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Expanding the Boundary of Biocatalysis: Design and Optimization of in vitro Tandem Catalytic Reactions for Biochemical Production

机译:扩大生物催化的边界:生化生产的体外串联催化反应的设计和优化

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摘要

Biocatalysts have been increasingly used in the synthesis of fine chemicals and medicinal compounds due to significant advances in enzyme discovery and engineering. To mimic the synergistic effects of cascade reactions catalyzed by multiple enzymes in nature, researchers have been developing artificial tandem enzymatic reactions in vivo by harnessing synthetic biology and metabolic engineering tools. There is also growing interest in the development of one-pot tandem enzymatic or chemo-enzymatic processes in vitro due to their neat and concise catalytic systems and product purification procedures. In this review, we will briefly summarize the strategies of designing and optimizing in vitro tandem catalytic reactions, highlight a few representative examples, and discuss the future trend in this field.
机译:由于酶发现和工程学的重大进展,生物催化剂已越来越多地用于精细化学品和药用化合物的合成。为了模仿自然界中多种酶催化的级联反应的协同效应,研究人员已经在利用合成生物学和代谢工程工具开发了体内的人工串联酶促反应。由于它们整洁而简洁的催化系统和产物纯化程序,因此对体外一锅串联酶促或化学酶促过程的开发也越来越感兴趣。在本文中,我们将简要总结设计和优化体外串联催化反应的策略,重点介绍一些代表性实例,并讨论该领域的未来趋势。

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