Windus D W, Cohn D E, Klahr S, Hammerman M R
Am J Physiol. 1984 Jan;246(1 Pt 2):F78-86. doi: 10.1152/ajprenal.1984.246.1.F78.
To determine whether the increased ammonia production per nephron in chronic metabolic acidosis is accompanied by augmented L-glutamine transport across the basolateral membrane of the renal cortical cell and consequent increased availability of this ammoniagenic amino acid, we measured L-[3H]glutamine transport in basolateral membrane vesicles (BLMV) isolated from kidneys of normal and acidotic dogs. Na+ -dependent electrogenic transport of L-[3H]glutamine was demonstrated in BLMV from kidneys of normal dogs that exhibited saturability over the concentration range of 25 microM to 2 mM L-glutamine. The apparent Km was 416 +/- 114 microM and Vmax was 536 +/- 129 pmol X mg protein-1 X 15 s-1. The initial rate of Na+ -dependent L-[3H]glutamine transport was increased in BLMV from kidneys of acidotic dogs, as reflected by an increased apparent Vmax. We conclude that an adaptation resulting in greater uptake of L-glutamine across the basolateral membrane of the renal cortical cell may underlie, in part, the increased rate of ammonia production per nephron seen in chronic metabolic acidosis.
为了确定慢性代谢性酸中毒时每个肾单位氨生成增加是否伴随着肾皮质细胞基底外侧膜上L-谷氨酰胺转运增加以及由此导致的这种产氨氨基酸可用性增加,我们测量了从正常和酸中毒犬肾脏分离的基底外侧膜囊泡(BLMV)中L-[3H]谷氨酰胺的转运。在正常犬肾脏的BLMV中证实了L-[3H]谷氨酰胺的Na+依赖性电转运,在25μM至2 mM L-谷氨酰胺浓度范围内表现出饱和性。表观Km为416±114μM,Vmax为536±129 pmol·mg蛋白-1·15 s-1。酸中毒犬肾脏的BLMV中Na+依赖性L-[3H]谷氨酰胺转运的初始速率增加,表现为表观Vmax增加。我们得出结论,慢性代谢性酸中毒时每个肾单位氨生成速率增加,部分原因可能是肾皮质细胞基底外侧膜对L-谷氨酰胺摄取增加的适应性变化。