Kim G H, Martin S W, Fernández-Llama P, Masilamani S, Packer R K, Knepper M A
Laboratory of Kidney and Electrolyte Metabolism, National Heart, Lung, and Blood Institute, National Institutes of Health, Bethesda, Maryland 20892-1603, USA.
Am J Physiol Renal Physiol. 2000 Sep;279(3):F459-67. doi: 10.1152/ajprenal.2000.279.3.F459.
Increased systemic acid intake is associated with an increase in apical Na/H exchange in the renal proximal tubule mediated by the type 3 Na/H exchanger (NHE3). Because NHE3 mediates both proton secretion and Na absorption, increased NHE3 activity could inappropriately perturb Na balance unless there are compensatory changes in Na handling. In this study, we use semiquantitative immunoblotting of rat kidneys to investigate whether acid loading is associated with compensatory decreases in the abundance of renal tubule Na transporters other than NHE3. Long-term (i.e., 7-day) acid loading with NH(4)Cl produced large decreases in the abundances of the thiazide-sensitive Na-Cl cotransporter (TSC/NCC) of the distal convoluted tubule and both the beta- and gamma-subunits of the amiloride-sensitive epithelial Na channel (ENaC) of the collecting duct. In addition, the renal cortical abundance of the proximal type 2 Na-dependent phosphate transporter (NaPi-2) was markedly decreased. In contrast, abundances of the bumetanide-sensitive Na-K-2Cl cotransporter of the thick ascending limb and the alpha-subunit of ENaC were unchanged. A similar profile of changes was seen with short-term (16-h) acid loading. Long-term (7-day) base loading with NaHCO(3) resulted in the opposite pattern of response with marked increases in the abundances of the beta- and gamma-subunits of ENaC and NaPi-2. These adaptations may play critical roles in the maintenance in Na balance when changes in acid-base balance occur.
全身酸摄入量增加与由3型钠/氢交换体(NHE3)介导的肾近端小管顶端钠/氢交换增加有关。由于NHE3介导质子分泌和钠吸收,NHE3活性增加可能会不适当地扰乱钠平衡,除非在钠处理方面有代偿性变化。在本研究中,我们使用大鼠肾脏的半定量免疫印迹法来研究酸负荷是否与NHE3以外的肾小管钠转运蛋白丰度的代偿性降低有关。用氯化铵进行长期(即7天)酸负荷会导致远曲小管的噻嗪类敏感钠-氯共转运体(TSC/NCC)以及集合管的氨氯地平敏感上皮钠通道(ENaC)的β和γ亚基的丰度大幅下降。此外,近端2型钠依赖性磷酸盐转运体(NaPi-2)的肾皮质丰度也明显降低。相比之下,髓袢升支粗段的布美他尼敏感钠-钾-2氯共转运体和ENaC的α亚基的丰度没有变化。短期(16小时)酸负荷也出现了类似的变化情况。用碳酸氢钠进行长期(7天)碱负荷导致相反的反应模式,ENaC和NaPi-2的β和γ亚基的丰度显著增加。当酸碱平衡发生变化时,这些适应性变化可能在维持钠平衡中起关键作用。