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Nephrin ectodomain engagement results in Src kinase activation nephrin phosphorylation Nck recruitment and actin polymerization

机译:Nephrin胞外域参与导致Src激酶激活nephrin磷酸化Nck募集和肌动蛋白聚合

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摘要

A properly established and maintained podocyte intercellular junction, or slit diaphragm, is a necessary component of the selective permeability barrier of the kidney glomerulus. The observation that mutation or deletion of the slit diaphragm transmembrane protein nephrin results in failure of podocyte foot process morphogenesis and concomitant proteinuria first suggested the hypothesis that nephrin serves as a component of a signaling complex that directly integrates podocyte junctional integrity with cytoskeletal dynamics. The observations made herein provide the first direct evidence to our knowledge for a phosphorylation-mediated signaling mechanism by which this integrative function is derived. Our data support the model that during podocyte intercellular junction formation, engagement of the nephrin ectodomain induces transient Fyn catalytic activity that results in nephrin phosphorylation on specific nephrin cytoplasmic domain tyrosine residues. We found that this nephrin phosphorylation event resulted in recruitment of the SH2–SH3 domain–containing adapter protein Nck and assembly of actin filaments in an Nck-dependent fashion. Considered in the context of the role of nephrin family proteins in other organisms and the integral relationship of actin dynamics and junction formation, these observations establish a function for nephrin in regulating actin cytoskeletal dynamics.
机译:适当建立和维持的足细胞胞间连接或狭缝隔膜是肾小球选择性通透性屏障的必要组成部分。缝隙膜跨膜蛋白nephrin突变或缺失会导致足细胞足突形态发生失败和伴随的蛋白尿的观察结果首先提出了nephrin充当信号复合物的组成部分的假设,该信号复合物直接将足细胞连接完整性与细胞骨架动力学整合在一起。本文的观察结果为我们的知识提供了磷酸化介导的信号传导机制的第一个直接证据,该整合功能是通过该机制获得的。我们的数据支持该模型,即在足细胞胞间连接形成期间,nephrin胞外域的结合会诱导瞬时Fyn催化活性,从而导致特定的nephrin细胞质域酪氨酸残基上nephrin磷酸化。我们发现这种肾素磷酸化事件导致募集了包含SH2-SH3结构域的衔接蛋白Nck,并以Nck依赖的方式组装了肌动蛋白丝。考虑到nephrin家族蛋白在其他生物中的作用以及肌动蛋白动力学和连接形成的整体关系,这些观察结果建立了nephrin在调节肌动蛋白细胞骨架动力学中的功能。

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