Lee In Hwan, Ahn Byungjun, Lee Jeong Min, Lee Chang Soo, Jung Yongwon
Department of Chemistry, Korea Advanced Institute of Science and Technology, Daejeon 305-701, Korea.
Analyst. 2015 May 21;140(10):3543-50. doi: 10.1039/c4an02400a. Epub 2015 Apr 7.
Water-soluble fluorescent silver nanoclusters (NCs) formed on biomolecule ligands have been extensively studied due to their great potential as new biocompatible fluorescent materials for biosensors. As synthetic ligands, proteins in particular can provide unique structures and functions to the assembled fluorescent silver clusters. A key challenge, however, is to develop appropriate protein ligands and synthetic approaches for cluster formation, especially using native aqueous solutions, to fully preserve the valuable properties of the protein templates. Here we report a human ferritin-templated synthesis of fluorescent silver NCs under neutral aqueous buffer conditions. The unique metal binding property of ferritin and an optimized silver ion reduction allowed us to produce highly stable fluorescent silver NCs that are steadily assembled in the cage-like ferritin proteins. The fluorescent clusters were also successfully assembled on genetically engineered ferritin with antibody-binding protein G. The resulting protein G-ferritin-silver NC complex fully retained the ferritin structure as well as the antibody binding ability. The present silver nanoclusters on ferritin (Ft-Ag NCs) also showed highly specific Cu(2+)-induced fluorescence quenching. By exploiting the large but stable nature of ferritin, we fabricated a highly robust and porous hydrogel sensor system for rapid Cu(2+) detection, where the Ft-Ag NCs were stably encapsulated in surface-bound hydrogels with large pore sizes. Our Ft-Ag NCs that are formed under native aqueous conditions will have great potential as a new fluorescent material with the high structural and functional diversities of ferritin.
基于生物分子配体形成的水溶性荧光银纳米团簇(NCs)作为生物传感器新型生物相容性荧光材料具有巨大潜力,因而受到广泛研究。作为合成配体,蛋白质尤其能够为组装的荧光银团簇提供独特的结构和功能。然而,一个关键挑战是开发合适的蛋白质配体和用于团簇形成的合成方法,特别是在天然水溶液中,以充分保留蛋白质模板的宝贵特性。在此,我们报道了在中性水性缓冲条件下以人铁蛋白为模板合成荧光银纳米团簇。铁蛋白独特的金属结合特性和优化的银离子还原过程使我们能够制备出高度稳定的荧光银纳米团簇,这些团簇稳定地组装在笼状铁蛋白中。荧光团簇还成功地组装在带有抗体结合蛋白G的基因工程铁蛋白上。所得的蛋白G - 铁蛋白 - 银纳米团簇复合物完全保留了铁蛋白结构以及抗体结合能力。目前铁蛋白上的银纳米团簇(Ft - Ag NCs)也表现出高度特异性的铜离子诱导荧光猝灭。通过利用铁蛋白大且稳定的特性,我们制备了一种用于快速检测铜离子的高度稳健且多孔的水凝胶传感器系统,其中Ft - Ag NCs稳定地封装在具有大孔径的表面结合水凝胶中。我们在天然水性条件下形成的Ft - Ag NCs作为一种具有铁蛋白高度结构和功能多样性的新型荧光材料将具有巨大潜力。