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首页> 外文期刊>The biochemical journal >Renal transport of neutral amino acids. Demonstration of Na+-independent and Na+-dependent electrogenic uptake of l-proline, hydroxy-l-proline and 5-oxo-l-proline by luminal-membrane vesicles
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Renal transport of neutral amino acids. Demonstration of Na+-independent and Na+-dependent electrogenic uptake of l-proline, hydroxy-l-proline and 5-oxo-l-proline by luminal-membrane vesicles

机译:肾脏转运中性氨基酸。证明膜腔囊泡对L-脯氨酸,羟基-1-脯氨酸和5-氧代-1-脯氨酸的Na +依赖性和Na +依赖性电摄取

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pUptake of L-proline, hydroxy-L-proline and 5-oxo-L-proline by luminal-membrane vesicles isolated either from whole cortex or from pars convoluta or pars recta of proximal tubules was studied by a spectrophotometric method. Uptake of L-proline and hydroxy-L-proline by vesicles from whole cortex was mediated by both Na+-dependent and Na+-independent, but electrogenic, processes, whereas transport of 5-oxo-L-proline in these vesicles was strictly Na+-dependent. Eadie-Hofstee analysis of saturation-kinetic data suggested the presence of multiple transport systems in luminal-membrane vesicles from whole renal cortex for the uptake of all these amino acids. Tubular localization of the transport systems was studied by the use of vesicles derived from pars convoluta and from pars recta. In pars recta transport of all three amino acids was strictly dependent on Na+ and occurred via a high-affinity system (half-saturation: 0.1-0.3 mM). Cation-dependent but Na+-unspecific transport of low affinity for L-proline and hydroxy-L-proline was exclusively localized to the pars convoluta, which also contained a Na+-preferring system of intermediate affinity (half-saturation: L-proline, 0.75 mM; hydroxy-L-proline, 1.3 mM). 5-Oxo-L-proline was transported by low-affinity and Na+-dependent systems in both pars convoluta and pars recta. Competition experiments revealed that transport systems for L-proline and hydroxy-L-proline are common, but indicated separate high-affinity transport systems for 5-oxo-L-proline and L-proline in luminal-membrane vesicles from pars recta. The physiological importance of the presence of various neutral amino acid-transport systems in different segments of the proximal tubule is discussed./p
机译:通过分光光度法研究了从整个皮质或从近端小管的回旋区或回生区分离的腔膜囊泡对L-脯氨酸,羟基-L-脯氨酸和5-氧代-L-脯氨酸的摄取。整个皮层中囊泡对L-脯氨酸和羟基-L-脯氨酸的吸收是由Na +依赖性和Na +依赖性(但是电性的)过程介导的,而在这些囊泡中5-oxo-L-脯氨酸的转运严格是Na +-依赖。 Eadie-Hofstee对饱和动力学数据的分析表明,从整个肾皮质的腔膜囊泡中存在多种转运系统,以摄取所有这些氨基酸。运输系统的管状定位是通过使用来自卷柏和直肠的囊泡来研究的。在pars中,所有三个氨基酸的直肠转运均严格依赖于Na +,并通过高亲和力系统(半饱和度:0.1-0.3 mM)发生。阳离子依赖性但对L-脯氨酸和羟基L-脯氨酸的亲和力低的Na +-非特异性转运仅局限在pars convoluta,它也包含中等亲和力的Na +-优先系统(半饱和:L-脯氨酸,0.75 mM;羟基-L-脯氨酸,1.3 mM)。 5-亲和-L-脯氨酸通过低亲和力和依赖Na +的系统在pars volvoluta和pars recta中转运。竞争实验表明,L-脯氨酸和羟基-L-脯氨酸的转运系统是常见的,但表明来自pars直肠的腔膜小泡中5-氧代-L-脯氨酸和L-脯氨酸的单独高亲和力转运系统。讨论了在近端小管的不同部分中存在各种中性氨基酸转运系统的生理重要性。

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