Department of Internal Medicine, Division of Molecular Medicine and Genetics, University of Michigan Medical School, Ann Arbor, MI 48109, USA.
J Am Soc Nephrol. 2013 Feb;24(2):209-16. doi: 10.1681/ASN.2012080795. Epub 2012 Dec 20.
The insect nephrocyte and the mammalian glomerular podocyte are similar with regard to filtration, but it remains unclear whether there is an organ or cell type in flies that reabsorbs proteins. Here, we show that the Drosophila nephrocyte has molecular, structural, and functional similarities to the renal proximal tubule cell. We screened for genes required for nephrocyte function and identified two Drosophila genes encoding orthologs of mammalian cubilin and amnionless (AMN), two major receptors for protein reabsorption in the proximal tubule. In Drosophila, expression of dCubilin and dAMN is specific to nephrocytes, where they function as co-receptors for protein uptake. Targeted expression of human AMN in Drosophila nephrocytes was sufficient to rescue defective protein uptake induced by dAMN knockdown, suggesting evolutionary conservation of Cubilin/AMN co-receptors function from flies to humans. Furthermore, we found that Cubilin/AMN-mediated protein reabsorption is required for the maintenance of nephrocyte ultrastructure and fly survival under conditions of toxic stress. In conclusion, the insect nephrocyte combines filtration with protein reabsorption, using evolutionarily conserved genes and subcellular structures, suggesting that it can serve as a simplified model for both podocytes and the renal proximal tubule.
昆虫的肾单位和哺乳动物的肾小球足细胞在过滤方面相似,但尚不清楚果蝇中是否存在吸收蛋白质的器官或细胞类型。在这里,我们表明果蝇的肾单位在分子、结构和功能上与肾近端小管细胞相似。我们筛选了与肾单位功能相关的基因,并鉴定出两个编码果蝇 Cubilin 和 Amnionless(AMN)的同源基因,它们是近端小管中蛋白质重吸收的主要受体之一。在果蝇中,dCubilin 和 dAMN 的表达特异性地存在于肾单位中,它们作为蛋白质摄取的共受体发挥作用。在果蝇的肾单位中靶向表达人 AMN 足以挽救 dAMN 敲低诱导的蛋白质摄取缺陷,表明 Cubilin/AMN 共受体功能从果蝇到人类的进化保守性。此外,我们发现 Cubilin/AMN 介导的蛋白质重吸收对于维持在有毒应激条件下的肾单位超微结构和果蝇的生存是必需的。总之,昆虫的肾单位将过滤与蛋白质重吸收结合在一起,使用进化保守的基因和亚细胞结构,这表明它可以作为足细胞和肾近端小管的简化模型。