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首页> 外文期刊>ChemCatChem >Production of Macrocyclic Sesqui- and Diterpenes in Heterologous Microbial Hosts: A Systems Approach to Harness Nature's Molecular Diversity
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Production of Macrocyclic Sesqui- and Diterpenes in Heterologous Microbial Hosts: A Systems Approach to Harness Nature's Molecular Diversity

机译:在异源微生物主机中生产大规模均匀和倍萜:利用自然分子多样性的系统方法

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摘要

Macrocyclic sesqui- (C15) and diterpenes (C20) are a functionally diverse group of natural products with versatile bioactivities encompassing anticancer, antimicrobial and insecticidal agents. Structural complexity prevents economically efficient total synthesis of these higher terpenoids. Heterologous production in recombinant whole-cell biocatalysts is an emerging alternative. Conventional cell systems (i.e., Escherichiacoli and Saccharomyces cerevisiae) frequently suffer from low volumetric yields. However, recent combinations of metabolic, enzyme and process engineering in conjunction with systems biology allow significant improvements towards economically viable processes. This Review analyzes research trends in the dynamic fields of terpene-centered microbial cell systems and enzyme engineering. An outlook is given on emerging microbial hosts, which may simplify cellular engineering towards higher product titers.
机译:宏观含有倍增型(C15)和Diterpenes(C20)是一种功能多样化的天然产物,具有涵盖抗癌,抗菌和杀虫剂的多功能生物活性。 结构复杂性可防止这些较高的萜类化合物的经济有效合成。 重组全细胞生物催化剂的异源生产是一种新的替代品。 常规细胞系统(即,Escherichiacoli和Saccharomyces Cerevisiae)经常遭受低体积产率。 然而,最近代谢,酶和过程工程与系统生物学结合的组合允许对经济上可行的过程进行显着改善。 该综述分析了萜烯微生物细胞系统和酶工程动态领域的研究趋势。 在新出现的微生物宿主上给出了一个前景,这可以将蜂窝工程简化为更高的产品滴度。

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