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Hormone-Responsive BMP Signaling Expands Myoepithelial Cell Lineages and Prevents Alveolar Precocity in Mammary Gland

Myoepithelial and luminal cells synergistically expand in the mammary gland during pregnancy, and this process is precisely governed by hormone-related signaling pathways. The bone morphogenetic protein (BMP) signaling pathway is now known to play crucial roles in all organ systems. However, the fun...

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Autores principales: Shao, Chunlei, Lou, Pengbo, Liu, Ruiqi, Bi, Xueyun, Li, Guilin, Yang, Xu, Sheng, Xiaole, Xu, Jiuzhi, Lv, Cong, Yu, Zhengquan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8320003/
https://www.ncbi.nlm.nih.gov/pubmed/34336839
http://dx.doi.org/10.3389/fcell.2021.691050
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author Shao, Chunlei
Lou, Pengbo
Liu, Ruiqi
Bi, Xueyun
Li, Guilin
Yang, Xu
Sheng, Xiaole
Xu, Jiuzhi
Lv, Cong
Yu, Zhengquan
author_facet Shao, Chunlei
Lou, Pengbo
Liu, Ruiqi
Bi, Xueyun
Li, Guilin
Yang, Xu
Sheng, Xiaole
Xu, Jiuzhi
Lv, Cong
Yu, Zhengquan
author_sort Shao, Chunlei
collection PubMed
description Myoepithelial and luminal cells synergistically expand in the mammary gland during pregnancy, and this process is precisely governed by hormone-related signaling pathways. The bone morphogenetic protein (BMP) signaling pathway is now known to play crucial roles in all organ systems. However, the functions of BMP signaling in the mammary gland remain unclear. Here, we found that BMPR1a is upregulated by hormone-induced Sp1 at pregnancy. Using a doxycycline (Dox)-inducible BMPR1a conditional knockout mouse model, we demonstrated that loss of BMPR1a in myoepithelium results in compromised myoepithelial integrity, reduced mammary stem cells and precocious alveolar differentiation during pregnancy. Mechanistically, BMPR1a regulates the expression of p63 and Slug, two key regulators of myoepithelial maintenance, through pSmad1/5-Smad4 complexes, and consequently activate P-cadherin during pregnancy. Furthermore, we observed that loss of BMPR1a in myoepithelium results in the upregulation of a secreted protein Spp1 that could account for the precocious alveolar differentiation in luminal layer, suggesting a defective basal-to-luminal paracrine signaling mechanism. Collectively, these findings identify a novel role of BMP signaling in maintaining the identity of myoepithelial cells and suppressing precocious alveolar formation.
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spelling pubmed-83200032021-07-30 Hormone-Responsive BMP Signaling Expands Myoepithelial Cell Lineages and Prevents Alveolar Precocity in Mammary Gland Shao, Chunlei Lou, Pengbo Liu, Ruiqi Bi, Xueyun Li, Guilin Yang, Xu Sheng, Xiaole Xu, Jiuzhi Lv, Cong Yu, Zhengquan Front Cell Dev Biol Cell and Developmental Biology Myoepithelial and luminal cells synergistically expand in the mammary gland during pregnancy, and this process is precisely governed by hormone-related signaling pathways. The bone morphogenetic protein (BMP) signaling pathway is now known to play crucial roles in all organ systems. However, the functions of BMP signaling in the mammary gland remain unclear. Here, we found that BMPR1a is upregulated by hormone-induced Sp1 at pregnancy. Using a doxycycline (Dox)-inducible BMPR1a conditional knockout mouse model, we demonstrated that loss of BMPR1a in myoepithelium results in compromised myoepithelial integrity, reduced mammary stem cells and precocious alveolar differentiation during pregnancy. Mechanistically, BMPR1a regulates the expression of p63 and Slug, two key regulators of myoepithelial maintenance, through pSmad1/5-Smad4 complexes, and consequently activate P-cadherin during pregnancy. Furthermore, we observed that loss of BMPR1a in myoepithelium results in the upregulation of a secreted protein Spp1 that could account for the precocious alveolar differentiation in luminal layer, suggesting a defective basal-to-luminal paracrine signaling mechanism. Collectively, these findings identify a novel role of BMP signaling in maintaining the identity of myoepithelial cells and suppressing precocious alveolar formation. Frontiers Media S.A. 2021-07-15 /pmc/articles/PMC8320003/ /pubmed/34336839 http://dx.doi.org/10.3389/fcell.2021.691050 Text en Copyright © 2021 Shao, Lou, Liu, Bi, Li, Yang, Sheng, Xu, Lv and Yu. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Cell and Developmental Biology
Shao, Chunlei
Lou, Pengbo
Liu, Ruiqi
Bi, Xueyun
Li, Guilin
Yang, Xu
Sheng, Xiaole
Xu, Jiuzhi
Lv, Cong
Yu, Zhengquan
Hormone-Responsive BMP Signaling Expands Myoepithelial Cell Lineages and Prevents Alveolar Precocity in Mammary Gland
title Hormone-Responsive BMP Signaling Expands Myoepithelial Cell Lineages and Prevents Alveolar Precocity in Mammary Gland
title_full Hormone-Responsive BMP Signaling Expands Myoepithelial Cell Lineages and Prevents Alveolar Precocity in Mammary Gland
title_fullStr Hormone-Responsive BMP Signaling Expands Myoepithelial Cell Lineages and Prevents Alveolar Precocity in Mammary Gland
title_full_unstemmed Hormone-Responsive BMP Signaling Expands Myoepithelial Cell Lineages and Prevents Alveolar Precocity in Mammary Gland
title_short Hormone-Responsive BMP Signaling Expands Myoepithelial Cell Lineages and Prevents Alveolar Precocity in Mammary Gland
title_sort hormone-responsive bmp signaling expands myoepithelial cell lineages and prevents alveolar precocity in mammary gland
topic Cell and Developmental Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8320003/
https://www.ncbi.nlm.nih.gov/pubmed/34336839
http://dx.doi.org/10.3389/fcell.2021.691050
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