Ding Shuang, Shapiro Robert, Cai Yuqin, Geacintov Nicholas E, Broyde Suse
Departments of Biology and Chemistry, New York University, 100 Washington Square East, New York City, New York 10003, USA.
Chem Res Toxicol. 2008 May;21(5):1064-73. doi: 10.1021/tx800010u. Epub 2008 Apr 17.
Equilin and equilenin, components of the hormone replacement therapy drug Premarin, can be metabolized to the catechol 4-hydroxyequilenin (4-OHEN). The quinoids produced by 4-OHEN oxidation react with dC, dA, and dG to form unusual stable cyclic adducts, which have been found in human breast tumor tissue. Four stereoisomeric adducts have been identified for each base. These 12 Premarin-derived adducts provide a unique opportunity for analyzing effects of stereochemistry and base damage on DNA structure and consequently its function. Our computational studies have shown that these adducts, with obstructed Watson-Crick hydrogen-bond edges and near-perpendicular ring systems, have limited conformational flexibility and near-mirror-image conformations in stereoisomer pairs. The dC and dA adducts can adopt major- and minor-groove positions in the double helix, but the dG adducts are positioned only in the major groove. In all cases, opposite orientations of the equilenin rings with respect to the 5' --> 3' direction of the damaged strand are found in stereoisomer pairs derived from the same base, and no Watson-Crick pairing is possible. However, detailed structural properties in DNA duplexes are distinct for each stereoisomer of each damaged base. These differences may underlie observed differential stereoisomer and base-dependent mutagenicities and repair susceptibilities of these adducts.
马萘雌酮和马萘雌酚是激素替代疗法药物倍美力的成分,可代谢为儿茶酚4-羟基马萘雌酚(4-OHEN)。4-OHEN氧化产生的醌类与dC、dA和dG反应形成异常稳定的环状加合物,这些加合物已在人类乳腺肿瘤组织中发现。每种碱基已鉴定出四种立体异构加合物。这12种源自倍美力的加合物为分析立体化学和碱基损伤对DNA结构及其功能的影响提供了独特的机会。我们的计算研究表明,这些加合物具有受阻的沃森-克里克氢键边缘和近乎垂直的环系统,构象灵活性有限,立体异构体对中具有近乎镜像的构象。dC和dA加合物可在双螺旋中占据大沟和小沟位置,但dG加合物仅位于大沟中。在所有情况下,在源自相同碱基的立体异构体对中,马萘雌酚环相对于受损链5'→3'方向具有相反的取向,并且不可能进行沃森-克里克配对。然而,对于每个受损碱基的每个立体异构体,DNA双链体中的详细结构特性是不同的。这些差异可能是观察到的这些加合物的立体异构体和碱基依赖性诱变率及修复敏感性差异的基础。