Vlieghe D, Sponer J, Van Meervelt L
Department of Chemistry, Katholieke Universiteit Leuven, Heverlee, Belgium.
Biochemistry. 1999 Dec 14;38(50):16443-51. doi: 10.1021/bi9907882.
The single-crystal X-ray structure of the complex between the minor groove binder 4',6-diamidino-2-phenylindole (DAPI) and d(GGCCAATTGG) reveals a novel way of off-centered binding, with an unique hydrogen bond between the minor groove binder and a CG base pair. Application of crystal engineering and cryocooling techniques helped to extend the resolution to 1.9 A, resulting in an unambiguous determination of drug conformation and orientation. The structure was refined to completion using SHELXL-93, resulting in a residual factor R of 18. 0% for 3562 reflections with F(o) > 4sigma(F(o)) including 81 water molecules. As the bulky NH(2)-group on guanine is believed to prevent drug binding in the minor groove, the nature and stability of the CG-DAPI contact was further addressed in full detail using ab initio quantum chemical methods. The amino groups involved in the guanine-drug interaction are substantially nonplanar, resulting in an energy gain of about 5 kcal/mol. The combined structural and theoretical data suggest that the guanine NH(2)-group does not destabilize the drug binding to an extent that it prevents complexation.
小分子沟结合剂4',6-二脒基-2-苯基吲哚(DAPI)与d(GGCCAATTGG)形成的复合物的单晶X射线结构揭示了一种新的偏心结合方式,在小分子沟结合剂与CG碱基对之间存在独特的氢键。晶体工程和低温冷却技术的应用有助于将分辨率提高到1.9 Å,从而明确确定了药物的构象和取向。使用SHELXL-93将结构精修至完成,对于3562个F(o)>4σ(F(o))的反射(包括81个水分子),残余因子R为18.0%。由于鸟嘌呤上庞大的NH(2)-基团被认为会阻止药物在小沟中的结合,因此使用从头算量子化学方法进一步详细研究了CG-DAPI接触的性质和稳定性。参与鸟嘌呤-药物相互作用的氨基基本上是非平面的,导致能量增益约5千卡/摩尔。综合的结构和理论数据表明,鸟嘌呤NH(2)-基团不会使药物结合不稳定到阻止复合物形成的程度。