酿酒酵母
生产(经济)
弹性蛋白酶
计算生物学
生化工程
生物技术
生物
计算机科学
遗传学
生物化学
工程类
酵母
酶
经济
微观经济学
作者
Xiufang Liu,Feiran Li,Chufan Xiao,Yixin Yu,Lin Zheng,Mouming Zhao,Mingtao Huang
标识
DOI:10.1021/acssynbio.5c00077
摘要
Pseudomonas aeruginosa elastase is a metalloprotease with significant industrial potential but is challenging to produce due to its pathogenic origin and folding complexities. In this study, we applied rational design to engineer nonfunctional regions of elastase within Saccharomyces cerevisiae, specifically targeting propeptide and signal peptide cleavage sites, and N-glycosylation in the propeptide. This led to the development of several improved elastase variants. Integrating the yeast protein secretory model pcSecYeast with protease production characteristics, a total of 75 targets were identified and validated, comprising both model-predicted and production-feature-based targets. Notably, overexpression of POS5 enhanced protease activity to 2.43-fold that of the control, while knockout of TES1 or VPS10 further optimized production. This work demonstrates the potential of systems biology in creating yeast cell factories for protease production and highlights S. cerevisiae as a versatile host for biotechnological applications.
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