生物结合
肠肽酶
生物催化
化学
固定化酶
酶
共价键
生物化学
可重用性
融合蛋白
组织谷氨酰胺转胺酶
组合化学
重组DNA
催化作用
有机化学
程序设计语言
软件
离子液体
基因
计算机科学
作者
Jinghong Wang,Ming-Ze Tang,Xiaotian Yu,Chong-Mei Xu,Hong‐Ming Yang,Jinbao Tang
标识
DOI:10.1016/j.colsurfb.2019.02.018
摘要
Enterokinase (EK) is one of the most popular enzymes for the in vitro cleavage of fusion proteins due to its high degree of specificity for the amino-acid sequence (Asp)4-Lys. Enzyme reusability is desirable for reducing operating costs and facilitating the industrial application of EK. In this work, we report the controlled, site-specific and covalent cross-linking of an engineered EKLC on amine-modified magnetic nanoparticles (NH2-MNPs) via microbial transglutaminase-catalyzed bioconjugation for the development of the oriented-immobilized enzyme, namely, EKLC@NH2-MNP biocatalyst. Upon the site-specific immobilization, approximately 90% EKLC enzymatic activity was retained, and the biocatalyst exhibited more than 85% of initial enzymatic activity regardless of storage or reusable stability over a month. The EKLC@NH2-MNP biocatalyst was further applied to remove the His tag-(Asp)4-Lys fusion partner from the His tag-(Asp)4-Lys-(GLP-1)3 substrate fusion protein, result suggested the EKLC@NH2-MNP possessed remarkable reusability, without a significant decrease of enzymatic activity over 10 cycles (P > 0.05). Supported by the unique properties of MNPs, the proposed EKLC@NH2-MNP biocatalyst is expected to promote the economical utilization of enterokinase in fusion protein cleavage.
科研通智能强力驱动
Strongly Powered by AbleSci AI