FIBER (Frontier Institute for Biomolecular Engineering Research), Konan University, 7-1-20 Minatojima-minamimachi, Chuo-ku, Kobe 650-0047, Japan.
Biochemistry. 2011 Aug 30;50(34):7414-25. doi: 10.1021/bi200477g. Epub 2011 Aug 8.
We studied the kinetic and thermodynamic effects of locked nucleic acid (LNA) modifications on parallel and antiparallel DNA duplexes. The LNA modifications were introduced at cytosine bases of the pyrimidine strand. Kinetic parameters evaluated from melting and annealing curves showed that the association and dissociation rate constants for the formation of the LNA-modified parallel duplex at 25.0 °C were 3 orders of magnitude larger and 6 orders of magnitude smaller, respectively, than that of the unmodified parallel duplex. The activation energy evaluated from the temperature-dependent rate constants was largely altered by the LNA modifications, suggesting that the LNA modifications affected a prenucleation event in the folding process. Moreover, thermodynamic parameters showed that the extent of stabilization by the LNA modification for parallel duplexes (3.6 kcal mol(-1) per one modification) was much more significant than that of antiparallel duplexes (1.6 kcal mol(-1)). This large stabilization was due to the decrease in ΔH° that was more favorable than the decrease in TΔS°. These quantitative parameters demonstrated that LNA modification specifically stabilized the noncanonical parallel duplex. On the basis of these observations, we succeeded to stabilize the parallel duplex by LNA modification at the physiological pH. These results can be useful in the rational design of functional molecules such as more effective antisense and antigene strands, more sensitive strands for detection of target DNA and RNA strands, and molecular switches responding to solution pH.
我们研究了锁核酸(LNA)修饰对嘧啶链中胞嘧啶碱基的平行和反平行 DNA 双链的动力学和热力学效应。从熔解和退火曲线评估的动力学参数表明,在 25.0°C 下,LNA 修饰的平行双链的形成的缔合和解离速率常数分别比未修饰的平行双链大 3 个数量级和小 6 个数量级。从温度依赖性速率常数评估的活化能受到 LNA 修饰的很大影响,表明 LNA 修饰影响折叠过程中的预成核事件。此外,热力学参数表明,LNA 修饰对平行双链的稳定程度(每个修饰 3.6 kcal/mol)远大于反平行双链(1.6 kcal/mol)。这种大的稳定化是由于ΔH°的减小比 TΔS°的减小更有利。这些定量参数表明,LNA 修饰特异性稳定了非规范的平行双链。基于这些观察结果,我们成功地在生理 pH 下通过 LNA 修饰稳定了平行双链。这些结果可用于合理设计功能性分子,如更有效的反义链和反基因链、更敏感的靶 DNA 和 RNA 链检测以及响应溶液 pH 的分子开关。