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胞嘧啶甲基化对CpG位点处DNA-DNA识别的影响。

Effect of cytosine methylation on DNA-DNA recognition at CpG steps.

作者信息

Mayer-Jung C, Moras D, Timsit Y

机构信息

Laboratoire de Biologie Structurale, Institut de Génétique et de Biologie Moléculaire et Cellulaire CNRS/INSERM/ULP, Illkirch, France.

出版信息

J Mol Biol. 1997 Jul 18;270(3):328-35. doi: 10.1006/jmbi.1997.1137.

Abstract

Although DNA methylation is a fundamental mechanism for repressing genetic activity, the influence of methyl groups on DNA conformation is found to be small. In this study, the role of cytosine methylation is analysed in the context of DNA condensation by examining its influence on DNA-DNA recognition processes. Previously CpG sites were found to act as sequence determinants for the close and specific self-fit of B-DNA helices into cross-overs. In the present study, the crystal structure of the B-DNA dodecamer d(ACCGCCGGCGCC) methylated at its central CpG sequence shows that the methyl groups do not interfere with DNA self-fitting. In contrast, the two methyl groups form a clamp, which traps the incoming phosphate in the groove-backbone interaction. This geometry allows the formation of two new C-H...O hydrogen bonds between the methyl groups and the anionic oxygen atoms of the phosphate, which may further stabilize the interaction. This finding relates cytosine methylation to the formation of higher-order DNA structures and could provide new insights for understanding the mode of action of DNA methylation in genetic inactivation.

摘要

尽管DNA甲基化是抑制基因活性的一种基本机制,但发现甲基对DNA构象的影响很小。在本研究中,通过检查胞嘧啶甲基化对DNA-DNA识别过程的影响,分析了其在DNA浓缩背景下的作用。此前发现CpG位点作为B-DNA螺旋紧密且特异性自组装成交叉结构的序列决定因素。在本研究中,在其中心CpG序列处甲基化的B-DNA十二聚体d(ACCGCCGGCGCC)的晶体结构表明,甲基不会干扰DNA的自组装。相反,两个甲基形成一个夹子,在沟-主链相互作用中捕获进入的磷酸基团。这种几何结构允许在甲基与磷酸基团的阴离子氧原子之间形成两个新的C-H...O氢键,这可能进一步稳定相互作用。这一发现将胞嘧啶甲基化与高阶DNA结构的形成联系起来,并可能为理解DNA甲基化在基因失活中的作用方式提供新的见解。

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