首页> 美国卫生研究院文献>Biochemical Journal >Effect of Mg2+ and Mn2+ on isocitrate lyase a non-essentially metal-ion-activated enzyme. A graphical approach for the discrimination of the model for activation.
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Effect of Mg2+ and Mn2+ on isocitrate lyase a non-essentially metal-ion-activated enzyme. A graphical approach for the discrimination of the model for activation.

机译:Mg2 +和Mn2 +对异柠檬酸裂合酶(一种非必要的金属离子激活酶)的影响。区分激活模型的图形方法。

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摘要

We describe a simple method for the analysis of activation systems in which a metal ion modifier may combine with either the enzyme or the substrate (or both) and the metal ion-substrate complex is the true substrate of the enzyme reaction. The suggested approach is essentially a 'graphical' method that both provides unbiased criteria for the choice of the activation mechanism and yields good rough estimates of the kinetic parameters. The procedure, tested on a variety of simulated models, produces appropriate and reliable results. Applying this treatment to isocitrate lyase, we confirmed the data previously reported for Mg2+ [Giachetti, Pinzauti, Bonaccorsi & Vanni (1988) Eur. J. Biochem. 172, 85-92], and we found that Mn2+ functions with the same mechanism as does Mg2+, but with quite different kinetic constants. In particular, its ratio of the Vmax, values of the activated and the non-activated enzyme is less than 1, and thus Mn2+ is to be considered an inhibitor rather than an activator.
机译:我们描述了一种简单的活化系统分析方法,其中金属离子改性剂可与酶或底物(或两者)结合,而金属离子-底物复合物是酶反应的真正底物。建议的方法本质上是一种“图形”方法,既可以为选择激活机制提供公正的标准,又可以对动力学参数进行良好的粗略估算。该程序在各种模拟模型上进行了测试,可得出适当且可靠的结果。将这种处理方法应用于异柠檬酸裂合酶,我们证实了先前报道的Mg2 +数据[Giachetti,Pinzauti,Bonaccorsi和Vanni(1988)Eur。 J.生物化学。 172,85-92],我们发现Mn2 +的作用机理与Mg2 +相同,但动力学常数却大不相同。特别地,其Vmax,活化酶和未活化酶的值之比小于1,因此Mn2 +被认为是抑制剂而不是活化剂。

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