Javascript must be enabled to continue!
Perlecan-Induced Suppression of Smooth Muscle Cell Proliferation Is Mediated Through Increased Activity of the Tumor Suppressor PTEN
View through CrossRef
We were interested in the elucidation of the interaction between the heparan sulfate proteoglycan, perlecan, and PTEN in the regulation of vascular smooth muscle cell (SMC) growth. We verified serum-stimulated DNA synthesis, and Akt and FAK phosphorylation were significantly reduced in SMCs overexpressing wild-type PTEN. Our previous studies showed perlecan is a potent inhibitor of serum-stimulated SMC growth. We report in the present study, compared with SMCs plated on fibronectin, serum-stimulated SMCs plated on perlecan exhibited increased PTEN activity, decreased FAK and Akt activities, and high levels of p27, consistent with SMC growth arrest. Adenoviral-mediated overexpression of constitutively active Akt reversed perlecan-induced SMC growth arrest while morpholino antisense-mediated loss of endogenous PTEN resulted in increased growth and phosphorylation of FAK and Akt of SMCs on perlecan. Immunohistochemical and Western analyses of balloon-injured rat carotid artery tissues showed a transient increase in phosphoPTEN (inactive) after injury, correlating to high rates of neointimal cell replication; phosphoPTEN was largely limited to actively replicating SMCs. Similarly, in the developing rat aorta, we found increased PTEN activity associated with increased perlecan deposition and decreased SMC replication rates. However, significantly decreased PTEN activity was detected in aortas of perlecan-deficient mouse embryos, consistent with SMC hyperplasia observed in these animals, compared with E17.5 heterozygous controls that produce abundant amounts of perlecan at this developmental time point. Our data show PTEN is a potent endogenously produced inhibitor of SMC growth and increased PTEN activity mediates perlecan-induced suppression of SMC proliferation.
Ovid Technologies (Wolters Kluwer Health)
Title: Perlecan-Induced Suppression of Smooth Muscle Cell Proliferation Is Mediated Through Increased Activity of the Tumor Suppressor PTEN
Description:
We were interested in the elucidation of the interaction between the heparan sulfate proteoglycan, perlecan, and PTEN in the regulation of vascular smooth muscle cell (SMC) growth.
We verified serum-stimulated DNA synthesis, and Akt and FAK phosphorylation were significantly reduced in SMCs overexpressing wild-type PTEN.
Our previous studies showed perlecan is a potent inhibitor of serum-stimulated SMC growth.
We report in the present study, compared with SMCs plated on fibronectin, serum-stimulated SMCs plated on perlecan exhibited increased PTEN activity, decreased FAK and Akt activities, and high levels of p27, consistent with SMC growth arrest.
Adenoviral-mediated overexpression of constitutively active Akt reversed perlecan-induced SMC growth arrest while morpholino antisense-mediated loss of endogenous PTEN resulted in increased growth and phosphorylation of FAK and Akt of SMCs on perlecan.
Immunohistochemical and Western analyses of balloon-injured rat carotid artery tissues showed a transient increase in phosphoPTEN (inactive) after injury, correlating to high rates of neointimal cell replication; phosphoPTEN was largely limited to actively replicating SMCs.
Similarly, in the developing rat aorta, we found increased PTEN activity associated with increased perlecan deposition and decreased SMC replication rates.
However, significantly decreased PTEN activity was detected in aortas of perlecan-deficient mouse embryos, consistent with SMC hyperplasia observed in these animals, compared with E17.
5 heterozygous controls that produce abundant amounts of perlecan at this developmental time point.
Our data show PTEN is a potent endogenously produced inhibitor of SMC growth and increased PTEN activity mediates perlecan-induced suppression of SMC proliferation.
Related Results
PTEN Is Essential for Normal Cytokine Signaling and Oncogenic Transformation of Pre-B Cells
PTEN Is Essential for Normal Cytokine Signaling and Oncogenic Transformation of Pre-B Cells
Abstract
Background: PTEN is a negative regulator of PI3K-AKT signaling and a potent tumor suppressor throughout all main types of human cancer. Recent work demonstr...
Complex Collision Tumors: A Systematic Review
Complex Collision Tumors: A Systematic Review
Abstract
Introduction: A collision tumor consists of two distinct neoplastic components located within the same organ, separated by stromal tissue, without histological intermixing...
Promoter Methylation and Phosphorylation Status of PTEN in Taiwanese Breast Cancer.
Promoter Methylation and Phosphorylation Status of PTEN in Taiwanese Breast Cancer.
Abstract
Background: The PTEN (phosphatase and tensin homolog deleted on chromosome Ten) gene is a novel candidate of tumor suppressor that plays an important role i...
Induction of PTEN-p53 Crosstalk in Mammary Epithelial Cells: A Novel Mechanism of Breast Cancer Prevention by the Dietary Factor Genistein.
Induction of PTEN-p53 Crosstalk in Mammary Epithelial Cells: A Novel Mechanism of Breast Cancer Prevention by the Dietary Factor Genistein.
Abstract
Consumption of soy foods either at an early age or for lifetime has been associated with reduced risk for developing breast cancer in humans and in animal m...
Abstract 136: PTEN phosphatase inhibits metastasis through negatively affecting Entpd5/IGF1R pathway
Abstract 136: PTEN phosphatase inhibits metastasis through negatively affecting Entpd5/IGF1R pathway
Abstract
Migration of cancer cell is the key event in metastasis. Recent data suggest that PTEN phosphatase activity may be required for inhibiting cell migration; h...
Fonctions de la protéine suppresseur de tumeurs PTEN : régulation par les β-arrestines et par l’interaction intramoléculaire
Fonctions de la protéine suppresseur de tumeurs PTEN : régulation par les β-arrestines et par l’interaction intramoléculaire
La protéine suppresseur de tumeurs PTEN (Phosphatase and tensin deleted on chromosome 10) est une phosphatase lipidique. En déphosphorylant le phosphatidylinositol (3,4,5) trisphos...
Perlecan Up-Regulation of FRNK Suppresses Smooth Muscle Cell Proliferation via Inhibition of FAK Signaling
Perlecan Up-Regulation of FRNK Suppresses Smooth Muscle Cell Proliferation via Inhibition of FAK Signaling
We previously reported that fully assembled basement membranes are nonpermissive to smooth muscle cell (SMC) replication and that perlecan (PN), a basement membrane heparan sulfate...
Poster 247: Muscle ERRγ Overexpression Mitigates the Muscle Atrophy after ACL injury
Poster 247: Muscle ERRγ Overexpression Mitigates the Muscle Atrophy after ACL injury
Objectives:
Anterior cruciate ligament (ACL) reconstruction is the 6th most common orthopedic procedure performed in the United States (1,2). There is substanti...

