Bogé G, Rigal A
Biochim Biophys Acta. 1981 Dec 7;649(2):455-61. doi: 10.1016/0005-2736(81)90436-3.
The uptake of D-glucose, 2-aminoisobutyric acid and glycine was studied with intestinal brush border membrane vesicles of a marine herbivorous fish: Boops salpa. The uptake of these three substances is stimulated by an Na+ electrochemical gradient (Cout greater than Cin). For glucose, an increase of the electrical membrane potential generated by a concentration gradient of the liposoluble anion, SCN-, increases the Na+-dependent transport. This responsiveness to the membrane potential was confirmed by valinomycin. Differently from glucose, uptake of glycine and 2-aminoisobutyric acid requires, besides the Na+ gradient, the presence of Cl- on the external side of the vesicles. In the absence of Cl-, amino acid uptake is not stimulated by the Na+ gradient and is not influenced by an electrical membrane potential generated by SCN- gradient (Cout greater than Cin) or by a K+ diffusion potential (Cin greater than Cout). This Cl- requirement differs from the Na+ requirement, since a Cl- gradient (Cout greater than Cin) does not result in an accumulation of glycine or 2-aminoisobutyric acid similar to that produced by an Na+ gradient.
利用一种海洋草食性鱼类——条纹鲷的肠刷状缘膜囊泡,研究了D - 葡萄糖、2 - 氨基异丁酸和甘氨酸的摄取情况。这三种物质的摄取受到Na⁺电化学梯度(胞外浓度大于胞内浓度)的刺激。对于葡萄糖,由脂溶性阴离子SCN⁻的浓度梯度产生的膜电位增加,会增强Na⁺依赖性转运。缬氨霉素证实了这种对膜电位的反应性。与葡萄糖不同,甘氨酸和2 - 氨基异丁酸的摄取除了需要Na⁺梯度外,还需要囊泡外侧存在Cl⁻。在没有Cl⁻的情况下,Na⁺梯度不会刺激氨基酸摄取,且不受SCN⁻梯度(胞外浓度大于胞内浓度)产生的膜电位或K⁺扩散电位(胞内浓度大于胞外浓度)的影响。这种对Cl⁻的需求与对Na⁺的需求不同,因为Cl⁻梯度(胞外浓度大于胞内浓度)不会导致甘氨酸或2 - 氨基异丁酸的积累,其积累情况与Na⁺梯度所产生的积累情况不同。