Platelet‐derived growth factor mediates tight junction redistribution and increases permeability in MDCK cells
- 10 October 2002
- journal article
- Published by Wiley in Journal of Cellular Physiology
- Vol. 193 (3) , 349-364
- https://doi.org/10.1002/jcp.10183
Abstract
Increased tissue permeability is a common characteristic of a number of diseases such as pulmonary edema, inflammatory bowel disease, several kidney diseases, diabetic retinopathy, and tumors. We hypothesized that growth factors increase permeability by redistribution of tight junction proteins away from the cell border. To investigate mechanisms of growth factor‐mediated permeability, we examined the effect of platelet derived growth factor (PDGF) on Madin‐Darby canine kidney (MDCK) cell tight junction protein distribution and on permeability. PDGF altered the cellular distribution of occludin and ZO‐1 from the cell border to the cytoplasm and increased permeability to 70 kDa dextran in a concentration‐dependent manner. Treatment of MDCK cells with PDGF prior to fixation allowed binding of the lectin concanavalin A to the basement membrane of fixed cells, while binding was prevented in untreated control monolayers, implying that PDGF induced the formation of a paracellular transport pathway. Cell fractionation experiments with PDGF‐treated cells revealed a novel occludin‐containing low‐density, detergent resistant subcellular structure, which increased in the buoyant fractions relative to occludin in the pellet in a time‐ and concentration‐dependent manner. Immunocytochemistry revealed that a pool of internalized occludin co‐labels with the early endosome marker, EEA1, suggesting that PDGF may stimulate occludin to enter an endosomal pathway. PDGF may act as a permeabilizing agent by moving tight junction proteins away from the cell border in discrete microdomains, and the effects of PDGF on permeability and tight junction protein distribution may model the regulation of epithelial and endothelial barrier properties by other peptide growth factors. J. Cell. Physiol. 193: 349–364, 2002.Keywords
This publication has 55 references indexed in Scilit:
- Hakai, a c-Cbl-like protein, ubiquitinates and induces endocytosis of the E-cadherin complexNature Cell Biology, 2002
- Junctional Adhesion Molecule Interacts with the PDZ Domain-containing Proteins AF-6 and ZO-1Journal of Biological Chemistry, 2000
- Effect of Vascular Endothelial Growth Factor on Cultured Endothelial Cell Monolayer Transport PropertiesMicrovascular Research, 2000
- Claudin-1 contributes to the epithelial barrier function in MDCK cellsEuropean Journal of Cell Biology, 1999
- Expression of Zonula Occludens and Adherens Junctional Proteins in Human Venous and Arterial Endothelian Cells: Role of Occludin in Endothelial Solute BarriersMicrocirculation, 1998
- The SH3 domain of the tight junction protein ZO‐1 binds to a serine protein kinase that phosphorylates a region C‐terminal to this domainFEBS Letters, 1996
- Functional dissociation of paracellular permeability and transepithelial electrical resistance and disruption of the apical-basolateral intramembrane diffusion barrier by expression of a mutant tight junction membrane protein.The Journal of cell biology, 1996
- Transforming Growth Factor-α Abrogates Glucocorticoid-stimulated Tight Junction Formation and Growth Suppression in Rat Mammary Epithelial Tumor CellsJournal of Biological Chemistry, 1995
- Morphological factors influencing transepithelial permeability: A model for the resistance of theZonula OccludensThe Journal of Membrane Biology, 1978
- JUNCTIONAL COMPLEXES IN VARIOUS EPITHELIAThe Journal of cell biology, 1963