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大鼠肾脏糖和氨基酸转运的电生理分析。IV. 碱性氨基酸。

Electrophysiological analysis of rat renal sugar and amino acid transport. IV. Basic amino acids.

作者信息

Samarzija I, Frömter E

出版信息

Pflugers Arch. 1982 May;393(3):210-4. doi: 10.1007/BF00584071.

Abstract

Electrophysiological techniques were used to study the transport of the basic amino acids L-arginine, L-lysine and L-ornithine in rat kidney proximal tubule in vivo. Tubular cells were punctured with microelectrodes and the response of the cell membrane potential to sudden applications of the amino acids was measured. In the presence of physiological Na+ concentrations luminal perfusion with millimolar concentrations of basic amino acids depolarized the tubular cells in a concentration dependent fashion by up to 15 mV, while in the absence of Na+ no significant potential changes were observed. These observations indicate that the basic amino acids are taken up into the cell across the brushborder in coupling with Na+ ions in a similar way as neutral and acidic amino acids, and that simple conductive pathways for uncoupled flow of the basic amino acids do either not exist or are quantitatively negligible in the brushborder. From kinetic measurements and competition experiments it was concluded that all basic amino acids are transported by the same transport system, which however does not accept acidic or neutral amino acids (with the possible exception of L-cystine). Perfusion of the peritubular capillaries with millimolar concentrations of basic amino acids depolarized the cells only by approximately 1 mV, both in the presence and absence of Na+. This observation may indicate that a passive uncoupled transport pathway for basic amino acids is present in the peritubular cell membrane to allow exit from cell to interstitial space, if the intracellular concentration rises high enough to overcome the cell membrane potential.

摘要

采用电生理技术研究了大鼠肾近端小管在体情况下碱性氨基酸L-精氨酸、L-赖氨酸和L-鸟氨酸的转运。用微电极穿刺肾小管细胞,测量细胞膜电位对突然施加氨基酸的反应。在生理浓度的Na+存在下,用毫摩尔浓度的碱性氨基酸进行管腔灌注,可使肾小管细胞去极化,去极化程度呈浓度依赖性,最大可达15 mV,而在无Na+时未观察到明显的电位变化。这些观察结果表明,碱性氨基酸与中性和酸性氨基酸类似,是以与Na+离子偶联的方式通过刷状缘进入细胞的,而且在刷状缘不存在或在数量上可忽略不计未偶联的碱性氨基酸的简单传导途径。通过动力学测量和竞争实验得出结论,所有碱性氨基酸均由同一转运系统转运,但该转运系统不接受酸性或中性氨基酸(L-胱氨酸可能除外)。在存在和不存在Na+的情况下,用毫摩尔浓度的碱性氨基酸灌注肾小管周围毛细血管,细胞仅去极化约1 mV。这一观察结果可能表明,肾小管周围细胞膜存在碱性氨基酸的被动非偶联转运途径,以便在细胞内浓度升高到足以克服细胞膜电位时,使碱性氨基酸从细胞排出到细胞间隙。

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