大肠杆菌
合成生物学
代谢工程
糖酵解
生产力
生物化学
酶
化学
代谢途径
组合化学
计算生物学
细胞生物学
生物
基因
宏观经济学
经济
作者
Stephanie J. Doong,Apoorv Gupta,Kristala L. J. Prather
标识
DOI:10.1073/pnas.1716920115
摘要
Significance Optimization of the engineered pathway for production of D-glucaric acid, a precursor to nylons and detergents, requires strategies that manage pathway competition with glycolysis as well as the stability and activity of the rate-controlling enzyme. To address both of these challenges, two orthogonal, autonomous, and tunable dynamic regulation strategies were layered to produce the highest reported glucaric acid titers in Escherichia coli K-12 strains. The implementation of two regulatory circuits harnesses synthetic biology tools to program and optimize cellular behavior and demonstrates the power of multiplexed dynamic control for strain optimization.
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