Identity and dynamics of mammary stem cells during branching morphogenesis

Publication date

2017-02-16

Authors

Scheele, Colinda L.G.J.
Hannezo, Edouard
Muraro, Mauro J.
Zomer, Anoek
Langedijk, Nathalia S.M.
van Oudenaarden, AlexanderORCID 0000-0002-9442-3551ISNI 0000000042369843
Simons, Benjamin D
van Rheenen, JaccoISNI 0000000389238762

Editors

Advisors

Supervisors

Document Type

Article

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License

taverne

Abstract

During puberty, the mouse mammary gland develops into a highly branched epithelial network. Owing to the absence of exclusive stem cell markers, the location, multiplicity, dynamics and fate of mammary stem cells (MaSCs), which drive branching morphogenesis, are unknown. Here we show that morphogenesis is driven by proliferative terminal end buds that terminate or bifurcate witwh near equal probability, in a stochastic and time-invariant manner, leading to a heterogeneous epithelial network. We show that the majority of terminal end bud cells function as highly proliferative, lineage-committed MaSCs that are heterogeneous in their expression profile and short-term contribution to ductal extension. Yet, through cell rearrangements during terminal end bud bifurcation, each MaSC is able to contribute actively to long-term growth. Our study shows that the behaviour of MaSCs is not directly linked to a single expression profile. Instead, morphogenesis relies upon lineage-restricted heterogeneous MaSC populations that function as single equipotent pools in the long term.

Keywords

Taverne, General Medicine, General, Journal Article, Research Support, Non-U.S. Gov't

Citation

Scheele, C L G J, Hannezo, E, Muraro, M J, Zomer, A, Langedijk, N S M, Van Oudenaarden, A, Simons, B D & Van Rheenen, J 2017, 'Identity and dynamics of mammary stem cells during branching morphogenesis', Nature, vol. 542, no. 7641, pp. 313-317. https://doi.org/10.1038/nature21046