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酶法合成氟化化合物。

Enzymatic synthesis of fluorinated compounds.

机构信息

State Key Laboratory of Food Nutrition and Safety, Key Laboratory of Industrial Microbiology, Ministry of Education, Tianjin Key Laboratory of Industry Microbiology, National and Local United Engineering Laboratory of Metabolic Control Fermentation Technology, College of Biotechnology, Tianjin University of Science & Technology, No. 29, Thirteenth Street, Binhai New District, Tianjin, 300457, China.

出版信息

Appl Microbiol Biotechnol. 2021 Nov;105(21-22):8033-8058. doi: 10.1007/s00253-021-11608-0. Epub 2021 Oct 9.

Abstract

Fluorinated compounds are widely used in the fields of molecular imaging, pharmaceuticals, and materials. Fluorinated natural products in nature are rare, and the introduction of fluorine atoms into organic compound molecules can give these compounds new functions and make them have better performance. Therefore, the synthesis of fluorides has attracted more and more attention from biologists and chemists. Even so, achieving selective fluorination is still a huge challenge under mild conditions. In this review, the research progress of enzymatic synthesis of fluorinated compounds is summarized since 2015, including cytochrome P450 enzymes, aldolases, fluoroacetyl coenzyme A thioesterases, lipases, transaminases, reductive aminases, purine nucleoside phosphorylases, polyketide synthases, fluoroacetate dehalogenases, tyrosine phenol-lyases, glycosidases, fluorinases, and multienzyme system. Of all enzyme-catalyzed synthesis methods, the direct formation of the C-F bond by fluorinase is the most effective and promising method. The structure and catalytic mechanism of fluorinase are introduced to understand fluorobiochemistry. Furthermore, the distribution, applications, and future development trends of fluorinated compounds are also outlined. Hopefully, this review will help researchers to understand the significance of enzymatic methods for the synthesis of fluorinated compounds and find or create excellent fluoride synthase in future research.Key points• Fluorinated compounds are distributed in plants and microorganisms, and are used in imaging, medicine, materials science.• Enzyme catalysis is essential for the synthesis of fluorinated compounds.• The loop structure of fluorinase is the key to forming the C-F bond.

摘要

氟化合物在分子成像、制药和材料等领域得到了广泛应用。自然界中氟代天然产物较为稀少,而将氟原子引入有机化合物分子中可以赋予这些化合物新的功能,使其具有更好的性能。因此,氟化物的合成引起了越来越多的生物学家和化学家的关注。即便如此,在温和条件下实现选择性氟化仍然是一个巨大的挑战。本综述总结了 2015 年以来酶法合成氟化合物的研究进展,包括细胞色素 P450 酶、醛缩酶、氟乙酰辅酶 A 硫酯酶、脂肪酶、转氨酶、还原胺酶、嘌呤核苷磷酸化酶、聚酮合酶、氟乙酸脱卤酶、酪氨酸酚裂解酶、糖苷酶、氟酶和多酶体系。在所有酶催化合成方法中,氟酶直接形成 C-F 键的方法最为有效和有前景。介绍氟酶的结构和催化机制有助于理解氟生物化学。此外,还概述了氟代化合物的分布、应用和未来发展趋势。希望本综述能帮助研究人员了解酶法合成氟代化合物的意义,并在未来的研究中找到或创造出优秀的氟合酶。

关键点

  1. 氟化合物分布在植物和微生物中,用于成像、医学和材料科学。

  2. 酶催化是合成氟化合物的关键。

  3. 氟酶的环结构是形成 C-F 键的关键。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5e6b/8500828/0500176880c7/253_2021_11608_Fig1_HTML.jpg

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