Jamieson A C, Wang H, Kim S H
Department of Chemistry, University of California, Berkeley 94720, USA.
Proc Natl Acad Sci U S A. 1996 Nov 12;93(23):12834-9. doi: 10.1073/pnas.93.23.12834.
We have used two monovalent phage display libraries containing variants of the Zif268 DNA-binding domain to obtain families of zinc fingers that bind to alterations in the last 4 bp of the DNA sequence of the Zif268 consensus operator, GCG TGGGCG. Affinity selection was performed by altering the Zif268 operator three base pairs at a time, and simultaneously selecting for sets of 16 related DNA sequences. In this way, only four experiments were required to select for all possible 64 combinations of DNA triplet sequences. The results show that (i) for high-affinity DNA binding in the range observed for the Zif268 wild-type complex (Kd = 0.5-5 nM), finger 1 specifically requires the arginine at the carboxy terminus of its recognition helix that forms a bidentate hydrogen-bond with the guanine base (G) in the crystal structure of Zif268 complexed to its DNA operator sequence GCG TGG GCG; (ii) when the guanine base (G) is replaced by A, C, or T, a lower-affinity family (Kd > or = 50 nM) can be detected that shows an overall tendency to bind G-rich DNA; (iii) the residues at position 2 on the finger 2 recognition helix do not appear to interact strongly with the complementary 5' base in the finger 1 binding site; and (iv) unexpected substitutions at the amino terminus of finger 1 can occasionally result in specificity for the 3' base in the finger 1 binding site. A DNA recognition directory was constructed for high-affinity zinc fingers that recognize all three bases in a DNA triplet for seven sequences of the type GNN. Similar approaches may be applied to other zinc fingers to broaden the scope of the directory.
我们使用了两个包含Zif268 DNA结合结构域变体的单价噬菌体展示文库,以获得与Zif268共有操纵子GCG TGGGCG的DNA序列最后4个碱基的改变相结合的锌指家族。通过每次改变Zif268操纵子的三个碱基对,并同时选择16个相关DNA序列的集合来进行亲和选择。通过这种方式,仅需进行四个实验就可以选择出DNA三联体序列的所有64种可能组合。结果表明:(i)对于在Zif268野生型复合物中观察到的高亲和力DNA结合范围(Kd = 0.5 - 5 nM),手指1特别需要其识别螺旋羧基末端的精氨酸,该精氨酸在与DNA操纵序列GCG TGG GCG复合的Zif268晶体结构中与鸟嘌呤碱基(G)形成双齿氢键;(ii)当鸟嘌呤碱基(G)被A、C或T取代时,可以检测到一个低亲和力家族(Kd≥50 nM),该家族总体上显示出与富含G的DNA结合的趋势;(iii)手指2识别螺旋上第2位的残基似乎与手指1结合位点中的互补5'碱基没有强烈相互作用;(iv)手指1氨基末端的意外取代偶尔会导致对手指1结合位点中3'碱基的特异性。构建了一个DNA识别目录,用于识别GNN类型的七个序列中DNA三联体中所有三个碱基的高亲和力锌指。类似的方法可应用于其他锌指,以扩大目录范围。