Durai Sundar, Mani Mala, Kandavelou Karthikeyan, Wu Joy, Porteus Matthew H, Chandrasegaran Srinivasan
Department of Environmental Health Sciences, The Johns Hopkins University Bloomberg School of Public Health, 615 North Wolfe Street, Baltimore, MD 21205-2179, USA.
Nucleic Acids Res. 2005 Oct 26;33(18):5978-90. doi: 10.1093/nar/gki912. Print 2005.
Custom-designed zinc finger nucleases (ZFNs), proteins designed to cut at specific DNA sequences, are becoming powerful tools in gene targeting--the process of replacing a gene within a genome by homologous recombination (HR). ZFNs that combine the non-specific cleavage domain (N) of FokI endonuclease with zinc finger proteins (ZFPs) offer a general way to deliver a site-specific double-strand break (DSB) to the genome. The development of ZFN-mediated gene targeting provides molecular biologists with the ability to site-specifically and permanently modify plant and mammalian genomes including the human genome via homology-directed repair of a targeted genomic DSB. The creation of designer ZFNs that cleave DNA at a pre-determined site depends on the reliable creation of ZFPs that can specifically recognize the chosen target site within a genome. The (Cys2His2) ZFPs offer the best framework for developing custom ZFN molecules with new sequence-specificities. Here, we explore the different approaches for generating the desired custom ZFNs with high sequence-specificity and affinity. We also discuss the potential of ZFN-mediated gene targeting for 'directed mutagenesis' and targeted 'gene editing' of the plant and mammalian genome as well as the potential of ZFN-based strategies as a form of gene therapy for human therapeutics in the future.
定制设计的锌指核酸酶(ZFNs)是一种被设计用于在特定DNA序列处进行切割的蛋白质,正成为基因靶向(通过同源重组(HR)在基因组内替换基因的过程)中的强大工具。将FokI核酸内切酶的非特异性切割结构域(N)与锌指蛋白(ZFPs)相结合的ZFNs提供了一种向基因组递送位点特异性双链断裂(DSB)的通用方法。ZFN介导的基因靶向技术的发展使分子生物学家能够通过对靶向基因组DSB的同源定向修复,对植物和哺乳动物基因组(包括人类基因组)进行位点特异性和永久性修饰。设计能在预定位点切割DNA的ZFNs取决于能否可靠地创建能特异性识别基因组内所选靶位点的ZFPs。(Cys2His2)ZFPs为开发具有新序列特异性的定制ZFN分子提供了最佳框架。在这里,我们探索了生成具有高序列特异性和亲和力的所需定制ZFNs的不同方法。我们还讨论了ZFN介导的基因靶向用于植物和哺乳动物基因组的“定向诱变”和靶向“基因编辑”的潜力,以及基于ZFN的策略作为未来人类治疗基因治疗形式的潜力。