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.

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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