Murer H, Sigrist-Nelson K, Hopfer U
J Biol Chem. 1975 Sep 25;250(18):7392-6.
The influence of amino acids on D-glucose transport was studied in isolated vesicles of brush border membrane from rat small intestine. It is demonstrated that: (a) Uptake of D-glucose by the membranes is inhibited by simultaneous flow of L- and D-alanine into the vesicles. (b) Addition of L-alanine to membranes pre-equilibrated with D-glucose causes efflux of this sugar. (c) The influence of amino acids on D-glucose is dependent on the presence of Na+. (d) The ionophorous agents monactin and valinomycin are able to prevent the transport interaction of D-glucose and amino acids. Monactin is effective in the presence of Na+ without further addition of other cations, while valinomycin is effective only with added K+, in accordance with the known specificity of these antibiotics. (e) The inhibitory effect increases with L-alanine concentration up to about 50 mM after which it levels off. The experiments provide evident that the Na+-dependent sugar and amino acid fluxes across the brush border membrane are coupled electrically.
在大鼠小肠刷状缘膜的分离囊泡中研究了氨基酸对D-葡萄糖转运的影响。结果表明:(a) 当L-丙氨酸和D-丙氨酸同时流入囊泡时,膜对D-葡萄糖的摄取受到抑制。(b) 向预先用D-葡萄糖平衡的膜中加入L-丙氨酸会导致这种糖外流。(c) 氨基酸对D-葡萄糖的影响取决于Na+的存在。(d) 离子载体莫能菌素和缬氨霉素能够阻止D-葡萄糖和氨基酸的转运相互作用。根据这些抗生素已知的特异性,莫能菌素在有Na+存在时有效,无需进一步添加其他阳离子,而缬氨霉素仅在添加K+时有效。(e) 抑制作用随着L-丙氨酸浓度增加至约50 mM后趋于平稳。这些实验证明,跨刷状缘膜的Na+依赖性糖和氨基酸通量在电方面是偶联的。