Negi Shigeru, Imanishi Miki, Matsumoto Makoto, Sugiura Yukio
Faculty of Pharmaceutical Sciences, Doshisha Women's University, Koudo, Kyotanabe-Shi, Japan.
Chemistry. 2008;14(11):3236-49. doi: 10.1002/chem.200701320.
The design of DNA-binding proteins for the specific control of the gene expression is one of the big challenges for several research laboratories in the post-genomic era. An artificial transcription factor with the desired DNA binding specificity could work as a powerful tool and drug to regulate the target gene. The zinc-finger proteins, which typically contain many fingers linked in a tandem fashion, are some of the most intensively studied DNA-binding proteins. In particular, the Cys(2)His(2)-type zinc finger is one of the most common DNA-binding motifs in eukaryotes. A simple mode of DNA recognition by the Cys(2)His(2)-type zinc-finger domain provides an ideal framework for designing proteins with new functions. Our laboratory has utilized several design strategies to create new zinc-finger peptides/proteins by redesigning the Cys(2)His(2)-type zinc-finger motif. This review focuses on the aspects of design strategies, mainly from our recent results, for the creation of artificial zinc-finger proteins, and discusses the possible application of zinc-finger technology for gene regulation and gene therapy.
在基因表达的特定控制方面设计DNA结合蛋白,是后基因组时代多个研究实验室面临的重大挑战之一。具有所需DNA结合特异性的人工转录因子可作为调控靶基因的有力工具和药物。锌指蛋白通常包含多个以串联方式连接的锌指,是研究最为深入的一些DNA结合蛋白。特别是,Cys(2)His(2)型锌指是真核生物中最常见的DNA结合基序之一。Cys(2)His(2)型锌指结构域识别DNA的简单模式为设计具有新功能的蛋白质提供了理想框架。我们实验室利用多种设计策略,通过重新设计Cys(2)His(2)型锌指基序来创建新的锌指肽/蛋白。本综述主要基于我们最近的研究成果,重点关注设计策略方面,以创建人工锌指蛋白,并讨论锌指技术在基因调控和基因治疗中的可能应用。