Department of Chemistry, Shibaura Institute of Technology, 307 Fukasaku, Saitama, 337-8570, Japan.
Org Biomol Chem. 2012 Sep 28;10(36):7327-33. doi: 10.1039/c2ob25346a.
Here, we present the solution structure of a DNA duplex containing a disulfide base pair (S-DNA). The unnatural nucleoside "S" possessing a thiophenyl group as base was incorporated into a self-complementary singled-stranded oligonucleotide. Crosslinking of the disulfide base pair was analyzed by non-denaturing polyacrylamide gel electrophoresis. Under oxidizing conditions a high molecular weight band as 18 mer, corresponding to the double-stranded molecule (5'-GCGASTCGC: 3'-CGCTSAGCG), was found, whereas single-stranded self-complementary 9 mer oligonucleotide GCGASTCGC was detected in the presence of a reducing agent. These results suggest that the oligonucleotide is covalently linked by disulfide bonding under oxidizing conditions, which can be reversibly reduced to two thiol groups under reducing conditions. CD spectrum of S-DNA (CGASTCG) under oxidizing conditions suggested that the duplex had a right-handed double-stranded structure similar to that of natural DNA (B-form, CGATCG). NMR studies confirmed that this CGASTCG resembled natural B-DNA and that the two phenyl rings derived from the disulfide base pairing intercalated into the duplex. However, these two phenyl rings were not positioned in the same plane as the other base pairs. Specifically, NOEs suggest that although CGASTCG adopts a structure similar to B-type DNA, the S-DNA duplex is bent at the point of disulfide base pairing to face the major groove.
在这里,我们展示了含有二硫键碱基对(S-DNA)的 DNA 双链的溶液结构。具有噻吩基作为碱基的非天然核苷“S”被掺入到自我互补的单链寡核苷酸中。通过非变性聚丙烯酰胺凝胶电泳分析二硫键碱基对的交联。在氧化条件下,发现了一条高分子量的带,对应于双链分子(5'-GCGASTCGC:3'-CGCTSAGCG),而在存在还原剂的情况下,检测到单链自我互补 9 mer 寡核苷酸 GCGASTCGC。这些结果表明,寡核苷酸在氧化条件下通过二硫键键合共价连接,在还原条件下可以可逆地还原为两个巯基。在氧化条件下 S-DNA(CGASTCG)的 CD 光谱表明,双链具有类似于天然 DNA(B 型,CGATCG)的右手双链结构。NMR 研究证实,CGASTCG 类似于天然 B-DNA,并且来自二硫键碱基对的两个苯环插入到双链中。然而,这两个苯环没有与其他碱基对处于同一平面。具体来说,NOE 表明,尽管 CGASTCG 采用类似于 B 型 DNA 的结构,但 S-DNA 双链在二硫键碱基对的位置弯曲,以面对大沟。