Berner W, Kinne R, Murer H
Biochem J. 1976 Dec 15;160(3):467-74. doi: 10.1042/bj1600467.
Uptake of Pi into brush-border membrane vesicles isolated from rat small intestine was investigated by a rapid filtration technique. The following results were obtained. 1. At pH 7.4 in the presence of a NaCl gradient across the membrane (sodium concentration in the medium higher than sodium concentration in the vesicles), phosphate was taken up by a saturable transport system, which was competitively inhibited by arsenate. Phosphate entered the same osmotically reactive space as D-glucose, which indicates that transport into the vesicles rather than binding to the membranes was determined. 2. The amount of phosphate taken up initially was increased about fourfold by lowering the pH from 7.4 to 6.0.3. When Na+ was replaced by K+, Rb+ or Cs+, the initial rate of uptake decreased at pH 7.4 but was not altered at pH 6.0.4. Experiments with different anions (SCN-,Cl-, SO42-) and with ionophores (valinomycin, monactin) showed that at pH 7.4 phosphate transport in the presence of a Na+ gradient is almost independent of the electrical potential across the vesicle membrane, whereas at pH 6.0 phosphate transport involves the transfer of negative charge. It is concluded that intestinal brush-border membranes contain a Na+/phosphate co-transport system, which catalyses under physiological conditions an electroneutral entry of Pi and Na+ into the intestinal epithelial cell. In contrast with the kidney, probably univalent phosphate and one Na+ ion instead of bivalent phosphate and two Na+ ions are transported together.
采用快速过滤技术研究了从大鼠小肠分离的刷状缘膜囊泡对磷酸根(Pi)的摄取情况。得到以下结果:1. 在pH 7.4、膜两侧存在NaCl梯度(培养基中钠浓度高于囊泡中钠浓度)的情况下,磷酸盐通过一种可饱和转运系统被摄取,该系统受到砷酸盐的竞争性抑制。磷酸盐进入与D - 葡萄糖相同的渗透活性空间,这表明确定的是转运进入囊泡而非与膜结合。2. 将pH从7.4降至6.0时,最初摄取的磷酸盐量增加了约四倍。3. 当用K⁺、Rb⁺或Cs⁺取代Na⁺时,在pH 7.4时摄取的初始速率降低,但在pH 6.0时未改变。4. 用不同阴离子(SCN⁻、Cl⁻、SO₄²⁻)和离子载体(缬氨霉素、莫能菌素)进行的实验表明,在pH 7.4、存在Na⁺梯度的情况下,磷酸盐转运几乎与囊泡膜两侧的电势无关,而在pH 6.0时,磷酸盐转运涉及负电荷的转移。结论是,肠刷状缘膜含有一种Na⁺/磷酸盐共转运系统,该系统在生理条件下催化Pi和Na⁺以电中性方式进入肠上皮细胞。与肾脏不同,可能是一价磷酸盐和一个Na⁺离子而非二价磷酸盐和两个Na⁺离子一起被转运。