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首页> 外文期刊>American Journal of Physiology >Increased expression of ENaC subunits and increased apical targeting of AQP2 in the kidneys of spontaneously hypertensive rats.
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Increased expression of ENaC subunits and increased apical targeting of AQP2 in the kidneys of spontaneously hypertensive rats.

机译:自发性高血压大鼠肾脏中ENaC亚基的表达增加和AQP2的根尖靶向性增加。

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In models of genetic hypertension, renal tubular dysfunction could be involved in the increased sodium and water reabsorption. However, the molecular basis for the increased renal sodium and water retention remains largely undefined in spontaneously hypertensive rats (SHR). We hypothesized that dysregulation of renal epithelial sodium channels (ENaC), sodium (co)transporters, or aquaporin-2 (AQP2) could be involved in the pathogenesis of hypertension in SHR. Six-week-old or twelve-week-old SHR and corresponding age-matched Wistar-Kyoto control rats (WKY) were studied. In both SHR groups, systolic blood pressure was markedly increased, whereas urine output, creatinine clearance, and urinary sodium excretion were decreased compared with corresponding WKY. Moreover, urine osmolality and urine-to-plasma osmolality ratio were increased compared with WKY. Semiquantitative immunoblotting demonstrated that the protein abundance of beta- and gamma-subunits of ENaC was increased in the cortex and outer stripe ofthe outer medulla and inner stripe of the outer medulla (ISOM) in SHR, whereas alpha-ENaC abundance was increased in ISOM. Immunoperoxidase microscopy confirmed the increased labeling of beta-ENaC and gamma-ENaC subunits in the late distal convoluted tubule, connecting tubule, and cortical and outer medullary collecting duct segments. In contrast, subcellular localization of alpha-ENaC, beta-ENaC, and gamma-ENaC was not changed. Expression of sodium/hydrogen exchanger type 3, bumetanide-sensitive Na-K-2Cl cotransporter, and thiazide-sensitive Na-Cl cotransporter was not altered in SHR. AQP2 levels were increased in the ISOM in SHR, and immunoperoxidase microscopy demonstrated an increased apical labeling of AQP2 in the inner medullary collecting duct in SHR. These results suggest that the increased protein abundance of ENaC subunits as well as the increased apical targeting of AQP2 may contribute to renal sodium and water retention observed during the development of hypertension in SHR.
机译:在遗传性高血压模型中,肾小管功能障碍可能与钠和水的重吸收增加有关。然而,在自发性高血压大鼠(SHR)中,肾钠和水retention留增加的分子基础仍然是不确定的。我们假设肾上皮钠通道(ENaC),钠(共)转运蛋白或水通道蛋白2(AQP2)的失调可能与SHR高血压的发病机制有关。研究了六周龄或十二周龄的SHR和相应的年龄匹配的Wistar-Kyoto对照大鼠(WKY)。与相应的WKY相比,两个SHR组的收缩压均显着升高,而尿量,肌酐清除率和尿钠排泄量均降低。而且,与WKY相比,尿渗透压和尿血浆渗透压比增加。半定量免疫印迹法证明,SHR中ENaC的β和γ亚基的蛋白质丰度在外延髓的皮层和外条纹以及延髓的内条纹(ISOM)中增加,而ISOM中的α-ENaC丰度增加。免疫过氧化物酶显微镜检查证实了远端远曲小管,连接小管以及皮层和髓外收集管段中β-ENaC和γ-ENaC亚基的标记增加。相反,α-ENaC,β-ENaC和γ-ENaC的亚细胞定位没有改变。 SHR中3型钠/氢交换剂,布美他尼敏感的Na-K-2Cl共转运蛋白和噻嗪类敏感的Na-Cl共转运蛋白的表达未改变。 SHR的ISOM中AQP2水平升高,免疫过氧化物酶显微镜检查显示SHR的髓内收集管中AQP2的顶端标记增加。这些结果表明,ENaC亚基的蛋白质丰度增加以及AQP2的根尖靶向作用增加,可能有助于在SHR高血压发展过程中观察到的肾钠和水retention留。

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