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首页> 外文期刊>American Journal of Physiology >NOS1-dependent negative feedback regulation of the epithelial sodium channel in the collecting duct
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NOS1-dependent negative feedback regulation of the epithelial sodium channel in the collecting duct

机译:NOS1依赖性负反馈调节在收集管道中的上皮钠通道

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With an increase in urine flow there is a significant increase in shear stress against the renal epithelium including the inner medullary collecting duct, resulting in an increase in nitric oxide (NO) production. The mechanisms of the shear stress-mediated increases in NO are undetermined. Previous studies found that shear stress increases epithelial sodium channel (ENaC) open probability and endothelin (ET)-1 production in an ENaC-dependent mechanism in the collecting duct (CD). Given that ET-1 stimulates NO production in the CD, we hypothesized that shear stress-induced NO production is downstream of shear stress-induced ENaC activation and ET-1 production in a negative feedback loop. We determined that nitric oxide synthase 1 (NOS1) and NOS3 contribute to shear stress-mediated NO production in the CD, that is attenuated by low doses of the ENaC inhibitors amiloride and ben-zamil. Moreover, ET_B receptor blockade significantly blunted the shear stress-mediated NO production. We further elucidated whether mice lacking NOS1 in the collecting duct (CDNOS1KO) have an impaired renal ET-1 system in the CD. Although urinary ET-1 production and inner medullary ET receptor expression were similar between flox control and CDNOS1KO mice, acute ET-1 treatment significantly reduced ENaC open probability in CDs from flox mice but not CDNOS1KO mice compared with basal. Basal ENaC activity in CDs was similar between the genotypes. We conclude that during acute shear stress across the CD, ENaC acts in a negative feedback loop to stimulate NO production in an ET_B/NOS1-dependent manner resulting in a decrease in ENaC open probability and promoting natriuresis.
机译:随着尿液流量的增加,抗肾上皮的剪切应力显着增加,包括内髓质上髓质上皮导管,导致一氧化氮(NO)产生增加。剪切应力介导的机制不确定不正常。以前的研究发现,在收集管道(CD)中,剪切应力增加了上皮钠通道(ENAC)开放概率和内皮素(ET)-1产生的enaC依赖性机制。鉴于ET-1刺激CD中没有生产,我们假设剪切应激诱导的未产生剪切应力诱导的ENAC激活和ET-1在负反馈回路中产生的下游。我们确定一氧化氮合酶1(NOS1)和NOS3有助于剪切应力介导的CD中的产生,其通过低剂量的ENAC抑制剂Amiloride和Ben-Zamil衰减。此外,ET_B受体封闭在于剪切应力介导的不产生生产。我们进一步阐明了缺乏NOS1在收集管道(CDNOS1KO)中的小鼠是否在CD中具有受损的肾ET-1系统。虽然尿体ET-1生产和内髓质ET受体表达在散摩对照和CDNOS1KO小鼠之间相似,但急性ET-1处理在氟于烟小鼠中显着降低了CDS中的enac开放概率,但与基础相比,CDNOS1KO小鼠。 CD中的基础ENAC活性在基因型之间类似。我们得出结论,在CD的急性剪切应力期间,ENAC在负反馈回路中作用,以刺激ET_B / NOS1依赖性方式的产生,导致ENAC开放概率和促进NatriureSis的降低。

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