Gregersen Brent A, Khandogin Jana, Thiel Walter, York Darrin M
Department of Chemistry, University of Minnesota, Minneapolis, Minnesota 55455, USA.
J Phys Chem B. 2005 May 19;109(19):9810-7. doi: 10.1021/jp044061l.
Density-functional and semiempirical quantum methods and continuum dielectric and explicit solvation models are applied to study the role of solvation on the stabilization of native and thio-substituted transphosphorylation reactions. Extensive comparison is made between results obtained from the different methods. For the semiempirical methods, explicit solvation was treated using a hybrid quantum mechanical/molecular mechanical (QM/MM) approach and the implicit solvation was treated using a recently developed smooth solvation model implemented into a d-orbital semiempirical framework (MNDO/d-SCOSMO) within CHARMM. The different quantum and solvation methods were applied to the transesterification of a 3'-ribose,5'-methyl phosphodiester that serves as a nonenzymatic model for the self-cleavage reaction catalyzed by the hammerhead and hairpin ribozymes. Thio effects were studied for a double sulfur substitution at the nonbridging phosphoryl oxygen positions. The reaction profiles of both the native and double sulfur-substituted reactions from the MNDO/d-SCOSMO calculations were similar to the QM/MM results and consistent with the experimentally observed trends. These results underscore the need for a d-orbital semiempirical representation for phosphorus and sulfur for the study of experimentally observed thio effects in enzymatic and nonenzymatic phosphoryl transfer reactions. One of the major advantages of the present approach is that it can be applied to model chemical reactions at a significantly lower computational cost than either the density-functional calculations with implicit solvation or the semiempirical QM/MM simulations with explicit solvent.
密度泛函和半经验量子方法以及连续介质介电和显式溶剂化模型被用于研究溶剂化对天然和硫代取代的转磷酸化反应稳定性的作用。对不同方法得到的结果进行了广泛比较。对于半经验方法,显式溶剂化采用混合量子力学/分子力学(QM/MM)方法处理,隐式溶剂化采用最近开发的、在CHARMM中实现的、纳入d轨道半经验框架(MNDO/d-SCOSMO)的平滑溶剂化模型处理。不同的量子和溶剂化方法被应用于3'-核糖-5'-甲基磷酸二酯的酯交换反应,该反应作为锤头状和发夹状核酶催化的自我切割反应的非酶模型。研究了在非桥连磷酰氧位置进行双硫取代的硫效应。MNDO/d-SCOSMO计算得到的天然和双硫取代反应的反应剖面图与QM/MM结果相似,且与实验观察到的趋势一致。这些结果强调了在研究酶促和非酶促磷酰转移反应中实验观察到的硫效应时,需要对磷和硫采用d轨道半经验表示。本方法的一个主要优点是,与采用隐式溶剂化的密度泛函计算或采用显式溶剂的半经验QM/MM模拟相比,它可以以显著更低的计算成本应用于化学反应建模。