食品科学 ›› 2025, Vol. 46 ›› Issue (10): 378-424.doi: 10.7506/spkx1002-6630-20240703-041

• 专题论述 • 上一篇    下一篇

提升酶型时间-温度指示器热稳定性的酶工程策略研究进展

彭华康,张焕芝,王晨跃,王垚   

  1. (1.清华大学工程物理系,北京 100084;2.北京大学人民医院妇产科,北京 100000;3.深圳市清生元生物技术股份有限公司,广东 深圳 518000)
  • 出版日期:2025-05-25 发布日期:2025-05-07

Research Progress in Enzyme Engineering Strategies to Improve the Thermal Stability of Enzymatic Time-Temperature Indicators

PENG Huakang, ZHANG Huanzhi, WANG Chenyue, WANG Yao   

  1. (1. Department of Engineering Physics, Tsinghua University, Beijing 100084, China; 2. Department of Obstetrics and Gynecology, Peking Uniersity People’s Hospital, Beijing 100000, China; 3. Shenzhen Qingshengyuan Biotechnology Co. Ltd., Shenzhen 518000, China)
  • Online:2025-05-25 Published:2025-05-07

摘要: 食品安全关乎消费者身体健康。酶型时间-温度指示器可监测食品生产后的全程热积累量并产生直观的颜色变化以指示食品货架期,但酶的热稳定性限制了其推广和应用。酶工程可通过固定化、定向进化及理性设计等策略提高酶的热稳定性。近年来,机器学习等人工智能方法也被应用于酶工程,在复杂酶结构预测和热稳定性优化等方面表现出独特优势,为酶分子设计提供了新的可能。本文介绍酶工程改善酶热稳定性的主要策略,着重引述酶型时间-温度指示器常用酶的热稳定性改造,并展望其未来发展方向。

关键词: 酶型时间-温度指示器;酶工程;定向进化;理性设计;辅助设计

Abstract: Food safety is paramount to the health of consumers. Enzymatic time-temperature indicators are capable of monitoring the cumulative heat exposure after the production of food products and providing visual color changes indicative of product shelf life. However, the thermal stability of enzymes limits their widespread application. Enzyme engineering can enhance the thermal stability of enzymes through strategies such as immobilization, directed evolution, and rational design. In recent years, artificial intelligence methods like machine learning have been applied to enzyme engineering, demonstrating their unique advantages in predicting complex enzyme structures and addressing issues related to enzyme thermal stability, offering new possibilities for the design of enzyme molecules. This article reviews the primary enzyme engineering strategies for improving the thermal stability of enzymes, with a particular focus on the thermal stability modification of enzymes commonly used in time-temperature indicators, and discusses future development directions.

Key words: enzymatic time-temperature indicators; enzyme engineering; directed evolution; rational design; auxiliary design

中图分类号: