首页> 外文期刊>The Journal of Physiology >Non-genomic action of the mineralocorticoid aldosterone on cytosolic sodium in cultured kidney cells.
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Non-genomic action of the mineralocorticoid aldosterone on cytosolic sodium in cultured kidney cells.

机译:盐皮质激素醛固酮对培养的肾细胞中胞质钠的非基因组作用。

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1. The mineralocorticoid aldosterone is essential for the regulation of electrolyte homeostasis, extracellular volume and blood pressure. As a steroid hormone the classical way of action is genomic. Previously we reported a non-genomic action of aldosterone on cytosolic Ca2+ and pH in renal epithelial (MDCK) cells. In parallel, aldosterone induces Zn2+-sensitive cytosolic acidification when extracellular Na+ is absent. 2. We now show that aldosterone (EC50, 7 x 10-11 mol l-1) induces a non-genomic increase in cytosolic sodium in MDCK cells. The membrane-impermeable aldosterone-bovine serum albumin (BSA) conjugate exerted the same effect. The effect of aldosterone was completely abolished by inhibition of Na+-H+ exchange with ethyl-isopropanol amiloride (EIPA). Aldosterone-induced Na+ influx exceeded H+ efflux more than 10-fold. 3. Omission of extracellular Ca2+, inhibition of protein kinase C or pretreatment with pertussis toxin reduced the effect of aldosterone significantly. Zn2+ (IC50, 3.3 x 10-6 mol l-1), but not ouabain, abolished the increase in Na+ almost completely. 4. The aldosterone-induced increase in cytosolic sodium was accompanied by an EIPA- and Zn2+-sensitive cell swelling. 5. Thus, physiological concentrations of aldosterone induce a non-genomic increase in cytosolic sodium concentration by activation of Na+-H+ exchange. Aldosterone exerts its effect, at least in part, at the plasma membrane via interaction with a G-protein-coupled mechanism. 6. The simultaneous activation of the acidification mechanism and Na+-H+ exchange by aldosterone allows a dramatic sodium influx without excessive changes in cytosolic pH and leads to changes in cell volume.
机译:1.盐皮质激素醛固酮对于调节电解质稳态,细胞外体积和血压至关重要。作为类固醇激素,经典的作用方式是基因组学。以前,我们报道了醛固酮对肾上皮(MDCK)细胞胞质Ca2 +和pH的非基因组作用。同时,当细胞外Na +缺失时,醛固酮会诱导Zn2 +敏感的胞质酸化。 2.我们现在显示,醛固酮(EC50,7 x 10-11 mol -1)诱导MDCK细胞中胞液钠的非基因组增加。膜不透性醛固酮-牛血清白蛋白(BSA)偶联物发挥了相同的作用。通过抑制与乙基异丙醇阿米洛利(EIPA)的Na + -H +交换,醛固酮的作用被完全消除。醛固酮诱导的Na +流入超过H +外流超过10倍。 3.省略细胞外Ca2 +,抑制蛋白激酶C或用百日咳毒素预处理可显着降低醛固酮的作用。 Zn2 +(IC50,3.3 x 10-6 mol l-1),而不是哇巴因,几乎完全消除了Na +的增加。 4.醛固酮诱导的胞浆钠增加伴有EIPA和Zn2 +敏感性细胞肿胀。 5.因此,醛固酮的生理浓度通过激活Na + -H +交换而诱导胞质钠浓度的非基因组增加。醛固酮通过与G蛋白偶联机制的相互作用,至少部分在质膜上发挥作用。 6.醛固酮能同时激活酸化机制和Na + -H +交换,使钠大量涌入而胞质pH值没有过多变化,并导致细胞体积变化。

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