Wharram B L, Goyal M, Gillespie P J, Wiggins J E, Kershaw D B, Holzman L B, Dysko R C, Saunders T L, Samuelson L C, Wiggins R C
Department of Internal Medicine, University of Michigan, Ann Arbor, Michigan 48109, USA.
J Clin Invest. 2000 Nov;106(10):1281-90. doi: 10.1172/JCI7236.
Glomerular epithelial protein 1 (GLEPP1) is a receptor tyrosine phosphatase present on the apical cell surface of the glomerular podocyte. The GLEPP1 gene (PTPRO:) was disrupted at an exon coding for the NH(2)-terminal region by gene targeting in embryonic stem cells. Heterozygote mating produced the expected genotypic ratio of 1:2:1, indicating that the Ptpro(-/-) genotype does not lead to embryonic or neonatal lethality. Kidney and glomerular structure was normal at the gross and light microscopic levels. Scanning and transmission electron microscopy showed that Ptpro(-/-) mice had an amoeboid rather than the typical octopoid structure seen in the wild-type mouse podocyte and that there were blunting and widening of the minor (foot) processes in association with altered distribution of the podocyte intermediate cytoskeletal protein vimentin. Reduced filtration surface area in association with these structural changes was confirmed by finding reduced glomerular nephrin content and reduced glomerular filtration rate in Ptpro(-/-) mice. There was no detectable increase in the urine albumin excretion of Ptpro(-/-) mice. After removal of one or more kidneys, Ptpro(-/-) mice had higher blood pressure than did their wild-type littermates. These data support the conclusion that the GLEPP1 (Ptpro) receptor plays a role in regulating the glomerular pressure/filtration rate relationship through an effect on podocyte structure and function.
肾小球上皮蛋白1(GLEPP1)是一种存在于肾小球足细胞顶端细胞表面的受体酪氨酸磷酸酶。通过对胚胎干细胞进行基因靶向操作,GLEPP1基因(PTPRO:)在编码NH(2)-末端区域的外显子处被破坏。杂合子交配产生了预期的1:2:1基因型比例,表明Ptpro(-/-)基因型不会导致胚胎或新生儿致死。在大体和光学显微镜水平上,肾脏和肾小球结构正常。扫描和透射电子显微镜显示,Ptpro(-/-)小鼠的足细胞具有变形虫样而非野生型小鼠足细胞中典型的章鱼样结构,并且存在次级(足)突的变钝和增宽,同时伴有足细胞中间细胞骨架蛋白波形蛋白分布的改变。通过检测发现Ptpro(-/-)小鼠肾小球nephrin含量降低和肾小球滤过率降低,证实了与这些结构变化相关的滤过表面积减少。Ptpro(-/-)小鼠的尿白蛋白排泄没有可检测到的增加。切除一个或多个肾脏后,Ptpro(-/-)小鼠的血压高于其野生型同窝小鼠。这些数据支持以下结论:GLEPP1(Ptpro)受体通过影响足细胞结构和功能,在调节肾小球压力/滤过率关系中发挥作用。