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生物氧膦烷的假旋转势垒:对核酶催化模拟的挑战。

Pseudorotation barriers of biological oxyphosphoranes: a challenge for simulations of ribozyme catalysis.

作者信息

López Carlos Silva, Faza Olalla Nieto, de Lera Angel R, York Darrin M

机构信息

Departamento de Ciencia y Tecnología de Polímeros, Kimika Fakultatea, P.K. 1072, 20080 Donostia, Euskadi, Spain.

出版信息

Chemistry. 2005 Mar 18;11(7):2081-93. doi: 10.1002/chem.200400790.

DOI:10.1002/chem.200400790
PMID:15714539
Abstract

Pseudorotation reactions of biologically relevant oxyphosphoranes were studied by using density functional and continuum solvation methods. A series of 16 pseudorotation reactions involving acyclic and cyclic oxyphosphoranes in neutral and monoanionic (singly deprotonated) forms were studied, in addition to pseudorotation of PF5. The effect of solvent was treated by using three different solvation models for comparison. The barriers to pseudorotation ranged from 1.5 to 8.1 kcal mol(-1) and were influenced systematically by charge state, apicophilicity of ligands, intramolecular hydrogen bonding, cyclic structure and solvation. Barriers to pseudorotation for monoanionic phosphoranes occur with the anionic oxo ligand as the pivotal atom, and are generally lower than for neutral phosphoranes. The OCH3 groups were observed to be more apicophilic than OH groups, and hence pseudorotations that involve axial OCH3/equatorial OH exchange had higher reaction and activation free energy values. Solvent generally lowered barriers relative to the gas-phase reactions. These results, together with isotope 18O exchange experiments, support the assertion that dianionic phosphoranes are not sufficiently long-lived to undergo pseudorotation. Comparison of the density functional results with those from several semiempirical quantum models highlight a challenge for new-generation hybrid quantum mechanical/molecular mechanical potentials for non-enzymatic and enzymatic phosphoryl transfer reactions: the reliable modeling of pseudorotation processes.

摘要

采用密度泛函和连续介质溶剂化方法研究了与生物相关的氧磷烷的假旋转反应。除了PF5的假旋转外,还研究了一系列16个涉及中性和单阴离子(单去质子化)形式的无环和环状氧磷烷的假旋转反应。为了进行比较,使用三种不同的溶剂化模型处理溶剂的影响。假旋转的势垒范围为1.5至8.1 kcal mol⁻¹,并受电荷状态、配体的亲核性、分子内氢键、环状结构和溶剂化的系统影响。单阴离子磷烷的假旋转势垒以阴离子氧代配体作为关键原子出现,并且通常低于中性磷烷的势垒。观察到OCH3基团比OH基团更具亲核性,因此涉及轴向OCH3/赤道OH交换的假旋转具有更高的反应和活化自由能值。相对于气相反应,溶剂通常会降低势垒。这些结果与同位素¹⁸O交换实验一起,支持了双阴离子磷烷寿命不足以进行假旋转的断言。密度泛函结果与几种半经验量子模型结果的比较突出了非酶和酶促磷酰基转移反应的新一代混合量子力学/分子力学势面临的一个挑战:假旋转过程的可靠建模。

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