酶
辅因子
生物化学
代谢途径
丁醇
异源的
化学
代谢工程
产量(工程)
NAD+激酶
生物催化
体外
色谱法
乙醇
催化作用
材料科学
反应机理
冶金
基因
作者
Borimas Krutsakorn,Kohsuke Honda,Xiaoting Ye,Takashi Imagawa,Xiaoyu Bei,Kenji Okano,Hisao Ohtake
标识
DOI:10.1016/j.ymben.2013.09.006
摘要
The heat treatment of recombinant mesophiles having heterologous thermotolerant enzymes results in the one-step preparation of highly selective biocatalytic modules. The assembly of these modules enables us to readily construct an artificial metabolic pathway in vitro. In this work, we constructed a non-natural, cofactor-balanced, and oxygen-insensitive pathway for n-butanol production using 16 thermotolerant enzymes. The whole pathway was divided into 7 parts, in each of which NAD(H)-dependent enzymes were assigned to be the last step, and the fluxes through each part were spectrophotometrically determined. This real-time monitoring technique enabled the experimental optimization of enzyme level to achieve a desired production rate. Through the optimized pathway, n-butanol could be produced from glucose with a molar yield of 82% at a rate of 8.2 µmol l−1 min−1. Our approach would be widely applicable to the rational optimization of artificial metabolic pathways as well as to the in vitro production of value-added biomolecules.
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