Wu Yibing, Pradhan Padmanava, Havener Jody, Boysen Gunnar, Swenberg James A, Campbell Sharon L, Chaney Stephen G
Department of Biochemistry and Biophysics, School of Medicine, University of North Carolina, Chapel Hill, NC 27599-7260, USA.
J Mol Biol. 2004 Aug 27;341(5):1251-69. doi: 10.1016/j.jmb.2004.06.066.
We have determined, at high resolution, the NMR solution structure of an oxaliplatin-GG DNA dodecamer in the AGGC sequence context by 2D NMR studies. Homonuclear assignment strategies resulted in unambiguous assignment of 203 out of 249 protons, which corresponds to assignment of approximately 81% of the protons. Assignments of H5' and H5" protons were tentative due to resonance overlap. The structure of the oxaliplatin duplex was calculated using the program CNS with a simulated annealing protocol. A total of 510 experimental restraints were employed in the structure calculation. Of 20 calculated structures, the 15 with the lowest energy were accepted as a family. The RMSD of the 15 lowest energy structures was 0.68 A, indicating good structural convergence. The theoretical NOESY spectrum obtained by back-calculation from the final average structure showed excellent agreement with the experimental data, indicating that the final structure was in good agreement with the experimental NMR data. Significant conformational differences were observed between the oxaliplatin-GG 12-mer DNA we studied and all previous solution structures of cisplatin-GG DNA duplexes. For example, the oxaliplatin-GG adduct shows much less distortion at the AG base-pair step than the cisplatin-GG adducts. In addition, the oxaliplatin-GG structure also has a narrow minor groove and an overall axis bend of about 31 degrees, both of which are very different from the recent NMR structures for the cisplatin-GG adducts. These structural differences may explain some of the biological differences between oxaliplatin- and cisplatin-GG adducts.
通过二维核磁共振研究,我们在高分辨率下确定了在AGGC序列背景下奥沙利铂-GG DNA十二聚体的核磁共振溶液结构。同核归属策略明确归属了249个质子中的203个,这相当于约81%的质子被归属。由于共振重叠,H5'和H5"质子的归属是暂定的。使用CNS程序并采用模拟退火协议计算了奥沙利铂双链体的结构。在结构计算中总共采用了510个实验约束。在计算得到的20个结构中,能量最低的15个结构被接受为一个家族。这15个能量最低结构的均方根偏差为0.68 Å,表明结构收敛性良好。从最终平均结构反算得到的理论NOESY谱与实验数据显示出极好的一致性,表明最终结构与实验核磁共振数据高度吻合。我们研究的奥沙利铂-GG 12聚体DNA与之前所有顺铂-GG DNA双链体的溶液结构之间存在显著的构象差异。例如,奥沙利铂-GG加合物在AG碱基对处的扭曲比顺铂-GG加合物小得多。此外,奥沙利铂-GG结构还具有狭窄的小沟和约31度的整体轴弯曲,这两者都与最近报道的顺铂-GG加合物的核磁共振结构有很大不同。这些结构差异可能解释了奥沙利铂和顺铂-GG加合物之间的一些生物学差异。