Weigensberg A M, Blostein R
J Membr Biol. 1985;86(1):37-44. doi: 10.1007/BF01871608.
Sodium-coupled glycine transport has been studied using membrane vesicles of distinct sidedness, either inside-out or right side-out, prepared from sheep reticulocytes. The activity is chloride dependent and characterized by high and low apparent affinities for glycine (K'm approximately equal to 0.5 mM and greater than 10 mM) for both types of vesicles as well as intact cells. Transport is symmetrical with respect to similar apparent affinity constants for glycine, for both the high- and low-affinity systems, and for sodium. Direct measurements of the sodium/glycine coupling indicate a ratio of 2:1, consistent with kinetic data fitted to a Hill-type equation describing glycine flux as a function of sodium concentration.
利用从绵羊网织红细胞制备的具有不同方向性的膜囊泡(内翻或外翻)对钠偶联甘氨酸转运进行了研究。两种类型的膜囊泡以及完整细胞的转运活性均依赖于氯离子,并且对甘氨酸具有高和低两种表观亲和力(Km分别约为0.5 mM和大于10 mM)。对于高亲和力和低亲和力系统以及钠而言,甘氨酸的相似表观亲和力常数方面的转运是对称的。钠/甘氨酸偶联的直接测量表明其比例为2:1,这与根据描述甘氨酸通量作为钠浓度函数的希尔型方程拟合的动力学数据一致。