酿酒酵母
肌动蛋白细胞骨架
酵母
生物燃料
生物化学
细胞生物学
化学
丁醇
肌动蛋白
细胞骨架
生物
乙醇
生物技术
细胞
作者
Hui Liu,Pei Zhou,Mengya Qi,Liang Guo,Cong Gao,Guipeng Hu,Wei Song,Jing Wu,Xiulai Chen,Jian Chen,Wei Chen,Li Liu
标识
DOI:10.1038/s41467-022-29560-6
摘要
Abstract Saccharomyces cerevisiae is widely employed as a cell factory for the production of biofuels. However, product toxicity has hindered improvements in biofuel production. Here, we engineer the actin cytoskeleton in S. cerevisiae to increase both the cell growth and production of n-butanol and medium-chain fatty acids. Actin cable tortuosity is regulated using an n-butanol responsive promoter-based autonomous bidirectional signal conditioner in S. cerevisiae . The budding index is increased by 14.0%, resulting in the highest n-butanol titer of 1674.3 mg L −1 . Moreover, actin patch density is fine-tuned using a medium-chain fatty acid responsive promoter-based autonomous bidirectional signal conditioner. The intracellular pH is stabilized at 6.4, yielding the highest medium-chain fatty acids titer of 692.3 mg L −1 in yeast extract peptone dextrose medium. Engineering the actin cytoskeleton in S. cerevisiae can efficiently alleviate biofuels toxicity and enhance biofuels production.
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