Proposed role of glutathione in L-methionine transport across rabbit renal brush border membranes.

Physiological chemistry and physics Pub Date : 1981-01-01
P Bidot-López, B Schinbeckler
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Abstract

Glutathione has been proposed as responsible for amino acid transport across the brush border membrane of the kidney. According to the gamma glutamyl cycle hypothesis, gamma glutamyl transpeptidase, an enzyme bound to brush border membranes, interacts with intracellular glutathione and an extracellular amino acid, incurring formation of gamma glutamyl-amino acid which is then transported into the cell. The hypothesis further holds that glutathione levels are held constant by a reaction cycle involving 5 cytosolic enzymes and the utilization of 3 moles of ATP. We evaluated this hypothesis, using a brush border vesicle system from rabbit renal proximal tubule. The vesicles enabled study of the transport of L-methionine in a system free of other factors that might influence glutathione. The results suggest that glutathione alone does not enhance the influx of methionine.

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谷胱甘肽在l -蛋氨酸跨兔肾刷缘膜转运中的作用。
谷胱甘肽被认为是负责氨基酸在肾脏刷状边界膜上的运输。根据伽马谷氨酰循环假说,伽马谷氨酰转肽酶是一种结合在刷状膜上的酶,它与细胞内谷胱甘肽和细胞外氨基酸相互作用,形成伽马谷氨酰氨基酸,然后将其转运到细胞内。该假说进一步认为,谷胱甘肽水平通过涉及5种胞质酶和3摩尔ATP利用的反应循环保持不变。我们使用兔肾近端小管的刷状边界囊泡系统来评估这一假设。囊泡使研究l -蛋氨酸在一个没有其他可能影响谷胱甘肽的因素的系统中的运输成为可能。结果表明,谷胱甘肽本身并不能增加蛋氨酸的流入。
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