Lu Yunxiang, Shi Ting, Wang Yong, Yang Huaiyu, Yan Xiuhua, Luo Xiaoming, Jiang Hualiang, Zhu Weiliang
Drug Discovery and Design Center, Shanghai Institute of Materia Medica, Chinese Academy of Sciences, Shanghai 201203, China.
J Med Chem. 2009 May 14;52(9):2854-62. doi: 10.1021/jm9000133.
Although recognized in small molecules for quite some time, the implications of halogen bonding in biomolecular systems are only now coming to light. In this study, several systems of proteins in complex with halogenated ligands have been investigated by using a two-layer QM/MM ONIOM methodology. In all cases, the halogen-oxygen distances are shown to be much less than the van der Waals radius sums. Single-point energy calculations unveil that the interaction becomes comparable in magnitude to classical hydrogen bonding. Furthermore, we found that the strength of the interactions attenuates in the order H approximately I > Br > Cl. These results agree well with the characteristics discovered within small model halogen-bonded systems. A detailed analysis of the interactions reveals that halogen bonding interactions are responsible for the different conformation of the molecules in the active site. This study would help to establish such interaction as a potential and effective tool in the context of drug design.
尽管卤键在小分子中已被认识了相当长一段时间,但它在生物分子系统中的影响直到现在才开始显现出来。在这项研究中,通过使用双层QM/MM ONIOM方法,对几种与卤化配体复合的蛋白质系统进行了研究。在所有情况下,卤-氧距离都显示远小于范德华半径之和。单点能量计算表明,这种相互作用在强度上变得与经典氢键相当。此外,我们发现相互作用的强度按H≈I>Br>Cl的顺序减弱。这些结果与在小型卤键模型系统中发现的特征非常吻合。对相互作用的详细分析表明,卤键相互作用导致了活性位点中分子的不同构象。这项研究将有助于确立这种相互作用作为药物设计背景下一种潜在且有效的工具。