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共溶剂和压力对肽水解动力学的影响:基于活性的方法。

Combined co-solvent and pressure effect on kinetics of a peptide hydrolysis: an activity-based approach.

机构信息

Laboratory of Thermodynamics, TU Dortmund University, Emil-Figge-Str. 70, 44227 Dortmund, Germany.

Physical Chemistry I, TU Dortmund University, Otto-Hahn-Str. 4a, 44227 Dortmund, Germany.

出版信息

Phys Chem Chem Phys. 2019 Oct 28;21(40):22224-22229. doi: 10.1039/c9cp03868j. Epub 2019 Oct 2.

Abstract

The application of co-solvents and high pressure has been reported to be an efficient means to tune the kinetics of enzyme-catalyzed reactions. Co-solvents and pressure can lead to increased reaction rates without sacrificing enzyme stability, while temperature and pH operation windows are generally very narrow. Quantitative prediction of co-solvent and pressure effects on enzymatic reactions has not been successfully addressed in the literature. Herein, we are introducing a thermodynamic approach that is based on molecular interactions in the form of activity coefficients of substrate and of enzyme in the multi-component solution. This allowed us to quantitatively predict the combined effect of co-solvent and pressure on the kinetic constants, i.e. the Michaelis constant K and the catalytic constant k, of an α-CT-catalyzed peptide hydrolysis reaction. The reaction was studied in the presence of different types of co-solvents and at pressures up to 2 kbar, and quantitative predictions could be obtained for K, k, and finally even primary Michaelis-Menten plots using activity coefficients provided by the thermodynamic model PC-SAFT.

摘要

共溶剂和高压的应用已被报道为一种有效的方法来调整酶催化反应的动力学。共溶剂和压力可以在不牺牲酶稳定性的情况下提高反应速率,而温度和 pH 操作窗口通常非常狭窄。文献中尚未成功解决定量预测共溶剂和压力对酶反应影响的问题。在此,我们介绍了一种热力学方法,该方法基于底物和酶在多组分溶液中的分子相互作用形式的活度系数。这使我们能够定量预测共溶剂和压力对动力学常数(即 Michaelis 常数 K 和催化常数 k)的组合效应,即 α-CT 催化的肽水解反应。在不同类型的共溶剂存在下以及在高达 2 kbar 的压力下研究了该反应,并使用热力学模型 PC-SAFT 提供的活度系数对 K、k 甚至初步的米氏作图进行了定量预测。

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