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首页> 外文期刊>Cellular Signalling >Inhibition of nephrin activation by c-mip through Csk-Cbp-Fyn axis plays a critical role in Angiotensin II-induced podocyte damage
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Inhibition of nephrin activation by c-mip through Csk-Cbp-Fyn axis plays a critical role in Angiotensin II-induced podocyte damage

机译:c-mip通过Csk-Cbp-Fyn轴抑制nephrin激活在血管紧张素II诱导的足细胞损伤中起关键作用

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It has been demonstrated that nephrin inactivation plays a critical role in Angiotensin II (AngII)-induced podocyte damage both in in vitro and in vivo, but the underlying molecular mechanisms are still unclear. Recently, c-maf inducing protein (c-mip) has been identified as a key component in the molecular pathogenesis of acquired podocyte diseases. In this study, the role of c-mip on AngII-induced nephrin inactivation and podocyte damage was explored in a mouse podocyte cell line. AngII stimulation caused podocyte damage, presenting with a time and dose dependent cell apoptosis increment, and obvious reorganization of actin cytoskeleton, both of which was remarkably prevented by knockdown of c-mip (siCmip). In AngII stimulated podocyte, c-mip and Csk expressions increased obviously at protein level, and nephrin phosphorylation decreased while Cbp phosphorylation increased. AngII-induced Csk increment and nephrin inactivation was remarkably inhibited by siCmip treatment. AngII stimulation increased the interaction of c-mip and Csk, as well as Csk and Cbp. Notably, the binding of Csk to active form pY418 decreased while the binding of Csk to inactive form pY530 of Src kinase Fyn increased in AngII-stimulated podocyte. Nevertheless, c-mip knockdown prevented AngII-induced reduction of pY418 and increase of pY530. In addition, AngII stimulation significantly decreased the expression of phosphor-Akt (Ser473) and antiapoptotic protein Bcl-2, whereas increased the expression of apoptotic proteins caspase-3 and BAD, all of which were prevented by siCmip treatment. Taken together, our results demonstrated that AngII induced nephrin inactivation and podocyte damage by the novel podocyte protein c-mip through Csk-Cbp-Fyn signaling pathway.
机译:已经证明,在体外和体内,肾素失活在血管紧张素II(AngII)诱导的足细胞损伤中都起着关键作用,但是潜在的分子机制仍不清楚。最近,c-maf诱导蛋白(c-mip)已被确定为获得性足细胞疾病的分子发病机理中的关键成分。在这项研究中,在小鼠足细胞细胞系中探索了c-mip在AngII诱导的肾素失活和足细胞损伤中的作用。 AngII刺激引起足细胞损伤,表现出时间和剂量依赖性的细胞凋亡增加,并且肌动蛋白细胞骨架明显重组,这两者均通过敲低c-mip(siCmip)得以明显阻止。在AngII刺激的足细胞中,c-mip和Csk表达在蛋白质水平上明显增加,而肾素磷酸化减少而Cbp磷酸化增加。 siCmip处理可显着抑制AngII诱导的Csk增加和肾素失活。 AngII刺激增加了c-mip和Csk以及Csk和Cbp的相互作用。值得注意的是,在AngII刺激的足细胞中,Csk与活性形式pY418的结合减少,而Csk与Src激酶Fyn的非活性形式pY530的结合增加。然而,c-mip敲低阻止了AngII诱导的pY418减少和pY530的增加。此外,AngII刺激显着降低了磷酸化Akt(Ser473)和抗凋亡蛋白Bcl-2的表达,而增加了凋亡蛋白caspase-3和BAD的表达,所有这些均被siCmip处理所阻止。两者合计,我们的结果表明,AngII通过Csk-Cbp-Fyn信号通路通过新型足细胞蛋白c-mip诱导肾素失活和足细胞损伤。

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