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Adsorption of Chiral 5-Aza5helicenes on DNA Can Modify Its Hydrophilicity and Affect Its Chiral Architecture: A Molecular Dynamics Study

机译:对DNA的手性5 -Aza 5直升机的吸附可以改变其亲水性并影响其手性架构:分子动力学研究

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摘要

Helicenes are interesting chiral molecules without asymmetric carbon atoms but with intrinsic chirality. Functionalized 5-Aza[5]helicenes can form non-covalent complexes with anticancer drugs and therefore be potential carriers. The paper highlights the different structural selectivity for DNA binding for two enantiopure compounds and the influence of concentration on their adsorption and self-aggregation process. In this theoretical study based on atomistic molecular dynamics simulations the interaction between (M)- and (P)-5-Aza[5]helicenes with double helix B-DNA is investigated. At first the interaction of single pure enantiomer with DNA is studied, in order to find the preferred site of interaction at the major or minor groove. Afterwards, the interaction of the enantiomers at different concentrations was investigated considering both competitive adsorption on DNA and possible helicenes self-aggregation. Therefore, racemic mixtures were studied. The helicenes studied are able to bind DNA modulating or locally modifying its hydrophilic surface into hydrophobic after adsorption of the first helicene layer partially covering the negative charge of DNA at high concentration. The (P)-enantiomer shows a preferential binding affinity of DNA helical structure even during competitive adsorption in the racemic mixtures. These DNA/helicenes non-covalent complexes exhibit a more hydrophobic exposed surface and after self-aggregation a partially hidden DNA chiral architecture to the biological environment.
机译:直升机是有趣的手性分子,没有不对称的碳原子,但具有内在的手性。官能化5-AZA [5]直升机可以与抗癌药物形成非共价复合物,因此是潜在的载体。本文突出了两种对闭式化合物的DNA结合的不同结构选择性及浓度对其吸附和自聚集过程的影响。在基于原子分子动力学模拟的基于原子分子动力学的理论研究中,研究了(M) - 和(P)-5-AZA [5]螺旋与双螺旋B-DNA的相互作用。首先,研究了单一纯对映体与DNA的相互作用,以找到主要或较小凹槽的优选的相互作用部位。之后,考虑到对DNA的竞争性吸附和可能的直升性自聚集,研究了对映体在不同浓度下的相互作用。因此,研究了外消旋混合物。研究的直升机能够将DNA调节或局部地将其亲水表面局部修饰成疏水性,在第一甲丙烯层部分地覆盖DNA的负电荷以高浓度的情况下。 (P) - 蒽聚物表明,即使在外消旋混合物中的竞争吸附期间,DNA螺旋结构的优先结合亲和力。这些DNA /直升机非共价复合物表现出更疏水的暴露表面和自聚集后的部分隐藏的DNA手性架构到生物环境。

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