详细信息

Enhancing the biosynthesis of taxadien-5α- yl-acetate in Escherichia coli by combinatorial metabolic engineering approaches    

文献类型:期刊文献

中文题名:Enhancing the biosynthesis of taxadien-5α- yl-acetate in Escherichia coli by combinatorial metabolic engineering approaches

作者:Wen-Liang Xie[1];Mei-Fang Zhang[1];Zheng-Yu Huang[1];Man Xu[1];Chun-Xiu Li[1];Jian-He Xu[1]

机构:[1]Laboratory of Biocatalysis and Synthetic Biotechnology,State Key Laboratory of Bioreactor Engineering,East China University of Science and Technology,130 Meilong Road,Shanghai 200237,People’s Republic of China

年份:2024

卷号:11

期号:1

起止页码:675

中文期刊名:Bioresources and Bioprocessing

外文期刊名:生物资源与生物加工(英文)

基金:Funding for this research was graciously provided by several key sources:the National Key Research and Development Program of China under grant number 2019YFA0905000;the Fundamental Research Funds for the Central Universities,grant number 222201714026;the National Natural Science Foundation of China with grant numbers 21871085 and 31971380.

语种:英文

中文关键词:Escherichia coli;Methylerythritol phosphate pathway;Taxadien-5α-yl-acetate;Taxadien-5α-ol O-acetyltransferase;Multivariate-modular metabolic engineering

摘要:Biosynthesis of paclitaxel(Taxol?)is a hot topic with extensive and durable interests for decades.However,it is severely hindered due to the very low titers of intermediates.In this study,Escherichia coli was employed to de novo synthesize a key intermediate of paclitaxel,taxadien-5α-yl-acetate(T5OAc).Plasmid-based pathway reconstruction and optimization were conducted for T5OAc production.The endogenous methylerythritol phosphate pathway was enhanced to increase the precursor supply.Three taxadien-5α-ol O-acetyltransferases were tested to obtain the best enzyme for the acetylation step.Metabolic burden was relieved to restore cell growth and promote production through optimizing the plasmid production system.In order to achieve metabolic balance,the biosynthesis pathway was regulated precisely by multivariate-modular metabolic engineering.Finally,in a 5-L bioreactor,the T5OAc titer was enhanced to reach 10.9 mg/L.This represents an approximately 272-fold increase in production compared to the original strain,marking the highest yield of T5OAc ever documented in E.coli,which is believed to be helpful for promoting the progress of paclitaxel biosynthesis.

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