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Structural effect of the anticancer agent 6-thioguanine on duplex DNA

机译:抗癌药6-硫鸟嘌呤对双链体DNA的结构作用

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The incorporation of 6-thioguanine (S6G) into DNA is an essential step in the cytotoxic activity of thiopurines. However, the structural effects of this substitution on duplex DNA have not been fully characterized. Here, we present the solution structures of DNA duplexes containing S6G opposite thymine (S6G·T) and opposite cytosine (S6G·C), solved by high-resolution NMR spectroscopy and restrained molecular dynamics. The data indicate that both duplexes adopt right-handed helical conformations with all Watson-Crick hydrogen bonding in place. The S6G·T structures exhibit a wobble-type base pairing at the lesion site, with thymine shifted toward the major groove and S6G displaced toward the minor groove. Aside from the lesion site, the helices, including the flanking base pairs, are not highly perturbed by the presence of the lesion. Surprisingly, thermal dependence experiments suggest greater stability in the S6G-T mismatch than the S6G-C base pair.
机译:将6-硫鸟嘌呤(S6G)掺入DNA是硫嘌呤细胞毒性活性中必不可少的步骤。但是,这种取代对双链DNA的结构影响尚未完全表征。在这里,我们介绍了包含S6G相对胸腺嘧啶(S6G·T)和相对胞嘧啶(S6G·C)的DNA双链体的溶液结构,通过高分辨率NMR光谱法和受限的分子动力学来解决。数据表明两个双链体均采用右旋螺旋构象,并且所有Watson-Crick氢键均在适当位置。 S6G·T结构在病变部位表现出摆动型碱基配对,胸腺嘧啶向主沟移动,S6G向副沟移动。除病变部位外,包括侧翼碱基对在内的螺旋都不会因病变的存在而受到很大的干扰。出乎意料的是,热依赖性实验表明,S6G-T错配比S6G-C碱基对具有更高的稳定性。

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