首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Crystal and molecular structure of a benzoapyrene 78-diol 910-epoxide N2-deoxyguanosine adduct: Absolute configuration and conformation
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Crystal and molecular structure of a benzoapyrene 78-diol 910-epoxide N2-deoxyguanosine adduct: Absolute configuration and conformation

机译:苯并a py78-二醇910-环氧N2-脱氧鸟苷加合物的晶体和分子结构:绝对构型和构型

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摘要

Benzo[a]pyrene 7,8-diol 9,10-epoxide adducts in DNA are implicated in mutagenesis, and their formation from the diol epoxides and subsequent incorrect replication by human DNA polymerases provide an attractive mechanism for the induction of cancer by this highly carcinogenic hydrocarbon and its diol epoxide metabolites. Here, we describe the crystal structure of such an adduct at the exocyclic amino group of a purine nucleoside. The present adduct derives from trans opening at C10 of the (-)-(7S,8R)-diol (9R,10S)-epoxide enantiomer by the exocyclic N2-amino group of deoxyguanosine. In the crystal, the pyrene rings of adjacent molecules stack with each other, but the guanine bases do not stack either intermolecularly with each other or intramolecularly with the pyrene. The most notable features of the molecular structure are (i) independent and unambiguous proof of the absolute configuration of the adduct based on the spatial relationship between the known chiral carbon atoms of the deoxyribose and the four asymmetric centers in the hydrocarbon moiety; (ii) visualization of the relative orientations of the pyrene and guanine ring systems as well as the conformation of the partially saturated hydrocarbon ring (comprising carbon atoms 7, 8, 9, and 10), both of which conformational features in the crystal are in good agreement with deductions from NMR and CD measurements in solution; and (iii) the presence in the crystal of a syn glycosidic torsion angle, a conformation that is unusual in B-DNA but that may be involved in error-prone replication of these benzo[a]pyrene 7,8-diol 9,10-epoxide deoxyguanosine adducts by DNA polymerases.
机译:DNA中的苯并[a] py 7,8-二醇9,10-环氧化合物加合物涉及诱变,它们由二醇环氧化合物的形成以及随后人类DNA聚合酶的不正确复制提供了一种诱人的机制,可通过这种高度诱导的癌症致癌碳氢化合物及其二醇环氧代谢物。在这里,我们描述了在嘌呤核苷的环外氨基上这种加合物的晶体结构。本发明的加合物源于(-)-(7S,8R)-二醇(9R,10S)-环氧对映体在C10处的反式开环,是通过脱氧鸟苷的环外N 2-氨基形成的。在晶体中,相邻分子的pyr环彼此堆叠,但是鸟嘌呤碱基既不相互分子间堆叠,也不与with分子内堆叠。分子结构的最显着特征是:(i)基于脱氧核糖的已知手性碳原子与烃部分的四个不对称中心之间的空间关系,独立且明确地证明加合物的绝对构型; (ii)可视化the和鸟嘌呤环系统的相对取向,以及部分饱和的烃环(包括碳原子7、8、9和10)的构象,这两种晶体的构象特征均在与溶液中NMR和CD测量的推论相符; (iii)晶体中存在同糖苷扭转角,这种构象在B-DNA中不常见,但可能与这些苯并[a] 7,7,8-二醇9,10的易错复制有关DNA聚合酶产生的环氧-环氧脱氧鸟苷加合物。

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