Liu Yipeng, Liang Wei, Yang Yingjie, Pan Yangbin, Yang Qian, Chen Xinghua, Singhal Pravin C, Ding Guohua
Division of Nephrology, Renmin Hospital of Wuhan University, Wuhan, China; Department of Nephrology, Qianfoshan Hospital, Shandong University, Jinan, China.
Division of Nephrology, Renmin Hospital of Wuhan University, Wuhan, China.
Cell Signal. 2015 Apr;27(4):867-77. doi: 10.1016/j.cellsig.2015.01.015. Epub 2015 Jan 31.
Increasing data has shown that the cytoskeletal reorganization of podocytes is involved in the onset of proteinuria and the progression of glomerular disease. Nephrin behaves as a signal sensor of the slit diaphragm to transmit cytoskeletal signals to maintain the unique structure of podocytes. However, the nephrin signaling cascade deserves further study. IQGAP1 is a scaffolding protein with the ability to regulate cytoskeletal organization. It is hypothesized that IQGAP1 contributes to actin reorganization in podocytes through interaction with nephrin. IQGAP1 expression and IQGAP1-nephrin colocalization in glomeruli were progressively decreased and then gradually recovered in line with the development of foot process fusion and proteinuria in puromycin aminonucleoside-injected rats. In cultured human podocytes, puromycin aminonucleoside-induced disruption of F-actin and disorders of migration and spreading were aggravated by IQGAP1 siRNA, and these effects were partially restored by a wild-type IQGAP1 plasmid. Furthermore, the cytoskeletal disorganization stimulated by cytochalasin D in COS7 cells was recovered by cotransfection with wild-type IQGAP1 and nephrin plasmids but was not recovered either by single transfection of the wild-type IQGAP1 plasmid or by cotransfection of mutant IQGAP1 [△1443(S→A)] and wild-type nephrin plasmids. Co-immunoprecipitation analysis using lysates of COS7 cells overexpressing nephrin and each derivative-domain molecule of IQGAP1 demonstrated that the poly-proline binding domain and RasGAP domain in the carboxyl terminus of IQGAP1 are the target modules that interact with nephrin. Collectively, these findings showed that activated IQGAP1, as an intracellular partner of nephrin, is involved in actin cytoskeleton organization and functional regulation of podocytes.
越来越多的数据表明,足细胞的细胞骨架重排参与蛋白尿的发生和肾小球疾病的进展。Nephrin作为裂孔隔膜的信号传感器,传递细胞骨架信号以维持足细胞的独特结构。然而,Nephrin信号级联反应值得进一步研究。IQGAP1是一种具有调节细胞骨架组织能力的支架蛋白。据推测,IQGAP1通过与Nephrin相互作用促进足细胞中的肌动蛋白重排。在注射嘌呤霉素氨基核苷的大鼠中,随着足突融合和蛋白尿的发展,肾小球中IQGAP1的表达以及IQGAP1与Nephrin的共定位逐渐降低,然后逐渐恢复。在培养的人足细胞中,IQGAP1 siRNA加剧了嘌呤霉素氨基核苷诱导的F-肌动蛋白破坏以及迁移和铺展紊乱,而野生型IQGAP1质粒部分恢复了这些效应。此外,在COS7细胞中,细胞松弛素D刺激的细胞骨架紊乱通过与野生型IQGAP1和Nephrin质粒共转染得以恢复,但单独转染野生型IQGAP1质粒或突变型IQGAP1[△1443(S→A)]与野生型Nephrin质粒共转染均未恢复。使用过表达Nephrin和IQGAP1每个衍生结构域分子的COS7细胞裂解物进行的免疫共沉淀分析表明,IQGAP1羧基末端的多脯氨酸结合结构域和RasGAP结构域是与Nephrin相互作用的靶模块。总的来说,这些发现表明,活化的IQGAP1作为Nephrin的细胞内伙伴,参与足细胞的肌动蛋白细胞骨架组织和功能调节。