化学
部分
组氨酸
铜
酪氨酸酶
撑杆
流线、条纹线和路径线
生物化学
组合化学
立体化学
有机化学
氨基酸
酶
航空航天工程
机械工程
工程类
作者
Lei Nie,Hui Zhang,Weiheng Kong,Rongmei Kong,Ensheng Zhang,Li Jin,Yan Zhao,Fengli Qu
标识
DOI:10.1021/acs.analchem.4c01966
摘要
Designing artificial mimetic enzymes with high activity/selectivity to replace chiral bioenzymes is of great interest in the development of chiral materials consisting of molecules, enantiomers, that exist in two forms as mirror images of one another but cannot be superimposed. In this study, the chiral catalytic structural unit was streamlined from tyrosinase to integrate a mimetic nanozyme. The chiral amino acid l-histidine, as the chiral binding/recognition site, and the active metal site Cu were coupled (Cu@l-His) to create a copper–histidine brace with enantioselective catalytic ability to tyrosinol enantiomers. Results of kinetic parameters and activation energies confirmed the excellent peroxidase-like activity with a preference of Cu@l-His to l-tyrosinol. Such a preference could be attributed to the structurally oriented copper–histidine brace with a stronger affinity and catalytic activity to l-tyrosinol. By accurately evaluating chiral recognition units derived from bioenzymes, stable and superior chiral mimetic nanoenzymes could be constructed in a more straightforward and simplified manner, and they could also be extended to the reconstruction of diverse chiral enzymes.
科研通智能强力驱动
Strongly Powered by AbleSci AI