Blockade of AP-1 Potentiates Endocrine Therapy and Overcomes Resistance
Luca Malorni1, Mario Giuliano2, Ilenia Migliaccio3
1Lester and Sue Smith Breast Center and Dan L. Duncan Comprehensive Cancer Center, Baylor College of Medicine, Houston, Texas. Department of Medicine, Baylor College of Medicine, Houston, Texas. Sandro Pitigliani Medical Oncology Unit and Translational Research Unit, Oncology Department, Hospital of Prato, Prato, Italy. rschiff@bcm.edu lmalorni@uslcentro.toscana.it.
Unlabelled:
The transcription factor AP-1 is downstream of growth factor (GF) receptors (GFRs) and stress-related kinases, both of which are implicated in breast cancer endocrine resistance. Previously, we have suggested that acquired endocrine resistance is associated with increased activity of AP-1 in an in vivo model. In this report, we provide direct evidence for the role of AP-1 in endocrine resistance. First, significant overlap was found between genes modulated in tamoxifen resistance and a gene signature associated with GF-induced estrogen receptor (ER) cistrome. Interestingly, these overlapping genes were enriched for key signaling components of GFRs and stress-related kinases and had AP-1 motifs in their promoters/enhancers. Second, to determine a more definitive role of AP-1 in endocrine resistance, AP-1 was inhibited using an inducible dominant-negative (DN) cJun expressed in MCF7 breast cancer cells in vitro and in vivo AP-1 blockade enhanced the antiproliferative effect of endocrine treatments in vitro, accelerated xenograft tumor response to tamoxifen and estrogen deprivation in vivo, promoted complete regression of tumors, and delayed the onset of tamoxifen resistance. Induction of DN-cJun after the development of tamoxifen resistance resulted in dramatic tumor shrinkage, accompanied by reduced proliferation and increased apoptosis. These data suggest that AP-1 is a key determinant of endocrine resistance by mediating a global shift in the ER transcriptional program.
Implications:
AP-1 represents a viable therapeutic target to overcome endocrine resistance. Mol Cancer Res; 14(5); 470-81. ©2016 AACR.
Insights
The transcription factor AP-1 drives endocrine resistance in breast cancer by altering estrogen receptor (ER) gene expression. Inhibiting AP-1 (activator protein 1) effectively overcomes tamoxifen resistance and promotes tumor regression.
Area of Science:
- Oncology
- Molecular Biology
- Endocrinology
Background:
- Estrogen receptor (ER) signaling is crucial in breast cancer, but resistance to endocrine therapies like tamoxifen is a major clinical challenge.
- The transcription factor AP-1 (activator protein 1) is implicated in growth factor receptor and stress kinase pathways, which are linked to endocrine resistance.
Purpose of the Study:
- To provide direct evidence for the role of AP-1 in mediating breast cancer endocrine resistance.
- To investigate AP-1 as a potential therapeutic target to overcome endocrine resistance.
Main Methods:
- Comparative analysis of gene expression profiles in tamoxifen-resistant breast cancer and growth factor-induced ER cistromes.
- Inhibition of AP-1 using a dominant-negative cJun (DN-cJun) in MCF7 cells (in vitro) and xenograft models (in vivo).
Main Results:
- Genes modulated in tamoxifen resistance significantly overlapped with genes regulated by growth factor-induced ER, enriched for AP-1 binding motifs.
- AP-1 blockade enhanced endocrine treatment efficacy, accelerated tumor response, promoted regression, and delayed tamoxifen resistance onset.
- DN-cJun induction in established tamoxifen-resistant tumors caused significant shrinkage, reduced proliferation, and increased apoptosis.
Conclusions:
- AP-1 is a key determinant of endocrine resistance in breast cancer.
- AP-1 blockade is a promising strategy to overcome endocrine resistance and enhance therapeutic outcomes.
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