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基于结构的二聚化界面重新设计降低了锌指核酸酶的毒性。

Structure-based redesign of the dimerization interface reduces the toxicity of zinc-finger nucleases.

作者信息

Szczepek Michal, Brondani Vincent, Büchel Janine, Serrano Luis, Segal David J, Cathomen Toni

机构信息

Charité Medical School, Institute of Virology (CBF), 12203 Berlin, Germany.

出版信息

Nat Biotechnol. 2007 Jul;25(7):786-93. doi: 10.1038/nbt1317. Epub 2007 Jul 1.

Abstract

Artificial endonucleases consisting of a FokI cleavage domain tethered to engineered zinc-finger DNA-binding proteins have proven useful for stimulating homologous recombination in a variety of cell types. Because the catalytic domain of zinc-finger nucleases (ZFNs) must dimerize to become active, two subunits are typically assembled as heterodimers at the cleavage site. The use of ZFNs is often associated with significant cytotoxicity, presumably due to cleavage at off-target sites. Here we describe a structure-based approach to reducing off-target cleavage. Using in silico protein modeling and energy calculations, we increased the specificity of target site cleavage by preventing homodimerization and lowering the dimerization energy. Cell-based recombination assays confirmed that the modified ZFNs were as active as the original ZFNs but elicit significantly less genotoxicity. The improved safety profile may facilitate therapeutic application of the ZFN technology.

摘要

由与工程化锌指DNA结合蛋白相连的FokI切割结构域组成的人工核酸内切酶已被证明可用于刺激多种细胞类型中的同源重组。由于锌指核酸酶(ZFN)的催化结构域必须二聚化才能激活,两个亚基通常在切割位点组装成异二聚体。ZFN的使用通常与显著的细胞毒性相关,推测是由于在脱靶位点的切割。在这里,我们描述了一种基于结构的方法来减少脱靶切割。通过计算机蛋白质建模和能量计算,我们通过防止同二聚化和降低二聚化能量来提高靶位点切割的特异性。基于细胞的重组试验证实,修饰后的ZFN与原始ZFN具有相同的活性,但产生的基因毒性显著降低。安全性的提高可能会促进ZFN技术的治疗应用。

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