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醛固酮通过盐皮质激素受体调节人肾近端小管细胞中的钠钾ATP酶活性。

Aldosterone regulates Na(+), K(+) ATPase activity in human renal proximal tubule cells through mineralocorticoid receptor.

作者信息

Salyer Sarah A, Parks Jason, Barati Michelle T, Lederer Eleanor D, Clark Barbara J, Klein Janet D, Khundmiri Syed J

机构信息

Department of Medicine, Kidney Disease Program, University of Louisville, Louisville, KY, USA.

出版信息

Biochim Biophys Acta. 2013 Oct;1833(10):2143-52. doi: 10.1016/j.bbamcr.2013.05.009. Epub 2013 May 16.

Abstract

The mechanisms by which aldosterone increases Na(+), K(+) ATPase and sodium channel activity in cortical collecting duct and distal nephron have been extensively studied. Recent investigations demonstrate that aldosterone increases Na-H exchanger-3 (NHE-3) activity, bicarbonate transport, and H(+) ATPase in proximal tubules. However, the role of aldosterone in regulation of Na(+), K(+) ATPase in proximal tubules is unknown. We hypothesize that aldosterone increases Na(+), K(+) ATPase activity in proximal tubules through activation of the mineralocorticoid receptor (MR). Immunohistochemistry of kidney sections from human, rat, and mouse kidneys revealed that the MR is expressed in the cytosol of tubules staining positively for Lotus tetragonolobus agglutinin and type IIa sodium-phosphate cotransporter (NpT2a), confirming proximal tubule localization. Adrenalectomy in Sprague-Dawley rats decreased expression of MR, ENaC α, Na(+), K(+) ATPase α1, and NHE-1 in all tubules, while supplementation with aldosterone restored expression of above proteins. In human kidney proximal tubule (HKC11) cells, treatment with aldosterone resulted in translocation of MR to the nucleus and phosphorylation of SGK-1. Treatment with aldosterone also increased Na(+), K(+) ATPase-mediated (86)Rb uptake and expression of Na(+), K(+) ATPase α1 subunits in HKC11 cells. The effects of aldosterone on Na(+), K(+) ATPase-mediated (86)Rb uptake were prevented by spironolactone, a competitive inhibitor of aldosterone for the MR, and partially by Mifepristone, a glucocorticoid receptor (GR) inhibitor. These results suggest that aldosterone regulates Na(+), K(+) ATPase in renal proximal tubule cells through an MR-dependent mechanism.

摘要

醛固酮增加皮质集合管和远端肾单位中钠钾ATP酶及钠通道活性的机制已得到广泛研究。最近的研究表明,醛固酮可增加近端小管中钠氢交换体3(NHE - 3)的活性、碳酸氢盐转运及氢ATP酶活性。然而,醛固酮在近端小管中对钠钾ATP酶的调节作用尚不清楚。我们推测醛固酮通过激活盐皮质激素受体(MR)来增加近端小管中钠钾ATP酶的活性。对人、大鼠和小鼠肾脏切片进行免疫组织化学分析显示,MR表达于对四角豆凝集素和IIa型钠磷共转运体(NpT2a)染色呈阳性的小管细胞溶质中,证实其位于近端小管。对Sprague - Dawley大鼠进行肾上腺切除术后,所有小管中MR、ENaCα、钠钾ATP酶α1和NHE - 1的表达均降低,而补充醛固酮可恢复上述蛋白的表达。在人肾近端小管(HKC11)细胞中,用醛固酮处理导致MR转位至细胞核并使SGK - 1磷酸化。用醛固酮处理还可增加HKC11细胞中钠钾ATP酶介导的(86)Rb摄取及钠钾ATP酶α1亚基的表达。醛固酮对钠钾ATP酶介导的(86)Rb摄取的作用可被螺内酯(一种醛固酮对MR的竞争性抑制剂)阻断,并被米非司酮(一种糖皮质激素受体(GR)抑制剂)部分阻断。这些结果表明,醛固酮通过一种依赖MR的机制调节肾近端小管细胞中的钠钾ATP酶。

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