化学
等温滴定量热法
卤键
卤素
片段(逻辑)
立体化学
结合位点
药物发现
分子
组合化学
结晶学
计算化学
生物化学
有机化学
计算机科学
程序设计语言
烷基
作者
Marcel Dammann,Jason Stahlecker,Markus O. Zimmermann,Theresa Klett,Kilian Rotzinger,Markus Krämer,M.P. Coles,Thilo Stehle,Frank M. Boeckler
标识
DOI:10.1021/acs.jmedchem.2c00951
摘要
We conceived the Halogen-Enriched Fragment Library (HEFLib) to investigate the potential of halogen bonds in the early stages of drug discovery. As the number of competitive interactions increases with ligand size, we reasoned that a binding mode relying on halogen bonding is more likely for fragments than highly decorated molecules. Thus, fragments could feature unexplored binding modes. We screened the HEFLib against the human kinase DYRK1a and verified micromolar binding fragments via isothermal titration calorimetry (ITC). The crystal structure of one fragment revealed a noncanonical binding mode, despite the fragment's classical hinge binding motif. In addition, the fragment occupies a secondary binding site. Both binding modes feature a halogen bond, which we evaluated by ab initio calculations. Structure–affinity relationship (SAR) from a set of analogues improves the affinity, provides a promising fragment-growth vector, and highlights the benefits and applicability of halogen bonds in early lead development.
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