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碳酸氢盐对大鼠肾皮质乌头酸水合酶活性的调节

Regulation of aconitate hydratase activity from rat kidney cortex by bicarbonate.

作者信息

Stepiński J, Angielski S

出版信息

Acta Biochim Pol. 1976;23(2-3):203-15.

PMID:9759
Abstract
  1. The increase in pH value and bicarbonate concentration stimulated citrate synthesis from pyruvate and malate, inhibiting simultaneously conversion of isocitrate to citrate. 2. Bicarbonate inhibited competitively the activity of aconitate hydratase, probably binding with the two active sites of the enzyme. The Ki values for the cytoplasmic and mitochondrial enzyme were, respectively, 27 and 38 mM. The pH optimum for both forms of the enzyme in Tris-HCl buffer was in the range 7.8-8.6, and in bicarbonate buffer varied from 7.2 to 8.0, depending on the form of the enzyme and the substrate used. 3. Only free, completely dissociated citrate anion acts as a substrate for aconitate hydratase. 4. The role of aconitate hydratase as a factor controlling the rate of citrate metabolism in kidney in metabolic alkalosis is discussed.
摘要
  1. pH值和碳酸氢盐浓度的升高刺激了丙酮酸和苹果酸合成柠檬酸,同时抑制了异柠檬酸向柠檬酸的转化。2. 碳酸氢盐竞争性抑制乌头酸水合酶的活性,可能与该酶的两个活性位点结合。细胞质和线粒体酶的Ki值分别为27和38 mM。在Tris-HCl缓冲液中,两种形式的酶的最适pH值在7.8 - 8.6范围内,在碳酸氢盐缓冲液中,根据酶的形式和所用底物的不同,最适pH值在7.2至8.0之间变化。3. 只有游离的、完全解离的柠檬酸阴离子作为乌头酸水合酶的底物。4. 讨论了乌头酸水合酶作为代谢性碱中毒时控制肾脏柠檬酸代谢速率的一个因素的作用。

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