Journal of the American Society of Nephrology · 2004 · 16 citations · 35 references
The urokinase receptor (uPAR) attenuates myofibroblast recruitment and fibrosis in the kidney. This study examined the role of uPAR and its co-receptor LDL receptor-related protein (LRP) in the regulation of kidney fibroblast proliferation and extracellular signal-regulated kinase (ERK) signaling. Compared with uPAR+/+ cells, uPAR-/- kidney fibroblasts were hyperproliferative. UPAR-/- fibroblast proliferation was 60% inhibited by an ERK kinase inhibitor. LRP protein was reduced and extracellular accumulation of urokinase-type plasminogen activator (uPA) and plasminogen activator inhibitor type 1 (PAI-1) proteins were greater in uPAR-/- cultures. Addition of functional uPA protein or LRP antisense RNA significantly increased ERK signaling and cell mitosis in both genotypes. Enhanced uPAR-/- fibroblast proliferation was reversed by a recombinant nonfunctional uPA peptide. The density of cell-bound fluor-uPA was similar between uPAR-/- and uPAR+/+ fibroblasts (78 +/- 6 versus 92 +/- 16 units). These data suggest that uPAR-deficient kidney fibroblasts express lower levels of its scavenger co-receptor LRP, resulting in greater extracellular accumulation of uPA and PAI-1. Enhanced proliferation of uPAR-/- fibroblasts seems to be mediated by uPA-dependent ERK signaling via an alternative urokinase receptor.
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Dudley K. Strickland, James Ashcom, Suzanne E. Williams et al. · Journal of Biological Chemistry · 1990 · 660 citations · Full text
Solid Phase, Immunology, Low Density +17
Jiří Lukáš, Jiřina Bártková, Jiří Bártek · Molecular and Cellular Biology · 1996 · 327 citations · Full text
PAI-1 deficiency attenuates the fibrogenic response to ureteral obstruction
Young Ok Jung, Heung Soo Kim, Xiaohe Cai et al. · Kidney International · 2001 · 272 citations · Full text