Key Laboratory of Industrial Fermentation Microbiology (Tianjin University of Science and Technology), Ministry of Education, Tianjin Key Laboratory of Industrial Microbiology, College of Biotechnology, Tianjin University of Science and Technology, Tianjin 300457, P. R. China.
J Agric Food Chem. 2021 Jan 20;69(2):704-716. doi: 10.1021/acs.jafc.0c06592. Epub 2021 Jan 6.
exhibits excellent Δ-dehydrogenation ability, but the acquisition of the desirable strain is limited due to lacking of comprehensive genetic manipulation. Herein, a promoter collection for fine-tuning gene expression was achieved. Next, the expression level was enhanced and directed evolution of the global transcriptional factor (IrrE) was applied to enhance cell viability in systems containing more substrate and ethanol, thus contributing to higher production. IrrE promotes a stronger antioxidant defense system, more energy generation, and changed signal transduction. Using a stronger promoter, the enzyme activities were boosted but their positive effects on biotransformation performance were inferior to cell stress tolerance when exposed to challenging systems. Finally, an optimal strain was created by collectively reinforcing cell stress tolerance and catalytic enzyme activity, achieving a yield 261.8% higher relative to the initial situation. Our study provided effective methods for steroid-transforming strains with high efficiency.
表现出优异的 Δ-脱氢能力,但由于缺乏全面的遗传操作,理想菌株的获得受到限制。在此,实现了一个用于精细调控基因表达的启动子集合。接下来,通过增强表达水平并应用全局转录因子(IrrE)的定向进化来提高含有更多底物和乙醇的系统中的细胞活力,从而有助于提高产量。IrrE 促进了更强的抗氧化防御系统、更多的能量产生和改变的信号转导。使用更强的启动子,酶活性得到了提高,但当暴露于具有挑战性的系统时,它们对生物转化性能的积极影响不如细胞应激耐受性。最后,通过共同增强细胞应激耐受性和催化酶活性,创建了一个最佳菌株,与初始情况相比,产量提高了 261.8%。我们的研究为具有高效性的甾体转化菌株提供了有效的方法。