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首页> 外文期刊>Genes >Modulating the Precursor and Terpene Synthase Supply for the Whole-Cell Biocatalytic Production of the Sesquiterpene (+)-Zizaene in a Pathway Engineered E. coli
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Modulating the Precursor and Terpene Synthase Supply for the Whole-Cell Biocatalytic Production of the Sesquiterpene (+)-Zizaene in a Pathway Engineered E. coli

机译:调节前体和萜烯合成酶供应,为锡酮(+) - Zizaene的全细胞生物催化生产在工程化的大肠杆菌中

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The vetiver essential oil from Chrysopogon zizanioides contains fragrant sesquiterpenes used widely in the formulation of nearly 20% of men’s cosmetics. The growing demand and issues in the supply have raised interest in the microbial production of the sesquiterpene khusimol, the main compound of the vetiver essential oil due to its woody smell. In this study, we engineered the biosynthetic pathway for the production of (+)-zizaene, the immediate precursor of khusimol. A systematic approach of metabolic engineering in Escherichia coli was applied to modulate the critical bottlenecks of the metabolic flux towards (+)-zizaene. Initially, production of (+)-zizaene was possible with the endogenous methylerythritol phosphate pathway and the codon-optimized zizaene synthase (ZS). Raising the precursor E,E-farnesyl diphosphate supply through the mevalonate pathway improved the (+)-zizaene titers 2.7-fold, although a limitation of the ZS supply was observed. To increase the ZS supply, distinct promoters were tested for the expression of the ZS gene, which augmented 7.2-fold in the (+)-zizaene titers. Final metabolic enhancement for the ZS supply by using a multi-plasmid strain harboring multiple copies of the ZS gene improved the (+)-zizaene titers 1.3-fold. The optimization of the fermentation conditions increased the (+)-zizaene titers 2.2-fold, achieving the highest (+)-zizaene titer of 25.09 mg L ?1 . This study provides an alternative strategy to enhance the terpene synthase supply for the engineering of isoprenoids. Moreover, it demonstrates the development of a novel microbial platform for the sustainable production of fragrant molecules for the cosmetic industry.
机译:来自Chrysopogon Zizanioides的香草精油含有芬芳的倍半萜烯,广泛用于男性化妆品的近20%的配方。供应中不断增长的需求和问题提高了辛特萜酮的微生物生产的兴趣,由于其木质味道,香根草精油的主要化合物。在这项研究中,我们为生产(+) - Zizaene,Zhusimol的直接前体制作了生物合成途径。应用了大肠杆菌中代谢工程的系统方法,用于调节代谢通量朝向(+) - Zizaene的临界瓶颈。最初,通过内源性甲基吡啶醇磷酸途径和密码子优化的Zizaene合酶(ZS),可以产生(+) - Zizaene的生产。培养前体E,通过甲丙酸盐途径培养E-芳烃基二磷酸盐供给改善(+) - Zizaene滴度2.7倍,尽管观察到ZS供应的限制。为了增加ZS供应,测试了不同的启动子以表达ZS基因,其在(+) - Zizaene滴度中增强7.2倍。通过使用含有多种Zs基因的多种拷贝的多质粒菌株来改善(+) - Zizaene滴度为1.3倍的多质粒菌株的最终代谢增强。发酵条件的优化增加(+) - Zizaene滴度2.2倍,实现最高(+) - Zizaene滴度为25.09mgl≤1。本研究提供了一种替代策略,以增强异戊二烯工程的萜烯合酶供应。此外,它表明了一种新型微生物平台,用于化妆品行业的芳香分子可持续生产。

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