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单胺氧化酶A中动力学同位素效应的pH依赖性表明酶-底物复合物中中性胺的稳定性。

The pH dependence of kinetic isotope effects in monoamine oxidase A indicates stabilization of the neutral amine in the enzyme-substrate complex.

作者信息

Dunn Rachel V, Marshall Ker R, Munro Andrew W, Scrutton Nigel S

机构信息

Faculty of Life Sciences, Manchester Interdisciplinary Biocentre, University of Manchester, UK.

出版信息

FEBS J. 2008 Aug;275(15):3850-8. doi: 10.1111/j.1742-4658.2008.06532.x. Epub 2008 Jun 28.

Abstract

A common feature of all the proposed mechanisms for monoamine oxidase is the initiation of catalysis with the deprotonated form of the amine substrate in the enzyme-substrate complex. However, recent steady-state kinetic studies on the pH dependence of monoamine oxidase led to the suggestion that it is the protonated form of the amine substrate that binds to the enzyme. To investigate this further, the pH dependence of monoamine oxidase A was characterized by both steady-state and stopped-flow techniques with protiated and deuterated substrates. For all substrates used, there is a macroscopic ionization in the enzyme-substrate complex attributed to a deprotonation event required for optimal catalysis with a pK(a) of 7.4-8.4. In stopped-flow assays, the pH dependence of the kinetic isotope effect decreases from approximately 13 to 8 with increasing pH, leading to assignment of this catalytically important deprotonation to that of the bound amine substrate. The acid limb of the bell-shaped pH profile for the rate of flavin reduction over the substrate binding constant (k(red)/K(s), reporting on ionizations in the free enzyme and/or free substrate) is due to deprotonation of the free substrate, and the alkaline limb is due to unfavourable deprotonation of an unknown group on the enzyme at high pH. The pK(a) of the free amine is above 9.3 for all substrates, and is greatly perturbed (DeltapK(a) approximately 2) on binding to the enzyme active site. This perturbation of the substrate amine pK(a) on binding to the enzyme has been observed with other amine oxidases, and likely identifies a common mechanism for increasing the effective concentration of the neutral form of the substrate in the enzyme-substrate complex, thus enabling efficient functioning of these enzymes at physiologically relevant pH.

摘要

所有提出的单胺氧化酶作用机制的一个共同特征是,酶 - 底物复合物中胺底物的去质子化形式引发催化作用。然而,最近关于单胺氧化酶pH依赖性的稳态动力学研究表明,与酶结合的是胺底物的质子化形式。为了进一步研究这一点,采用稳态和停流技术,以质子化和氘代底物对单胺氧化酶A的pH依赖性进行了表征。对于所有使用的底物,酶 - 底物复合物中存在宏观电离,这归因于最佳催化所需的去质子化事件,其pK(a)为7.4 - 8.4。在停流测定中,随着pH值升高,动力学同位素效应的pH依赖性从约13降至8,这导致将这种对催化重要的去质子化归因于结合的胺底物的去质子化。黄素还原速率相对于底物结合常数(k(red)/K(s),反映游离酶和/或游离底物中的电离情况)的钟形pH曲线的酸性部分是由于游离底物的去质子化,而碱性部分是由于在高pH下酶上一个未知基团的不利去质子化。所有底物的游离胺的pK(a)均高于9.3,并且在与酶活性位点结合时受到极大扰动(ΔpK(a)约为2)。在其他胺氧化酶中也观察到了底物胺pK(a)在与酶结合时的这种扰动,这可能确定了一种增加酶 - 底物复合物中底物中性形式有效浓度的共同机制,从而使这些酶在生理相关pH下能够有效发挥作用。

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