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14R(+)-和 14S(-)-反式-anti-DB[a,l]P-N⁶-dA 加合物的插入构象:分子建模和 MD 模拟。

Intercalative conformations of the 14R (+)- and 14S (-)-trans-anti-DB[a,l]P-N⁶-dA adducts: molecular modeling and MD simulations.

机构信息

Department of Biology, New York University, New York, NY 10003, United States.

出版信息

Chem Res Toxicol. 2011 Apr 18;24(4):522-31. doi: 10.1021/tx1004002. Epub 2011 Feb 28.

Abstract

Among the polycyclic aromatic hydrocarbon class of chemical carcinogens, dibenzo[a,l]pyrene (DB[a,l]P) is the most potent tumorigen that has been identified to date. Structurally, it is bulky with six aromatic rings, and it contains the nonplanar fjord-region. The conformational properties of DB[a,l]P-derived DNA adducts responsible for its extraordinary carcinogenicity are hence of great interest. We have carried out molecular modeling and MD simulations for the 14R (+)- and 14S (-)-trans-anti-DB[a,l]P-N⁶-dA adducts derived from the reactions of the DB[a,l]P diol epoxides with adenine in double-stranded DNA. The structures are based on the classically intercalated NMR solution structures of the analogous fjord-region benzo[c]phenanthrene-derived-N⁶-dA adducts. One objective was to gain insight on the impact of the more bulky DB[a,l]P ring system on the structural characteristics of the intercalative adduct conformations. A further objective was to elucidate the effect of the flexible twist associated with the sterically hindered aromatic ring in the fjord-region on the intercalated conformations, for comparison with the intercalated but planar bay-region benzo[a]pyrene-derived-N⁶-dA adducts. For the DB[a,l]P-N⁶-dA adducts, our results show that the 14R (+)-adduct is more favorably intercalated on the 5'-side of the modified adenine than the stereoisomeric 14S (-)-adduct, intercalated on its 3'-side. The 14R (+)-adduct manifests better van der Waals stacking interactions with flanking base pairs, less perturbed Watson-Crick hydrogen bonding, less local groove enlargement, less unwinding, and a lower solvent exposure than the 14S (-)-adduct. These structural findings are consistent with observed thermodynamic melting data, UV absorption properties, and fluorescence quenching studies. By contrast, the NMR solution structures for the analogous but less bulky B[c]Ph-derived adducts reveal no such stereoisomeric effect, while the planar bay-region benzo[a]pyrene-derived-N⁶-dA adducts do. Differences in nucleotide excision repair susceptibilities of the fjord and bay region adducts stem from distinctions in their intercalative conformations, produced by the intrinsic topological variations in their polycyclic aromatic ring systems.

摘要

在多环芳烃类化学致癌物中,二苯并[a,l]蒽(DB[a,l]P)是迄今为止发现的最有效的肿瘤诱发物。从结构上看,它体积庞大,有六个芳香环,并且含有非平面峡部区域。因此,负责其非凡致癌性的 DB[a,l]P 衍生 DNA 加合物的构象特性引起了极大的关注。我们已经对来自 DB[a,l]P 二醇环氧化物与腺嘌呤在双链 DNA 中反应生成的 14R (+)-和 14S (-)-反式-anti-DB[a,l]P-N⁶-dA 加合物进行了分子建模和 MD 模拟。这些结构基于类似峡部区域苯并[c]菲衍生-N⁶-dA 加合物的经典嵌入 NMR 溶液结构。一个目标是深入了解更庞大的 DB[a,l]P 环系统对嵌入加合物构象的结构特征的影响。另一个目标是阐明与峡部区域中空间位阻芳香环相关的灵活扭曲对嵌入构象的影响,以便与嵌入但平面湾区域苯并[a]芘衍生-N⁶-dA 加合物进行比较。对于 DB[a,l]P-N⁶-dA 加合物,我们的结果表明,14R (+)-加合物比其立体异构体 14S (-)-加合物更有利于嵌入修饰腺嘌呤的 5'-侧,后者嵌入其 3'-侧。与 14S (-)-加合物相比,14R (+)-加合物与侧翼碱基对表现出更好的范德华堆积相互作用,更少受扰的 Watson-Crick 氢键,更少的局部沟槽扩大,更少的解旋和更低的溶剂暴露。这些结构发现与观察到的热力学熔解数据、紫外吸收特性和荧光猝灭研究一致。相比之下,类似但体积较小的 B[c]Ph 衍生加合物的 NMR 溶液结构没有显示出这种立体异构体效应,而平面湾区域苯并[a]芘衍生-N⁶-dA 加合物则有。峡部和湾部区域加合物的核苷酸切除修复敏感性差异源于其多环芳烃环系统内在拓扑变化产生的嵌入构象的差异。

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