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兔肾管腔膜囊泡中D-半乳糖转运系统的特性

Characteristics of D-galactose transport systems by luminal membrane vesicles from rabbit kidney.

作者信息

Røigaard-Petersen H, Jacobsen C, Sheikh M I

出版信息

Biochim Biophys Acta. 1986 Apr 25;856(3):578-84. doi: 10.1016/0005-2736(86)90150-1.

Abstract

The characteristics of renal transport of D-galactose by luminal membrane vesicles from either whole cortex, pars recta or pars convoluta of rabbit proximal tubule were investigated by a spectrophotometric method using a potential-sensitive carbocyanine dye. Uptake of D-galactose by luminal membrane vesicles prepared from whole cortex was carried out by an Na+-dependent and electrogenic process. Eadie-Hofstee analysis of saturation-kinetic data suggested the presence of multiple transport systems in vesicles from whole cortex for the uptake of D-galactose. Tubular localization of the transport systems was studied by the use of vesicles derived from pars recta and pars convoluta. In pars recta, Na+-dependent transport of D-galactose and D-glucose occurred by means of a high-affinity system (half-saturation: D-galactose, 0.15 +/- 0.02 mM; D-glucose, 0.13 +/- 0.02 mM). These results indicated that the "carrier' responsible for the uptake of these hexoses does not discriminate between the steric position of the C-4 hydroxyl group of these two isomers. This is further confirmed by competition experiments, which showed that D-galactose and D-glucose are taken up by the same and equal affinity transport system by these vesicle preparations. Uptake of D-galactose and D-glucose by luminal membrane vesicles isolated from pars convoluta was mediated by a low-affinity common transport system (half-saturation: D-galactose, 15 +/- 2 mM; D-glucose, 2.5 +/- 0.5 mM). These findings strongly suggested that the "carrier' involved in the transport of monosaccharides in vesicles from pars convoluta is specific for the steric position of the C-4 hydroxyl group of these sugars and presumably interacts only with D-glucose at normal physiological concentration.

摘要

采用一种使用电位敏感羰花青染料的分光光度法,研究了兔近端小管全皮质、直部或曲部的管腔膜囊泡对D-半乳糖的肾转运特性。由全皮质制备的管腔膜囊泡对D-半乳糖的摄取是通过一种依赖Na⁺的电生性过程进行的。对饱和动力学数据的伊迪-霍夫斯泰分析表明,全皮质囊泡中存在多种摄取D-半乳糖的转运系统。通过使用源自直部和曲部的囊泡研究了转运系统的肾小管定位。在直部,D-半乳糖和D-葡萄糖的Na⁺依赖性转运通过一种高亲和力系统进行(半饱和浓度:D-半乳糖,0.15±0.02 mM;D-葡萄糖,0.13±0.02 mM)。这些结果表明,负责摄取这些己糖的“载体”不会区分这两种异构体C-4羟基的空间位置。竞争实验进一步证实了这一点,该实验表明这些囊泡制剂通过相同且亲和力相等的转运系统摄取D-半乳糖和D-葡萄糖。从曲部分离的管腔膜囊泡对D-半乳糖和D-葡萄糖的摄取由一种低亲和力的共同转运系统介导(半饱和浓度:D-半乳糖,15±2 mM;D-葡萄糖,2.5±0.5 mM)。这些发现强烈表明,参与曲部囊泡中单糖转运的“载体”对这些糖的C-4羟基的空间位置具有特异性,并且在正常生理浓度下可能仅与D-葡萄糖相互作用。

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