Expression and function of C/EBP homology protein (GADD153) in podocytes

被引:61
作者
Bek, MF
Bayer, M
Müller, B
Greiber, S
Lang, D
Schwab, A
August, C
Springer, E
Rohrbach, R
Huber, TB
Benzing, T
Pavenstädt, H
机构
[1] Univ Clin Muenster, Div Nephrol & Gen Med, Dept Med, D-48149 Munster, Germany
[2] Univ Clin Muenster, Dept Pathol, D-48149 Munster, Germany
[3] Univ Munster, Dept Physiol 2, D-4400 Munster, Germany
[4] Univ Clin Freiburg, Dept Pathol, Freiburg, Germany
[5] Univ Clin Freiburg, Dept Med, Div Nephrol & Gen Med, Freiburg, Germany
关键词
D O I
10.2353/ajpath.2006.040774
中图分类号
R36 [病理学];
学科分类号
100104 ;
摘要
Podocytes are crucial for the permeability of the glomerular filtration barrier. in glomerular disease, however, reactive oxygen species (ROS) may be involved in podocyte injury and subsequent proteinuria. Here, we describe ROS-dependent gene induction in differentiated podocytes stimulated with H2O2 or xanthine/xanthine-oxidase. Superoxide anions and H2O2 increased mRNA and protein expression of GAS5 (growth arrest-specific protein 5) and CHOP (C/EBP homology protein). Cultured podocytes over-expressing CHOP showed increased generation of superoxide anions compared to controls. In addition, the expression of alpha(3)/beta(1) integrins, crucial for cell-matrix interaction of podocytes, was down-regulated, leading to increased cell-matrix adhesion and cell displacement. The altered cell-matrix adhesion was antagonized by the ROS scavenger 1,3-dimethyl-2-thiourea, and the increase in cell displacement could be mimicked by stimulating untransfected podocytes with puromycin, an inductor of ROS. We next performed immunohistochemical staining of human kidney tissue (normal, membranous nephropathy, focal segmental glomerulosclerosis, and minimal change nephropathy) as well as sections from rats with puromycin nephrosis, a model of minimal change nephropathy. CHOP was weakly expressed in podocytes of control kidneys but up-regulated in most protein uric human kidneys and in rat puromycin nephrosis. Our data suggest that CHOP-via increased ROS generation-regulates cell-matrix adhesion of podocytes in glomerular disease.
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页码:20 / 32
页数:13
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