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柔红霉素嵌入堆积的DNA碱基对。一种抗癌药物的密度泛函理论研究。

Intercalation of daunomycin into stacked DNA base pairs. DFT study of an anticancer drug.

作者信息

Barone G, Guerra C F, Gambino N, Silvestri A, Lauria A, Almerico A M, Bickelhaupt F M

机构信息

Dipartimento di Chimica Inorganica e Analitica "S. Cannizzaro", Universita di Palermo, Viale delle Scienze, Parco d'Orleans II, 90128, Palermo, Italy.

出版信息

J Biomol Struct Dyn. 2008 Aug;26(1):115-30. doi: 10.1080/07391102.2008.10507229.

Abstract

We have computationally studied the intercalation of the antitumor drug daunomycin into six stacks of Watson-Crick DNA base pairs (i.e., AT-AT, AT-TA, GC-AT, CG-TA, GC-GC, GC-CG) using density functional theory (DFT). The proton affinity of the DNA intercalator daunomycin in water was computed to be 159.2 kcal/mol at BP86/TZ2P, which is in line with the experimental observation that daunomycin is protonated under physiological conditions. The intercalation interaction of protonated daunomycin with two stacked DNA base pairs was studied through a hybrid approach in which intercalation is treated at LDA/TZP while the molecular structure of daunomycin and hydrogen-bonded Watson-Crick pairs is computed at BP86/TZ2P. We find that the affinity of the drug for the six considered base pair dimers decreases in the order AT-AT > AT-TA > GC-AT > GC-TA > GC-CG > GC-GC, in excellent agreement with experimental data on the thermodynamics of the interaction between daunomycin and synthetic polynucleotides in aqueous solution. Our analyses show that the overall stability of the intercalation complexes comes mainly from pi-pi stacking but an important contribution to the computed and experimentally observed sequence specificity comes from hydrogen bonding between daunomycin and hetero atoms in the minor groove of AT base pairs.

摘要

我们使用密度泛函理论(DFT)对抗肿瘤药物柔红霉素嵌入六组沃森-克里克DNA碱基对(即AT-AT、AT-TA、GC-AT、CG-TA、GC-GC、GC-CG)进行了计算研究。在BP86/TZ2P水平下,计算得出柔红霉素在水中的质子亲和能为159.2千卡/摩尔,这与柔红霉素在生理条件下会发生质子化的实验观察结果一致。通过一种混合方法研究了质子化柔红霉素与两组堆叠DNA碱基对的嵌入相互作用,其中嵌入作用在LDA/TZP水平下处理,而柔红霉素和氢键连接的沃森-克里克碱基对的分子结构在BP86/TZ2P水平下计算。我们发现,该药物对所考虑的六组碱基对二聚体的亲和力按以下顺序降低:AT-AT > AT-TA > GC-AT > GC-TA > GC-CG > GC-GC,这与柔红霉素与水溶液中合成多核苷酸相互作用的热力学实验数据高度吻合。我们的分析表明,嵌入复合物的整体稳定性主要来自π-π堆积,但计算得出的以及实验观察到的序列特异性的一个重要贡献来自柔红霉素与AT碱基对小沟中杂原子之间的氢键作用。

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