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Accelerated computation of free energy profile at: Ab initio quantum mechanical/molecular mechanical accuracy via a semi-empirical reference potential. II. Recalibrating semi-empirical parameters with force matching

  • Xiaoliang Pan
  • , Pengfei Li
  • , Junming Ho
  • , Jingzhi Pu*
  • , Ye Mei
  • , Yihan Shao
  • *此作品的通讯作者
  • University of Oklahoma
  • East China Normal University
  • University of New South Wales
  • Indiana University-Purdue University Indianapolis

科研成果: 期刊稿件文章同行评审

摘要

An efficient and accurate reference potential simulation protocol is proposed for producing ab initio quantum mechanical/molecular mechanical (AI-QM/MM) quality free energy profiles for chemical reactions in a solvent or macromolecular environment. This protocol involves three stages: (a) using force matching to recalibrate a semi-empirical quantum mechanical (SE-QM) Hamiltonian for the specific reaction under study; (b) employing the recalibrated SE-QM Hamiltonian (in combination with molecular mechanical force fields) as the reference potential to drive umbrella samplings along the reaction pathway; and (c) computing AI-QM/MM energy values for collected configurations from the sampling and performing weighted thermodynamic perturbation to acquire an AI-QM/MM corrected reaction free energy profile. For three model reactions (identity SN2 reaction, Menshutkin reaction, and glycine proton transfer reaction) in aqueous solution and one enzyme reaction (Claisen arrangement in chorismate mutase), our simulations using recalibrated PM3 SE-QM Hamiltonians well reproduced QM/MM free energy profiles at the B3LYP/6-31G∗ level of theory all within 1 kcal mol-1 with a 20 to 45 fold reduction in the computer time.

源语言英语
页(从-至)20595-20605
页数11
期刊Physical Chemistry Chemical Physics
21
37
DOI
出版状态已出版 - 2019

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