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肾刷状缘膜囊泡中氨基酸的转运。L-脯氨酸的摄取。

Transport of amino acids in renal brush border membrane vesicles. Uptake of L-proline.

作者信息

Hammerman M R, Sacktor B

出版信息

J Biol Chem. 1977 Jan 25;252(2):591-5.

PMID:833146
Abstract

The findings (a) stereospecific counter transport; (b) equilibrium uptake of L-proline decreased with increasing medium osmolarity; and (c) L-proline and Na+ were taken up into identical intravesicular spaces, indicate that uptake of L-proline by rabbit renal brush border membranes represents transport into membrane vesicles, not surface binding to the membrane. An Na+ gradient between extravesicular and intravesicular media stimulated the initial rate of L-proline uptake about 10 times. Accumulation of the imino acid was maximal at 2 min, then decreased until the equilibrium level was attained. At the peak of this "overshoot" uptake of L-proline was 3-fold greater than the final equilibrium value. These results suggest that the electrochemical Na+ gradient drives the transient movement of L-proline into the membrane vesicles against its concentration gradient. Stimulation of L-proline uptake was specific for Na+. Increasing the Na+ gradient lowered the apparent Km for L-proline. Efflux of L-proline from the membrane vesicles, like uptake, showed stimulatory effects when the Na+ gradient and L-proline were on the same side, and inhibitory effects when the Na+ gradient and the imino acid were on opposite sides of the membrane. Uptake of L-proline, at a given concentration, reflected the sum of contributions from Na+ gradient-dependent and -independent transport systems. The dependent system was saturated at 4 mM L-proline. The independent system did not saturate but may represent the sum of passive diffusion and a "carrier"-mediated system. At physiological concentrations the rate of the Na+ gradient-dependent uptake was 5 times that in the absence of the gradient. In K+-loaded vesicles, valinomycin, but not nigericin, enhanced the Na+ gradient-dependent uptake of L-proline. Gramicidin diminished uptake. These findings indicate that the Na+ gradient-dependent transport of L-proline is an electrogenic process and suggest that the membrane potential is a determinant of L-proline transport. The Na+ gradient-dependent rate of L-proline uptake was strongly inhibited by other imino acids, suggesting that L-imino acids have a common transport system. Glycine and neutral amino acids inhibited the rate of L-proline uptake moderately, acidic amino acid and D-glucose were very weak inhibitors, and basic amino acids were without effect. In the absence of Na+, the rate of L-proline uptake was independent of the presence of other amino acids. These findings indicate that the brush border membrane is a site of amino acid recognition during vectorial transepithelial transport. It is proposed that imino and neutral amino acids inhibit transport of L-proline by competitive interaction with the L-proline "carriers" in addition to competition for the electrochemical Na+ gradient or membrane potential. The findings are relevant to the understanding of genetic amino acid transport disorders, such as iminoglycinuria.

摘要

研究结果

(a)立体特异性逆向转运;(b)L-脯氨酸的平衡摄取量随培养基渗透压升高而降低;(c)L-脯氨酸和Na⁺被摄取到相同的囊泡内空间,表明兔肾刷状缘膜对L-脯氨酸的摄取代表转运进入膜囊泡,而非与膜的表面结合。细胞外和细胞内培养基之间的Na⁺梯度刺激L-脯氨酸摄取的初始速率约10倍。亚氨基酸的积累在2分钟时达到最大值,然后下降直至达到平衡水平。在这个“超射”的峰值时,L-脯氨酸的摄取量比最终平衡值大3倍。这些结果表明,电化学Na⁺梯度驱动L-脯氨酸逆其浓度梯度短暂进入膜囊泡。L-脯氨酸摄取的刺激对Na⁺具有特异性。增加Na⁺梯度降低了L-脯氨酸的表观Km值。L-脯氨酸从膜囊泡中的流出,与摄取一样,当Na⁺梯度和L-脯氨酸在同一侧时显示刺激作用,而当Na⁺梯度和亚氨基酸在膜的相反侧时显示抑制作用。在给定浓度下,L-脯氨酸的摄取反映了Na⁺梯度依赖性和非依赖性转运系统贡献的总和。依赖性系统在4 mM L-脯氨酸时饱和。非依赖性系统未饱和,但可能代表被动扩散和“载体”介导系统的总和。在生理浓度下,Na⁺梯度依赖性摄取的速率是无梯度时的5倍。在加载K⁺的囊泡中,缬氨霉素而非尼日利亚菌素增强了L-脯氨酸的Na⁺梯度依赖性摄取。短杆菌肽减少摄取。这些发现表明L-脯氨酸的Na⁺梯度依赖性转运是一个生电过程,并表明膜电位是L-脯氨酸转运的一个决定因素。L-脯氨酸摄取的Na⁺梯度依赖性速率受到其他亚氨基酸的强烈抑制,表明L-亚氨基酸具有共同的转运系统。甘氨酸和中性氨基酸适度抑制L-脯氨酸的摄取速率,酸性氨基酸和D-葡萄糖是非常弱的抑制剂,而碱性氨基酸无作用。在没有Na⁺的情况下,L-脯氨酸的摄取速率与其他氨基酸的存在无关。这些发现表明刷状缘膜是向量性跨上皮转运过程中氨基酸识别的部位。有人提出,亚氨基酸和中性氨基酸除了竞争电化学Na⁺梯度或膜电位外,还通过与L-脯氨酸“载体”的竞争性相互作用抑制L-脯氨酸的转运。这些发现与理解遗传性氨基酸转运障碍如亚氨基甘氨酸尿症相关。

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