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Activity of ABCG2 Is Regulated by Its Expression and Localization in DHT and Cyclopamine-Treated Breast Cancer Cells
Vivian Y L Chua1,2, Irma Larma3, Jennet Harvey2
1Anatomical Pathology, PathWest Laboratory Medicine, Royal Perth Hospital, Perth, Western Australia, Australia.
Abstract:
Elevated expression of the efflux transporter, ATP-binding cassette subfamily G isoform 2 (ABCG2) on the plasma membrane of cancer cells contributes to the development of drug resistance and is a key characteristic of cancer stem cells. In this study, gene expression analysis identified that treatment of the MCF-7 and T-47D breast cancer cell lines with the androgen, 5α-dihydrotestosterone (DHT), and the Hedgehog signaling inhibitor, cyclopamine downregulated ABCG2 mRNA levels. In MCF-7 cells, and in Hoechst 33342(lo) /CD44(hi) /CD24(lo) breast cancer stem-like cells isolated from MCF-7 cultures, ABCG2 was accumulated in cell-to-cell junction complexes and in large cytoplasmic aggresome-like vesicles. DHT treatments, which decreased cellular ABCG2 protein levels, led to diminished ABCG2 localization in both cell-to-cell junction complexes and in cytoplasmic vesicles. In contrast, cyclopamine, which did not alter ABCG2 protein levels, induced accumulation of ABCG2 in cytoplasmic vesicles, reducing its localization in cell-to-cell junction complexes. The reduced localization of ABCG2 at the plasma membrane of MCF-7 cells was associated with decreased efflux of the ABCG2 substrate, mitoxantrone, and increased sensitivity of cyclopamine-treated cultures to the cytotoxic effects of mitoxantrone. Together, these findings indicate that DHT and cyclopamine reduce ABCG2 activity in breast cancer cells by distinct mechanisms, providing evidence to advocate the adjunct use of analogous pharmaceutics to increase or prolong the efficacy of breast cancer treatments. J. Cell. Biochem. 117: 2249-2259, 2016. © 2016 Wiley Periodicals, Inc.
Insights
This study shows that 5α-dihydrotestosterone (DHT) and cyclopamine reduce ATP-binding cassette subfamily G isoform 2 (ABCG2) in breast cancer cells. These findings suggest combining these agents may enhance breast cancer treatment efficacy.
Area of Science:
- Biochemistry
- Molecular Biology
- Oncology
Background:
- Elevated ATP-binding cassette subfamily G isoform 2 (ABCG2) expression on cancer cell membranes drives drug resistance and identifies cancer stem cells.
- ABCG2 efflux transporter activity is a critical factor in multidrug resistance (MDR) in various cancers.
Purpose of the Study:
- To investigate the effects of 5α-dihydrotestosterone (DHT) and the Hedgehog signaling inhibitor cyclopamine on ABCG2 expression and localization in breast cancer cells.
- To determine the impact of these agents on ABCG2 activity and breast cancer cell sensitivity to chemotherapy.
Main Methods:
- Gene expression analysis of ABCG2 mRNA levels in MCF-7 and T-47D breast cancer cell lines treated with DHT and cyclopamine.
- Immunofluorescence microscopy to visualize ABCG2 protein localization in cell-to-cell junctions and cytoplasmic vesicles.
- Assessment of mitoxantrone efflux and cytotoxicity in treated cells.
Main Results:
- Both DHT and cyclopamine downregulated ABCG2 mRNA levels.
- DHT decreased ABCG2 protein levels and its localization at cell junctions and cytoplasmic vesicles.
- Cyclopamine increased ABCG2 accumulation in cytoplasmic vesicles, reducing plasma membrane localization, and enhanced sensitivity to mitoxantrone.
Conclusions:
- DHT and cyclopamine reduce ABCG2 activity through distinct mechanisms in breast cancer cells.
- Targeting ABCG2 with agents like DHT or cyclopamine may offer novel strategies to overcome drug resistance.
- Adjunct use of such agents could potentially increase or prolong the efficacy of breast cancer treatments.
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