首页> 外文期刊>The Journal of Clinical Investigation: The Official Journal of the American Society for Clinical Investigation >Crk1/2-dependent signaling is necessary for podocyte foot process spreading in mouse models of glomerular disease
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Crk1/2-dependent signaling is necessary for podocyte foot process spreading in mouse models of glomerular disease

机译:Crk1/2依赖性信号转导对于肾小球疾病小鼠模型中的足细胞足突扩散是必要的

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摘要

The morphology of healthy podocyte foot processes is necessary for maintaining the characteristics of the kidney filtration barrier. In most forms of glomerular disease, abnormal filter barrier function results when podocytes undergo foot process spreading and retraction by remodeling their cytoskeletal architecture and intercellular junctions during a process known as effacement. The cell adhesion protein nephrin is necessary for establishing the morphology of the kidney podocyte in development by transducing from the specialized podocyte intercellular junction phosphorylation-mediated signals that regulate cytoskeletal dynamics. The present studies extend our understanding of nephrin function by showing that nephrin activation in cultured podocytes induced actin dynamics necessary for lamellipodial protrusion. This process required a PI3K-, Cas-, and Crk1/2-dependent signaling mechanism distinct from the previously described nephrin-Nck1/2 pathway necessary for assembly and polymerization of actin filaments. Our present findings also support the hypothesis that mechanisms governing lamellipodial protrusion in culture are similar to those used in vivo during foot process effacement in a subset of glomerular diseases. In mice, podocyte-specific deletion of Crk1/2 prevented foot process effacement in one model of podocyte injury and attenuated foot process effacement and associated proteinuria in a delayed fashion in a second model. In humans, focal adhesion kinase and Cas phosphorylation - markers of focal adhesion complex-mediated Crk-dependent signaling - was induced in minimal change disease and membranous nephropathy, but not focal segmental glomerulosclerosis. Together, these observations suggest that activation of a Cas-Crk1/2-dependent complex is necessary for foot process effacement observed in distinct subsets of human glomerular diseases.
机译:健康足细胞足突的形态对于维持肾脏过滤屏障的特征是必要的。在大多数形式的肾小球疾病中,当足细胞在称为消失的过程中重塑其细胞骨架结构和细胞间连接时,通过重塑足部过程扩散和回缩,会导致滤波障功能异常。细胞粘附蛋白肾素是通过从调节细胞骨架动力学的特化足细胞间连接磷酸化介导的信号转导来建立发育中肾足细胞形态所必需的。本研究通过表明培养的足细胞中的肾素活化诱导了层状足突起所必需的肌动蛋白动力学,从而扩展了我们对肾素功能的理解。该过程需要 PI3K、Cas- 和 Crk1/2 依赖性信号转导机制,与先前描述的肌动蛋白丝组装和聚合所需的肾上腺素-Nck1/2 通路不同。我们目前的研究结果也支持了这样的假设,即控制培养物中板足突起的机制与肾小球疾病亚群足突消失期间在体内使用的机制相似。在小鼠中,在一种足细胞损伤模型中,Crk1/2 的足细胞特异性缺失阻止了足突消失,在另一种模型中以延迟方式减弱了足突消失和相关蛋白尿。在人类中,黏着斑激酶和 Cas 磷酸化(黏着斑复合物介导的 Crk 依赖性信号传导的标志物)在微小变化疾病和膜性肾病中被诱导,但不被诱导局灶节段性肾小球硬化。总之,这些观察结果表明,Cas-Crk1/2依赖性复合物的激活对于在人类肾小球疾病的不同亚群中观察到的足突消失是必要的。

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