Qu Rui, Shi Hejin, Wang Ruolin, Cheng Tangjian, Ma Rujiang, An Yingli, Shi Linqi
State Key Laboratory of Medicinal Chemical Biology, Key Laboratory of Functional Polymer Materials, Ministry of Education, Institute of Polymer Chemistry, Collaborative Innovation Center of Chemical Science and Engineering (Tianjin), Nankai University, Tianjin, 300071, P. R. China.
Biomater Sci. 2017 Feb 28;5(3):570-577. doi: 10.1039/c6bm00813e.
Artificial enzymes are widely investigated to mimic the active center and the recognition center of natural enzymes. The active center is responsible for the catalytic activity of enzymes, and the recognition center provides enzymes with specificity. Most of the previous studies on artificial enzymes preferred to solve the problem of activity rather than specificity due to the complexity of the enzyme structures related to substrate recognition. Inspired by the multilevel structures of enzymes and the unique net-structures of hydrogels, hemin-micelles immobilized in alginate hydrogels (HM-AH) were constructed by multistep self-assembly. The hemin-micelle was the active center and mimicked the microenvironment of the catalytic site in horseradish peroxidase (HRP). The alginate hydrogel further enhanced the catalytic activity and stability of hemin-micelles and endowed the artificial enzymes with a catalytic capability in harsh water conditions and non-polar organic solvents. The hydrogel also served as the recognition center, which exhibited substrate selectivity owing to the diffusivity differentiations of substrates in hydrogel fibers. It is the first example of constructing a micelle-hydrogel complex system as an artificial enzyme with both catalytic activity and substrate selectivity by the method of multistep self-assembly.
人工酶被广泛研究以模拟天然酶的活性中心和识别中心。活性中心负责酶的催化活性,而识别中心赋予酶特异性。由于与底物识别相关的酶结构复杂,以往大多数关于人工酶的研究更倾向于解决活性问题而非特异性问题。受酶的多级结构和水凝胶独特网络结构的启发,通过多步自组装构建了固定在海藻酸盐水凝胶中的血红素 - 胶束(HM - AH)。血红素 - 胶束作为活性中心,模拟了辣根过氧化物酶(HRP)催化位点的微环境。海藻酸盐水凝胶进一步增强了血红素 - 胶束的催化活性和稳定性,并赋予人工酶在苛刻的水性条件和非极性有机溶剂中的催化能力。水凝胶还作为识别中心,由于底物在水凝胶纤维中的扩散差异而表现出底物选择性。这是通过多步自组装方法构建胶束 - 水凝胶复合体系作为具有催化活性和底物选择性的人工酶的首个实例。