Hubei Engineering Research Center for Biomaterials and Medical Protective Materials, Ministry of Education Key Laboratory of Material Chemistry for Energy Conversion and Storage, Hubei Key Laboratory of Bioinorganic Chemistry & Materia Medica, School of Chemistry and Chemical Engineering, Huazhong University of Science and Technology (HUST), 1037 Luoyu Road, Wuhan, 430074, China.
Macromol Rapid Commun. 2022 Sep;43(18):e2200195. doi: 10.1002/marc.202200195. Epub 2022 May 26.
Enzymes with excellent catalytic performance play important roles in living organisms. Advances in strategies for enzyme chemical modification have enabled powerful strategies for exploring and manipulating enzyme functions and activities. Based on the development of chemical enzyme modifications, incorporating external stimuli-responsive features-for example, responsivity to light, voltage, magnetic force, pH, temperature, redox activity, and small molecules-into a target enzyme to turn "on" and "off" its activity has attracted much attention. The ability to precisely control enzyme activity using different approaches will greatly expand the chemical biology toolbox for clarification and detection of signal transduction and in vivo enzyme function and significantly promote enzyme-based disease therapy. This review summarizes the methods available for chemical enzyme modification mainly for the off-/on control of enzyme activity and particularly highlights the recent progress regarding the applications of this strategy.
具有优异催化性能的酶在生物体内发挥着重要作用。酶化学修饰策略的进步为探索和操纵酶功能和活性提供了强大的策略。基于化学酶修饰的发展,将外部刺激响应特性(例如对光、电压、磁力、pH 值、温度、氧化还原活性和小分子的响应性)整合到目标酶中,以开启和关闭其活性,引起了广泛关注。使用不同方法精确控制酶活性的能力将极大地扩展用于阐明和检测信号转导以及体内酶功能的化学生物学工具包,并显著促进基于酶的疾病治疗。本综述总结了主要用于酶活性的关闭/开启控制的化学酶修饰方法,并特别强调了该策略的最新应用进展。