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Data-informed discovery of hydrolytic nanozymes

Chemistry

Data-informed discovery of hydrolytic nanozymes

S. Li, Z. Zhou, et al.

Discover the revolutionary potential of nanozymes that exhibit enzyme-like activity with enhanced stability and environmental tolerance. This innovative research, conducted by Sirong Li and colleagues, tackles the optimization of hydrolytic nanozymes using data-driven strategies, achieving success in complex scenarios like biofilms.... show more
Abstract
Nanozyme is a collection of nanomaterials with enzyme-like activity but higher environmental tolerance and long-term stability than their natural counterparts. Improving the catalytic activity and expanding the category of nanozymes are prerequisites to complement or even supersede enzymes. However, the development of hydrolytic nanozymes is still challenged by diverse hydrolytic substrates and following complicated mechanisms. Here, two strategies are informed by data to screen and predict catalytic active sites of MOF (metal-organic framework) based hydrolytic nanozymes: (1) to increase the intrinsic activity by finely tuned Lewis acidity of the metal clusters; (2) to improve the density of active sites by shortening the length of ligands. Finally, as-obtained Ce-FMA-MOF-based hydrolytic nanozyme is capable of cleaving phosphate bonds, amide bonds, glycosidic bonds, and even their mixture, biofilms. This work provides a rational methodology to design hydrolytic nanozyme, enriches the diversity of nanozymes, and potentially sheds light on future evolution of enzyme engineering.
Publisher
Nature Communications
Published On
Feb 11, 2022
Authors
Sirong Li, Zijun Zhou, Zuoxiu Tie, Bing Wang, Meng Ye, Lei Du, Ran Cui, Wei Liu, Cuihong Wan, Quanyi Liu, Sheng Zhao, Quan Wang, Yihong Zhang, Shuo Zhang, Huigang Zhang, Yan Du, Hui Wei
Tags
Nanozymes
Catalytic sites
Metal-organic frameworks
Enzyme engineering
Hydrolytic activity
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