Liu Jiawang, Liu Anan, Hu Youcai
State Key Laboratory of Bioactive Substance and Function of Natural Medicines, Institute of Materia Medica, Chinese Academy of Medical Sciences, Peking Union Medical College, Beijing, China.
Nat Prod Rep. 2021 Aug 1;38(8):1469-1505. doi: 10.1039/d0np00063a. Epub 2021 Jan 6.
Covering: up to August 2020The dramatic increase in the identification of dimeric natural products generated by microorganisms and plants has played a significant role in drug discovery. The biosynthetic pathways of these products feature inherent dimerization reactions, which are valuable for biosynthetic applications and chemical transformations. The extraordinary mechanisms of the dimerization of secondary metabolites should advance our understanding of the uncommon chemical rules for natural product biosynthesis, which will, in turn, accelerate the discovery of dimeric reactions and molecules in nature and provide promising strategies for the total synthesis of natural products through dimerization. This review focuses on the enzymes involved in the dimerization in the biosynthetic pathway of microbial natural products, with an emphasis on cytochrome P450s, laccases, and intermolecular [4 + 2] cyclases, along with other atypical enzymes. The identification, characterization, and catalytic landscapes of these enzymes are also introduced.
截至2020年8月
微生物和植物产生的二聚体天然产物的鉴定数量急剧增加,这在药物发现中发挥了重要作用。这些产物的生物合成途径具有固有的二聚化反应,这对于生物合成应用和化学转化具有重要价值。次生代谢产物二聚化的非凡机制应能增进我们对天然产物生物合成中不常见化学规则的理解,进而加速自然界中二聚化反应和分子的发现,并为通过二聚化进行天然产物的全合成提供有前景的策略。本综述聚焦于微生物天然产物生物合成途径中参与二聚化的酶,重点介绍细胞色素P450、漆酶和分子间[4 + 2]环化酶,以及其他非典型酶。还介绍了这些酶的鉴定、表征和催化情况。