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乙基异丙基阿米洛利可下调钠钾ATP酶基因表达,该基因表达在原代近端小管细胞培养物中具有细胞毒性。

Ethyl isopropylamiloride downregulates Na,K-ATPase gene expression which confers cytotoxicity in primary proximal tubule cell cultures.

作者信息

Chiu H M, Lin H H, Tang M J

机构信息

Department of Physiology, National Cheng Kung University Medical College, Taiwan, ROC.

出版信息

Chin J Physiol. 1998 Dec 31;41(4):195-202.

Abstract

Our original attempt was to examine whether inhibition of Na/H exchange in proximal tubule would affect the expression of basolateral membrane protein Na,K-ATPase. Three amiloride analogues were tested within the range of 10(-6) M to 10(-4) M in primary cultures of proximal tubule cells. Only ethylisopropyl amiloride (EIPA) dose-dependently downregulated Na,K-ATPase activity in cultured proximal tubule cells. The time course study revealed that EIPA (10(-4) M) significantly decreased Na,K-ATPase alpha- and alpha-mRNA abundance within 4 hr and suppressed Na,K-ATPase alpha- and beta-mRNA levels by 76.3 +/- 4.5% and 85.5 +/- 5.8%, respectively, within 24 hr. The decrease in Na,K-ATPase mRNA was followed by a decrease in Na,K-ATPase activity by 22.5 +/- 10.8% and 48.8 +/- 5.9% within 12 and 24 hr, respectively, which could be reflected by a coordinate decrease in levels of both alpha- and mature beta-protein. The cell viability was not affected until 20 hr of EIPA treatment, when an increase in LDH release and cell detachment was observed. Because EIPA rapidly decreased intracellular pH (pHi) to 6.7 within 2 hr and raising pHi to 6.6 by metabolic acidosis could not elicit changes in Na,K-ATPase activity, EIPA-induced downregulation of Na,K-ATPase should not be mediated through H+. In view of the time course of EIPA effects on Na,K-ATPase subunit mRNA, protein, activity and cell toxicity, the cytotoxic effect is likely resulted from a decrease in Na,K-ATPase activity. Take together, we conclude that EIPA induces downregulation of Na,K-ATPase expression via both pre- and post-translational mechanisms, which confers cytotoxic effects on proximal tubule cells.

摘要

我们最初的尝试是研究近端小管中钠氢交换的抑制是否会影响基底外侧膜蛋白钠钾ATP酶的表达。在近端小管细胞的原代培养物中,对三种氨氯地平类似物在10(-6)M至10(-4)M的范围内进行了测试。只有乙基异丙基氨氯地平(EIPA)能剂量依赖性地下调培养的近端小管细胞中的钠钾ATP酶活性。时间进程研究表明,EIPA(10(-4)M)在4小时内显著降低钠钾ATP酶α和α-mRNA丰度,并在24小时内分别将钠钾ATP酶α和β-mRNA水平抑制76.3±4.5%和85.5±5.8%。钠钾ATP酶mRNA的减少之后,在12小时和24小时内钠钾ATP酶活性分别降低22.5±10.8%和48.8±5.9%,这可以通过α和成熟β蛋白水平的协同降低来反映。直到EIPA处理20小时,细胞活力才受到影响,此时观察到乳酸脱氢酶释放增加和细胞脱离。由于EIPA在2小时内迅速将细胞内pH(pHi)降至6.7,而通过代谢性酸中毒将pHi提高到6.6不会引起钠钾ATP酶活性的变化,因此EIPA诱导的钠钾ATP酶下调不应通过H+介导。鉴于EIPA对钠钾ATP酶亚基mRNA、蛋白质、活性和细胞毒性的影响时间进程,细胞毒性作用可能是由钠钾ATP酶活性降低引起的。综上所述,我们得出结论,EIPA通过翻译前和翻译后机制诱导钠钾ATP酶表达下调,这赋予了近端小管细胞细胞毒性作用。

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