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序列特异性嵌入剂:通过寡核苷酸 - 嵌入剂缀合物识别大沟在双链DNA的特定序列处进行嵌入。

Sequence-specific intercalating agents: intercalation at specific sequences on duplex DNA via major groove recognition by oligonucleotide-intercalator conjugates.

作者信息

Sun J S, François J C, Montenay-Garestier T, Saison-Behmoaras T, Roig V, Thuong N T, Hélène C

机构信息

Laboratoire de Biophysique, Institut National de la Santé et de la Recherche Médicale, Unité 201, Paris, France.

出版信息

Proc Natl Acad Sci U S A. 1989 Dec;86(23):9198-202. doi: 10.1073/pnas.86.23.9198.

Abstract

An acridine derivative was covalently linked to the 5' end of a homopyrimidine oligonucleotide. Specific binding to a homopurine-homopyrimidine sequence of duplex DNA was demonstrated by spectroscopic studies (absorption and fluorescence) and by "footprinting" experiments with a copper phenanthroline chelate used as an artificial nuclease. A hypochromism and a red shift of the acridine absorption were observed. Triple-helix formation was also accompanied by a hypochromism in the ultraviolet range. The fluorescence of the acridine ring was quenched by a stacking interaction with a G.C base pair adjacent to the homopurine-homopyrimidine target sequence. The intercalating agent strongly stabilized the complex formed by the oligopyrimidine with its target duplex sequence. Cytosine methylation further increased the stability of the complexes. Footprinting studies revealed that the oligopyrimidine binds in a parallel orientation with respect to the homopurine-containing strand of the duplex. The intercalated acridine extended by 2 base pairs the region of the duplex protected by the oligopyrimidine against degradation by the nuclease activity of the copper phenanthroline chelate. Random intercalation of the acridine ring was lost due to the repulsive effect of the negatively charged oligonucleotide tail. Intercalation occurred only at those double-stranded sequences where the homopyrimidine oligonucleotide recognized the major groove of duplex DNA.

摘要

一种吖啶衍生物与同嘧啶寡核苷酸的5'端共价连接。通过光谱研究(吸收和荧光)以及使用邻菲罗啉铜螯合物作为人工核酸酶的“足迹”实验,证明了其与双链DNA的同嘌呤-同嘧啶序列的特异性结合。观察到吖啶吸收的减色效应和红移。三链螺旋的形成在紫外范围内也伴随着减色效应。吖啶环的荧光通过与同嘌呤-同嘧啶靶序列相邻的G.C碱基对的堆积相互作用而猝灭。嵌入剂强烈稳定了寡嘧啶与其靶双链序列形成的复合物。胞嘧啶甲基化进一步提高了复合物的稳定性。足迹研究表明,寡嘧啶相对于双链体中含同嘌呤的链以平行方向结合。嵌入的吖啶使寡嘧啶保护双链体免受邻菲罗啉铜螯合物核酸酶活性降解的区域延长了2个碱基对。由于带负电荷的寡核苷酸尾部的排斥作用,吖啶环的随机嵌入消失。嵌入仅发生在同嘧啶寡核苷酸识别双链DNA大沟的那些双链序列处。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7291/298461/9fc219d6f615/pnas00290-0159-a.jpg

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