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LIM and SH3 protein 1 (LASP‐1): A novel link between the slit membrane and actin cytoskeleton dynamics in podocytes

机译:LIM 和 SH3 蛋白 1 (LASP-1):足细胞中狭缝膜和肌动蛋白细胞骨架动力学之间的新联系

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摘要

Abstract The foot processes of podocytes exhibit a dynamic actin cytoskeleton, which maintains their complex cell structure and antagonizes the elastic forces of the glomerular capillary. Interdigitating secondary foot processes form a highly selective filter for proteins in the kidney, the slit membrane. Knockdown of slit membrane components such as Nephrin or Neph1 and cytoskeletal adaptor proteins such as CD2AP in mice leads to breakdown of the filtration barrier with foot process effacement, proteinuria, and early death of the mice. Less is known about the crosstalk between the slit membrane‐associated proteins and cytoskeletal components inside the podocyte foot processes. Our study shows that LASP‐1, an actin‐binding protein, is highly expressed in podocytes. Electron microscopy studies demonstrate that LASP‐1 is found at the slit membrane suggesting a role in anchoring slit membrane components to the actin cytoskeleton. Live cell imaging experiments with transfected podocytes reveal that LASP‐1?is?either part of a highly dynamic granular complex or a static, actin cytoskeleton‐bound protein. We identify CD2AP as a novel LASP‐1 binding partner that regulates its association with the actin cytoskeleton. Activation of the renin‐angiotensin‐aldosterone system, which is crucial for podocyte function, leads to phosphorylation and altered localization of LASP‐1. In vivo studies using the Drosophila nephrocyte model indicate that Lasp is necessary for the slit membrane integrity and functional filtration.
机译:摘要 足细胞足突具有动态肌动蛋白细胞骨架,维持其复杂的细胞结构,拮抗肾小球毛细血管的弹性力。交叉的次级足突对肾脏中的蛋白质(狭缝膜)形成高度选择性的过滤器。小鼠中裂隙膜成分(如肾素或Neph1)和细胞骨架接头蛋白(如CD2AP)的敲除导致过滤屏障破裂,伴有足突消失、蛋白尿和小鼠过早死亡。关于足细胞足突内狭缝膜相关蛋白和细胞骨架成分之间的串扰知之甚少。我们的研究表明,LASP-1是一种肌动蛋白结合蛋白,在足细胞中高度表达。电子显微镜研究表明,LASP-1 存在于狭缝膜上,表明它在将狭缝膜成分锚定到肌动蛋白细胞骨架上发挥作用。转染足细胞的活细胞成像实验表明,LASP-1是高度动态颗粒复合物的一部分,或者是静态肌动蛋白细胞骨架结合蛋白的一部分。我们将 CD2AP 鉴定为一种新的 LASP-1 结合伴侣,可调节其与肌动蛋白细胞骨架的结合。肾素-血管紧张素-醛固酮系统的激活对足细胞功能至关重要,导致 LASP-1 的磷酸化和定位改变。使用果蝇肾细胞模型的体内研究表明,Lasp 对于狭缝膜的完整性和功能过滤是必需的。

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