Zafra F, Giménez C
Departamento de Bioloía Molecular, Facultad de Ciencias, Universidad Autónoma de Madrid, Spain.
Biochim Biophys Acta. 1989 Feb 27;979(2):147-52. doi: 10.1016/0005-2736(89)90429-x.
The high-affinity transport system for glycine in plasma membrane vesicles from C6 glioma cells is dependent on Na+ and also on the presence of Cl- in the incubation medium. This anion requirement is relatively specific for Cl-, since other anions are also capable of stimulating the glycine transport in the following order of decreasing efficacy: Cl- greater than Br- greater than SCN- congruent to I- greater than NO3- greater than F-. Chloride ions raise the Vmax for transport and, to a lesser extent, act on the Km. The data provided by direct measurements of the coupling of sodium and chloride to the transport of glycine by using a kinetic approach suggest a stoichiometry for the translocation cycle catalyzed by the glycine transporter of two sodium ions and one chloride ion per glycine zwitterion.
C6胶质瘤细胞质膜囊泡中甘氨酸的高亲和力转运系统依赖于Na⁺,并且也依赖于孵育培养基中Cl⁻的存在。这种对阴离子的需求对Cl⁻相对特异,因为其他阴离子也能够按以下递减效力顺序刺激甘氨酸转运:Cl⁻>Br⁻>SCN⁻≃I⁻>NO₃⁻>F⁻。氯离子提高了转运的Vmax,并且在较小程度上作用于Km。通过动力学方法直接测量钠和氯与甘氨酸转运的偶联所提供的数据表明,甘氨酸转运体催化的转运循环的化学计量比为每甘氨酸两性离子两个钠离子和一个氯离子。