Department of Physiology, Emory University School of Medicine, Atlanta, GA 30322, USA.
Exp Physiol. 2010 Sep;95(9):926-37. doi: 10.1113/expphysiol.2010.053967. Epub 2010 Jun 30.
In this study, we examined the effect of bicarbonate transporters on ammonium/ammonia uptake in the medullary thick ascending limb cell line ST-1. Cells were treated with 1 mm ouabain and 0.2 mM bumetanide to minimize carrier-mediated NH(4)(+) transport, and the intracellular accumulation of (14)C-methylammonium/methylammonia ((14)C-MA) was determined. In CO(2)/HCO(3)(-)-free solution, cells at normal pH briefly accumulated (14)C-MA over 7 min and reached a plateau. In CO(2)/HCO(3)(-) solution, however, cells markedly accumulated (14)C-MA over the experimental period of 30 min. This CO(2)/HCO(3)(-)-dependent accumulation was reduced by the bicarbonate transporter blocker, 4,4-diisothiocyanatostilbene-2,2-disulfonate (DIDS; 0.5 mM). Replacing Cl(-) with gluconate reduced the accumulation, but the reduction was more substantial in the presence of DIDS. Incubation of cells at pH 6.8 (adjusted with NaHCO(3) in 5% CO(2)) for 24 h lowered the mean steady-state intracellular pH to 6.96, significantly lower than 7.28 for control cells. The presence of DIDS reduced (14)C-MA accumulation in control conditions but had no effect after acidic incubation. Immunoblotting showed that NBCn1 was upregulated after acidic incubation and in NH(4)Cl-containing media. The Cl(-)-HCO(3)(-) exchanger AE2 was present, but its expression remained unaffected by acidic incubation. Expressed in Xenopus oocytes, NBCn1 increased carrier-mediated (14)C-MA transport, which was abolished by replacing Na(+). Two-electrode voltage clamp of oocytes exhibited negligible current after NH(4)Cl application. These results suggest that DIDS-sensitive HCO(3)(-) extrusion normally governs NH(4)(+)/NH(3) uptake in the medullary thick ascending limb cells. We propose that, in acidic conditions, DIDS-sensitive HCO(3)(-) extrusion is inactivated, while NBCn1 is upregulated to stimulate NH(4)(+) transport.
在这项研究中,我们研究了碳酸氢盐转运体对 medullary thick ascending limb 细胞系 ST-1 中铵/氨摄取的影响。细胞用 1mm 哇巴因和 0.2mm 布美他尼处理,以最小化载体介导的 NH4+运输,然后测定(14)C-甲基铵/甲基氨((14)C-MA)的细胞内积累。在 CO2/HCO3- 溶液中,在正常 pH 值下,细胞在 7 分钟内短暂地积累(14)C-MA,并达到平台期。然而,在 CO2/HCO3- 溶液中,细胞在 30 分钟的实验期间明显地积累(14)C-MA。这种 CO2/HCO3- 依赖性积累被碳酸氢盐转运体抑制剂 4,4-二异硫氰酸基二苯乙烯-2,2-二磺酸钠(DIDS;0.5mM)减少。用葡萄糖酸盐替代 Cl- 减少了积累,但在存在 DIDS 的情况下,减少更为明显。将细胞在 pH6.8(用 5%CO2 中的 NaHCO3 调节)孵育 24 小时,将细胞内的稳态 pH 值降低到 6.96,明显低于对照细胞的 7.28。DIDS 的存在降低了对照条件下(14)C-MA 的积累,但在酸性孵育后没有影响。免疫印迹显示 NBCn1 在酸性孵育后和在含有 NH4Cl 的培养基中上调。Cl--HCO3- 交换体 AE2 存在,但酸性孵育对其表达没有影响。在 Xenopus 卵母细胞中表达的 NBCn1 增加了载体介导的(14)C-MA 运输,该运输被用 Na+取代而被消除。卵母细胞的双电极电压钳在应用 NH4Cl 后几乎没有电流。这些结果表明,DIDS 敏感的 HCO3- 外排通常控制着 medullary thick ascending limb 细胞中 NH4+/NH3 的摄取。我们提出,在酸性条件下,DIDS 敏感的 HCO3- 外排失活,而 NBCn1 上调以刺激 NH4+的运输。