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立体异构的顺式开环反式苯并[a]芘二醇环氧化物与DNA中腺嘌呤加合物结构的构象决定因素。

Conformational determinants of structures in stereoisomeric cis-opened anti-benzo[a]pyrene diol epoxide adducts to adenine in DNA.

作者信息

Tan J, Geacintov N E, Broyde S

机构信息

Chemistry and Biology Departments, New York University, New York, New York 10003, USA.

出版信息

Chem Res Toxicol. 2000 Sep;13(9):811-22. doi: 10.1021/tx000094q.

Abstract

As part of a comprehensive effort to understand the origins of the variety of structural motifs adopted by (+)- and (-)-cis- and trans-anti-[BP]-N(2)-dG and -N(6)-dA adducts, with the goal of contributing to the elucidation of the structure-function relationship, we present results of our comprehensive computational investigation of the C10R (+)-cis- and C10S (-)-cis-anti-[BP]-N(6)-dA adducts on the nucleoside level. We have surveyed the potential energy surface of these two adducts by varying systematically, at 5 degrees intervals in combination, the three key torsion angle determinants of conformational flexibility (chi, alpha', and beta') in each adduct, creating 373 248 structures, and evaluating each of their energies. This has permitted us to map the entire potential energy surface of each adduct and to delineate the low-energy regions. The energy maps possess a symmetric relationship in the (+)/(-) adduct pair. This symmetry in the maps stems from the mirror image configuration of the benzylic rings in the two adducts, which produces opposite orientations of the BP residues in the C10R and C10S adducts on the nucleoside level. These opposite orientations result from primary steric hindrance between the base and the BP moiety which ensues when a (+) stereoisomer is rotated to the conformation favored by the (-) stereoisomer, and vice versa. Moreover, this steric hindrance manifested on the nucleoside level governs the structure on the duplex DNA level, accounting for observed opposite orientations in high-resolution NMR studies of C10R/C10S adduct pairs.

摘要

作为全面了解(+)-和(-)-顺式及反式-抗-[苯并[a]芘]-N(2)-dG和-N(6)-dA加合物所采用的各种结构基序起源的一部分,目标是有助于阐明结构-功能关系,我们展示了在核苷水平上对C10R(+)-顺式和C10S(-)-顺式-抗-[苯并[a]芘]-N(6)-dA加合物进行全面计算研究的结果。我们通过以5度间隔系统地组合改变每个加合物中构象灵活性的三个关键扭转角决定因素(χ、α'和β'),对这两种加合物的势能面进行了研究,创建了373248个结构,并评估了它们各自的能量。这使我们能够绘制出每个加合物的整个势能面并划定低能量区域。能量图在(+)/(-)加合物对中具有对称关系。图中的这种对称性源于两种加合物中苄基环的镜像构型,这在核苷水平上导致C10R和C10S加合物中BP残基的相反取向。这些相反取向是由于当(+)立体异构体旋转到(-)立体异构体所青睐的构象时,碱基与BP部分之间的主要空间位阻导致的,反之亦然。此外,在核苷水平上表现出的这种空间位阻决定了双链DNA水平上的结构,这解释了在C10R/C10S加合物对的高分辨率NMR研究中观察到的相反取向。

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