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底物和辅酶对猪心三磷酸吡啶核苷酸依赖性异柠檬酸脱氢酶催化反应中锰离子作用的影响。

Influence of substrates and coenzymes on the role of manganous ion in reactions catalyzed by pig heart triphosphopyridine nucleotide-dependent isocitrate dehydrogenase.

作者信息

Ehrlich R S, Colman R F

出版信息

Biochemistry. 1976 Sep 7;15(18):4034-41. doi: 10.1021/bi00663a018.

Abstract

The interaction of manganous ions with pig heart triphosphopyridine nucleotide (TPN) specific isocitrate dehydrogenase has been studied by kinetic experiments and by direct ultrafiltration measurements of manganous ion binding. At low metal ion concentrations, a lag is observed in the time-dependent production of reduced triphosphopyridine nucleotide (TPNH) that can be eliminated by adding 20 muM TPNH to the initial reaction mixture. A plot of 1/upsilon vs. 1/ (Mn2+) obtained at relatively high TPNH concentrations (20 muM) is linear and yields of Km value of 2 muM for metal ion, which is comparable to the direct binding constant measured in the presence of isocitrate. A similar plot at low TPNH concentrations (2 muM) reveals a biphasic relationship: at high metal concentrations the points are collinear with those obtained at high levels of TPNH, but at low metal concentrations that line is characterized by a Km of 19 muM for Mn2+. A difference in the deuterium oxide solvent isotope effect on Vmax observed with 20 muM TPNH as compared with 2 muM TPNH suggests that at high TPNH concentrations or high manganous ion concentrations the rate-limiting step is the dehydrogenation of isocitrate, while at low manganous ion concentrations and low TPNH concentrations, the slow step is the decarboxylation of enzyme-bound oxalosuccinate. Evidence to support this hypothesis is provided by the sensitivity to isocitrate concentration of the Km for total manganese measured in the presence of 20 muM TPNH that contrasts with the relative insensitivity to isocitrate of the Km measured at 2 muM TPNH and low manganous ion concentration. Direct measurements of oxalosuccinate decarboxylation reveal that the Vmax and the Km for manganous ion are influenced by the presence of oxidized or reduced TPN with the Km being lowest (5-7 muM) in the presence of TPNH. The dependence of the Km for manganous ion on the presence of substrate, TPN, and TPNH, is responsible for the variation with conditions in the rate-determining step. The enzyme binds only 1 mol of metal ion and 1 mol of isocitrate/mol of protein under all conditions. The pH dependence of the binding of free manganous ion, free isocitrate, and manganous-isocitrate complex indicates differences in the interaction of these species with isocitrate dehydrogenase. These results can be described in terms of two functions for manganous ion in the reactions catalyzed by isocitrate dehydrogenase, each of which requires a distinct binding site for metal ion: in the dehydrogenation step, Mn2+ facilitates the binding of the substrate isocitrate, and in the decarboxylation step it may stabilize the enolate of alpha-ketoglutarate which is generated.

摘要

通过动力学实验以及对锰离子结合的直接超滤测量,研究了锰离子与猪心三磷酸吡啶核苷酸(TPN)特异性异柠檬酸脱氢酶的相互作用。在低金属离子浓度下,观察到还原型三磷酸吡啶核苷酸(TPNH)随时间生成过程中存在滞后现象,可通过在初始反应混合物中添加20μM TPNH消除。在相对较高的TPNH浓度(20μM)下得到的1/υ对1/(Mn2+)的图是线性的,金属离子的Km值为2μM,这与在异柠檬酸存在下测得的直接结合常数相当。在低TPNH浓度(2μM)下的类似图显示出双相关系:在高金属浓度下,这些点与在高TPNH水平下得到的点共线,但在低金属浓度下,该线的特征是Mn2+的Km为19μM。与2μM TPNH相比,用20μM TPNH观察到的氧化氘溶剂同位素效应对Vmax的差异表明,在高TPNH浓度或高锰离子浓度下,限速步骤是异柠檬酸的脱氢作用,而在低锰离子浓度和低TPNH浓度下,慢步骤是酶结合的草酰琥珀酸的脱羧作用。在20μM TPNH存在下测得的总锰的Km对异柠檬酸浓度的敏感性提供了支持该假设的证据,这与在2μM TPNH和低锰离子浓度下测得的Km对异柠檬酸的相对不敏感性形成对比。草酰琥珀酸脱羧作用的直接测量表明,Vmax和锰离子的Km受氧化型或还原型TPN存在的影响,在TPNH存在下Km最低(5 - 7μM)。锰离子的Km对底物、TPN和TPNH存在的依赖性导致了限速步骤随条件的变化。在所有条件下,该酶每摩尔蛋白质仅结合1摩尔金属离子和1摩尔异柠檬酸。游离锰离子、游离异柠檬酸和锰 - 异柠檬酸复合物结合的pH依赖性表明这些物质与异柠檬酸脱氢酶相互作用存在差异。这些结果可以用锰离子在异柠檬酸脱氢酶催化反应中的两种功能来描述,每种功能都需要一个不同的金属离子结合位点:在脱氢步骤中,Mn2+促进底物异柠檬酸的结合,在脱羧步骤中,它可能稳定生成的α - 酮戊二酸烯醇盐。

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