漆酶
固定化酶
化学
共价键
糖类聚合物
生物降解
吸附
酶
甘露糖
色谱法
组合化学
有机化学
生物化学
聚合物
共聚物
作者
Chunyang Bao,Yan Wang,Xiumei Xu,Die Li,Jing Chen,Zhangbin Guan,Bingyu Wang,Mei Hong,Jingyu Zhang,Tianheng Wang,Qiang Zhang
标识
DOI:10.1016/j.biortech.2021.126026
摘要
It is challenging to regenerate enzyme carriers when covalently immobilized enzymes suffered from inactivation during continuous operations. Hence, it is urgent to develop a facile strategy to immobilize enzymes reversibly. Herein, the non-covalent interaction between protein and carbohydrate was used to adsorb and desorb enzymes reversibly. Laccase was immobilized onto glycopolymer microspheres via protein-carbohydrate interaction using lectins as the intermediates. The enzyme loading and immobilization yield were up to 49 mg/g and 77.1% with highly expressed activity of 107.9 U/mg. The immobilized laccase exhibited enhanced pH stability and high activity in catalyzing the biodegradation of paracetamol. During ten successive recoveries, the immobilized laccases could be recycled while maintaining relatively high enzyme activity. The glycopolymer microspheres could be efficiently regenerated by elution with an aqueous solution of mannose or acid for further enzyme immobilization. This glycopolymer microspheres has excellent potential to act as reusable carriers for the non-covalent immobilization of different enzymes.
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