分解代谢抑制
合成生物学
诱导剂
代谢工程
生物
生物化学
计算生物学
系统生物学
生物过程
基因表达
分解代谢
代谢途径
化学
操纵子
舍瓦内拉
心理压抑
生物分子
抑制因子
生化工程
基因表达调控
微生物群
蛋白质表达
酶
蛋白质生物合成
阿拉伯糖
有机体
抄写(语言学)
反馈调节
酶诱导剂
化学生物学
转录因子
严格的回应
作者
Congqiang Zhang,Sudha Shukal
标识
DOI:10.1021/acssynbio.5c00602
摘要
Precise control of gene expression is essential to synthetic biology and metabolic engineering, particularly for microbial production. The widely used IPTG-inducible T7lac promoter (PT7lac) offers strong expression but suffers from metabolic burden, inclusion body formation, and induction heterogeneity. Conversely, the arabinose-inducible araBAD promoter (PBAD) provides tight regulations but yields modest expression levels, is incompatible with glucose media, and requires high inducer concentrations (20-100 mM). We introduce the arabinose-inducible univariant control system (AUCS), a robust, tightly regulated, and low-cost expression platform designed to combine the strengths of PT7lac and PBAD while overcoming their drawbacks. AUCS eliminates carbon catabolite repression and minimizes induction heterogeneity via the constitutive expression of the arabinose transporter AraE. Disruption of the arabinose catabolism enables maximal protein output with only 3 μM l-arabinose, orders of magnitude lower than PT7lac and PBAD systems, achieving a >99% reduction in inducer cost. Leveraging a customized promoter library (PTA1-3), AUCS enables the precise, high-yield expression of single proteins, multienzyme operons, and complex biosynthetic pathways (>10 genes). Benchmarked against PT7lac, AUCS achieved comparable or superior yields of proteins (the egg-white protein ovalbumin), enzymes (terpene synthases, carotenoid cleavage dioxygenases), and secondary metabolites (linalool, nerolidol, and sclareol) while maintaining outstanding reproducibility and stability over 36 generations. AUCS represents a powerful advancement for precision fermentation, enabling sustainable and cost-effective production of high-value biomolecules and substantially reducing the environmental footprint of chemical manufacturing.
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