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绘制黄曲霉毒素B1在DNA中的结合位点:黄曲霉毒素B1的N(7)-鸟嘌呤加合物在不同DNA序列中的结合位点的分子建模

Mapping the binding site of aflatoxin B1 in DNA: molecular modeling of the binding sites for the N(7)-guanine adduct of aflatoxin B1 in different DNA sequences.

作者信息

Loechler E L, Teeter M M, Whitlow M D

机构信息

Department of Biology, Boston University, MA 02215.

出版信息

J Biomol Struct Dyn. 1988 Jun;5(6):1237-57. doi: 10.1080/07391102.1988.10506467.

Abstract

Aflatoxin B1 (AFB1), a potent mutagen and carcinogen, forms an adduct exclusively at the N(7) position of guanine, but the structure of this adduct in double stranded DNA is not known. Molecular modeling (using the program, PSFRODO) in conjunction with molecular mechanical calculation (using the program, AMBER) are used to assess the binding modes available to this AFB1 adduct. Two modes appear reasonable; in one the AFB1 moiety is intercalated between the base pair containing the adducted guanine and the adjacent base pair on the 5'-side in reference to the adducted guanine, while in the second it is bound externally in the major groove of DNA. Rotational flexibility appears feasible in the latter providing four, potential binding sites. Molecular modeling reveals that the binding sites around the reactive guanine in different sequences are not uniformly compatible for interaction with AFB1. As the sequence is changed, one particular external binding site would be expected to give a pattern of reactivities that is reasonably consistent with the observed sequence specificity of binding that AFB1 shows in its reaction with DNA (Benasutti, M., Ejadi, S., Whitlow, M. D. and Loechler, E. L. (1988) Biochemistry 27, 472-481). The AFB1 moiety is face-stacked in the major groove with its long axis approximately perpendicular to the helix axis. Favorable interactions are formed between exocyclic amino groups that project into the major groove on cytosines and adenines surrounding the reactive guanine, and oxygens in AFB1; unfavorable interactions involve van der Waals contacts between the methyl group on thymine and the AFB1 moiety. "Some of the sequence specificity of binding data can be rationalized more readily if it is assumed that 5'-GG-3' sequences adopt an A-DNA structure." Based upon molecular modeling/potential energy minimization calculation, it is difficult to predict how reactivity would change in different DNA sequences in the case of the intercalative binding mode; however, several arguments suggest that intercalation might not be favored. From these considerations a model of the structure for the transition state in reaction of AFB1 with DNA is proposed involving one particular external binding site.

摘要

黄曲霉毒素B1(AFB1)是一种强效诱变剂和致癌物,它仅在鸟嘌呤的N(7)位置形成加合物,但这种加合物在双链DNA中的结构尚不清楚。结合分子力学计算(使用AMBER程序),运用分子建模(使用PSFRODO程序)来评估这种AFB1加合物可能的结合模式。有两种模式看起来较为合理;一种模式中,AFB1部分插入到含有加合鸟嘌呤的碱基对与加合鸟嘌呤5'-侧相邻的碱基对之间,而在第二种模式中,它则在DNA的大沟外部结合。在后者中,旋转灵活性似乎是可行的,可提供四个潜在的结合位点。分子建模表明,不同序列中反应性鸟嘌呤周围的结合位点与AFB1相互作用的兼容性并不一致。随着序列的改变,预计一个特定的外部结合位点会产生一种反应性模式,该模式与AFB1在与DNA反应中表现出的观察到的序列特异性结合合理一致(贝纳苏蒂,M.,埃贾迪,S.,惠特洛,M. D.和勒克勒,E. L.(1988年)《生物化学》27卷,472 - 481页)。AFB1部分在大沟中进行面堆积,其长轴大致垂直于螺旋轴。突出到大沟中的胞嘧啶和腺嘌呤周围反应性鸟嘌呤上的环外氨基与AFB1中的氧之间形成了有利的相互作用;不利的相互作用涉及胸腺嘧啶上的甲基与AFB1部分之间的范德华接触。“如果假设5'-GG-3'序列采用A-DNA结构,一些结合数据的序列特异性可以更容易地得到合理解释。”基于分子建模/势能最小化计算,在插入结合模式的情况下,很难预测不同DNA序列中反应性将如何变化;然而,有几个论据表明插入可能不受青睐。基于这些考虑,提出了一个AFB1与DNA反应过渡态结构的模型,该模型涉及一个特定的外部结合位点。

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