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Deletion of &ITNedd4-2&IT results in progressive kidney disease in mice

机译:删除&Itnedd4-2&它导致小鼠进行肾病疾病

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摘要

NEDD4-2 (NEDD4L), a ubiquitin protein ligase of the Nedd4 family, is a key regulator of cell surface expression and activity of the amiloride-sensitive epithelial Na+ channel (ENaC). While hypomorphic alleles of Nedd4-2 in mice show salt-sensitive hypertension, complete knockout results in pulmonary distress and perinatal lethality due to increased cell surface levels of ENaC. We now show that Nedd4-2 deficiency in mice also results in an unexpected progressive kidney injury phenotype associated with elevated ENaC and Na+Cl- cotransporter expression, increased Na+ reabsorption, hypertension and markedly reduced levels of aldosterone. The observed nephropathy is characterized by fibrosis, tubule epithelial cell apoptosis, dilated/cystic tubules, elevated expression of kidney injury markers and immune cell infiltration, characteristics reminiscent of human chronic kidney disease. Importantly, we demonstrate that the extent of kidney injury can be partially therapeutically ameliorated in mice with nephron-specific deletions of Nedd4-2 by blocking ENaC with amiloride. These results suggest that increased Na+ reabsorption via ENaC causes kidney injury and establish a novel role of NEDD4-2 in preventing Na+-induced nephropathy. Contrary to some recent reports, our data also indicate that ENaC is the primary in vivo target of NEDD4-2 and that Nedd4-2 deletion is associated with hypertension on a normal Na+ diet. These findings provide further insight into the critical function of NEDD4-2 in renal pathophysiology.
机译:NEDD4-2(NEDD4L)是NEDD4家族的泛素蛋白质连接酶,是细胞表面表达和茉莉敏敏上皮NA +通道(ENAC)的关键调节剂。虽然NEDD4-2的小鼠的正畸等位基因显示出盐敏感的高血压,但由于enac的细胞表面水平增加,完全敲除导致肺部窘迫和围产期致死。现在我们现在表明,小鼠的NEDD4-2缺乏也导致意外的肾损伤表型与升高的ENAC和NA + CL-COTRANSPORPER表达,瘤+重吸收,高血压和显着降低的醛固酮水平相关。观察到的肾病特征是纤维化,小管上皮细胞凋亡,扩张/囊性小管,肾脏损伤标志物的升高表达和免疫细胞浸润,特征使人体慢性肾脏疾病中兴起来。重要的是,我们证明肾脏损伤的程度可以通过阻断含氨基酰胺与NEDD4-2的肾上缺失的小鼠部分治疗肾脏损伤。这些结果表明,通过ENAC增加了Na + Reablintion导致肾损伤并在预防Na +诱导的肾病中建立新的作用。与最近的一些报告相反,我们的数据还表明ENAC是NEDD4-2的体内靶标中的主要目标,NEDD4-2缺失与正常NA +饮食中的高血压相关。这些发现还提供了进一步了解NEDD4-2在肾病理生理学中的临界功能。

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  • 来源
    《Cell death and differentiation》 |2017年第12期|共11页
  • 作者单位

    Univ South Australia Ctr Canc Biol Frome Rd POB 14 Adelaide SA 5000 Australia;

    Univ South Australia Ctr Canc Biol Frome Rd POB 14 Adelaide SA 5000 Australia;

    Univ South Australia Ctr Canc Biol Frome Rd POB 14 Adelaide SA 5000 Australia;

    Univ South Australia Ctr Canc Biol Frome Rd POB 14 Adelaide SA 5000 Australia;

    Univ South Australia Ctr Canc Biol Frome Rd POB 14 Adelaide SA 5000 Australia;

    Max Planck Inst Expt Med Dept Mol Neurobiol D-37075 Gottingen Germany;

    Univ South Australia Ctr Canc Biol Frome Rd POB 14 Adelaide SA 5000 Australia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 细胞生物学;
  • 关键词

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