School of Chemistry, University College Dublin, Belfield, Dublin 4, Ireland.
Manchester Institute of Biotechnology, School of Chemistry, University of Manchester, 131 Princess Street, Manchester, M1 7DN, UK.
Chem Soc Rev. 2024 Mar 18;53(6):2828-2850. doi: 10.1039/d3cs00689a.
Biocatalysis has become an important tool in chemical synthesis, allowing access to complex molecules with high levels of activity and selectivity and with low environmental impact. Key discoveries in protein engineering, bioinformatics, recombinant technology and DNA sequencing have contributed towards the rapid acceleration of the field. This tutorial review explores enzyme engineering strategies and high-throughput screening approaches that have been applied for the discovery and development of enzymes for synthetic application. Landmark developments in the field are discussed and have been carefully selected to highlight the diverse synthetic applications of enzymes within the pharmaceutical, agricultural, food and chemical industries. The design and development of artificial biocatalytic cascades is also examined. This tutorial review will give readers an insight into the landmark discoveries and milestones that have helped shape and grow this branch of catalysis since the discovery of the first enzyme.
生物催化已成为化学合成的重要工具,它可以获得具有高活性和选择性、低环境影响的复杂分子。在蛋白质工程、生物信息学、重组技术和 DNA 测序方面的重要发现推动了该领域的快速发展。本综述探讨了酶工程策略和高通量筛选方法,这些方法已被应用于发现和开发用于合成应用的酶。本文讨论了该领域的标志性发展,并精心挑选了这些发展,以突出酶在制药、农业、食品和化学工业中的多种合成应用。还研究了人工生物催化级联的设计和开发。本综述将使读者深入了解自发现第一种酶以来,帮助塑造和发展这一催化分支的里程碑式发现和成就。