Müller Klaus, Faeh Christoph, Diederich François
Pharmaceuticals Division, Discovery Chemistry, F. Hoffmann-La Roche, CH-4070 Basel, Switzerland.
Science. 2007 Sep 28;317(5846):1881-6. doi: 10.1126/science.1131943.
Fluorine substituents have become a widespread and important drug component, their introduction facilitated by the development of safe and selective fluorinating agents. Organofluorine affects nearly all physical and adsorption, distribution, metabolism, and excretion properties of a lead compound. Its inductive effects are relatively well understood, enhancing bioavailability, for example, by reducing the basicity of neighboring amines. In contrast, exploration of the specific influence of carbon-fluorine single bonds on docking interactions, whether through direct contact with the protein or through stereoelectronic effects on molecular conformation of the drug, has only recently begun. Here, we review experimental progress in this vein and add complementary analysis based on comprehensive searches in the Cambridge Structural Database and the Protein Data Bank.
氟取代基已成为一种广泛且重要的药物成分,安全且具选择性的氟化剂的发展推动了其引入。有机氟几乎会影响先导化合物的所有物理以及吸收、分布、代谢和排泄特性。其诱导效应相对较为人所熟知,例如通过降低相邻胺的碱性来提高生物利用度。相比之下,关于碳氟单键对对接相互作用的具体影响的探索,无论是通过与蛋白质的直接接触还是通过对药物分子构象的立体电子效应,直到最近才开始。在此,我们回顾这方面的实验进展,并基于对剑桥结构数据库和蛋白质数据库的全面搜索进行补充分析。