Cathepsin-D, a key protease in breast cancer, is up-regulated in obese mouse and human adipose tissue, and controls adipogenesis.

The aspartic protease cathepsin-D (cath-D) is overexpressed by human epithelial breast cancer cells and is closely correlated with poor prognosis in breast cancer. The adipocyte is one of the most prominent cell types in the tumor-microenvironment of breast cancer, and clinical studies have shown th...

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Main Authors: Olivier Masson, Christine Prébois, Danielle Derocq, Aline Meulle, Cédric Dray, Danielle Daviaud, Didier Quilliot, Philippe Valet, Catherine Muller, Emmanuelle Liaudet-Coopman
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2011-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3032791?pdf=render
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spelling doaj-2c0040f7e44a4eeab77fa50ef761af562020-11-25T00:49:48ZengPublic Library of Science (PLoS)PLoS ONE1932-62032011-01-0162e1645210.1371/journal.pone.0016452Cathepsin-D, a key protease in breast cancer, is up-regulated in obese mouse and human adipose tissue, and controls adipogenesis.Olivier MassonChristine PréboisDanielle DerocqAline MeulleCédric DrayDanielle DaviaudDidier QuilliotPhilippe ValetCatherine MullerEmmanuelle Liaudet-CoopmanThe aspartic protease cathepsin-D (cath-D) is overexpressed by human epithelial breast cancer cells and is closely correlated with poor prognosis in breast cancer. The adipocyte is one of the most prominent cell types in the tumor-microenvironment of breast cancer, and clinical studies have shown that obesity increases the incidence of breast cancer. Here, we provide the first evidence that cath-D expression is up-regulated in adipose tissue from obese human beings, as well as in adipocytes from the obese C57BI6/J mouse. Cath-D expression is also increased during human and mouse adipocyte differentiation. We show that cath-D silencing in 3T3-F442A murine preadipocytes leads to lipid-depleted cells after adipogenesis induction, and inhibits of the expression of PPARγ, HSL and aP2 adipocyte differentiation markers. Altogether, our findings demonstrate the key role of cath-D in the control of adipogenesis, and suggest that cath-D may be a novel target in obesity.http://europepmc.org/articles/PMC3032791?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Olivier Masson
Christine Prébois
Danielle Derocq
Aline Meulle
Cédric Dray
Danielle Daviaud
Didier Quilliot
Philippe Valet
Catherine Muller
Emmanuelle Liaudet-Coopman
spellingShingle Olivier Masson
Christine Prébois
Danielle Derocq
Aline Meulle
Cédric Dray
Danielle Daviaud
Didier Quilliot
Philippe Valet
Catherine Muller
Emmanuelle Liaudet-Coopman
Cathepsin-D, a key protease in breast cancer, is up-regulated in obese mouse and human adipose tissue, and controls adipogenesis.
PLoS ONE
author_facet Olivier Masson
Christine Prébois
Danielle Derocq
Aline Meulle
Cédric Dray
Danielle Daviaud
Didier Quilliot
Philippe Valet
Catherine Muller
Emmanuelle Liaudet-Coopman
author_sort Olivier Masson
title Cathepsin-D, a key protease in breast cancer, is up-regulated in obese mouse and human adipose tissue, and controls adipogenesis.
title_short Cathepsin-D, a key protease in breast cancer, is up-regulated in obese mouse and human adipose tissue, and controls adipogenesis.
title_full Cathepsin-D, a key protease in breast cancer, is up-regulated in obese mouse and human adipose tissue, and controls adipogenesis.
title_fullStr Cathepsin-D, a key protease in breast cancer, is up-regulated in obese mouse and human adipose tissue, and controls adipogenesis.
title_full_unstemmed Cathepsin-D, a key protease in breast cancer, is up-regulated in obese mouse and human adipose tissue, and controls adipogenesis.
title_sort cathepsin-d, a key protease in breast cancer, is up-regulated in obese mouse and human adipose tissue, and controls adipogenesis.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2011-01-01
description The aspartic protease cathepsin-D (cath-D) is overexpressed by human epithelial breast cancer cells and is closely correlated with poor prognosis in breast cancer. The adipocyte is one of the most prominent cell types in the tumor-microenvironment of breast cancer, and clinical studies have shown that obesity increases the incidence of breast cancer. Here, we provide the first evidence that cath-D expression is up-regulated in adipose tissue from obese human beings, as well as in adipocytes from the obese C57BI6/J mouse. Cath-D expression is also increased during human and mouse adipocyte differentiation. We show that cath-D silencing in 3T3-F442A murine preadipocytes leads to lipid-depleted cells after adipogenesis induction, and inhibits of the expression of PPARγ, HSL and aP2 adipocyte differentiation markers. Altogether, our findings demonstrate the key role of cath-D in the control of adipogenesis, and suggest that cath-D may be a novel target in obesity.
url http://europepmc.org/articles/PMC3032791?pdf=render
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