Division of Pediatric Nephrology, Children's Hospital of Pittsburgh, 530 45th Street, Pittsburgh, PA 15201, USA.
Am J Physiol Renal Physiol. 2012 Apr 15;302(8):F1013-24. doi: 10.1152/ajprenal.00289.2011. Epub 2012 Jan 4.
Albumin in the glomerular filtrate is normally retrieved by concerted efforts of clathrin, LDL-type receptor megalin- and clathrin-associated sorting proteins. In glomerular diseases, albumin overload triggers a proapoptotic and inflammatory response contributing to tubulointerstitial fibrosis and tubular atrophy. The relationship between albumin overload-induced proximal tubule injury and albumin endocytosis remains to be discovered. We investigated presence of a possible overlap between endocytosis and cell survival. We showed a novel interaction between prosurvival protein, protein kinase B (PKB/Akt), and adaptor protein, disabled 2 (Dab2), with coimmunoprecipitation. Further delineation of this interaction by GST pull-down experiments utilizing different Dab2 constructs identified proline-rich domain as the interacting partner. Expression of Dab2 and PKB/Akt was downregulated at high concentrations of albumin associated with apoptosis. We then examined the physiological relevance of this interaction with functional studies. Overexpression of PKB/Akt increased albumin uptake in human proximal tubule cells. Conversely, inhibition of PKB/Akt with a nonselective Akt/PKB signaling inhibitor-2 and a dominant negative construct of PKB/Akt resulted in a decrease in albumin uptake. Inhibition of Dab2 by silencing RNA abolished PKB/Akt-induced albumin uptake demonstrating the physiological importance of this novel interaction. We concluded that PKB/Akt is part of an endocytic machinery and it mediates albumin uptake through its interaction with Dab2. The role that PKB/Akt plays in the endocytic cascade may dictate its decreased expression in proteinuric states in an attempt to limit albumin endocytosis that may tilt the balance between cell survival and apoptosis toward cell death.
在肾小球中,滤过液中的白蛋白通常通过网格蛋白、LDL 型受体 megalin 和网格蛋白相关分拣蛋白的协同作用被重吸收。在肾小球疾病中,白蛋白过载会引发促凋亡和炎症反应,导致肾小管间质纤维化和肾小管萎缩。白蛋白过载诱导的近端肾小管损伤与白蛋白内吞之间的关系尚待发现。我们研究了内吞作用和细胞存活之间是否存在可能的重叠。我们发现了存活蛋白蛋白激酶 B (PKB/Akt) 和衔接蛋白Disabled 2 (Dab2) 之间的一种新的相互作用,并通过共免疫沉淀进行了证实。利用不同的 Dab2 构建体进行 GST 下拉实验进一步阐明了这种相互作用,发现富含脯氨酸的结构域是相互作用的伴侣。Dab2 和 PKB/Akt 的表达在与细胞凋亡相关的高浓度白蛋白时下调。然后,我们通过功能研究检查了这种相互作用的生理相关性。在人近端肾小管细胞中,过表达 PKB/Akt 会增加白蛋白的摄取。相反,用非选择性 Akt/PKB 信号转导抑制剂-2 和 PKB/Akt 的显性负性构建体抑制 PKB/Akt 会导致白蛋白摄取减少。用沉默 RNA 抑制 Dab2 会消除 PKB/Akt 诱导的白蛋白摄取,证明了这种新相互作用的生理重要性。我们的结论是,PKB/Akt 是内吞作用机制的一部分,它通过与 Dab2 的相互作用介导白蛋白的摄取。PKB/Akt 在胞吞级联反应中的作用可能决定了其在蛋白尿状态下表达减少,试图限制可能使细胞存活和凋亡之间平衡向细胞死亡倾斜的白蛋白内吞作用。