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Published on: February 21, 2014
DAXX Suppresses Tumor-Initiating Cells in Estrogen Receptor-Positive Breast Cancer Following Endocrine Therapy
Daniel S Peiffer1, Debra Wyatt2, Andrei Zlobin2
1MD/PhD and Integrated Cell Biology Programs, Loyola University Chicago Stritch School of Medicine, Maywood, Illinois.
Abstract:
Estrogen receptor (ER)-positive breast cancer recurrence is thought to be driven by tumor-initiating cells (TIC). TICs are enriched by endocrine therapy through NOTCH signaling. Side effects have limited clinical trial testing of NOTCH-targeted therapies. Death-associated factor 6 (DAXX) is a newly identified marker whose RNA expression inversely correlates with NOTCH in human ER+ breast tumor samples. In this study, knockdown and overexpression approaches were used to investigate the role of DAXX on stem/pluripotent gene expression, TIC survival in vitro, and TIC frequency in vivo, and the mechanism by which DAXX suppresses TICs in ER+ breast cancer. 17β-Estradiol (E2)-mediated ER activation stabilized the DAXX protein, which was required for repressing stem/pluripotent genes (NOTCH4, SOX2, OCT4, NANOG, and ALDH1A1), and TICs in vitro and in vivo. Conversely, endocrine therapy promoted rapid protein depletion due to increased proteasome activity. DAXX was enriched at promoters of stem/pluripotent genes, which was lost with endocrine therapy. Ectopic expression of DAXX decreased stem/pluripotent gene transcripts to levels similar to E2 treatment. DAXX-mediated repression of stem/pluripotent genes and suppression of TICs was dependent on DNMT1. DAXX or DNMT1 was necessary to inhibit methylation of CpGs within the SOX2 promoter and moderately within the gene body of NOTCH4, NOTCH activation, and TIC survival. E2-mediated stabilization of DAXX was necessary and sufficient to repress stem/pluripotent genes by recruiting DNMT1 to methylate some promoters and suppress TICs. These findings suggest that a combination of endocrine therapy and DAXX-stabilizing agents may inhibit ER+ tumor recurrence. SIGNIFICANCE: Estradiol-mediated stabilization of DAXX is necessary and sufficient to repress genes associated with stemness, suggesting that the combination of endocrine therapy and DAXX-stabilizing agents may inhibit tumor recurrence in ER+ breast cancer.
Insights
Death-associated factor 6 (DAXX) protein stabilization by estradiol represses stemness genes and tumor-initiating cells (TICs) in estrogen receptor-positive breast cancer. Combining endocrine therapy with DAXX-stabilizing agents may prevent cancer recurrence.
Area of Science:
- Molecular Oncology
- Cancer Stem Cell Biology
- Endocrinology
Background:
- Estrogen receptor (ER)-positive breast cancer recurrence is linked to tumor-initiating cells (TICs), which are promoted by endocrine therapy via NOTCH signaling.
- Clinical trials for NOTCH-targeted therapies are limited by side effects.
- Death-associated factor 6 (DAXX) expression inversely correlates with NOTCH in ER+ breast tumors, suggesting a potential therapeutic role.
Purpose of the Study:
- To investigate the role of DAXX in regulating stem/pluripotent gene expression and TIC survival and frequency in ER+ breast cancer.
- To elucidate the mechanism by which DAXX suppresses TICs.
- To explore the potential of combining endocrine therapy with DAXX-stabilizing agents for preventing tumor recurrence.
Main Methods:
- Knockdown and overexpression of DAXX were employed.
- Analysis of stem/pluripotent gene expression (NOTCH4, SOX2, OCT4, NANOG, ALDH1A1) and TIC populations in vitro and in vivo.
- Investigation of DAXX's interaction with DNMT1 and its role in DNA methylation at target gene promoters.
Main Results:
- 17β-Estradiol (E2) stabilized DAXX protein, which repressed stem/pluripotent genes and TICs.
- Endocrine therapy led to DAXX protein depletion via proteasome activity, reducing DAXX enrichment at gene promoters.
- DAXX-mediated repression of stemness and TICs was dependent on DNMT1, involving methylation of SOX2 and NOTCH4 promoters.
Conclusions:
- Estradiol-mediated DAXX stabilization is crucial for repressing stemness genes and suppressing TICs in ER+ breast cancer.
- DAXX recruits DNMT1 to methylate specific gene promoters, thereby inhibiting NOTCH activation and TIC survival.
- Combining endocrine therapy with DAXX-stabilizing agents presents a promising strategy to inhibit ER+ breast cancer recurrence.
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