Wnt Signaling in Mammary Glands: Plastic Cell Fates and Combinatorial Signaling
Author(s) -
Caroline M. Alexander,
Sonia Goel,
Saja A. Fakhraldeen,
Sanguk Kim
Publication year - 2012
Publication title -
cold spring harbor perspectives in biology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 6.011
H-Index - 173
ISSN - 1943-0264
DOI - 10.1101/cshperspect.a008037
Subject(s) - wnt signaling pathway , biology , mammary gland , morphogenesis , microbiology and biotechnology , cell fate determination , stem cell , ectoderm , epithelium , embryonic stem cell , signal transduction , genetics , embryo , breast cancer , cancer , embryogenesis , transcription factor , gene
The mouse mammary gland is an outstanding developmental model that exemplifies the activities of many of the effector pathways known to organize mammalian morphogenesis; furthermore, there are well-characterized methods for the specific genetic manipulation of various mammary epithelial cell components. Among these signaling pathways, Wnt signaling has been shown to generate plasticity of fate determination, expanding the genetic programs available to cells in the mammary lineage. It is responsible first for the appearance of the mammary fate in embryonic ectoderm and then for maintaining bi-potential basal stem cells in adult mammary ductal trees. Recent technical developments have led to the separate analysis of various mammary epithelial cell subpopulations, spurring the investigation of Wnt-dependent interactions. Although Wnt signaling was shown to be oncogenic for mouse mammary epithelium even before being identified as the principle oncogenic driver for gut epithelium, conclusive data implicating this pathway as a tumor driver for breast cancer lag behind, and we examine potential reasons.
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