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Silencing of BRCA2 to Identify Novel BRCA2-regulated Biological Functions in Cultured Human Cells
Published on: August 12, 2015
RANK ligand as a potential target for breast cancer prevention in BRCA1-mutation carriers
Emma Nolan1,2, François Vaillant1,2, Daniel Branstetter3
1ACRF Stem Cells and Cancer Division, Walter and Eliza Hall Institute of Medical Research (WEHI), Parkville, Victoria, Australia.
Abstract:
Individuals who have mutations in the breast-cancer-susceptibility gene BRCA1 (hereafter referred to as BRCA1-mutation carriers) frequently undergo prophylactic mastectomy to minimize their risk of breast cancer. The identification of an effective prevention therapy therefore remains a 'holy grail' for the field. Precancerous BRCA1(mut/+) tissue harbors an aberrant population of luminal progenitor cells, and deregulated progesterone signaling has been implicated in BRCA1-associated oncogenesis. Coupled with the findings that tumor necrosis factor superfamily member 11 (TNFSF11; also known as RANKL) is a key paracrine effector of progesterone signaling and that RANKL and its receptor TNFRSF11A (also known as RANK) contribute to mammary tumorigenesis, we investigated a role for this pathway in the pre-neoplastic phase of BRCA1-mutation carriers. We identified two subsets of luminal progenitors (RANK(+) and RANK(-)) in histologically normal tissue of BRCA1-mutation carriers and showed that RANK(+) cells are highly proliferative, have grossly aberrant DNA repair and bear a molecular signature similar to that of basal-like breast cancer. These data suggest that RANK(+) and not RANK(-) progenitors are a key target population in these women. Inhibition of RANKL signaling by treatment with denosumab in three-dimensional breast organoids derived from pre-neoplastic BRCA1(mut/+) tissue attenuated progesterone-induced proliferation. Notably, proliferation was markedly reduced in breast biopsies from BRCA1-mutation carriers who were treated with denosumab. Furthermore, inhibition of RANKL in a Brca1-deficient mouse model substantially curtailed mammary tumorigenesis. Taken together, these findings identify a targetable pathway in a putative cell-of-origin population in BRCA1-mutation carriers and implicate RANKL blockade as a promising strategy in the prevention of breast cancer.
Insights
Targeting RANKL signaling in BRCA1-mutation carriers shows promise for breast cancer prevention. Denosumab treatment reduced proliferation in precancerous BRCA1 tissue and mouse models, identifying a key pathway for intervention.
Area of Science:
- Oncology
- Genetics
- Cell Biology
Background:
- BRCA1 mutations significantly increase breast cancer risk, often leading to prophylactic mastectomy.
- Aberrant progesterone signaling and luminal progenitor cells are implicated in BRCA1-associated oncogenesis.
- The RANKL/RANK pathway is a key mediator of progesterone signaling in mammary development and tumorigenesis.
Purpose of the Study:
- To investigate the role of the RANKL/RANK pathway in the pre-neoplastic phase of BRCA1-mutation carriers.
- To identify targetable cell populations and therapeutic strategies for breast cancer prevention in this high-risk group.
Main Methods:
- Identification and characterization of luminal progenitor cell subsets (RANK(+) and RANK(-)) in BRCA1-mutation carrier tissue.
- Inhibition of RANKL signaling using denosumab in 3D organoid models derived from BRCA1-mutant tissue.
- Analysis of breast biopsies from BRCA1-mutation carriers treated with denosumab.
- Evaluation of RANKL inhibition in a Brca1-deficient mouse model of mammary tumorigenesis.
Main Results:
- Two distinct luminal progenitor subsets, RANK(+) and RANK(-), were identified in normal BRCA1-mutation carrier tissue.
- RANK(+) progenitors are highly proliferative, exhibit DNA repair defects, and resemble basal-like breast cancer.
- Denosumab treatment attenuated progesterone-induced proliferation in BRCA1-mutant organoids and reduced proliferation in patient biopsies.
- RANKL inhibition significantly reduced mammary tumorigenesis in a Brca1-deficient mouse model.
Conclusions:
- RANK(+) luminal progenitors represent a key target population in BRCA1-mutation carriers.
- RANKL blockade, using agents like denosumab, is a promising strategy for breast cancer prevention in women with BRCA1 mutations.
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