Desjarlais J R, Berg J M
Thomas C. Jenkins Department of Biophysics, Johns Hopkins University, Baltimore, MD 21218.
Proc Natl Acad Sci U S A. 1993 Mar 15;90(6):2256-60. doi: 10.1073/pnas.90.6.2256.
We have designed three zinc-finger proteins with different DNA binding specificities. The design strategy combines a consensus zinc-finger framework sequence with previously characterized recognition regions such that the specificity of each protein is predictable. The first protein consists of three identical zinc fingers, each of which was expected to recognize the subsite GCG. This protein binds specifically to the sequence 5'-GCG-GCG-GCG-3' with a dissociation constant of approximately 11 microM. The second protein has three zinc fingers with different predicted preferred subsites. This protein binds to the predicted recognition site 5'-GGG-GCG-GCT-3' with a dissociation constant of 2 nM. Furthermore, selection experiments indicate that this is the optimal binding site. A permuted version of the second protein was also constructed and shown to preferentially recognize the corresponding permuted site 5'-GGG-GCT-GCG-3' over the non-permuted site. These results indicate that earlier observations on the specificity of zinc fingers can be extended to generalized zinc-finger structures and realize the use of zinc fingers for the design of site-specific DNA binding proteins. This consensus-based design system provides a useful model system with which to study details of zinc-finger-DNA specificity.
我们设计了三种具有不同DNA结合特异性的锌指蛋白。设计策略将一个共有锌指框架序列与先前已表征的识别区域相结合,从而使每种蛋白的特异性是可预测的。第一种蛋白由三个相同的锌指组成,每个锌指预期识别亚位点GCG。这种蛋白以约11微摩尔的解离常数特异性结合序列5'-GCG-GCG-GCG-3'。第二种蛋白有三个具有不同预测偏好亚位点的锌指。这种蛋白以2纳摩尔的解离常数结合预测的识别位点5'-GGG-GCG-GCT-3'。此外,筛选实验表明这是最佳结合位点。还构建了第二种蛋白的一个重排版本,并显示其优先识别相应的重排位点5'-GGG-GCT-GCG-3'而非未重排位点。这些结果表明,早期关于锌指特异性的观察结果可以扩展到广义的锌指结构,并实现利用锌指设计位点特异性DNA结合蛋白。这种基于共有序列的设计系统提供了一个有用的模型系统,可用于研究锌指-DNA特异性的细节。