Kragh-Hansen U, Røigaard-Petersen H, Jacobsen C, Sheikh M I
Biochem J. 1984 May 15;220(1):15-24. doi: 10.1042/bj2200015.
The transport properties for phenylalanine and glucose in luminal-membrane vesicles from outer cortex (pars convoluta) and outer medulla (pars recta) of rabbit kidney were studied by a spectrophotometric method. Uptake of phenylalanine as well as of glucose by the two types of membrane vesicles was found to be Na+-dependent, electrogenic and stereospecific. Na+-dependent transport of L-phenylalanine by outer-cortical membrane vesicles could be accounted for by one transport system (KA congruent to 1.5 mM). By contrast, in the outer-medullary preparation, L-phenylalanine transport occurred via two transport systems, namely a high-affinity system with K1A congruent to 0.33 mM and a low-affinity system with K2A congruent to 7 mM respectively. Na+-dependent uptake of D-glucose by pars convoluta and pars recta membrane vesicles could be described by single, but different, transport systems, namely a low-affinity system with KA congruent to 3.5 mM and a high-affinity system with KA congruent to 0.30 mM respectively. Attempts to calculate the stoichiometry of the different Na+/D-glucose transport systems by using Hill-type plots revealed that the ratio of the Na+/hexose co-transport probably is 1:1 in the case of pars convoluta and 2:1 in membrane vesicles from pars recta. The Na+/L-phenylalanine stoichiometry of the pars convoluta transporter probably is 1:1. Both the high-affinity and the low-affinity Na+-dependent L-phenylalanine transport system of pars recta membrane vesicles seem to operate with a 1:1 stoichiometry. The physiological importance of the arrangement of low-affinity and high-affinity transport systems along the kidney proximal tubule is discussed.
采用分光光度法研究了兔肾外皮质(曲部)和外髓质(直部)管腔膜囊泡中苯丙氨酸和葡萄糖的转运特性。发现这两种类型的膜囊泡对苯丙氨酸和葡萄糖的摄取均依赖于Na⁺,具有电生性和立体特异性。外皮质膜囊泡对L-苯丙氨酸的Na⁺依赖性转运可由一个转运系统解释(KA约为1.5 mM)。相比之下,在外髓质制剂中,L-苯丙氨酸的转运通过两个转运系统进行,即一个高亲和力系统(K1A约为0.33 mM)和一个低亲和力系统(K2A约为7 mM)。曲部和直部膜囊泡对D-葡萄糖的Na⁺依赖性摄取可分别由单一但不同的转运系统描述,即一个低亲和力系统(KA约为3.5 mM)和一个高亲和力系统(KA约为0.30 mM)。试图通过使用希尔型图计算不同Na⁺/D-葡萄糖转运系统的化学计量比,结果表明,曲部的Na⁺/己糖共转运比可能为1:1,直部膜囊泡中为2:1。曲部转运体的Na⁺/L-苯丙氨酸化学计量比可能为1:1。直部膜囊泡的高亲和力和低亲和力Na⁺依赖性L-苯丙氨酸转运系统似乎均以1:1的化学计量比运行。讨论了沿肾近端小管排列低亲和力和高亲和力转运系统的生理重要性。