The Shmunis School of Biomedicine and Cancer Research, Tel Aviv University, Israel.
Kuang Yaming Honors School & Institute for Brain Sciences, Nanjing University, China.
Angew Chem Int Ed Engl. 2021 Jul 26;60(31):17164-17170. doi: 10.1002/anie.202105830. Epub 2021 Jun 24.
The structural arrangement of amino acid residues in native enzymes underlies their remarkable catalytic properties, thus providing a notable point of reference for designing potent yet simple biomimetic catalysts. Herein, we describe a minimalistic approach to construct a dipeptide-based nano-superstructure with enzyme-like activity. The self-assembled biocatalyst comprises one peptide as a single building block, readily synthesized from histidine. Through coordination with zinc ion, the peptide self-assembly procedure allows the formation of supramolecular β-sheet ordered nanocrystals, which can be used as basic units to further construct higher-order superstructure. As a result, remarkable hydrolysis activity and enduring stability are demonstrated. Our work exemplifies the use of a bioinspired supramolecular assembly approach to develop next-generation biocatalysts for biotechnological applications.
天然酶中氨基酸残基的结构排列是其具有显著催化特性的基础,因此为设计高效而简单的仿生催化剂提供了重要的参考依据。在此,我们描述了一种构建基于二肽的具有酶样活性的纳米超结构的简约方法。这种自组装生物催化剂由一个作为单个构建块的肽组成,很容易从组氨酸合成。通过与锌离子的配位,肽自组装过程允许形成超分子β-折叠有序纳米晶体,这些晶体可作为基本单元进一步构建更高阶的超结构。结果表明,该纳米超结构具有显著的水解活性和持久的稳定性。我们的工作展示了一种受生物启发的超分子组装方法的应用,用于开发用于生物技术应用的下一代生物催化剂。