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首页> 外文期刊>ACS Synthetic Biology >Establishment of Novel Biosynthetic Pathways for the Production of Salicyl Alcohol and Gentisyl Alcohol in Engineered Escherichia coli
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Establishment of Novel Biosynthetic Pathways for the Production of Salicyl Alcohol and Gentisyl Alcohol in Engineered Escherichia coli

机译:建立新型生物合成途径,用于生产水杨醇和龙敏醇的工程化学大肠杆菌

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摘要

Salicyl alcohol and gentisyl alcohol are two important phenolic alcohols that possess significant biological activities and pharmaceutical properties. Here, we report establishment of novel biosynthetic pathways for microbial production of salicyl alcohol and gentisyl alcohol from renewable feedstocks. We first examined the promiscuity of the carboxylic acid reductase CAR toward salicylic acid and 2,5-DHBA, which enabled efficient synthesis of salicyl alcohol and gentisyl alcohol. Then, we employed a novel salicylic acid 5-hydroxylase to achieve 2,5-DHBA production from salicylic acid. After that, the de novo biosynthetic pathways were assembled and optimized by programming the carbon flux into the shikimate pathway. The final titers of salicyl alcohol and gentisyl alcohol reached to 594.4 mg/L and 30.1 mg/L, respectively. To our knowledge, this work achieved microbial production of salicyl alcohol and gentisyl alcohol for the first time. Our present study also demonstrated application of enzyme promiscuity to establish non-natural biosynthetic pathways for the production of high-value compounds.
机译:水杨醇和龙菁醇是两个重要的酚醛醇,具有显着的生物活性和药物性能。在这里,我们举报了从可再生原料中的水杨酸和龙菁醇的微生物生产的新型生物合成途径的建立。我们首先检查羧酸还原酶型朝向水杨酸和2,5-DHBA的滥交,使得能够有效地合成水杨酸和杜光醇。然后,我们使用新的水杨酸5-羟基酶,以实现来自水杨酸的2,5-DHBA产生。之后,通过将碳通量编程到Shikimate途径中,组装和优化De Novo生物合成途径。水杨醇和硫代醇的最终滴度分别达到594.4mg / L和30.1mg / L.为了我们的知识,这项工作首次实现了水杨酸和杜光醇的微生物生产。我们目前的研究还证明了酶滥交应用,以建立用于生产高价值化合物的非天然生物合成途径。

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