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量子化学研究反式白藜芦醇与鸟嘌呤-胸腺嘧啶二核苷酸和 DNA-碱基的相互作用。

Quantum-chemical study of interactions of trans-resveratrol with guanine-thymine dinucleotide and DNA-nucleobases.

机构信息

Department of Theoretical Chemistry, Faculty of Chemistry, A. Mickiewicz University ul, Grunwaldzka 6, 60-780 Poznań, Poland.

出版信息

J Mol Model. 2011 Dec;17(12):3085-102. doi: 10.1007/s00894-011-0999-2. Epub 2011 Mar 1.

Abstract

Trans-resveratrol, a natural phytoalexin present in red wine and grapes, has gained considerable attention because of its antiproliferative, chemopreventive and proapoptotic activity against human cancer cells. The accurate quantum-chemical computations based on the density functional theory (DFT) and ab initio second-order Møller-Plesset perturbation method (MP2) have been performed for the first time to study interactions of trans-resveratrol with guanine-thymine dinucleotide and DNA-derived nitrogenous bases: adenine, guanine, cytosine and thymine in vacuum and water medium. This compound is found to show high affinity to nitrogenous bases and guanine-thymine dinucleotide. The electrostatic interactions from intermolecular hydrogen bonding increase the stability of complexes studied. In particular, significantly strong hydrogen bonds between 4'-H atom of trans-resveratrol and imidazole nitrogen as well as carbonyl oxygen atoms of nucleobases studied stabilize these systems. The stabilization energies computed reveal that the negatively charged trans-resveratrol-dinucleotide complex is more energetically stable in water medium than in vacuum. MP2 method gives more reliable and significantly high values of stabilization energy of trans-resveratrol-dinucleotide, trans-resveratrol-guanine and trans-resveratrol-thymine complexes than B3LYP exchange-correlation functional because it takes into account London dispersion energy. According to the results, in the presence of trans-resveratrol the 3'-5' phosphodiester bond in dinucleotide can be cleaved and the proton from 4'-OH group of trans-resveratrol migrates to the 3'-O atom of dinucleotide. It is concluded that trans-resveratrol is able to break the DNA strand. Hence, the findings obtained help understand antiproliferative and anticancer properties of this polyphenol.

摘要

反式白藜芦醇是一种存在于红酒和葡萄中的天然植物抗毒素,由于其对人类癌细胞的抗增殖、化学预防和促凋亡活性,引起了相当大的关注。首次基于密度泛函理论(DFT)和从头算二级Møller-Plesset 微扰方法(MP2)进行了准确的量子化学计算,以研究反式白藜芦醇与鸟嘌呤-胸腺嘧啶二核苷酸和 DNA 衍生的含氮碱基:腺嘌呤、鸟嘌呤、胞嘧啶和胸腺嘧啶在真空和水介质中的相互作用。该化合物被发现对含氮碱基和鸟嘌呤-胸腺嘧啶二核苷酸具有高亲和力。分子间氢键的静电相互作用增加了所研究配合物的稳定性。特别是,反式白藜芦醇 4'-H 原子与咪唑氮原子以及核碱基的羰基氧原子之间的强氢键稳定了这些体系。计算出的稳定能表明,带负电荷的反式白藜芦醇-二核苷酸配合物在水介质中的稳定性比在真空中更高。MP2 方法给出的反式白藜芦醇-二核苷酸、反式白藜芦醇-鸟嘌呤和反式白藜芦醇-胸腺嘧啶配合物的稳定能比 B3LYP 交换相关泛函更可靠,且显著更高,因为它考虑了伦敦色散能。根据结果,在反式白藜芦醇存在下,二核苷酸中的 3'-5'磷酸二酯键可以被切断,反式白藜芦醇 4'-OH 基团的质子迁移到二核苷酸的 3'-O 原子上。可以得出结论,反式白藜芦醇能够切断 DNA 链。因此,这些发现有助于理解这种多酚的抗增殖和抗癌特性。

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