Institute for Chemical Research, Kyoto University, Uji, Kyoto 611-0011, Japan.
Biochemistry. 2012 Apr 24;51(16):3342-8. doi: 10.1021/bi300236m. Epub 2012 Apr 15.
CCHH-type zinc fingers are among the most common DNA binding motifs found in eukaryotes. In a previous report, we substituted the second ligand cysteine residue with aspartic acid, producing a Zn(II)-responsive transcription factor; this indicates that a ligand substitution is a possible design target of an engineered zinc finger peptide. Despite the importance of Zn(II) binding with respect to the folding and DNA binding properties of a zinc finger peptide, no study about the effects of ligand substitution on both Zn(II) binding and DNA binding properties has been reported. Here, we substituted a conserved cysteine (C) with other zinc-coordinated amino acid residues, histidine (H), aspartic acid (D), and glutamic acid (E), to create CXHH-type zinc finger peptides (X = C, H, D, and E). The Zn(II)-dependent conformational change was observed in all peptides; however, the Zn(II) binding affinity and metal coordination geometry of the peptides were different. Gel mobility shift assays showed that the Zn(II)-bound forms of the ligand-substituted derivatives retain DNA binding ability, while the DNA binding affinity decreased in the following manner: CCHH > CDHH > CEHH ≫ CHHH. The DNA binding sequence preferences of the ligand-substituted derivatives were similar to that of the wild type in the context of the full three-finger DNA-binding domain of transcription factor Zif268. These results indicate that artificial zinc finger proteins with various DNA binding affinities that respond to a diverse range of Zn(II) concentrations can be designed by substituting the Zn(II) ligand.
CCHH 型锌指是真核生物中最常见的 DNA 结合基序之一。在之前的一份报告中,我们用天冬氨酸取代了第二个配体半胱氨酸残基,产生了一个 Zn(II)响应转录因子;这表明配体取代是工程化锌指肽的一个可能设计目标。尽管 Zn(II)结合对于锌指肽的折叠和 DNA 结合特性很重要,但尚未有研究报道配体取代对 Zn(II)结合和 DNA 结合特性的影响。在这里,我们用其他锌配位氨基酸残基组氨酸 (H)、天冬氨酸 (D) 和谷氨酸 (E) 取代了保守的半胱氨酸 (C),从而创造了 CXHH 型锌指肽 (X = C、H、D 和 E)。所有肽都观察到了 Zn(II)依赖性构象变化;然而,肽的 Zn(II)结合亲和力和金属配位几何形状不同。凝胶迁移率变动分析显示,配体取代衍生物的 Zn(II)结合形式保留了 DNA 结合能力,而 DNA 结合亲和力按以下顺序降低:CCHH > CDHH > CEHH ≫ CHHH。在转录因子 Zif268 的完整三指 DNA 结合结构域的背景下,配体取代衍生物的 DNA 结合序列偏好与野生型相似。这些结果表明,通过取代 Zn(II)配体,可以设计出具有各种 DNA 结合亲和力并对不同 Zn(II)浓度做出响应的人工锌指蛋白。