聚酮
丙二酰辅酶A
生产(经济)
化学
计算生物学
计算机科学
生化工程
生物化学
生物合成
生物
酶
工程类
β氧化
宏观经济学
经济
作者
Sarah H. Klass,Mia Wesselkamper,Aidan E. Cowan,Namil Lee,Nathan Lanclos,Seokjung Cheong,Zilong Wang,Yan Chen,Jennifer Gin,Christopher J. Petzold,Jay D. Keasling
标识
DOI:10.1038/s41589-025-01911-6
摘要
Heterologous expression of polyketide synthase (PKS) genes in Escherichia coli has enabled the production of various valuable natural and synthetic products. However, the limited availability of malonyl-CoA (M-CoA) in E. coli remains a substantial impediment to high-titer polyketide production. Here we address this limitation by disrupting the native M-CoA biosynthetic pathway and introducing an orthogonal pathway comprising a malonate transporter and M-CoA ligase, enabling efficient M-CoA biosynthesis under malonate supplementation. This approach substantially increases M-CoA levels, enhancing fatty acid and polyketide titers while reducing the promiscuous activity of PKSs toward undesired acyl-CoA substrates. Subsequent adaptive laboratory evolution of these strains provides insights into M-CoA regulation and identifies mutations that further boost M-CoA and polyketide production. This strategy improves E. coli as a host for polyketide biosynthesis and advances understanding of M-CoA metabolism in microbial systems.
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