Felipe A, Viñas O, Remesar X
Departament de Bioquimica i Fisiologia, Universitat de Barcelona, Spain.
Biosci Rep. 1990 Apr;10(2):209-16. doi: 10.1007/BF01116580.
Both glycine and leucine transport in rat red blood cells have been studied. The glycine uptake showed two different components, one sodium-dependent and another diffusion-like process. In contrast, leucine uptake was sodium independent. Both, Na(+)-dependent glycine and the overall leucine uptake in red blood cells showed a saturable pattern. Kinetic parameters in reticulocytes were: i) glycine: apparent Km 0.16 mM; Vmax 100.2 nmol/ml ICW/min; ii) leucine: apparent Km 2.11 mM; Vmax 3.88 mumol/ml ICW/min. The erythrocytes kinetic parameters were: i) glycine: apparent Km 0.17 mM; Vmax 9.47 nmol/ml ICW/min; leucine; apparent Km 4.77 mM; Vmax 7.42 mumol/ml ICW/min. The Kd values (sodium independent glycine uptake) were similar in both kind of cells, but the importance of this component in total glycine uptake in erythrocytes was much higher than in reticulocytes. Our results confirm that rat red blood cells have both saturable leucine and Na(+)-dependent glycine uptake, but some important changes occur during cell maturation.
对大鼠红细胞中的甘氨酸和亮氨酸转运都进行了研究。甘氨酸摄取表现出两种不同的成分,一种是钠依赖性的,另一种是类似扩散的过程。相比之下,亮氨酸摄取不依赖于钠。红细胞中钠依赖性甘氨酸摄取和总的亮氨酸摄取都呈现出饱和模式。网织红细胞中的动力学参数为:i)甘氨酸:表观Km为0.16 mM;Vmax为100.2 nmol/ml细胞内水/分钟;ii)亮氨酸:表观Km为2.11 mM;Vmax为3.88 μmol/ml细胞内水/分钟。红细胞的动力学参数为:i)甘氨酸:表观Km为0.17 mM;Vmax为9.47 nmol/ml细胞内水/分钟;亮氨酸:表观Km为4.77 mM;Vmax为7.42 μmol/ml细胞内水/分钟。两种细胞中(不依赖钠的甘氨酸摄取的)解离常数(Kd)值相似,但该成分在红细胞总甘氨酸摄取中的重要性远高于网织红细胞。我们的结果证实,大鼠红细胞同时具有可饱和的亮氨酸摄取和钠依赖性甘氨酸摄取,但在细胞成熟过程中会发生一些重要变化。