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PMID: 11431738 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

The role of Smad3 in mediating mouse hepatic stellate cell activation.

Hepatology (Baltimore, Md.) ·Vol. 34 ·No. 1 ·2001-07-00 ·Pages 89-100

Schnabl B, Kweon YO, Frederick JP, Wang XF, Rippe RA, Brenner DA

Abstract

Transforming growth factor beta (TGF-beta) is the most potent profibrogenic mediator in liver fibrosis. Although Smad proteins have been identified as intracellular mediators in the TGF-beta signaling pathway, the function of individual Smad proteins remains poorly understood. The aim of this study was to explore the contribution of Smad3 in mediating TGF-beta responses in a model of acute liver injury in vivo and in culture-activated hepatic stellate cells (HSCs). Wild-type, Smad3 heterozygous or Smad3 homozygous knockout mice were treated with a single intragastric administration of CCl(4). After 72 hours, the induction of hepatic collagen alpha1(I) and alpha2(I) messenger RNA (mRNA) levels in Smad3 knockout mice was only 42% and 64%, respectively, of the levels induced in wild-type mice. However, smooth muscle alpha-actin (alpha-SMA) was expressed at a slightly higher level in livers from knockout mice compared with wild-type mice. In culture-activated HSCs from Smad3 knockout mice, collagen alpha1(I) mRNA was 73% of wild-type HSCs, but alpha-SMA expression was the same. HSCs from knockout mice showed a higher proliferation rate than wild-type HSCs. Smad3-deficient HSCs did not form TGF-beta1-induced Smad-containing DNA-binding complexes. In conclusion, (1) maximal expression of collagen type I in activated HSCs requires Smad3 in vivo and in culture; (2) Smad3 is not necessary for HSC activation as assessed by alpha-SMA expression; (3) Smad3 is necessary for inhibition of proliferation of HSCs, which might be TGF-beta-dependent; and (4) Smad3 is required for TGF-beta1-mediated Smad-containing DNA-binding complex formation in cultured HSCs.

MeSH Terms
Actins/genetics Animals Carbon Tetrachloride Cattle Cell Division Cells, Cultured Chemical and Drug Induced Liver Injury Collagen/genetics DNA/biosynthesis,metabolism DNA-Binding Proteins/deficiency,genetics,physiology Enzyme Activation Fetal Blood Hepatocytes/metabolism,pathology In Situ Hybridization Liver Diseases/metabolism,pathology Mice Mice, Knockout Mitogen-Activated Protein Kinases/metabolism Muscle, Smooth/chemistry Platelet-Derived Growth Factor/pharmacology RNA, Messenger/analysis,biosynthesis Smad3 Protein Trans-Activators/deficiency,genetics,physiology Transforming Growth Factor beta/analysis,pharmacology,physiology
Chemicals
Actins DNA-Binding Proteins Platelet-Derived Growth Factor RNA, Messenger Smad3 Protein Smad3 protein, mouse Trans-Activators Transforming Growth Factor beta Collagen DNA Carbon Tetrachloride Mitogen-Activated Protein Kinases
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Schnabl B
Department of Medicine, University of North Carolina at Chapel Hill, Chapel Hill, NC, USA.
Kweon Y O
Frederick J P
Wang X F
Rippe R A
Brenner D A
Article Info
Journal
Hepatology (Baltimore, Md.)
Abbr.
Hepatology
ISSN
0270-9139
Published
2001-07-00
Pages
89-100
Language
English
Region
United States
NLM ID
8302946
Subset
IM
Grants
NIAAA NIH HHS · AA10459 · United States
NIAAA NIH HHS · AA11605 · United States
NIDDK NIH HHS · DK34987 · United States
NIGMS NIH HHS · GM41804 · United States
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