首页> 美国卫生研究院文献>Biochemical Journal >Effects of conformational selectivity and of overlapping kinetically influential ionizations on the characteristics of pH-dependent enzyme kinetics. Implications of free-enzyme pKa variability in reactions of papain for its catalytic mechanism.
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Effects of conformational selectivity and of overlapping kinetically influential ionizations on the characteristics of pH-dependent enzyme kinetics. Implications of free-enzyme pKa variability in reactions of papain for its catalytic mechanism.

机译:构象选择性和重叠的动力学影响电离对pH依赖性酶动力学特性的影响。木瓜蛋白酶反应中游离酶pKa变异性对其催化机制的影响。

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摘要

The effects of selection by a small molecule, when binding to a protein, of a particular conformation from an equilibrium stereopopulation on the characteristics of the pH-dependence of reaction with a reactivity probe or substrate were determined by analysis of an appropriate kinetic model. For reaction in one protonic state containing an equilibrium mixture of two conformational isomers, the pH-second-order rate constant (k) profile is of conventional sigmoidal form. The apparent pKa value is a composite of the pKa values of the two conformational states. The value of pKapp. for a given enzyme under given experimental conditions will always be the same (provided that the site-specificity assumed in the model is maintained) irrespective of whether only one conformation reacts or both react, with the same or with different rate constants. The experimentally determined pH-independent rate constant (kapp.) is an average of the reactivities of the two conformational states weighted in favour of the predominant form. The presence of an additional but unreactive conformational state also affects the value of kapp. The possibility that overlapping acid dissociations that affect the reactivity of the enzyme might provide pH-k profiles often indistinguishable in practice from simple sigmoidal dissociation curves and subject to variability in apparent pKa values was evaluated by a simulation study. If two reactive protonic states of the enzyme respond differently to changes in the structure of the substrate or site-specific reactivity probe, differences in apparent pKa values of up to approx. 1 unit can be exhibited without deviation from sigmoidal behaviour being reliably observed. Differences in apparent pKa values observed in some site-specific reactions of papain and their possible consequences for its catalytic mechanism are discussed.
机译:通过分析适当的动力学模型,确定了当小分子与蛋白质结合时,从平衡立体群中选择特定构象对与反应性探针或底物反应的pH依赖性的特征所产生的影响。对于包含两个构象异构体的平衡混合物的质子状态的反应,pH二级速率常数(k)曲线具有常规的S形形式。表观pKa值是两个构象态的pKa值的合成。 pKapp的值。对于给定酶,在给定的实验条件下,无论是恒定还是恒定的速率常数,无论是仅构象发生反应还是两者都发生反应,都将始终保持相同(前提是保持模型中假设的位点特异性)。实验确定的非pH依赖性速率常数(kapp。)是两种构型状态的反应性平均值,以有利于优势形式加权。附加但无反应的构象状态的存在也会影响kapp的值。通过模拟研究评估了影响酶反应性的重叠酸解离提供pH-k谱的可能性,在实践中通常无法将其与简单的S型解离曲线区分开,并且表观pKa值会发生变化。如果酶的两个反应性质子状态对底物或位点特异性反应探针的结构变化有不同的响应,则表观pKa值的差异最多可达约。可以可靠地观察到1个单元的展示,而不偏离S形行为。讨论了在木瓜蛋白酶某些位点特异性反应中观察到的表观pKa值的差异及其可能的催化机理。

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