碳纤维
生化工程
全合成
化学
生物催化
纳米技术
有机分子
分子
组合化学
有机化学
材料科学
催化作用
反应机理
复合数
工程类
复合材料
作者
Christian Greunke,Anna Glöckle,Janine Antosch,Tobias A. M. Gulder
标识
DOI:10.1002/anie.201611063
摘要
Abstract Nature provides an inexhaustible diversity of small organic molecules with beautiful molecular architectures that have strong and selective inhibitory activities. However, this tremendous biomedical potential often remains inaccessible, as the structural complexity of natural products can render their synthetic preparation extremely challenging. This problem is addressable by harnessing the biocatalytic procedures evolved by nature. In this work, we present an enzymatic total synthesis of ikarugamycin. The use of an iterative PKS/NRPS machinery and two reductases has allowed the construction of 15 carbon–carbon and 2 carbon–nitrogen bonds in a biocatalytic one‐pot reaction. By scaling‐up this method we demonstrate the applicability of biocatalytic approaches for the ex vivo synthesis of complex natural products.
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