Facile purification and immobilization of organophosphorus hydrolase on protein-inorganic hybrid phosphate nanosheets
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Facile purification and immobilization of organophosphorus hydrolase on protein-inorganic hybrid phosphate nanosheets
Facile purification and immobilization of organophosphorus hydrolase on protein-inorganic hybrid phosphate nanosheets
中国化学工程学报(英文版)2023年56卷第4期 页码:119-125
Affiliations:
Department of Biochemical Engineering, School of Chemical Engineering and Technology and Key Laboratory of Systems Bioengineering and Frontiers Science Center for Synthetic Biology (Ministry of Education), Tianjin University,Tianjin,China,300350
Zhenfu Wang, Jie Gao, Qinghong Shi, 等. Facile purification and immobilization of organophosphorus hydrolase on protein-inorganic hybrid phosphate nanosheets[J]. 中国化学工程学报(英文版), 2023,56(4):119-125.
Zhenfu Wang, Jie Gao, Qinghong Shi, Xiaoyan Dong, Yan Sun. Facile purification and immobilization of organophosphorus hydrolase on protein-inorganic hybrid phosphate nanosheets[J]. Chinese Journal of Chemical Engineering, 2023, 56(4): 119-125.
Zhenfu Wang, Jie Gao, Qinghong Shi, 等. Facile purification and immobilization of organophosphorus hydrolase on protein-inorganic hybrid phosphate nanosheets[J]. 中国化学工程学报(英文版), 2023,56(4):119-125.DOI: 10.1016/j.cjche.2022.07.017.
Zhenfu Wang, Jie Gao, Qinghong Shi, Xiaoyan Dong, Yan Sun. Facile purification and immobilization of organophosphorus hydrolase on protein-inorganic hybrid phosphate nanosheets[J]. Chinese Journal of Chemical Engineering, 2023, 56(4): 119-125.DOI: 10.1016/j.cjche.2022.07.017.
Facile purification and immobilization of organophosphorus hydrolase on protein-inorganic hybrid phosphate nanosheets
Oriented immobilization of enzymes helps to maintain their native structure and proper orientation for high-performance engineering to meet extensive biocatalysis demands. However
the supporting materials used for orientated immobilization are usually costly or complicated in preparation
affecting their practical applications. In this work
a facile purification and immobilization method was proposed for enzyme immobilization based on organic–inorganic hybrid calcium phosphate nanocrystal (CaPs) induced by Cu
2+
modified bovine serum albumin (BSA-Cu). Then
the as-prepared hybrid calcium phosphate nanosheet
BSA-Cu@CaPs
was utilized for one-pot purification and immobilization of His-tagged organophosphorus hydrolase (OPH) by metal-affinity binding to the incorporated BSA. BSA-Cu@CaPs-OPH exhibited enhanced pH stability and thermal stability compared to the free enzyme. Moreover
BSA-Cu@CaPs-OPH could retain more than 75% and 56% of initial activity after reuse 5 and 10 times
respectively. The results demonstrated that this facile strategy was promising for the effective biodegradation of organophosphorus pesticides with the immobilized enzyme.
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相关作者
Yilun Dong
Kang Xue
Zexing He
Chongjun Li
Ruijie Gao
Zhenfeng Huang
Chengxiang Shi
Xiangwen Zhang
相关机构
Haihe Laboratory of Sustainable Chemical Transformations
Collaborative Innovative Center of Chemical Science and Engineering (Tianjin)
National Industry-Education Platform for Energy Storage, Tianjin University
Key Laboratory for Green Chemical Technology of the Ministry of Education, Institute of Molecular Plus, School of Chemical Engineering and Technology, Tianjin University
Guangdong Provincial Engineering & Technology Center for Corrosion and Safety in Petrochemical Industry, School of Chemical Engineering, Guangdong University of Petrochemical Technology