首页> 美国卫生研究院文献>other >Methylation of Cytosine at C5 in a CpG Sequence Context Causes a Conformational Switch of a Benzoapyrene diol epoxide-N2-guanine Adduct in DNA from a Minor Groove Alignment to Intercalation with Base Displacement
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Methylation of Cytosine at C5 in a CpG Sequence Context Causes a Conformational Switch of a Benzoapyrene diol epoxide-N2-guanine Adduct in DNA from a Minor Groove Alignment to Intercalation with Base Displacement

机译:在CpG序列上下文中C5处胞嘧啶的甲基化导致DNA的苯并a二醇环氧-N2-鸟嘌呤加合物从小沟槽排列向碱基插入的构象转换

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摘要

It is well known that CpG dinucleotide steps in DNA, which are highly methylated at the 5-position of cytosine (meC) in human tissues, exhibit a disproportionate number of mutations within certain codons of the p53 gene. There is ample published evidence indicating that the reactivity of guanine with anti-B[a]PDE (a metabolite of the environmental carcinogen benzo[a]pyrene) at CpG mutation hot spots is enhanced by the methylation of the cytosine residue flanking the target guanine residue on the 5′-side. In this work we demonstrate that such a methylation can also dramatically affect the conformational characteristics of an adduct derived from the reaction of one of the two enantiomers of anti-B[a]PDE with the exocyclic amino group of guanine ([BP]G adduct). A detailed NMR study indicates that the 10R (−)-trans-anti-[BP]G adduct undergoes a transition from a minor groove-binding alignment of the aromatic BP ring system in the unmethylated C-[BP]G sequence context, to an intercalative BP alignment with a concomitant displacement of the modified guanine residue into the minor groove in the methylated meC-[BP]G sequence context. By contrast, a minor groove-binding alignment was observed for the stereoisomeric 10S (+)-trans-anti-[BP]G adduct in both the C-[BP]G and meC-[BP]G sequence contexts. This remarkable conformational switch resulting from the presence of a single methyl group at the 5-position of the cytosine residue flanking the lesion on the 5′-side, is attributed to the hydrophobic effect of the methyl group that can stabilize intercalated adduct conformations in an adduct stereochemistry-dependent manner. Such conformational differences in methylated and unmethylated CpG sequences may be significant because of potential alterations in the cellular processing of the [BP]G adducts by DNA transcription, replication, and repair enzymes.
机译:众所周知,人类组织中胞嘧啶(meC)的5位高度甲基化的DNA中的CpG二核苷酸步骤在p53基因的某些密码子中显示出不成比例的突变。有充分的公开证据表明,鸟嘌呤与抗B [a] PDE(环境致癌物苯并[a] py的代谢产物)在CpG突变热点的反应性通过靶鸟嘌呤侧翼的胞嘧啶残基的甲基化而增强。 5'侧的残基。在这项工作中,我们证明了这种甲基化还可以显着影响衍生自抗B [a] PDE的两个对映异构体之一与鸟嘌呤的环外氨基([BP] G加合物)。一项详细的NMR研究表明,10R(-)-反-[BP] G加合物经历了从未甲基化C- [BP] G序列上下文中的芳香族BP环系统的次要槽结合比对过渡到在甲基化的meC- [BP] G序列中,插入的BP比对与修饰的鸟嘌呤残基伴随的位移进入小沟。相比之下,在C- [BP] G和meC- [BP] G序列中都观察到了立体异构体10S(+)-反-[BP] G加合物的微小凹槽结合比对。这种显着的构象转换是由于在5'侧病变旁侧的胞嘧啶残基的5位上存在单个甲基而引起的,这归因于甲基的疏水作用,它可以稳定插入分子中插入的加合物构象。加合物的立体化学依赖性。甲基化和未甲基化的CpG序列的这种构象差异可能很重要,因为通过DNA转录,复制和修复酶对[BP] G加合物进行细胞加工的潜在变化。

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