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大鼠髓袢升支粗段中的缬氨酸氧化

Valine oxidation in the rat medullary thick ascending limb.

作者信息

Levillain O

机构信息

Hospital Necker, U90 INSERM, Paris, France.

出版信息

Pflugers Arch. 1993 Sep;424(5-6):398-402. doi: 10.1007/BF00374900.

Abstract

In the kidney, a branched-chain amino acid transferase (BCAAT) activity has been localized mainly in the medullary thick ascending limb (MTAL) of the rat nephron. BCAAT is the first enzyme involved in the metabolic pathway of the three branched-chain amino acids (BCAA): leucine, isoleucine and valine. The present work has been designed to study valine catabolism. Valine and leucine oxidation in MTAL were compared by measuring the rate of 14CO2 produced when these substrates were incubated as sole substrates at a final concentration of 1 mM. Since glucose is also metabolized in MTAL, valine and leucine oxidation were quantified also in the presence of glucose (1 mM). The results show that: (1) valine oxidation was greater than that of leucine (63.0 +/- 4.7 vs 39.7 +/- 5.2 pmol.h-1 x micrograms-1 protein, respectively; P < 0.001). As previously shown, leucine oxidation was found to be increased in the presence of glucose whereas glucose oxidation decreased. In contrast, the presence of glucose strongly diminished valine oxidation (19.2 +/- 1.9 vs 63.1 +/- 4.7 pmol.h-1 x micrograms-1 protein; P < 0.001) whereas glucose oxidation was increased in the presence of valine (268.2 +/- 14.9 vs 229.6 +/- 16.2 pmol.h-1 x micrograms-1 protein; P < 0.05). We conclude that in rat MTAL, under near physiological conditions (in the presence of glucose, as in vivo), leucine is a preferential respiratory fuel as compared to valine. However, valine supports energetic salt transport and facilitates glucose oxidation.

摘要

在肾脏中,一种支链氨基酸转氨酶(BCAAT)的活性主要定位于大鼠肾单位的髓质厚升支(MTAL)。BCAAT是参与三种支链氨基酸(BCAA):亮氨酸、异亮氨酸和缬氨酸代谢途径的第一种酶。本研究旨在研究缬氨酸的分解代谢。通过测量当这些底物以1 mM的终浓度作为唯一底物孵育时产生的(^{14}CO_2)速率,比较了MTAL中缬氨酸和亮氨酸的氧化。由于葡萄糖也在MTAL中代谢,因此还在存在葡萄糖(1 mM)的情况下对缬氨酸和亮氨酸的氧化进行了定量。结果表明:(1)缬氨酸氧化大于亮氨酸氧化(分别为(63.0 \pm 4.7)对(39.7 \pm 5.2) pmol·h⁻¹×μg⁻¹蛋白质;P < 0.001)。如先前所示,发现亮氨酸氧化在存在葡萄糖时增加,而葡萄糖氧化减少。相反,葡萄糖的存在强烈降低了缬氨酸氧化((19.2 \pm 1.9)对(63.1 \pm 4.7) pmol·h⁻¹×μg⁻¹蛋白质;P < 0.001),而在存在缬氨酸时葡萄糖氧化增加((268.2 \pm 14.9)对(229.6 \pm 16.2) pmol·h⁻¹×μg⁻¹蛋白质;P < 0.05)。我们得出结论,在大鼠MTAL中,在接近生理条件下(如在体内存在葡萄糖时),与缬氨酸相比,亮氨酸是一种优先的呼吸燃料。然而,缬氨酸支持能量盐转运并促进葡萄糖氧化。

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