Lever J E, Kennedy B G, Vasan R
Arch Biochem Biophys. 1984 Nov 1;234(2):330-40. doi: 10.1016/0003-9861(84)90278-9.
Na+-stimulated amino acid transport was investigated in MDCK kidney epithelial cell monolayers and in isolated membrane vesicles. When transport polarity was assessed in confluent polarized epithelial cell monolayers cultured on Nucleopore filters and mounted between two lucite chambers, Na+-stimulated transport of 2-(methylamino)isobutyric acid (MeAIB), a substrate specific for the A system, was predominantly localized on the basolateral membrane. Na+-stimulated amino acid transport activity was maximal in subconfluent cultures, and was substantially reduced after confluence. A membrane vesicle preparation was isolated from confluent MDCK cell cultures which was enriched in Na+-stimulated MeAIB transport activity and Na+,K+,ATPase activity, a basolateral marker, but was not enriched in apical marker enzyme activities or significantly contaminated by mitochondria. Na+-coupled amino acid transport activity assayed in vesicles exhibited a marked dependence on external pH, with an optimum at pH 7.4. The pattern of competitive interactions among neutral amino acids was characteristic of A system transport. Na+-coupled MeAIB and AIB transport in vesicles was electrogenic, stimulated by creation of an interior-negative membrane potential. The Na+ dependence of amino acid transport in vesicles suggested a Na+ symport mechanism with a 1:1 stoichiometry between Na+ and amino acid.
在MDCK肾上皮细胞单层和分离的膜囊泡中研究了钠刺激的氨基酸转运。当在核孔滤膜上培养并安装在两个有机玻璃腔室之间的汇合极化上皮细胞单层中评估转运极性时,钠刺激的2-(甲氨基)异丁酸(MeAIB)转运,一种A系统特异性底物,主要定位于基底外侧膜。钠刺激的氨基酸转运活性在亚汇合培养物中最大,汇合后显著降低。从汇合的MDCK细胞培养物中分离出一种膜囊泡制剂,其富含钠刺激的MeAIB转运活性和钠钾ATP酶活性,一种基底外侧标志物,但顶端标志物酶活性未富集,也未被线粒体显著污染。在囊泡中测定的钠偶联氨基酸转运活性对外部pH值有明显依赖性,在pH 7.4时最佳。中性氨基酸之间的竞争性相互作用模式是A系统转运的特征。囊泡中钠偶联的MeAIB和AIB转运是电生的,通过产生内膜负电位来刺激。囊泡中氨基酸转运对钠的依赖性表明存在钠同向转运机制,钠与氨基酸的化学计量比为1:1。