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金属离子在异柠檬酸脱氢酶中作用的同位素效应研究

Isotope effect studies of the role of metal ions in isocitrate dehydrogenase.

作者信息

O'Leary M H, Limburg J A

出版信息

Biochemistry. 1977 Mar 22;16(6):1129-35. doi: 10.1021/bi00625a016.

Abstract

Pig heart NADP+-dependent isocitrate dehydrogenase requires a metal ion for activity. Under optimum conditions (pH 7.5, Mg2+ present), the carbon isotope effect is k12/k13 = 0.9989 +/- 0.0004 for the carboxyl carbon undergoing decarboxylation and hydrogen isotope effects are VmaxH/VmaxD = 1.09 +/- 0.04 and (Vmax/Km)H/(Vmax/Km)D = 0.76 +/- 0.12 with threo-D,L-[2-2H]isocitric acid. Deuterium isotope effects measured by the equilibrium perturbation technique under the same conditions are VH/VD = 1.20 for the forward reaction and 1.02 for the reverse reaction. Under these conditions the rate-determining step in the enzymatic reaction must be product release. Dissociation of isocitrate from the enzyme-isocitrate complex and the enzyme-NADP+ complex must be two or more orders of magnitude slower than the chemical steps. The catalytic activity of the enzyme is about tenfold lower in the presence of Ni2+ than in the presence of Mg2+. The carbon isotope effect in the presence of Ni2+ at pH 7.5 is k12/k13 = 1.0051 +/- 0.0012 and the hydrogen isotope effects are VmaxH/VmaxD = 0.98 +/- 0.07 and (Vmax/Km)H/(Vmax/Km)D = 1.11 +/- 0.14. Thus, the rate decrease caused by substitution of Ni2+ for Mg2+ must result from the effects of metal on substrate and product binding and dissociation, rather than effects of metal on catalysis. However, a more detailed analysis of the carbon isotope effects reveals that there is also a large metal effect on the rate of the decarboxylation step, consistent with the view that the carbonyl oxygen of the oxalosuccinate intermediate is coordinated to the metal during decarboxylation.

摘要

猪心NADP⁺依赖性异柠檬酸脱氢酶的活性需要金属离子。在最佳条件下(pH 7.5,存在Mg²⁺),对于发生脱羧反应的羧基碳,碳同位素效应为k¹²/k¹³ = 0.9989 ± 0.0004,对于苏式-D,L-[2-²H]异柠檬酸,氢同位素效应为VmaxH/VmaxD = 1.09 ± 0.04以及(Vmax/Km)H/(Vmax/Km)D = 0.76 ± 0.12。在相同条件下通过平衡扰动技术测得的氘同位素效应,正向反应为VH/VD = 1.20,逆向反应为1.02。在这些条件下,酶促反应中的速率决定步骤必定是产物释放。异柠檬酸从酶-异柠檬酸复合物和酶-NADP⁺复合物上解离的速度必定比化学步骤慢两个或更多数量级。在存在Ni²⁺时,该酶的催化活性比存在Mg²⁺时约低十倍。在pH 7.5存在Ni²⁺时的碳同位素效应为k¹²/k¹³ = 1.0051 ± 0.0012,氢同位素效应为VmaxH/VmaxD = 0.98 ± 0.07以及(Vmax/Km)H/(Vmax/Km)D = 1.11 ± 0.14。因此,用Ni²⁺替代Mg²⁺导致的速率降低必定是由于金属对底物及产物结合和解离的影响,而非金属对催化作用的影响。然而,对碳同位素效应的更详细分析表明,脱羧步骤的速率也存在很大的金属效应,这与草酰琥珀酸中间体的羰基氧在脱羧过程中与金属配位的观点一致。

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