代谢工程
合成生物学
萜烯
酿酒酵母
计算生物学
基因
生物化学
生物
酵母
木糖
发起人
化学
基因表达
发酵
作者
Jong Hyun Park,Marcelo C. Bassalo,Geng-Min Lin,Ye Chen‐Izu,Hamid Doosthosseini,Joep Schmitz,Johannes A. Roubos,Christopher A. Voigt
标识
DOI:10.1021/acssynbio.2c00607
摘要
The optimization of cellular functions often requires the balancing of gene expression, but the physical construction and screening of alternative designs are costly and time-consuming. Here, we construct a strain of Saccharomyces cerevisiae that contains a "sensor array" containing bacterial regulators that respond to four small-molecule inducers (vanillic acid, xylose, aTc, IPTG). Four promoters can be independently controlled with low background and a 40- to 5000-fold dynamic range. These systems can be used to study the impact of changing the level and timing of gene expression without requiring the construction of multiple strains. We apply this approach to the optimization of a four-gene heterologous pathway to the terpene linalool, which is a flavor and precursor to energetic materials. Using this approach, we identify bottlenecks in the metabolic pathway. This work can aid the rapid automated strain development of yeasts for the bio-manufacturing of diverse products, including chemicals, materials, fuels, and food ingredients.
科研通智能强力驱动
Strongly Powered by AbleSci AI