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酶促氧化和氨基官能化在生物催化级联合成中的应用:最新进展和未来展望。

Enzymatic Oxy- and Amino-Functionalization in Biocatalytic Cascade Synthesis: Recent Advances and Future Perspectives.

机构信息

Department of Chemical and Pharmaceutical Biology, University of Groningen, Antonius Deusinglaan 1, 9713 AV, Groningen, The Netherlands.

出版信息

Angew Chem Int Ed Engl. 2023 Nov 27;62(48):e202309012. doi: 10.1002/anie.202309012. Epub 2023 Sep 12.

Abstract

Biocatalytic cascades are a powerful tool for building complex molecules containing oxygen and nitrogen functionalities. Moreover, the combination of multiple enzymes in one pot offers the possibility to minimize downstream processing and waste production. In this review, we illustrate various recent efforts in the development of multi-step syntheses involving C-O and C-N bond-forming enzymes to produce high value-added compounds, such as pharmaceuticals and polymer precursors. Both in vitro and in vivo examples are discussed, revealing the respective advantages and drawbacks. The use of engineered enzymes to boost the cascades outcome is also addressed and current co-substrate and cofactor recycling strategies are presented, highlighting the importance of atom economy. Finally, tools to overcome current challenges for multi-enzymatic oxy- and amino-functionalization reactions are discussed, including flow systems with immobilized biocatalysts and cascades in confined nanomaterials.

摘要

生物催化级联反应是构建含有氧和氮官能团的复杂分子的有力工具。此外,将多种酶组合在一个反应体系中,还可以最大限度地减少下游处理和废物生成。在这篇综述中,我们展示了涉及 C-O 和 C-N 键形成酶的多步合成的最新进展,以生产高附加值的化合物,如药物和聚合物前体。讨论了体外和体内的例子,揭示了各自的优缺点。还讨论了使用工程酶来提高级联反应的效果,以及当前的共底物和辅酶回收策略,突出了原子经济性的重要性。最后,讨论了克服多酶氧化和氨基官能化反应当前挑战的工具,包括固定化生物催化剂的流动系统和受限纳米材料中的级联反应。

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