Yan Shixiang, Wu Min, Ding Shuang, Geacintov Nicholas E, Broyde Suse
Department of Chemistry, New York University, 1001 Main Building, 31 Washington Place, New York 10003, USA.
Chem Res Toxicol. 2002 May;15(5):648-53. doi: 10.1021/tx0101797.
Equilenin, a component of the drug Premarin (Wyeth), can be metabolized to a quinonoid, 4-hydroxyequilenin (4-OHEN). 4-OHEN can react with 2'-deoxynucleosides to form unusual cyclic adducts, among which 4-hydroxyequilenin-2'-deoxyguanosine (4-OHEN-dG) is the major product under physiological conditions. The structure and stereochemistry of one stereoisomer, 4-OHEN-dG1, has been obtained previously using electrospray mass spectrometry and NMR methods [Shen et al. (1997) J. Am. Chem. Soc. 119, 11126-11127]; however, details of the conformations around the linkage site have not yet been investigated. The objective of this paper was to determine the conformation at the five-membered ring linkage site for this adduct. We have carried out a computational investigation involving high level quantum mechanical geometry optimization using density functional theory (DFT) for the 4-hydroxyequilenin-guanine adduct (4-OHEN-G1). Our results reveal that there are three conformational families which differ in the puckering of the five-membered ring at the linkage site and in the cyclohexene-type A ring conformation. The overall structures of all three families are "V"-shaped; however, two are quite compact while the third is more open. The lowest energy structure contains a half chair-type cyclohexene A ring, while two structures whose energies are approximately 3-4 kcal/mol higher are boat-type. Since the Watson-Crick hydrogen bonding edge of the modified guanine is obstructed by the formation of this bulky nonplanar adduct, it likely would reside in a groove of the DNA double helix.
马烯雌酮是药物倍美力(惠氏公司生产)的一种成分,可代谢为醌类化合物4 - 羟基马烯雌酮(4 - OHEN)。4 - OHEN能与2'-脱氧核苷反应形成异常的环状加合物,其中4 - 羟基马烯雌酮 - 2'-脱氧鸟苷(4 - OHEN - dG)是生理条件下的主要产物。一种立体异构体4 - OHEN - dG1的结构和立体化学先前已通过电喷雾质谱法和核磁共振方法获得[沈等人(1997年)《美国化学会志》119卷,11126 - 11127页];然而,连接位点周围构象的细节尚未研究。本文的目的是确定该加合物五元环连接位点的构象。我们利用密度泛函理论(DFT)对4 - 羟基马烯雌酮 - 鸟嘌呤加合物(4 - OHEN - G1)进行了涉及高水平量子力学几何优化的计算研究。我们的结果表明,存在三个构象家族,它们在连接位点五元环的褶皱以及环己烯型A环构象方面有所不同。所有三个家族的整体结构均为“V”形;然而,其中两个相当紧凑,而第三个则更为开放。能量最低的结构包含一个半椅型环己烯A环,而另外两个能量大约高3 - 4千卡/摩尔的结构为船型。由于这种庞大的非平面加合物的形成阻碍了修饰鸟嘌呤的沃森 - 克里克氢键边缘,它可能会位于DNA双螺旋的凹槽中。