Department of Mechanical Engineering, University of California, Berkeley, CA, 94720, USA.
Center for Intelligent Microprocess of Pharmaceutical Synthesis (CIMPS), Department of Chemical Engineering, Pohang University of Science and Technology (POSTECH), Pohang, 790-784, Republic of Korea.
Angew Chem Int Ed Engl. 2018 May 14;57(20):5630-5634. doi: 10.1002/anie.201713261. Epub 2018 Apr 23.
There has been significant progress in the self-assembly of biological materials, but the one-step covalent peptide self-assembly for well-defined nanostructures is still in its infancy. Inspired by the biological functions of tyrosine, a covalently assembled fluorescent peptide nanogel is developed by a ruthenium-mediated, one-step photo-crosslinking of tyrosine-rich short peptides under the visible light within 6 minutes. The covalently assembled peptide nanogel is stable in various organic solvents and different pH levels, unlike those made from vulnerable non-covalent assemblies. The semipermeable peptide nanogel with a high density of redox-active tyrosine acts as a novel nano-bioreactor, allowing the formation of uniform metal-peptide hybrids by selective biomineralization under UV irradiation. As such, this peptide nanogel could be useful in the design of novel nanohybrids and peptidosomes possessing functional nanomaterials.
在生物材料的自组装方面已经取得了重大进展,但一步法的共价肽自组装用于制备具有明确结构的纳米结构仍然处于起步阶段。受酪氨酸生物功能的启发,通过可见光下钌介导的富含酪氨酸的短肽的一步法光交联,在 6 分钟内制备了共价组装的荧光肽纳米凝胶。与那些由脆弱的非共价组装制成的纳米凝胶不同,这种共价组装的肽纳米凝胶在各种有机溶剂和不同 pH 值下都很稳定。具有高密度氧化还原活性酪氨酸的半渗透肽纳米凝胶作为一种新型的纳米生物反应器,允许在 UV 照射下通过选择性生物矿化形成均匀的金属-肽杂化物。因此,这种肽纳米凝胶在设计具有功能纳米材料的新型纳米杂化物和肽囊方面可能是有用的。