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Fibronectin Matrix Polymerization Regulates Smooth Muscle Cell Phenotype through a Rac1 Dependent Mechanism
by
Long, Xiaochun
, Shi, Feng
, Miano, Joseph M.
, Sottile, Jane
, Hendershot, Allison
in
Actin
/ Animals
/ Biology and Life Sciences
/ Calponin
/ Cell adhesion
/ Cell adhesion & migration
/ Cell culture
/ Cell cycle
/ Cell differentiation
/ Cell Differentiation - genetics
/ Cell growth
/ Cell Proliferation
/ Dentistry
/ Deposition
/ Differentiation (biology)
/ Experiments
/ Extracellular matrix
/ Extracellular Matrix - metabolism
/ Fibronectin
/ Fibronectins
/ Fibronectins - antagonists & inhibitors
/ Fibronectins - metabolism
/ Gene expression
/ Gene Expression Regulation
/ Genes
/ Genes, Dominant
/ Genes, Reporter
/ Genetic aspects
/ Growth factors
/ Immunoglobulins
/ Infrared imaging systems
/ Inhibitors
/ Kinases
/ Luciferases - metabolism
/ Medicine
/ Modulation
/ Muscle proteins
/ Muscles
/ Myocytes, Smooth Muscle - cytology
/ Myocytes, Smooth Muscle - metabolism
/ Phenotype
/ Physiological aspects
/ Polymerization
/ Proteins
/ rac1 GTP-Binding Protein - metabolism
/ Rac1 protein
/ Rats
/ Serum Response Factor - metabolism
/ Smooth muscle
/ Stem cells
/ Stress Fibers - metabolism
/ Substrates
/ Transcription
/ Transcription factors
2014
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Fibronectin Matrix Polymerization Regulates Smooth Muscle Cell Phenotype through a Rac1 Dependent Mechanism
by
Long, Xiaochun
, Shi, Feng
, Miano, Joseph M.
, Sottile, Jane
, Hendershot, Allison
in
Actin
/ Animals
/ Biology and Life Sciences
/ Calponin
/ Cell adhesion
/ Cell adhesion & migration
/ Cell culture
/ Cell cycle
/ Cell differentiation
/ Cell Differentiation - genetics
/ Cell growth
/ Cell Proliferation
/ Dentistry
/ Deposition
/ Differentiation (biology)
/ Experiments
/ Extracellular matrix
/ Extracellular Matrix - metabolism
/ Fibronectin
/ Fibronectins
/ Fibronectins - antagonists & inhibitors
/ Fibronectins - metabolism
/ Gene expression
/ Gene Expression Regulation
/ Genes
/ Genes, Dominant
/ Genes, Reporter
/ Genetic aspects
/ Growth factors
/ Immunoglobulins
/ Infrared imaging systems
/ Inhibitors
/ Kinases
/ Luciferases - metabolism
/ Medicine
/ Modulation
/ Muscle proteins
/ Muscles
/ Myocytes, Smooth Muscle - cytology
/ Myocytes, Smooth Muscle - metabolism
/ Phenotype
/ Physiological aspects
/ Polymerization
/ Proteins
/ rac1 GTP-Binding Protein - metabolism
/ Rac1 protein
/ Rats
/ Serum Response Factor - metabolism
/ Smooth muscle
/ Stem cells
/ Stress Fibers - metabolism
/ Substrates
/ Transcription
/ Transcription factors
2014
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Fibronectin Matrix Polymerization Regulates Smooth Muscle Cell Phenotype through a Rac1 Dependent Mechanism
by
Long, Xiaochun
, Shi, Feng
, Miano, Joseph M.
, Sottile, Jane
, Hendershot, Allison
in
Actin
/ Animals
/ Biology and Life Sciences
/ Calponin
/ Cell adhesion
/ Cell adhesion & migration
/ Cell culture
/ Cell cycle
/ Cell differentiation
/ Cell Differentiation - genetics
/ Cell growth
/ Cell Proliferation
/ Dentistry
/ Deposition
/ Differentiation (biology)
/ Experiments
/ Extracellular matrix
/ Extracellular Matrix - metabolism
/ Fibronectin
/ Fibronectins
/ Fibronectins - antagonists & inhibitors
/ Fibronectins - metabolism
/ Gene expression
/ Gene Expression Regulation
/ Genes
/ Genes, Dominant
/ Genes, Reporter
/ Genetic aspects
/ Growth factors
/ Immunoglobulins
/ Infrared imaging systems
/ Inhibitors
/ Kinases
/ Luciferases - metabolism
/ Medicine
/ Modulation
/ Muscle proteins
/ Muscles
/ Myocytes, Smooth Muscle - cytology
/ Myocytes, Smooth Muscle - metabolism
/ Phenotype
/ Physiological aspects
/ Polymerization
/ Proteins
/ rac1 GTP-Binding Protein - metabolism
/ Rac1 protein
/ Rats
/ Serum Response Factor - metabolism
/ Smooth muscle
/ Stem cells
/ Stress Fibers - metabolism
/ Substrates
/ Transcription
/ Transcription factors
2014
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Fibronectin Matrix Polymerization Regulates Smooth Muscle Cell Phenotype through a Rac1 Dependent Mechanism
Journal Article
Fibronectin Matrix Polymerization Regulates Smooth Muscle Cell Phenotype through a Rac1 Dependent Mechanism
2014
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Overview
Smooth muscle cells are maintained in a differentiated state in the vessel wall, but can be modulated to a synthetic phenotype following injury. Smooth muscle phenotypic modulation is thought to play an important role in the pathology of vascular occlusive diseases. Phenotypically modulated smooth muscle cells exhibit increased proliferative and migratory properties that accompany the downregulation of smooth muscle cell marker proteins. Extracellular matrix proteins, including fibronectin, can regulate the smooth muscle phenotype when used as adhesive substrates. However, cells produce and organize a 3-dimensional fibrillar extracellular matrix, which can affect cell behavior in distinct ways from the protomeric 2-dimensional matrix proteins that are used as adhesive substrates. We previously showed that the deposition/polymerization of fibronectin into the extracellular matrix can regulate the deposition and organization of other extracellular matrix molecules in vitro. Further, our published data show that the presence of a fibronectin polymerization inhibitor results in increased expression of smooth muscle cell differentiation proteins and inhibits vascular remodeling in vivo. In this manuscript, we used an in vitro cell culture system to determine the mechanism by which fibronectin polymerization affects smooth muscle phenotypic modulation. Our data show that fibronectin polymerization decreases the mRNA levels of multiple smooth muscle differentiation genes, and downregulates the levels of smooth muscle α-actin and calponin proteins by a Rac1-dependent mechanism. The expression of smooth muscle genes is transcriptionally regulated by fibronectin polymerization, as evidenced by the increased activity of luciferase reporter constructs in the presence of a fibronectin polymerization inhibitor. Fibronectin polymerization also promotes smooth muscle cell growth, and decreases the levels of actin stress fibers. These data define a Rac1-dependent pathway wherein fibronectin polymerization promotes the SMC synthetic phenotype by modulating the expression of smooth muscle cell differentiation proteins.
Publisher
Public Library of Science,Public Library of Science (PLoS)
Subject
/ Animals
/ Calponin
/ Cell Differentiation - genetics
/ Extracellular Matrix - metabolism
/ Fibronectins - antagonists & inhibitors
/ Genes
/ Kinases
/ Medicine
/ Muscles
/ Myocytes, Smooth Muscle - cytology
/ Myocytes, Smooth Muscle - metabolism
/ Proteins
/ rac1 GTP-Binding Protein - metabolism
/ Rats
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