Institute of Multidisciplinary Research for Advanced Materials, Tohoku University, Katahira 2-1-1, Aoba-ku, Sendai 980-8577, Japan.
J Phys Chem B. 2010 Jan 14;114(1):480-6. doi: 10.1021/jp907731b.
Using an artificial peptide library, we have identified a peptide with affinity for ZnO materials that could be used to selectively accumulate ZnO particles on polypropylene-gold plates. In this study, we fused recombinant green fluorescent protein (GFP) with this ZnO-binding peptide (ZnOBP) and then selectively immobilized the fused protein on ZnO particles. We determined an appropriate condition for selective immobilization of recombinant GFP, and the ZnO-binding function of ZnOBP-fused GFP was examined by elongating the ZnOBP tag from a single amino acid to the intact sequence. The fusion of ZnOBP with GFP enabled specific adsorption of GFP on ZnO substrates in an appropriate solution, and thermodynamic studies showed a predominantly enthalpy-dependent electrostatic interaction between ZnOBP and the ZnO surface. The ZnOBP's binding affinity for the ZnO surface increased first in terms of material selectivity and then in terms of high affinity as the GFP-fused peptide was elongated from a single amino acid to intact ZnOBP. We concluded that the enthalpy-dependent interaction between ZnOBP and ZnO was influenced by the presence of not only charged amino acids but also their surrounding residues in the ZnOBP sequence.
我们利用人工肽文库鉴定出一种对 ZnO 材料具有亲和力的肽,这种肽可用于将 ZnO 颗粒选择性地聚集到聚丙烯-金板上。在本研究中,我们将重组绿色荧光蛋白(GFP)与这种 ZnO 结合肽(ZnOBP)融合,并将融合蛋白选择性地固定在 ZnO 颗粒上。我们确定了重组 GFP 选择性固定的合适条件,并通过将 ZnOBP 标签从单个氨基酸延长至完整序列,检验了 ZnOBP-fused GFP 的 ZnO 结合功能。ZnOBP 与 GFP 的融合使 GFP 在适当的溶液中特异性吸附到 ZnO 基底上,热力学研究表明 ZnOBP 与 ZnO 表面之间主要是依赖焓的静电相互作用。ZnOBP 与 ZnO 表面的结合亲和力首先在材料选择性方面增加,然后随着 GFP 融合肽从单个氨基酸延长至完整的 ZnOBP 而增加。我们得出结论,ZnOBP 与 ZnO 之间的焓依赖性相互作用不仅受到带电荷氨基酸的存在影响,而且还受到 ZnOBP 序列中其周围残基的影响。