Li Heng, Li Zhijin, Lin Chen, Jiang Juli, Wang Leyong
State Key Laboratory of Analytical Chemistry for Life Science, Jiangsu Key Laboratory of Advanced Organic Materials, School of Chemistry and Chemical Engineering, Nanjing University, 210023, Nanjing, China.
Nat Commun. 2024 Jun 22;15(1):5315. doi: 10.1038/s41467-024-49540-2.
The importance of molecular docking in drug discovery lies in the precise recognition between potential drug compounds and their target receptors, which is generally based on the computational method. However, it will become quite interesting if the rigid cavity structure of supramolecular macrocycles can precisely recognize a series of guests with specific fragments by mimicking molecular docking through co-crystallization experiments. Herein, we report a phenylphosphine oxide-bridged aromatic supramolecular macrocycle, F[3]A1-[P(O)Ph], which precisely recognizes benzonitrile derivatives through non-covalent interactions to form key-lock complexes by co-crystallization method. A total of 15 various benzonitrile derivatives as guest molecules are specifically bound by F[3]A1-[P(O)Ph] in co-crystal structures, respectively. Notably, among them, crisaborole (anti-dermatitis) and alectinib (anti-cancer) with the benzonitrile fragment, which are two commercial drug molecules approved by the U.S. Food and Drug Administration (FDA), could also form a key-lock complex with F[3]A1-[P(O)Ph] in the crystal state, respectively.
分子对接在药物发现中的重要性在于潜在药物化合物与其靶标受体之间的精确识别,这通常基于计算方法。然而,如果超分子大环的刚性腔结构能够通过共结晶实验模拟分子对接,精确识别一系列带有特定片段的客体,那将变得非常有趣。在此,我们报道了一种氧化苯膦桥连的芳香超分子大环F[3]A1-[P(O)Ph],它通过非共价相互作用精确识别苯腈衍生物,并通过共结晶方法形成锁钥配合物。在共晶结构中,共有15种不同的苯腈衍生物作为客体分子分别与F[3]A1-[P(O)Ph]特异性结合。值得注意的是,其中两种经美国食品药品监督管理局(FDA)批准的具有苯腈片段的商业药物分子克立硼罗(抗皮炎)和阿来替尼(抗癌),在晶体状态下也能分别与F[3]A1-[P(O)Ph]形成锁钥配合物。