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一种人工合成的6锌指肽的α螺旋连接体有助于与不连续识别序列进行选择性DNA结合。

Alpha-helical linker of an artificial 6-zinc finger peptide contributes to selective DNA binding to a discontinuous recognition sequence.

作者信息

Yan Wei, Imanishi Miki, Futaki Shiroh, Sugiura Yukio

机构信息

Institute for Chemical Research, Kyoto University, Uji, Kyoto 611-0011, Japan.

出版信息

Biochemistry. 2007 Jul 24;46(29):8517-24. doi: 10.1021/bi7006417. Epub 2007 Jun 29.

Abstract

Although many zinc finger motifs have been developed to recognize specific DNA triplets, a rational way to selectively skip a particular non-recognized gap in the DNA sequence has never been established. We have now created a 6-zinc finger peptide with an alpha-helix linker, Sp1ZF6(EAAAR)4, which selectively binds to the discontinuous recognition sites in the same phase (10 bp gap) against the opposite phase (5 bp gap) of the DNA helix. The linker peptide (EAAAR)4 forms an alpha-helix structure stabilized by salt bridges, and the helical length is estimated to be about 30 A, corresponding to that of the 10 bp DNA. The gel shift assays demonstrate that Sp1ZF6(EAAAR)4 preferably binds to the 10 bp-gapped target rather than the 5 bp-gapped target. The CD spectra show that the alpha-helical content of the (EAAAR)4 linker is higher in the complex with the 10 bp-gapped target than in the complex with the 5 bp-gapped target. The present results indicate that the alpha-helical linker is suitable for binding to the recognition sites in the same phase and that the linker induces the loss of binding affinity to the recognition sites with the opposite phase. The engineering of a helix-structured linker in the 6-zinc finger peptides should be one of the most promising approaches for selectively targeting discontinuous recognition sites depending on their phase situations.

摘要

尽管已经开发出许多锌指基序来识别特定的DNA三联体,但尚未建立一种合理的方法来选择性地跳过DNA序列中特定的未识别间隙。我们现在创建了一种带有α-螺旋连接子的6锌指肽Sp1ZF6(EAAAR)4,它能选择性地与DNA螺旋同一相位(10个碱基对间隙)而非相反相位(5个碱基对间隙)的不连续识别位点结合。连接子肽段(EAAAR)4形成由盐桥稳定的α-螺旋结构,其螺旋长度估计约为30埃,与10个碱基对的DNA长度相当。凝胶迁移实验表明,Sp1ZF6(EAAAR)4更倾向于与有10个碱基对间隙的靶标结合,而非有5个碱基对间隙的靶标。圆二色光谱显示,(EAAAR)4连接子与有10个碱基对间隙的靶标形成的复合物中α-螺旋含量高于与有5个碱基对间隙的靶标形成的复合物。目前的结果表明,α-螺旋连接子适合与同一相位的识别位点结合,并且该连接子会导致对相反相位识别位点的结合亲和力丧失。在6锌指肽中设计螺旋结构的连接子应该是根据相位情况选择性靶向不连续识别位点最有前景的方法之一。

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