Hammerman M R, Sacktor B
Biochim Biophys Acta. 1982 Apr 7;686(2):189-96. doi: 10.1016/0005-2736(82)90112-2.
The uptake of glycine in rabbit renal brush border membrane vesicles was shown to consist of glycine transport into an intravesicular space. An Na+ electrochemical gradient (extravesicular greater than intravesicular) stimulated the initial rate of glycine uptake and effected a transient accumulation of intravesicular glycine above the steady-state value. This stimulation could not be induced by the imposition of a K+, Li+ or choline+ gradient and was enhanced as extravesicular Na+ was increased from 10 mM to 100 mM. Dissipation of the Na+ gradient by the ionophore gramicidin D resulted in diminished Na+-stimulated glycine uptake. Na+-stimulated uptake of glycine was electrogenic. Substrate-velocity analysis of Na+-dependent glycine uptake over the range of amino acid concentrations from 25 microM to 10 mM demonstrated a single saturable transport system with apparent Km = 996 microM and Vmax = 348 pmol glycine/mg protein per min. Inhibition observed when the Na+-dependent uptake of 25 microM glycine was inhibited by 5 mM extravesicular test amino acid segregated dibasic amino acids, which did not inhibit glycine uptake, from all other amino acid groups. The amino acids D-alanine, D-glutamic acid, and D-proline inhibited similarly to their L counterparts. Accelerative exchange of extravesicular [3H]glycine was demonstrated when brush border vesicles were preloaded with glycine, but not when they were preloaded with L-alanine, L-glutamic acid, or with L-proline. It is concluded that a single transport system exists at the level of the rabbit renal brush border membrane that functions to reabsorb glycine independently from other groups of amino acids.
兔肾刷状缘膜囊泡对甘氨酸的摄取表现为甘氨酸转运至囊泡内空间。Na⁺电化学梯度(囊泡外大于囊泡内)刺激了甘氨酸摄取的初始速率,并使囊泡内甘氨酸出现短暂积累,高于稳态值。这种刺激不能由K⁺、Li⁺或胆碱⁺梯度诱导,且随着囊泡外Na⁺从10 mM增加到100 mM而增强。离子载体短杆菌肽D使Na⁺梯度消散,导致Na⁺刺激的甘氨酸摄取减少。Na⁺刺激的甘氨酸摄取是生电的。在25 μM至10 mM氨基酸浓度范围内对Na⁺依赖性甘氨酸摄取进行底物 - 速度分析,结果表明存在一个单一的可饱和转运系统,其表观Km = 996 μM,Vmax = 348 pmol甘氨酸/毫克蛋白每分钟。当5 mM囊泡外测试氨基酸抑制25 μM甘氨酸的Na⁺依赖性摄取时,所观察到的抑制作用将不抑制甘氨酸摄取的二价氨基酸与所有其他氨基酸组区分开来。D - 丙氨酸、D - 谷氨酸和D - 脯氨酸对甘氨酸摄取的抑制作用与其L型对应物相似。当刷状缘囊泡预先加载甘氨酸时,可证明囊泡外[³H]甘氨酸的加速交换,但预先加载L - 丙氨酸、L - 谷氨酸或L - 脯氨酸时则不然。结论是,在兔肾刷状缘膜水平存在一个单一的转运系统,其功能是独立于其他氨基酸组重吸收甘氨酸。