Asanuma Katsuhiko, Campbell Kirk Nicholas, Kim Kwanghee, Faul Christian, Mundel Peter
Department of Medicine, Mount Sinai School of Medicine, New York, NY 10029, USA.
Proc Natl Acad Sci U S A. 2007 Jun 12;104(24):10134-9. doi: 10.1073/pnas.0700917104. Epub 2007 May 30.
Kidney podocytes and their slit diaphragms (SDs) form the final barrier to urinary protein loss. There is mounting evidence that SD proteins also participate in intracellular signaling pathways. The SD protein nephrin serves as a component of a signaling complex that directly links podocyte junctional integrity to actin cytoskeletal dynamics. Another SD protein, CD2-associated protein (CD2AP), is an adaptor molecule involved in podocyte homeostasis that can repress proapoptotic TGF-beta signaling in podocytes. Here we show that dendrin, a protein originally identified in telencephalic dendrites, is a constituent of the SD complex, where it directly binds to nephrin and CD2AP. In experimental glomerulonephritis, dendrin relocates from the SD to the nucleus of injured podocytes. High-dose, proapoptotic TGF-beta1 directly promotes the nuclear import of dendrin, and nuclear dendrin enhances both staurosporine- and TGF-beta1-mediated apoptosis. In summary, our results identify dendrin as an SD protein with proapoptotic signaling properties that accumulates in the podocyte nucleus in response to glomerular injury and provides a molecular target to tackle proteinuric kidney diseases. Nuclear relocation of dendrin may provide a mechanism whereby changes in SD integrity could translate into alterations of podocyte survival under pathological conditions.
肾足细胞及其裂孔隔膜(SDs)构成了阻止尿蛋白流失的最后一道屏障。越来越多的证据表明,SD蛋白也参与细胞内信号通路。SD蛋白nephrin作为信号复合物的一个组成部分,直接将足细胞连接完整性与肌动蛋白细胞骨架动力学联系起来。另一种SD蛋白,即CD2相关蛋白(CD2AP),是一种参与足细胞稳态的衔接分子,它可以抑制足细胞中促凋亡的TGF-β信号。在此我们表明,dendrin最初是在端脑树突中发现的一种蛋白质,是SD复合物的一个组成部分,在其中它直接与nephrin和CD2AP结合。在实验性肾小球肾炎中,dendrin从SD转移至受损足细胞的细胞核。高剂量的促凋亡TGF-β1直接促进dendrin的核输入,而细胞核中的dendrin会增强星形孢菌素和TGF-β1介导的细胞凋亡。总之,我们的结果确定dendrin是一种具有促凋亡信号特性的SD蛋白,它在肾小球损伤时在足细胞核中积累,并为治疗蛋白尿性肾脏疾病提供了一个分子靶点。dendrin的核转位可能提供了一种机制,通过该机制,SD完整性的变化可在病理条件下转化为足细胞存活的改变。