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首页> 外文期刊>Biochemistry >On the interpretation of the observed linear free energy relationship in phosphate hydrolysis: A thorough computational study of phosphate diester hydrolysis in solution
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On the interpretation of the observed linear free energy relationship in phosphate hydrolysis: A thorough computational study of phosphate diester hydrolysis in solution

机译:关于磷酸盐水解中观察到的线性自由能关系的解释:溶液中磷酸盐二酯水解的彻底计算研究

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摘要

The hydrolysis of phosphate esters is crucially important to biological systems, being involved in, among other things, signaling, energy transduction, biosynthesis, and the regulation of protein function. Despite this, there are many questions that remain unanswered in this important field, particularly with regard to the preferred mechanism of hydrolysis of phosphate esters, which can proceed through any of multiple pathways that are either associative or dissociative in nature. Previous comparisons of calculated and observed linear free energy relationships (LFERs) for phosphate monoester dianions with different leaving groups showed that the TS character gradually changes from associative to dissociative with the increasing acidity of the leaving group, while reproducing the experimental LFER. Here, we have generated ab initio potential energy surfaces for the hydrolysis of phosphate diesters in solution, with a variety of leaving groups. Once again, the reaction changes from a compact concerted pathway to one that is more expansive in character when the acidity of the leaving group increases. When such systems are examined in solution, it is essential to take into consideration the contribution of solute to the overall activation entropy, which remains a major computational challenge. The popular method of calculating the entropy using a quasi-harmonic approximation appears to markedly overestimate the configurational entropy for systems with multiple occupied energy wells. We introduce an improved restraint release approach for evaluating configurational entropies and apply this approach to our systems. We demonstrate that when this factor is taken into account, it is possible to reproduce the experimental LFER for this system with reasonable accuracy.
机译:磷酸酯的水解对于生物系统至关重要,尤其涉及信号传导,能量转换,生物合成和蛋白质功能的调节。尽管如此,在这个重要领域中仍有许多问题尚未解决,特别是关于磷酸酯水解的优选机理,磷酸酯的水解可以通过本质上缔合或解离的多种途径中的任何一种进行。先前对具有不同离去基团的磷酸单酯二价阴离子的计算和观察到的线性自由能关系(LFER)的比较表明,随着离去基团酸度的增加,TS特性逐渐从缔合变为解离,同时又重现了实验性LFER。在这里,我们生成了从头开始的势能表面,用于溶液中具有多种离去基团的磷酸二酯的水解。当离去基团的酸度增加时,反应再次从紧凑的一致途径转变为特性更广泛的途径。在溶液中检查此类系统时,必须考虑溶质对总体活化熵的贡献,这仍然是一个主要的计算挑战。使用准谐波近似来计算熵的流行方法似乎明显高估了具有多个占据能量井的系统的结构熵。我们引入了一种改进的约束释放方法来评估构型熵,并将该方法应用于我们的系统。我们证明,当考虑到此因素时,可以以合理的精度重现该系统的实验LFER。

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