a promising target for breast cancer drug development. In this study, we used the novel SK inhibitor ABC294640 as a tool to explore the relationship between SK and estrogen (E2) receptor (ER) signaling in breast cancer cells. Treatment with ABC294640 decreased E2-stimulated ERE-luciferase activity in both MCF-7 and ER-transfected HEK293 cells. Furthermore, the inhibitor reduced E2-mediated transcription of the ER-regulated genes progesterone receptor and SDF-1. Competitive receptor-binding assays revealed that ABC294640 binds in the antagonist ligand-binding domain of the ER, acting as a partial antagonist similar to tamoxifen. Finally, treatment with ABC294640 inhibited ER-positive breast cancer tumor formation in vivo. After 15 d of treatment with ABC294640, tumor volume was reduced by 68.4% (P < 0.05; n = 5) compared with control tumors, with no marked weight loss or illness. Taken together, these results provide strong evidence that this novel SK inhibitor, which had not previously been known to interact with E2 signaling pathways, has therapeutic potential in treating ER-positive breast cancer via inhibition of both SK and ER signaling.
Insights
A novel sphingosine kinase (SK) inhibitor, ABC294640, shows therapeutic potential for estrogen receptor-positive breast cancer. It effectively inhibits both SK and estrogen receptor (ER) signaling, reducing tumor growth.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Sphingolipid metabolism alterations are linked to endocrine resistance and breast cancer survival.
- Sphingosine kinase (SK) is overexpressed in breast cancer, making it a potential drug target.
Purpose of the Study:
- To investigate the relationship between SK and estrogen receptor (ER) signaling in breast cancer cells.
- To evaluate the therapeutic potential of the novel SK inhibitor ABC294640.
Main Methods:
- Utilized ABC294640, a novel SK inhibitor.
- Assessed E2-stimulated ERE-luciferase activity in MCF-7 and ER-transfected HEK293 cells.
- Performed competitive receptor-binding assays and in vivo tumor formation studies.
Main Results:
- ABC294640 decreased E2-stimulated ERE-luciferase activity and ER-regulated gene transcription.
- ABC294640 acts as a partial antagonist of the ER, similar to tamoxifen.
- Inhibition of ABC294640 significantly reduced ER-positive breast cancer tumor volume in vivo (68.4% reduction).
Conclusions:
- The novel SK inhibitor ABC294640 demonstrates therapeutic potential for ER-positive breast cancer.
- ABC294640 inhibits both SK and ER signaling pathways, leading to reduced tumor growth.
- This compound offers a dual-action therapeutic strategy for breast cancer treatment.
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