首页> 外文期刊>Mutation Research: International Journal on Mutagenesis, Chromosome Breakage and Related Subjects >Molecular modeling of the major benzo(a)pyrene N2-dG adduct in cases where mutagenesis results are known in double stranded DNA.
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Molecular modeling of the major benzo(a)pyrene N2-dG adduct in cases where mutagenesis results are known in double stranded DNA.

机译:在已知双链DNA诱变结果的情况下,主要苯并(a)N N2-dG加合物的分子模型。

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The potent mutagen/carcinogen benzo[a]pyrene (B[a]P) is metabolically activated to (+)-anti-B[a]PDE, which induces a full spectrum of mutations (e.g. GC-->TA, GC-->AT, etc.). One hypothesis for this complexity is that different mutations are induced by different conformations of its major adduct [+ta]-B[a]P-N2-dG when bypassed during DNA replication (probably by different DNA polymerases). Previous molecular modeling studies suggested that B[a]P-N2-dG adducts can in principle adopt at least 16 potential conformational classes in ds-DNA. Herein we report on molecular modeling studies with the eight conformations most likely to be relevant to base substitution mutagenesis in 10 cases where mutagenesis has been studied in ds-DNA plasmids in E. coli with B[a]P-N2-dG adducts of differing stereoisomers and DNA sequence contexts, as well as in five cases where the conformation is known by NMR. Of the approximately 11,000 structures generated in this study, the computed lowest energy structures are reported for 120 cases (i.e. eight conformations and 15 examples), and their conformations compared. Of the eight conformations, four are virtually always computed to be high in energy. The remaining four lower energy conformations include two with the BP moiety in the minor groove (designated: BPmi5 and BPmi3), and two base-displaced conformations, one with the dG moiety in the major groove (designated: Gma5) and one with the dG in the minor groove (designated: Gmi3). Interestingly, these four are the only conformations that have been observed for B[a]P-N2-dG adducts in NMR studies. Independent of sequence contexts and adduct stereochemistry, BPmi5 structures tend to look reasonably similar, as do BPmi3 structures, while the base-displaced structures Gma5 and BPmi3 tend to show greater variability in structure. A correlation was sought between modeling and mutagenesis results in the case of the low energy conformations BPmi5, BPmi3, Gma5 and Gma3. Plots of log[(G-->T)/(G-->A)] versus energy[(conformation X)-(conformation Y)] were constructed for all six pairwise combinations of these four conformations, and the only plot giving a straight line involved Gma5 and Gmi3. While this finding is striking, its significance is unclear (as discussed).
机译:有效的诱变剂/致癌物苯并[a] P(B [a] P)被代谢激活为(+)-抗-B [a] PDE,从而诱导了全范围的突变(例如GC-> TA,GC -> AT等)。关于这种复杂性的一种假设是当在DNA复制期间被绕过时,其主要加合物[+ ta-B [a] P-N2-dG]的不同构象会诱导不同的突变(可能是通过不同的DNA聚合酶)。先前的分子建模研究表明,B [a] P-N2-dG加合物原则上可以在ds-DNA中采用至少16个潜在的构象类别。在本文中,我们报道了在10种情况下,在ds-DNA质粒中已用不同的B [a] P-N2-dG加合物对诱变进行了诱变的8种构象,它们最有可能与碱基取代诱变有关。立体异构体和DNA序列背景,以及在NMR已知构象的五种情况下。在这项研究中生成的大约11,000个结构中,报告了120个案例(即8个构象和15个示例)的计算出的最低能量结构,并比较了它们的构象。在这八个构象中,实际上总是计算出四个构象具有很高的能量。其余四个较低的能量构象包括两个在小沟中带有BP部分(称为BPmi5和BPmi3)和两个碱基位移的构象,一个在主沟中带有dG部分(称为Gma5),另一个在dG中带有dG。在小凹槽中(指定为:Gmi3)。有趣的是,这四个是在NMR研究中观察到的B [a] P-N2-dG加合物的唯一构象。不受序列背景和加合物立体化学的影响,BPmi5结构倾向于看起来相当相似,BPmi3结构也是如此,而碱基置换结构Gma5和BPmi3倾向于显示更大的结构变异性。在低能量构象BPmi5,BPmi3,Gma5和Gma3的情况下,在建模和诱变结果之间寻求相关性。对于这四个构象的所有六个成对组合,构造了log [(G-> T)/(G-> A)]对能量[(构象X)-(构象Y)]的图,唯一的图给出了一条直线涉及Gma5和Gmi3。尽管这一发现令人震惊,但其意义尚不清楚(如上所述)。

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