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Division of Nephrology, Fundación Jiménez Díaz, Universidad Autonoma de Madrid, Spain.
Correspondence to Dr. Alberto Ortiz, Unidad de Diálisis, Fundación Jiménez Díz, Avda Reyes Católicos 2, 28040 Madrid, Spain. Fax : +34 915 494 764 ; E-mail : aortiz{at}fjd.es
Abstract. Fas ligand (FasL) is a cell membrane cytokine
that can promote apoptosis through activation of Fas receptors. Fas receptor
activation induces glomerular cell apoptosis in vivo and participates
in tubular cell death during acute renal failure. However, there is little
information on the expression of FasL in the kidney. This study reports that
FasL mRNA and protein are present in normal mouse and rat kidney. In
situ hybridization and immunohistochemistry showed that proximal tubular
epithelium is the main site of FasL expression in the normal kidney. In
addition, increased total kidney FasL mRNA and de novo FasL protein
expression by glomerular cells were observed in two different models of
glomerular injury : rat immune-complex proliferative glumerulonephritis and
murine lupus nephritis. Both full-length and soluble FasL were increased in
the kidneys of the mice with nephritis. Cultured murine proximal tubular
epithelial MCT cells and primary cultures of murine tubular epithelial cells
expressed FasL mRNA and protein. Tubular epithelium-derived FasL induced
apoptosis in Fassensitive lymphoid cell lines but not in Fas-resistant
lymphoid cell lines. By contrast, MCT cells grown in the presence of the
survival factors of serum were resistant to FasL, and only became partially
sensitive to apoptosis induced by high concentrations (100 ng/ml) of FasL upon
serum deprivation. However, MCT cells stimulated with inflammatory mediators
(tumor necrosis factor-
, interferon-
, and lipopolysaccharide)
increased cell surface Fas expression and were sensitized to apoptosis induced
by FasL (FasL 55 ± 5% versus control 8.3 ± 4.1%
apoptotic cells at 24 h, P < 0.05). Cytokine-primed primary
cultures of tubular epithelial cells also acquired sensitivity to FasL-induced
apoptosis. These results suggest that FasL expression by intrinsic renal cells
may play a role in cell homeostasis in the normal kidney and during renal
injury.
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