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Rac1 Activation in Podocytes Induces Rapid Foot Process Effacement and Proteinuria

机译:Rac1激活足细胞诱导快速足突和蛋白尿。

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摘要

The kidney's vital filtration function depends on the structural integrity of the glomerulus, the proximal portion of the nephron. Within the glomerulus, the architecturally complex podocyte forms the final cellular barrier to filtration. Injury to the podocyte results in a morphological change called foot process effacement, which is a ubiquitous feature of proteinuric diseases. The exact mechanism underlying foot process effacement is not known, but recently it has been proposed that this change might reflect activation of the Rac1 GTPase. To test this hypothesis, we generated a podocyte-specific, inducible transgenic mouse line that expressed constitutively active Rac1. When the Rac1 transgene was induced, we observed a rapid onset of proteinuria with focal foot process effacement. Using superresolution imaging, we verified that the induced transgene was expressed in damaged podocytes with altered foot process morphology. This work sheds new light on the complex balance of Rho GTPase signaling that is required for proper regulation of the podocyte cytoskeleton.
机译:肾脏的重要过滤功能取决于肾小球(肾单位的近端部分)的结构完整性。在肾小球内,结构复杂的足细胞形成了最终的细胞过滤屏障。足细胞的损伤导致称为足突消失的形态变化,这是蛋白尿疾病的普遍特征。脚部脱皮的确切机制尚不清楚,但最近有人提出这种变化可能反映了Rac1 GTPase的激活。为了验证该假设,我们生成了表达组成型活性Rac1的足细胞特异性可诱导转基因小鼠品系。当Rac1转基因被诱导时,我们观察到蛋白尿迅速发作,并伴有局灶性足突消失。使用超分辨率成像,我们验证了诱导的转基因在足突形态改变的受损足细胞中表达。这项工作为适当调节足细胞细胞骨架所需的Rho GTPase信号转导的复杂平衡提供了新的思路。

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