ID4 controls mammary stem cells and marks breast cancers with a stem cell-like phenotype

Basal-like breast cancer (BLBC) is a heterogeneous disease with poor prognosis; however, its cellular origins and aetiology are poorly understood. In this study, we show that inhibitor of differentiation 4 (ID4) is a key regulator of mammary stem cell self-renewal and marks a subset of BLBC with a p...

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Veröffentlicht in:Nature communications 2015-03, Vol.6 (1), p.6548-6548, Article 6548
Hauptverfasser: Junankar, Simon, Baker, Laura A., Roden, Daniel L., Nair, Radhika, Elsworth, Ben, Gallego-Ortega, David, Lacaze, Paul, Cazet, Aurélie, Nikolic, Iva, Teo, Wee Siang, Yang, Jessica, McFarland, Andrea, Harvey, Kate, Naylor, Matthew J., Lakhani, Sunil R., Simpson, Peter T., Raghavendra, Ashwini, Saunus, Jodi, Madore, Jason, Kaplan, Warren, Ormandy, Christopher, Millar, Ewan K. A., O’Toole, Sandra, Yun, Kyuson, Swarbrick, Alexander
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Sprache:eng
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Zusammenfassung:Basal-like breast cancer (BLBC) is a heterogeneous disease with poor prognosis; however, its cellular origins and aetiology are poorly understood. In this study, we show that inhibitor of differentiation 4 (ID4) is a key regulator of mammary stem cell self-renewal and marks a subset of BLBC with a putative mammary basal cell of origin. Using an ID4GFP knock-in reporter mouse and single-cell transcriptomics, we show that ID4 marks a stem cell-enriched subset of the mammary basal cell population. ID4 maintains the mammary stem cell pool by suppressing key factors required for luminal differentiation. Furthermore, ID4 is specifically expressed by a subset of human BLBC that possess a very poor prognosis and a transcriptional signature similar to a mammary stem cell. These studies identify ID4 as a mammary stem cell regulator, deconvolute the heterogeneity of BLBC and link a subset of mammary stem cells to the aetiology of BLBC. Basal-like breast cancer is a heterogeneous disease with poor prognosis; however, its cellular origins and aetiology are poorly understood. Here the authors provide evidence that ID4 is a key controller of mammary stem/progenitor cell self-renewal, acting upstream of Notch signalling to repress luminal fate commitment.
ISSN:2041-1723
2041-1723
DOI:10.1038/ncomms7548