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具有不同致癌潜力的对映体反式苯并[a]芘二醇环氧化物衍生的DNA加合物中相反取向的立体化学起源。

Stereochemical origin of opposite orientations in DNA adducts derived from enantiomeric anti-benzo[a]pyrene diol epoxides with different tumorigenic potentials.

作者信息

Xie X M, Geacintov N E, Broyde S

机构信息

Chemistry Department, New York University 10003, USA.

出版信息

Biochemistry. 1999 Mar 9;38(10):2956-68. doi: 10.1021/bi9825605.

Abstract

When covalently linked to DNA, enantiomeric pairs of mirror image aromatic diol epoxides with differing tumorigenic potencies adopt opposite orientations along the DNA helix. This phenomenon has been observed by high-resolution NMR solution studies in a number of systems. Preliminary modeling efforts [Geacintov et al. (1997) Chem. Res. Toxicol. 10, 111-146) had suggested that the origin of the opposite orientation effect may be manifested even at the level of the carcinogen-modified nucleoside due to primary steric hindrance effects between the aromatic moiety and the attached base and sugar. Such a small system can be computationally investigated extensively, since a very thorough survey of the potential energy surface is feasible. Consequently, in an effort to understand the underlying origins of the opposite orientations in (+)-trans and (-)-trans-anti adduct pairs, we have undertaken an extensive investigation of the paradigm 10S (+) and 10R (-)-trans-anti-[BP]-N2-dG mononucleoside adduct pair, derived from the binding of the (+)-7R,8S,9S,10R and (-)-7S,8R,9R,10S enantiomers of 7,8-dihydro-9,10-epoxy-7,8,9, 10-tetrahydrobenzo[a]pyrene (BP) to the exocyclic amino group of 2'-deoxyguanosine. In the present work we created 373248 different conformers for each adduct, which uniformly sampled the possible rotamers about the three flexible torsion angles governing the orientation of the base (chi) and its covalently linked BP residue (alpha', beta') at 5 degrees intervals, and computed each of their energies with AMBER 4.0. The extensive results permitted us to map the potential energy surface of the molecule. Only four low-energy structural domains are found for the (+)-trans adduct and four for the (-)-trans adduct; the (+)/(-) pairs of each structural domain are mirror images, with the mirror image symmetry broken by the sugar and its attached C4'-C5' group. The most favored of these four is observed experimentally in the duplexes containing the same (+) and (-)-trans-anti-[BP]-N2-dG adducts (Cosman et al. (1992) Proc. Natl. Acad. Sci. U.S.A. 89, 1914-1918; de los Santos et al. (1992) Biochemistry 31, 5245-5252). The origin of the opposite orientations resides in steric hindrance effects resulting from the mirror image relationship of the BP benzylic rings in the adduct pair, such that rotation of one stereoisomer into the conformational domain preferred by the other causes crowding between the base and the BP benzylic ring. Limited conformational flexibility in the torsion angle beta', the one closest to the bulky BP moiety at the linkage site to guanine, plays a key role in governing the orientations in each adduct. The opposite orientation phenomenon is likely to manifest itself when the adducts are processed by cellular enzymes involved in replication, repair, and transcription and thus play a role in the differing biological outcomes stemming from the (+) and (-)-trans-anti adducts.

摘要

当与DNA共价连接时,具有不同致瘤潜能的镜像芳香二醇环氧化物对沿DNA螺旋采取相反的取向。在许多系统中,通过高分辨率NMR溶液研究已经观察到这种现象。初步建模研究[Geacintov等人(1997年),《化学研究毒理学》,10,111 - 146]表明,由于芳香部分与连接的碱基和糖之间的主要空间位阻效应,相反取向效应的起源甚至可能在致癌物修饰的核苷水平上表现出来。这样一个小系统可以进行广泛的计算研究,因为对势能面进行非常彻底的考察是可行的。因此,为了理解(+)-反式和(-)-反式-反式加合物对中相反取向的潜在起源,我们对范式10S(+)和10R(-)-反式-反式-[BP]-N2-dG单核苷加合物对进行了广泛研究,该加合物对源自7,8-二氢-9,10-环氧-7,8,9,10-四氢苯并[a]芘(BP)的(+)-7R,8S,9S,10R和(-)-7S,8R,9R,10S对映体与2'-脱氧鸟苷的环外氨基的结合。在本工作中,我们为每个加合物创建了373248个不同的构象异构体,以5度间隔均匀采样围绕控制碱基(chi)及其共价连接的BP残基(alpha',beta')取向的三个柔性扭转角的可能旋转异构体,并使用AMBER 4.0计算它们各自的能量。广泛的结果使我们能够绘制分子的势能面。对于(+)-反式加合物发现只有四个低能量结构域,对于(-)-反式加合物也有四个;每个结构域的(+)/(-)对是镜像,镜像对称性被糖及其连接的C4'-C5'基团打破。在含有相同(+)和(-)-反式-反式-[BP]-N2-dG加合物的双链体中通过实验观察到这四个中最有利的(Cosman等人(1992年),《美国国家科学院院刊》,89,1914 - 1918;de los Santos等人(1992年),《生物化学》,31,5245 - 5252)。相反取向的起源在于加合物对中BP苄基环的镜像关系导致的空间位阻效应,使得一种立体异构体旋转到另一种所偏好的构象域会导致碱基和BP苄基环之间拥挤。扭转角beta'(最接近与鸟嘌呤连接位点处庞大的BP部分)有限的构象灵活性在控制每个加合物的取向中起关键作用。当加合物由参与复制、修复和转录的细胞酶处理时,相反取向现象可能会表现出来,因此在源自(+)和(-)-反式-反式加合物的不同生物学结果中起作用。

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