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Production of artemisinin by genetically-modified microbes

机译:转基因微生物生产青蒿素

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摘要

Artemisinin, an endoperoxidized sesquiterpene originally extracted from the medicinal plant Artemisia annua L., is a potent malaria-killing agent. Due to the urgent demand and short supply of this new antimalarial drug, engineering enhanced production of artemisinin by genetically-modified or transgenic microbes is currently being explored. Cloning and expression of the artemisinin biosynthetic genes in Saccharomyces cerevisiae and Escherichia coli have led to large-scale microbial production of the artemisinin precursors such as amorpha-4,11-diene and artemisinic acid. Although reconstruction of the complete biosynthetic pathway toward artemisinin in transgenic yeast and bacteria has not been achieved, artemisinic acid available from these transgenic microbes facilitates the subsequent partial synthesis of artemisinin by either chemical or biotransformational process, thereby providing an attractive strategy alternative to the direct extraction of artemisinin from A.annua L. In this review, we update the current trends and summarize the future prospects on genetic engineering of the microorganisms capable of accumulating artemisinin precursors through heterologous and functional expression of the artemisinin biosynthetic genes.
机译:青蒿素是一种原本从药用植物青蒿(Artemisia annua L.)提取的内过氧化倍半萜烯,是一种有效的疟疾杀灭剂。由于这种新的抗疟疾药物的迫切需求和短缺,目前正在研究通过基因修饰或转基因微生物工程提高青蒿素的生产。酿酒酵母和大肠杆菌中青蒿素生物合成基因的克隆和表达已导致青蒿素前体(如amorpha-4,11-diene和青蒿酸)的大规模微生物生产。尽管尚未实现在转基因酵母和细菌中完整的朝向青蒿素的生物合成途径的重建,但可从这些转基因微生物中获得的青蒿酸可通过化学或生物转化过程促进随后的青蒿素部分合成,从而提供了一种直接提取方法的替代方案A.annua L.中的青蒿素的研究。在本文中,我们更新了当前趋势,并总结了能够通过异源和功能表达青蒿素生物合成基因而积累青蒿素前体的微生物的基因工程。

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