Wilson W D, Dotrong M H, Zuo E T, Zon G
Department of Chemistry, Georgia State University, Atlanta 30303-3083.
Nucleic Acids Res. 1988 Jun 10;16(11):5137-51. doi: 10.1093/nar/16.11.5137.
The purine rich oligodeoxyribonucleotides 1C, d(ATGACGGAATA) and 2C, d(ATGAGCGAATA) alone exhibit highly cooperative melting transitions. Analysis of the concentration dependence of melting, and electrophoretic studies indicate that these oligomers can form an unusual purine rich offset double helix. The unusual duplex is predicted to contain four A.T, two G.C, and four G.A mismatch base pairs as well as a single A base stacked on the 3' end of each chain of the helix. Other possible models for the duplex are unlikely because they are predicted to contain many base pairs of low stability. Changing the central sequence to CGG or GGG should destabilize the duplex and this is observed. The unusual duplex of 2C is more stable than the duplex of 1C indicating that the stability of G.A base pairs is quite sensitive to the surrounding sequence. Addition of 1C and 2C to their complementary pyrimidine strands results in normal duplexes of similar stability. We feel that the unusual duplexes are significantly stabilized by the intrinsic stacking tendency of purine bases.
富含嘌呤的寡脱氧核糖核苷酸1C(d(ATGACGGAATA))和2C(d(ATGAGCGAATA))单独呈现出高度协同的解链转变。对解链的浓度依赖性分析以及电泳研究表明,这些寡聚物能形成一种不同寻常的富含嘌呤的错位双螺旋。预计这种异常双链体包含四个A·T、两个G·C和四个G·A错配碱基对,以及单个A碱基堆积在螺旋每条链的3'末端。双链体的其他可能模型不太可能,因为预计它们包含许多稳定性低的碱基对。将中心序列改为CGG或GGG会使双链体不稳定,这一点已被观察到。2C的异常双链体比1C的双链体更稳定,表明G·A碱基对的稳定性对周围序列相当敏感。将1C和2C添加到它们互补的嘧啶链中会形成稳定性相似的正常双链体。我们认为,异常双链体通过嘌呤碱基固有的堆积倾向而显著稳定。