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一种用于蛋白质光反应的极化量子力学/分子力学模型,结合了态平均 CASSCF 和 AMOEBA 力场。

A Polarizable QM/MM Model That Combines the State-Averaged CASSCF and AMOEBA Force Field for Photoreactions in Proteins.

机构信息

Department of Chemistry, University of California, Davis, 1 Shields Avenue, Davis, California 95616, United States.

出版信息

J Chem Theory Comput. 2024 Aug 13;20(15):6632-6651. doi: 10.1021/acs.jctc.4c00623. Epub 2024 Aug 1.

DOI:10.1021/acs.jctc.4c00623
PMID:39088696
Abstract

This study presents the polarizable quantum mechanics/molecular mechanics (QM/MM) embedding of the state-averaged complete active space self-consistent field (SA-CASSCF) in the atomic multipole optimized energetics for biomolecular applications (AMOEBA) force field for the purpose of studying photoreactions in protein environments. We describe two extensions of our previous work that combine SA-CASSCF with AMOEBA water models, allowing it to be generalized to AMOEBA models for proteins and other macromolecules. First, we discuss how our QM/MM model accounts for the discrepancy between the direct and polarization electric fields that arises in the AMOEBA description of intramolecular polarization. A second improvement is the incorporation of link atom schemes to treat instances in which the QM/MM boundary goes through covalent bonds. A single-link atom scheme and double-link atom scheme are considered in this work, and we will discuss how electrostatic interaction, van der Waals interaction, and various kinds of valence terms are treated across the boundary. To test the accuracy of the link atom scheme, we will compare QM/MM with full QM calculations and study how the errors in ground state properties, excited state properties, and excitation energies change when tuning the parameters in the link atom scheme. We will also test the new SA-CASSCF/AMOEBA method on an elementary reaction step in NanoLuc, an artificial bioluminescence luciferase. We will show how the reaction mechanism is different when calculated in the gas phase, in polarizable continuum medium (PCM), versus in protein AMOEBA models.

摘要

本研究提出了在原子多极优化能量学中对状态平均完全活性空间自洽场(SA-CASSCF)进行极化量子力学/分子力学(QM/MM)嵌入,用于研究蛋白质环境中的光反应。我们描述了我们之前工作的两个扩展,将 SA-CASSCF 与 AMOEBA 水模型结合,使其能够推广到蛋白质和其他大分子的 AMOEBA 模型。首先,我们讨论了我们的 QM/MM 模型如何解释 AMOEBA 描述分子内极化时出现的直接电场和极化电场之间的差异。第二个改进是引入链接原子方案来处理 QM/MM 边界穿过共价键的情况。在这项工作中考虑了单链接原子方案和双链接原子方案,并将讨论如何在边界处处理静电相互作用、范德华相互作用和各种价态项。为了测试链接原子方案的准确性,我们将比较 QM/MM 与全 QM 计算,并研究在调整链接原子方案中的参数时,基态性质、激发态性质和激发能的误差如何变化。我们还将在 NanoLuc(一种人工生物发光荧光素酶)中的一个基本反应步骤上测试新的 SA-CASSCF/AMOEBA 方法。我们将展示在气相、极化连续介质(PCM)和蛋白质 AMOEBA 模型中计算时反应机制的差异。

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