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首页> 外文期刊>Journal of Molecular Biology >Crystallographic studies on damaged DNAs. II. N(6)-methoxyadenine can present two alternate faces for Watson-Crick base-pairing, leading to pyrimidine transition mutagenesis.
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Crystallographic studies on damaged DNAs. II. N(6)-methoxyadenine can present two alternate faces for Watson-Crick base-pairing, leading to pyrimidine transition mutagenesis.

机译:受损DNA的晶体学研究。二。 N(6)-甲氧基腺嘌呤可以为Watson-Crick碱基配对提供两个备用面,从而导致嘧啶过渡诱变。

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In a previous paper, 2'-deoxy-N(6)-methoxyadenosine (mo(6)A) was shown to form a mismatch base-pair with 2'-deoxycytidine with a Watson-Crick-type geometry. To fully understand the structural basis of genetic mutations with damaged DNA, it is necessary to examine whether the methoxylated adenine residue still has the ability to form the regular Watson-Crick pairing with a thymine residue. Therefore, a DNA dodecamer with the sequence d(CGCGmo(6)AATTCGCG) has been synthesized and its crystal structure determined. The methoxylation has no significant effect on the overall DNA conformation, which is that of a standard B-form duplex. The methoxylated adenine moieties adopt the amino tautomer with an anti conformation around the C(6)-N(6) bond to the N(1) atom, and they form a Watson-Crick base-pair with thymine residues on the opposite strand, similar to an unmodified adenine residue. It is concluded that methoxylated adenine can present two alternate faces for base-pairing, thanks to the amino<-->imino tautomerism allowed by methoxylation. Based on this property, two gene transition routes are proposed. Copyright 1999 Academic Press.
机译:在以前的论文中,显示2'-脱氧-N(6)-甲氧基腺苷(mo(6)A)与具有Watson-Crick型几何结构的2'-脱氧胞苷形成错配碱基对。为了充分了解受损DNA的基因突变的结构基础,有必要检查甲氧基化腺嘌呤残基是否仍然具有与胸腺嘧啶残基形成规则的Watson-Crick配对的能力。因此,已合成了具有序列d(CGCGmo(6)AATTCGCG)的DNA十二聚体,并确定了其晶体结构。甲氧基化对总体DNA构象(标准B型双链体的构象)没有明显影响。甲氧基化的腺嘌呤部分采用在C(6)-N(6)键与N(1)原子周围具有反构象的氨基互变异构体,并且它们形成具有相反链上胸腺嘧啶残基的Watson-Crick碱基对,类似于未修饰的腺嘌呤残基。结论是,由于甲氧基化所允许的氨基-亚氨基互变异构,甲氧基化的腺嘌呤可以呈现两个交替的碱基配对面。基于这一特性,提出了两种基因转移途径。版权所有1999,学术出版社。

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