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首页> 外文期刊>American Journal of Physiology >CLIC5A, a component of the ezrin-podocalyxin complex in glomeruli, is a determinant of podocyte integrity
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CLIC5A, a component of the ezrin-podocalyxin complex in glomeruli, is a determinant of podocyte integrity

机译:Clic5a是肾小球中Ezrin-podocalyxin复合物的组分,是富核细胞完整性的决定因素

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The chloride intracellular channel 5A (CLIC5A) protein, one of two isoforms produced by the CLIC5 gene, was isolated originally as part of a cytoskeletal protein complex containing ezrin from placental microvilli. Whether CLIC5A functions as a bona fide ion channel is controversial. We reported previously that a CLIC5 transcript is enriched ~800-fold in human renal glomeruli relative to most other tissues. Therefore, this study sought to explore CLIC5 expression and function in glomeruli. RT-PCR and Western blots show that CLIC5A is the predominant CLIC5 isoform expressed in glomeruli. Confocal immunofluorescence and immunogold electron microscopy reveal high levels of CLIC5A protein in glomerular endothelial cells and podocytes. In podocytes, CLIC5A localizes to the apical plasma membrane of foot processes, similar to the known distribution of podocalyxin and ezrin. Ezrin and podocalyxin colocalize with CLIC5A in glomeruli, and podocalyxin coimmunoprecipitates with CLIC5A from glomerular lysates. In glomeruli of jitterbug (jbg/jbg) mice, which lack the CLIC5A protein, ezrin and phospho-ERM levels in podocytes are markedly lower than in wild-type mice. Transmission electron microscopy reveals patchy broadening and effacement of podocyte foot processes as well as vacuolization of glomerular endothelial cells. These ultrastructural changes are associated with microalbuminuria at baseline and increased susceptibility to adriamycin-induced glomerular injury compared with wild-type mice. Together, the data suggest that CLIC5A is required for the development and/or maintenance of the proper glomerular endothelial cell and podocyte architecture. We postulate that the interaction between podocalyxin and subjacent filamentous actin, which requires ezrin, is compromised in podocytes of CLIC5A-deficient mice, leading to dysfunction under unfavorable genetic or environmental conditions.
机译:氯化物细胞内通道5a(ClIC5a)蛋白,由ClIC5基因产生的两种同种型之一最初分离,作为胎儿微绒毛的含有Ezrin的细胞骨骼蛋白质复合物的一部分。 CLIC5A是否用作真正的离子通道是有争议的。我们以前报道了CLIC5转录物相对于大多数其他组织富集〜800倍。因此,本研究试图探索Glomeruli的Clic5表达和功能。 RT-PCR和Western印迹表明,CLIC5A是在肾小球中表达的主要CLIC5同种型。共聚焦免疫荧光和免疫耦合电子显微镜揭示了肾小球内皮细胞和多粒细胞中的高水平Clic5a蛋白。在足粒细胞中,CLIC5A定位于足部过程的顶端血浆膜,类似于Podocalyxin和Ezrin的已知分布。 ezrin和podocalyxin与肾小球中的Clic5a结合,Podocalyxin与肾小球裂解物的Clic5a共抚养。在缺乏ClIC5a蛋白的吉特布(JBG / JBG)小鼠的肾小球中,富含孔细胞中的Ezrin和磷酸盐-ERM水平明显低于野生型小鼠。透射电子显微镜显露揭示了肾小球内皮细胞的斑点扩大和诱导肾小球内皮细胞的真空化。与野生型小鼠相比,这些超微结构的变化与基线下的微蛋白核蛋氨酸和对亚霉素诱导的肾小球损伤的敏感性增加。这些数据表明,CLIC5A是适当的肾小球内皮细胞和多粒细胞架构的开发和/或维持所必需的。我们假设Podocalyxin和亚视丝状肌动蛋白的相互作用在Clic5a缺陷小鼠的幽米细胞中受到抑制的,导致不利遗传或环境条件的功能障碍。

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