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The physical determinants of the DNA conformational landscape: an analysis of the potential energy surface of single-strand dinucleotides in the conformational space of duplex DNA

机译:DNA构象景观的物理决定因素:双链DNA构象空间中单链二核苷酸的势能面分析

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摘要

A multivariate analysis of the backbone and sugar torsion angles of dinucleotide fragments was used to construct a 3D principal conformational subspace (PCS) of DNA duplex crystal structures. The potential energy surface (PES) within the PCS was mapped for a single-strand dinucleotide model using an empirical energy function. The low energy regions of the surface encompass known DNA forms and also identify previously unclassified conformers. The physical determinants of the conformational landscape are found to be predominantly steric interactions within the dinucleotide backbone, with medium-dependent backbone-base electrostatic interactions serving to tune the relative stability of the different local energy minima. The fidelity of the PES to duplex DNA properties is validated through a correspondence to the conformational distribution of duplex DNA crystal structures and the reproduction of observed sequence specific propensities for the formation of A-form DNA. The utility of the PES is demonstrated through its succinct and accurate description of complex conformational processes in simulations of duplex DNA. The study suggests that stereochemical considerations of the nucleic acid backbone play a role in determining conformational preferences of DNA which is analogous to the role of local steric interactions in determining polypeptide secondary structure.
机译:对二核苷酸片段的主链和糖扭转角进行多元分析,以构建DNA双链体晶体结构的3D主构象子空间(PCS)。使用经验能量函数为单链二核苷酸模型绘制PCS内的势能面(PES)。表面的低能区域涵盖了已知的DNA形式,还可以识别以前未分类的构象异构体。发现构象景观的物理决定因素主要是二核苷酸主链内的空间相互作用,其中介质依赖性主链-基础静电相互作用用于调节不同局部能量极小值的相对稳定性。通过对应于双链DNA晶体结构的构象分布和观察到的形成A型DNA的序列特异性倾向的再现,来验证PES对双链DNA特性的保真度。 PES的实用性通过其对双链DNA模拟中复杂构象过程的简洁准确描述得以证明。该研究表明,对核酸骨架的立体化学考虑在确定DNA的构象偏好中起着作用,这类似于局部空间相互作用在确定多肽二级结构中的作用。

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