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GAGA锌指的DNA结合能力取决于β-发夹中存在的氨基酸的性质。

DNA-Binding ability of GAGA zinc finger depends on the nature of amino acids present in the beta-hairpin.

作者信息

Dhanasekaran Muthu, Negi Shigeru, Imanishi Miki, Sugiura Yukio

机构信息

Faculty of Pharmaceutical Sciences, Doshisha Women's University, Koudo, Kyotanabe-Shi 610-0395, Japan.

出版信息

Biochemistry. 2007 Jun 26;46(25):7506-13. doi: 10.1021/bi700009q. Epub 2007 May 31.

Abstract

The GAGA factor of Drosophila melanogaster uses a single Cys2-His2-type zinc finger for specific DNA binding. Comparative sequence alignment of the GAGA zinc finger core with other structurally characterized zinc fingers reveals that the beta-hairpin of the GAGA zinc finger prefers amino acids with an aliphatic side-chain different from those of other zinc fingers. To probe the substitution effect of aromatic amino acids in the beta-hairpin on the DNA binding, three mutant peptides were designed by substituting consensus phenylalanine, an aromatic amino acid, at key positions in the beta-hairpin region. The metal-binding and the overall fold of the mutant peptides are very similar to those of the wild-type as shown by UV-vis absorption spectroscopy and circular dichroism spectroscopy. However, the gel mobility shift assay and isothermal calorimetric studies demonstrated that none of the mutants are able to bind the cognate DNA substrate, although the mutation is confined only to the beta-hairpin region. The present results suggest that the nature of the amino acids in the beta-hairpin plays an important role in the DNA-binding of the GAGA factor protein.

摘要

果蝇的GAGA因子利用单个Cys2-His2型锌指进行特异性DNA结合。将GAGA锌指核心与其他结构已明确的锌指进行比较序列比对发现,GAGA锌指的β-发夹结构更倾向于具有与其他锌指不同的脂肪族侧链的氨基酸。为了探究β-发夹结构中芳香族氨基酸取代对DNA结合的影响,通过在β-发夹区域的关键位置取代保守的苯丙氨酸(一种芳香族氨基酸)设计了三种突变肽。紫外可见吸收光谱和圆二色光谱显示,突变肽的金属结合和整体折叠与野生型非常相似。然而,凝胶迁移率变动分析和等温滴定量热研究表明,尽管突变仅局限于β-发夹区域,但没有一个突变体能结合同源DNA底物。目前的结果表明β-发夹结构中氨基酸的性质在GAGA因子蛋白的DNA结合中起重要作用。

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