Cooper Valentino R, Thonhauser Timo, Puzder Aaron, Schröder Elsebeth, Lundqvist Bengt I, Langreth David C
Department of Physics and Astronomy, Rutgers University, Piscataway, New Jersey 08854-8019, USA.
J Am Chem Soc. 2008 Jan 30;130(4):1304-8. doi: 10.1021/ja0761941. Epub 2007 Dec 29.
The importance of stacking interactions for the Twist and stability of DNA is investigated using the fully ab initio van der Waals density functional (vdW-DF). Our results highlight the role that binary interactions between adjacent sets of base pairs play in defining the sequence-dependent Twists observed in high-resolution experiments. Furthermore, they demonstrate that additional stability gained by the presence of thymine is due to methyl interactions with neighboring bases, thus adding to our understanding of the mechanisms that contribute to the relative stability of DNA and RNA. Our mapping of the energy required to twist each of the 10 unique base pair steps should provide valuable information for future studies of nucleic acid stability and dynamics. The method introduced will enable the nonempirical theoretical study of significantly larger pieces of DNA or DNA/amino acid complexes than previously possible.
利用完全从头算的范德华密度泛函(vdW-DF)研究了堆积相互作用对DNA扭曲和稳定性的重要性。我们的结果突出了相邻碱基对之间的二元相互作用在定义高分辨率实验中观察到的序列依赖性扭曲中所起的作用。此外,结果表明胸腺嘧啶的存在所带来的额外稳定性是由于甲基与相邻碱基的相互作用,从而增进了我们对有助于DNA和RNA相对稳定性机制的理解。我们对10个独特碱基对步骤中每一个进行扭曲所需能量的映射,应该为未来核酸稳定性和动力学研究提供有价值的信息。所引入的方法将使对比以前更大的DNA片段或DNA/氨基酸复合物进行非经验性理论研究成为可能。