首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Disruption of prostaglandin E2 receptor EP4 impairs urinary concentration via decreasing aquaporin 2 in renal collecting ducts
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Disruption of prostaglandin E2 receptor EP4 impairs urinary concentration via decreasing aquaporin 2 in renal collecting ducts

机译:前列腺素E2受体EP4的破坏通过减少肾收集管中的水通道蛋白2降低尿液浓度

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摘要

The antidiuretic hormone arginine vasopressin is a systemic effector in urinary concentration. However, increasing evidence suggests that other locally produced factors may also play an important role in the regulation of water reabsorption in renal collecting ducts. Recently, prostaglandin E2 (PGE2) receptor EP4 has emerged as a potential therapeutic target for the treatment of nephrogenic diabetes insipidus, but the underlying mechanism is unknown. To evaluate the role of EP4 in regulating water homeostasis, mice with renal tubule-specific knockout of EP4 (Ksp-EP4−/−) and collecting duct-specific knockout of EP4 (AQP2-EP4−/−) were generated using the Cre-loxP recombination system. Urine concentrating defect was observed in both Ksp-EP4−/− and AQP2-EP4−/− mice. Decreased aquaporin 2 (AQP2) abundance and apical membrane targeting in renal collecting ducts were evident in Ksp-EP4−/− mice. In vitro studies demonstrated that AQP2 mRNA and protein levels were significantly up-regulated in mouse primary inner medullary collecting duct (IMCD) cells after pharmacological activation or adenovirus-mediated overexpression of EP4 in a cAMP/cAMP-response element binding protein-dependent manner. In addition, EP4 activation or overexpression also increased AQP2 membrane accumulation in a mouse IMCD cell line (IMCD3) stably transfected with the AQP2 gene, mainly through the cAMP/protein kinase A and extracellular signal-regulated kinase pathways. In summary, the EP4 receptor in renal collecting ducts plays an important role in regulating urinary concentration under physiological conditions. The ability of EP4 to promote AQP2 membrane targeting and increase AQP2 abundance makes it a potential therapeutic target for the treatment of clinical disorders including acquired and congenital diabetes insipidus.
机译:抗利尿激素精氨酸加压素是尿液浓度的全身性效应物。但是,越来越多的证据表明,其他局部产生的因素也可能在调节肾集管中的水吸收方面起重要作用。最近,前列腺素E2(PGE2)受体EP4已成为治疗肾性尿崩症的潜在治疗靶标,但其潜在机制尚不清楚。为了评估EP4在调节水稳态中的作用,对具有肾小管特异性EP4敲除(Ksp-EP4 -/-)并收集EP4导管特异性敲除(AQP2-EP4 )的小鼠进行评估-/-)是使用Cre-loxP重组系统生成的。在Ksp-EP4 -/-和AQP2-EP4 -/-小鼠中均观察到尿液浓缩缺陷。在Ksp-EP4 -/-小鼠中,肾脏收集管中水通道蛋白2(AQP2)的丰度降低和根尖膜靶向明显。体外研究表明,药理学激活或腺病毒介导的EP4过表达后,小鼠cAMP / cAMP反应元件结合蛋白依赖性蛋白表达,AQP2 mRNA和蛋白水平在小鼠初级髓内收集管(IMCD)细胞中显着上调。此外,EP4激活或过表达还增加了稳定地转染了AQP2基因的小鼠IMCD细胞系(IMCD3)中AQP2膜的积累,主要通过cAMP /蛋白激酶A和细胞外信号调节的激酶途径。总之,在生理条件下,肾收集管中的EP4受体在调节尿液浓度中起重要作用。 EP4促进AQP2膜靶向和增加AQP2丰度的能力使其成为治疗包括获得性和先天性尿崩症在内的临床疾病的潜在治疗靶标。

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