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Urokinase-type Plasminogen Activator Receptor (uPAR) Ligation Induces a Raft-localized Integrin Signaling Switch That Mediates the Hypermotile Phenotype of Fibrotic Fibroblasts
- Source :
- The Journal of biological chemistry, vol 289, iss 18
- Publication Year :
- 2014
- Publisher :
- Elsevier BV, 2014.
-
Abstract
- The urokinase-type plasminogen activator receptor (uPAR) is a glycosylphosphatidylinositol-linked membrane protein with no cytosolic domain that localizes to lipid raft microdomains. Our laboratory and others have documented that lung fibroblasts from patients with idiopathic pulmonary fibrosis (IPF) exhibit a hypermotile phenotype. This study was undertaken to elucidate the molecular mechanism whereby uPAR ligation with its cognate ligand, urokinase, induces a motile phenotype in human lung fibroblasts. We found that uPAR ligation with the urokinase receptor binding domain (amino-terminal fragment) leads to enhanced migration of fibroblasts on fibronectin in a protease-independent, lipid raft-dependent manner. Ligation of uPAR with the amino-terminal fragment recruited α5β1 integrin and the acylated form of the Src family kinase, Fyn, to lipid rafts. The biological consequences of this translocation were an increase in fibroblast motility and a switch of the integrin-initiated signal pathway for migration away from the lipid raft-independent focal adhesion kinase pathway and toward a lipid raft-dependent caveolin-Fyn-Shc pathway. Furthermore, an integrin homologous peptide as well as an antibody that competes with β1 for uPAR binding have the ability to block this effect. In addition, its relative insensitivity to cholesterol depletion suggests that the interactions of α5β1 integrin and uPAR drive the translocation of α5β1 integrin-acylated Fyn signaling complexes into lipid rafts upon uPAR ligation through protein-protein interactions. This signal switch is a novel pathway leading to the hypermotile phenotype of IPF patient-derived fibroblasts, seen with uPAR ligation. This uPAR dependent, fibrotic matrix-selective, and profibrotic fibroblast phenotype may be amenable to targeted therapeutics designed to ameliorate IPF.
- Subjects :
- Glycobiology and Extracellular Matrices
Integrin
Proto-Oncogene Proteins c-fyn
Severity of Illness Index
Medical and Health Sciences
Biochemistry
Mice
Cell Movement
Receptors
2.1 Biological and endogenous factors
Src family kinase
Aetiology
skin and connective tissue diseases
Lung
Lipid raft
Cells, Cultured
Microscopy
Cultured
biology
Blotting
respiratory system
Biological Sciences
Urokinase Plasminogen Activator
Urokinase Receptor
Respiratory
Fibroblast
RNA Interference
lipids (amino acids, peptides, and proteins)
biological phenomena, cell phenomena, and immunity
Signal transduction
Western
Integrin alpha5beta1
Signal Transduction
Protein Binding
Biochemistry & Molecular Biology
Cells
Blotting, Western
Caveolins
Autoimmune Disease
Fluorescence
Receptors, Urokinase Plasminogen Activator
Focal adhesion
Membrane Microdomains
Rare Diseases
FYN
Animals
Humans
neoplasms
Molecular Biology
Lipid Raft
Cell Biology
Fibroblasts
Urokinase-Type Plasminogen Activator
Fibrosis
biological factors
Idiopathic Pulmonary Fibrosis
respiratory tract diseases
Fibronectins
Fibronectin
Urokinase receptor
enzymes and coenzymes (carbohydrates)
Microscopy, Fluorescence
Shc Signaling Adaptor Proteins
Chemical Sciences
biology.protein
Cancer research
Subjects
Details
- ISSN :
- 00219258
- Volume :
- 289
- Database :
- OpenAIRE
- Journal :
- Journal of Biological Chemistry
- Accession number :
- edsair.doi.dedup.....f77cb8be41d909adaa8704154b604466
- Full Text :
- https://doi.org/10.1074/jbc.m113.498576