Zurich Center for Integrative Human Physiology, University of Zurich, Zurich, Switzerland.
Institute of Anatomy, University of Zurich, Zurich, Switzerland.
Kidney Int. 2015 Nov;88(5):1047-56. doi: 10.1038/ki.2015.197. Epub 2015 Jul 8.
Podocyte dysfunction impairs the size selectivity of the glomerular filter, leading to proteinuria, hypoalbuminuria, and edema, clinically defined as nephrotic syndrome. Hereditary forms of nephrotic syndrome are linked to mutations in podocyte-specific genes. To identify genes contributing to podocyte dysfunction in acquired nephrotic syndrome, we studied human glomerular gene expression data sets for glomerular-enriched gene transcripts differentially regulated between pretransplant biopsy samples and biopsies from patients with nephrotic syndrome. Candidate genes were screened by in situ hybridization for expression in the zebrafish pronephros, an easy-to-use in vivo assay system to assess podocyte function. One glomerulus-enriched product was the Rho-GTPase binding protein, IQGAP2. Immunohistochemistry found a strong presence of IQGAP2 in normal human and zebrafish podocytes. In zebrafish larvae, morpholino-based knockdown of iqgap2 caused a mild foot process effacement of zebrafish podocytes and a cystic dilation of the urinary space of Bowman's capsule upon onset of urinary filtration. Moreover, the glomerulus of zebrafish morphants showed a glomerular permeability for injected high-molecular-weight dextrans, indicating an impaired size selectivity of the glomerular filter. Thus, IQGAP2 is a Rho-GTPase binding protein, highly abundant in human and zebrafish podocytes, which controls normal podocyte structure and function as evidenced in the zebrafish pronephros.
足细胞功能障碍损害肾小球滤过的大小选择性,导致蛋白尿、低白蛋白血症和水肿,临床上定义为肾病综合征。肾病综合征的遗传性形式与足细胞特异性基因的突变有关。为了确定导致获得性肾病综合征中足细胞功能障碍的基因,我们研究了人类肾小球基因表达数据集,以寻找在移植前活检样本和肾病综合征患者活检样本之间差异调节的肾小球丰富基因转录物。通过原位杂交筛选候选基因,在斑马鱼原肾中进行表达筛选,这是一种评估足细胞功能的易于使用的体内检测系统。一个肾小球丰富的产物是 Rho-GTPase 结合蛋白 IQGAP2。免疫组织化学发现 IQGAP2 在正常人和斑马鱼足细胞中大量存在。在斑马鱼幼虫中,基于 morpholino 的 iqgap2 敲低导致斑马鱼足细胞的轻微足突消失,并在开始尿液过滤时出现 Bowman 囊尿空间的囊性扩张。此外,斑马鱼形态发生体的肾小球显示出对注射的高分子量葡聚糖的肾小球通透性,表明肾小球滤过的大小选择性受损。因此,IQGAP2 是一种 Rho-GTPase 结合蛋白,在人和斑马鱼足细胞中高度丰富,它控制着正常的足细胞结构和功能,这在斑马鱼原肾中得到了证实。