Polak Matjaz, Seley Katherine L, Plavec Janez
Slovenian NMR Center, National Institute of Chemistry, Hajdrihova 19, POB 660, SI-1001 Ljubljana, Slovenia.
J Am Chem Soc. 2004 Jul 7;126(26):8159-66. doi: 10.1021/ja0498078.
A detailed (1)H NMR conformational study complemented with ab initio computations was performed in solution on fleximer nucleosides 1, 3, and 5 in relation to their natural counterparts. The substitution of the purine nucleobase found in the natural nucleosides with a more flexible two-ring heterocyclic system strongly increased the population of anti conformation around the glycosidic bond. This was accompanied by a large shift toward a north-type sugar conformation, which was explained by the interplay of anomeric, gauche, and steric effects. The formal separation of the bicyclic purine base into its imidazole and pyrimidine moieties allows for formation of a hydrogen bond between the NH(2) and 2'-OH groups and facilitates favorable conjugation between the two heterocyclic rings. Our results show that the interplay of stereoelectronic effects, combined with the flexibility of the nucleobase and possible conjugation effects within the nucleobase, plays a crucial role in the search for shape-mimic nucleosides that will interact with flexible binding sites.
针对柔性异构体核苷1、3和5及其天然对应物,在溶液中进行了详细的¹H NMR构象研究,并辅以从头算计算。用更具柔性的双环杂环系统取代天然核苷中的嘌呤核碱基,极大地增加了糖苷键周围反式构象的比例。这伴随着向北型糖构象的大幅转变,这是由异头效应、邻位交叉效应和空间效应的相互作用所解释的。将双环嘌呤碱基正式分离为其咪唑和嘧啶部分,使得NH₂和2'-OH基团之间能够形成氢键,并促进两个杂环之间的有利共轭。我们的结果表明,立体电子效应的相互作用,结合核碱基的柔性以及核碱基内可能的共轭效应,在寻找与柔性结合位点相互作用的形状模拟核苷中起着关键作用。