碎片分子轨道
片段(逻辑)
蛋白质数据库
电子结构
量子化学
基础(线性代数)
功能(生物学)
财产(哲学)
化学
蛋白质结构
计算化学
生物系统
统计物理学
计算机科学
物理
分子轨道
分子
算法
数学
量子力学
生物
几何学
遗传学
哲学
生物化学
认识论
作者
Daisuke Takaya,Shinichi Ohno,T Miyagishi,Shinya Tanaka,Koji Okuwaki,Chiduru Watanabe,Koichiro Kato,Yu‐Shi Tian,Kaori Fukuzawa
标识
DOI:10.1038/s41597-024-03999-2
摘要
The function of a biomacromolecule is not only determined by its three-dimensional structure but also by its electronic state. Quantum chemical calculations are promising non-empirical methods available for determining the electronic state of a given structure. In this study, we used the fragment molecular orbital (FMO) method, which applies to biopolymers such as proteins, to provide physicochemical property values on representative structures in the SCOP2 database of protein families, a subset of the Protein Data Bank. Our dataset was constructed by over 5,000 protein structures, including over 200 million inter-fragment interaction energies (IFIEs) and their energy components obtained by pair interaction energy decomposition analysis (PIEDA) using FMO-MP2/6-31 G*. Moreover, three basis sets, 6-31 G*, 6-31 G**, and cc-pVDZ, were used for the FMO calculations of each structure, making it possible to compare the energies obtained with different basis functions for the same fragment pair. The total data size is approximately 6.7 GB. Our dataset will be useful for functional analyses and machine learning based on the physicochemical property values of proteins.
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