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Publication : Prep1 (pKnox1) transcription factor contributes to pubertal mammary gland branching morphogenesis.

First Author  Sicouri L Year  2018
Journal  Int J Dev Biol Volume  62
Issue  11-12 Pages  827-836
PubMed ID  30604852 Mgi Jnum  J:267951
Mgi Id  MGI:6270405 Doi  10.1387/ijdb.180278fb
Citation  Sicouri L, et al. (2018) Prep1 (pKnox1) transcription factor contributes to pubertal mammary gland branching morphogenesis. Int J Dev Biol 62(11-12):827-836
abstractText  Prep1 (pKnox1) is a homeodomain transcription factor essential for in utero and post-natal development and an oncosuppressor gene in human and adult mice. We have analyzed its role in the development of the mouse mammary gland. We used Prep1(i/i) hypomorphic and Prep1(F/F)-Ker5CRE crosses to analyze the role of Prep1 in vivo in adult mouse mammary gland development. We also cultured mammary gland stem/progenitor cells in mammospheres to perform biochemical studies. Prep1 was expressed in mammary gland progenitors and fully differentiated mammary gland cells. Using different Prep1-deficient mouse models we show that in vivo Prep1 contributes to mammary gland branching since the branching efficiency of the mammary gland in Prep1-deleted or Prep1 hypomorphic mice was largely reduced. In-vitro, Prep1 sustained functions of the mammary stem/progenitor compartment. Prep1-deficient mammary stem/progenitor cells showed reduced ability to form mammospheres; they were not able to branch in a 3D assay, and exhibited reduced expression of Snail1, Snail2 and vimentin. The branching phenotype associated with increased Tp53-dependent apoptosis and inability to properly activate signals involved in branching morphogenesis. Finally, Prep1 formed complexes with Snail2, a transcription factor essential in branching morphogenesis, and its absence destabilizes and promotes Snail2 proteasome-mediated degradation. We conclude that Prep1 is required for normal adult mammary gland development, in particular at its branching morphogenesis step. By binding Snail2, Prep1 protects it from the proteasomal degradation.
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