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大鼠肝脏线粒体中用于瓜氨酸合成的系统能力随高蛋白和低蛋白饮食而发生的适应性变化。

Adaptive changes in the capacity of systems used for the synthesis of citrulline in rat liver mitochondria in response to high- and-low-protein diets.

作者信息

McGivan J D, Bradford N M, Chappell J B

出版信息

Biochem J. 1974 Aug;142(2):359-64. doi: 10.1042/bj1420359.

Abstract
  1. Citrulline synthesis was measured in mitochondria from rats fed on a standard diet, a high-protein diet, or on glucose. 2. With NH(4)Cl as the nitrogen source the rate of citrulline synthesis was higher in mitochondria from rats fed on a high-protein diet than in those from rats fed on a standard diet. When rats were fed solely on glucose the rate of synthesis of citrulline from NH(4)Cl was very low. 3. With glutamate as the nitrogen source the relative rates of citrulline synthesis were much lower than when NH(4)Cl was present, but similar adaptive changes occurred. 4. The activity of the mitochondrial glutamate-transporting system increased two to three times on feeding rats on a high-protein diet, but the K(m) for glutamate was unchanged. 5. Adaptive changes in certain intramitochondrial enzymes were also measured. 6. The results were interpreted to indicate that when an excess of substrate was present, citrulline synthesis from NH(4)Cl was rate-limited by the intramitochondrial concentration of N-acetyl-glutamate, but citrulline synthesis from glutamate was rate-limited primarily by the activity of the glutamate-transporting system.
摘要
  1. 以标准饮食、高蛋白饮食或葡萄糖喂养大鼠,测定其线粒体中的瓜氨酸合成。2. 以氯化铵为氮源时,高蛋白饮食喂养大鼠的线粒体中瓜氨酸合成速率高于标准饮食喂养大鼠的线粒体。当大鼠仅喂食葡萄糖时,由氯化铵合成瓜氨酸的速率非常低。3. 以谷氨酸为氮源时,瓜氨酸合成的相对速率远低于存在氯化铵时,但出现了类似的适应性变化。4. 给大鼠喂食高蛋白饮食时,线粒体谷氨酸转运系统的活性增加了两到三倍,但谷氨酸的米氏常数(K(m))不变。5. 还测定了某些线粒体内酶的适应性变化。6. 结果表明,当存在过量底物时,由氯化铵合成瓜氨酸的过程受线粒体内N-乙酰谷氨酸浓度的速率限制,但由谷氨酸合成瓜氨酸的过程主要受谷氨酸转运系统活性的速率限制。

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