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Control of mammary stem cell function by steroid hormone signalling

  • Marie Liesse Asselin-Labat
  • , François Vaillant
  • , Julie M. Sheridan
  • , Bhupinder Pal
  • , Di Wu
  • , Evan R. Simpson
  • , Hisataka Yasuda
  • , Gordon K. Smyth
  • , T. John Martin
  • , Geoffrey J. Lindeman
  • , Jane E. Visvader

Research output: Contribution to journalArticlepeer-review

Abstract

The ovarian hormones oestrogen and progesterone profoundly influence breast cancer risk, underpinning the benefit of endocrine therapies in the treatment of breast cancer. Modulation of their effects through ovarian ablation or chemoprevention strategies also significantly decreases breast cancer incidence. Conversely, there is an increased risk of breast cancer associated with pregnancy in the short term. The cellular mechanisms underlying these observations, however, are poorly defined. Here we demonstrate that mouse mammary stem cells (MaSCs) are highly responsive to steroid hormone signalling, despite lacking the oestrogen and progesterone receptors. Ovariectomy markedly diminished MaSC number and outgrowth potential in vivo, whereas MaSC activity increased in mice treated with oestrogen plus progesterone. Notably, even three weeks of treatment with the aromatase inhibitor letrozole was sufficient to reduce the MaSC pool. In contrast, pregnancy led to a transient 11-fold increase in MaSC numbers, probably mediated through paracrine signalling from RANK ligand. The augmented MaSC pool indicates a cellular basis for the short-term increase in breast cancer incidence that accompanies pregnancy. These findings further indicate that breast cancer chemoprevention may be achieved, in part, through suppression of MaSC function.

Original languageEnglish (US)
Pages (from-to)798-802
Number of pages5
JournalNature
Volume465
Issue number7299
DOIs
StatePublished - Jun 10 2010
Externally publishedYes

Funding

Acknowledgements We are grateful to A. Morcom and T. Ward for technical assistance, T. Bouras for advice, S. Mihajlovic for histology and F. Battye for FACS support. We thank C. Clarke for providing the hPRa7 antibody, A. Burgess for AG1478, A. Parlow for prolactin, and the Australian Genome Research Facility for RNA bioanalyses. M.-L.A.-L. is supported by an Australian Research Council Postdoctoral Fellowship. This work was supported by the Victorian Breast Cancer Research Consortium (J.E.V. and G.J.L.), the National Health and Medical Research Council (Australia), the Susan G. Komen Foundation, the National Breast Cancer Foundation and the Australian Cancer Research Foundation.

Funders
Victorian Breast Cancer Research Consortium
Susan G. Komen for the Cure, Komen Wyoming Affiliate
Australian Research Council
Australian National Health and Medical Research Council
Australian Cancer Research Foundation
National Breast Cancer Foundation

    ASJC Scopus subject areas

    • General

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