Department of Applied Chemistry, National Chiao Tung University, 1001 University Road, Hsinchu, 300, Taiwan.
Present address: Research Institute for Electronic Science, Hokkaido University, N20W10, Kita-Ward, Sapporo, 001-0020, Japan.
Angew Chem Int Ed Engl. 2017 Jun 6;56(24):6739-6743. doi: 10.1002/anie.201702352. Epub 2017 May 15.
Protein amyloids have received much attention owing to their correlation with serious diseases and to their promising mechanical and optical properties as future materials. Amyloid formation has been conducted by tuning temperature and chemical conditions, so that its nucleation and the following growth are analyzed as ensemble dynamics. A single spherical assembly of amyloid fibrils of cytochrome c domain-swapped dimer was successfully generated upon laser trapping. The amyloid fibrillar structure was confirmed by fluorescence characterization and electron microscopy. The prepared spheres were further manipulated individually in solution to fabricate a three-dimensional microstructure and a line pattern. Amyloid formation dynamics and amyloid-based microstructure fabrication are demonstrated based on direct observation of a single spherical assembly, which foresees a new approach in amyloid studies.
由于其与严重疾病的相关性以及作为未来材料具有有前途的机械和光学性能,蛋白质淀粉样物受到了广泛关注。通过调节温度和化学条件来进行淀粉样形成,从而对其成核和随后的生长进行分析作为整体动力学。通过激光捕获成功地生成了细胞色素 c 结构域交换二聚体的单个淀粉样原纤维的球形组装体。通过荧光特性和电子显微镜证实了淀粉样纤维结构。进一步在溶液中单独操作制备的球体以制造三维微结构和线图案。基于对单个球形组装体的直接观察,展示了淀粉样形成动力学和基于淀粉样的微结构制造,这预示着淀粉样研究的新方法。