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Aldosterone and Epithelial Na+ Channels: Regulation of epithelial sodium transport by promyelocytic leukemia zinc finger protein

机译:醛固酮和上皮Na +通道:早幼粒细胞白血病锌指蛋白对上皮钠转运的调节

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摘要

Aldosterone is the principal regulator of Na homeostasis, and thereby blood pressure. One of the main targets of aldosterone is the epithelial Na channel (ENaC) located in the apical membrane of target cells. Previous studies identified several genes involved in the regulation of ENaC such as SGK1; however, SGK1 knockout mice have only a mild salt-losing phenotype, indicating that further genes must be involved in the action of aldosterone. In our search for further aldosterone-regulated genes, we discovered that aldosterone, at physiological concentrations, induces the expression of the promyelocytic leukemia zinc finger protein (PLZF) in renal cortical collecting duct (CCD) cell lines that stably express mineralocorticoid receptors (MRs). This effect is rapid and does not require de novo protein synthesis, suggesting a direct action. Surprisingly, stable overexpression of human or mouse PLZF isoforms significantly decreased transepithelial Na transport in CCD cells while having no effect on the integrity of the monolayers. In parallel with the decline in Na transport, PLZF suppressed the mRNA levels of β- and γ-ENaC subunits. These observations suggest that PLZF is a negative regulator of ENaC in renal epithelial cells and might be part of a negative feedback loop that limits aldosterone's stimulatory effects on sodium reabsorption.
机译:醛固酮是钠稳态和血压的主要调节剂。醛固酮的主要靶标之一是位于靶细胞顶膜的上皮Na通道(ENaC)。先前的研究鉴定了几种与ENaC调控有关的基因,例如SGK1。但是,SGK1基因敲除小鼠只有轻微的失盐表型,表明醛固酮的作用还必须涉及其他基因。在我们进一步寻找醛固酮调节的基因的过程中,我们发现,在生理浓度下,醛固酮诱导稳定表达盐皮质激素受体(MRs)的肾皮质收集管(CCD)细胞系中早幼粒细胞白血病锌指蛋白(PLZF)的表达。 。这种作用是迅速的,不需要从头合成蛋白质,表明具有直接作用。令人惊讶地,人或小鼠PLZF同工型的稳定过表达显着降低了CCD细胞中跨上皮Na的转运,而对单层的完整性没有影响。与钠转运的下降同时,PLZF抑制了β-和γ-ENaC亚基的mRNA水平。这些观察结果表明,PLZF是肾上皮细胞中ENaC的负调节剂,并且可能是限制醛固酮对钠重吸收的刺激作用的负反馈回路的一部分。

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