Hayakawa Daichi, Watanabe Yurie, Gouda Hiroaki
Division of Biophysical Chemistry, Department of Pharmaceutical Sciences, Graduate School of Pharmacy, Showa University, 1-5-8 Hatanodai, Shinagawa-ku, Tokyo 142-8555, Japan.
J Chem Inf Model. 2024 Aug 12;64(15):6003-6013. doi: 10.1021/acs.jcim.4c00896. Epub 2024 Jul 16.
Molecular interaction fields (MIFs) are three-dimensional interaction maps that describe the intermolecular interactions expected to be formed around target molecules. In this paper, a method for the fast computation of MIFs using the approximation functions of quantum mechanics-level MIFs of small model molecules is proposed. MIF functions of -methylacetamide with chlorobenzene, bromobenzene, and iodobenzene probes were precisely approximated and used to calculate the MIFs on protein surfaces. This method appropriately reproduced halogen-bond-formable areas around the ligand-binding sites of proteins, where halogen bond formation was suggested in a previous study.
分子相互作用场(MIFs)是三维相互作用图谱,描述了预期在靶分子周围形成的分子间相互作用。本文提出了一种利用小分子模型的量子力学水平MIFs的近似函数快速计算MIFs的方法。精确近似了以氯苯、溴苯和碘苯为探针的N-甲基乙酰胺的MIF函数,并用于计算蛋白质表面的MIFs。该方法恰当地再现了蛋白质配体结合位点周围可形成卤键的区域,在先前的一项研究中已表明该区域会形成卤键。