首页> 美国卫生研究院文献>Nucleic Acids Research >Exocyclic amino groups of flanking guanines govern sequence-dependent adduct conformations and local structural distortions for minor groove-aligned benzoapyrenyl-guanine lesions in a GG mutation hotspot context
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Exocyclic amino groups of flanking guanines govern sequence-dependent adduct conformations and local structural distortions for minor groove-aligned benzoapyrenyl-guanine lesions in a GG mutation hotspot context

机译:侧翼鸟嘌呤的环外氨基基团控制着GG突变热点条件下小沟对齐的苯并a苯基-鸟嘌呤损伤的序列依赖性加合物构象和局部结构畸变

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摘要

The environmental carcinogen benzo[a]pyrene (BP) is metabolized to reactive diol epoxides that bind to cellular DNA by predominantly forming N2-guanine adducts (G*). Mutation hotspots for these adducts are frequently found in 5′- ··· GG ··· dinucleotide sequences, but their origins are poorly understood. Here we used high resolution NMR and molecular dynamics simulations to investigate differences in G* adduct conformations in 5′- ··· CG*GC ··· and 5′- ··· CGG* C··· sequence contexts in otherwise identical 12-mer duplexes. The BP rings are positioned 5′ along the modified strand in the minor groove in both cases. However, subtle orientational differences cause strong distinctions in structural distortions of the DNA duplexes, because the exocyclic amino groups of flanking guanines on both strands compete for space with the BP rings in the minor groove, acting as guideposts for placement of the BP. In the 5′- ··· CGG* C ··· case, the 5′-flanking G · C base pair is severely untwisted, concomitant with a bend deduced from electrophoretic mobility. In the 5′- ··· CG*GC ··· context, there is no untwisting, but there is significant destabilization of the 5′-flanking Watson–Crick base pair. The minor groove width opens near the lesion in both cases, but more for 5′- ··· CGG*C···. Differential sequence-dependent removal rates of this lesion result and may contribute to the mutation hotspot phenomenon.
机译:环境致癌物苯并[a] re(BP)被代谢为主要通过形成N 2 -鸟嘌呤加合物(G *)与细胞DNA结合的反应性二醇环氧化物。这些加合物的突变热点经常出现在5'-···GGGG···二核苷酸序列中,但对它们的起源知之甚少。在这里,我们使用高分辨率NMR和分子动力学模拟研究了在5′-··CG * GC··和5′-··CGG * C···序列上下文中G *加合物构象的差异,否则它们是相同的12 -mer双工。在两种情况下,BP环都沿着修饰链在小凹槽中定位5'。但是,细微的方向差异会导致DNA双链体结构畸变的强烈区别,因为两条链上侧翼鸟嘌呤的环外氨基都与小沟中的BP环争夺空间,充当BP放置的指示标。在5'-···CGG * C···的情况下,5'-侧翼的G·​​C碱基对严重扭曲,并伴随着由电泳迁移率推导的弯曲。在5'-···CG * GC···的情况下,没有扭曲,但5'侧的Watson-Crick碱基对存在明显的不稳定。在这两种情况下,较小的凹槽宽度均在病变附近打开,但对于5'-···CGG * C···则更大。该病灶的差异性依赖序列的去除率会导致突变热点现象。

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