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缺失 ezrin 的表达降低了小鼠肾小球损伤的易感性。

Loss of ezrin expression reduced the susceptibility to the glomerular injury in mice.

机构信息

Department of Molecular Physiology, College of Pharmaceutical Sciences, Ritsumeikan University, Kusatsu, Shiga, Japan.

Department of Physiology, Tohoku University Graduate School of Medicine, Sendai, Miyagi, Japan.

出版信息

Sci Rep. 2018 Mar 14;8(1):4512. doi: 10.1038/s41598-018-22846-0.

Abstract

Ezrin is highly expressed in glomerular podocytes and is reported to form a multi-protein complex with scaffold protein Na/H exchanger regulatory factor 2 (NHERF2) and podocalyxin, a major sialoprotein. Podocalyxin-knockout mice died within 24 h of birth with anuric renal failure, whereas NHERF2-knockout mice show no apparent changes in the glomerular functions. However, the physiological roles of ezrin in glomerular podocytes remain unclear. Here, we investigated the importance of ezrin in the regulation of glomerular podocyte function using ezrin-knockdown mice (Vil2 ). The Vil2 mice did not exhibit apparent glomerular dysfunction, morphological defects or abnormal localisation of podocalyxin and NHERF2 in podocytes. Thus, we investigated the influence of ezrin defects on Rho-GTPase activity, as ezrin interacts with the Rho-GTPase dissociation inhibitor (Rho-GDI), which plays a key role in the regulation of podocyte actin organisation. In Vil2 glomeruli, Rac1 activity was significantly reduced compared to wildtype (WT) glomeruli at baseline. Furthermore, Vil2 mice showed reduced susceptibility to glomerular injury. In WT glomeruli, Rac1 activity was enhanced in nephrotic conditions, but remained at baseline levels in Vil2 glomeruli, suggesting that loss of ezrin protects podocytes from injury-induced morphological changes by suppressing Rac1 activation.

摘要

埃兹蛋白在肾小球足细胞中高度表达,据报道,它与骨架蛋白 Na/H 交换调节因子 2(NHERF2)和主要唾液酸蛋白足突蛋白形成多蛋白复合物。足突蛋白敲除小鼠在出生后 24 小时内死于无尿性肾衰竭,而 NHERF2 敲除小鼠的肾小球功能没有明显变化。然而,埃兹蛋白在肾小球足细胞中的生理作用仍不清楚。在这里,我们使用埃兹蛋白敲除小鼠(Vil2 )研究了埃兹蛋白在调节肾小球足细胞功能中的重要性。Vil2 小鼠没有表现出明显的肾小球功能障碍、形态缺陷或足突蛋白和 NHERF2 在足细胞中的异常定位。因此,我们研究了埃兹蛋白缺陷对 Rho-GTPase 活性的影响,因为埃兹蛋白与 Rho-GTPase 解离抑制剂(Rho-GDI)相互作用,后者在调节足细胞肌动蛋白组织中起关键作用。在 Vil2 肾小球中,与野生型(WT)肾小球相比,Rac1 活性在基线时显著降低。此外,Vil2 小鼠对肾小球损伤的敏感性降低。在 WT 肾小球中,Rac1 活性在肾病条件下增强,但在 Vil2 肾小球中仍保持在基线水平,这表明埃兹蛋白的缺失通过抑制 Rac1 激活来保护足细胞免受损伤诱导的形态变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e435/5852236/c2085d15f1af/41598_2018_22846_Fig1_HTML.jpg

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