Verdonk M L, Boks G J, Kooijman H, Kanters J A, Kroon J
Bijvoet Center for Biomolecular Research, Department of Crystal and Structural Chemistry, University of Utrecht, The Netherlands.
J Comput Aided Mol Des. 1993 Apr;7(2):173-82. doi: 10.1007/BF00126443.
Recently, new evidence was found for the involvement of charged nitrogen-aromatic interactions in ligand-receptor binding. In this study we report two favourable orientations of a phenyl ring with respect to a R-N+(CH3)3 group, based on crystal structure statistics from the Cambridge Structural Database. In the first orientation, the phenyl ring is situated in between the substituents at about 4.5 A from the nitrogen atom, and the ring is approximately oriented on the sphere around the nitrogen atom. In the second orientation, the phenyl ring is situated in the same direction as one of the N-C bonds at about 6.0 A from the nitrogen atom, and the ring is tilted with respect to the sphere around the nitrogen atom. The same two orientations were also found in the crystal structures of three ligand-receptor complexes, which implies that these orientations probably play a major role in molecular recognition mechanisms.
最近,发现了关于带电荷的氮-芳香族相互作用参与配体-受体结合的新证据。在本研究中,我们基于剑桥结构数据库的晶体结构统计数据,报告了苯环相对于R-N+(CH3)3基团的两种有利取向。在第一种取向中,苯环位于取代基之间,距离氮原子约4.5 Å,且环大致位于氮原子周围的球面上。在第二种取向中,苯环与其中一个N-C键位于同一方向,距离氮原子约6.0 Å,且环相对于氮原子周围的球面倾斜。在三种配体-受体复合物的晶体结构中也发现了相同的两种取向,这意味着这些取向可能在分子识别机制中起主要作用。