Moe O W, Miller R T, Horie S, Cano A, Preisig P A, Alpern R J
Department of Internal Medicine, University of Texas Southwestern Medical Center, Dallas 75235-8856.
J Clin Invest. 1991 Nov;88(5):1703-8. doi: 10.1172/JCI115487.
Increased Na/H antiporter activity has been demonstrated after in vivo chronic metabolic acidosis as well as in vitro acid preincubation of cultured rabbit renal tubule cells. To study the underlying molecular mechanisms of this adaptive increase in Na/H antiporter activity, the present studies examined the effect of low pH media on Na/H antiporter activity and mRNA abundance in cultured renal tubule cells. Na/H antiporter activity was increased by 60% in a mouse renal cortical tubule cell line (MCT), and by 90% in an opossum kidney cell line (OKP) after 24 h of preincubation in acid (low [HCO3]) media. The ethylisopropylamiloride sensitivity of the Na/H antiporters were different in these two cell lines (MCT IC50 = 65 nM; OKP IC50 = 4.5 microM). In MCT cells, Na/H antiporter mRNA abundance measured by RNA blots increased by two- to fivefold after 24 h in low [HCO3] media. Na/H antiporter mRNA abundance was also increased in MCT cells with high CO2 preincubation as well as in rat renal cortex with in vivo chronic acid feeding. In contrast to renal epithelia, acid preincubation of NIH 3T3 fibroblasts led to suppression of Na/H antiporter activity. RNA blots of 3T3 fibroblasts revealed the same size Na/H antiporter transcript as in MCT cells. However, Na/H antiporter mRNA levels were suppressed by acid preincubation. These studies demonstrate differential regulation of Na/H antiporter activity and mRNA abundance in renal epithelial cells and fibroblasts in response to an acidotic environment.
体内慢性代谢性酸中毒以及培养的兔肾小管细胞体外酸预孵育后,已证实钠氢交换体活性增加。为研究钠氢交换体活性这种适应性增加的潜在分子机制,本研究检测了低pH培养基对培养的肾小管细胞中钠氢交换体活性和mRNA丰度的影响。在酸性(低[HCO3])培养基中预孵育24小时后,小鼠肾皮质肾小管细胞系(MCT)中的钠氢交换体活性增加了60%,负鼠肾细胞系(OKP)中的钠氢交换体活性增加了90%。这两种细胞系中钠氢交换体对乙基异丙基amiloride的敏感性不同(MCT的IC50 = 65 nM;OKP的IC50 = 4.5 microM)。在MCT细胞中,通过RNA印迹法测定,在低[HCO3]培养基中培养24小时后,钠氢交换体mRNA丰度增加了2至5倍。高二氧化碳预孵育的MCT细胞以及体内慢性酸喂养的大鼠肾皮质中,钠氢交换体mRNA丰度也增加。与肾上皮细胞相反,NIH 3T3成纤维细胞的酸预孵育导致钠氢交换体活性受到抑制。3T3成纤维细胞的RNA印迹显示,其钠氢交换体转录本大小与MCT细胞中的相同。然而,酸预孵育会抑制钠氢交换体mRNA水平。这些研究表明,在酸性环境下,肾上皮细胞和成纤维细胞中钠氢交换体活性和mRNA丰度受到不同的调节。