角鲨烯
羊毛甾醇
酿酒酵母
下调和上调
麦角甾醇
发起人
化学
生物化学
酵母
代谢工程
焊剂(冶金)
酶
有机化学
基因表达
甾醇
胆固醇
基因
作者
Chenyao Zhou,Mingjie Li,Surui Lu,Yanfei Cheng,Xuena Guo,Xiaoxian He,Zhaoyue Wang,Xiuping He
标识
DOI:10.1021/acs.jafc.1c04978
摘要
Transcriptional downregulation is widely used for metabolic flux control. Here, marO, a cis-element of Escherichia colimar operator, was explored to engineer promoters of Saccharomyces cerevisiae for downregulation. First, the ADH1 promoter (PADH1) and its enhanced variant PUADH1 were engineered by insertion of marO into different sites, which resulted in decrease in both gfp5 transcription and GFP fluorescence intensity to various degrees. Then, marO was applied to engineer the native ERG1 and ERG11 promoters due to their importance for accumulation of value-added intermediates squalene and lanosterol. Elevated squalene content (4.9-fold) or lanosterol content (4.8-fold) and 91 or 28% decrease in ergosterol content resulted from the marO-engineered promoter PERG1(M5) or PERG11(M3), respectively, indicating the validity of the marO-engineered promoters in metabolic flux control. Furthermore, squalene production of 3.53 g/L from cane molasses, a cheap and bulk substrate, suggested the cost-effective and promising potential for squalene production.
科研通智能强力驱动
Strongly Powered by AbleSci AI