Roselli Séverine, Heidet Laurence, Sich Mireille, Henger Anna, Kretzler Matthias, Gubler Marie-Claire, Antignac Corinne
INSERM U574, Hôpital Necker-Enfants Malades, Université René Descartes, Tour Lavoisier 6ème étage, 75743 Paris, France.
Mol Cell Biol. 2004 Jan;24(2):550-60. doi: 10.1128/MCB.24.2.550-560.2004.
Podocytes are specialized epithelial cells covering the basement membrane of the glomerulus in the kidney. The molecular mechanisms underlying the role of podocytes in glomerular filtration are still largely unknown. We generated podocin-deficient (Nphs2-/-) mice to investigate the function of podocin, a protein expressed at the insertion of the slit diaphragm in podocytes and defective in a subset of patients with steroid-resistant nephrotic syndrome and focal and segmental glomerulosclerosis. Nphs2-/- mice developed proteinuria during the antenatal period and died a few days after birth from renal failure caused by massive mesangial sclerosis. Electron microscopy revealed the extensive fusion of podocyte foot processes and the lack of a slit diaphragm in the remaining foot process junctions. Using real-time PCR and immunolabeling, we showed that the expression of other slit diaphragm components was modified in Nphs2-/- kidneys: the expression of the nephrin gene was downregulated, whereas that of the ZO1 and CD2AP genes appeared to be upregulated. Interestingly, the progression of the renal disease, as well as the presence or absence of renal vascular lesions, depends on the genetic background. Our data demonstrate the crucial role of podocin in the establishment of the glomerular filtration barrier and provide a suitable model for mapping and identifying modifier genes involved in glomerular diseases caused by podocyte injuries.
足细胞是覆盖在肾脏肾小球基底膜上的特殊上皮细胞。足细胞在肾小球滤过中所起作用的分子机制仍 largely 未知。我们生成了足突蛋白缺陷(Nphs2-/-)小鼠,以研究足突蛋白的功能,足突蛋白是一种在足细胞裂孔隔膜插入处表达的蛋白质,在一部分激素抵抗性肾病综合征和局灶节段性肾小球硬化患者中存在缺陷。Nphs2-/-小鼠在产前阶段出现蛋白尿,并在出生后几天因大量系膜硬化导致的肾衰竭而死亡。电子显微镜显示足细胞足突广泛融合,剩余足突连接处缺乏裂孔隔膜。通过实时 PCR 和免疫标记,我们发现 Nphs2-/-肾脏中其他裂孔隔膜成分的表达发生了改变:nephrin 基因的表达下调,而 ZO1 和 CD2AP 基因的表达似乎上调。有趣的是,肾脏疾病的进展以及肾血管病变的有无取决于遗传背景。我们的数据证明了足突蛋白在建立肾小球滤过屏障中的关键作用,并为定位和鉴定参与足细胞损伤引起的肾小球疾病的修饰基因提供了一个合适的模型。