Gekle Michael, Völker Katharina, Mildenberger Sigrid, Freudinger Ruth, Shull Gary E, Wiemann Martin
Physiologisches Institut, Universität Würzburg, Germany.
Am J Physiol Renal Physiol. 2004 Sep;287(3):F469-73. doi: 10.1152/ajprenal.00059.2004. Epub 2004 Apr 27.
Proximal tubular receptor-mediated endocytosis (RME) of filtered proteins prevents proteinuria. Pharmacological and genetic studies in cultured opossum kidney cells have shown that the apical Na(+)/H(+) exchanger isoform 3 (NHE3) supports RME by interference with endosomal pH homeostasis and endocytic fusion events. However, it is not known whether NHE3 also supports proximal tubular RME in vivo. We analyzed proximal tubular protein reabsorption by microinfusion experiments in rats and investigated renal protein excretion in NHE3 knockout (Nhe3 -/-) mice. Inhibition of NHE3 by EIPA or S-3226 reduced the fractional reabsorption of [(14)C]cytochrome c by approximately 50% during early proximal microinfusion. During early distal microinfusion, no protein reabsorption could be detected. Urinary protein excretion of Nhe3 -/- or heterozygous mutant mice was significantly higher compared with wild-type mice. SDS-PAGE analysis of urinary proteins revealed that Nhe3 -/- animals excreted proteins the size of albumin or smaller. Thus a reduction in NHE3 activity or abundance causes tubular proteinuria. These data show that NHE3 supports proximal tubular RME of filtered proteins in vivo.
滤过蛋白的近端肾小管受体介导的内吞作用(RME)可预防蛋白尿。对负鼠肾细胞进行的药理学和遗传学研究表明,顶端钠氢交换体3(NHE3)通过干扰内体pH稳态和内吞融合事件来支持RME。然而,尚不清楚NHE3在体内是否也支持近端肾小管RME。我们通过大鼠微灌注实验分析了近端肾小管蛋白重吸收,并研究了NHE3基因敲除(Nhe3-/-)小鼠的肾蛋白排泄情况。在早期近端微灌注期间,EIPA或S-3226对NHE3的抑制使[14C]细胞色素c的分数重吸收降低了约50%。在早期远端微灌注期间,未检测到蛋白重吸收。与野生型小鼠相比,Nhe3-/-或杂合突变小鼠的尿蛋白排泄显著更高。尿蛋白的SDS-PAGE分析显示,Nhe3-/-动物排泄的蛋白大小为白蛋白或更小。因此,NHE3活性或丰度的降低会导致肾小管性蛋白尿。这些数据表明,NHE3在体内支持滤过蛋白的近端肾小管RME。