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利用电位敏感菁染料研究有机溶质的离子依赖性电生性肾转运。分光光度测量法。

The use of potential-sensitive cyanine dye for studying ion-dependent electrogenic renal transport of organic solutes. Spectrophotometric measurements.

作者信息

Kragh-Hansen U, Jørgensen K E, Sheikh M I

出版信息

Biochem J. 1982 Nov 15;208(2):359-68. doi: 10.1042/bj2080359.

Abstract

Renal transport of four different categories of organic solutes, namely sugars, neutral amino acids, monocarboxylic acids and dicarboxylic acids, was studied by using the potential-sensitive dye 3,3'-diethyloxadicarbocyanine iodide in purified luminal-membrane and basolateral-membrane vesicles isolated from rabbit kidney cortex. Valinomycin-induced K(+) diffusion potentials resulted in concomitant changes in dye-membrane-vesicle absorption spectra. Linear relationships were obtained between these changes and depolarization and hyperpolarization of the vesicles. Addition of d-glucose, l-phenylalanine, succinate or l-lactate to luminal-membrane vesicles, in the presence of an extravesicular>intravesicular Na(+) gradient, resulted in rapid transient depolarization. With basolateral-membrane vesicles no electrogenic transport of d-glucose or l-phenylalanine was observed. Spectrophotometric competition studies revealed that d-galactose is electrogenically taken up by the same transport system as that for d-glucose, whereas l-phenylalanine, succinate and l-lactate are transported by different systems in luminal-membrane vesicles. The absorbance changes associated with simultaneous addition of d-glucose and l-phenylalanine were additive. The uptake of these solutes was influenced by the presence of Na(+)-salt anions of different permeabilities in the order: Cl(-)>SO(4) (2-)>gluconate. Addition of valinomycin to K(+)-loaded vesicles enhanced uptake of d-glucose and l-phenylalanine in the presence of an extravesicular>intravesicular Na(+) gradient. Gramicidin or valinomycin plus nigericin diminished/abolished electrogenic solute uptake by Na(+)- or Na(+)+K(+)-loaded vesicles respectively. These results strongly support the presence of Na(+)-dependent renal electrogenic transport of d-glucose, l-phenylalanine, succinate and l-lactate in luminal-membrane vesicles.

摘要

利用从兔肾皮质分离出的纯化管腔膜和基底外侧膜囊泡中的电位敏感染料3,3'-二乙基氧杂二羰花青碘化物,研究了四类不同有机溶质(即糖类、中性氨基酸、单羧酸和二羧酸)的肾脏转运。缬氨霉素诱导的钾离子扩散电位导致染料-膜囊泡吸收光谱的相应变化。在这些变化与囊泡的去极化和超极化之间获得了线性关系。在存在细胞外>细胞内钠离子梯度的情况下,向管腔膜囊泡中添加d-葡萄糖、l-苯丙氨酸、琥珀酸盐或l-乳酸盐,会导致快速短暂的去极化。对于基底外侧膜囊泡,未观察到d-葡萄糖或l-苯丙氨酸的电生转运。分光光度竞争研究表明,d-半乳糖与d-葡萄糖通过相同的转运系统进行电生摄取,而l-苯丙氨酸、琥珀酸盐和l-乳酸盐在管腔膜囊泡中通过不同的系统转运。与同时添加d-葡萄糖和l-苯丙氨酸相关的吸光度变化是相加的。这些溶质的摄取受不同通透性的钠离子盐阴离子存在的影响,顺序为:Cl(-)>SO(4) (2-)>葡萄糖酸盐。在存在细胞外>细胞内钠离子梯度的情况下,向加载钾离子的囊泡中添加缬氨霉素可增强d-葡萄糖和l-苯丙氨酸的摄取。短杆菌肽或缬氨霉素加尼日利亚菌素分别减少/消除了加载钠离子或钠离子+钾离子的囊泡的电生溶质摄取。这些结果有力地支持了管腔膜囊泡中存在依赖钠离子的d-葡萄糖、l-苯丙氨酸、琥珀酸盐和l-乳酸盐的肾脏电生转运。

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