Train Brian C, Bilgesü Suzan A, Despeaux Emily C, Vongsutilers Vorasit, Gannett Peter M
West Virginia University , Basic Pharmaceutical Sciences, P.O. Box 9530, Morgantown, West Virginia 26506, United States.
Chem Res Toxicol. 2014 Jul 21;27(7):1176-86. doi: 10.1021/tx5000798. Epub 2014 Jun 25.
Z-DNA is the only DNA conformation that has a left-handed helical twist. Although Z-DNA has been implicated in both carcinogenesis and mutagenesis, its specific biological role remains uncertain. We have demonstrated that the formation of C8-arylguanine DNA adducts, derived from arylhydrazines, shifts the B/Z-DNA equilibrium toward the Z-DNA conformation in d(CG)5 sequences. However, our previous work examined the effect of two adducts in the duplex, and it was unclear whether the two base modifications were working together to cause the equilibrium shift toward the Z-DNA conformation. Here we report the synthesis and characterization of a hairpin oligonucleotide sequence (d(CG)5T4(CG)5) containing only one C8-arylguanine modified base. The unmodified hairpin and the previously studied unmodified double-stranded oligonucleotide were conformationally similar, and each required ∼3 M NaCl to yield a B-/Z-DNA ratio of 1:1. The introduction of a single C8-arylguanine modification significantly reduced the NaCl concentration needed to produce a 1:1 B-/Z-DNA ratio in the hairpin. Further, the addition of MgCl2 and spermine to the C8-arylguanine-modified hairpin shifts the B/Z-DNA equilibrium such that the Z form predominated under physiological conditions. NMR and molecular modeling indicated the conformational effects produced by the C8-arylguanine modification occurred locally at the site of modification while CD data demonstrated that the C8-arylguanine-modified base destabilized the B form. Additionally, our data show that adopting the Z-DNA conformation is preferred over denaturation to the single-stranded form. Finally, the conformational effects of the C8-arylguanine modifications were not additive and the introduction of any such modifications drive Z-DNA formation under physiological conditions, which may provide a novel carcinogenesis mechanism where DNA adducts confer their carcinogenicity through a Z-DNA-mediated mechanism.
Z-DNA是唯一具有左手螺旋扭曲的DNA构象。尽管Z-DNA与致癌作用和诱变作用均有关联,但其具体生物学作用仍不明确。我们已经证明,源自芳基肼的C8-芳基鸟嘌呤DNA加合物的形成,会使d(CG)5序列中的B/Z-DNA平衡向Z-DNA构象偏移。然而,我们之前的研究考察了双链体中两种加合物的作用,尚不清楚这两种碱基修饰是否共同作用导致平衡向Z-DNA构象偏移。在此,我们报道了一种仅含有一个C8-芳基鸟嘌呤修饰碱基的发夹寡核苷酸序列(d(CG)5T4(CG)5)的合成与表征。未修饰的发夹与之前研究的未修饰双链寡核苷酸在构象上相似,且各自都需要约3 M的NaCl才能产生1:1的B-/Z-DNA比例。引入单个C8-芳基鸟嘌呤修饰显著降低了在发夹中产生1:1的B-/Z-DNA比例所需的NaCl浓度。此外,向C8-芳基鸟嘌呤修饰的发夹中添加MgCl2和精胺会使B/Z-DNA平衡发生偏移,从而在生理条件下Z型占主导。核磁共振(NMR)和分子建模表明,C8-芳基鸟嘌呤修饰产生的构象效应在修饰位点局部发生,而圆二色性(CD)数据表明C8-芳基鸟嘌呤修饰的碱基使B型不稳定。此外,我们的数据表明,相比于变性为单链形式,采用Z-DNA构象更受青睐。最后,C8-芳基鸟嘌呤修饰的构象效应并非累加性的,任何此类修饰的引入都会在生理条件下驱动Z-DNA的形成,这可能提供了一种新的致癌机制,即DNA加合物通过Z-DNA介导的机制赋予其致癌性。