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首页> 外文期刊>Biochemistry >Metal ion activator effects on intrinsic isotope effects for hydride transfer from decarboxylation in the reaction catalyzed by the NAD-malic enzyme from Ascaris suum.
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Metal ion activator effects on intrinsic isotope effects for hydride transfer from decarboxylation in the reaction catalyzed by the NAD-malic enzyme from Ascaris suum.

机译:金属离子活化剂对固有同位素效应的影响,该固有同位素效应是由A虫的NAD-苹果酸酶催化的脱羧反应中氢化物转移的氢化物。

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摘要

The mechanism of the oxidative decarboxylation reaction catalyzed by the NAD-malic enzyme from Ascaris suum has been examined with several different divalent metal ion activators and dinucleotide substrates. Primary deuterium and tritium isotope effects have been obtained and, in combination with the partitioning ratios of the oxalacetate intermediate to malate and pyruvate, have been used to calculate commitment factors, intrinsic deuterium isotope effects on the hydride transfer step, and intrinsic 13C isotope effects for the decarboxylation step. A survey of malate analogs has been undertaken to define the geometry of the active site and to identify functional groups on malate important for substrate binding. With NAD as dinucleotide substrate, a direct correlation between the size of the divalent metal ion activator and the intrinsic deuterium isotope effect is observed. An isotope effect significantly greater than the semiclassical limit is seen when Cd2+ is the metal ion activator, indicating a substantial tunneling contribution. The primary intrinsic 13C isotope effect on the decarboxylation step increases over the series Mg2+ < Mn2+ < Cd2+, which is in contrast to the equal isotope effects measured for these metal ions for the nonenzymatic decarboxylation of oxalacetate [Grissom, C. B., & Cleland, W. W. (1986) J. Am. Chem. Soc. 108, 5582]. With Mn2+ or Cd2+ as the divalent metal ion activator, the data support a stepwise mechanism for the enzymatic oxidative decarboxylation with NAD as the dinucleotide substrate, but a change to a concerted mechanism is indicated with more redox-positive dinucleotide substrates as suggested previously with Mg2+ as activator [Karsten, W. E., & Cook, P. F. (1994) Biochemistry 33, 2096].(ABSTRACT TRUNCATED AT 250 WORDS)
机译:已经用几种不同的二价金属离子活化剂和二核苷酸底物检查了来自A虫的NAD-苹果酸酶催化的氧化脱羧反应的机理。获得了主要的氘和同位素效应,并结合草酸乙酸酯中间体与苹果酸和丙酮酸的分配比,用于计算定性因子,氢化物转移步骤中的固有氘同位素效应和用于捕集氢的固有13C同位素效应。脱羧步骤。已经对苹果酸类似物进行了调查,以定义活性位点的几何形状并鉴定出苹果酸上对底物结合重要的官能团。使用NAD作为二核苷酸底物,可以观察到二价金属离子活化剂的尺寸与固有氘同位素效应之间的直接相关性。当Cd2 +是金属离子活化剂时,可观察到明显大于半经典限值的同位素效应,表明有很大的隧穿作用。在系列Mg2 +

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