Dipartimento di Chimica e Chimica Industriale, Università di Pisa, Via Risorgimento 35, 56126 Pisa, Italy.
Phys Chem Chem Phys. 2010 Oct 28;12(40):13309-17. doi: 10.1039/c0cp00328j. Epub 2010 Sep 14.
The conditions under which different structures of left-handed DNA (poly(dG-me(5)dC)·poly(dG-me(5)dC)) can exist are investigated by spectrofluorometric, spectrophotometric, circular dichroism and calorimetric measurements and the kinetics of the transformations are analysed. The effects of temperature, salt and ethanol content on the transitions are also studied. The left-handed structure obtained by addition of either Mg(2+) ions or EtOH corresponds to Z-DNA, whereas the structure obtained using the mixture Mg(2+)/EtOH corresponds to the aggregate Z*-DNA. Upon addition of the fluorescent cyanine Thiazole Orange (TO), the transition Z → B immediately starts, whereas Z*-DNA retains its left-handed configuration in the presence of TO provided that the ratio [dye]/[polymer] ≤ 0.1. The equilibria and kinetics of the TO binding to Z*-DNA are investigated under the above conditions using the T-jump technique. The reaction mechanism consists of two series steps, the first one being characterized by the formation of an external electrostatic complex and the second corresponding to the dye penetration between the base pairs. A comparison with the B-DNA/TO system is drawn.
通过荧光光谱法、分光光度法、圆二色性和量热法测量,研究了不同左手 DNA(poly(dG-me(5)dC)·poly(dG-me(5)dC))结构存在的条件,并分析了转化的动力学。还研究了温度、盐和乙醇含量对转变的影响。用 Mg(2+)离子或 EtOH 加入得到的左手结构对应于 Z-DNA,而用 Mg(2+)/EtOH 混合物得到的结构对应于聚合 Z*-DNA。加入荧光菁染料噻唑橙(TO)后,Z → B 的转变立即开始,而在 TO 存在下,只要 [染料]/[聚合物] ≤ 0.1,Z*-DNA 仍保持其左手构型。在上述条件下,使用 T-jump 技术研究了 TO 与 Z*-DNA 的结合平衡和动力学。反应机制由两个串联步骤组成,第一个步骤的特征是形成外部静电络合物,第二个步骤对应于染料在碱基对之间的渗透。与 B-DNA/TO 系统进行了比较。