Isalan M, Klug A, Choo Y
MRC Laboratory of Molecular Biology, Cambridge, UK.
Biochemistry. 1998 Sep 1;37(35):12026-33. doi: 10.1021/bi981358z.
Zinc fingers are small DNA-binding modules noted for their occurrence in a large number of eukaryotic transcription factors, and their use in protein engineering. Although it was expected that zinc fingers can bind to a wide diversity of DNA sequences, previous studies using model zinc finger domains from Zif268 (and Sp1) have revealed a potential limitation to the DNA-binding specificity. For example, phage display selection of individual zinc fingers to recognize trinucleotide DNA subsites returned fingers that bound specifically only to triplets of the form GNN, i.e., triplets with guanine at the 5' end. Following our recently reported work [Isalan, M., Choo, Y., and Klug, A. (1997) Proc. Natl. Acad. Sci. U.S.A. 94, 5617-5621], we now show that this limitation can be overcome by the concerted randomization of certain amino acid positions in adjacent zinc fingers that specify overlapping DNA subsites. This illustrates an important mechanism underlying DNA recognition by arrays of zinc fingers, and points the way to improved strategies for the design of highly specific zinc finger proteins that bind any given nucleotide sequence.
锌指是一种小型的DNA结合模块,因其在大量真核转录因子中的存在以及在蛋白质工程中的应用而闻名。尽管人们预期锌指能够与多种不同的DNA序列结合,但先前使用来自Zif268(和Sp1)的模型锌指结构域进行的研究揭示了DNA结合特异性方面的一个潜在限制。例如,通过噬菌体展示筛选能够识别三核苷酸DNA亚位点的单个锌指,得到的锌指仅能特异性结合5'端为鸟嘌呤的GNN形式的三联体,即仅能特异性结合特定形式的三联体。继我们最近报道的工作[Isalan, M., Choo, Y., and Klug, A. (1997) Proc. Natl. Acad. Sci. U.S.A. 94, 5617 - 5621]之后,我们现在表明,通过对指定重叠DNA亚位点的相邻锌指中某些氨基酸位置进行协同随机化,可以克服这一限制。这阐明了锌指阵列识别DNA的一个重要机制,并为设计能够结合任何给定核苷酸序列的高特异性锌指蛋白提供了改进策略的方向。