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用协同作用的自由能度量研究铜绿假单胞菌菌蓝蛋白中质子化、还原和构象变化的偶联。

Coupling of protonation, reduction, and conformational change in azurin from Pseudomonas aeruginosa investigated with free energy measures of cooperativity.

机构信息

Structural Biology/Bioinformatics, University of Bayreuth, Universitätsstrasse 30, BGI, 95447 Bayreuth, Germany.

出版信息

J Phys Chem B. 2011 Sep 1;115(34):10346-59. doi: 10.1021/jp204644h. Epub 2011 Aug 5.

Abstract

We used free energy calculations within a continuum electrostatics model to analyze the coupling of protonation, reduction, and conformational change in azurin from Pseudomonas aeruginosa (PaAz). PaAz was characterized extensively with a variety of experimental methods. Experimentally determined pK(a) values and pH-dependent reduction potentials are used to validate our computational model. It is well-known from experiment that the reduction of the copper center is coupled to the protonation of at least two titratable residues (His-35 and His-83) and to the flip of the peptide bond between Pro-36 and Gly-37. Free energy measures of cooperativity are used for a detailed analysis of the coupling between protonation, reduction, and conformational change in PaAz. The reduction of the copper center, the protonation of His-35, and peptide flip are shown to be cooperative. Our results show that cooperativity free energies are useful in detecting and quantifying thermodynamic coupling between events in biomolecular systems. The protonation of His-35 and the peptide flip are found to be so tightly coupled that these events happen effectively concerted. This concerted change results in a marked alteration of the electrostatic surface potential of azurin that might affect the interaction of azurin with its binding partners.

摘要

我们使用连续静电模型中的自由能计算来分析铜绿假单胞菌(PaAz)天青蛋白中质子化、还原和构象变化的耦合。PaAz 已经通过多种实验方法进行了广泛的表征。实验确定的 pK(a) 值和 pH 依赖性还原电势用于验证我们的计算模型。实验表明,铜中心的还原与至少两个可滴定残基(His-35 和 His-83)的质子化以及 Pro-36 和 Gly-37 之间肽键的翻转耦合。协同作用的自由能度量用于详细分析 PaAz 中质子化、还原和构象变化之间的耦合。铜中心的还原、His-35 的质子化和肽翻转被证明是协同的。我们的结果表明,协同自由能在检测和量化生物分子系统中事件之间的热力学偶联方面非常有用。His-35 的质子化和肽翻转耦合非常紧密,这些事件实际上是协同发生的。这种协同变化导致天青蛋白的静电表面电势发生明显改变,可能会影响天青蛋白与其结合伴侣的相互作用。

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