State Key Laboratory of Microbial Metabolism and School of Life Sciences & Biotechnology, Shanghai Jiao Tong University, Shanghai, 200240, China.
School of Marine Sciences, Ningbo University, Ningbo, 315211, China.
Sci China Life Sci. 2017 Sep;60(9):1000-1009. doi: 10.1007/s11427-017-9122-8. Epub 2017 Aug 14.
An ideal surrogate host for heterologous production of various natural products is expected to have efficient nutrient utilization, fast growth, abundant precursors and energy supply, and a pronounced gene expression. Streptomyces albus BK3-25 is a high-yield industrial strain producing type-I polyketide salinomycin, with a unique ability of bean oil utilization. Its potential of being a surrogate host for heterologous production of PKS was engineered and evaluated herein. Firstly, introduction of a three-gene cassette for the biosynthesis of ethylmalonyl-CoA resulted in accumulation of ethylmalonyl-CoA precursor and salinomycin, and subsequent deletion of the salinomycin biosynthetic gene cluster resulted in a host with rich supplies of common polyketide precursors, including malonyl-CoA, methylmalonyl-CoA, and ethylmalonyl-CoA. Secondly, the energy and reducing force were measured, and the improved accumulation of ATP and NADPH was observed in the mutant. Furthermore, the strength of a series of selected endogenous promoters based on microarray data was assessed at different growth phases, and a strong constitutive promoter was identified, providing a useful tool for further engineered gene expression. Finally, the potential of the BK3-25 derived host ZXJ-6 was evaluated with the introduction of the actinorhodin biosynthetic gene cluster from Streptomyces coelicolor, and the heterologous production of actinorhodin was obtained. This work clearly indicated the potential of the high-yield salinomycin producer as a surrogate host for heterologous production of polyketides, although more genetic manipulation should be conducted to streamline its performance.
期望用于异源生产各种天然产物的理想替代宿主具有高效的营养利用、快速生长、丰富的前体和能量供应以及显著的基因表达。白色链霉菌 BK3-25 是一种高产工业菌株,能够产生 I 型聚酮化合物萨利霉素,具有独特的利用豆油的能力。本文旨在对其作为异源生产 PKS 的替代宿主的潜力进行工程改造和评估。首先,引入一个用于合成乙基丙二酰辅酶 A 的三基因盒,导致乙基丙二酰辅酶 A 前体和萨利霉素的积累,随后删除萨利霉素生物合成基因簇,导致宿主具有丰富的常见聚酮前体供应,包括丙二酰辅酶 A、甲基丙二酰辅酶 A 和乙基丙二酰辅酶 A。其次,测量了能量和还原力,观察到突变体中 ATP 和 NADPH 的积累增加。此外,根据微阵列数据评估了一系列选定的内源启动子在不同生长阶段的强度,鉴定出一个强组成型启动子,为进一步工程化基因表达提供了有用的工具。最后,用来自变铅青链霉菌的放线紫红素生物合成基因簇引入到衍生的 BK3-25 宿主 ZXJ-6 中,获得了放线紫红素的异源生产。这项工作清楚地表明,高产萨利霉素生产菌作为聚酮异源生产的替代宿主具有潜力,尽管需要进行更多的遗传操作来简化其性能。