Martino Luigi, Virno Ada, Pagano Bruno, Virgilio Antonella, Di Micco Simone, Galeone Aldo, Giancola Concetta, Bifulco Giuseppe, Mayol Luciano, Randazzo Antonio
Dipartimento di Chimica P. Corradini, Università degli Studi di Napoli Federico II, via Cintia, I-80126, Napoli, Italy.
J Am Chem Soc. 2007 Dec 26;129(51):16048-56. doi: 10.1021/ja075710k. Epub 2007 Dec 4.
The complex between distamycin A and the parallel DNA quadruplex [d(TGGGGT)]4 has been studied by 1H NMR spectroscopy and isothermal titration calorimetry (ITC). To unambiguously assert that distamycin A interacts with the grooves of the quadruplex [d(TGGGGT)]4, we have analyzed the NMR titration profile of a modified quadruplex, namely [d(TGGMeGGT)]4, and we have applied the recently developed differential frequency-saturation transfer difference (DF-STD) method, for assessing the ligand-DNA binding mode. The three-dimensional structure of the 4:1 distamycin A/[d(TGGGGT)]4 complex has been determined by an in-depth NMR study followed by dynamics and mechanics calculations. All results unequivocally indicate that distamycin molecules interact with [d(TGGGGT)]4 in a 4:1 binding mode, with two antiparallel distamycin dimers that bind simultaneously two opposite grooves of the quadruplex. The affinity between distamycin A and [d(TGGGGT)]4 enhances ( approximately 10-fold) when the ratio of distamycin A to the quadruplex is increased. In this paper we report the first three-dimensional structure of a groove-binder molecule complexed to a DNA quadruplex structure.
通过核磁共振氢谱(1H NMR)和等温滴定量热法(ITC)研究了放线菌素A与平行DNA四链体[d(TGGGGT)]4形成的复合物。为明确断言放线菌素A与四链体[d(TGGGGT)]4的沟槽相互作用,我们分析了一种修饰的四链体即[d(TGGMeGGT)]4的核磁共振滴定谱,并应用了最近开发的差分频率饱和转移差异(DF-STD)方法来评估配体与DNA的结合模式。通过深入的核磁共振研究以及动力学和力学计算,确定了4:1放线菌素A/[d(TGGGGT)]4复合物的三维结构。所有结果明确表明,放线菌素分子以4:1的结合模式与[d(TGGGGT)]4相互作用,两个反平行的放线菌素二聚体同时结合四链体的两个相对沟槽。当放线菌素A与四链体的比例增加时,放线菌素A与[d(TGGGGT)]4之间的亲和力增强(约10倍)。在本文中,我们报道了与DNA四链体结构复合的沟槽结合分子的首个三维结构。