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首页> 外文期刊>Experimental Physiology >Sodium-bicarbonate cotransporter NBCn1 in the kidney medullary thick ascending limb cell line is upregulated under acidic conditions and enhances ammonium transport.
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Sodium-bicarbonate cotransporter NBCn1 in the kidney medullary thick ascending limb cell line is upregulated under acidic conditions and enhances ammonium transport.

机译:在酸性条件下肾上腺髓内厚度肢体细胞中碳酸氢钠Cotransporter NBCN1上调,并增强铵转运。

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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.
机译:在这项研究中,我们研究了碳酸氢盐转运蛋白在髓质厚的肢体细胞系ST-1中对铵/氨吸收的影响。用1mM Ouabain和0.2mM硼酸盐处理细胞以最小化载体介导的NH(4)(+)转运,测定(14)C-甲基/甲基氨基铵((14)C-MA)的细胞内积累。在CO(2)/ HCO(3)( - ) - 免溶液中,正常pH下的细胞短暂累积(14)C-MA超过7分钟并达到高原。然而,在CO(2)/ HCO(3)( - )溶液中,细胞在30分钟的实验期内明显累积(14)C-MA。该CO(2)/ HCO(3)( - ) - 碳酸氢盐转运蛋白阻断剂减少了依赖性积累,4,4-二硫氰酸丁二苯甲苯-2,2-二核酸酯(40mm)。用葡萄糖酸盐替换Cl( - )降低了积累,但在存在的情况下,还原在存在的情况下更为重要。将细胞在pH 6.8(用NaHCO(3)中的5%CO(2)调节)温育24小时,将平均稳态细胞内pH降至6.96,对于对照细胞显着低于7.28。确实在控制条件下减少(14)C-MA积累,但在酸性孵育后没有效果。免疫印迹表明,酸性孵育后上调NBCN1,含NH(4)含硫培养基。存在Cl( - ) - HCO(3)( - )交换剂AE2,但其表达不受酸性孵育的影响。在卵爪蟾卵母细胞中表达,NBCN1增加了载体介导的(14)C-MA运输,通过替换Na(+)废除。卵母细胞的两电极电压钳位在NH(4)CL应用后表现出可忽略的电流。这些结果表明,DIS敏感的HCO(3)( - )挤出通常治理NH(4)(+)/ NH(3)摄取在髓质厚的肢体细胞中。我们提出,在酸性条件下,敏感的HCO(3)( - )挤出灭活,而NBCN1上调以刺激NH(4)(+)转运。

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