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马萘雌酮衍生的DNA双链中胞嘧啶的DNA加合物:结构与热力学

Equilenin-derived DNA adducts to cytosine in DNA duplexes: structures and thermodynamics.

作者信息

Ding Shuang, Shapiro Robert, Geacintov Nicholas E, Broyde Suse

机构信息

Department of Chemistry, New York University, 100 Washington Square East, New York, New York 10003, USA.

出版信息

Biochemistry. 2005 Nov 8;44(44):14565-76. doi: 10.1021/bi051090t.

DOI:10.1021/bi051090t
PMID:16262256
Abstract

The drug Premarin is the most widely used formula for hormone replacement therapy. However, long-term exposure to estrogens from the Premarin drug increases the risk of breast cancer. Equilin and equilenin, major components of Premarin, are predominantly metabolized to 4-hydroxyequilenin (4-OHEN). The quinoids produced by 4-OHEN oxidation react with dG, dA, and dC to form unusual stable cyclic bulky adducts, with four stereoisomers identified for each base adduct. The 4-OHEN-dC adducts are most predominant. They are mutagenic in vitro and have been found in human tumor tissue. We have carried out molecular modeling and molecular dynamics simulations to investigate structures and thermodynamics of the four 4-OHEN-dC stereoisomeric adducts in DNA duplexes. Our results show that the structure of each stereoisomer adduct in duplex DNA is specifically governed by its unique stereochemistry. The bulky adducts, with an obstructed Watson-Crick edge and an equilenin ring system near perpendicular to the damaged cytosine, are located in the B-DNA major or minor groove, with the modified cytosine in the syn or anti conformation, respectively. The DNA duplex structures are distorted, in terms of Watson-Crick pairing at and near the lesion, stacking interactions, and groove dimensions. Stereochemistry determines the orientation of the equilenin rings with respect to the 5'- to 3'-direction of the modified strand, as well as the positioning of the equilenin moiety's methyl and hydroxyl groups for each stereoisomer. The unusual structures and the stereochemical effects underlie their biological processing as miscoding DNA lesions whose mutagenic properties may contribute to breast cancer.

摘要

普雷马林是激素替代疗法中使用最广泛的配方药物。然而,长期接触普雷马林药物中的雌激素会增加患乳腺癌的风险。普雷马林的主要成分马萘雌酮和马萘雌甾酮主要代谢为4-羟基马萘雌甾酮(4-OHEN)。4-OHEN氧化产生的醌类与dG、dA和dC反应形成异常稳定的环状大体积加合物,每种碱基加合物鉴定出四种立体异构体。4-OHEN-dC加合物最为常见。它们在体外具有致突变性,并且已在人类肿瘤组织中发现。我们进行了分子建模和分子动力学模拟,以研究DNA双链体中四种4-OHEN-dC立体异构加合物的结构和热力学。我们的结果表明,双链DNA中每种立体异构体加合物的结构由其独特的立体化学特异性决定。这些大体积加合物在B-DNA的大沟或小沟中,其沃森-克里克边缘受阻,马萘雌甾酮环系统几乎垂直于受损的胞嘧啶,修饰的胞嘧啶分别处于顺式或反式构象。就损伤处及其附近的沃森-克里克配对、堆积相互作用和沟尺寸而言,DNA双链体结构发生了扭曲。立体化学决定了马萘雌甾酮环相对于修饰链5'至3'方向的取向,以及每种立体异构体中马萘雌甾酮部分的甲基和羟基的位置。这些异常结构和立体化学效应是它们作为错配DNA损伤进行生物学处理的基础,其致突变特性可能导致乳腺癌。

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