分子间力
分子
小分子
药物发现
晶体工程
晶体结构
化学物理
Crystal(编程语言)
化学
结晶学
材料科学
纳米技术
计算机科学
超分子化学
有机化学
生物化学
程序设计语言
作者
Peter R. Spackman,Li‐Juan Yu,Craig J. Morton,Michael W. Parker,Charles S. Bond,Mark A. Spackman,Dylan Jayatilaka,Sajesh P. Thomas
标识
DOI:10.1002/anie.201906602
摘要
Most structure-based drug discovery methods utilize crystal structures of receptor proteins. Crystal engineering, on the other hand, utilizes the wealth of chemical information inherent in small-molecule crystal structures in the Cambridge Structural Database (CSD). We show that the interaction surfaces and shapes of molecules in experimentally determined small-molecule crystal structures can serve as effective tools in drug discovery. Our description of the shape and interaction propensities of molecules in their crystal structures can be used to screen them for specific binding compatibility with protein targets, as demonstrated through the high-throughput profiling of around 138 000 small-molecule structures in the CSD and a series of drug-protein crystal structures. Electron-density-based intermolecular boundary surfaces in small-molecule crystal structures and in target-protein pockets are utilized to identify potential ligand molecules from the CSD based on 3D shape and intermolecular interaction matching.
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