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基于量子的蛋白质-配体相互作用建模:RutA与尿嘧啶和分子氧的复合物

Quantum-based Modeling of Protein-ligand Interaction: The Complex of RutA with Uracil and Molecular Oxygen.

作者信息

Polyakov Igor V, Nemukhin Alexander V, Domratcheva Tatiana M, Kulakova Anna M, Grigorenko Bella L

机构信息

Department of Chemistry, Lomonosov Moscow State University, Moscow, 119991, Russia.

Emanuel Institute of Biochemical Physics, Russian Academy of Sciences, Moscow, 119334, Russia.

出版信息

Mol Inform. 2023 Feb;42(2):e2200175. doi: 10.1002/minf.202200175. Epub 2022 Nov 4.

Abstract

Modern quantum-based methods are employed to model interaction of the flavin-dependent enzyme RutA with the uracil and oxygen molecules. This complex presents the structure of reactants for the chain of chemical reactions of monooxygenation in the enzyme active site, which is important in drug metabolism. In this case, application of quantum-based approaches is an essential issue, unlike conventional modeling of protein-ligand interaction with force fields using molecular mechanics and classical molecular dynamics methods. We focus on two difficult problems to characterize the structure of reactants in the RutA-FMN-O -uracil complex, where FMN stands for the flavin mononucleotide species. First, location of a small O molecule in the triplet spin state in the protein cavities is required. Second, positions of both ligands, O and uracil, must be specified in the active site with a comparable accuracy. We show that the methods of molecular dynamics with the interaction potentials of quantum mechanics/molecular mechanics theory (QM/MM MD) allow us to characterize this complex and, in addition, to surmise possible reaction mechanism of uracil oxygenation by RutA.

摘要

现代基于量子的方法被用于模拟黄素依赖性酶RutA与尿嘧啶和氧分子的相互作用。这种复合物呈现了酶活性位点单加氧化学反应链中反应物的结构,这在药物代谢中很重要。在这种情况下,与使用分子力学和经典分子动力学方法的力场对蛋白质-配体相互作用进行传统建模不同,基于量子的方法的应用是一个关键问题。我们关注两个难题来表征RutA-FMN-O-尿嘧啶复合物中反应物的结构,其中FMN代表黄素单核苷酸物种。首先,需要确定处于三重态自旋状态的小O分子在蛋白质腔中的位置。其次,必须以相当的精度在活性位点指定两个配体O和尿嘧啶的位置。我们表明,具有量子力学/分子力学理论(QM/MM MD)相互作用势的分子动力学方法使我们能够表征这种复合物,此外,还能推测RutA对尿嘧啶进行氧化的可能反应机制。

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