萜类
代谢工程
大肠杆菌
从头合成
生物化学
芳樟醇
酶
化学
新陈代谢
代谢途径
生物
立体化学
食品科学
基因
精油
作者
Xiaoqiang Ma,Hong Liang,Qiuchi Pan,Kristala L. J. Prather,Anthony J. Sinskey,Gregory Stephanopoulos,Kang Zhou
标识
DOI:10.1021/acs.jafc.2c00014
摘要
Engineering microbes to produce isoprenoids can be limited by the competition between product formation and cell growth because biomass and isoprenoids are naturally derived from central metabolism. Recently, a two-step synthetic pathway was developed to partially decouple isoprenoid formation from central carbon metabolism. The pathway used exogenously added isopentenols as substrates. In the present study, we systematically optimized this isopentenol utilization pathway in Escherichia coli by comparing enzyme variants from different species, tuning enzyme expression levels, and using a two-stage process. Under the optimal conditions found in this study, ∼300 mg/L lycopene was synthesized from 2 g/L isopentenol in 24 h. The strain could be easily modified to synthesize two other isoprenoid molecules efficiently (248 mg/L β-carotene or 364 mg/L R-(-)-linalool produced from 2 g/L isopentenol). This study lays a solid foundation for producing agri-food isoprenoids at high titer/productivity from cost-effective feedstocks.
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