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Design of a dynamic sensor-regulator system for production of chemicals and fuels derived from fatty acids

机译:动态传感器-调节器系统的设计,用于生产脂肪酸衍生的化学物质和燃料

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Microbial production of chemicals is now an attractive alternative to chemical synthesis. Current efforts focus mainly on constructing pathways to produce different types of molecules(1-3). However, there are few strategies for engineering regulatory components to improve product titers and conversion yields of heterologous pathways(4). Here we developed a dynamic sensor-regulator system (DSRS) to produce fatty acid-based products in Escherichia coli, and demonstrated its use for biodiesel production. The DSRS uses a transcription factor that senses a key intermediate and dynamically regulates the expression of genes involved in biodiesel production. This DSRS substantially improved the stability of biodiesel-producing strains and increased the titer to 1.5 g/l and the yield threefold to 28% of the theoretical maximum. Given the large number of natural sensors available, this DSRS strategy can be extended to many other biosynthetic pathways to balance metabolism, thereby increasing product titers and conversion yields and stabilizing production hosts.
机译:现在,微生物的化学生产是化学合成的一种有吸引力的替代方法。当前的工作主要集中在构建产生不同类型分子的途径上(1-3)。但是,很少有工程学上的调控成分提高产品效价和异源途径转化率的策略(4)。在这里,我们开发了一种动态传感器调节器系统(DSRS),可在大肠杆菌中生产基于脂肪酸的产品,并展示了其在生物柴油生产中的用途。 DSRS使用一种转录因子来感知关键中间体,并动态调节生物柴油生产中涉及的基因的表达。该DSRS显着提高了生产生物柴油的菌株的稳定性,并将效价提高到1.5 g / l,产率提高了三倍,达到理论最大值的28%。鉴于可用的自然传感器数量众多,这种DSRS策略可以扩展到许多其他生物合成途径来平衡新陈代谢,从而提高产品效价和转化率并稳定生产宿主。

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