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首页> 外文期刊>Journal of biological inorganic chemistry: JBIC: a publication of the Society of Biological Inorganic Chemistry >Molecular dynamics simulation of non-covalent interactions between polynuclear platinum(II) complexes and DNA
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Molecular dynamics simulation of non-covalent interactions between polynuclear platinum(II) complexes and DNA

机译:多核铂(II)复合物与DNA的非共价相互作用的分子动力学模拟

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摘要

Several studies with substitution-inert polynuclear platinum(II) complexes (SI-PPC) have been carried out in recent years due to the form of DNA binding presented by these compounds. This form of bonding is achieved by molecular recognition through the formation of non-covalent structures, commonly called phosphate clamps and forks, which generate small extensions of the major and minor grooves. In this work, we use molecular dynamics simulations (MD) to study the formation of these cyclical structures between six different SI-PPCs and a double DNA dodecamer, here called 24_bp_DNA. The results showed the influence of the complex expressed on the number of phosphate clamps and forks formed. Based on the conformational characterization of the DNA fragment, we show that the studied SI-PPCs interact preferentially in the minor groove, causing groove spanning, except for two of them, Monoplatin and AH44. The phosphates of C-G pairs are the main sites for such non-covalent interactions. The Gibbs interaction energy of solvated species points out to AH78P, AH78H, and TriplatinNC as the most probable ones when coupled with DNA. As far as we know, this work is the very first one related to SI-PPCs which brings MD simulations and a complete analysis of the non-covalent interactions with a double DNA dodecamer.
机译:近年来,由于惰性多核铂(II)配合物(SI-PPC)呈现的DNA结合形式,人们对其进行了几项研究。这种键合形式是通过分子识别通过形成非共价结构来实现的,通常被称为磷酸盐夹和叉,它们会产生主槽和副槽的小延伸。在这项工作中,我们使用分子动力学模拟(MD)研究了六种不同的SI-PPC和一种双DNA十二聚体(这里称为24_bp_DNA)之间这些循环结构的形成。结果表明,复合物的表达对形成的磷酸钳和叉的数量有影响。基于DNA片段的构象特征,我们表明,所研究的SI-PPC优先在小沟槽中相互作用,导致沟槽跨越,但其中两个除外,即单拉丁和AH44。C-G对的磷酸盐是这种非共价相互作用的主要位点。溶剂化物种的吉布斯相互作用能指出AH78P、AH78H和TriplatinNC是与DNA偶联时最可能的相互作用能。据我们所知,这项工作是第一个与SI-PPCs相关的工作,它带来了MD模拟和与双DNA十二聚体的非共价相互作用的完整分析。

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