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Mammary epithelial cell phagocytosis downstream of TGF-β3 is characterized by adherens junction reorganization

After weaning, during mammary gland involution, milk-producing mammary epithelial cells undergo apoptosis. Effective clearance of these dying cells is essential, as persistent apoptotic cells have a negative impact on gland homeostasis, future lactation and cancer susceptibility. In mice, apoptotic...

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Autores principales: Fornetti, J, Flanders, K C, Henson, P M, Tan, A-C, Borges, V F, Schedin, P
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4716300/
https://www.ncbi.nlm.nih.gov/pubmed/26113040
http://dx.doi.org/10.1038/cdd.2015.82
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author Fornetti, J
Flanders, K C
Henson, P M
Tan, A-C
Borges, V F
Schedin, P
author_facet Fornetti, J
Flanders, K C
Henson, P M
Tan, A-C
Borges, V F
Schedin, P
author_sort Fornetti, J
collection PubMed
description After weaning, during mammary gland involution, milk-producing mammary epithelial cells undergo apoptosis. Effective clearance of these dying cells is essential, as persistent apoptotic cells have a negative impact on gland homeostasis, future lactation and cancer susceptibility. In mice, apoptotic cells are cleared by the neighboring epithelium, yet little is known about how mammary epithelial cells become phagocytic or whether this function is conserved between species. Here we use a rat model of weaning-induced involution and involuting breast tissue from women, to demonstrate apoptotic cells within luminal epithelial cells and epithelial expression of the scavenger mannose receptor, suggesting conservation of phagocytosis by epithelial cells. In the rat, epithelial transforming growth factor-β (TGF-β) signaling is increased during involution, a pathway known to promote phagocytic capability. To test whether TGF-β enhances the phagocytic ability of mammary epithelial cells, non-transformed murine mammary epithelial EpH4 cells were cultured to achieve tight junction impermeability, such as occurs during lactation. TGF-β3 treatment promoted loss of tight junction impermeability, reorganization and cleavage of the adherens junction protein E-cadherin (E-cad), and phagocytosis. Phagocytosis correlated with junction disruption, suggesting junction reorganization is necessary for phagocytosis by epithelial cells. Supporting this hypothesis, epithelial cell E-cad reorganization and cleavage were observed in rat and human involuting mammary glands. Further, in the rat, E-cad cleavage correlated with increased γ-secretase activity and β-catenin nuclear localization. In vitro, pharmacologic inhibitors of γ-secretase or β-catenin reduced the effect of TGF-β3 on phagocytosis to near baseline levels. However, β-catenin signaling through LiCl treatment did not enhance phagocytic capacity, suggesting a model in which both reorganization of cell junctions and β-catenin signaling contribute to phagocytosis downstream of TGF-β3. Our data provide insight into how mammary epithelial cells contribute to apoptotic cell clearance, and in light of the negative consequences of impaired apoptotic cell clearance during involution, may shed light on involution-associated breast pathologies.
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spelling pubmed-47163002016-01-31 Mammary epithelial cell phagocytosis downstream of TGF-β3 is characterized by adherens junction reorganization Fornetti, J Flanders, K C Henson, P M Tan, A-C Borges, V F Schedin, P Cell Death Differ Original Paper After weaning, during mammary gland involution, milk-producing mammary epithelial cells undergo apoptosis. Effective clearance of these dying cells is essential, as persistent apoptotic cells have a negative impact on gland homeostasis, future lactation and cancer susceptibility. In mice, apoptotic cells are cleared by the neighboring epithelium, yet little is known about how mammary epithelial cells become phagocytic or whether this function is conserved between species. Here we use a rat model of weaning-induced involution and involuting breast tissue from women, to demonstrate apoptotic cells within luminal epithelial cells and epithelial expression of the scavenger mannose receptor, suggesting conservation of phagocytosis by epithelial cells. In the rat, epithelial transforming growth factor-β (TGF-β) signaling is increased during involution, a pathway known to promote phagocytic capability. To test whether TGF-β enhances the phagocytic ability of mammary epithelial cells, non-transformed murine mammary epithelial EpH4 cells were cultured to achieve tight junction impermeability, such as occurs during lactation. TGF-β3 treatment promoted loss of tight junction impermeability, reorganization and cleavage of the adherens junction protein E-cadherin (E-cad), and phagocytosis. Phagocytosis correlated with junction disruption, suggesting junction reorganization is necessary for phagocytosis by epithelial cells. Supporting this hypothesis, epithelial cell E-cad reorganization and cleavage were observed in rat and human involuting mammary glands. Further, in the rat, E-cad cleavage correlated with increased γ-secretase activity and β-catenin nuclear localization. In vitro, pharmacologic inhibitors of γ-secretase or β-catenin reduced the effect of TGF-β3 on phagocytosis to near baseline levels. However, β-catenin signaling through LiCl treatment did not enhance phagocytic capacity, suggesting a model in which both reorganization of cell junctions and β-catenin signaling contribute to phagocytosis downstream of TGF-β3. Our data provide insight into how mammary epithelial cells contribute to apoptotic cell clearance, and in light of the negative consequences of impaired apoptotic cell clearance during involution, may shed light on involution-associated breast pathologies. Nature Publishing Group 2016-02 2015-06-26 /pmc/articles/PMC4716300/ /pubmed/26113040 http://dx.doi.org/10.1038/cdd.2015.82 Text en Copyright © 2016 Macmillan Publishers Limited http://creativecommons.org/licenses/by-nc-nd/4.0/ This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivs 4.0 International License. The images or other third party material in this article are included in the article's Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by-nc-nd/4.0/
spellingShingle Original Paper
Fornetti, J
Flanders, K C
Henson, P M
Tan, A-C
Borges, V F
Schedin, P
Mammary epithelial cell phagocytosis downstream of TGF-β3 is characterized by adherens junction reorganization
title Mammary epithelial cell phagocytosis downstream of TGF-β3 is characterized by adherens junction reorganization
title_full Mammary epithelial cell phagocytosis downstream of TGF-β3 is characterized by adherens junction reorganization
title_fullStr Mammary epithelial cell phagocytosis downstream of TGF-β3 is characterized by adherens junction reorganization
title_full_unstemmed Mammary epithelial cell phagocytosis downstream of TGF-β3 is characterized by adherens junction reorganization
title_short Mammary epithelial cell phagocytosis downstream of TGF-β3 is characterized by adherens junction reorganization
title_sort mammary epithelial cell phagocytosis downstream of tgf-β3 is characterized by adherens junction reorganization
topic Original Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4716300/
https://www.ncbi.nlm.nih.gov/pubmed/26113040
http://dx.doi.org/10.1038/cdd.2015.82
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