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Wtip- and Gadd45a-Interacting Protein Dendrin Is Not Crucial for the Development or Maintenance of the Glomerular Filtration Barrier

机译:Wtip和Gadd45a相互作用蛋白树胶对于肾小球滤过屏障的形成或维持并不重要

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摘要

Glomerular podocyte cells are critical for the function of the renal ultrafiltration barrier. Especially, the highly specialized cell–cell junction of podocytes, the slit diaphragm, has a central role in the filtration barrier. This is highlighted by the fact that mutations in molecular components of the slit diaphragm, including nephrin and Cd2-associated protein (Cd2ap), result in proteinuric diseases in man. Dendrin is a poorly characterized cytosolic component of the slit diaphragm in where it interacts with nephrin and Cd2ap. Dendrin is highly specific for the podocyte slit diaphragm, suggesting that it has a dedicated role in the glomerular filtration barrier. In this study, we have generated a dendrin knockout mouse line and explored the molecular interactions of dendrin. Dendrin-deficient mice were viable, fertile, and had a normal life span. Morphologically, the glomerulogenesis proceeded normally and adult dendrin-deficient mice showed normal glomerular histology. No significant proteinuria was observed. Following glomerular injury, lack of dendrin did not affect the severity of the damage or the recovery process. Yeast two-hybrid screen and co-immunoprecipitation experiments showed that dendrin binds to Wt1-interacting protein (Wtip) and growth arrest and DNA-damage-inducible 45 alpha (Gadd45a). Wtip and Gadd45a mediate gene transcription in the nucleus, suggesting that dendrin may have similar functions in podocytes. In line with this, we observed the relocation of dendrin to nucleus in adriamycin nephropathy model. Our results indicate that dendrin is dispensable for the function of the normal glomerular filtration barrier and that dendrin interacts with Wtip and Gadd45a.
机译:肾小球足细胞对于肾超滤屏障的功能至关重要。特别是,足细胞的高度专业化的细胞-细胞连接,即裂隙隔膜,在过滤屏障中起着核心作用。狭缝隔膜的分子成分(包括肾素和与Cd2相关的蛋白质(Cd2ap))的突变会导致人类蛋白尿病,这一事实凸显了这一点。登德林是狭缝隔膜的胞质成分,其特征在于与肾素和Cd2ap相互作用。登德林对足细胞裂隙隔膜具有高度特异性,表明它在肾小球滤过屏障中起着专门作用。在这项研究中,我们生成了树突蛋白基因敲除小鼠品系,并探索了树突蛋白的分子相互作用。缺乏树突蛋白的小鼠是活的,可育的,并且具有正常的寿命。形态上,肾小球生成正常进行,成年树突蛋白缺陷的成年小鼠表现出正常的肾小球组织学。没有观察到明显的蛋白尿。肾小球损伤后,缺乏牙本质不影响损伤的严重程度或恢复过程。酵母双杂交筛选和免疫共沉淀实验表明,树突蛋白与Wt1相互作用蛋白(Wtip)结合,生长停滞和DNA损伤诱导型45α(Gadd45a)。 Wtip和Gadd45a介导细胞核中的基因转录,表明树突蛋白在足细胞中可能具有类似的功能。与此相符,我们观察到阿霉素肾病模型中树突蛋白向核的重新定位。我们的结果表明,树突蛋白对于正常肾小球滤过屏障的功能是必不可少的,并且树突蛋白与Wtip和Gadd45a相互作用。

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