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PPAR? Downregulation by TGF in Fibroblast and Impaired Expression and Function in Systemic Sclerosis: A Novel Mechanism for Progressive Fibrogenesis
Authors
A Galli
A Kis
+74 more
A Milano
AK Ghosh
AK Ghosh
AK Ghosh
AK Ghosh
Asish K. Ghosh
BC Willis
BM Psaty
C Beyer
C Dong
Carol Feghali-Bostwick
DA Culver
ED Rosen
ED Rosen
F Verrecchia
F Zheng
G Lakos
H Ha
HA Burgess
J Berger
J Varga
J Varga
JE Milam
Jennifer L. Sargent
JL Sargent
John Varga
Joy Sturtevant
JT Tan
Jun Wei
KA Longo
Kazuhiro Komura
KM Hong
L Fajas
L Yang
LS Higgins
M Dudas
M Kapoor
M Kapoor
M Lehrke
M Trojanowska
M Wu
Manu Jain
MF Simon
Michael L. Whitfield
Minghua Wu
OA Gressner
P Karnik
P Tontonoz
Qi-Quan Huang
R Fleischmajer
S Dennler
S Kim
S Sonnylal
S Zheng
SE Ross
SH Liu
SJ Chen
SZ Duan
T Kawai
T Miyahara
T Shiomi
TM McIntyre
V Zoete
W Yuan
X Li
X Liu
X Shi-wen
X Tan
Y Mori
Y Mori
Y Park
Y Shi
Y Wang
Z Yun
Publication date
1 November 2010
Publisher
'Public Library of Science (PLoS)'
Doi
View
on
PubMed
Abstract
The nuclear orphan receptor peroxisome proliferator-activated receptor-gamma (PPAR-γ) is expressed in multiple cell types in addition to adipocytes. Upon its activation by natural ligands such as fatty acids and eicosanoids, or by synthetic agonists such as rosiglitazone, PPAR-γ regulates adipogenesis, glucose uptake and inflammatory responses. Recent studies establish a novel role for PPAR-γ signaling as an endogenous mechanism for regulating transforming growth factor-ß (TGF-ß)- dependent fibrogenesis. Here, we sought to characterize PPAR-γ function in the prototypic fibrosing disorder systemic sclerosis (SSc), and delineate the factors governing PPAR-γ expression. We report that PPAR-γ levels were markedly diminished in skin and lung biopsies from patients with SSc, and in fibroblasts explanted from the lesional skin. In normal fibroblasts, treatment with TGF-ß resulted in a time- and dose-dependent down-regulation of PPAR-γ expression. Inhibition occurred at the transcriptional level and was mediated via canonical Smad signal transduction. Genome-wide expression profiling of SSc skin biopsies revealed a marked attenuation of PPAR-γ levels and transcriptional activity in a subset of patients with diffuse cutaneous SSc, which was correlated with the presence of a ''TGF-ß responsive gene signature'' in these biopsies. Together, these results demonstrate that the expression and function of PPAR-γ are impaired in SSc, and reveal the existence of a reciprocal inhibitory cross-talk between TGF-ß activation and PPAR-γ signaling in the context of fibrogenesis. In light of the potent anti-fibrotic effects attributed to PPAR-γ, these observations lead us to propose that excessive TGF-ß activity in SSc accounts for impaired PPAR-γ function, which in turn contributes to unchecked fibroblast activation and progressive fibrosis. © 2010 Wei et al
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