Meng Xiangdong, Thibodeau-Beganny Stacey, Jiang Tao, Joung J Keith, Wolfe Scot A
Program in Gene Function and Expression, University of Massachusetts Medical School, 364 Plantation St, Worcester, MA 01605, USA.
Nucleic Acids Res. 2007;35(11):e81. doi: 10.1093/nar/gkm385. Epub 2007 May 30.
The C2H2 zinc finger is the most commonly utilized framework for engineering DNA-binding domains with novel specificities. Many different selection strategies have been developed to identify individual fingers that possess a particular DNA-binding specificity from a randomized library. In these experiments, each finger is selected in the context of a constant finger framework that ensures the identification of clones with a desired specificity by properly positioning the randomized finger on the DNA template. Following a successful selection, multiple zinc-finger clones are typically recovered that share similarities in the sequences of their DNA-recognition helices. In principle, each of the clones isolated from a selection is a candidate for assembly into a larger multi-finger protein, but to date a high-throughput method for identifying the most specific candidates for incorporation into a final multi-finger protein has not been available. Here we describe the development of a specificity profiling system that facilitates rapid and inexpensive characterization of engineered zinc-finger modules. Moreover, we demonstrate that specificity data collected using this system can be employed to rationally design zinc fingers with improved DNA-binding specificities.
C2H2锌指是用于构建具有新特异性的DNA结合结构域最常用的框架。已经开发了许多不同的筛选策略,以从随机文库中鉴定出具有特定DNA结合特异性的单个锌指。在这些实验中,每个锌指都在一个恒定的锌指框架背景下进行筛选,该框架通过将随机化的锌指正确定位在DNA模板上,确保鉴定出具有所需特异性的克隆。成功筛选后,通常会回收多个在其DNA识别螺旋序列上具有相似性的锌指克隆。原则上,从一次筛选中分离出的每个克隆都是组装成更大的多锌指蛋白的候选者,但迄今为止,尚未有一种高通量方法可用于鉴定最适合纳入最终多锌指蛋白的候选者。在此,我们描述了一种特异性分析系统的开发,该系统有助于对工程化锌指模块进行快速且低成本的表征。此外,我们证明使用该系统收集的特异性数据可用于合理设计具有改进的DNA结合特异性的锌指。