Soma Yuki, Hanai Taizo
Laboratory for Bioinformatics, Graduate School of Systems Biosciences, Kyushu University, 804 Westwing, 3-1-1 Maidashi, Higashi-ku, Fukuoka 812-8582, Japan.
Laboratory for Bioinformatics, Graduate School of Systems Biosciences, Kyushu University, 804 Westwing, 3-1-1 Maidashi, Higashi-ku, Fukuoka 812-8582, Japan.
Metab Eng. 2015 Jul;30:7-15. doi: 10.1016/j.ymben.2015.04.005. Epub 2015 Apr 20.
Chemicals production by engineered microorganisms often requires induction of target gene expression at an appropriate cell density to reduce conflict with cell growth. The lux system in Vibrio fischeri is a well-characterized model for cell density-dependent regulation of gene expression termed quorum sensing (QS). However, there are currently no reports for application of the lux system to microbial chemical production. Here, we constructed a synthetic lux system as a tunable cell density sensor-regulator using a synthetic lux promoter and a positive feedback loop in Escherichia coli. In this system, self-induction of a target gene expression is driven by QS-signal, and its threshold cell density can be changed depending on the concentration of a chemical inducer. We demonstrate auto-redirection of metabolic flux from central metabolic pathways toward a synthetic isopropanol pathway at a desired cell density resulting in a significant increase in isopropanol production.
利用工程微生物进行化学品生产通常需要在适当的细胞密度下诱导靶基因表达,以减少与细胞生长的冲突。费氏弧菌中的lux系统是一种特征明确的模型,用于细胞密度依赖性基因表达调控,即群体感应(QS)。然而,目前尚无关于将lux系统应用于微生物化学品生产的报道。在此,我们构建了一个合成lux系统,作为一种可调节的细胞密度传感器-调节器,该系统利用合成lux启动子和正反馈回路,存在于大肠杆菌中。在这个系统中,靶基因表达的自诱导由QS信号驱动,其阈值细胞密度可以根据化学诱导剂的浓度而改变。我们证明了在所需的细胞密度下,代谢通量从中心代谢途径自动重定向到合成异丙醇途径,从而导致异丙醇产量显著增加。