聚酮
链霉菌
合成生物学
生物
发酵
细菌
计算生物学
异源的
生物合成
生物技术
生化工程
化学
组合化学
生物化学
基因
遗传学
工程类
作者
Shanshan Li,Zilong Li,Shen Pang,Wensheng Xiang,Weishan Wang
标识
DOI:10.1016/j.copbio.2020.11.006
摘要
The widely used polyketide pharmaceuticals in medicine and agriculture are mainly produced by Streptomyces species. These compounds, as secondary metabolites, are not involved in essential cellular processes and are usually produced during the stationary phase of fermentation. Consequently, their yields and productivities are often low and frequently limited by the availability of the precursors. The precursor pathways, therefore, are key entities for synthetic biology-driven design and optimization. We discuss recent advances in precursor engineering, in both Streptomyces and other bacteria, focusing on the diverse native and heterologous precursor pathways that could be rewired for polyketide titer improvement. We also highlight the coordination of other required factors to direct the precursors towards polyketide biosynthesis. The precursor-supply enhancement tools and strategies covered in this review will facilitate the design and construction of synthetic Streptomyces 'cell-factories' for efficient polyketide production.
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