代谢工程
生物化学
酵母
萜类
法尼基二磷酸合酶
线粒体
背景(考古学)
胞浆
焊剂(冶金)
ATP合酶
异源的
生物
代谢途径
亚细胞定位
酶
化学
细胞质
有机化学
古生物学
基因
作者
Moran Farhi,Elena Marhevka,Tania Masci,Evgeniya Marcos,Yoram Eyal,Mariana Ovadis,Hagai Abeliovich,Alexander Vainstein
标识
DOI:10.1016/j.ymben.2011.05.001
摘要
The biologically and commercially important terpenoids are a large and diverse class of natural products that are targets of metabolic engineering. However, in the context of metabolic engineering, the otherwise well-documented spatial subcellular arrangement of metabolic enzyme complexes has been largely overlooked. To boost production of plant sesquiterpenes in yeast, we enhanced flux in the mevalonic acid pathway toward farnesyl diphosphate (FDP) accumulation, and evaluated the possibility of harnessing the mitochondria as an alternative to the cytosol for metabolic engineering. Overall, we achieved 8- and 20-fold improvement in the production of valencene and amorphadiene, respectively, in yeast co-engineered with a truncated and deregulated HMG1, mitochondrion-targeted heterologous FDP synthase and a mitochondrion-targeted sesquiterpene synthase, i.e. valencene or amorphadiene synthase. The prospect of harnessing different subcellular compartments opens new and intriguing possibilities for the metabolic engineering of pathways leading to valuable natural compounds.
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