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Molecular Dynamics Study on the Binding of S- and R-Ofloxacin to [d(ATAGCGCTAT)]2 Oligonucleotide: Effects of Protonation States

机译:S-和R-氧氟沙星与[d(ATAGCGCTAT)] 2 寡核苷酸结合的分子动力学研究:质子化状态的影响

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摘要

The energies for the complex formation between the S- and R-enantiomers of ofloxacin with the [d(ATAGCGCTAT)]2 were calculated using the molecular dynamics (MD) method. The 12 initial structures that were investigated in this work included were three ofloxacin: neutrals; zwitterions; and the protonated species, for both the S- and R-enantiomers, each with two starting positions intercalative and minor groove. The four final structures with the most favorable free energies from the MD calculations consisted of two categories namely, partial intercalative and the minor groove binding model. In the intercalative model that is found for the protonated species, the molecular plane of both the S- and R-ofloxacin is inserted between two GC basepairs with the protonated piperazine ring and the methyl group of the oxazine ring is exposed to the minor groove. The binding energy of the S-ofloxacin in this model is slightly more favorable than R-ofloxacin. Conversely, even as it began with an initial intercalative structure, the neutral ofloxacin species is bound within the minor groove, whereby the molecular plane of ofloxacin tilts between 60-70ì with respect to the DNA helical axis. Two hydrogen bonds are possible for this groove binding model. Finally, the free energy of the zwitterionic ofloxacin is less favorable than that obtained from neutral and protonated species.
机译:氧氟沙星与[d(ATAGCGCTAT)] 2 S -和 R -对映体之间形成配合物的能量使用分子动力学(MD)方法。在这项工作中研究的12个初始结构包括3个氧氟沙星:中性;两性离子; S-和R-对映体的质子化物种,每个都有两个插入位置和较小的凹槽。根据MD计算,具有最有利自由能的四个最终结构由两类组成,即部分插层模型和次要沟槽结合模型。在为质子化物种发现的插入模型中,S-和R-氧氟沙星的分子平面都插入带有质子化哌嗪环的两个GC碱基对之间,恶嗪环的甲基暴露于小沟。在该模型中,S-氧氟沙星的结合能比R-氧氟沙星更有利。相反,即使从最初的插入结构开始,中性氧氟沙星物质仍会结合在小沟内,因此氧氟沙星的分子平面相对于DNA螺旋轴在60-70°之间倾斜。对于该沟槽结合模型,两个氢键是可能的。最后,两性离子氧氟沙星的自由能比从中性和质子化物质获得的自由能更不利。

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