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PMID: 12110667 Published · ppublish English Journal Article Research Support, U.S. Gov't, P.H.S.

Vascular smooth muscle alpha-actin gene transcription during myofibroblast differentiation requires Sp1/3 protein binding proximal to the MCAT enhancer.

The Journal of biological chemistry ·Vol. 277 ·No. 39 ·2002-09-27 ·Pages 36433-42

Cogan JG, Subramanian SV, Polikandriotis JA, Kelm RJ, Strauch AR

Abstract

The conversion of stromal fibroblasts into contractile myofibroblasts is an essential feature of the wound-healing response that is mediated by transforming growth factor beta1 (TGF-beta1) and accompanied by transient activation of the vascular smooth muscle alpha-actin (SmalphaA) gene. Multiple positive-regulatory elements were identified as essential mediators of basal SmalphaA enhancer activity in mouse AKR-2B stromal fibroblasts. Three of these elements bind transcriptional activating proteins of known identity in fibroblasts. A fourth site, shown previously to be susceptible to single-strand modifying agents in myofibroblasts, was additionally required for enhancer response to TGF-beta1. However, TGF-beta1 activation was not accompanied by a stoichiometric increase in protein binding to any known positive element in the SmalphaA enhancer. By using oligonucleotide affinity isolation, DNA-binding site competition, gel mobility shift assays, and protein overexpression in SL2 and COS7 cells, we demonstrate that the transcription factors Sp1 and Sp3 can stimulate SmalphaA enhancer activity. One of the sites that bind Sp1/3 corresponds to the region of the SmalphaA enhancer required for TGF-beta1 amplification. Additionally, the TGF-beta1 receptor-regulated Smad proteins, in particular Smad3, are rate-limiting for SmalphaA enhancer activation. Whereas Smad proteins collaborate with Sp1 in activating several stromal cell-associated promoters, they appear to operate independently from the Sp1/3 proteins in activating the SmalphaA enhancer. The identification of Sp and Smad proteins as essential, independent activators of the SmalphaA enhancer provides new insight into the poorly understood process of myofibroblast differentiation.

MeSH Terms
Actins/biosynthesis,genetics Amino Acid Motifs Animals Base Sequence Binding Sites Binding, Competitive Blotting, Northern Blotting, Western COS Cells Cell Differentiation Cell Nucleus/metabolism Cells, Cultured DNA/metabolism DNA-Binding Proteins/metabolism Drosophila Endothelium, Vascular/metabolism Enhancer Elements, Genetic Extracellular Matrix/metabolism Fibroblasts/metabolism Genes, Reporter Humans Immunoblotting Mice Molecular Sequence Data Muscle, Smooth/metabolism Muscles/cytology Mutation Oligonucleotides/metabolism Plasmids/metabolism Plicamycin/analogs & derivatives,pharmacology Protein Binding Rats Sp1 Transcription Factor/metabolism Sp3 Transcription Factor Transcription Factors/metabolism Transcription, Genetic Transfection Transforming Growth Factor beta/metabolism Transforming Growth Factor beta1
Chemicals
Actins DNA-Binding Proteins Oligonucleotides SP3 protein, human Sp1 Transcription Factor Sp3 protein, mouse Sp3 protein, rat TGFB1 protein, human Tgfb1 protein, mouse Tgfb1 protein, rat Transcription Factors Transforming Growth Factor beta Transforming Growth Factor beta1 Sp3 Transcription Factor DNA mithramycin A Plicamycin
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Cogan John G
Department of Physiology/Cell Biology, The Ohio State University College of Medicine and Public Health, Dorothy M. Davis Heart and Lung Research Institute, Columbus, Ohio 43210, USA.
Subramanian Sukanya V
Polikandriotis John A
Kelm Robert J
Strauch Arthur R
Article Info
Journal
The Journal of biological chemistry
Abbr.
J Biol Chem
ISSN
0021-9258
Published
2002-09-27
Epub
2002-00-10
Pages
36433-42
Language
English
Region
United States
NLM ID
2985121R
Subset
IM
Grants
NHLBI NIH HHS · HL 54281 · United States
NHLBI NIH HHS · HL 60876 · United States
NHLBI NIH HHS · HL 70294 · United States
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